| @@ -0,0 +1,25 @@ | |||
| [PreviousGenFiles] | |||
| AdvancedFolderStructure=true | |||
| HeaderFileListSize=3 | |||
| HeaderFiles#0=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Inc/stm32f4xx_it.h | |||
| HeaderFiles#1=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Inc/stm32f4xx_hal_conf.h | |||
| HeaderFiles#2=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Inc/main.h | |||
| HeaderFolderListSize=1 | |||
| HeaderPath#0=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Inc | |||
| HeaderFiles=; | |||
| SourceFileListSize=3 | |||
| SourceFiles#0=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Src/stm32f4xx_it.c | |||
| SourceFiles#1=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Src/stm32f4xx_hal_msp.c | |||
| SourceFiles#2=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Src/main.c | |||
| SourceFolderListSize=1 | |||
| SourcePath#0=D:/xinjiedianqi/学习文档/TrainCamp_zengbingjie_Modbus/Modbus/Core/Src | |||
| SourceFiles=; | |||
| [PreviousLibFiles] | |||
| LibFiles=Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_tim.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_tim_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_rcc.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_rcc_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_flash.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_flash_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_flash_ramfunc.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_gpio.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_gpio_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_dma_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_dma.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_pwr.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_pwr_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_cortex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal.h;Drivers/STM32F4xx_HAL_Driver/Inc/Legacy/stm32_hal_legacy.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_def.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_exti.h;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_tim.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_tim_ex.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_rcc.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_rcc_ex.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash_ex.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash_ramfunc.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_gpio.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_dma_ex.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_dma.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_pwr.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_pwr_ex.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_cortex.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal.c;Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_exti.c;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_tim.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_tim_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_rcc.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_rcc_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_flash.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_flash_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_flash_ramfunc.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_gpio.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_gpio_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_dma_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_dma.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_pwr.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_pwr_ex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_cortex.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal.h;Drivers/STM32F4xx_HAL_Driver/Inc/Legacy/stm32_hal_legacy.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_def.h;Drivers/STM32F4xx_HAL_Driver/Inc/stm32f4xx_hal_exti.h;Drivers/CMSIS/Device/ST/STM32F4xx/Include/stm32f407xx.h;Drivers/CMSIS/Device/ST/STM32F4xx/Include/stm32f4xx.h;Drivers/CMSIS/Device/ST/STM32F4xx/Include/system_stm32f4xx.h;Drivers/CMSIS/Device/ST/STM32F4xx/Source/Templates/system_stm32f4xx.c;Drivers/CMSIS/Include/cmsis_armcc.h;Drivers/CMSIS/Include/cmsis_armclang.h;Drivers/CMSIS/Include/cmsis_compiler.h;Drivers/CMSIS/Include/cmsis_gcc.h;Drivers/CMSIS/Include/cmsis_iccarm.h;Drivers/CMSIS/Include/cmsis_version.h;Drivers/CMSIS/Include/core_armv8mbl.h;Drivers/CMSIS/Include/core_armv8mml.h;Drivers/CMSIS/Include/core_cm0.h;Drivers/CMSIS/Include/core_cm0plus.h;Drivers/CMSIS/Include/core_cm1.h;Drivers/CMSIS/Include/core_cm23.h;Drivers/CMSIS/Include/core_cm3.h;Drivers/CMSIS/Include/core_cm33.h;Drivers/CMSIS/Include/core_cm4.h;Drivers/CMSIS/Include/core_cm7.h;Drivers/CMSIS/Include/core_sc000.h;Drivers/CMSIS/Include/core_sc300.h;Drivers/CMSIS/Include/mpu_armv7.h;Drivers/CMSIS/Include/mpu_armv8.h;Drivers/CMSIS/Include/tz_context.h; | |||
| [PreviousUsedIarFiles] | |||
| SourceFiles=..\Core\Src\main.c;..\Core\Src\stm32f4xx_it.c;..\Core\Src\stm32f4xx_hal_msp.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_tim.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_tim_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_rcc.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_rcc_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash_ramfunc.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_gpio.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_dma_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_dma.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_pwr.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_pwr_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_cortex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_exti.c;..\Core\Src/system_stm32f4xx.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_tim.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_tim_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_rcc.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_rcc_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_flash_ramfunc.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_gpio.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_dma_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_dma.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_pwr.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_pwr_ex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_cortex.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal.c;..\Drivers/STM32F4xx_HAL_Driver/Src/stm32f4xx_hal_exti.c;..\Core\Src/system_stm32f4xx.c;..\Drivers/CMSIS/Device/ST/STM32F4xx/Source/Templates/system_stm32f4xx.c;; | |||
| HeaderPath=..\Drivers\STM32F4xx_HAL_Driver\Inc;..\Drivers\STM32F4xx_HAL_Driver\Inc\Legacy;..\Drivers\CMSIS\Device\ST\STM32F4xx\Include;..\Drivers\CMSIS\Include;..\Core\Inc; | |||
| CDefines=USE_HAL_DRIVER;STM32F407xx;USE_HAL_DRIVER;USE_HAL_DRIVER; | |||
| @@ -0,0 +1,83 @@ | |||
| /* USER CODE BEGIN Header */ | |||
| /** | |||
| ****************************************************************************** | |||
| * @file : main.h | |||
| * @brief : Header for main.c file. | |||
| * This file contains the common defines of the application. | |||
| ****************************************************************************** | |||
| * @attention | |||
| * | |||
| * <h2><center>© Copyright (c) 2026 STMicroelectronics. | |||
| * All rights reserved.</center></h2> | |||
| * | |||
| * This software component is licensed by ST under BSD 3-Clause license, | |||
| * the "License"; You may not use this file except in compliance with the | |||
| * License. You may obtain a copy of the License at: | |||
| * opensource.org/licenses/BSD-3-Clause | |||
| * | |||
| ****************************************************************************** | |||
| */ | |||
| /* USER CODE END Header */ | |||
| /* Define to prevent recursive inclusion -------------------------------------*/ | |||
| #ifndef __MAIN_H | |||
| #define __MAIN_H | |||
| #ifdef __cplusplus | |||
| extern "C" { | |||
| #endif | |||
| /* Includes ------------------------------------------------------------------*/ | |||
| #include "stm32f4xx_hal.h" | |||
| /* Private includes ----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN Includes */ | |||
| #include <app_cfg.h> | |||
| #include <os_cfg.h> | |||
| #include <ucos_ii.h> | |||
| /* USER CODE END Includes */ | |||
| /* Exported types ------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN ET */ | |||
| /* USER CODE END ET */ | |||
| /* Exported constants --------------------------------------------------------*/ | |||
| /* USER CODE BEGIN EC */ | |||
| /* USER CODE END EC */ | |||
| /* Exported macro ------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN EM */ | |||
| /* USER CODE END EM */ | |||
| /* Exported functions prototypes ---------------------------------------------*/ | |||
| void Error_Handler(void); | |||
| /* USER CODE BEGIN EFP */ | |||
| /* USER CODE END EFP */ | |||
| /* USER CODE BEGIN ET */ | |||
| extern UART_HandleTypeDef huart1; | |||
| /* USER CODE END ET */ | |||
| /* Private defines -----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN Private defines */ | |||
| #define LED_GPIO_PORT GPIOF | |||
| #define LED_GPIO_PIN GPIO_PIN_6 | |||
| #define LED_ON() HAL_GPIO_WritePin(LED_GPIO_PORT, LED_GPIO_PIN, GPIO_PIN_RESET) | |||
| #define LED_OFF() HAL_GPIO_WritePin(LED_GPIO_PORT, LED_GPIO_PIN, GPIO_PIN_SET) | |||
| #define LED_TOGGLE() HAL_GPIO_TogglePin(LED_GPIO_PORT, LED_GPIO_PIN) | |||
| /* USER CODE END Private defines */ | |||
| #ifdef __cplusplus | |||
| } | |||
| #endif | |||
| #endif /* __MAIN_H */ | |||
| /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ | |||
| @@ -0,0 +1,492 @@ | |||
| /** | |||
| ****************************************************************************** | |||
| * @file stm32f4xx_hal_conf_template.h | |||
| * @author MCD Application Team | |||
| * @brief HAL configuration template file. | |||
| * This file should be copied to the application folder and renamed | |||
| * to stm32f4xx_hal_conf.h. | |||
| ****************************************************************************** | |||
| * @attention | |||
| * | |||
| * <h2><center>© Copyright (c) 2017 STMicroelectronics. | |||
| * All rights reserved.</center></h2> | |||
| * | |||
| * This software component is licensed by ST under BSD 3-Clause license, | |||
| * the "License"; You may not use this file except in compliance with the | |||
| * License. You may obtain a copy of the License at: | |||
| * opensource.org/licenses/BSD-3-Clause | |||
| * | |||
| ****************************************************************************** | |||
| */ | |||
| /* Define to prevent recursive inclusion -------------------------------------*/ | |||
| #ifndef __STM32F4xx_HAL_CONF_H | |||
| #define __STM32F4xx_HAL_CONF_H | |||
| #ifdef __cplusplus | |||
| extern "C" { | |||
| #endif | |||
| /* Exported types ------------------------------------------------------------*/ | |||
| /* Exported constants --------------------------------------------------------*/ | |||
| /* ########################## Module Selection ############################## */ | |||
| /** | |||
| * @brief This is the list of modules to be used in the HAL driver | |||
| */ | |||
| #define HAL_MODULE_ENABLED | |||
| /* #define HAL_ADC_MODULE_ENABLED */ | |||
| /* #define HAL_CRYP_MODULE_ENABLED */ | |||
| /* #define HAL_CAN_MODULE_ENABLED */ | |||
| /* #define HAL_CRC_MODULE_ENABLED */ | |||
| /* #define HAL_CAN_LEGACY_MODULE_ENABLED */ | |||
| /* #define HAL_CRYP_MODULE_ENABLED */ | |||
| /* #define HAL_DAC_MODULE_ENABLED */ | |||
| /* #define HAL_DCMI_MODULE_ENABLED */ | |||
| /* #define HAL_DMA2D_MODULE_ENABLED */ | |||
| /* #define HAL_ETH_MODULE_ENABLED */ | |||
| /* #define HAL_NAND_MODULE_ENABLED */ | |||
| /* #define HAL_NOR_MODULE_ENABLED */ | |||
| /* #define HAL_PCCARD_MODULE_ENABLED */ | |||
| /* #define HAL_SRAM_MODULE_ENABLED */ | |||
| /* #define HAL_SDRAM_MODULE_ENABLED */ | |||
| /* #define HAL_HASH_MODULE_ENABLED */ | |||
| /* #define HAL_I2C_MODULE_ENABLED */ | |||
| /* #define HAL_I2S_MODULE_ENABLED */ | |||
| /* #define HAL_IWDG_MODULE_ENABLED */ | |||
| /* #define HAL_LTDC_MODULE_ENABLED */ | |||
| /* #define HAL_RNG_MODULE_ENABLED */ | |||
| /* #define HAL_RTC_MODULE_ENABLED */ | |||
| /* #define HAL_SAI_MODULE_ENABLED */ | |||
| /* #define HAL_SD_MODULE_ENABLED */ | |||
| /* #define HAL_MMC_MODULE_ENABLED */ | |||
| /* #define HAL_SPI_MODULE_ENABLED */ | |||
| /* #define HAL_TIM_MODULE_ENABLED */ | |||
| #define HAL_UART_MODULE_ENABLED | |||
| /* #define HAL_USART_MODULE_ENABLED */ | |||
| /* #define HAL_IRDA_MODULE_ENABLED */ | |||
| /* #define HAL_SMARTCARD_MODULE_ENABLED */ | |||
| /* #define HAL_SMBUS_MODULE_ENABLED */ | |||
| /* #define HAL_WWDG_MODULE_ENABLED */ | |||
| /* #define HAL_PCD_MODULE_ENABLED */ | |||
| /* #define HAL_HCD_MODULE_ENABLED */ | |||
| /* #define HAL_DSI_MODULE_ENABLED */ | |||
| /* #define HAL_QSPI_MODULE_ENABLED */ | |||
| /* #define HAL_QSPI_MODULE_ENABLED */ | |||
| /* #define HAL_CEC_MODULE_ENABLED */ | |||
| /* #define HAL_FMPI2C_MODULE_ENABLED */ | |||
| /* #define HAL_FMPSMBUS_MODULE_ENABLED */ | |||
| /* #define HAL_SPDIFRX_MODULE_ENABLED */ | |||
| /* #define HAL_DFSDM_MODULE_ENABLED */ | |||
| /* #define HAL_LPTIM_MODULE_ENABLED */ | |||
| #define HAL_GPIO_MODULE_ENABLED | |||
| #define HAL_EXTI_MODULE_ENABLED | |||
| #define HAL_DMA_MODULE_ENABLED | |||
| #define HAL_RCC_MODULE_ENABLED | |||
| #define HAL_FLASH_MODULE_ENABLED | |||
| #define HAL_PWR_MODULE_ENABLED | |||
| #define HAL_CORTEX_MODULE_ENABLED | |||
| /* ########################## HSE/HSI Values adaptation ##################### */ | |||
| /** | |||
| * @brief Adjust the value of External High Speed oscillator (HSE) used in your application. | |||
| * This value is used by the RCC HAL module to compute the system frequency | |||
| * (when HSE is used as system clock source, directly or through the PLL). | |||
| */ | |||
| #if !defined (HSE_VALUE) | |||
| #define HSE_VALUE 12000000U /*!< Value of the External oscillator in Hz */ | |||
| #endif /* HSE_VALUE */ | |||
| #if !defined (HSE_STARTUP_TIMEOUT) | |||
| #define HSE_STARTUP_TIMEOUT 100U /*!< Time out for HSE start up, in ms */ | |||
| #endif /* HSE_STARTUP_TIMEOUT */ | |||
| /** | |||
| * @brief Internal High Speed oscillator (HSI) value. | |||
| * This value is used by the RCC HAL module to compute the system frequency | |||
| * (when HSI is used as system clock source, directly or through the PLL). | |||
| */ | |||
| #if !defined (HSI_VALUE) | |||
| #define HSI_VALUE ((uint32_t)16000000U) /*!< Value of the Internal oscillator in Hz*/ | |||
| #endif /* HSI_VALUE */ | |||
| /** | |||
| * @brief Internal Low Speed oscillator (LSI) value. | |||
| */ | |||
| #if !defined (LSI_VALUE) | |||
| #define LSI_VALUE 32000U /*!< LSI Typical Value in Hz*/ | |||
| #endif /* LSI_VALUE */ /*!< Value of the Internal Low Speed oscillator in Hz | |||
| The real value may vary depending on the variations | |||
| in voltage and temperature.*/ | |||
| /** | |||
| * @brief External Low Speed oscillator (LSE) value. | |||
| */ | |||
| #if !defined (LSE_VALUE) | |||
| #define LSE_VALUE 32768U /*!< Value of the External Low Speed oscillator in Hz */ | |||
| #endif /* LSE_VALUE */ | |||
| #if !defined (LSE_STARTUP_TIMEOUT) | |||
| #define LSE_STARTUP_TIMEOUT 5000U /*!< Time out for LSE start up, in ms */ | |||
| #endif /* LSE_STARTUP_TIMEOUT */ | |||
| /** | |||
| * @brief External clock source for I2S peripheral | |||
| * This value is used by the I2S HAL module to compute the I2S clock source | |||
| * frequency, this source is inserted directly through I2S_CKIN pad. | |||
| */ | |||
| #if !defined (EXTERNAL_CLOCK_VALUE) | |||
| #define EXTERNAL_CLOCK_VALUE 12288000U /*!< Value of the External audio frequency in Hz*/ | |||
| #endif /* EXTERNAL_CLOCK_VALUE */ | |||
| /* Tip: To avoid modifying this file each time you need to use different HSE, | |||
| === you can define the HSE value in your toolchain compiler preprocessor. */ | |||
| /* ########################### System Configuration ######################### */ | |||
| /** | |||
| * @brief This is the HAL system configuration section | |||
| */ | |||
| #define VDD_VALUE 3300U /*!< Value of VDD in mv */ | |||
| #define TICK_INT_PRIORITY 0U /*!< tick interrupt priority */ | |||
| #define USE_RTOS 0U | |||
| #define PREFETCH_ENABLE 1U | |||
| #define INSTRUCTION_CACHE_ENABLE 1U | |||
| #define DATA_CACHE_ENABLE 1U | |||
| #define USE_HAL_ADC_REGISTER_CALLBACKS 0U /* ADC register callback disabled */ | |||
| #define USE_HAL_CAN_REGISTER_CALLBACKS 0U /* CAN register callback disabled */ | |||
| #define USE_HAL_CEC_REGISTER_CALLBACKS 0U /* CEC register callback disabled */ | |||
| #define USE_HAL_CRYP_REGISTER_CALLBACKS 0U /* CRYP register callback disabled */ | |||
| #define USE_HAL_DAC_REGISTER_CALLBACKS 0U /* DAC register callback disabled */ | |||
| #define USE_HAL_DCMI_REGISTER_CALLBACKS 0U /* DCMI register callback disabled */ | |||
| #define USE_HAL_DFSDM_REGISTER_CALLBACKS 0U /* DFSDM register callback disabled */ | |||
| #define USE_HAL_DMA2D_REGISTER_CALLBACKS 0U /* DMA2D register callback disabled */ | |||
| #define USE_HAL_DSI_REGISTER_CALLBACKS 0U /* DSI register callback disabled */ | |||
| #define USE_HAL_ETH_REGISTER_CALLBACKS 0U /* ETH register callback disabled */ | |||
| #define USE_HAL_HASH_REGISTER_CALLBACKS 0U /* HASH register callback disabled */ | |||
| #define USE_HAL_HCD_REGISTER_CALLBACKS 0U /* HCD register callback disabled */ | |||
| #define USE_HAL_I2C_REGISTER_CALLBACKS 0U /* I2C register callback disabled */ | |||
| #define USE_HAL_FMPI2C_REGISTER_CALLBACKS 0U /* FMPI2C register callback disabled */ | |||
| #define USE_HAL_FMPSMBUS_REGISTER_CALLBACKS 0U /* FMPSMBUS register callback disabled */ | |||
| #define USE_HAL_I2S_REGISTER_CALLBACKS 0U /* I2S register callback disabled */ | |||
| #define USE_HAL_IRDA_REGISTER_CALLBACKS 0U /* IRDA register callback disabled */ | |||
| #define USE_HAL_LPTIM_REGISTER_CALLBACKS 0U /* LPTIM register callback disabled */ | |||
| #define USE_HAL_LTDC_REGISTER_CALLBACKS 0U /* LTDC register callback disabled */ | |||
| #define USE_HAL_MMC_REGISTER_CALLBACKS 0U /* MMC register callback disabled */ | |||
| #define USE_HAL_NAND_REGISTER_CALLBACKS 0U /* NAND register callback disabled */ | |||
| #define USE_HAL_NOR_REGISTER_CALLBACKS 0U /* NOR register callback disabled */ | |||
| #define USE_HAL_PCCARD_REGISTER_CALLBACKS 0U /* PCCARD register callback disabled */ | |||
| #define USE_HAL_PCD_REGISTER_CALLBACKS 0U /* PCD register callback disabled */ | |||
| #define USE_HAL_QSPI_REGISTER_CALLBACKS 0U /* QSPI register callback disabled */ | |||
| #define USE_HAL_RNG_REGISTER_CALLBACKS 0U /* RNG register callback disabled */ | |||
| #define USE_HAL_RTC_REGISTER_CALLBACKS 0U /* RTC register callback disabled */ | |||
| #define USE_HAL_SAI_REGISTER_CALLBACKS 0U /* SAI register callback disabled */ | |||
| #define USE_HAL_SD_REGISTER_CALLBACKS 0U /* SD register callback disabled */ | |||
| #define USE_HAL_SMARTCARD_REGISTER_CALLBACKS 0U /* SMARTCARD register callback disabled */ | |||
| #define USE_HAL_SDRAM_REGISTER_CALLBACKS 0U /* SDRAM register callback disabled */ | |||
| #define USE_HAL_SRAM_REGISTER_CALLBACKS 0U /* SRAM register callback disabled */ | |||
| #define USE_HAL_SPDIFRX_REGISTER_CALLBACKS 0U /* SPDIFRX register callback disabled */ | |||
| #define USE_HAL_SMBUS_REGISTER_CALLBACKS 0U /* SMBUS register callback disabled */ | |||
| #define USE_HAL_SPI_REGISTER_CALLBACKS 0U /* SPI register callback disabled */ | |||
| #define USE_HAL_TIM_REGISTER_CALLBACKS 0U /* TIM register callback disabled */ | |||
| #define USE_HAL_UART_REGISTER_CALLBACKS 0U /* UART register callback disabled */ | |||
| #define USE_HAL_USART_REGISTER_CALLBACKS 0U /* USART register callback disabled */ | |||
| #define USE_HAL_WWDG_REGISTER_CALLBACKS 0U /* WWDG register callback disabled */ | |||
| /* ########################## Assert Selection ############################## */ | |||
| /** | |||
| * @brief Uncomment the line below to expanse the "assert_param" macro in the | |||
| * HAL drivers code | |||
| */ | |||
| /* #define USE_FULL_ASSERT 1U */ | |||
| /* ################## Ethernet peripheral configuration ##################### */ | |||
| /* Section 1 : Ethernet peripheral configuration */ | |||
| /* MAC ADDRESS: MAC_ADDR0:MAC_ADDR1:MAC_ADDR2:MAC_ADDR3:MAC_ADDR4:MAC_ADDR5 */ | |||
| #define MAC_ADDR0 2U | |||
| #define MAC_ADDR1 0U | |||
| #define MAC_ADDR2 0U | |||
| #define MAC_ADDR3 0U | |||
| #define MAC_ADDR4 0U | |||
| #define MAC_ADDR5 0U | |||
| /* Definition of the Ethernet driver buffers size and count */ | |||
| #define ETH_RX_BUF_SIZE ETH_MAX_PACKET_SIZE /* buffer size for receive */ | |||
| #define ETH_TX_BUF_SIZE ETH_MAX_PACKET_SIZE /* buffer size for transmit */ | |||
| #define ETH_RXBUFNB 4U /* 4 Rx buffers of size ETH_RX_BUF_SIZE */ | |||
| #define ETH_TXBUFNB 4U /* 4 Tx buffers of size ETH_TX_BUF_SIZE */ | |||
| /* Section 2: PHY configuration section */ | |||
| /* DP83848_PHY_ADDRESS Address*/ | |||
| #define DP83848_PHY_ADDRESS 0x01U | |||
| /* PHY Reset delay these values are based on a 1 ms Systick interrupt*/ | |||
| #define PHY_RESET_DELAY 0x000000FFU | |||
| /* PHY Configuration delay */ | |||
| #define PHY_CONFIG_DELAY 0x00000FFFU | |||
| #define PHY_READ_TO 0x0000FFFFU | |||
| #define PHY_WRITE_TO 0x0000FFFFU | |||
| /* Section 3: Common PHY Registers */ | |||
| #define PHY_BCR ((uint16_t)0x0000U) /*!< Transceiver Basic Control Register */ | |||
| #define PHY_BSR ((uint16_t)0x0001U) /*!< Transceiver Basic Status Register */ | |||
| #define PHY_RESET ((uint16_t)0x8000U) /*!< PHY Reset */ | |||
| #define PHY_LOOPBACK ((uint16_t)0x4000U) /*!< Select loop-back mode */ | |||
| #define PHY_FULLDUPLEX_100M ((uint16_t)0x2100U) /*!< Set the full-duplex mode at 100 Mb/s */ | |||
| #define PHY_HALFDUPLEX_100M ((uint16_t)0x2000U) /*!< Set the half-duplex mode at 100 Mb/s */ | |||
| #define PHY_FULLDUPLEX_10M ((uint16_t)0x0100U) /*!< Set the full-duplex mode at 10 Mb/s */ | |||
| #define PHY_HALFDUPLEX_10M ((uint16_t)0x0000U) /*!< Set the half-duplex mode at 10 Mb/s */ | |||
| #define PHY_AUTONEGOTIATION ((uint16_t)0x1000U) /*!< Enable auto-negotiation function */ | |||
| #define PHY_RESTART_AUTONEGOTIATION ((uint16_t)0x0200U) /*!< Restart auto-negotiation function */ | |||
| #define PHY_POWERDOWN ((uint16_t)0x0800U) /*!< Select the power down mode */ | |||
| #define PHY_ISOLATE ((uint16_t)0x0400U) /*!< Isolate PHY from MII */ | |||
| #define PHY_AUTONEGO_COMPLETE ((uint16_t)0x0020U) /*!< Auto-Negotiation process completed */ | |||
| #define PHY_LINKED_STATUS ((uint16_t)0x0004U) /*!< Valid link established */ | |||
| #define PHY_JABBER_DETECTION ((uint16_t)0x0002U) /*!< Jabber condition detected */ | |||
| /* Section 4: Extended PHY Registers */ | |||
| #define PHY_SR ((uint16_t)0x10U) /*!< PHY status register Offset */ | |||
| #define PHY_SPEED_STATUS ((uint16_t)0x0002U) /*!< PHY Speed mask */ | |||
| #define PHY_DUPLEX_STATUS ((uint16_t)0x0004U) /*!< PHY Duplex mask */ | |||
| /* ################## SPI peripheral configuration ########################## */ | |||
| /* CRC FEATURE: Use to activate CRC feature inside HAL SPI Driver | |||
| * Activated: CRC code is present inside driver | |||
| * Deactivated: CRC code cleaned from driver | |||
| */ | |||
| #define USE_SPI_CRC 0U | |||
| /* Includes ------------------------------------------------------------------*/ | |||
| /** | |||
| * @brief Include module's header file | |||
| */ | |||
| #ifdef HAL_RCC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_rcc.h" | |||
| #endif /* HAL_RCC_MODULE_ENABLED */ | |||
| #ifdef HAL_GPIO_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_gpio.h" | |||
| #endif /* HAL_GPIO_MODULE_ENABLED */ | |||
| #ifdef HAL_EXTI_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_exti.h" | |||
| #endif /* HAL_EXTI_MODULE_ENABLED */ | |||
| #ifdef HAL_DMA_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_dma.h" | |||
| #endif /* HAL_DMA_MODULE_ENABLED */ | |||
| #ifdef HAL_CORTEX_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_cortex.h" | |||
| #endif /* HAL_CORTEX_MODULE_ENABLED */ | |||
| #ifdef HAL_ADC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_adc.h" | |||
| #endif /* HAL_ADC_MODULE_ENABLED */ | |||
| #ifdef HAL_CAN_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_can.h" | |||
| #endif /* HAL_CAN_MODULE_ENABLED */ | |||
| #ifdef HAL_CAN_LEGACY_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_can_legacy.h" | |||
| #endif /* HAL_CAN_LEGACY_MODULE_ENABLED */ | |||
| #ifdef HAL_CRC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_crc.h" | |||
| #endif /* HAL_CRC_MODULE_ENABLED */ | |||
| #ifdef HAL_CRYP_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_cryp.h" | |||
| #endif /* HAL_CRYP_MODULE_ENABLED */ | |||
| #ifdef HAL_DMA2D_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_dma2d.h" | |||
| #endif /* HAL_DMA2D_MODULE_ENABLED */ | |||
| #ifdef HAL_DAC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_dac.h" | |||
| #endif /* HAL_DAC_MODULE_ENABLED */ | |||
| #ifdef HAL_DCMI_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_dcmi.h" | |||
| #endif /* HAL_DCMI_MODULE_ENABLED */ | |||
| #ifdef HAL_ETH_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_eth.h" | |||
| #endif /* HAL_ETH_MODULE_ENABLED */ | |||
| #ifdef HAL_FLASH_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_flash.h" | |||
| #endif /* HAL_FLASH_MODULE_ENABLED */ | |||
| #ifdef HAL_SRAM_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_sram.h" | |||
| #endif /* HAL_SRAM_MODULE_ENABLED */ | |||
| #ifdef HAL_NOR_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_nor.h" | |||
| #endif /* HAL_NOR_MODULE_ENABLED */ | |||
| #ifdef HAL_NAND_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_nand.h" | |||
| #endif /* HAL_NAND_MODULE_ENABLED */ | |||
| #ifdef HAL_PCCARD_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_pccard.h" | |||
| #endif /* HAL_PCCARD_MODULE_ENABLED */ | |||
| #ifdef HAL_SDRAM_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_sdram.h" | |||
| #endif /* HAL_SDRAM_MODULE_ENABLED */ | |||
| #ifdef HAL_HASH_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_hash.h" | |||
| #endif /* HAL_HASH_MODULE_ENABLED */ | |||
| #ifdef HAL_I2C_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_i2c.h" | |||
| #endif /* HAL_I2C_MODULE_ENABLED */ | |||
| #ifdef HAL_SMBUS_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_smbus.h" | |||
| #endif /* HAL_SMBUS_MODULE_ENABLED */ | |||
| #ifdef HAL_I2S_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_i2s.h" | |||
| #endif /* HAL_I2S_MODULE_ENABLED */ | |||
| #ifdef HAL_IWDG_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_iwdg.h" | |||
| #endif /* HAL_IWDG_MODULE_ENABLED */ | |||
| #ifdef HAL_LTDC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_ltdc.h" | |||
| #endif /* HAL_LTDC_MODULE_ENABLED */ | |||
| #ifdef HAL_PWR_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_pwr.h" | |||
| #endif /* HAL_PWR_MODULE_ENABLED */ | |||
| #ifdef HAL_RNG_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_rng.h" | |||
| #endif /* HAL_RNG_MODULE_ENABLED */ | |||
| #ifdef HAL_RTC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_rtc.h" | |||
| #endif /* HAL_RTC_MODULE_ENABLED */ | |||
| #ifdef HAL_SAI_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_sai.h" | |||
| #endif /* HAL_SAI_MODULE_ENABLED */ | |||
| #ifdef HAL_SD_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_sd.h" | |||
| #endif /* HAL_SD_MODULE_ENABLED */ | |||
| #ifdef HAL_SPI_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_spi.h" | |||
| #endif /* HAL_SPI_MODULE_ENABLED */ | |||
| #ifdef HAL_TIM_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_tim.h" | |||
| #endif /* HAL_TIM_MODULE_ENABLED */ | |||
| #ifdef HAL_UART_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_uart.h" | |||
| #endif /* HAL_UART_MODULE_ENABLED */ | |||
| #ifdef HAL_USART_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_usart.h" | |||
| #endif /* HAL_USART_MODULE_ENABLED */ | |||
| #ifdef HAL_IRDA_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_irda.h" | |||
| #endif /* HAL_IRDA_MODULE_ENABLED */ | |||
| #ifdef HAL_SMARTCARD_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_smartcard.h" | |||
| #endif /* HAL_SMARTCARD_MODULE_ENABLED */ | |||
| #ifdef HAL_WWDG_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_wwdg.h" | |||
| #endif /* HAL_WWDG_MODULE_ENABLED */ | |||
| #ifdef HAL_PCD_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_pcd.h" | |||
| #endif /* HAL_PCD_MODULE_ENABLED */ | |||
| #ifdef HAL_HCD_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_hcd.h" | |||
| #endif /* HAL_HCD_MODULE_ENABLED */ | |||
| #ifdef HAL_DSI_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_dsi.h" | |||
| #endif /* HAL_DSI_MODULE_ENABLED */ | |||
| #ifdef HAL_QSPI_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_qspi.h" | |||
| #endif /* HAL_QSPI_MODULE_ENABLED */ | |||
| #ifdef HAL_CEC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_cec.h" | |||
| #endif /* HAL_CEC_MODULE_ENABLED */ | |||
| #ifdef HAL_FMPI2C_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_fmpi2c.h" | |||
| #endif /* HAL_FMPI2C_MODULE_ENABLED */ | |||
| #ifdef HAL_FMPSMBUS_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_fmpsmbus.h" | |||
| #endif /* HAL_FMPSMBUS_MODULE_ENABLED */ | |||
| #ifdef HAL_SPDIFRX_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_spdifrx.h" | |||
| #endif /* HAL_SPDIFRX_MODULE_ENABLED */ | |||
| #ifdef HAL_DFSDM_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_dfsdm.h" | |||
| #endif /* HAL_DFSDM_MODULE_ENABLED */ | |||
| #ifdef HAL_LPTIM_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_lptim.h" | |||
| #endif /* HAL_LPTIM_MODULE_ENABLED */ | |||
| #ifdef HAL_MMC_MODULE_ENABLED | |||
| #include "stm32f4xx_hal_mmc.h" | |||
| #endif /* HAL_MMC_MODULE_ENABLED */ | |||
| /* Exported macro ------------------------------------------------------------*/ | |||
| #ifdef USE_FULL_ASSERT | |||
| /** | |||
| * @brief The assert_param macro is used for function's parameters check. | |||
| * @param expr If expr is false, it calls assert_failed function | |||
| * which reports the name of the source file and the source | |||
| * line number of the call that failed. | |||
| * If expr is true, it returns no value. | |||
| * @retval None | |||
| */ | |||
| #define assert_param(expr) ((expr) ? (void)0U : assert_failed((uint8_t *)__FILE__, __LINE__)) | |||
| /* Exported functions ------------------------------------------------------- */ | |||
| void assert_failed(uint8_t* file, uint32_t line); | |||
| #else | |||
| #define assert_param(expr) ((void)0U) | |||
| #endif /* USE_FULL_ASSERT */ | |||
| #ifdef __cplusplus | |||
| } | |||
| #endif | |||
| #endif /* __STM32F4xx_HAL_CONF_H */ | |||
| /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ | |||
| @@ -0,0 +1,69 @@ | |||
| /* USER CODE BEGIN Header */ | |||
| /** | |||
| ****************************************************************************** | |||
| * @file stm32f4xx_it.h | |||
| * @brief This file contains the headers of the interrupt handlers. | |||
| ****************************************************************************** | |||
| * @attention | |||
| * | |||
| * <h2><center>© Copyright (c) 2026 STMicroelectronics. | |||
| * All rights reserved.</center></h2> | |||
| * | |||
| * This software component is licensed by ST under BSD 3-Clause license, | |||
| * the "License"; You may not use this file except in compliance with the | |||
| * License. You may obtain a copy of the License at: | |||
| * opensource.org/licenses/BSD-3-Clause | |||
| * | |||
| ****************************************************************************** | |||
| */ | |||
| /* USER CODE END Header */ | |||
| /* Define to prevent recursive inclusion -------------------------------------*/ | |||
| #ifndef __STM32F4xx_IT_H | |||
| #define __STM32F4xx_IT_H | |||
| #ifdef __cplusplus | |||
| extern "C" { | |||
| #endif | |||
| /* Private includes ----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN Includes */ | |||
| /* USER CODE END Includes */ | |||
| /* Exported types ------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN ET */ | |||
| /* USER CODE END ET */ | |||
| /* Exported constants --------------------------------------------------------*/ | |||
| /* USER CODE BEGIN EC */ | |||
| /* USER CODE END EC */ | |||
| /* Exported macro ------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN EM */ | |||
| /* USER CODE END EM */ | |||
| /* Exported functions prototypes ---------------------------------------------*/ | |||
| void NMI_Handler(void); | |||
| void HardFault_Handler(void); | |||
| void MemManage_Handler(void); | |||
| void BusFault_Handler(void); | |||
| void UsageFault_Handler(void); | |||
| void SVC_Handler(void); | |||
| void DebugMon_Handler(void); | |||
| void PendSV_Handler(void); | |||
| void SysTick_Handler(void); | |||
| /* USER CODE BEGIN EFP */ | |||
| /* USER CODE END EFP */ | |||
| #ifdef __cplusplus | |||
| } | |||
| #endif | |||
| #endif /* __STM32F4xx_IT_H */ | |||
| /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ | |||
| @@ -0,0 +1,315 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * MODBUS RTU SLAVE PROTOCOL | |||
| * | |||
| * Filename : modbus.c | |||
| ********************************************************************************************************* | |||
| */ | |||
| #include "modbus.h" | |||
| /* Modbus CRC16 高位表 */ | |||
| static const uint8_t Modbus_CRCHiTable[] = { | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, | |||
| 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, 0x80, 0x41, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, | |||
| 0x81, 0x40, 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, 0x00, 0xC1, 0x81, 0x40, | |||
| 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, | |||
| 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, 0x00, 0xC1, 0x81, 0x40, | |||
| 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, | |||
| 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, 0x80, 0x41, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x00, 0xC1, | |||
| 0x81, 0x40, 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, | |||
| 0x00, 0xC1, 0x81, 0x40, 0x01, 0xC0, 0x80, 0x41, 0x01, 0xC0, | |||
| 0x80, 0x41, 0x00, 0xC1, 0x81, 0x40 | |||
| }; | |||
| /* Modbus CRC16 低位表 */ | |||
| static const uint8_t Modbus_CRCLoTable[] = { | |||
| 0x00, 0xC0, 0xC1, 0x01, 0xC3, 0x03, 0x02, 0xC2, 0xC6, 0x06, | |||
| 0x07, 0xC7, 0x05, 0xC5, 0xC4, 0x04, 0xCC, 0x0C, 0x0D, 0xCD, | |||
| 0x0F, 0xCF, 0xCE, 0x0E, 0x0A, 0xCA, 0xCB, 0x0B, 0xC9, 0x09, | |||
| 0x08, 0xC8, 0xD8, 0x18, 0x19, 0xD9, 0x1B, 0xDB, 0xDA, 0x1A, | |||
| 0x1E, 0xDE, 0xDF, 0x1F, 0xDD, 0x1D, 0x1C, 0xDC, 0x14, 0xD4, | |||
| 0xD5, 0x15, 0xD7, 0x17, 0x16, 0xD6, 0xD2, 0x12, 0x13, 0xD3, | |||
| 0x11, 0xD1, 0xD0, 0x10, 0xF0, 0x30, 0x31, 0xF1, 0x33, 0xF3, | |||
| 0xF2, 0x32, 0x36, 0xF6, 0xF7, 0x37, 0xF5, 0x35, 0x34, 0xF4, | |||
| 0x3C, 0xFC, 0xFD, 0x3D, 0xFF, 0x3F, 0x3E, 0xFE, 0xFA, 0x3A, | |||
| 0x3B, 0xFB, 0x39, 0xF9, 0xF8, 0x38, 0x28, 0xE8, 0xE9, 0x29, | |||
| 0xEB, 0x2B, 0x2A, 0xEA, 0xEE, 0x2E, 0x2F, 0xEF, 0x2D, 0xED, | |||
| 0xEC, 0x2C, 0xE4, 0x24, 0x25, 0xE5, 0x27, 0xE7, 0xE6, 0x26, | |||
| 0x22, 0xE2, 0xE3, 0x23, 0xE1, 0x21, 0x20, 0xE0, 0xA0, 0x60, | |||
| 0x61, 0xA1, 0x63, 0xA3, 0xA2, 0x62, 0x66, 0xA6, 0xA7, 0x67, | |||
| 0xA5, 0x65, 0x64, 0xA4, 0x6C, 0xAC, 0xAD, 0x6D, 0xAF, 0x6F, | |||
| 0x6E, 0xAE, 0xAA, 0x6A, 0x6B, 0xAB, 0x69, 0xA9, 0xA8, 0x68, | |||
| 0x78, 0xB8, 0xB9, 0x79, 0xBB, 0x7B, 0x7A, 0xBA, 0xBE, 0x7E, | |||
| 0x7F, 0xBF, 0x7D, 0xBD, 0xBC, 0x7C, 0xB4, 0x74, 0x75, 0xB5, | |||
| 0x77, 0xB7, 0xB6, 0x76, 0x72, 0xB2, 0xB3, 0x73, 0xB1, 0x71, | |||
| 0x70, 0xB0, 0x50, 0x90, 0x91, 0x51, 0x93, 0x53, 0x52, 0x92, | |||
| 0x96, 0x56, 0x57, 0x97, 0x55, 0x95, 0x94, 0x54, 0x9C, 0x5C, | |||
| 0x5D, 0x9D, 0x5F, 0x9F, 0x9E, 0x5E, 0x5A, 0x9A, 0x9B, 0x5B, | |||
| 0x99, 0x59, 0x58, 0x98, 0x88, 0x48, 0x49, 0x89, 0x4B, 0x8B, | |||
| 0x8A, 0x4A, 0x4E, 0x8E, 0x8F, 0x4F, 0x8D, 0x4D, 0x4C, 0x8C, | |||
| 0x44, 0x84, 0x85, 0x45, 0x87, 0x47, 0x46, 0x86, 0x82, 0x42, | |||
| 0x43, 0x83, 0x41, 0x81, 0x80, 0x40 | |||
| }; | |||
| /* | |||
| ********************************************************************************************************* | |||
| * CRC16 计算 | |||
| ********************************************************************************************************* | |||
| */ | |||
| uint16_t Modbus_CRC16 (uint8_t *buf, uint16_t len) | |||
| { | |||
| uint8_t crc_hi = 0xFFu; | |||
| uint8_t crc_lo = 0xFFu; | |||
| uint16_t i; | |||
| uint8_t idx; | |||
| for (i = 0u; i < len; i++) { | |||
| idx = crc_hi ^ buf[i]; | |||
| crc_hi = crc_lo ^ Modbus_CRCHiTable[idx]; | |||
| crc_lo = Modbus_CRCLoTable[idx]; | |||
| } | |||
| return ((uint16_t)crc_hi << 8u) | (uint16_t)crc_lo; | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * 从站初始化 | |||
| ********************************************************************************************************* | |||
| */ | |||
| void Modbus_SlaveInit (Modbus_Slave_t *slave, uint8_t addr) | |||
| { | |||
| uint16_t i; | |||
| slave->slave_addr = addr; | |||
| /* 清空保持寄存器 */ | |||
| for (i = 0u; i < MODBUS_REG_COUNT; i++) { | |||
| slave->holding_regs[i] = 0u; | |||
| } | |||
| /* 设置默认测试值 */ | |||
| slave->holding_regs[0] = 0x1234u; /* 寄存器 0: 0x1234 */ | |||
| slave->holding_regs[1] = 0x5678u; /* 寄存器 1: 0x5678 */ | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * Modbus 帧处理 (从站) | |||
| * | |||
| * 返回: 0 = 成功 | |||
| * -1 = 帧错误(不回复) | |||
| * 1 = 异常响应 | |||
| ********************************************************************************************************* | |||
| */ | |||
| int8_t Modbus_ProcessFrame (Modbus_Slave_t *slave, | |||
| uint8_t *rx_buf, uint16_t rx_len, | |||
| uint8_t *tx_buf, uint16_t *tx_len) | |||
| { | |||
| uint8_t slave_addr; | |||
| uint8_t func_code; | |||
| uint16_t crc_rx; | |||
| uint16_t crc_calc; | |||
| uint16_t reg_addr; | |||
| uint16_t reg_count; | |||
| uint16_t byte_cnt; | |||
| uint16_t i; | |||
| uint16_t val; | |||
| *tx_len = 0u; | |||
| /* 帧至少需要 4 字节: 地址 + 功能码 + CRC(2) */ | |||
| if (rx_len < 4u) { | |||
| return -1; | |||
| } | |||
| /* CRC 校验 */ | |||
| crc_calc = Modbus_CRC16(rx_buf, rx_len - 2u); | |||
| crc_rx = ((uint16_t)rx_buf[rx_len - 2u] << 8u) | | |||
| (uint16_t)rx_buf[rx_len - 1u]; | |||
| if (crc_calc != crc_rx) { | |||
| return -1; | |||
| } | |||
| slave_addr = rx_buf[0]; | |||
| func_code = rx_buf[1]; | |||
| /* 地址不匹配,不响应 */ | |||
| if (slave_addr != slave->slave_addr && slave_addr != 0u) { | |||
| return -1; | |||
| } | |||
| switch (func_code) { | |||
| /* | |||
| ***************************************************************************** | |||
| * 功能码 0x03: 读保持寄存器 | |||
| * 请求: ADDR FC START_H START_L COUNT_H COUNT_L CRC_L CRC_H | |||
| * 响应: ADDR FC BYTE_CNT DATA_H DATA_L ... CRC_L CRC_H | |||
| ***************************************************************************** | |||
| */ | |||
| case MODBUS_FC_READ_HOLDING_REGS: | |||
| if (rx_len != 8u) { | |||
| goto exception_illegal_data_val; | |||
| } | |||
| reg_addr = ((uint16_t)rx_buf[2] << 8u) | (uint16_t)rx_buf[3]; | |||
| reg_count = ((uint16_t)rx_buf[4] << 8u) | (uint16_t)rx_buf[5]; | |||
| if (reg_count == 0u || reg_count > 125u) { | |||
| goto exception_illegal_data_val; | |||
| } | |||
| if ((reg_addr + reg_count) > MODBUS_REG_COUNT) { | |||
| goto exception_illegal_data_addr; | |||
| } | |||
| /* 构建响应 */ | |||
| byte_cnt = reg_count * 2u; | |||
| tx_buf[0] = slave->slave_addr; | |||
| tx_buf[1] = func_code; | |||
| tx_buf[2] = (uint8_t)byte_cnt; | |||
| for (i = 0u; i < reg_count; i++) { | |||
| val = slave->holding_regs[reg_addr + i]; | |||
| tx_buf[3u + i * 2u] = (uint8_t)(val >> 8u); | |||
| tx_buf[3u + i * 2u + 1u] = (uint8_t)(val & 0xFFu); | |||
| } | |||
| *tx_len = 3u + byte_cnt; | |||
| break; | |||
| /* | |||
| ***************************************************************************** | |||
| * 功能码 0x06: 写单个寄存器 | |||
| * 请求: ADDR FC REG_H REG_L DATA_H DATA_L CRC_L CRC_H | |||
| * 响应: 回显请求 | |||
| ***************************************************************************** | |||
| */ | |||
| case MODBUS_FC_WRITE_SINGLE_REG: | |||
| if (rx_len != 8u) { | |||
| goto exception_illegal_data_val; | |||
| } | |||
| reg_addr = ((uint16_t)rx_buf[2] << 8u) | (uint16_t)rx_buf[3]; | |||
| val = ((uint16_t)rx_buf[4] << 8u) | (uint16_t)rx_buf[5]; | |||
| if (reg_addr >= MODBUS_REG_COUNT) { | |||
| goto exception_illegal_data_addr; | |||
| } | |||
| slave->holding_regs[reg_addr] = val; | |||
| /* 回显请求帧 */ | |||
| for (i = 0u; i < rx_len; i++) { | |||
| tx_buf[i] = rx_buf[i]; | |||
| } | |||
| *tx_len = rx_len; | |||
| break; | |||
| /* | |||
| ***************************************************************************** | |||
| * 功能码 0x10: 写多个寄存器 | |||
| * 请求: ADDR FC START_H START_L COUNT_H COUNT_L BYTE_CNT DATA... CRC | |||
| * 响应: ADDR FC START_H START_L COUNT_H COUNT_L CRC | |||
| ***************************************************************************** | |||
| */ | |||
| case MODBUS_FC_WRITE_MULTIPLE_REGS: | |||
| if (rx_len < 9u) { | |||
| goto exception_illegal_data_val; | |||
| } | |||
| reg_addr = ((uint16_t)rx_buf[2] << 8u) | (uint16_t)rx_buf[3]; | |||
| reg_count = ((uint16_t)rx_buf[4] << 8u) | (uint16_t)rx_buf[5]; | |||
| byte_cnt = (uint16_t)rx_buf[6]; | |||
| if (reg_count == 0u || reg_count > 123u) { | |||
| goto exception_illegal_data_val; | |||
| } | |||
| if (byte_cnt != (reg_count * 2u)) { | |||
| goto exception_illegal_data_val; | |||
| } | |||
| if ((reg_addr + reg_count) > MODBUS_REG_COUNT) { | |||
| goto exception_illegal_data_addr; | |||
| } | |||
| for (i = 0u; i < reg_count; i++) { | |||
| val = ((uint16_t)rx_buf[7u + i * 2u] << 8u) | | |||
| (uint16_t)rx_buf[7u + i * 2u + 1u]; | |||
| slave->holding_regs[reg_addr + i] = val; | |||
| } | |||
| /* 构建响应: ADDR FC START_H START_L COUNT_H COUNT_L */ | |||
| tx_buf[0] = slave->slave_addr; | |||
| tx_buf[1] = func_code; | |||
| tx_buf[2] = rx_buf[2]; | |||
| tx_buf[3] = rx_buf[3]; | |||
| tx_buf[4] = rx_buf[4]; | |||
| tx_buf[5] = rx_buf[5]; | |||
| *tx_len = 6u; | |||
| break; | |||
| default: | |||
| /* 不支持的功能码 */ | |||
| goto exception_illegal_func; | |||
| } | |||
| /* 追加 CRC */ | |||
| { | |||
| uint16_t crc; | |||
| crc = Modbus_CRC16(tx_buf, *tx_len); | |||
| tx_buf[*tx_len] = (uint8_t)(crc >> 8u); | |||
| tx_buf[*tx_len + 1u] = (uint8_t)(crc & 0xFFu); | |||
| *tx_len += 2u; | |||
| } | |||
| return 0; | |||
| /* ------ 异常响应 ------ */ | |||
| exception_illegal_func: | |||
| tx_buf[0] = slave->slave_addr; | |||
| tx_buf[1] = func_code | 0x80u; | |||
| tx_buf[2] = MODBUS_EXCEPTION_ILLEGAL_FUNC; | |||
| goto exception_crc; | |||
| exception_illegal_data_addr: | |||
| tx_buf[0] = slave->slave_addr; | |||
| tx_buf[1] = func_code | 0x80u; | |||
| tx_buf[2] = MODBUS_EXCEPTION_ILLEGAL_DATA_ADDR; | |||
| goto exception_crc; | |||
| exception_illegal_data_val: | |||
| tx_buf[0] = slave->slave_addr; | |||
| tx_buf[1] = func_code | 0x80u; | |||
| tx_buf[2] = MODBUS_EXCEPTION_ILLEGAL_DATA_VALUE; | |||
| exception_crc: | |||
| { | |||
| uint16_t crc; | |||
| crc = Modbus_CRC16(tx_buf, 3u); | |||
| tx_buf[3] = (uint8_t)(crc >> 8u); | |||
| tx_buf[4] = (uint8_t)(crc & 0xFFu); | |||
| *tx_len = 5u; | |||
| } | |||
| return 1; | |||
| } | |||
| @@ -0,0 +1,56 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * MODBUS RTU SLAVE PROTOCOL | |||
| * | |||
| * Filename : modbus.h | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef __MODBUS_H | |||
| #define __MODBUS_H | |||
| #include "main.h" | |||
| /* Modbus RTU 帧长度限制 */ | |||
| #define MODBUS_RX_BUF_SIZE 256u | |||
| #define MODBUS_TX_BUF_SIZE 256u | |||
| #define MODBUS_REG_COUNT 10u /* 保持寄存器数量 */ | |||
| /* Modbus 功能码 */ | |||
| #define MODBUS_FC_READ_HOLDING_REGS 0x03u | |||
| #define MODBUS_FC_WRITE_SINGLE_REG 0x06u | |||
| #define MODBUS_FC_WRITE_MULTIPLE_REGS 0x10u | |||
| /* Modbus 异常码 */ | |||
| #define MODBUS_EXCEPTION_ILLEGAL_FUNC 0x01u | |||
| #define MODBUS_EXCEPTION_ILLEGAL_DATA_ADDR 0x02u | |||
| #define MODBUS_EXCEPTION_ILLEGAL_DATA_VALUE 0x03u | |||
| /* Modbus 默认从站地址 */ | |||
| #define MODBUS_SLAVE_ADDR_DEFAULT 0x01u | |||
| /* 3.5字符超时 (tick数, @1ms) */ | |||
| #define MODBUS_T35_TIMEOUT 5u | |||
| /* | |||
| ********************************************************************************************************* | |||
| * MODBUS 从站结构体 | |||
| ********************************************************************************************************* | |||
| */ | |||
| typedef struct { | |||
| uint8_t slave_addr; | |||
| uint16_t holding_regs[MODBUS_REG_COUNT]; /* 保持寄存器 */ | |||
| } Modbus_Slave_t; | |||
| /* | |||
| ********************************************************************************************************* | |||
| * MODBUS 从站公开函数 | |||
| ********************************************************************************************************* | |||
| */ | |||
| void Modbus_SlaveInit (Modbus_Slave_t *slave, uint8_t addr); | |||
| uint16_t Modbus_CRC16 (uint8_t *buf, uint16_t len); | |||
| int8_t Modbus_ProcessFrame (Modbus_Slave_t *slave, | |||
| uint8_t *rx_buf, uint16_t rx_len, | |||
| uint8_t *tx_buf, uint16_t *tx_len); | |||
| #endif /* __MODBUS_H */ | |||
| @@ -0,0 +1,81 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * APPLICATION CONFIGURATION | |||
| * | |||
| * Filename : app_cfg.h | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef _APP_CFG_H_ | |||
| #define _APP_CFG_H_ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II CPU CONFIGURATION | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* Kernel aware interrupt priority boundary */ | |||
| #define CPU_CFG_KA_IPL_BOUNDARY 4u | |||
| /* STM32F4 uses 4-bits NVIC priority (bits 7:4) */ | |||
| #define CPU_CFG_NVIC_PRIO_BITS 4u | |||
| /* | |||
| ********************************************************************************************************* | |||
| * INCLUDE FILES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #include <stdio.h> | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TRACE / DEBUG CONFIGURATION | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef TRACE_LEVEL_OFF | |||
| #define TRACE_LEVEL_OFF 0u | |||
| #endif | |||
| #ifndef TRACE_LEVEL_INFO | |||
| #define TRACE_LEVEL_INFO 1u | |||
| #endif | |||
| #ifndef TRACE_LEVEL_DBG | |||
| #define TRACE_LEVEL_DBG 2u | |||
| #endif | |||
| #define APP_TRACE_LEVEL TRACE_LEVEL_OFF | |||
| #define APP_TRACE printf | |||
| #define APP_TRACE_INFO(x) ((APP_TRACE_LEVEL >= TRACE_LEVEL_INFO) ? (void)(APP_TRACE x) : (void)0) | |||
| #define APP_TRACE_DBG(x) ((APP_TRACE_LEVEL >= TRACE_LEVEL_DBG) ? (void)(APP_TRACE x) : (void)0) | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK PRIORITIES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define APP_TASK_START_PRIO 5u | |||
| #define APP_TASK_LED_PRIO 6u | |||
| #define APP_TASK_MODBUS_PRIO 4u | |||
| #define OS_TASK_TMR_PRIO (OS_LOWEST_PRIO - 2u) | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK STACK SIZES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define APP_TASK_START_STK_SIZE 128u | |||
| #define APP_TASK_LED_STK_SIZE 128u | |||
| #endif | |||
| @@ -0,0 +1,253 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * EXAMPLE CODE | |||
| * | |||
| * This file is provided as an example on how to use Micrium products. | |||
| * | |||
| * Please feel free to use any application code labeled as 'EXAMPLE CODE' in | |||
| * your application products. Example code may be used as is, in whole or in | |||
| * part, or may be used as a reference only. This file can be modified as | |||
| * required to meet the end-product requirements. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * uC/OS-II | |||
| * Application Hooks | |||
| * | |||
| * Filename : app_hooks.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * INCLUDE FILES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #include <os.h> | |||
| /* | |||
| ********************************************************************************************************* | |||
| * EXTERN GLOBAL VARIABLES | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL CONSTANTS | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL DATA TYPES | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL TABLES | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL GLOBAL VARIABLES | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL FUNCTION PROTOTYPES | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| ********************************************************************************************************* | |||
| ** GLOBAL FUNCTIONS | |||
| ********************************************************************************************************* | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| ********************************************************************************************************* | |||
| ** uC/OS-II APP HOOKS | |||
| ********************************************************************************************************* | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if (OS_APP_HOOKS_EN > 0) | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK CREATION HOOK (APPLICATION) | |||
| * | |||
| * Description : This function is called when a task is created. | |||
| * | |||
| * Argument(s) : ptcb is a pointer to the task control block of the task being created. | |||
| * | |||
| * Note(s) : (1) Interrupts are disabled during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void App_TaskCreateHook (OS_TCB *ptcb) | |||
| { | |||
| (void)ptcb; | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK DELETION HOOK (APPLICATION) | |||
| * | |||
| * Description : This function is called when a task is deleted. | |||
| * | |||
| * Argument(s) : ptcb is a pointer to the task control block of the task being deleted. | |||
| * | |||
| * Note(s) : (1) Interrupts are disabled during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void App_TaskDelHook (OS_TCB *ptcb) | |||
| { | |||
| (void)ptcb; | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * IDLE TASK HOOK (APPLICATION) | |||
| * | |||
| * Description : This function is called by OSTaskIdleHook(), which is called by the idle task. This hook | |||
| * has been added to allow you to do such things as STOP the CPU to conserve power. | |||
| * | |||
| * Argument(s) : none. | |||
| * | |||
| * Note(s) : (1) Interrupts are enabled during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_VERSION >= 251 | |||
| void App_TaskIdleHook (void) | |||
| { | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * STATISTIC TASK HOOK (APPLICATION) | |||
| * | |||
| * Description : This function is called by OSTaskStatHook(), which is called every second by uC/OS-II's | |||
| * statistics task. This allows your application to add functionality to the statistics task. | |||
| * | |||
| * Argument(s) : none. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void App_TaskStatHook (void) | |||
| { | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK RETURN HOOK (APPLICATION) | |||
| * | |||
| * Description: This function is called if a task accidentally returns. In other words, a task should | |||
| * either be an infinite loop or delete itself when done. | |||
| * | |||
| * Arguments : ptcb is a pointer to the task control block of the task that is returning. | |||
| * | |||
| * Note(s) : none | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_VERSION >= 289 | |||
| void App_TaskReturnHook (OS_TCB *ptcb) | |||
| { | |||
| (void)ptcb; | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK SWITCH HOOK (APPLICATION) | |||
| * | |||
| * Description : This function is called when a task switch is performed. This allows you to perform other | |||
| * operations during a context switch. | |||
| * | |||
| * Argument(s) : none. | |||
| * | |||
| * Note(s) : (1) Interrupts are disabled during this call. | |||
| * | |||
| * (2) It is assumed that the global pointer 'OSTCBHighRdy' points to the TCB of the task that | |||
| * will be 'switched in' (i.e. the highest priority task) and, 'OSTCBCur' points to the | |||
| * task being switched out (i.e. the preempted task). | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_TASK_SW_HOOK_EN > 0 | |||
| void App_TaskSwHook (void) | |||
| { | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * OS_TCBInit() HOOK (APPLICATION) | |||
| * | |||
| * Description : This function is called by OSTCBInitHook(), which is called by OS_TCBInit() after setting | |||
| * up most of the TCB. | |||
| * | |||
| * Argument(s) : ptcb is a pointer to the TCB of the task being created. | |||
| * | |||
| * Note(s) : (1) Interrupts may or may not be ENABLED during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_VERSION >= 204 | |||
| void App_TCBInitHook (OS_TCB *ptcb) | |||
| { | |||
| (void)ptcb; | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TICK HOOK (APPLICATION) | |||
| * | |||
| * Description : This function is called every tick. | |||
| * | |||
| * Argument(s) : none. | |||
| * | |||
| * Note(s) : (1) Interrupts may or may not be ENABLED during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_TIME_TICK_HOOK_EN > 0 | |||
| void App_TimeTickHook (void) | |||
| { | |||
| } | |||
| #endif | |||
| #endif | |||
| @@ -0,0 +1,154 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * uC/OS-II Configuration File for V2.9x | |||
| * | |||
| * Filename : os_cfg.h | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_CFG_H | |||
| #define OS_CFG_H | |||
| /* ---------------------- MISCELLANEOUS ----------------------- */ | |||
| #define OS_APP_HOOKS_EN 1u /* Application-defined hooks are called from the uC/OS-II hooks */ | |||
| #define OS_ARG_CHK_EN 1u /* Enable (1) or Disable (0) argument checking */ | |||
| #define OS_CPU_HOOKS_EN 1u /* uC/OS-II hooks are found in the processor port files */ | |||
| #define OS_DEBUG_EN 1u /* Enable(1) debug variables */ | |||
| #define OS_EVENT_MULTI_EN 1u /* Include code for OSEventPendMulti() */ | |||
| #define OS_EVENT_NAME_EN 1u /* Enable names for Sem, Mutex, Mbox and Q */ | |||
| #define OS_LOWEST_PRIO 63u /* Defines the lowest priority that can be assigned ... */ | |||
| /* ... MUST NEVER be higher than 254! */ | |||
| #define OS_MAX_EVENTS 10u /* Max. number of event control blocks in your application */ | |||
| #define OS_MAX_FLAGS 5u /* Max. number of Event Flag Groups in your application */ | |||
| #define OS_MAX_MEM_PART 5u /* Max. number of memory partitions */ | |||
| #define OS_MAX_QS 4u /* Max. number of queue control blocks in your application */ | |||
| #define OS_MAX_TASKS 20u /* Max. number of tasks in your application, MUST be >= 2 */ | |||
| #define OS_SCHED_LOCK_EN 1u /* Include code for OSSchedLock() and OSSchedUnlock() */ | |||
| #define OS_TICK_STEP_EN 1u /* Enable tick stepping feature for uC/OS-View */ | |||
| #define OS_TICKS_PER_SEC 1000u /* Set the number of ticks in one second (matching HAL 1ms) */ | |||
| #define OS_TLS_TBL_SIZE 0u /* Size of Thread-Local Storage Table */ | |||
| /* --------------------- TASK STACK SIZE ---------------------- */ | |||
| #define OS_TASK_TMR_STK_SIZE 128u /* Timer task stack size (# of OS_STK wide entries) */ | |||
| #define OS_TASK_STAT_STK_SIZE 128u /* Statistics task stack size (# of OS_STK wide entries) */ | |||
| #define OS_TASK_IDLE_STK_SIZE 128u /* Idle task stack size (# of OS_STK wide entries) */ | |||
| /* --------------------- TASK MANAGEMENT ---------------------- */ | |||
| #define OS_TASK_CHANGE_PRIO_EN 1u /* Include code for OSTaskChangePrio() */ | |||
| #define OS_TASK_CREATE_EN 1u /* Include code for OSTaskCreate() */ | |||
| #define OS_TASK_CREATE_EXT_EN 1u /* Include code for OSTaskCreateExt() */ | |||
| #define OS_TASK_DEL_EN 1u /* Include code for OSTaskDel() */ | |||
| #define OS_TASK_NAME_EN 1u /* Enable task names */ | |||
| #define OS_TASK_PROFILE_EN 1u /* Include variables in OS_TCB for profiling */ | |||
| #define OS_TASK_QUERY_EN 1u /* Include code for OSTaskQuery() */ | |||
| #define OS_TASK_REG_TBL_SIZE 1u /* Size of task variables array (#of INT32U entries) */ | |||
| #define OS_TASK_STAT_EN 1u /* Enable (1) or Disable(0) the statistics task */ | |||
| #define OS_TASK_STAT_STK_CHK_EN 1u /* Check task stacks from statistic task */ | |||
| #define OS_TASK_SUSPEND_EN 1u /* Include code for OSTaskSuspend() and OSTaskResume() */ | |||
| #define OS_TASK_SW_HOOK_EN 1u /* Include code for OSTaskSwHook() */ | |||
| /* ----------------------- EVENT FLAGS ------------------------ */ | |||
| #define OS_FLAG_EN 1u /* Enable (1) or Disable (0) code generation for EVENT FLAGS */ | |||
| #define OS_FLAG_ACCEPT_EN 1u /* Include code for OSFlagAccept() */ | |||
| #define OS_FLAG_DEL_EN 1u /* Include code for OSFlagDel() */ | |||
| #define OS_FLAG_NAME_EN 1u /* Enable names for event flag group */ | |||
| #define OS_FLAG_QUERY_EN 1u /* Include code for OSFlagQuery() */ | |||
| #define OS_FLAG_WAIT_CLR_EN 1u /* Include code for Wait on Clear EVENT FLAGS */ | |||
| #define OS_FLAGS_NBITS 16u /* Size in #bits of OS_FLAGS data type (8, 16 or 32) */ | |||
| /* -------------------- MESSAGE MAILBOXES --------------------- */ | |||
| #define OS_MBOX_EN 1u /* Enable (1) or Disable (0) code generation for MAILBOXES */ | |||
| #define OS_MBOX_ACCEPT_EN 1u /* Include code for OSMboxAccept() */ | |||
| #define OS_MBOX_DEL_EN 1u /* Include code for OSMboxDel() */ | |||
| #define OS_MBOX_PEND_ABORT_EN 1u /* Include code for OSMboxPendAbort() */ | |||
| #define OS_MBOX_POST_EN 1u /* Include code for OSMboxPost() */ | |||
| #define OS_MBOX_POST_OPT_EN 1u /* Include code for OSMboxPostOpt() */ | |||
| #define OS_MBOX_QUERY_EN 1u /* Include code for OSMboxQuery() */ | |||
| /* --------------------- MEMORY MANAGEMENT -------------------- */ | |||
| #define OS_MEM_EN 1u /* Enable (1) or Disable (0) code generation for MEMORY MANAGER */ | |||
| #define OS_MEM_NAME_EN 1u /* Enable memory partition names */ | |||
| #define OS_MEM_QUERY_EN 1u /* Include code for OSMemQuery() */ | |||
| /* ---------------- MUTUAL EXCLUSION SEMAPHORES --------------- */ | |||
| #define OS_MUTEX_EN 1u /* Enable (1) or Disable (0) code generation for MUTEX */ | |||
| #define OS_MUTEX_ACCEPT_EN 1u /* Include code for OSMutexAccept() */ | |||
| #define OS_MUTEX_DEL_EN 1u /* Include code for OSMutexDel() */ | |||
| #define OS_MUTEX_QUERY_EN 1u /* Include code for OSMutexQuery() */ | |||
| /* ---------------------- MESSAGE QUEUES ---------------------- */ | |||
| #define OS_Q_EN 1u /* Enable (1) or Disable (0) code generation for QUEUES */ | |||
| #define OS_Q_ACCEPT_EN 1u /* Include code for OSQAccept() */ | |||
| #define OS_Q_DEL_EN 1u /* Include code for OSQDel() */ | |||
| #define OS_Q_FLUSH_EN 1u /* Include code for OSQFlush() */ | |||
| #define OS_Q_PEND_ABORT_EN 1u /* Include code for OSQPendAbort() */ | |||
| #define OS_Q_POST_EN 1u /* Include code for OSQPost() */ | |||
| #define OS_Q_POST_FRONT_EN 1u /* Include code for OSQPostFront() */ | |||
| #define OS_Q_POST_OPT_EN 1u /* Include code for OSQPostOpt() */ | |||
| #define OS_Q_QUERY_EN 1u /* Include code for OSQQuery() */ | |||
| /* ------------------------ SEMAPHORES ------------------------ */ | |||
| #define OS_SEM_EN 1u /* Enable (1) or Disable (0) code generation for SEMAPHORES */ | |||
| #define OS_SEM_ACCEPT_EN 1u /* Include code for OSSemAccept() */ | |||
| #define OS_SEM_DEL_EN 1u /* Include code for OSSemDel() */ | |||
| #define OS_SEM_PEND_ABORT_EN 1u /* Include code for OSSemPendAbort() */ | |||
| #define OS_SEM_QUERY_EN 1u /* Include code for OSSemQuery() */ | |||
| #define OS_SEM_SET_EN 1u /* Include code for OSSemSet() */ | |||
| /* --------------------- TIME MANAGEMENT ---------------------- */ | |||
| #define OS_TIME_DLY_HMSM_EN 1u /* Include code for OSTimeDlyHMSM() */ | |||
| #define OS_TIME_DLY_RESUME_EN 1u /* Include code for OSTimeDlyResume() */ | |||
| #define OS_TIME_GET_SET_EN 1u /* Include code for OSTimeGet() and OSTimeSet() */ | |||
| #define OS_TIME_TICK_HOOK_EN 1u /* Include code for OSTimeTickHook() */ | |||
| /* --------------------- TIMER MANAGEMENT --------------------- */ | |||
| #define OS_TMR_EN 1u /* Enable (1) or Disable (0) code generation for TIMERS */ | |||
| #define OS_TMR_CFG_MAX 16u /* Maximum number of timers */ | |||
| #define OS_TMR_CFG_NAME_EN 1u /* Determine timer names */ | |||
| #define OS_TMR_CFG_WHEEL_SIZE 7u /* Size of timer wheel (#Spokes) */ | |||
| #define OS_TMR_CFG_TICKS_PER_SEC 10u /* Rate at which timer management task runs (Hz) */ | |||
| /* ---------------------- TRACE RECORDER ---------------------- */ | |||
| #define OS_TRACE_EN 0u /* Enable (1) or Disable (0) uC/OS-II Trace instrumentation */ | |||
| #define OS_TRACE_API_ENTER_EN 0u /* Enable (1) or Disable (0) uC/OS-II Trace API enter instrum. */ | |||
| #define OS_TRACE_API_EXIT_EN 0u /* Enable (1) or Disable (0) uC/OS-II Trace API exit instrum. */ | |||
| #endif | |||
| @@ -0,0 +1,236 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * ARMv7-M Port | |||
| * | |||
| * Filename : os_cpu.h | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| * For : ARMv7-M Cortex-M | |||
| * Mode : Thumb-2 ISA | |||
| * Toolchain : IAR EWARM | |||
| ********************************************************************************************************* | |||
| * Note(s) : (1) This port supports the ARM Cortex-M3, Cortex-M4 and Cortex-M7 architectures. | |||
| * (2) It has been tested with the following Hardware Floating Point Unit. | |||
| * (a) Single-precision: FPv4-SP-D16-M and FPv5-SP-D16-M | |||
| * (b) Double-precision: FPv5-D16-M | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_CPU_H | |||
| #define OS_CPU_H | |||
| #ifdef OS_CPU_GLOBALS | |||
| #define OS_CPU_EXT | |||
| #else | |||
| #define OS_CPU_EXT extern | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * EXTERNAL C LANGUAGE LINKAGE | |||
| * | |||
| * Note(s) : (1) C++ compilers MUST 'extern'ally declare ALL C function prototypes & variable/object | |||
| * declarations for correct C language linkage. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifdef __cplusplus | |||
| extern "C" { /* See Note #1. */ | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DEFINES | |||
| * | |||
| * Note(s) : (1) If using uC/CPU then 'cpu_cfg.h' has already this define in its template. The user will | |||
| * only need to include 'cpu_cfg.h' in 'app_cfg.h'; otherwise, define CPU_CFG_KA_IPL_BOUNDARY | |||
| * and CPU_CFG_NVIC_PRIO_BITS in 'app_cfg.h' | |||
| * | |||
| * (2) Since the port is using BASEPRI to separate kernel vs non-kernel aware ISR, please make sure | |||
| * your external interrupt priorities are set accordingly. For example, if CPU_CFG_KA_IPL_BOUNDARY | |||
| * is set to 4 then external interrupt priorities 4-15 will be kernel aware while priorities | |||
| * 0-3 will be use as non-kernel aware. | |||
| * | |||
| * (3) Determines the interrupt programmable priority levels. This is normally specified in the | |||
| * Microcontroller reference manual. 4-bits gives us 16 programmable priority levels. | |||
| * | |||
| * NVIC_IPRx | |||
| * 7 0 | |||
| * +------------------+ | |||
| * | PRIO | | |||
| * +------------------+ | |||
| * | |||
| * Bits[7:4] Priority mask bits | |||
| * Bits[3:0] Reserved | |||
| * | |||
| * In this example our CPU_CFG_NVIC_PRIO_BITS define should be set to 4 due to the processor | |||
| * implementing only bits[7:4]. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_CPU_EXCEPT_STK_SIZE | |||
| #define OS_CPU_EXCEPT_STK_SIZE 256u /* Default exception stack size is 256 OS_STK entries */ | |||
| #endif | |||
| #ifdef __ARMVFP__ | |||
| #define OS_CPU_ARM_FP_EN 1u | |||
| #else | |||
| #define OS_CPU_ARM_FP_EN 0u | |||
| #endif | |||
| #ifndef CPU_CFG_KA_IPL_BOUNDARY | |||
| #error "CPU_CFG_KA_IPL_BOUNDARY not #define'd in 'app_cfg.h' " /* See Note # 1 & 2 */ | |||
| #else | |||
| #if (CPU_CFG_KA_IPL_BOUNDARY == 0u) | |||
| #error "CPU_CFG_KA_IPL_BOUNDARY should be > 0 " | |||
| #endif | |||
| #endif | |||
| #ifndef CPU_CFG_NVIC_PRIO_BITS | |||
| #error "CPU_CFG_NVIC_PRIO_BITS not #define'd in 'app_cfg.h' " /* See Note # 3 */ | |||
| #else | |||
| #if (CPU_CFG_KA_IPL_BOUNDARY >= (1u << CPU_CFG_NVIC_PRIO_BITS)) | |||
| #error "CPU_CFG_KA_IPL_BOUNDARY should not be set to higher than max programable priority level " | |||
| #endif | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DATA TYPES | |||
| * (Compiler Specific) | |||
| ********************************************************************************************************* | |||
| */ | |||
| typedef unsigned char BOOLEAN; | |||
| typedef unsigned char INT8U; /* Unsigned 8 bit quantity */ | |||
| typedef signed char INT8S; /* Signed 8 bit quantity */ | |||
| typedef unsigned short INT16U; /* Unsigned 16 bit quantity */ | |||
| typedef signed short INT16S; /* Signed 16 bit quantity */ | |||
| typedef unsigned int INT32U; /* Unsigned 32 bit quantity */ | |||
| typedef signed int INT32S; /* Signed 32 bit quantity */ | |||
| typedef float FP32; /* Single precision floating point */ | |||
| typedef double FP64; /* Double precision floating point */ | |||
| typedef unsigned int OS_STK; /* Each stack entry is 32-bit wide */ | |||
| typedef unsigned int OS_CPU_SR; /* Define size of CPU status register (PSR = 32 bits) */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * Cortex-M | |||
| * Critical Section Management | |||
| * | |||
| * Method #1: Disable/Enable interrupts using simple instructions. After critical section, interrupts | |||
| * will be enabled even if they were disabled before entering the critical section. | |||
| * NOT IMPLEMENTED | |||
| * | |||
| * Method #2: Disable/Enable interrupts by preserving the state of interrupts. In other words, if | |||
| * interrupts were disabled before entering the critical section, they will be disabled when | |||
| * leaving the critical section. | |||
| * NOT IMPLEMENTED | |||
| * | |||
| * Method #3: Disable/Enable interrupts by preserving the state of interrupts. Generally speaking you | |||
| * would store the state of the interrupt disable flag in the local variable 'cpu_sr' and then | |||
| * disable interrupts. 'cpu_sr' is allocated in all of uC/OS-II's functions that need to | |||
| * disable interrupts. You would restore the interrupt disable state by copying back 'cpu_sr' | |||
| * into the CPU's status register. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define OS_CRITICAL_METHOD 3u | |||
| #if OS_CRITICAL_METHOD == 3u | |||
| /* Save current BASEPRI priority lvl for exception... */ | |||
| /* .. and set BASEPRI to CPU_CFG_KA_IPL_BOUNDARY */ | |||
| #define OS_ENTER_CRITICAL() do { cpu_sr = OS_CPU_SR_Save(CPU_CFG_KA_IPL_BOUNDARY << (8u - CPU_CFG_NVIC_PRIO_BITS));} while (0) | |||
| /* Restore CPU BASEPRI priority level. */ | |||
| #define OS_EXIT_CRITICAL() do { OS_CPU_SR_Restore(cpu_sr);} while (0) | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * Cortex-M Miscellaneous | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define OS_STK_GROWTH 1u /* Stack grows from HIGH to LOW memory on ARM */ | |||
| #define OS_TASK_SW() OSCtxSw() | |||
| /* | |||
| ********************************************************************************************************* | |||
| * GLOBAL VARIABLES | |||
| ********************************************************************************************************* | |||
| */ | |||
| OS_CPU_EXT OS_STK OS_CPU_ExceptStk[OS_CPU_EXCEPT_STK_SIZE]; | |||
| OS_CPU_EXT OS_STK *OS_CPU_ExceptStkBase; | |||
| /* | |||
| ********************************************************************************************************* | |||
| * FUNCTION PROTOTYPES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CRITICAL_METHOD == 3u /* See OS_CPU_A.ASM */ | |||
| OS_CPU_SR OS_CPU_SR_Save (OS_CPU_SR new_basepri); | |||
| void OS_CPU_SR_Restore (OS_CPU_SR cpu_sr); | |||
| #endif | |||
| void OSCtxSw (void); | |||
| void OSIntCtxSw (void); | |||
| void OSStartHighRdy (void); | |||
| /* See OS_CPU_C.C */ | |||
| void OS_CPU_SysTickInit (INT32U cnts); | |||
| void OS_CPU_SysTickInitFreq (INT32U cpu_freq); | |||
| void OS_CPU_SysTickHandler (void); | |||
| void OS_CPU_PendSVHandler (void); | |||
| #if (OS_CPU_ARM_FP_EN > 0u) | |||
| void OS_CPU_FP_Reg_Push (OS_STK *stkPtr); | |||
| void OS_CPU_FP_Reg_Pop (OS_STK *stkPtr); | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * EXTERNAL C LANGUAGE LINKAGE END | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifdef __cplusplus | |||
| } /* End of 'extern'al C lang linkage. */ | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * MODULE END | |||
| ********************************************************************************************************* | |||
| */ | |||
| #endif | |||
| @@ -0,0 +1,361 @@ | |||
| ;******************************************************************************************************** | |||
| ; uC/OS-II | |||
| ; The Real-Time Kernel | |||
| ; | |||
| ; Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| ; | |||
| ; SPDX-License-Identifier: APACHE-2.0 | |||
| ; | |||
| ; This software is subject to an open source license and is distributed by | |||
| ; Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| ; Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| ; | |||
| ;******************************************************************************************************** | |||
| ;******************************************************************************************************** | |||
| ; | |||
| ; ARMv7-M Port | |||
| ; | |||
| ; Filename : os_cpu_a.asm | |||
| ; Version : V2.93.00 | |||
| ;******************************************************************************************************** | |||
| ; For : ARMv7-M Cortex-M | |||
| ; Mode : Thumb-2 ISA | |||
| ; Toolchain : IAR EWARM | |||
| ;******************************************************************************************************** | |||
| ; Note(s) : (1) This port supports the ARM Cortex-M3, Cortex-M4 and Cortex-M7 architectures. | |||
| ; (2) It has been tested with the following Hardware Floating Point Unit. | |||
| ; (a) Single-precision: FPv4-SP-D16-M and FPv5-SP-D16-M | |||
| ; (b) Double-precision: FPv5-D16-M | |||
| ;******************************************************************************************************** | |||
| ;******************************************************************************************************** | |||
| ; PUBLIC FUNCTIONS | |||
| ;******************************************************************************************************** | |||
| EXTERN OSRunning ; External references | |||
| EXTERN OSPrioCur | |||
| EXTERN OSPrioHighRdy | |||
| EXTERN OSTCBCur | |||
| EXTERN OSTCBHighRdy | |||
| EXTERN OSIntExit | |||
| EXTERN OSTaskSwHook | |||
| EXTERN OS_CPU_ExceptStkBase | |||
| EXTERN OS_KA_BASEPRI_Boundary | |||
| PUBLIC OSStartHighRdy ; Functions declared in this file | |||
| PUBLIC OS_CPU_SR_Save | |||
| PUBLIC OS_CPU_SR_Restore | |||
| PUBLIC OSCtxSw | |||
| PUBLIC OSIntCtxSw | |||
| PUBLIC OS_CPU_PendSVHandler | |||
| #ifdef __ARMVFP__ | |||
| PUBLIC OS_CPU_FP_Reg_Push | |||
| PUBLIC OS_CPU_FP_Reg_Pop | |||
| #endif | |||
| ;******************************************************************************************************** | |||
| ; EQUATES | |||
| ;******************************************************************************************************** | |||
| NVIC_INT_CTRL EQU 0xE000ED04 ; Interrupt control state register. | |||
| NVIC_SYSPRI14 EQU 0xE000ED22 ; System priority register (priority 14). | |||
| NVIC_PENDSV_PRI EQU 0xFF ; PendSV priority value (lowest). | |||
| NVIC_PENDSVSET EQU 0x10000000 ; Value to trigger PendSV exception. | |||
| ;******************************************************************************************************** | |||
| ; CODE GENERATION DIRECTIVES | |||
| ;******************************************************************************************************** | |||
| RSEG CODE:CODE:NOROOT(2) | |||
| THUMB | |||
| ;******************************************************************************************************** | |||
| ; FLOATING POINT REGISTERS PUSH | |||
| ; void OS_CPU_FP_Reg_Push (OS_STK *stkPtr) | |||
| ; | |||
| ; Note(s) : 1) This function saves S16-S31 registers of the Floating Point Unit. | |||
| ; | |||
| ; 2) Pseudo-code is: | |||
| ; a) Push remaining FPU regs S16-S31 on process stack; | |||
| ; b) Update OSTCBCur->OSTCBStkPtr; | |||
| ;******************************************************************************************************** | |||
| #ifdef __ARMVFP__ | |||
| OS_CPU_FP_Reg_Push | |||
| MRS R1, PSP ; PSP is process stack pointer | |||
| CBZ R1, OS_CPU_FP_nosave ; Skip FP register save the first time | |||
| VSTMDB R0!, {S16-S31} | |||
| LDR R1, =OSTCBCur | |||
| LDR R2, [R1] | |||
| STR R0, [R2] | |||
| OS_CPU_FP_nosave | |||
| BX LR | |||
| #endif | |||
| ;******************************************************************************************************** | |||
| ; FLOATING POINT REGISTERS POP | |||
| ; void OS_CPU_FP_Reg_Pop (OS_STK *stkPtr) | |||
| ; | |||
| ; Note(s) : 1) This function restores S16-S31 of the Floating Point Unit. | |||
| ; | |||
| ; 2) Pseudo-code is: | |||
| ; a) Restore regs S16-S31 of new process stack; | |||
| ; b) Update OSTCBHighRdy->OSTCBStkPtr pointer of new proces stack; | |||
| ;******************************************************************************************************** | |||
| #ifdef __ARMVFP__ | |||
| OS_CPU_FP_Reg_Pop | |||
| VLDMIA R0!, {S16-S31} | |||
| LDR R1, =OSTCBHighRdy | |||
| LDR R2, [R1] | |||
| STR R0, [R2] | |||
| BX LR | |||
| #endif | |||
| ;******************************************************************************************************** | |||
| ; CRITICAL SECTION METHOD 3 FUNCTIONS | |||
| ; | |||
| ; Description : Disable/Enable Kernel aware interrupts by preserving the state of BASEPRI. Generally speaking, | |||
| ; the state of the BASEPRI interrupt exception processing is stored in the local variable | |||
| ; 'cpu_sr' & Kernel Aware interrupts are then disabled ('cpu_sr' is allocated in all functions | |||
| ; that need to disable Kernel aware interrupts). The previous BASEPRI interrupt state is restored | |||
| ; by copying 'cpu_sr' into the BASEPRI register. | |||
| ; | |||
| ; Prototypes : OS_CPU_SR OS_CPU_SR_Save (OS_CPU_SR new_basepri); | |||
| ; void OS_CPU_SR_Restore(OS_CPU_SR cpu_sr); | |||
| ; | |||
| ; | |||
| ; Note(s) : 1) These functions are used in general like this: | |||
| ; | |||
| ; void Task (void *p_arg) | |||
| ; { | |||
| ; #if OS_CRITICAL_METHOD == 3 /* Allocate storage for CPU status register */ | |||
| ; OS_CPU_SR cpu_sr; | |||
| ; #endif | |||
| ; | |||
| ; : | |||
| ; : | |||
| ; OS_ENTER_CRITICAL(); /* cpu_sr = OS_CPU_SR_Save(new_basepri); */ | |||
| ; : | |||
| ; : | |||
| ; OS_EXIT_CRITICAL(); /* OS_CPU_RestoreSR(cpu_sr); */ | |||
| ; : | |||
| ; : | |||
| ; } | |||
| ; | |||
| ; 2) Increasing priority using a write to BASEPRI does not take effect immediately. | |||
| ; (a) IMPLICATION This erratum means that the instruction after an MSR to boost BASEPRI | |||
| ; might incorrectly be preempted by an insufficient high priority exception. | |||
| ; | |||
| ; (b) WORKAROUND The MSR to boost BASEPRI can be replaced by the following code sequence: | |||
| ; | |||
| ; CPSID i | |||
| ; MSR to BASEPRI | |||
| ; DSB | |||
| ; ISB | |||
| ; CPSIE i | |||
| ;******************************************************************************************************** | |||
| OS_CPU_SR_Save | |||
| CPSID I ; Cortex-M7 errata notice. See Note #2 | |||
| PUSH {R1} | |||
| MRS R1, BASEPRI | |||
| MSR BASEPRI, R0 | |||
| DSB | |||
| ISB | |||
| MOV R0, R1 | |||
| POP {R1} | |||
| CPSIE I | |||
| BX LR | |||
| OS_CPU_SR_Restore | |||
| CPSID I ; Cortex-M7 errata notice. See Note #2 | |||
| MSR BASEPRI, R0 | |||
| DSB | |||
| ISB | |||
| CPSIE I | |||
| BX LR | |||
| ;******************************************************************************************************** | |||
| ; START MULTITASKING | |||
| ; void OSStartHighRdy(void) | |||
| ; | |||
| ; Note(s) : 1) This function triggers a PendSV exception (essentially, causes a context switch) to cause | |||
| ; the first task to start. | |||
| ; | |||
| ; 2) During task execution, PSP is used as the stack pointer. | |||
| ; When an exception occurs, the core will switch to MSP until the exception return. | |||
| ; | |||
| ; 3) OSStartHighRdy() MUST: | |||
| ; a) Setup PendSV exception priority to lowest; | |||
| ; b) Set initial PSP to 0, to tell context switcher this is first run; | |||
| ; c) Set the main stack to OS_CPU_ExceptStkBase | |||
| ; d) Set OSRunning to TRUE; | |||
| ; e) Get current high priority, OSPrioCur = OSPrioHighRdy; | |||
| ; f) Get current ready thread TCB, OSTCBCur = OSTCBHighRdy; | |||
| ; g) Get new process SP from TCB, SP = OSTCBHighRdy->OSTCBStkPtr; | |||
| ; h) Restore R0-R11 and R14 from new process stack; | |||
| ; i) Enable interrupts (tasks will run with interrupts enabled). | |||
| ;******************************************************************************************************** | |||
| OSStartHighRdy | |||
| CPSID I ; Prevent interruption during context switch | |||
| LDR R0, =NVIC_SYSPRI14 ; Set the PendSV exception priority | |||
| LDR R1, =NVIC_PENDSV_PRI | |||
| STRB R1, [R0] | |||
| MOVS R0, #0 ; Set the PSP to 0 for initial context switch call | |||
| MSR PSP, R0 | |||
| LDR R0, =OS_CPU_ExceptStkBase ; Initialize the MSP to the OS_CPU_ExceptStkBase | |||
| LDR R1, [R0] | |||
| MSR MSP, R1 | |||
| BL OSTaskSwHook ; Call OSTaskSwHook() for FPU Push & Pop | |||
| LDR R0, =OSRunning ; OSRunning = TRUE | |||
| MOVS R1, #1 | |||
| STRB R1, [R0] | |||
| LDR R0, =OSPrioCur ; OSPrioCur = OSPrioHighRdy; | |||
| LDR R1, =OSPrioHighRdy | |||
| LDRB R2, [R1] | |||
| STRB R2, [R0] | |||
| LDR R0, =OSTCBCur ; OSTCBCur = OSTCBHighRdy; | |||
| LDR R1, =OSTCBHighRdy | |||
| LDR R2, [R1] | |||
| STR R2, [R0] | |||
| LDR R0, [R2] ; R0 is new process SP; SP = OSTCBHighRdy->OSTCBStkPtr; | |||
| MSR PSP, R0 ; Load PSP with new process SP | |||
| MRS R0, CONTROL | |||
| ORR R0, R0, #2 | |||
| MSR CONTROL, R0 | |||
| ISB ; Sync instruction stream | |||
| LDMFD SP!, {R4-R11, LR} ; Restore r4-11, lr from new process stack | |||
| LDMFD SP!, {R0-R3} ; Restore r0, r3 | |||
| LDMFD SP!, {R12, LR} ; Load R12 and LR | |||
| LDMFD SP!, {R1, R2} ; Load PC and discard xPSR | |||
| CPSIE I | |||
| BX R1 | |||
| ;******************************************************************************************************** | |||
| ; PERFORM A CONTEXT SWITCH (From task level) - OSCtxSw() | |||
| ; PERFORM A CONTEXT SWITCH (From interrupt level) - OSIntCtxSw() | |||
| ; | |||
| ; Note(s) : 1) OSCtxSw() is called when OS wants to perform a task context switch. This function | |||
| ; triggers the PendSV exception which is where the real work is done. | |||
| ; | |||
| ; 2) OSIntCtxSw() is called by OSIntExit() when it determines a context switch is needed as | |||
| ; the result of an interrupt. This function simply triggers a PendSV exception which will | |||
| ; be handled when there are no more interrupts active and interrupts are enabled. | |||
| ;******************************************************************************************************** | |||
| OSCtxSw | |||
| OSIntCtxSw | |||
| LDR R0, =NVIC_INT_CTRL ; Trigger the PendSV exception (causes context switch) | |||
| LDR R1, =NVIC_PENDSVSET | |||
| STR R1, [R0] | |||
| BX LR | |||
| ;******************************************************************************************************** | |||
| ; HANDLE PendSV EXCEPTION | |||
| ; void OS_CPU_PendSVHandler(void) | |||
| ; | |||
| ; Note(s) : 1) PendSV is used to cause a context switch. This is a recommended method for performing | |||
| ; context switches with Cortex-M. This is because the Cortex-M auto-saves half of the | |||
| ; processor context on any exception, and restores same on return from exception. So only | |||
| ; saving of R4-R11 & R14 is required and fixing up the stack pointers. Using the PendSV exception | |||
| ; this way means that context saving and restoring is identical whether it is initiated from | |||
| ; a thread or occurs due to an interrupt or exception. | |||
| ; | |||
| ; 2) Pseudo-code is: | |||
| ; a) Get the process SP | |||
| ; b) Save remaining regs r4-r11 & r14 on process stack; | |||
| ; c) Save the process SP in its TCB, OSTCBCur->OSTCBStkPtr = SP; | |||
| ; d) Call OSTaskSwHook(); | |||
| ; e) Get current high priority, OSPrioCur = OSPrioHighRdy; | |||
| ; f) Get current ready thread TCB, OSTCBCur = OSTCBHighRdy; | |||
| ; g) Get new process SP from TCB, SP = OSTCBHighRdy->OSTCBStkPtr; | |||
| ; h) Restore R4-R11 and R14 from new process stack; | |||
| ; i) Perform exception return which will restore remaining context. | |||
| ; | |||
| ; 3) On entry into PendSV handler: | |||
| ; a) The following have been saved on the process stack (by processor): | |||
| ; xPSR, PC, LR, R12, R0-R3 | |||
| ; b) Processor mode is switched to Handler mode (from Thread mode) | |||
| ; c) Stack is Main stack (switched from Process stack) | |||
| ; d) OSTCBCur points to the OS_TCB of the task to suspend | |||
| ; OSTCBHighRdy points to the OS_TCB of the task to resume | |||
| ; | |||
| ; 4) Since PendSV is set to lowest priority in the system (by OSStartHighRdy() above), we | |||
| ; know that it will only be run when no other exception or interrupt is active, and | |||
| ; therefore safe to assume that context being switched out was using the process stack (PSP). | |||
| ; | |||
| ; 5) Increasing priority using a write to BASEPRI does not take effect immediately. | |||
| ; (a) IMPLICATION This erratum means that the instruction after an MSR to boost BASEPRI | |||
| ; might incorrectly be preempted by an insufficient high priority exception. | |||
| ; | |||
| ; (b) WORKAROUND The MSR to boost BASEPRI can be replaced by the following code sequence: | |||
| ; | |||
| ; CPSID i | |||
| ; MSR to BASEPRI | |||
| ; DSB | |||
| ; ISB | |||
| ; CPSIE i | |||
| ;******************************************************************************************************** | |||
| OS_CPU_PendSVHandler | |||
| CPSID I ; Cortex-M7 errata notice. See Note #5 | |||
| MOV32 R2, OS_KA_BASEPRI_Boundary ; Set BASEPRI priority level required for exception preemption | |||
| LDR R1, [R2] | |||
| MSR BASEPRI, R1 | |||
| DSB | |||
| ISB | |||
| CPSIE I | |||
| MRS R0, PSP ; PSP is process stack pointer | |||
| STMFD R0!, {R4-R11, R14} ; Save remaining regs r4-11, R14 on process stack | |||
| LDR R5, =OSTCBCur ; OSTCBCur->OSTCBStkPtr = SP; | |||
| LDR R1, [R5] | |||
| STR R0, [R1] ; R0 is SP of process being switched out | |||
| ; At this point, entire context of process has been saved | |||
| MOV R4, LR ; Save LR exc_return value | |||
| BL OSTaskSwHook ; Call OSTaskSwHook() for FPU Push & Pop | |||
| LDR R0, =OSPrioCur ; OSPrioCur = OSPrioHighRdy; | |||
| LDR R1, =OSPrioHighRdy | |||
| LDRB R2, [R1] | |||
| STRB R2, [R0] | |||
| LDR R1, =OSTCBHighRdy ; OSTCBCur = OSTCBHighRdy; | |||
| LDR R2, [R1] | |||
| STR R2, [R5] | |||
| ORR LR, R4, #0x04 ; Ensure exception return uses process stack | |||
| LDR R0, [R2] ; R0 is new process SP; SP = OSTCBHighRdy->OSTCBStkPtr; | |||
| LDMFD R0!, {R4-R11, R14} ; Restore r4-11, R14 from new process stack | |||
| MSR PSP, R0 ; Load PSP with new process SP | |||
| MOV32 R2, #0 ; Restore BASEPRI priority level to 0 | |||
| MSR BASEPRI, R2 | |||
| BX LR ; Exception return will restore remaining context | |||
| END | |||
| @@ -0,0 +1,727 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * ARMv7-M Port | |||
| * | |||
| * File : os_cpu_c.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| * For : ARMv7-M Cortex-M | |||
| * Mode : Thumb-2 ISA | |||
| ********************************************************************************************************* | |||
| * Note(s) : (1) This port supports the ARM Cortex-M3, Cortex-M4 and Cortex-M7 architectures. | |||
| * (2) It has been tested with the following Hardware Floating Point Unit. | |||
| * (a) Single-precision: FPv4-SP-D16-M and FPv5-SP-D16-M | |||
| * (b) Double-precision: FPv5-D16-M | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define OS_CPU_GLOBALS | |||
| /* | |||
| ********************************************************************************************************* | |||
| * INCLUDE FILES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #include <ucos_ii.h> | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL VARIABLES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_TMR_EN > 0u | |||
| static INT16U OSTmrCtr; | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL GLOBAL VARIABLES | |||
| ********************************************************************************************************* | |||
| */ | |||
| INT32U OS_KA_BASEPRI_Boundary; /* Base Priority boundary. */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * SYS TICK DEFINES | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define OS_CPU_CM_SYST_CSR (*((volatile INT32U *)0xE000E010uL)) /* SysTick Ctrl & Status Reg. */ | |||
| #define OS_CPU_CM_SYST_RVR (*((volatile INT32U *)0xE000E014uL)) /* SysTick Reload Value Reg. */ | |||
| #define OS_CPU_CM_SYST_CVR (*((volatile INT32U *)0xE000E018uL)) /* SysTick Current Value Reg. */ | |||
| #define OS_CPU_CM_SYST_CALIB (*((volatile INT32U *)0xE000E01CuL)) /* SysTick Cal Value Reg. */ | |||
| #define OS_CPU_CM_SCB_SHPRI1 (*((volatile INT32U *)0xE000ED18uL)) /* System Handlers 4 to 7 Prio. */ | |||
| #define OS_CPU_CM_SCB_SHPRI2 (*((volatile INT32U *)0xE000ED1CuL)) /* System Handlers 8 to 11 Prio. */ | |||
| #define OS_CPU_CM_SCB_SHPRI3 (*((volatile INT32U *)0xE000ED20uL)) /* System Handlers 12 to 15 Prio. */ | |||
| #define OS_CPU_CM_SYST_CSR_COUNTFLAG 0x00010000uL /* Count flag. */ | |||
| #define OS_CPU_CM_SYST_CSR_CLKSOURCE 0x00000004uL /* Clock Source. */ | |||
| #define OS_CPU_CM_SYST_CSR_TICKINT 0x00000002uL /* Interrupt enable. */ | |||
| #define OS_CPU_CM_SYST_CSR_ENABLE 0x00000001uL /* Counter mode. */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * FLOATING POINT DEFINES | |||
| * | |||
| * Note(s) : 1) Enabled FP lazy stacking and enable automatic state saving. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define OS_CPU_CM_FP_FPCCR (*((volatile INT32U *)0xE000EF34uL)) /* Floating-Point Context Control Reg. */ | |||
| #define OS_CPU_CM_FPCCR_LAZY_STK 0xC0000000uL /* See Note 1. */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * OS INITIALIZATION HOOK | |||
| * (BEGINNING) | |||
| * | |||
| * Description: This function is called by OSInit() at the beginning of OSInit(). | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Note(s) : 1) Interrupts should be disabled during this call. | |||
| * 2) When using hardware floating point please do the following during the reset handler: | |||
| * a) Set full access for CP10 & CP11 bits in CPACR register. | |||
| * b) Set bits ASPEN and LSPEN in FPCCR register. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSInitHookBegin (void) | |||
| { | |||
| INT32U size; | |||
| OS_STK *pstk; | |||
| #if (OS_CPU_ARM_FP_EN > 0u) | |||
| INT32U reg_val; | |||
| #endif | |||
| /* Clear exception stack for stack checking. */ | |||
| pstk = &OS_CPU_ExceptStk[0]; | |||
| size = OS_CPU_EXCEPT_STK_SIZE; | |||
| while (size > 0u) { | |||
| size--; | |||
| *pstk++ = (OS_STK)0; | |||
| } | |||
| /* Align the ISR stack to 8-bytes */ | |||
| OS_CPU_ExceptStkBase = (OS_STK *)&OS_CPU_ExceptStk[OS_CPU_EXCEPT_STK_SIZE]; | |||
| OS_CPU_ExceptStkBase = (OS_STK *)((OS_STK)(OS_CPU_ExceptStkBase) & 0xFFFFFFF8); | |||
| #if (OS_CPU_ARM_FP_EN > 0u) | |||
| reg_val = OS_CPU_CM_FP_FPCCR; /* Check the floating point mode. */ | |||
| if ((reg_val & OS_CPU_CM_FPCCR_LAZY_STK) != OS_CPU_CM_FPCCR_LAZY_STK) { | |||
| while (1u) { /* See Note (2). */ | |||
| ; | |||
| } | |||
| } | |||
| #endif | |||
| #if OS_TMR_EN > 0u | |||
| OSTmrCtr = 0u; | |||
| #endif | |||
| /* Set BASEPRI boundary from the configuration. */ | |||
| OS_KA_BASEPRI_Boundary = (INT32U)(CPU_CFG_KA_IPL_BOUNDARY << (8u - CPU_CFG_NVIC_PRIO_BITS)); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * OS INITIALIZATION HOOK | |||
| * (END) | |||
| * | |||
| * Description: This function is called by OSInit() at the end of OSInit(). | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Note(s) : 1) Interrupts should be disabled during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSInitHookEnd (void) | |||
| { | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK CREATION HOOK | |||
| * | |||
| * Description: This function is called when a task is created. | |||
| * | |||
| * Arguments : ptcb is a pointer to the task control block of the task being created. | |||
| * | |||
| * Note(s) : 1) Interrupts are disabled during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSTaskCreateHook (OS_TCB *ptcb) | |||
| { | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TaskCreateHook(ptcb); | |||
| #else | |||
| (void)ptcb; /* Prevent compiler warning */ | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK DELETION HOOK | |||
| * | |||
| * Description: This function is called when a task is deleted. | |||
| * | |||
| * Arguments : ptcb is a pointer to the task control block of the task being deleted. | |||
| * | |||
| * Note(s) : 1) Interrupts are disabled during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSTaskDelHook (OS_TCB *ptcb) | |||
| { | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TaskDelHook(ptcb); | |||
| #else | |||
| (void)ptcb; /* Prevent compiler warning */ | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * IDLE TASK HOOK | |||
| * | |||
| * Description: This function is called by the idle task. This hook has been added to allow you to do | |||
| * such things as STOP the CPU to conserve power. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Note(s) : 1) Interrupts are enabled during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSTaskIdleHook (void) | |||
| { | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TaskIdleHook(); | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK RETURN HOOK | |||
| * | |||
| * Description: This function is called if a task accidentally returns. In other words, a task should | |||
| * either be an infinite loop or delete itself when done. | |||
| * | |||
| * Arguments : ptcb is a pointer to the task control block of the task that is returning. | |||
| * | |||
| * Note(s) : none | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSTaskReturnHook (OS_TCB *ptcb) | |||
| { | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TaskReturnHook(ptcb); | |||
| #else | |||
| (void)ptcb; | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * STATISTIC TASK HOOK | |||
| * | |||
| * Description: This function is called every second by uC/OS-II's statistics task. This allows your | |||
| * application to add functionality to the statistics task. | |||
| * | |||
| * Arguments : none | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSTaskStatHook (void) | |||
| { | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TaskStatHook(); | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * INITIALIZE A TASK'S STACK | |||
| * | |||
| * Description: This function is called by either OSTaskCreate() or OSTaskCreateExt() to initialize the | |||
| * stack frame of the task being created. This function is highly processor specific. | |||
| * | |||
| * Arguments : task is a pointer to the task code | |||
| * | |||
| * p_arg is a pointer to a user supplied data area that will be passed to the task | |||
| * when the task first executes. | |||
| * | |||
| * ptos is a pointer to the top of stack. It is assumed that 'ptos' points to | |||
| * a 'free' entry on the task stack. If OS_STK_GROWTH is set to 1 then | |||
| * 'ptos' will contain the HIGHEST valid address of the stack. Similarly, if | |||
| * OS_STK_GROWTH is set to 0, the 'ptos' will contains the LOWEST valid address | |||
| * of the stack. | |||
| * | |||
| * opt specifies options that can be used to alter the behavior of OSTaskStkInit(). | |||
| * (see uCOS_II.H for OS_TASK_OPT_xxx). | |||
| * | |||
| * Returns : Always returns the location of the new top-of-stack once the processor registers have | |||
| * been placed on the stack in the proper order. | |||
| * | |||
| * Note(s) : (1) Interrupts are enabled when task starts executing. | |||
| * | |||
| * (2) All tasks run in Thread mode, using process stack. | |||
| * | |||
| * (3) There are two different stack frames depending on whether the Floating-Point(FP) | |||
| * co-processor is enabled or not. | |||
| * | |||
| * (a) The stack frame shown in the diagram is used when the Co-processor Access Control | |||
| * Register(CPACR) is disabling the Floating Point Unit. In this case, the FP | |||
| * registers(S0- S31) & FP Status Control(FPSCR) register are not saved in the stack frame. | |||
| * | |||
| * (b) The stack frame shown in the diagram is used when the Floating Point Unit is enabled, | |||
| * that is, CP10 and CP11 field in CPACR are ones and FPCCR sets bits ASPEN and LSPEN to 1. | |||
| * | |||
| * (1) When enabling the FPU through CPACR, make sure to set bits ASPEN and LSPEN in the | |||
| * Floating-Point Context Control Register (FPCCR). | |||
| * | |||
| * +-------------+ | |||
| * | | | |||
| * +-------------+ | |||
| * | | | |||
| * +-------------+ | |||
| * | FPSCR | | |||
| * +-------------+ | |||
| * | S15 | | |||
| * +-------------+ | |||
| * | S14 | | |||
| * +-------------+ | |||
| * | S13 | | |||
| * +-------------+ | |||
| * . | |||
| * . | |||
| * . | |||
| * +-------------+ | |||
| * | S2 | | |||
| * +-------------+ | |||
| * | S1 | | |||
| * +-------------+ +-------------+ | |||
| * | | | S0 | | |||
| * +-------------+ +-------------+ | |||
| * | xPSR | | xPSR | | |||
| * +-------------+ +-------------+ | |||
| * | Return Addr | | Return Addr | | |||
| * +-------------+ +-------------+ | |||
| * | LR(R14) | | LR(R14) | | |||
| * +-------------+ +-------------+ | |||
| * | R12 | | R12 | | |||
| * +-------------+ +-------------+ | |||
| * | R3 | | R3 | | |||
| * +-------------+ +-------------+ | |||
| * | R2 | | R0 | | |||
| * +-------------+ +-------------+ | |||
| * | R1 | | R1 | | |||
| * +-------------+ +-------------+ | |||
| * | R0 | | R0 | | |||
| * +-------------+ +-------------+ | |||
| * | EXEC_RETURN | | EXEC_RETURN | | |||
| * +-------------+ +-------------+ | |||
| * | R11 | | R11 | | |||
| * +-------------+ +-------------+ | |||
| * | R10 | | R10 | | |||
| * +-------------+ +-------------+ | |||
| * | R9 | | R9 | | |||
| * +-------------+ +-------------+ | |||
| * | R8 | | R8 | | |||
| * +-------------+ +-------------+ | |||
| * | R7 | | R7 | | |||
| * +-------------+ +-------------+ | |||
| * | R6 | | R6 | | |||
| * +-------------+ +-------------+ | |||
| * | R5 | | R5 | | |||
| * +-------------+ +-------------+ | |||
| * | R4 | | R4 | | |||
| * +-------------+ +-------------+ | |||
| * (a) | S31 | | |||
| * +-------------+ | |||
| * | S30 | | |||
| * +-------------+ | |||
| * | S29 | | |||
| +-------------+ | |||
| * . | |||
| * . | |||
| * . | |||
| * +-------------+ | |||
| * | S17 | | |||
| +-------------+ | |||
| * | S16 | | |||
| * +-------------+ | |||
| * (b) | |||
| * | |||
| * (4) The SP must be 8-byte aligned in conforming to the Procedure Call Standard for the ARM architecture | |||
| * | |||
| * (a) Section 2.1 of the ABI for the ARM Architecture Advisory Note. SP must be 8-byte aligned | |||
| * on entry to AAPCS-Conforming functions states : | |||
| * | |||
| * The Procedure Call Standard for the ARM Architecture [AAPCS] requires primitive | |||
| * data types to be naturally aligned according to their sizes (for size = 1, 2, 4, 8 bytes). | |||
| * Doing otherwise creates more problems than it solves. | |||
| * | |||
| * In return for preserving the natural alignment of data, conforming code is permitted | |||
| * to rely on that alignment. To support aligning data allocated on the stack, the stack | |||
| * pointer (SP) is required to be 8-byte aligned on entry to a conforming function. In | |||
| * practice this requirement is met if: | |||
| * | |||
| * (1) At each call site, the current size of the calling function's stack frame is a multiple of 8 bytes. | |||
| * This places an obligation on compilers and assembly language programmers. | |||
| * | |||
| * (2) SP is a multiple of 8 when control first enters a program. | |||
| * This places an obligation on authors of low level OS, RTOS, and runtime library | |||
| * code to align SP at all points at which control first enters | |||
| * a body of (AAPCS-conforming) code. | |||
| * | |||
| * In turn, this requires the value of SP to be aligned to 0 modulo 8: | |||
| * | |||
| * (3) By exception handlers, before calling AAPCS-conforming code. | |||
| * | |||
| * (4) By OS/RTOS/run-time system code, before giving control to an application. | |||
| * | |||
| * (b) Section 2.3.1 corrective steps from the the SP must be 8-byte aligned on entry | |||
| * to AAPCS-conforming functions advisory note also states. | |||
| * | |||
| * " This requirement extends to operating systems and run-time code for all architecture versions | |||
| * prior to ARMV7 and to the A, R and M architecture profiles thereafter. Special considerations | |||
| * associated with ARMV7M are discussed in section 2.3.3" | |||
| * | |||
| * (1) Even if the SP 8-byte aligment is not a requirement for the ARMv7M profile, the stack is aligned | |||
| * to 8-byte boundaries to support legacy execution enviroments. | |||
| * | |||
| * (c) Section 5.2.1.2 from the Procedure Call Standard for the ARM | |||
| * architecture states : "The stack must also conform to the following | |||
| * constraint at a public interface: | |||
| * | |||
| * (1) SP mod 8 = 0. The stack must be double-word aligned" | |||
| * | |||
| * (d) From the ARM Technical Support Knowledge Base. 8 Byte stack aligment. | |||
| * | |||
| * "8 byte stack alignment is a requirement of the ARM Architecture Procedure | |||
| * Call Standard [AAPCS]. This specifies that functions must maintain an 8 byte | |||
| * aligned stack address (e.g. 0x00, 0x08, 0x10, 0x18, 0x20) on all external | |||
| * interfaces. In practice this requirement is met if: | |||
| * | |||
| * (1) At each external interface, the current stack pointer | |||
| * is a multiple of 8 bytes. | |||
| * | |||
| * (2) Your OS maintains 8 byte stack alignment on its external interfaces | |||
| * e.g. on task switches" | |||
| * | |||
| * (5) Exception Return Behavior(EXEC_RETURN) | |||
| * 0xFFFFFFFD Return to Thread mode, exception return uses non-floating point state | |||
| * from the PSP and execution uses PSP after return. | |||
| * | |||
| * 0xFFFFFFED Return to Thread mode, exception return uses floating point state | |||
| * from the PSP and execution uses PSP after return. | |||
| ********************************************************************************************************** | |||
| */ | |||
| OS_STK *OSTaskStkInit (void (*task)(void *p_arg), | |||
| void *p_arg, | |||
| OS_STK *ptos, | |||
| INT16U opt) | |||
| { | |||
| OS_STK *p_stk; | |||
| (void)opt; /* 'opt' is not used, prevent warning */ | |||
| p_stk = ptos + 1u; /* Load stack pointer */ | |||
| /* Align the stack to 8-bytes. */ | |||
| p_stk = (OS_STK *)((OS_STK)(p_stk) & 0xFFFFFFF8u); | |||
| /* Registers stacked as if auto-saved on exception */ | |||
| #if (OS_CPU_ARM_FP_EN > 0u) /* FPU auto-saved registers. */ | |||
| --p_stk; | |||
| *(--p_stk) = (OS_STK)0x02000000u; /* FPSCR */ | |||
| /* Initialize S0-S15 floating point registers */ | |||
| *(--p_stk) = (OS_STK)0x41700000u; /* S15 */ | |||
| *(--p_stk) = (OS_STK)0x41600000u; /* S14 */ | |||
| *(--p_stk) = (OS_STK)0x41500000u; /* S13 */ | |||
| *(--p_stk) = (OS_STK)0x41400000u; /* S12 */ | |||
| *(--p_stk) = (OS_STK)0x41300000u; /* S11 */ | |||
| *(--p_stk) = (OS_STK)0x41200000u; /* S10 */ | |||
| *(--p_stk) = (OS_STK)0x41100000u; /* S9 */ | |||
| *(--p_stk) = (OS_STK)0x41000000u; /* S8 */ | |||
| *(--p_stk) = (OS_STK)0x40E00000u; /* S7 */ | |||
| *(--p_stk) = (OS_STK)0x40C00000u; /* S6 */ | |||
| *(--p_stk) = (OS_STK)0x40A00000u; /* S5 */ | |||
| *(--p_stk) = (OS_STK)0x40800000u; /* S4 */ | |||
| *(--p_stk) = (OS_STK)0x40400000u; /* S3 */ | |||
| *(--p_stk) = (OS_STK)0x40000000u; /* S2 */ | |||
| *(--p_stk) = (OS_STK)0x3F800000u; /* S1 */ | |||
| *(--p_stk) = (OS_STK)0x00000000u; /* S0 */ | |||
| #endif | |||
| *(--p_stk) = (OS_STK)0x01000000uL; /* xPSR */ | |||
| *(--p_stk) = (OS_STK)task; /* Entry Point */ | |||
| *(--p_stk) = (OS_STK)OS_TaskReturn; /* R14 (LR) */ | |||
| *(--p_stk) = (OS_STK)0x12121212uL; /* R12 */ | |||
| *(--p_stk) = (OS_STK)0x03030303uL; /* R3 */ | |||
| *(--p_stk) = (OS_STK)0x02020202uL; /* R2 */ | |||
| *(--p_stk) = (OS_STK)0x01010101uL; /* R1 */ | |||
| *(--p_stk) = (OS_STK)p_arg; /* R0 : argument */ | |||
| #if (OS_CPU_ARM_FP_EN > 0u) | |||
| *(--p_stk) = (OS_STK)0xFFFFFFEDuL; /* R14: EXEC_RETURN; See Note 5 */ | |||
| #else | |||
| *(--p_stk) = (OS_STK)0xFFFFFFFDuL; /* R14: EXEC_RETURN; See Note 5 */ | |||
| #endif | |||
| /* Remaining registers saved on process stack */ | |||
| *(--p_stk) = (OS_STK)0x11111111uL; /* R11 */ | |||
| *(--p_stk) = (OS_STK)0x10101010uL; /* R10 */ | |||
| *(--p_stk) = (OS_STK)0x09090909uL; /* R9 */ | |||
| *(--p_stk) = (OS_STK)0x08080808uL; /* R8 */ | |||
| *(--p_stk) = (OS_STK)0x07070707uL; /* R7 */ | |||
| *(--p_stk) = (OS_STK)0x06060606uL; /* R6 */ | |||
| *(--p_stk) = (OS_STK)0x05050505uL; /* R5 */ | |||
| *(--p_stk) = (OS_STK)0x04040404uL; /* R4 */ | |||
| #if (OS_CPU_ARM_FP_EN > 0u) | |||
| /* Initialize S16-S31 floating point registers */ | |||
| *(--p_stk) = (OS_STK)0x41F80000u; /* S31 */ | |||
| *(--p_stk) = (OS_STK)0x41F00000u; /* S30 */ | |||
| *(--p_stk) = (OS_STK)0x41E80000u; /* S29 */ | |||
| *(--p_stk) = (OS_STK)0x41E00000u; /* S28 */ | |||
| *(--p_stk) = (OS_STK)0x41D80000u; /* S27 */ | |||
| *(--p_stk) = (OS_STK)0x41D00000u; /* S26 */ | |||
| *(--p_stk) = (OS_STK)0x41C80000u; /* S25 */ | |||
| *(--p_stk) = (OS_STK)0x41C00000u; /* S24 */ | |||
| *(--p_stk) = (OS_STK)0x41B80000u; /* S23 */ | |||
| *(--p_stk) = (OS_STK)0x41B00000u; /* S22 */ | |||
| *(--p_stk) = (OS_STK)0x41A80000u; /* S21 */ | |||
| *(--p_stk) = (OS_STK)0x41A00000u; /* S20 */ | |||
| *(--p_stk) = (OS_STK)0x41980000u; /* S19 */ | |||
| *(--p_stk) = (OS_STK)0x41900000u; /* S18 */ | |||
| *(--p_stk) = (OS_STK)0x41880000u; /* S17 */ | |||
| *(--p_stk) = (OS_STK)0x41800000u; /* S16 */ | |||
| #endif | |||
| return (p_stk); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TASK SWITCH HOOK | |||
| * | |||
| * Description: This function is called when a task switch is performed. This allows you to perform other | |||
| * operations during a context switch. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Note(s) : 1) Interrupts are disabled during this call. | |||
| * 2) It is assumed that the global pointer 'OSTCBHighRdy' points to the TCB of the task that | |||
| * will be 'switched in' (i.e. the highest priority task) and, 'OSTCBCur' points to the | |||
| * task being switched out (i.e. the preempted task). | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if (OS_CPU_HOOKS_EN > 0u) && (OS_TASK_SW_HOOK_EN > 0u) | |||
| void OSTaskSwHook (void) | |||
| { | |||
| #if (OS_CPU_ARM_FP_EN > 0u) | |||
| OS_CPU_FP_Reg_Push(OSTCBCur->OSTCBStkPtr); /* Push the FP registers of the current task. */ | |||
| #endif | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TaskSwHook(); | |||
| #endif | |||
| OS_TRACE_TASK_SWITCHED_IN(OSTCBHighRdy); | |||
| #if (OS_CPU_ARM_FP_EN > 0u) | |||
| OS_CPU_FP_Reg_Pop(OSTCBHighRdy->OSTCBStkPtr); /* Pop the FP registers of the highest ready task. */ | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * OS_TCBInit() HOOK | |||
| * | |||
| * Description: This function is called by OS_TCBInit() after setting up most of the TCB. | |||
| * | |||
| * Arguments : ptcb is a pointer to the TCB of the task being created. | |||
| * | |||
| * Note(s) : 1) Interrupts may or may not be ENABLED during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_CPU_HOOKS_EN > 0u | |||
| void OSTCBInitHook (OS_TCB *ptcb) | |||
| { | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TCBInitHook(ptcb); | |||
| #else | |||
| (void)ptcb; /* Prevent compiler warning */ | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * TICK HOOK | |||
| * | |||
| * Description: This function is called every tick. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Note(s) : 1) Interrupts may or may not be ENABLED during this call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if (OS_CPU_HOOKS_EN > 0u) && (OS_TIME_TICK_HOOK_EN > 0u) | |||
| void OSTimeTickHook (void) | |||
| { | |||
| #if OS_APP_HOOKS_EN > 0u | |||
| App_TimeTickHook(); | |||
| #endif | |||
| #if OS_TMR_EN > 0u | |||
| OSTmrCtr++; | |||
| if (OSTmrCtr >= (OS_TICKS_PER_SEC / OS_TMR_CFG_TICKS_PER_SEC)) { | |||
| OSTmrCtr = 0u; | |||
| OSTmrSignal(); | |||
| } | |||
| #endif | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * SYS TICK HANDLER | |||
| * | |||
| * Description: Handle the system tick (SysTick) interrupt, which is used to generate the uC/OS-II tick | |||
| * interrupt. | |||
| * | |||
| * Arguments : None. | |||
| * | |||
| * Note(s) : 1) This function MUST be placed on entry 15 of the Cortex-M vector table. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OS_CPU_SysTickHandler (void) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr; | |||
| #endif | |||
| OS_ENTER_CRITICAL(); | |||
| OSIntEnter(); /* Tell uC/OS-II that we are starting an ISR */ | |||
| OS_EXIT_CRITICAL(); | |||
| OSTimeTick(); /* Call uC/OS-II's OSTimeTick() */ | |||
| OSIntExit(); /* Tell uC/OS-II that we are leaving the ISR */ | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * INITIALIZE SYS TICK | |||
| * | |||
| * Description: Initialize the SysTick using the CPU clock frequency. | |||
| * | |||
| * Arguments : cpu_freq CPU clock frequency. | |||
| * | |||
| * Note(s) : 1) This function MUST be called after OSStart() & after processor initialization. | |||
| * | |||
| * 2) Either OS_CPU_SysTickInitFreq or OS_CPU_SysTickInit() can be called. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OS_CPU_SysTickInitFreq (INT32U cpu_freq) | |||
| { | |||
| INT32U cnts; | |||
| cnts = (cpu_freq / (INT32U)OS_TICKS_PER_SEC); /* Determine nbr SysTick cnts between two OS tick intr. */ | |||
| OS_CPU_SysTickInit(cnts); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * INITIALIZE SYS TICK | |||
| * | |||
| * Description: Initialize the SysTick using the number of counts between two ticks. | |||
| * | |||
| * Arguments : cnts Number of SysTick counts between two OS tick interrupts. | |||
| * | |||
| * Note(s) : 1) This function MUST be called after OSStart() & after processor initialization. | |||
| * | |||
| * 2) Either OS_CPU_SysTickInitFreq or OS_CPU_SysTickInit() can be called. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OS_CPU_SysTickInit (INT32U cnts) | |||
| { | |||
| INT32U prio; | |||
| INT32U basepri; | |||
| /* Set BASEPRI boundary from the configuration. */ | |||
| basepri = (INT32U)(CPU_CFG_KA_IPL_BOUNDARY << (8u - CPU_CFG_NVIC_PRIO_BITS)); | |||
| OS_CPU_CM_SYST_RVR = cnts - 1u; /* Set Reload register. */ | |||
| /* Set SysTick handler prio. */ | |||
| prio = OS_CPU_CM_SCB_SHPRI3; | |||
| prio &= 0x00FFFFFFu; | |||
| prio |= (basepri << 24u); | |||
| OS_CPU_CM_SCB_SHPRI3 = prio; | |||
| /* Enable timer. */ | |||
| OS_CPU_CM_SYST_CSR |= OS_CPU_CM_SYST_CSR_CLKSOURCE | | |||
| OS_CPU_CM_SYST_CSR_ENABLE; | |||
| /* Enable timer interrupt. */ | |||
| OS_CPU_CM_SYST_CSR |= OS_CPU_CM_SYST_CSR_TICKINT; | |||
| } | |||
| @@ -0,0 +1,328 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * ARMv7-M Port | |||
| * DEBUGGER CONSTANTS | |||
| * | |||
| * Filename : os_dbg.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| * For : ARMv7-M Cortex-M | |||
| * Mode : Thumb-2 ISA | |||
| * Toolchain : IAR EWARM | |||
| ********************************************************************************************************* | |||
| * Note(s) : (1) This port supports the ARM Cortex-M3, Cortex-M4 and Cortex-M7 architectures. | |||
| * (2) It has been tested with the following Hardware Floating Point Unit. | |||
| * (a) Single-precision: FPv4-SP-D16-M and FPv5-SP-D16-M | |||
| * (b) Double-precision: FPv5-D16-M | |||
| ********************************************************************************************************* | |||
| */ | |||
| #include <ucos_ii.h> | |||
| #define OS_COMPILER_OPT __root | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DEBUG DATA | |||
| ********************************************************************************************************* | |||
| */ | |||
| OS_COMPILER_OPT INT16U const OSDebugEn = OS_DEBUG_EN; /* Debug constants are defined below */ | |||
| #if OS_DEBUG_EN > 0u | |||
| OS_COMPILER_OPT INT32U const OSEndiannessTest = 0x12345678L; /* Variable to test CPU endianness */ | |||
| OS_COMPILER_OPT INT16U const OSEventEn = OS_EVENT_EN; | |||
| OS_COMPILER_OPT INT16U const OSEventMax = OS_MAX_EVENTS; /* Number of event control blocks */ | |||
| OS_COMPILER_OPT INT16U const OSEventNameEn = OS_EVENT_NAME_EN; | |||
| #if (OS_EVENT_EN > 0u) && (OS_MAX_EVENTS > 0u) | |||
| OS_COMPILER_OPT INT16U const OSEventSize = sizeof(OS_EVENT); /* Size in Bytes of OS_EVENT */ | |||
| OS_COMPILER_OPT INT16U const OSEventTblSize = sizeof(OSEventTbl); /* Size of OSEventTbl[] in bytes */ | |||
| #else | |||
| OS_COMPILER_OPT INT16U const OSEventSize = 0u; | |||
| OS_COMPILER_OPT INT16U const OSEventTblSize = 0u; | |||
| #endif | |||
| OS_COMPILER_OPT INT16U const OSEventMultiEn = OS_EVENT_MULTI_EN; | |||
| OS_COMPILER_OPT INT16U const OSFlagEn = OS_FLAG_EN; | |||
| #if (OS_FLAG_EN > 0u) && (OS_MAX_FLAGS > 0u) | |||
| OS_COMPILER_OPT INT16U const OSFlagGrpSize = sizeof(OS_FLAG_GRP); /* Size in Bytes of OS_FLAG_GRP */ | |||
| OS_COMPILER_OPT INT16U const OSFlagNodeSize = sizeof(OS_FLAG_NODE); /* Size in Bytes of OS_FLAG_NODE */ | |||
| OS_COMPILER_OPT INT16U const OSFlagWidth = sizeof(OS_FLAGS); /* Width (in bytes) of OS_FLAGS */ | |||
| #else | |||
| OS_COMPILER_OPT INT16U const OSFlagGrpSize = 0u; | |||
| OS_COMPILER_OPT INT16U const OSFlagNodeSize = 0u; | |||
| OS_COMPILER_OPT INT16U const OSFlagWidth = 0u; | |||
| #endif | |||
| OS_COMPILER_OPT INT16U const OSFlagMax = OS_MAX_FLAGS; | |||
| OS_COMPILER_OPT INT16U const OSFlagNameEn = OS_FLAG_NAME_EN; | |||
| OS_COMPILER_OPT INT16U const OSLowestPrio = OS_LOWEST_PRIO; | |||
| OS_COMPILER_OPT INT16U const OSMboxEn = OS_MBOX_EN; | |||
| OS_COMPILER_OPT INT16U const OSMemEn = OS_MEM_EN; | |||
| OS_COMPILER_OPT INT16U const OSMemMax = OS_MAX_MEM_PART; /* Number of memory partitions */ | |||
| OS_COMPILER_OPT INT16U const OSMemNameEn = OS_MEM_NAME_EN; | |||
| #if (OS_MEM_EN > 0u) && (OS_MAX_MEM_PART > 0u) | |||
| OS_COMPILER_OPT INT16U const OSMemSize = sizeof(OS_MEM); /* Mem. Partition header sine (bytes) */ | |||
| OS_COMPILER_OPT INT16U const OSMemTblSize = sizeof(OSMemTbl); | |||
| #else | |||
| OS_COMPILER_OPT INT16U const OSMemSize = 0u; | |||
| OS_COMPILER_OPT INT16U const OSMemTblSize = 0u; | |||
| #endif | |||
| OS_COMPILER_OPT INT16U const OSMutexEn = OS_MUTEX_EN; | |||
| OS_COMPILER_OPT INT16U const OSPtrSize = sizeof(void *); /* Size in Bytes of a pointer */ | |||
| OS_COMPILER_OPT INT16U const OSQEn = OS_Q_EN; | |||
| OS_COMPILER_OPT INT16U const OSQMax = OS_MAX_QS; /* Number of queues */ | |||
| #if (OS_Q_EN > 0u) && (OS_MAX_QS > 0u) | |||
| OS_COMPILER_OPT INT16U const OSQSize = sizeof(OS_Q); /* Size in bytes of OS_Q structure */ | |||
| #else | |||
| OS_COMPILER_OPT INT16U const OSQSize = 0u; | |||
| #endif | |||
| OS_COMPILER_OPT INT16U const OSRdyTblSize = OS_RDY_TBL_SIZE; /* Number of bytes in the ready table */ | |||
| OS_COMPILER_OPT INT16U const OSSemEn = OS_SEM_EN; | |||
| OS_COMPILER_OPT INT16U const OSStkWidth = sizeof(OS_STK); /* Size in Bytes of a stack entry */ | |||
| OS_COMPILER_OPT INT16U const OSTaskCreateEn = OS_TASK_CREATE_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskCreateExtEn = OS_TASK_CREATE_EXT_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskDelEn = OS_TASK_DEL_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskIdleStkSize = OS_TASK_IDLE_STK_SIZE; | |||
| OS_COMPILER_OPT INT16U const OSTaskProfileEn = OS_TASK_PROFILE_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskMax = OS_MAX_TASKS + OS_N_SYS_TASKS; /* Total max. number of tasks */ | |||
| OS_COMPILER_OPT INT16U const OSTaskNameEn = OS_TASK_NAME_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskStatEn = OS_TASK_STAT_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskStatStkSize = OS_TASK_STAT_STK_SIZE; | |||
| OS_COMPILER_OPT INT16U const OSTaskStatStkChkEn = OS_TASK_STAT_STK_CHK_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskSwHookEn = OS_TASK_SW_HOOK_EN; | |||
| OS_COMPILER_OPT INT16U const OSTaskRegTblSize = OS_TASK_REG_TBL_SIZE; | |||
| OS_COMPILER_OPT INT16U const OSTCBPrioTblMax = OS_LOWEST_PRIO + 1u; /* Number of entries in OSTCBPrioTbl[] */ | |||
| OS_COMPILER_OPT INT16U const OSTCBSize = sizeof(OS_TCB); /* Size in Bytes of OS_TCB */ | |||
| OS_COMPILER_OPT INT16U const OSTicksPerSec = OS_TICKS_PER_SEC; | |||
| OS_COMPILER_OPT INT16U const OSTimeTickHookEn = OS_TIME_TICK_HOOK_EN; | |||
| OS_COMPILER_OPT INT16U const OSVersionNbr = OS_VERSION; | |||
| OS_COMPILER_OPT INT16U const OSTmrEn = OS_TMR_EN; | |||
| OS_COMPILER_OPT INT16U const OSTmrCfgMax = OS_TMR_CFG_MAX; | |||
| OS_COMPILER_OPT INT16U const OSTmrCfgNameEn = OS_TMR_CFG_NAME_EN; | |||
| OS_COMPILER_OPT INT16U const OSTmrCfgWheelSize = OS_TMR_CFG_WHEEL_SIZE; | |||
| OS_COMPILER_OPT INT16U const OSTmrCfgTicksPerSec = OS_TMR_CFG_TICKS_PER_SEC; | |||
| #if (OS_TMR_EN > 0u) && (OS_TMR_CFG_MAX > 0u) | |||
| OS_COMPILER_OPT INT16U const OSTmrSize = sizeof(OS_TMR); | |||
| OS_COMPILER_OPT INT16U const OSTmrTblSize = sizeof(OSTmrTbl); | |||
| OS_COMPILER_OPT INT16U const OSTmrWheelSize = sizeof(OS_TMR_WHEEL); | |||
| OS_COMPILER_OPT INT16U const OSTmrWheelTblSize = sizeof(OSTmrWheelTbl); | |||
| #else | |||
| OS_COMPILER_OPT INT16U const OSTmrSize = 0u; | |||
| OS_COMPILER_OPT INT16U const OSTmrTblSize = 0u; | |||
| OS_COMPILER_OPT INT16U const OSTmrWheelSize = 0u; | |||
| OS_COMPILER_OPT INT16U const OSTmrWheelTblSize = 0u; | |||
| #endif | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DEBUG DATA | |||
| * TOTAL DATA SPACE (i.e. RAM) USED BY uC/OS-II | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_DEBUG_EN > 0u | |||
| OS_COMPILER_OPT INT16U const OSDataSize = sizeof(OSCtxSwCtr) | |||
| #if (OS_EVENT_EN > 0u) && (OS_MAX_EVENTS > 0u) | |||
| + sizeof(OSEventFreeList) | |||
| + sizeof(OSEventTbl) | |||
| #endif | |||
| #if (OS_FLAG_EN > 0u) && (OS_MAX_FLAGS > 0u) | |||
| + sizeof(OSFlagTbl) | |||
| + sizeof(OSFlagFreeList) | |||
| #endif | |||
| #if OS_TASK_STAT_EN > 0u | |||
| + sizeof(OSCPUUsage) | |||
| + sizeof(OSIdleCtrMax) | |||
| + sizeof(OSIdleCtrRun) | |||
| + sizeof(OSStatRdy) | |||
| + sizeof(OSTaskStatStk) | |||
| #endif | |||
| #if OS_TICK_STEP_EN > 0u | |||
| + sizeof(OSTickStepState) | |||
| #endif | |||
| #if (OS_MEM_EN > 0u) && (OS_MAX_MEM_PART > 0u) | |||
| + sizeof(OSMemFreeList) | |||
| + sizeof(OSMemTbl) | |||
| #endif | |||
| #if (OS_Q_EN > 0u) && (OS_MAX_QS > 0u) | |||
| + sizeof(OSQFreeList) | |||
| + sizeof(OSQTbl) | |||
| #endif | |||
| #if OS_TIME_GET_SET_EN > 0u | |||
| + sizeof(OSTime) | |||
| #endif | |||
| #if (OS_TMR_EN > 0u) && (OS_TMR_CFG_MAX > 0u) | |||
| + sizeof(OSTmrFree) | |||
| + sizeof(OSTmrUsed) | |||
| + sizeof(OSTmrTime) | |||
| + sizeof(OSTmrSem) | |||
| + sizeof(OSTmrSemSignal) | |||
| + sizeof(OSTmrTbl) | |||
| + sizeof(OSTmrFreeList) | |||
| + sizeof(OSTmrTaskStk) | |||
| + sizeof(OSTmrWheelTbl) | |||
| #endif | |||
| + sizeof(OSIntNesting) | |||
| + sizeof(OSLockNesting) | |||
| + sizeof(OSPrioCur) | |||
| + sizeof(OSPrioHighRdy) | |||
| + sizeof(OSRdyGrp) | |||
| + sizeof(OSRdyTbl) | |||
| + sizeof(OSRunning) | |||
| + sizeof(OSTaskCtr) | |||
| + sizeof(OSIdleCtr) | |||
| + sizeof(OSTaskIdleStk) | |||
| + sizeof(OSTCBCur) | |||
| + sizeof(OSTCBFreeList) | |||
| + sizeof(OSTCBHighRdy) | |||
| + sizeof(OSTCBList) | |||
| + sizeof(OSTCBPrioTbl) | |||
| + sizeof(OSTCBTbl); | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * OS DEBUG INITIALIZATION | |||
| * | |||
| * Description: This function is used to make sure that debug variables that are unused in the application | |||
| * are not optimized away. This function might not be necessary for all compilers. In this | |||
| * case, you should simply DELETE the code in this function while still leaving the declaration | |||
| * of the function itself. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Returns : none | |||
| * | |||
| * Note(s) : (1) This code doesn't do anything, it simply prevents the compiler from optimizing out | |||
| * the 'const' variables which are declared in this file. | |||
| * (2) You may decide to 'compile out' the code (by using #if 0/#endif) INSIDE the function | |||
| * if your compiler DOES NOT optimize out the 'const' variables above. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_DEBUG_EN > 0u | |||
| void OSDebugInit (void) | |||
| { | |||
| void *ptemp; | |||
| ptemp = (void *)&OSDebugEn; | |||
| ptemp = (void *)&OSEndiannessTest; | |||
| ptemp = (void *)&OSEventMax; | |||
| ptemp = (void *)&OSEventNameEn; | |||
| ptemp = (void *)&OSEventEn; | |||
| ptemp = (void *)&OSEventSize; | |||
| ptemp = (void *)&OSEventTblSize; | |||
| ptemp = (void *)&OSEventMultiEn; | |||
| ptemp = (void *)&OSFlagEn; | |||
| ptemp = (void *)&OSFlagGrpSize; | |||
| ptemp = (void *)&OSFlagNodeSize; | |||
| ptemp = (void *)&OSFlagWidth; | |||
| ptemp = (void *)&OSFlagMax; | |||
| ptemp = (void *)&OSFlagNameEn; | |||
| ptemp = (void *)&OSLowestPrio; | |||
| ptemp = (void *)&OSMboxEn; | |||
| ptemp = (void *)&OSMemEn; | |||
| ptemp = (void *)&OSMemMax; | |||
| ptemp = (void *)&OSMemNameEn; | |||
| ptemp = (void *)&OSMemSize; | |||
| ptemp = (void *)&OSMemTblSize; | |||
| ptemp = (void *)&OSMutexEn; | |||
| ptemp = (void *)&OSPtrSize; | |||
| ptemp = (void *)&OSQEn; | |||
| ptemp = (void *)&OSQMax; | |||
| ptemp = (void *)&OSQSize; | |||
| ptemp = (void *)&OSRdyTblSize; | |||
| ptemp = (void *)&OSSemEn; | |||
| ptemp = (void *)&OSStkWidth; | |||
| ptemp = (void *)&OSTaskCreateEn; | |||
| ptemp = (void *)&OSTaskCreateExtEn; | |||
| ptemp = (void *)&OSTaskDelEn; | |||
| ptemp = (void *)&OSTaskIdleStkSize; | |||
| ptemp = (void *)&OSTaskProfileEn; | |||
| ptemp = (void *)&OSTaskMax; | |||
| ptemp = (void *)&OSTaskNameEn; | |||
| ptemp = (void *)&OSTaskStatEn; | |||
| ptemp = (void *)&OSTaskStatStkSize; | |||
| ptemp = (void *)&OSTaskStatStkChkEn; | |||
| ptemp = (void *)&OSTaskSwHookEn; | |||
| ptemp = (void *)&OSTCBPrioTblMax; | |||
| ptemp = (void *)&OSTCBSize; | |||
| ptemp = (void *)&OSTicksPerSec; | |||
| ptemp = (void *)&OSTimeTickHookEn; | |||
| #if OS_TMR_EN > 0u | |||
| ptemp = (void *)&OSTmrTbl[0]; | |||
| ptemp = (void *)&OSTmrWheelTbl[0]; | |||
| ptemp = (void *)&OSTmrEn; | |||
| ptemp = (void *)&OSTmrCfgMax; | |||
| ptemp = (void *)&OSTmrCfgNameEn; | |||
| ptemp = (void *)&OSTmrCfgWheelSize; | |||
| ptemp = (void *)&OSTmrCfgTicksPerSec; | |||
| ptemp = (void *)&OSTmrSize; | |||
| ptemp = (void *)&OSTmrTblSize; | |||
| ptemp = (void *)&OSTmrWheelSize; | |||
| ptemp = (void *)&OSTmrWheelTblSize; | |||
| #endif | |||
| ptemp = (void *)&OSVersionNbr; | |||
| ptemp = (void *)&OSDataSize; | |||
| ptemp = ptemp; /* Prevent compiler warning for 'ptemp' not being used! */ | |||
| } | |||
| #endif | |||
| @@ -0,0 +1,36 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * Filename : os.h | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| * Note : This file is included in the uC/OS-II for compatibility with uC/OS-III and should not be used | |||
| * in normal circumstances. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_H | |||
| #define OS_H | |||
| #include "ucos_ii.h" | |||
| typedef INT8U OS_ERR; | |||
| #endif | |||
| @@ -0,0 +1,342 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * DEBUGGER CONSTANTS | |||
| * | |||
| * Filename : os_dbg_r.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define MICRIUM_SOURCE | |||
| #include <ucos_ii.h> | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DEBUG DATA | |||
| ********************************************************************************************************* | |||
| */ | |||
| INT16U const OSDebugEn = OS_DEBUG_EN; /* Debug constants are defined below */ | |||
| #if OS_DEBUG_EN > 0u | |||
| INT32U const OSEndiannessTest = 0x12345678uL; /* Variable to test CPU endianness */ | |||
| INT16U const OSEventEn = OS_EVENT_EN; | |||
| INT16U const OSEventMax = OS_MAX_EVENTS; /* Number of event control blocks */ | |||
| INT16U const OSEventNameEn = OS_EVENT_NAME_EN; | |||
| #if (OS_EVENT_EN) && (OS_MAX_EVENTS > 0u) | |||
| INT16U const OSEventSize = sizeof(OS_EVENT); /* Size in Bytes of OS_EVENT */ | |||
| INT16U const OSEventTblSize = sizeof(OSEventTbl); /* Size of OSEventTbl[] in bytes */ | |||
| #else | |||
| INT16U const OSEventSize = 0u; | |||
| INT16U const OSEventTblSize = 0u; | |||
| #endif | |||
| INT16U const OSEventMultiEn = OS_EVENT_MULTI_EN; | |||
| INT16U const OSFlagEn = OS_FLAG_EN; | |||
| #if (OS_FLAG_EN > 0u) && (OS_MAX_FLAGS > 0u) | |||
| INT16U const OSFlagGrpSize = sizeof(OS_FLAG_GRP); /* Size in Bytes of OS_FLAG_GRP */ | |||
| INT16U const OSFlagNodeSize = sizeof(OS_FLAG_NODE); /* Size in Bytes of OS_FLAG_NODE */ | |||
| INT16U const OSFlagWidth = sizeof(OS_FLAGS); /* Width (in bytes) of OS_FLAGS */ | |||
| #else | |||
| INT16U const OSFlagGrpSize = 0u; | |||
| INT16U const OSFlagNodeSize = 0u; | |||
| INT16U const OSFlagWidth = 0u; | |||
| #endif | |||
| INT16U const OSFlagMax = OS_MAX_FLAGS; | |||
| INT16U const OSFlagNameEn = OS_FLAG_NAME_EN; | |||
| INT16U const OSLowestPrio = OS_LOWEST_PRIO; | |||
| INT16U const OSMboxEn = OS_MBOX_EN; | |||
| INT16U const OSMemEn = OS_MEM_EN; | |||
| INT16U const OSMemMax = OS_MAX_MEM_PART; /* Number of memory partitions */ | |||
| INT16U const OSMemNameEn = OS_MEM_NAME_EN; | |||
| #if (OS_MEM_EN > 0u) && (OS_MAX_MEM_PART > 0u) | |||
| INT16U const OSMemSize = sizeof(OS_MEM); /* Mem. Partition header sine (bytes) */ | |||
| INT16U const OSMemTblSize = sizeof(OSMemTbl); | |||
| #else | |||
| INT16U const OSMemSize = 0u; | |||
| INT16U const OSMemTblSize = 0u; | |||
| #endif | |||
| INT16U const OSMutexEn = OS_MUTEX_EN; | |||
| INT16U const OSPtrSize = sizeof(void *); /* Size in Bytes of a pointer */ | |||
| INT16U const OSQEn = OS_Q_EN; | |||
| INT16U const OSQMax = OS_MAX_QS; /* Number of queues */ | |||
| #if (OS_Q_EN > 0u) && (OS_MAX_QS > 0u) | |||
| INT16U const OSQSize = sizeof(OS_Q); /* Size in bytes of OS_Q structure */ | |||
| #else | |||
| INT16U const OSQSize = 0u; | |||
| #endif | |||
| INT16U const OSRdyTblSize = OS_RDY_TBL_SIZE; /* Number of bytes in the ready table */ | |||
| INT16U const OSSemEn = OS_SEM_EN; | |||
| INT16U const OSStkWidth = sizeof(OS_STK); /* Size in Bytes of a stack entry */ | |||
| INT16U const OSTaskCreateEn = OS_TASK_CREATE_EN; | |||
| INT16U const OSTaskCreateExtEn = OS_TASK_CREATE_EXT_EN; | |||
| INT16U const OSTaskDelEn = OS_TASK_DEL_EN; | |||
| INT16U const OSTaskIdleStkSize = OS_TASK_IDLE_STK_SIZE; | |||
| INT16U const OSTaskProfileEn = OS_TASK_PROFILE_EN; | |||
| INT16U const OSTaskMax = OS_MAX_TASKS + OS_N_SYS_TASKS; /* Total max. number of tasks */ | |||
| INT16U const OSTaskNameEn = OS_TASK_NAME_EN; | |||
| INT16U const OSTaskStatEn = OS_TASK_STAT_EN; | |||
| INT16U const OSTaskStatStkSize = OS_TASK_STAT_STK_SIZE; | |||
| INT16U const OSTaskStatStkChkEn = OS_TASK_STAT_STK_CHK_EN; | |||
| INT16U const OSTaskSwHookEn = OS_TASK_SW_HOOK_EN; | |||
| INT16U const OSTaskRegTblSize = OS_TASK_REG_TBL_SIZE; | |||
| INT16U const OSTCBPrioTblMax = OS_LOWEST_PRIO + 1u; /* Number of entries in OSTCBPrioTbl[] */ | |||
| INT16U const OSTCBSize = sizeof(OS_TCB); /* Size in Bytes of OS_TCB */ | |||
| INT16U const OSTicksPerSec = OS_TICKS_PER_SEC; | |||
| INT16U const OSTimeTickHookEn = OS_TIME_TICK_HOOK_EN; | |||
| INT16U const OSVersionNbr = OS_VERSION; | |||
| #if OS_TASK_CREATE_EXT_EN > 0u | |||
| #if defined(OS_TLS_TBL_SIZE) && (OS_TLS_TBL_SIZE > 0u) | |||
| INT16U const OS_TLS_TblSize = OS_TLS_TBL_SIZE * sizeof(OS_TLS); | |||
| #else | |||
| INT16U const OS_TLS_TblSize = 0u; | |||
| #endif | |||
| #endif | |||
| INT16U const OSTmrEn = OS_TMR_EN; | |||
| INT16U const OSTmrCfgMax = OS_TMR_CFG_MAX; | |||
| INT16U const OSTmrCfgNameEn = OS_TMR_CFG_NAME_EN; | |||
| INT16U const OSTmrCfgWheelSize = OS_TMR_CFG_WHEEL_SIZE; | |||
| INT16U const OSTmrCfgTicksPerSec = OS_TMR_CFG_TICKS_PER_SEC; | |||
| #if (OS_TMR_EN > 0u) && (OS_TMR_CFG_MAX > 0u) | |||
| INT16U const OSTmrSize = sizeof(OS_TMR); | |||
| INT16U const OSTmrTblSize = sizeof(OSTmrTbl); | |||
| INT16U const OSTmrWheelSize = sizeof(OS_TMR_WHEEL); | |||
| INT16U const OSTmrWheelTblSize = sizeof(OSTmrWheelTbl); | |||
| #else | |||
| INT16U const OSTmrSize = 0u; | |||
| INT16U const OSTmrTblSize = 0u; | |||
| INT16U const OSTmrWheelSize = 0u; | |||
| INT16U const OSTmrWheelTblSize = 0u; | |||
| #endif | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DEBUG DATA | |||
| * TOTAL DATA SPACE (i.e. RAM) USED BY uC/OS-II | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_DEBUG_EN > 0u | |||
| INT16U const OSDataSize = sizeof(OSCtxSwCtr) | |||
| #if (OS_EVENT_EN) && (OS_MAX_EVENTS > 0u) | |||
| + sizeof(OSEventFreeList) | |||
| + sizeof(OSEventTbl) | |||
| #endif | |||
| #if (OS_FLAG_EN > 0u) && (OS_MAX_FLAGS > 0u) | |||
| + sizeof(OSFlagTbl) | |||
| + sizeof(OSFlagFreeList) | |||
| #endif | |||
| #if OS_TASK_STAT_EN > 0u | |||
| + sizeof(OSCPUUsage) | |||
| + sizeof(OSIdleCtrMax) | |||
| + sizeof(OSIdleCtrRun) | |||
| + sizeof(OSStatRdy) | |||
| + sizeof(OSTaskStatStk) | |||
| #endif | |||
| #if OS_TICK_STEP_EN > 0u | |||
| + sizeof(OSTickStepState) | |||
| #endif | |||
| #if (OS_MEM_EN > 0u) && (OS_MAX_MEM_PART > 0u) | |||
| + sizeof(OSMemFreeList) | |||
| + sizeof(OSMemTbl) | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| + sizeof(OSSafetyCriticalStartFlag) | |||
| #endif | |||
| #if (OS_Q_EN > 0u) && (OS_MAX_QS > 0u) | |||
| + sizeof(OSQFreeList) | |||
| + sizeof(OSQTbl) | |||
| #endif | |||
| #if OS_TASK_REG_TBL_SIZE > 0u | |||
| + sizeof(OSTaskRegNextAvailID) | |||
| #endif | |||
| #if OS_TIME_GET_SET_EN > 0u | |||
| + sizeof(OSTime) | |||
| #endif | |||
| #if (OS_TMR_EN > 0u) && (OS_TMR_CFG_MAX > 0u) | |||
| + sizeof(OSTmrFree) | |||
| + sizeof(OSTmrUsed) | |||
| + sizeof(OSTmrTime) | |||
| + sizeof(OSTmrSem) | |||
| + sizeof(OSTmrSemSignal) | |||
| + sizeof(OSTmrTbl) | |||
| + sizeof(OSTmrFreeList) | |||
| + sizeof(OSTmrTaskStk) | |||
| + sizeof(OSTmrWheelTbl) | |||
| #endif | |||
| + sizeof(OSIntNesting) | |||
| + sizeof(OSLockNesting) | |||
| + sizeof(OSPrioCur) | |||
| + sizeof(OSPrioHighRdy) | |||
| + sizeof(OSRdyGrp) | |||
| + sizeof(OSRdyTbl) | |||
| + sizeof(OSRunning) | |||
| + sizeof(OSTaskCtr) | |||
| + sizeof(OSIdleCtr) | |||
| + sizeof(OSTaskIdleStk) | |||
| + sizeof(OSTCBCur) | |||
| + sizeof(OSTCBFreeList) | |||
| + sizeof(OSTCBHighRdy) | |||
| + sizeof(OSTCBList) | |||
| + sizeof(OSTCBPrioTbl) | |||
| + sizeof(OSTCBTbl); | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * OS DEBUG INITIALIZATION | |||
| * | |||
| * Description: This function is used to make sure that debug variables that are unused in the application | |||
| * are not optimized away. This function might not be necessary for all compilers. In this | |||
| * case, you should simply DELETE the code in this function while still leaving the declaration | |||
| * of the function itself. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Returns : none | |||
| * | |||
| * Note(s) : (1) This code doesn't do anything, it simply prevents the compiler from optimizing out | |||
| * the 'const' variables which are declared in this file. | |||
| * (2) You may decide to 'compile out' the code (by using #if 0/#endif) INSIDE the function | |||
| * if your compiler DOES NOT optimize out the 'const' variables above. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_DEBUG_EN > 0u | |||
| void OSDebugInit (void) | |||
| { | |||
| void const *ptemp; | |||
| ptemp = (void const *)&OSDebugEn; | |||
| ptemp = (void const *)&OSEndiannessTest; | |||
| ptemp = (void const *)&OSEventMax; | |||
| ptemp = (void const *)&OSEventNameEn; | |||
| ptemp = (void const *)&OSEventEn; | |||
| ptemp = (void const *)&OSEventSize; | |||
| ptemp = (void const *)&OSEventTblSize; | |||
| ptemp = (void const *)&OSEventMultiEn; | |||
| ptemp = (void const *)&OSFlagEn; | |||
| ptemp = (void const *)&OSFlagGrpSize; | |||
| ptemp = (void const *)&OSFlagNodeSize; | |||
| ptemp = (void const *)&OSFlagWidth; | |||
| ptemp = (void const *)&OSFlagMax; | |||
| ptemp = (void const *)&OSFlagNameEn; | |||
| ptemp = (void const *)&OSLowestPrio; | |||
| ptemp = (void const *)&OSMboxEn; | |||
| ptemp = (void const *)&OSMemEn; | |||
| ptemp = (void const *)&OSMemMax; | |||
| ptemp = (void const *)&OSMemNameEn; | |||
| ptemp = (void const *)&OSMemSize; | |||
| ptemp = (void const *)&OSMemTblSize; | |||
| ptemp = (void const *)&OSMutexEn; | |||
| ptemp = (void const *)&OSPtrSize; | |||
| ptemp = (void const *)&OSQEn; | |||
| ptemp = (void const *)&OSQMax; | |||
| ptemp = (void const *)&OSQSize; | |||
| ptemp = (void const *)&OSRdyTblSize; | |||
| ptemp = (void const *)&OSSemEn; | |||
| ptemp = (void const *)&OSStkWidth; | |||
| ptemp = (void const *)&OSTaskCreateEn; | |||
| ptemp = (void const *)&OSTaskCreateExtEn; | |||
| ptemp = (void const *)&OSTaskDelEn; | |||
| ptemp = (void const *)&OSTaskIdleStkSize; | |||
| ptemp = (void const *)&OSTaskProfileEn; | |||
| ptemp = (void const *)&OSTaskMax; | |||
| ptemp = (void const *)&OSTaskNameEn; | |||
| ptemp = (void const *)&OSTaskStatEn; | |||
| ptemp = (void const *)&OSTaskStatStkSize; | |||
| ptemp = (void const *)&OSTaskStatStkChkEn; | |||
| ptemp = (void const *)&OSTaskSwHookEn; | |||
| ptemp = (void const *)&OSTCBPrioTblMax; | |||
| ptemp = (void const *)&OSTCBSize; | |||
| ptemp = (void const *)&OSTicksPerSec; | |||
| ptemp = (void const *)&OSTimeTickHookEn; | |||
| #if OS_TMR_EN > 0u | |||
| ptemp = (void const *)&OSTmrTbl[0]; | |||
| ptemp = (void const *)&OSTmrWheelTbl[0]; | |||
| ptemp = (void const *)&OSTmrEn; | |||
| ptemp = (void const *)&OSTmrCfgMax; | |||
| ptemp = (void const *)&OSTmrCfgNameEn; | |||
| ptemp = (void const *)&OSTmrCfgWheelSize; | |||
| ptemp = (void const *)&OSTmrCfgTicksPerSec; | |||
| ptemp = (void const *)&OSTmrSize; | |||
| ptemp = (void const *)&OSTmrTblSize; | |||
| ptemp = (void const *)&OSTmrWheelSize; | |||
| ptemp = (void const *)&OSTmrWheelTblSize; | |||
| #endif | |||
| ptemp = (void const *)&OSVersionNbr; | |||
| ptemp = (void const *)&OSDataSize; | |||
| ptemp = ptemp; /* Prevent compiler warning for 'ptemp' not being used! */ | |||
| } | |||
| #endif | |||
| @@ -0,0 +1,708 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * MESSAGE MAILBOX MANAGEMENT | |||
| * | |||
| * Filename : os_mbox.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_MBOX_C | |||
| #define OS_MBOX_C | |||
| #define MICRIUM_SOURCE | |||
| #ifndef OS_MASTER_FILE | |||
| #include <ucos_ii.h> | |||
| #endif | |||
| #if OS_MBOX_EN > 0u | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ACCEPT MESSAGE FROM MAILBOX | |||
| * | |||
| * Description: This function checks the mailbox to see if a message is available. Unlike OSMboxPend(), | |||
| * OSMboxAccept() does not suspend the calling task if a message is not available. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block | |||
| * | |||
| * Returns : != (void *)0 is the message in the mailbox if one is available. The mailbox is cleared | |||
| * so the next time OSMboxAccept() is called, the mailbox will be empty. | |||
| * == (void *)0 if the mailbox is empty or, | |||
| * if 'pevent' is a NULL pointer or, | |||
| * if you didn't pass the proper event pointer. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MBOX_ACCEPT_EN > 0u | |||
| void *OSMboxAccept (OS_EVENT *pevent) | |||
| { | |||
| void *pmsg; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MBOX) { /* Validate event block type */ | |||
| return ((void *)0); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pmsg = pevent->OSEventPtr; | |||
| pevent->OSEventPtr = (void *)0; /* Clear the mailbox */ | |||
| OS_EXIT_CRITICAL(); | |||
| return (pmsg); /* Return the message received (or NULL) */ | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * CREATE A MESSAGE MAILBOX | |||
| * | |||
| * Description: This function creates a message mailbox if free event control blocks are available. | |||
| * | |||
| * Arguments : pmsg is a pointer to a message that you wish to deposit in the mailbox. If | |||
| * you set this value to the NULL pointer (i.e. (void *)0) then the mailbox | |||
| * will be considered empty. | |||
| * | |||
| * Returns : != (OS_EVENT *)0 is a pointer to the event control clock (OS_EVENT) associated with the | |||
| * created mailbox | |||
| * == (OS_EVENT *)0 if no event control blocks were available | |||
| ********************************************************************************************************* | |||
| */ | |||
| OS_EVENT *OSMboxCreate (void *pmsg) | |||
| { | |||
| OS_EVENT *pevent; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| return ((OS_EVENT *)0); /* ... can't CREATE from an ISR */ | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pevent = OSEventFreeList; /* Get next free event control block */ | |||
| if (OSEventFreeList != (OS_EVENT *)0) { /* See if pool of free ECB pool was empty */ | |||
| OSEventFreeList = (OS_EVENT *)OSEventFreeList->OSEventPtr; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| if (pevent != (OS_EVENT *)0) { | |||
| pevent->OSEventType = OS_EVENT_TYPE_MBOX; | |||
| pevent->OSEventCnt = 0u; | |||
| pevent->OSEventPtr = pmsg; /* Deposit message in event control block */ | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| OS_EventWaitListInit(pevent); | |||
| OS_TRACE_MBOX_CREATE(pevent, pevent->OSEventName); | |||
| } | |||
| return (pevent); /* Return pointer to event control block */ | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DELETE A MAIBOX | |||
| * | |||
| * Description: This function deletes a mailbox and readies all tasks pending on the mailbox. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * mailbox. | |||
| * | |||
| * opt determines delete options as follows: | |||
| * opt == OS_DEL_NO_PEND Delete the mailbox ONLY if no task pending | |||
| * opt == OS_DEL_ALWAYS Deletes the mailbox even if tasks are waiting. | |||
| * In this case, all the tasks pending will be readied. | |||
| * | |||
| * perr is a pointer to an error code that can contain one of the following values: | |||
| * OS_ERR_NONE The call was successful and the mailbox was deleted | |||
| * OS_ERR_DEL_ISR If you attempted to delete the mailbox from an ISR | |||
| * OS_ERR_INVALID_OPT An invalid option was specified | |||
| * OS_ERR_ILLEGAL_DEL_RUN_TIME If you tried to delete a mailbox after safety | |||
| * critical operation started. | |||
| * OS_ERR_TASK_WAITING One or more tasks were waiting on the mailbox | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a mailbox | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * | |||
| * Returns : pevent upon error | |||
| * (OS_EVENT *)0 if the mailbox was successfully deleted. | |||
| * | |||
| * Note(s) : 1) This function must be used with care. Tasks that would normally expect the presence of | |||
| * the mailbox MUST check the return code of OSMboxPend(). | |||
| * 2) OSMboxAccept() callers will not know that the intended mailbox has been deleted! | |||
| * 3) This call can potentially disable interrupts for a long time. The interrupt disable | |||
| * time is directly proportional to the number of tasks waiting on the mailbox. | |||
| * 4) Because ALL tasks pending on the mailbox will be readied, you MUST be careful in | |||
| * applications where the mailbox is used for mutual exclusion because the resource(s) | |||
| * will no longer be guarded by the mailbox. | |||
| * 5) All tasks that were waiting for the mailbox will be readied and returned an | |||
| * OS_ERR_PEND_ABORT if OSMboxDel() was called with OS_DEL_ALWAYS | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MBOX_DEL_EN > 0u | |||
| OS_EVENT *OSMboxDel (OS_EVENT *pevent, | |||
| INT8U opt, | |||
| INT8U *perr) | |||
| { | |||
| BOOLEAN tasks_waiting; | |||
| OS_EVENT *pevent_return; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| *perr = OS_ERR_ILLEGAL_DEL_RUN_TIME; | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (pevent); | |||
| } | |||
| #endif | |||
| OS_TRACE_MBOX_DEL_ENTER(pevent, opt); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MBOX) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_MBOX_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_DEL_ISR; /* ... can't DELETE from an ISR */ | |||
| OS_TRACE_MBOX_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any tasks waiting on mailbox */ | |||
| tasks_waiting = OS_TRUE; /* Yes */ | |||
| } else { | |||
| tasks_waiting = OS_FALSE; /* No */ | |||
| } | |||
| switch (opt) { | |||
| case OS_DEL_NO_PEND: /* Delete mailbox only if no task waiting */ | |||
| if (tasks_waiting == OS_FALSE) { | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; /* Get next free event control block */ | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Mailbox has been deleted */ | |||
| } else { | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_TASK_WAITING; | |||
| pevent_return = pevent; | |||
| } | |||
| break; | |||
| case OS_DEL_ALWAYS: /* Always delete the mailbox */ | |||
| while (pevent->OSEventGrp != 0u) { /* Ready ALL tasks waiting for mailbox */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_MBOX, OS_STAT_PEND_ABORT); | |||
| } | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; /* Get next free event control block */ | |||
| OS_EXIT_CRITICAL(); | |||
| if (tasks_waiting == OS_TRUE) { /* Reschedule only if task(s) were waiting */ | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| } | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Mailbox has been deleted */ | |||
| break; | |||
| default: | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_INVALID_OPT; | |||
| pevent_return = pevent; | |||
| break; | |||
| } | |||
| OS_TRACE_MBOX_DEL_EXIT(*perr); | |||
| return (pevent_return); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * PEND ON MAILBOX FOR A MESSAGE | |||
| * | |||
| * Description: This function waits for a message to be sent to a mailbox | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired mailbox | |||
| * | |||
| * timeout is an optional timeout period (in clock ticks). If non-zero, your task will | |||
| * wait for a message to arrive at the mailbox up to the amount of time | |||
| * specified by this argument. If you specify 0, however, your task will wait | |||
| * forever at the specified mailbox or, until a message arrives. | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * | |||
| * OS_ERR_NONE The call was successful and your task received a | |||
| * message. | |||
| * OS_ERR_TIMEOUT A message was not received within the specified 'timeout'. | |||
| * OS_ERR_PEND_ABORT The wait on the mailbox was aborted. | |||
| * OS_ERR_EVENT_TYPE Invalid event type | |||
| * OS_ERR_PEND_ISR If you called this function from an ISR and the result | |||
| * would lead to a suspension. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_PEND_LOCKED If you called this function when the scheduler is locked | |||
| * | |||
| * Returns : != (void *)0 is a pointer to the message received | |||
| * == (void *)0 if no message was received or, | |||
| * if 'pevent' is a NULL pointer or, | |||
| * if you didn't pass the proper pointer to the event control block. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void *OSMboxPend (OS_EVENT *pevent, | |||
| INT32U timeout, | |||
| INT8U *perr) | |||
| { | |||
| void *pmsg; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| OS_TRACE_MBOX_PEND_ENTER(pevent, timeout); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MBOX) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_MBOX_PEND_EXIT(*perr); | |||
| return ((void *)0); | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_PEND_ISR; /* ... can't PEND from an ISR */ | |||
| OS_TRACE_MBOX_PEND_EXIT(*perr); | |||
| return ((void *)0); | |||
| } | |||
| if (OSLockNesting > 0u) { /* See if called with scheduler locked ... */ | |||
| *perr = OS_ERR_PEND_LOCKED; /* ... can't PEND when locked */ | |||
| OS_TRACE_MBOX_PEND_EXIT(*perr); | |||
| return ((void *)0); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pmsg = pevent->OSEventPtr; | |||
| if (pmsg != (void *)0) { /* See if there is already a message */ | |||
| pevent->OSEventPtr = (void *)0; /* Clear the mailbox */ | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| OS_TRACE_MBOX_PEND_EXIT(*perr); | |||
| return (pmsg); /* Return the message received (or NULL) */ | |||
| } | |||
| OSTCBCur->OSTCBStat |= OS_STAT_MBOX; /* Message not available, task will pend */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; | |||
| OSTCBCur->OSTCBDly = timeout; /* Load timeout in TCB */ | |||
| OS_EventTaskWait(pevent); /* Suspend task until event or timeout occurs */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find next highest priority task ready to run */ | |||
| OS_ENTER_CRITICAL(); | |||
| switch (OSTCBCur->OSTCBStatPend) { /* See if we timed-out or aborted */ | |||
| case OS_STAT_PEND_OK: | |||
| pmsg = OSTCBCur->OSTCBMsg; | |||
| *perr = OS_ERR_NONE; | |||
| break; | |||
| case OS_STAT_PEND_ABORT: | |||
| pmsg = (void *)0; | |||
| *perr = OS_ERR_PEND_ABORT; /* Indicate that we aborted */ | |||
| break; | |||
| case OS_STAT_PEND_TO: | |||
| default: | |||
| OS_EventTaskRemove(OSTCBCur, pevent); | |||
| pmsg = (void *)0; | |||
| *perr = OS_ERR_TIMEOUT; /* Indicate that we didn't get event within TO */ | |||
| break; | |||
| } | |||
| OSTCBCur->OSTCBStat = OS_STAT_RDY; /* Set task status to ready */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; /* Clear pend status */ | |||
| OSTCBCur->OSTCBEventPtr = (OS_EVENT *)0; /* Clear event pointers */ | |||
| #if (OS_EVENT_MULTI_EN > 0u) | |||
| OSTCBCur->OSTCBEventMultiPtr = (OS_EVENT **)0; | |||
| OSTCBCur->OSTCBEventMultiRdy = (OS_EVENT *)0; | |||
| #endif | |||
| OSTCBCur->OSTCBMsg = (void *)0; /* Clear received message */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MBOX_PEND_EXIT(*perr); | |||
| return (pmsg); /* Return received message */ | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ABORT WAITING ON A MESSAGE MAILBOX | |||
| * | |||
| * Description: This function aborts & readies any tasks currently waiting on a mailbox. This function | |||
| * should be used to fault-abort the wait on the mailbox, rather than to normally signal | |||
| * the mailbox via OSMboxPost() or OSMboxPostOpt(). | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired mailbox. | |||
| * | |||
| * opt determines the type of ABORT performed: | |||
| * OS_PEND_OPT_NONE ABORT wait for a single task (HPT) waiting on the | |||
| * mailbox | |||
| * OS_PEND_OPT_BROADCAST ABORT wait for ALL tasks that are waiting on the | |||
| * mailbox | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * | |||
| * OS_ERR_NONE No tasks were waiting on the mailbox. | |||
| * OS_ERR_PEND_ABORT At least one task waiting on the mailbox was readied | |||
| * and informed of the aborted wait; check return value | |||
| * for the number of tasks whose wait on the mailbox | |||
| * was aborted. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a mailbox. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * | |||
| * Returns : == 0 if no tasks were waiting on the mailbox, or upon error. | |||
| * > 0 if one or more tasks waiting on the mailbox are now readied and informed. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MBOX_PEND_ABORT_EN > 0u | |||
| INT8U OSMboxPendAbort (OS_EVENT *pevent, | |||
| INT8U opt, | |||
| INT8U *perr) | |||
| { | |||
| INT8U nbr_tasks; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return (0u); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (0u); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MBOX) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| return (0u); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task waiting on mailbox? */ | |||
| nbr_tasks = 0u; | |||
| switch (opt) { | |||
| case OS_PEND_OPT_BROADCAST: /* Do we need to abort ALL waiting tasks? */ | |||
| while (pevent->OSEventGrp != 0u) { /* Yes, ready ALL tasks waiting on mailbox */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_MBOX, OS_STAT_PEND_ABORT); | |||
| nbr_tasks++; | |||
| } | |||
| break; | |||
| case OS_PEND_OPT_NONE: | |||
| default: /* No, ready HPT waiting on mailbox */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_MBOX, OS_STAT_PEND_ABORT); | |||
| nbr_tasks++; | |||
| break; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find HPT ready to run */ | |||
| *perr = OS_ERR_PEND_ABORT; | |||
| return (nbr_tasks); | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| return (0u); /* No tasks waiting on mailbox */ | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * POST MESSAGE TO A MAILBOX | |||
| * | |||
| * Description: This function sends a message to a mailbox | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired mailbox | |||
| * | |||
| * pmsg is a pointer to the message to send. You MUST NOT send a NULL pointer. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_MBOX_FULL If the mailbox already contains a message. You can can only send one | |||
| * message at a time and thus, the message MUST be consumed before you | |||
| * are allowed to send another one. | |||
| * OS_ERR_EVENT_TYPE If you are attempting to post to a non mailbox. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_POST_NULL_PTR If you are attempting to post a NULL pointer | |||
| * | |||
| * Note(s) : 1) HPT means Highest Priority Task | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MBOX_POST_EN > 0u | |||
| INT8U OSMboxPost (OS_EVENT *pevent, | |||
| void *pmsg) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| if (pmsg == (void *)0) { /* Make sure we are not posting a NULL pointer */ | |||
| return (OS_ERR_POST_NULL_PTR); | |||
| } | |||
| #endif | |||
| OS_TRACE_MBOX_POST_ENTER(pevent); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MBOX) { /* Validate event block type */ | |||
| OS_TRACE_MBOX_POST_EXIT(OS_ERR_EVENT_TYPE); | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task pending on mailbox */ | |||
| /* Ready HPT waiting on event */ | |||
| (void)OS_EventTaskRdy(pevent, pmsg, OS_STAT_MBOX, OS_STAT_PEND_OK); | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| OS_TRACE_MBOX_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| if (pevent->OSEventPtr != (void *)0) { /* Make sure mailbox doesn't already have a msg */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MBOX_POST_EXIT(OS_ERR_MBOX_FULL); | |||
| return (OS_ERR_MBOX_FULL); | |||
| } | |||
| pevent->OSEventPtr = pmsg; /* Place message in mailbox */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MBOX_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * POST MESSAGE TO A MAILBOX | |||
| * | |||
| * Description: This function sends a message to a mailbox | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired mailbox | |||
| * | |||
| * pmsg is a pointer to the message to send. You MUST NOT send a NULL pointer. | |||
| * | |||
| * opt determines the type of POST performed: | |||
| * OS_POST_OPT_NONE POST to a single waiting task | |||
| * (Identical to OSMboxPost()) | |||
| * OS_POST_OPT_BROADCAST POST to ALL tasks that are waiting on the mailbox | |||
| * | |||
| * OS_POST_OPT_NO_SCHED Indicates that the scheduler will NOT be invoked | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_MBOX_FULL If the mailbox already contains a message. You can can only send one | |||
| * message at a time and thus, the message MUST be consumed before you | |||
| * are allowed to send another one. | |||
| * OS_ERR_EVENT_TYPE If you are attempting to post to a non mailbox. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_POST_NULL_PTR If you are attempting to post a NULL pointer | |||
| * | |||
| * Note(s) : 1) HPT means Highest Priority Task | |||
| * | |||
| * Warning : Interrupts can be disabled for a long time if you do a 'broadcast'. In fact, the | |||
| * interrupt disable time is proportional to the number of tasks waiting on the mailbox. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MBOX_POST_OPT_EN > 0u | |||
| INT8U OSMboxPostOpt (OS_EVENT *pevent, | |||
| void *pmsg, | |||
| INT8U opt) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| if (pmsg == (void *)0) { /* Make sure we are not posting a NULL pointer */ | |||
| return (OS_ERR_POST_NULL_PTR); | |||
| } | |||
| #endif | |||
| OS_TRACE_MBOX_POST_OPT_ENTER(pevent, opt); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MBOX) { /* Validate event block type */ | |||
| OS_TRACE_MBOX_POST_OPT_EXIT(OS_ERR_EVENT_TYPE); | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task pending on mailbox */ | |||
| if ((opt & OS_POST_OPT_BROADCAST) != 0x00u) { /* Do we need to post msg to ALL waiting tasks ? */ | |||
| while (pevent->OSEventGrp != 0u) { /* Yes, Post to ALL tasks waiting on mailbox */ | |||
| (void)OS_EventTaskRdy(pevent, pmsg, OS_STAT_MBOX, OS_STAT_PEND_OK); | |||
| } | |||
| } else { /* No, Post to HPT waiting on mbox */ | |||
| (void)OS_EventTaskRdy(pevent, pmsg, OS_STAT_MBOX, OS_STAT_PEND_OK); | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| if ((opt & OS_POST_OPT_NO_SCHED) == 0u) { /* See if scheduler needs to be invoked */ | |||
| OS_Sched(); /* Find HPT ready to run */ | |||
| } | |||
| OS_TRACE_MBOX_POST_OPT_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| if (pevent->OSEventPtr != (void *)0) { /* Make sure mailbox doesn't already have a msg */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MBOX_POST_OPT_EXIT(OS_ERR_MBOX_FULL); | |||
| return (OS_ERR_MBOX_FULL); | |||
| } | |||
| pevent->OSEventPtr = pmsg; /* Place message in mailbox */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MBOX_POST_OPT_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * QUERY A MESSAGE MAILBOX | |||
| * | |||
| * Description: This function obtains information about a message mailbox. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired mailbox | |||
| * | |||
| * p_mbox_data is a pointer to a structure that will contain information about the message | |||
| * mailbox. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_EVENT_TYPE If you are attempting to obtain data from a non mailbox. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_PDATA_NULL If 'p_mbox_data' is a NULL pointer | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MBOX_QUERY_EN > 0u | |||
| INT8U OSMboxQuery (OS_EVENT *pevent, | |||
| OS_MBOX_DATA *p_mbox_data) | |||
| { | |||
| INT8U i; | |||
| OS_PRIO *psrc; | |||
| OS_PRIO *pdest; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| if (p_mbox_data == (OS_MBOX_DATA *)0) { /* Validate 'p_mbox_data' */ | |||
| return (OS_ERR_PDATA_NULL); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MBOX) { /* Validate event block type */ | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| p_mbox_data->OSEventGrp = pevent->OSEventGrp; /* Copy message mailbox wait list */ | |||
| psrc = &pevent->OSEventTbl[0]; | |||
| pdest = &p_mbox_data->OSEventTbl[0]; | |||
| for (i = 0u; i < OS_EVENT_TBL_SIZE; i++) { | |||
| *pdest++ = *psrc++; | |||
| } | |||
| p_mbox_data->OSMsg = pevent->OSEventPtr; /* Get message from mailbox */ | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif /* OS_MBOX_QUERY_EN */ | |||
| #endif /* OS_MBOX_EN */ | |||
| #endif /* OS_MBOX_C */ | |||
| @@ -0,0 +1,489 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * MEMORY MANAGEMENT | |||
| * | |||
| * Filename : os_mem.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_MEM_C | |||
| #define OS_MEM_C | |||
| #define MICRIUM_SOURCE | |||
| #ifndef OS_MASTER_FILE | |||
| #include <ucos_ii.h> | |||
| #endif | |||
| #if (OS_MEM_EN > 0u) && (OS_MAX_MEM_PART > 0u) | |||
| /* | |||
| ********************************************************************************************************* | |||
| * CREATE A MEMORY PARTITION | |||
| * | |||
| * Description : Create a fixed-sized memory partition that will be managed by uC/OS-II. | |||
| * | |||
| * Arguments : addr is the starting address of the memory partition | |||
| * | |||
| * nblks is the number of memory blocks to create from the partition. | |||
| * | |||
| * blksize is the size (in bytes) of each block in the memory partition. | |||
| * | |||
| * perr is a pointer to a variable containing an error message which will be set by | |||
| * this function to either: | |||
| * | |||
| * OS_ERR_NONE if the memory partition has been created correctly. | |||
| * OS_ERR_ILLEGAL_CREATE_RUN_TIME if you tried to create a memory partition after | |||
| * safety critical operation started. | |||
| * OS_ERR_MEM_INVALID_ADDR if you are specifying an invalid address for the memory | |||
| * storage of the partition or, the block does not align | |||
| * on a pointer boundary | |||
| * OS_ERR_MEM_INVALID_PART no free partitions available | |||
| * OS_ERR_MEM_INVALID_BLKS user specified an invalid number of blocks (must be >= 2) | |||
| * OS_ERR_MEM_INVALID_SIZE user specified an invalid block size | |||
| * - must be greater than the size of a pointer | |||
| * - must be able to hold an integral number of pointers | |||
| * Returns : != (OS_MEM *)0 is the partition was created | |||
| * == (OS_MEM *)0 if the partition was not created because of invalid arguments or, no | |||
| * free partition is available. | |||
| ********************************************************************************************************* | |||
| */ | |||
| OS_MEM *OSMemCreate (void *addr, | |||
| INT32U nblks, | |||
| INT32U blksize, | |||
| INT8U *perr) | |||
| { | |||
| OS_MEM *pmem; | |||
| INT8U *pblk; | |||
| void **plink; | |||
| INT32U loops; | |||
| INT32U i; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_MEM *)0); | |||
| } | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| *perr = OS_ERR_ILLEGAL_CREATE_RUN_TIME; | |||
| return ((OS_MEM *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (addr == (void *)0) { /* Must pass a valid address for the memory part.*/ | |||
| *perr = OS_ERR_MEM_INVALID_ADDR; | |||
| return ((OS_MEM *)0); | |||
| } | |||
| if (((INT32U)addr & (sizeof(void *) - 1u)) != 0u){ /* Must be pointer size aligned */ | |||
| *perr = OS_ERR_MEM_INVALID_ADDR; | |||
| return ((OS_MEM *)0); | |||
| } | |||
| if (nblks < 2u) { /* Must have at least 2 blocks per partition */ | |||
| *perr = OS_ERR_MEM_INVALID_BLKS; | |||
| return ((OS_MEM *)0); | |||
| } | |||
| if (blksize < sizeof(void *)) { /* Must contain space for at least a pointer */ | |||
| *perr = OS_ERR_MEM_INVALID_SIZE; | |||
| return ((OS_MEM *)0); | |||
| } | |||
| #endif | |||
| OS_ENTER_CRITICAL(); | |||
| pmem = OSMemFreeList; /* Get next free memory partition */ | |||
| if (OSMemFreeList != (OS_MEM *)0) { /* See if pool of free partitions was empty */ | |||
| OSMemFreeList = (OS_MEM *)OSMemFreeList->OSMemFreeList; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| if (pmem == (OS_MEM *)0) { /* See if we have a memory partition */ | |||
| *perr = OS_ERR_MEM_INVALID_PART; | |||
| return ((OS_MEM *)0); | |||
| } | |||
| plink = (void **)addr; /* Create linked list of free memory blocks */ | |||
| pblk = (INT8U *)addr; | |||
| loops = nblks - 1u; | |||
| for (i = 0u; i < loops; i++) { | |||
| pblk += blksize; /* Point to the FOLLOWING block */ | |||
| *plink = (void *)pblk; /* Save pointer to NEXT block in CURRENT block */ | |||
| plink = (void **)pblk; /* Position to NEXT block */ | |||
| } | |||
| *plink = (void *)0; /* Last memory block points to NULL */ | |||
| pmem->OSMemAddr = addr; /* Store start address of memory partition */ | |||
| pmem->OSMemFreeList = addr; /* Initialize pointer to pool of free blocks */ | |||
| pmem->OSMemNFree = nblks; /* Store number of free blocks in MCB */ | |||
| pmem->OSMemNBlks = nblks; | |||
| pmem->OSMemBlkSize = blksize; /* Store block size of each memory blocks */ | |||
| OS_TRACE_MEM_CREATE(pmem); | |||
| *perr = OS_ERR_NONE; | |||
| return (pmem); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * GET A MEMORY BLOCK | |||
| * | |||
| * Description : Get a memory block from a partition | |||
| * | |||
| * Arguments : pmem is a pointer to the memory partition control block | |||
| * | |||
| * perr is a pointer to a variable containing an error message which will be set by this | |||
| * function to either: | |||
| * | |||
| * OS_ERR_NONE if the memory partition has been created correctly. | |||
| * OS_ERR_MEM_NO_FREE_BLKS if there are no more free memory blocks to allocate to caller | |||
| * OS_ERR_MEM_INVALID_PMEM if you passed a NULL pointer for 'pmem' | |||
| * | |||
| * Returns : A pointer to a memory block if no error is detected | |||
| * A pointer to NULL if an error is detected | |||
| ********************************************************************************************************* | |||
| */ | |||
| void *OSMemGet (OS_MEM *pmem, | |||
| INT8U *perr) | |||
| { | |||
| void *pblk; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pmem == (OS_MEM *)0) { /* Must point to a valid memory partition */ | |||
| *perr = OS_ERR_MEM_INVALID_PMEM; | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| OS_TRACE_MEM_GET_ENTER(pmem); | |||
| OS_ENTER_CRITICAL(); | |||
| if (pmem->OSMemNFree > 0u) { /* See if there are any free memory blocks */ | |||
| pblk = pmem->OSMemFreeList; /* Yes, point to next free memory block */ | |||
| pmem->OSMemFreeList = *(void **)pblk; /* Adjust pointer to new free list */ | |||
| pmem->OSMemNFree--; /* One less memory block in this partition */ | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; /* No error */ | |||
| OS_TRACE_MEM_GET_EXIT(*perr); | |||
| return (pblk); /* Return memory block to caller */ | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_MEM_NO_FREE_BLKS; /* No, Notify caller of empty memory partition */ | |||
| OS_TRACE_MEM_GET_EXIT(*perr); | |||
| return ((void *)0); /* Return NULL pointer to caller */ | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * GET THE NAME OF A MEMORY PARTITION | |||
| * | |||
| * Description: This function is used to obtain the name assigned to a memory partition. | |||
| * | |||
| * Arguments : pmem is a pointer to the memory partition | |||
| * | |||
| * pname is a pointer to a pointer to an ASCII string that will receive the name of the memory partition. | |||
| * | |||
| * perr is a pointer to an error code that can contain one of the following values: | |||
| * | |||
| * OS_ERR_NONE if the name was copied to 'pname' | |||
| * OS_ERR_MEM_INVALID_PMEM if you passed a NULL pointer for 'pmem' | |||
| * OS_ERR_PNAME_NULL You passed a NULL pointer for 'pname' | |||
| * OS_ERR_NAME_GET_ISR You called this function from an ISR | |||
| * | |||
| * Returns : The length of the string or 0 if 'pmem' is a NULL pointer. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MEM_NAME_EN > 0u | |||
| INT8U OSMemNameGet (OS_MEM *pmem, | |||
| INT8U **pname, | |||
| INT8U *perr) | |||
| { | |||
| INT8U len; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return (0u); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pmem == (OS_MEM *)0) { /* Is 'pmem' a NULL pointer? */ | |||
| *perr = OS_ERR_MEM_INVALID_PMEM; | |||
| return (0u); | |||
| } | |||
| if (pname == (INT8U **)0) { /* Is 'pname' a NULL pointer? */ | |||
| *perr = OS_ERR_PNAME_NULL; | |||
| return (0u); | |||
| } | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if trying to call from an ISR */ | |||
| *perr = OS_ERR_NAME_GET_ISR; | |||
| return (0u); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| *pname = pmem->OSMemName; | |||
| len = OS_StrLen(*pname); | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| return (len); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ASSIGN A NAME TO A MEMORY PARTITION | |||
| * | |||
| * Description: This function assigns a name to a memory partition. | |||
| * | |||
| * Arguments : pmem is a pointer to the memory partition | |||
| * | |||
| * pname is a pointer to an ASCII string that contains the name of the memory partition. | |||
| * | |||
| * perr is a pointer to an error code that can contain one of the following values: | |||
| * | |||
| * OS_ERR_NONE if the name was copied to 'pname' | |||
| * OS_ERR_MEM_INVALID_PMEM if you passed a NULL pointer for 'pmem' | |||
| * OS_ERR_PNAME_NULL You passed a NULL pointer for 'pname' | |||
| * OS_ERR_MEM_NAME_TOO_LONG if the name doesn't fit in the storage area | |||
| * OS_ERR_NAME_SET_ISR if you called this function from an ISR | |||
| * | |||
| * Returns : None | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MEM_NAME_EN > 0u | |||
| void OSMemNameSet (OS_MEM *pmem, | |||
| INT8U *pname, | |||
| INT8U *perr) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return; | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pmem == (OS_MEM *)0) { /* Is 'pmem' a NULL pointer? */ | |||
| *perr = OS_ERR_MEM_INVALID_PMEM; | |||
| return; | |||
| } | |||
| if (pname == (INT8U *)0) { /* Is 'pname' a NULL pointer? */ | |||
| *perr = OS_ERR_PNAME_NULL; | |||
| return; | |||
| } | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if trying to call from an ISR */ | |||
| *perr = OS_ERR_NAME_SET_ISR; | |||
| return; | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pmem->OSMemName = pname; | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_EVENT_NAME_SET(pmem, pname); | |||
| *perr = OS_ERR_NONE; | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * RELEASE A MEMORY BLOCK | |||
| * | |||
| * Description : Returns a memory block to a partition | |||
| * | |||
| * Arguments : pmem is a pointer to the memory partition control block | |||
| * | |||
| * pblk is a pointer to the memory block being released. | |||
| * | |||
| * Returns : OS_ERR_NONE if the memory block was inserted into the partition | |||
| * OS_ERR_MEM_FULL if you are returning a memory block to an already FULL memory | |||
| * partition (You freed more blocks than you allocated!) | |||
| * OS_ERR_MEM_INVALID_PMEM if you passed a NULL pointer for 'pmem' | |||
| * OS_ERR_MEM_INVALID_PBLK if you passed a NULL pointer for the block to release. | |||
| ********************************************************************************************************* | |||
| */ | |||
| INT8U OSMemPut (OS_MEM *pmem, | |||
| void *pblk) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pmem == (OS_MEM *)0) { /* Must point to a valid memory partition */ | |||
| return (OS_ERR_MEM_INVALID_PMEM); | |||
| } | |||
| if (pblk == (void *)0) { /* Must release a valid block */ | |||
| return (OS_ERR_MEM_INVALID_PBLK); | |||
| } | |||
| #endif | |||
| OS_TRACE_MEM_PUT_ENTER(pmem, pblk); | |||
| OS_ENTER_CRITICAL(); | |||
| if (pmem->OSMemNFree >= pmem->OSMemNBlks) { /* Make sure all blocks not already returned */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MEM_PUT_EXIT(OS_ERR_MEM_FULL); | |||
| return (OS_ERR_MEM_FULL); | |||
| } | |||
| *(void **)pblk = pmem->OSMemFreeList; /* Insert released block into free block list */ | |||
| pmem->OSMemFreeList = pblk; | |||
| pmem->OSMemNFree++; /* One more memory block in this partition */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MEM_PUT_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); /* Notify caller that memory block was released */ | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * QUERY MEMORY PARTITION | |||
| * | |||
| * Description : This function is used to determine the number of free memory blocks and the number of | |||
| * used memory blocks from a memory partition. | |||
| * | |||
| * Arguments : pmem is a pointer to the memory partition control block | |||
| * | |||
| * p_mem_data is a pointer to a structure that will contain information about the memory | |||
| * partition. | |||
| * | |||
| * Returns : OS_ERR_NONE if no errors were found. | |||
| * OS_ERR_MEM_INVALID_PMEM if you passed a NULL pointer for 'pmem' | |||
| * OS_ERR_MEM_INVALID_PDATA if you passed a NULL pointer to the data recipient. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MEM_QUERY_EN > 0u | |||
| INT8U OSMemQuery (OS_MEM *pmem, | |||
| OS_MEM_DATA *p_mem_data) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pmem == (OS_MEM *)0) { /* Must point to a valid memory partition */ | |||
| return (OS_ERR_MEM_INVALID_PMEM); | |||
| } | |||
| if (p_mem_data == (OS_MEM_DATA *)0) { /* Must release a valid storage area for the data */ | |||
| return (OS_ERR_MEM_INVALID_PDATA); | |||
| } | |||
| #endif | |||
| OS_ENTER_CRITICAL(); | |||
| p_mem_data->OSAddr = pmem->OSMemAddr; | |||
| p_mem_data->OSFreeList = pmem->OSMemFreeList; | |||
| p_mem_data->OSBlkSize = pmem->OSMemBlkSize; | |||
| p_mem_data->OSNBlks = pmem->OSMemNBlks; | |||
| p_mem_data->OSNFree = pmem->OSMemNFree; | |||
| OS_EXIT_CRITICAL(); | |||
| p_mem_data->OSNUsed = p_mem_data->OSNBlks - p_mem_data->OSNFree; | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif /* OS_MEM_QUERY_EN */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * INITIALIZE MEMORY PARTITION MANAGER | |||
| * | |||
| * Description : This function is called by uC/OS-II to initialize the memory partition manager. Your | |||
| * application MUST NOT call this function. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Returns : none | |||
| * | |||
| * Note(s) : This function is INTERNAL to uC/OS-II and your application should not call it. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OS_MemInit (void) | |||
| { | |||
| #if OS_MAX_MEM_PART == 1u | |||
| OS_MemClr((INT8U *)&OSMemTbl[0], sizeof(OSMemTbl)); /* Clear the memory partition table */ | |||
| OSMemFreeList = (OS_MEM *)&OSMemTbl[0]; /* Point to beginning of free list */ | |||
| #if OS_MEM_NAME_EN > 0u | |||
| OSMemFreeList->OSMemName = (INT8U *)"?"; /* Unknown name */ | |||
| #endif | |||
| #endif | |||
| #if OS_MAX_MEM_PART >= 2u | |||
| OS_MEM *pmem; | |||
| INT16U i; | |||
| OS_MemClr((INT8U *)&OSMemTbl[0], sizeof(OSMemTbl)); /* Clear the memory partition table */ | |||
| for (i = 0u; i < (OS_MAX_MEM_PART - 1u); i++) { /* Init. list of free memory partitions */ | |||
| pmem = &OSMemTbl[i]; /* Point to memory control block (MCB) */ | |||
| pmem->OSMemFreeList = (void *)&OSMemTbl[i + 1u]; /* Chain list of free partitions */ | |||
| #if OS_MEM_NAME_EN > 0u | |||
| pmem->OSMemName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| } | |||
| pmem = &OSMemTbl[i]; | |||
| pmem->OSMemFreeList = (void *)0; /* Initialize last node */ | |||
| #if OS_MEM_NAME_EN > 0u | |||
| pmem->OSMemName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| OSMemFreeList = &OSMemTbl[0]; /* Point to beginning of free list */ | |||
| #endif | |||
| } | |||
| #endif /* OS_MEM_EN */ | |||
| #endif /* OS_MEM_C */ | |||
| @@ -0,0 +1,818 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * MUTUAL EXCLUSION SEMAPHORE MANAGEMENT | |||
| * | |||
| * Filename : os_mutex.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_MUTEX_C | |||
| #define OS_MUTEX_C | |||
| #define MICRIUM_SOURCE | |||
| #ifndef OS_MASTER_FILE | |||
| #include <ucos_ii.h> | |||
| #endif | |||
| #if OS_MUTEX_EN > 0u | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL CONSTANTS | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define OS_MUTEX_KEEP_LOWER_8 ((INT16U)0x00FFu) | |||
| #define OS_MUTEX_KEEP_UPPER_8 ((INT16U)0xFF00u) | |||
| #define OS_MUTEX_AVAILABLE ((INT16U)0x00FFu) | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LOCAL CONSTANTS | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void OSMutex_RdyAtPrio(OS_TCB *ptcb, INT8U prio); | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ACCEPT MUTUAL EXCLUSION SEMAPHORE | |||
| * | |||
| * Description: This function checks the mutual exclusion semaphore to see if a resource is available. | |||
| * Unlike OSMutexPend(), OSMutexAccept() does not suspend the calling task if the resource is | |||
| * not available or the event did not occur. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block | |||
| * | |||
| * perr is a pointer to an error code which will be returned to your application: | |||
| * OS_ERR_NONE if the call was successful. | |||
| * OS_ERR_EVENT_TYPE if 'pevent' is not a pointer to a mutex | |||
| * OS_ERR_PEVENT_NULL 'pevent' is a NULL pointer | |||
| * OS_ERR_PEND_ISR if you called this function from an ISR | |||
| * OS_ERR_PCP_LOWER If the priority of the task that owns the Mutex is | |||
| * HIGHER (i.e. a lower number) than the PCP. This error | |||
| * indicates that you did not set the PCP higher (lower | |||
| * number) than ALL the tasks that compete for the Mutex. | |||
| * Unfortunately, this is something that could not be | |||
| * detected when the Mutex is created because we don't know | |||
| * what tasks will be using the Mutex. | |||
| * | |||
| * Returns : == OS_TRUE if the resource is available, the mutual exclusion semaphore is acquired | |||
| * == OS_FALSE a) if the resource is not available | |||
| * b) you didn't pass a pointer to a mutual exclusion semaphore | |||
| * c) you called this function from an ISR | |||
| * | |||
| * Warning(s) : This function CANNOT be called from an ISR because mutual exclusion semaphores are | |||
| * intended to be used by tasks only. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MUTEX_ACCEPT_EN > 0u | |||
| BOOLEAN OSMutexAccept (OS_EVENT *pevent, | |||
| INT8U *perr) | |||
| { | |||
| INT8U pcp; /* Priority Ceiling Priority (PCP) */ | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return (OS_FALSE); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (OS_FALSE); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MUTEX) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| return (OS_FALSE); | |||
| } | |||
| if (OSIntNesting > 0u) { /* Make sure it's not called from an ISR */ | |||
| *perr = OS_ERR_PEND_ISR; | |||
| return (OS_FALSE); | |||
| } | |||
| OS_ENTER_CRITICAL(); /* Get value (0 or 1) of Mutex */ | |||
| pcp = (INT8U)(pevent->OSEventCnt >> 8u); /* Get PCP from mutex */ | |||
| if ((pevent->OSEventCnt & OS_MUTEX_KEEP_LOWER_8) == OS_MUTEX_AVAILABLE) { | |||
| pevent->OSEventCnt &= OS_MUTEX_KEEP_UPPER_8; /* Mask off LSByte (Acquire Mutex) */ | |||
| pevent->OSEventCnt |= (INT16U)OSTCBCur->OSTCBPrio; /* Save current task priority in LSByte */ | |||
| pevent->OSEventPtr = (void *)OSTCBCur; /* Link TCB of task owning Mutex */ | |||
| if ((pcp != OS_PRIO_MUTEX_CEIL_DIS) && | |||
| (OSTCBCur->OSTCBPrio <= pcp)) { /* PCP 'must' have a SMALLER prio ... */ | |||
| OS_EXIT_CRITICAL(); /* ... than current task! */ | |||
| *perr = OS_ERR_PCP_LOWER; | |||
| } else { | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| } | |||
| return (OS_TRUE); | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| return (OS_FALSE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * CREATE A MUTUAL EXCLUSION SEMAPHORE | |||
| * | |||
| * Description: This function creates a mutual exclusion semaphore. | |||
| * | |||
| * Arguments : prio is the priority to use when accessing the mutual exclusion semaphore. In | |||
| * other words, when the semaphore is acquired and a higher priority task | |||
| * attempts to obtain the semaphore then the priority of the task owning the | |||
| * semaphore is raised to this priority. It is assumed that you will specify | |||
| * a priority that is LOWER in value than ANY of the tasks competing for the | |||
| * mutex. If the priority is specified as OS_PRIO_MUTEX_CEIL_DIS, then the | |||
| * priority ceiling promotion is disabled. This way, the tasks accessing the | |||
| * semaphore do not have their priority promoted. | |||
| * | |||
| * perr is a pointer to an error code which will be returned to your application: | |||
| * OS_ERR_NONE if the call was successful. | |||
| * OS_ERR_CREATE_ISR if you attempted to create a MUTEX from an | |||
| * ISR | |||
| * OS_ERR_ILLEGAL_CREATE_RUN_TIME if you tried to create a mutex after | |||
| * safety critical operation started. | |||
| * OS_ERR_PRIO_EXIST if a task at the priority ceiling priority | |||
| * already exist. | |||
| * OS_ERR_PEVENT_NULL No more event control blocks available. | |||
| * OS_ERR_PRIO_INVALID if the priority you specify is higher that | |||
| * the maximum allowed (i.e. > OS_LOWEST_PRIO) | |||
| * | |||
| * Returns : != (void *)0 is a pointer to the event control clock (OS_EVENT) associated with the | |||
| * created mutex. | |||
| * == (void *)0 if an error is detected. | |||
| * | |||
| * Note(s) : 1) The LEAST significant 8 bits of '.OSEventCnt' hold the priority number of the task | |||
| * owning the mutex or 0xFF if no task owns the mutex. | |||
| * | |||
| * 2) The MOST significant 8 bits of '.OSEventCnt' hold the priority number used to | |||
| * reduce priority inversion or 0xFF (OS_PRIO_MUTEX_CEIL_DIS) if priority ceiling | |||
| * promotion is disabled. | |||
| ********************************************************************************************************* | |||
| */ | |||
| OS_EVENT *OSMutexCreate (INT8U prio, | |||
| INT8U *perr) | |||
| { | |||
| OS_EVENT *pevent; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| *perr = OS_ERR_ILLEGAL_CREATE_RUN_TIME; | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (prio != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| if (prio >= OS_LOWEST_PRIO) { /* Validate PCP */ | |||
| *perr = OS_ERR_PRIO_INVALID; | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| } | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_CREATE_ISR; /* ... can't CREATE mutex from an ISR */ | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (prio != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| if (OSTCBPrioTbl[prio] != (OS_TCB *)0) { /* Mutex priority must not already exist */ | |||
| OS_EXIT_CRITICAL(); /* Task already exist at priority ... */ | |||
| *perr = OS_ERR_PRIO_EXIST; /* ... ceiling priority */ | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| OSTCBPrioTbl[prio] = OS_TCB_RESERVED; /* Reserve the table entry */ | |||
| } | |||
| pevent = OSEventFreeList; /* Get next free event control block */ | |||
| if (pevent == (OS_EVENT *)0) { /* See if an ECB was available */ | |||
| if (prio != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| OSTCBPrioTbl[prio] = (OS_TCB *)0; /* No, Release the table entry */ | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_PEVENT_NULL; /* No more event control blocks */ | |||
| return (pevent); | |||
| } | |||
| OSEventFreeList = (OS_EVENT *)OSEventFreeList->OSEventPtr; /* Adjust the free list */ | |||
| OS_EXIT_CRITICAL(); | |||
| pevent->OSEventType = OS_EVENT_TYPE_MUTEX; | |||
| pevent->OSEventCnt = (INT16U)((INT16U)prio << 8u) | OS_MUTEX_AVAILABLE; /* Resource is avail. */ | |||
| pevent->OSEventPtr = (void *)0; /* No task owning the mutex */ | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| OS_EventWaitListInit(pevent); | |||
| OS_TRACE_MUTEX_CREATE(pevent, pevent->OSEventName); | |||
| *perr = OS_ERR_NONE; | |||
| return (pevent); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DELETE A MUTEX | |||
| * | |||
| * Description: This function deletes a mutual exclusion semaphore and readies all tasks pending on the it. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired mutex. | |||
| * | |||
| * opt determines delete options as follows: | |||
| * opt == OS_DEL_NO_PEND Delete mutex ONLY if no task pending | |||
| * opt == OS_DEL_ALWAYS Deletes the mutex even if tasks are waiting. | |||
| * In this case, all the tasks pending will be readied. | |||
| * | |||
| * perr is a pointer to an error code that can contain one of the following values: | |||
| * OS_ERR_NONE The call was successful and the mutex was deleted | |||
| * OS_ERR_DEL_ISR If you attempted to delete the MUTEX from an ISR | |||
| * OS_ERR_INVALID_OPT An invalid option was specified | |||
| * OS_ERR_ILLEGAL_DEL_RUN_TIME If you tried to delete a mutex after safety | |||
| * critical operation started. | |||
| * OS_ERR_TASK_WAITING One or more tasks were waiting on the mutex | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a mutex | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * | |||
| * Returns : pevent upon error | |||
| * (OS_EVENT *)0 if the mutex was successfully deleted. | |||
| * | |||
| * Note(s) : 1) This function must be used with care. Tasks that would normally expect the presence of | |||
| * the mutex MUST check the return code of OSMutexPend(). | |||
| * | |||
| * 2) This call can potentially disable interrupts for a long time. The interrupt disable | |||
| * time is directly proportional to the number of tasks waiting on the mutex. | |||
| * | |||
| * 3) Because ALL tasks pending on the mutex will be readied, you MUST be careful because the | |||
| * resource(s) will no longer be guarded by the mutex. | |||
| * | |||
| * 4) IMPORTANT: In the 'OS_DEL_ALWAYS' case, we assume that the owner of the Mutex (if there | |||
| * is one) is ready-to-run and is thus NOT pending on another kernel object or | |||
| * has delayed itself. In other words, if a task owns the mutex being deleted, | |||
| * that task will be made ready-to-run at its original priority. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MUTEX_DEL_EN > 0u | |||
| OS_EVENT *OSMutexDel (OS_EVENT *pevent, | |||
| INT8U opt, | |||
| INT8U *perr) | |||
| { | |||
| BOOLEAN tasks_waiting; | |||
| OS_EVENT *pevent_return; | |||
| INT8U pcp; /* Priority ceiling priority */ | |||
| INT8U prio; | |||
| OS_TCB *ptcb; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| *perr = OS_ERR_ILLEGAL_DEL_RUN_TIME; | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (pevent); | |||
| } | |||
| #endif | |||
| OS_TRACE_MUTEX_DEL_ENTER(pevent, opt); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MUTEX) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_MUTEX_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_DEL_ISR; /* ... can't DELETE from an ISR */ | |||
| OS_TRACE_MUTEX_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any tasks waiting on mutex */ | |||
| tasks_waiting = OS_TRUE; /* Yes */ | |||
| } else { | |||
| tasks_waiting = OS_FALSE; /* No */ | |||
| } | |||
| switch (opt) { | |||
| case OS_DEL_NO_PEND: /* DELETE MUTEX ONLY IF NO TASK WAITING --- */ | |||
| if (tasks_waiting == OS_FALSE) { | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pcp = (INT8U)(pevent->OSEventCnt >> 8u); | |||
| if (pcp != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| OSTCBPrioTbl[pcp] = (OS_TCB *)0; /* Free up the PCP */ | |||
| } | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Mutex has been deleted */ | |||
| } else { | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_TASK_WAITING; | |||
| pevent_return = pevent; | |||
| } | |||
| break; | |||
| case OS_DEL_ALWAYS: /* ALWAYS DELETE THE MUTEX ---------------- */ | |||
| pcp = (INT8U)(pevent->OSEventCnt >> 8u); /* Get PCP of mutex */ | |||
| if (pcp != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| prio = (INT8U)(pevent->OSEventCnt & OS_MUTEX_KEEP_LOWER_8); /* Get owner's orig prio */ | |||
| ptcb = (OS_TCB *)pevent->OSEventPtr; | |||
| if (ptcb != (OS_TCB *)0) { /* See if any task owns the mutex */ | |||
| if (ptcb->OSTCBPrio == pcp) { /* See if original prio was changed */ | |||
| OS_TRACE_MUTEX_TASK_PRIO_DISINHERIT(OSTCBCur, prio); | |||
| OSMutex_RdyAtPrio(ptcb, prio); /* Yes, Restore the task's original prio */ | |||
| } | |||
| } | |||
| } | |||
| while (pevent->OSEventGrp != 0u) { /* Ready ALL tasks waiting for mutex */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_MUTEX, OS_STAT_PEND_ABORT); | |||
| } | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pcp = (INT8U)(pevent->OSEventCnt >> 8u); | |||
| if (pcp != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| OSTCBPrioTbl[pcp] = (OS_TCB *)0; /* Free up the PCP */ | |||
| } | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; /* Get next free event control block */ | |||
| OS_EXIT_CRITICAL(); | |||
| if (tasks_waiting == OS_TRUE) { /* Reschedule only if task(s) were waiting */ | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| } | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Mutex has been deleted */ | |||
| break; | |||
| default: | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_INVALID_OPT; | |||
| pevent_return = pevent; | |||
| break; | |||
| } | |||
| OS_TRACE_MUTEX_DEL_EXIT(*perr); | |||
| return (pevent_return); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * PEND ON MUTUAL EXCLUSION SEMAPHORE | |||
| * | |||
| * Description: This function waits for a mutual exclusion semaphore. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * mutex. | |||
| * | |||
| * timeout is an optional timeout period (in clock ticks). If non-zero, your task will | |||
| * wait for the resource up to the amount of time specified by this argument. | |||
| * If you specify 0, however, your task will wait forever at the specified | |||
| * mutex or, until the resource becomes available. | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * OS_ERR_NONE The call was successful and your task owns the mutex | |||
| * OS_ERR_TIMEOUT The mutex was not available within the specified 'timeout'. | |||
| * OS_ERR_PEND_ABORT The wait on the mutex was aborted. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a mutex | |||
| * OS_ERR_PEVENT_NULL 'pevent' is a NULL pointer | |||
| * OS_ERR_PEND_ISR If you called this function from an ISR and the result | |||
| * would lead to a suspension. | |||
| * OS_ERR_PCP_LOWER If the priority of the task that owns the Mutex is | |||
| * HIGHER (i.e. a lower number) than the PCP. This error | |||
| * indicates that you did not set the PCP higher (lower | |||
| * number) than ALL the tasks that compete for the Mutex. | |||
| * Unfortunately, this is something that could not be | |||
| * detected when the Mutex is created because we don't know | |||
| * what tasks will be using the Mutex. | |||
| * OS_ERR_PEND_LOCKED If you called this function when the scheduler is locked | |||
| * | |||
| * Returns : none | |||
| * | |||
| * Note(s) : 1) The task that owns the Mutex MUST NOT pend on any other event while it owns the mutex. | |||
| * | |||
| * 2) You MUST NOT change the priority of the task that owns the mutex | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OSMutexPend (OS_EVENT *pevent, | |||
| INT32U timeout, | |||
| INT8U *perr) | |||
| { | |||
| INT8U pcp; /* Priority Ceiling Priority (PCP) */ | |||
| INT8U mprio; /* Mutex owner priority */ | |||
| BOOLEAN rdy; /* Flag indicating task was ready */ | |||
| OS_TCB *ptcb; | |||
| OS_EVENT *pevent2; | |||
| INT8U y; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return; | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return; | |||
| } | |||
| #endif | |||
| OS_TRACE_MUTEX_PEND_ENTER(pevent, timeout); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MUTEX) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_MUTEX_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_PEND_ISR; /* ... can't PEND from an ISR */ | |||
| OS_TRACE_MUTEX_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| if (OSLockNesting > 0u) { /* See if called with scheduler locked ... */ | |||
| *perr = OS_ERR_PEND_LOCKED; /* ... can't PEND when locked */ | |||
| OS_TRACE_MUTEX_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pcp = (INT8U)(pevent->OSEventCnt >> 8u); /* Get PCP from mutex */ | |||
| /* Is Mutex available? */ | |||
| if ((INT8U)(pevent->OSEventCnt & OS_MUTEX_KEEP_LOWER_8) == OS_MUTEX_AVAILABLE) { | |||
| pevent->OSEventCnt &= OS_MUTEX_KEEP_UPPER_8; /* Yes, Acquire the resource */ | |||
| pevent->OSEventCnt |= (INT16U)OSTCBCur->OSTCBPrio; /* Save priority of owning task */ | |||
| pevent->OSEventPtr = (void *)OSTCBCur; /* Point to owning task's OS_TCB */ | |||
| if ((pcp != OS_PRIO_MUTEX_CEIL_DIS) && | |||
| (OSTCBCur->OSTCBPrio <= pcp)) { /* PCP 'must' have a SMALLER prio ... */ | |||
| OS_EXIT_CRITICAL(); /* ... than current task! */ | |||
| *perr = OS_ERR_PCP_LOWER; | |||
| } else { | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| } | |||
| OS_TRACE_MUTEX_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| if (pcp != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| mprio = (INT8U)(pevent->OSEventCnt & OS_MUTEX_KEEP_LOWER_8); /* Get priority of mutex owner */ | |||
| ptcb = (OS_TCB *)(pevent->OSEventPtr); /* Point to TCB of mutex owner */ | |||
| if (ptcb->OSTCBPrio > pcp) { /* Need to promote prio of owner?*/ | |||
| if (mprio > OSTCBCur->OSTCBPrio) { | |||
| y = ptcb->OSTCBY; | |||
| if ((OSRdyTbl[y] & ptcb->OSTCBBitX) != 0u) { /* See if mutex owner is ready */ | |||
| OSRdyTbl[y] &= (OS_PRIO)~ptcb->OSTCBBitX; /* Yes, Remove owner from Rdy ...*/ | |||
| if (OSRdyTbl[y] == 0u) { /* ... list at current prio */ | |||
| OSRdyGrp &= (OS_PRIO)~ptcb->OSTCBBitY; | |||
| } | |||
| rdy = OS_TRUE; | |||
| } else { | |||
| pevent2 = ptcb->OSTCBEventPtr; | |||
| if (pevent2 != (OS_EVENT *)0) { /* Remove from event wait list */ | |||
| y = ptcb->OSTCBY; | |||
| pevent2->OSEventTbl[y] &= (OS_PRIO)~ptcb->OSTCBBitX; | |||
| if (pevent2->OSEventTbl[y] == 0u) { | |||
| pevent2->OSEventGrp &= (OS_PRIO)~ptcb->OSTCBBitY; | |||
| } | |||
| } | |||
| rdy = OS_FALSE; /* No */ | |||
| } | |||
| ptcb->OSTCBPrio = pcp; /* Change owner task prio to PCP */ | |||
| OS_TRACE_MUTEX_TASK_PRIO_INHERIT(ptcb, pcp); | |||
| #if OS_LOWEST_PRIO <= 63u | |||
| ptcb->OSTCBY = (INT8U)( ptcb->OSTCBPrio >> 3u); | |||
| ptcb->OSTCBX = (INT8U)( ptcb->OSTCBPrio & 0x07u); | |||
| #else | |||
| ptcb->OSTCBY = (INT8U)((INT8U)(ptcb->OSTCBPrio >> 4u) & 0xFFu); | |||
| ptcb->OSTCBX = (INT8U)( ptcb->OSTCBPrio & 0x0Fu); | |||
| #endif | |||
| ptcb->OSTCBBitY = (OS_PRIO)(1uL << ptcb->OSTCBY); | |||
| ptcb->OSTCBBitX = (OS_PRIO)(1uL << ptcb->OSTCBX); | |||
| if (rdy == OS_TRUE) { /* If task was ready at owner's priority ...*/ | |||
| OSRdyGrp |= ptcb->OSTCBBitY; /* ... make it ready at new priority. */ | |||
| OSRdyTbl[ptcb->OSTCBY] |= ptcb->OSTCBBitX; | |||
| } else { | |||
| pevent2 = ptcb->OSTCBEventPtr; | |||
| if (pevent2 != (OS_EVENT *)0) { /* Add to event wait list */ | |||
| pevent2->OSEventGrp |= ptcb->OSTCBBitY; | |||
| pevent2->OSEventTbl[ptcb->OSTCBY] |= ptcb->OSTCBBitX; | |||
| } | |||
| } | |||
| OSTCBPrioTbl[pcp] = ptcb; | |||
| } | |||
| } | |||
| } | |||
| OSTCBCur->OSTCBStat |= OS_STAT_MUTEX; /* Mutex not available, pend current task */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; | |||
| OSTCBCur->OSTCBDly = timeout; /* Store timeout in current task's TCB */ | |||
| OS_EventTaskWait(pevent); /* Suspend task until event or timeout occurs */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find next highest priority task ready */ | |||
| OS_ENTER_CRITICAL(); | |||
| switch (OSTCBCur->OSTCBStatPend) { /* See if we timed-out or aborted */ | |||
| case OS_STAT_PEND_OK: | |||
| *perr = OS_ERR_NONE; | |||
| break; | |||
| case OS_STAT_PEND_ABORT: | |||
| *perr = OS_ERR_PEND_ABORT; /* Indicate that we aborted getting mutex */ | |||
| break; | |||
| case OS_STAT_PEND_TO: | |||
| default: | |||
| OS_EventTaskRemove(OSTCBCur, pevent); | |||
| *perr = OS_ERR_TIMEOUT; /* Indicate that we didn't get mutex within TO */ | |||
| break; | |||
| } | |||
| OSTCBCur->OSTCBStat = OS_STAT_RDY; /* Set task status to ready */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; /* Clear pend status */ | |||
| OSTCBCur->OSTCBEventPtr = (OS_EVENT *)0; /* Clear event pointers */ | |||
| #if (OS_EVENT_MULTI_EN > 0u) | |||
| OSTCBCur->OSTCBEventMultiPtr = (OS_EVENT **)0; | |||
| OSTCBCur->OSTCBEventMultiRdy = (OS_EVENT *)0; | |||
| #endif | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MUTEX_PEND_EXIT(*perr); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * POST TO A MUTUAL EXCLUSION SEMAPHORE | |||
| * | |||
| * Description: This function signals a mutual exclusion semaphore | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * mutex. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the mutex was signaled. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a mutex | |||
| * OS_ERR_PEVENT_NULL 'pevent' is a NULL pointer | |||
| * OS_ERR_POST_ISR Attempted to post from an ISR (not valid for MUTEXes) | |||
| * OS_ERR_NOT_MUTEX_OWNER The task that did the post is NOT the owner of the MUTEX. | |||
| * OS_ERR_PCP_LOWER If the priority of the new task that owns the Mutex is | |||
| * HIGHER (i.e. a lower number) than the PCP. This error | |||
| * indicates that you did not set the PCP higher (lower | |||
| * number) than ALL the tasks that compete for the Mutex. | |||
| * Unfortunately, this is something that could not be | |||
| * detected when the Mutex is created because we don't know | |||
| * what tasks will be using the Mutex. | |||
| ********************************************************************************************************* | |||
| */ | |||
| INT8U OSMutexPost (OS_EVENT *pevent) | |||
| { | |||
| INT8U pcp; /* Priority ceiling priority */ | |||
| INT8U prio; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| return (OS_ERR_POST_ISR); /* ... can't POST mutex from an ISR */ | |||
| } | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| #endif | |||
| OS_TRACE_MUTEX_POST_ENTER(pevent); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MUTEX) { /* Validate event block type */ | |||
| OS_TRACE_MUTEX_POST_EXIT(OS_ERR_EVENT_TYPE); | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pcp = (INT8U)(pevent->OSEventCnt >> 8u); /* Get priority ceiling priority of mutex */ | |||
| prio = (INT8U)(pevent->OSEventCnt & OS_MUTEX_KEEP_LOWER_8); /* Get owner's original priority */ | |||
| if (OSTCBCur != (OS_TCB *)pevent->OSEventPtr) { /* See if posting task owns the MUTEX */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MUTEX_POST_EXIT(OS_ERR_NOT_MUTEX_OWNER); | |||
| return (OS_ERR_NOT_MUTEX_OWNER); | |||
| } | |||
| if (pcp != OS_PRIO_MUTEX_CEIL_DIS) { | |||
| if (OSTCBCur->OSTCBPrio == pcp) { /* Did we have to raise current task's priority? */ | |||
| OS_TRACE_MUTEX_TASK_PRIO_DISINHERIT(OSTCBCur, prio); | |||
| OSMutex_RdyAtPrio(OSTCBCur, prio); /* Restore the task's original priority */ | |||
| } | |||
| OSTCBPrioTbl[pcp] = OS_TCB_RESERVED; /* Reserve table entry */ | |||
| } | |||
| if (pevent->OSEventGrp != 0u) { /* Any task waiting for the mutex? */ | |||
| /* Yes, Make HPT waiting for mutex ready */ | |||
| prio = OS_EventTaskRdy(pevent, (void *)0, OS_STAT_MUTEX, OS_STAT_PEND_OK); | |||
| pevent->OSEventCnt &= OS_MUTEX_KEEP_UPPER_8; /* Save priority of mutex's new owner */ | |||
| pevent->OSEventCnt |= (INT16U)prio; | |||
| pevent->OSEventPtr = OSTCBPrioTbl[prio]; /* Link to new mutex owner's OS_TCB */ | |||
| if ((pcp != OS_PRIO_MUTEX_CEIL_DIS) && | |||
| (prio <= pcp)) { /* PCP 'must' have a SMALLER prio ... */ | |||
| OS_EXIT_CRITICAL(); /* ... than current task! */ | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| OS_TRACE_MUTEX_POST_EXIT(OS_ERR_PCP_LOWER); | |||
| return (OS_ERR_PCP_LOWER); | |||
| } else { | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| OS_TRACE_MUTEX_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| } | |||
| pevent->OSEventCnt |= OS_MUTEX_AVAILABLE; /* No, Mutex is now available */ | |||
| pevent->OSEventPtr = (void *)0; | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_MUTEX_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * QUERY A MUTUAL EXCLUSION SEMAPHORE | |||
| * | |||
| * Description: This function obtains information about a mutex | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired mutex | |||
| * | |||
| * p_mutex_data is a pointer to a structure that will contain information about the mutex | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_QUERY_ISR If you called this function from an ISR | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_PDATA_NULL If 'p_mutex_data' is a NULL pointer | |||
| * OS_ERR_EVENT_TYPE If you are attempting to obtain data from a non mutex. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_MUTEX_QUERY_EN > 0u | |||
| INT8U OSMutexQuery (OS_EVENT *pevent, | |||
| OS_MUTEX_DATA *p_mutex_data) | |||
| { | |||
| INT8U i; | |||
| OS_PRIO *psrc; | |||
| OS_PRIO *pdest; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| return (OS_ERR_QUERY_ISR); /* ... can't QUERY mutex from an ISR */ | |||
| } | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| if (p_mutex_data == (OS_MUTEX_DATA *)0) { /* Validate 'p_mutex_data' */ | |||
| return (OS_ERR_PDATA_NULL); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_MUTEX) { /* Validate event block type */ | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| p_mutex_data->OSMutexPCP = (INT8U)(pevent->OSEventCnt >> 8u); | |||
| p_mutex_data->OSOwnerPrio = (INT8U)(pevent->OSEventCnt & OS_MUTEX_KEEP_LOWER_8); | |||
| if (p_mutex_data->OSOwnerPrio == 0xFFu) { | |||
| p_mutex_data->OSValue = OS_TRUE; | |||
| } else { | |||
| p_mutex_data->OSValue = OS_FALSE; | |||
| } | |||
| p_mutex_data->OSEventGrp = pevent->OSEventGrp; /* Copy wait list */ | |||
| psrc = &pevent->OSEventTbl[0]; | |||
| pdest = &p_mutex_data->OSEventTbl[0]; | |||
| for (i = 0u; i < OS_EVENT_TBL_SIZE; i++) { | |||
| *pdest++ = *psrc++; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif /* OS_MUTEX_QUERY_EN */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * RESTORE A TASK BACK TO ITS ORIGINAL PRIORITY | |||
| * | |||
| * Description: This function makes a task ready at the specified priority | |||
| * | |||
| * Arguments : ptcb is a pointer to OS_TCB of the task to make ready | |||
| * | |||
| * prio is the desired priority | |||
| * | |||
| * Returns : none | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void OSMutex_RdyAtPrio (OS_TCB *ptcb, | |||
| INT8U prio) | |||
| { | |||
| INT8U y; | |||
| y = ptcb->OSTCBY; /* Remove owner from ready list at 'pcp' */ | |||
| OSRdyTbl[y] &= (OS_PRIO)~ptcb->OSTCBBitX; | |||
| OS_TRACE_TASK_SUSPENDED(ptcb); | |||
| if (OSRdyTbl[y] == 0u) { | |||
| OSRdyGrp &= (OS_PRIO)~ptcb->OSTCBBitY; | |||
| } | |||
| ptcb->OSTCBPrio = prio; | |||
| OSPrioCur = prio; /* The current task is now at this priority */ | |||
| #if OS_LOWEST_PRIO <= 63u | |||
| ptcb->OSTCBY = (INT8U)((INT8U)(prio >> 3u) & 0x07u); | |||
| ptcb->OSTCBX = (INT8U)(prio & 0x07u); | |||
| #else | |||
| ptcb->OSTCBY = (INT8U)((INT8U)(prio >> 4u) & 0x0Fu); | |||
| ptcb->OSTCBX = (INT8U) (prio & 0x0Fu); | |||
| #endif | |||
| ptcb->OSTCBBitY = (OS_PRIO)(1uL << ptcb->OSTCBY); | |||
| ptcb->OSTCBBitX = (OS_PRIO)(1uL << ptcb->OSTCBX); | |||
| OSRdyGrp |= ptcb->OSTCBBitY; /* Make task ready at original priority */ | |||
| OSRdyTbl[ptcb->OSTCBY] |= ptcb->OSTCBBitX; | |||
| OSTCBPrioTbl[prio] = ptcb; | |||
| OS_TRACE_TASK_READY(ptcb); | |||
| } | |||
| #endif /* OS_MUTEX_EN */ | |||
| #endif /* OS_MUTEX_C */ | |||
| @@ -0,0 +1,964 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * MESSAGE QUEUE MANAGEMENT | |||
| * | |||
| * Filename : os_q.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_Q_C | |||
| #define OS_Q_C | |||
| #define MICRIUM_SOURCE | |||
| #ifndef OS_MASTER_FILE | |||
| #include <ucos_ii.h> | |||
| #endif | |||
| #if (OS_Q_EN > 0u) && (OS_MAX_QS > 0u) | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ACCEPT MESSAGE FROM QUEUE | |||
| * | |||
| * Description: This function checks the queue to see if a message is available. Unlike OSQPend(), | |||
| * OSQAccept() does not suspend the calling task if a message is not available. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * | |||
| * OS_ERR_NONE The call was successful and your task received a | |||
| * message. | |||
| * OS_ERR_EVENT_TYPE You didn't pass a pointer to a queue | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_Q_EMPTY The queue did not contain any messages | |||
| * | |||
| * Returns : != (void *)0 is the message in the queue if one is available. The message is removed | |||
| * from the so the next time OSQAccept() is called, the queue will contain | |||
| * one less entry. | |||
| * == (void *)0 if you received a NULL pointer message | |||
| * if the queue is empty or, | |||
| * if 'pevent' is a NULL pointer or, | |||
| * if you passed an invalid event type | |||
| * | |||
| * Note(s) : As of V2.60, you can now pass NULL pointers through queues. Because of this, the argument | |||
| * 'perr' has been added to the API to tell you about the outcome of the call. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_ACCEPT_EN > 0u | |||
| void *OSQAccept (OS_EVENT *pevent, | |||
| INT8U *perr) | |||
| { | |||
| void *pmsg; | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) {/* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| return ((void *)0); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Point at queue control block */ | |||
| if (pq->OSQEntries > 0u) { /* See if any messages in the queue */ | |||
| pmsg = *pq->OSQOut++; /* Yes, extract oldest message from the queue */ | |||
| pq->OSQEntries--; /* Update the number of entries in the queue */ | |||
| if (pq->OSQOut == pq->OSQEnd) { /* Wrap OUT pointer if we are at the end of the queue */ | |||
| pq->OSQOut = pq->OSQStart; | |||
| } | |||
| *perr = OS_ERR_NONE; | |||
| } else { | |||
| *perr = OS_ERR_Q_EMPTY; | |||
| pmsg = (void *)0; /* Queue is empty */ | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| return (pmsg); /* Return message received (or NULL) */ | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * CREATE A MESSAGE QUEUE | |||
| * | |||
| * Description: This function creates a message queue if free event control blocks are available. | |||
| * | |||
| * Arguments : start is a pointer to the base address of the message queue storage area. The | |||
| * storage area MUST be declared as an array of pointers to 'void' as follows | |||
| * | |||
| * void *MessageStorage[size] | |||
| * | |||
| * size is the number of elements in the storage area | |||
| * | |||
| * Returns : != (OS_EVENT *)0 is a pointer to the event control clock (OS_EVENT) associated with the | |||
| * created queue | |||
| * == (OS_EVENT *)0 if no event control blocks were available or an error was detected | |||
| ********************************************************************************************************* | |||
| */ | |||
| OS_EVENT *OSQCreate (void **start, | |||
| INT16U size) | |||
| { | |||
| OS_EVENT *pevent; | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| return ((OS_EVENT *)0); /* ... can't CREATE from an ISR */ | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pevent = OSEventFreeList; /* Get next free event control block */ | |||
| if (OSEventFreeList != (OS_EVENT *)0) { /* See if pool of free ECB pool was empty */ | |||
| OSEventFreeList = (OS_EVENT *)OSEventFreeList->OSEventPtr; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| if (pevent != (OS_EVENT *)0) { /* See if we have an event control block */ | |||
| OS_ENTER_CRITICAL(); | |||
| pq = OSQFreeList; /* Get a free queue control block */ | |||
| if (pq != (OS_Q *)0) { /* Were we able to get a queue control block ? */ | |||
| OSQFreeList = OSQFreeList->OSQPtr; /* Yes, Adjust free list pointer to next free*/ | |||
| OS_EXIT_CRITICAL(); | |||
| pq->OSQStart = start; /* Initialize the queue */ | |||
| pq->OSQEnd = &start[size]; | |||
| pq->OSQIn = start; | |||
| pq->OSQOut = start; | |||
| pq->OSQSize = size; | |||
| pq->OSQEntries = 0u; | |||
| pevent->OSEventType = OS_EVENT_TYPE_Q; | |||
| pevent->OSEventCnt = 0u; | |||
| pevent->OSEventPtr = pq; | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| OS_EventWaitListInit(pevent); /* Initialize the wait list */ | |||
| OS_TRACE_Q_CREATE(pevent, pevent->OSEventName); | |||
| } else { | |||
| pevent->OSEventPtr = (void *)OSEventFreeList; /* No, Return event control block on error */ | |||
| OSEventFreeList = pevent; | |||
| OS_EXIT_CRITICAL(); | |||
| pevent = (OS_EVENT *)0; | |||
| } | |||
| } | |||
| return (pevent); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DELETE A MESSAGE QUEUE | |||
| * | |||
| * Description: This function deletes a message queue and readies all tasks pending on the queue. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * queue. | |||
| * | |||
| * opt determines delete options as follows: | |||
| * opt == OS_DEL_NO_PEND Delete the queue ONLY if no task pending | |||
| * opt == OS_DEL_ALWAYS Deletes the queue even if tasks are waiting. | |||
| * In this case, all the tasks pending will be readied. | |||
| * | |||
| * perr is a pointer to an error code that can contain one of the following values: | |||
| * OS_ERR_NONE The call was successful and the queue was deleted | |||
| * OS_ERR_DEL_ISR If you tried to delete the queue from an ISR | |||
| * OS_ERR_ILLEGAL_DEL_RUN_TIME If you tried to delete the queue after safety | |||
| * critical operation started. | |||
| * OS_ERR_INVALID_OPT An invalid option was specified | |||
| * OS_ERR_TASK_WAITING One or more tasks were waiting on the queue | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a queue | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * | |||
| * Returns : pevent upon error | |||
| * (OS_EVENT *)0 if the queue was successfully deleted. | |||
| * | |||
| * Note(s) : 1) This function must be used with care. Tasks that would normally expect the presence of | |||
| * the queue MUST check the return code of OSQPend(). | |||
| * 2) OSQAccept() callers will not know that the intended queue has been deleted unless | |||
| * they check 'pevent' to see that it's a NULL pointer. | |||
| * 3) This call can potentially disable interrupts for a long time. The interrupt disable | |||
| * time is directly proportional to the number of tasks waiting on the queue. | |||
| * 4) Because ALL tasks pending on the queue will be readied, you MUST be careful in | |||
| * applications where the queue is used for mutual exclusion because the resource(s) | |||
| * will no longer be guarded by the queue. | |||
| * 5) If the storage for the message queue was allocated dynamically (i.e. using a malloc() | |||
| * type call) then your application MUST release the memory storage by call the counterpart | |||
| * call of the dynamic allocation scheme used. If the queue storage was created statically | |||
| * then, the storage can be reused. | |||
| * 6) All tasks that were waiting for the queue will be readied and returned an | |||
| * OS_ERR_PEND_ABORT if OSQDel() was called with OS_DEL_ALWAYS | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_DEL_EN > 0u | |||
| OS_EVENT *OSQDel (OS_EVENT *pevent, | |||
| INT8U opt, | |||
| INT8U *perr) | |||
| { | |||
| BOOLEAN tasks_waiting; | |||
| OS_EVENT *pevent_return; | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| *perr = OS_ERR_ILLEGAL_DEL_RUN_TIME; | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (pevent); | |||
| } | |||
| #endif | |||
| OS_TRACE_Q_DEL_ENTER(pevent, opt); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_Q_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_DEL_ISR; /* ... can't DELETE from an ISR */ | |||
| OS_TRACE_Q_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any tasks waiting on queue */ | |||
| tasks_waiting = OS_TRUE; /* Yes */ | |||
| } else { | |||
| tasks_waiting = OS_FALSE; /* No */ | |||
| } | |||
| switch (opt) { | |||
| case OS_DEL_NO_PEND: /* Delete queue only if no task waiting */ | |||
| if (tasks_waiting == OS_FALSE) { | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Return OS_Q to free list */ | |||
| pq->OSQPtr = OSQFreeList; | |||
| OSQFreeList = pq; | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; /* Get next free event control block */ | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Queue has been deleted */ | |||
| } else { | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_TASK_WAITING; | |||
| pevent_return = pevent; | |||
| } | |||
| break; | |||
| case OS_DEL_ALWAYS: /* Always delete the queue */ | |||
| while (pevent->OSEventGrp != 0u) { /* Ready ALL tasks waiting for queue */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_Q, OS_STAT_PEND_ABORT); | |||
| } | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Return OS_Q to free list */ | |||
| pq->OSQPtr = OSQFreeList; | |||
| OSQFreeList = pq; | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; /* Get next free event control block */ | |||
| OS_EXIT_CRITICAL(); | |||
| if (tasks_waiting == OS_TRUE) { /* Reschedule only if task(s) were waiting */ | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| } | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Queue has been deleted */ | |||
| break; | |||
| default: | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_INVALID_OPT; | |||
| pevent_return = pevent; | |||
| break; | |||
| } | |||
| OS_TRACE_Q_DEL_EXIT(*perr); | |||
| return (pevent_return); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * FLUSH QUEUE | |||
| * | |||
| * Description : This function is used to flush the contents of the message queue. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Returns : OS_ERR_NONE upon success | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a queue | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * | |||
| * WARNING : You should use this function with great care because, when to flush the queue, you LOOSE | |||
| * the references to what the queue entries are pointing to and thus, you could cause | |||
| * 'memory leaks'. In other words, the data you are pointing to that's being referenced | |||
| * by the queue entries should, most likely, need to be de-allocated (i.e. freed). | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_FLUSH_EN > 0u | |||
| INT8U OSQFlush (OS_EVENT *pevent) | |||
| { | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) { /* Validate event block type */ | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| #endif | |||
| OS_ENTER_CRITICAL(); | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Point to queue storage structure */ | |||
| pq->OSQIn = pq->OSQStart; | |||
| pq->OSQOut = pq->OSQStart; | |||
| pq->OSQEntries = 0u; | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * PEND ON A QUEUE FOR A MESSAGE | |||
| * | |||
| * Description: This function waits for a message to be sent to a queue | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired queue | |||
| * | |||
| * timeout is an optional timeout period (in clock ticks). If non-zero, your task will | |||
| * wait for a message to arrive at the queue up to the amount of time | |||
| * specified by this argument. If you specify 0, however, your task will wait | |||
| * forever at the specified queue or, until a message arrives. | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * | |||
| * OS_ERR_NONE The call was successful and your task received a | |||
| * message. | |||
| * OS_ERR_TIMEOUT A message was not received within the specified 'timeout'. | |||
| * OS_ERR_PEND_ABORT The wait on the queue was aborted. | |||
| * OS_ERR_EVENT_TYPE You didn't pass a pointer to a queue | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_PEND_ISR If you called this function from an ISR and the result | |||
| * would lead to a suspension. | |||
| * OS_ERR_PEND_LOCKED If you called this function with the scheduler is locked | |||
| * | |||
| * Returns : != (void *)0 is a pointer to the message received | |||
| * == (void *)0 if you received a NULL pointer message or, | |||
| * if no message was received or, | |||
| * if 'pevent' is a NULL pointer or, | |||
| * if you didn't pass a pointer to a queue. | |||
| * | |||
| * Note(s) : As of V2.60, this function allows you to receive NULL pointer messages. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void *OSQPend (OS_EVENT *pevent, | |||
| INT32U timeout, | |||
| INT8U *perr) | |||
| { | |||
| void *pmsg; | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return ((void *)0); | |||
| } | |||
| #endif | |||
| OS_TRACE_Q_PEND_ENTER(pevent, timeout); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) {/* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_Q_PEND_EXIT(*perr); | |||
| return ((void *)0); | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_PEND_ISR; /* ... can't PEND from an ISR */ | |||
| OS_TRACE_Q_PEND_EXIT(*perr); | |||
| return ((void *)0); | |||
| } | |||
| if (OSLockNesting > 0u) { /* See if called with scheduler locked ... */ | |||
| *perr = OS_ERR_PEND_LOCKED; /* ... can't PEND when locked */ | |||
| OS_TRACE_Q_PEND_EXIT(*perr); | |||
| return ((void *)0); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Point at queue control block */ | |||
| if (pq->OSQEntries > 0u) { /* See if any messages in the queue */ | |||
| pmsg = *pq->OSQOut++; /* Yes, extract oldest message from the queue */ | |||
| pq->OSQEntries--; /* Update the number of entries in the queue */ | |||
| if (pq->OSQOut == pq->OSQEnd) { /* Wrap OUT pointer if we are at the end of the queue */ | |||
| pq->OSQOut = pq->OSQStart; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| OS_TRACE_Q_PEND_EXIT(*perr); | |||
| return (pmsg); /* Return message received */ | |||
| } | |||
| OSTCBCur->OSTCBStat |= OS_STAT_Q; /* Task will have to pend for a message to be posted */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; | |||
| OSTCBCur->OSTCBDly = timeout; /* Load timeout into TCB */ | |||
| OS_EventTaskWait(pevent); /* Suspend task until event or timeout occurs */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find next highest priority task ready to run */ | |||
| OS_ENTER_CRITICAL(); | |||
| switch (OSTCBCur->OSTCBStatPend) { /* See if we timed-out or aborted */ | |||
| case OS_STAT_PEND_OK: /* Extract message from TCB (Put there by QPost) */ | |||
| pmsg = OSTCBCur->OSTCBMsg; | |||
| *perr = OS_ERR_NONE; | |||
| break; | |||
| case OS_STAT_PEND_ABORT: | |||
| pmsg = (void *)0; | |||
| *perr = OS_ERR_PEND_ABORT; /* Indicate that we aborted */ | |||
| break; | |||
| case OS_STAT_PEND_TO: | |||
| default: | |||
| OS_EventTaskRemove(OSTCBCur, pevent); | |||
| pmsg = (void *)0; | |||
| *perr = OS_ERR_TIMEOUT; /* Indicate that we didn't get event within TO */ | |||
| break; | |||
| } | |||
| OSTCBCur->OSTCBStat = OS_STAT_RDY; /* Set task status to ready */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; /* Clear pend status */ | |||
| OSTCBCur->OSTCBEventPtr = (OS_EVENT *)0; /* Clear event pointers */ | |||
| #if (OS_EVENT_MULTI_EN > 0u) | |||
| OSTCBCur->OSTCBEventMultiPtr = (OS_EVENT **)0; | |||
| OSTCBCur->OSTCBEventMultiRdy = (OS_EVENT *)0; | |||
| #endif | |||
| OSTCBCur->OSTCBMsg = (void *)0; /* Clear received message */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_Q_PEND_EXIT(*perr); | |||
| return (pmsg); /* Return received message */ | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ABORT WAITING ON A MESSAGE QUEUE | |||
| * | |||
| * Description: This function aborts & readies any tasks currently waiting on a queue. This function | |||
| * should be used to fault-abort the wait on the queue, rather than to normally signal | |||
| * the queue via OSQPost(), OSQPostFront() or OSQPostOpt(). | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired queue. | |||
| * | |||
| * opt determines the type of ABORT performed: | |||
| * OS_PEND_OPT_NONE ABORT wait for a single task (HPT) waiting on the | |||
| * queue | |||
| * OS_PEND_OPT_BROADCAST ABORT wait for ALL tasks that are waiting on the | |||
| * queue | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * | |||
| * OS_ERR_NONE No tasks were waiting on the queue. | |||
| * OS_ERR_PEND_ABORT At least one task waiting on the queue was readied | |||
| * and informed of the aborted wait; check return value | |||
| * for the number of tasks whose wait on the queue | |||
| * was aborted. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a queue. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * | |||
| * Returns : == 0 if no tasks were waiting on the queue, or upon error. | |||
| * > 0 if one or more tasks waiting on the queue are now readied and informed. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_PEND_ABORT_EN > 0u | |||
| INT8U OSQPendAbort (OS_EVENT *pevent, | |||
| INT8U opt, | |||
| INT8U *perr) | |||
| { | |||
| INT8U nbr_tasks; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return (0u); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (0u); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| return (0u); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task waiting on queue? */ | |||
| nbr_tasks = 0u; | |||
| switch (opt) { | |||
| case OS_PEND_OPT_BROADCAST: /* Do we need to abort ALL waiting tasks? */ | |||
| while (pevent->OSEventGrp != 0u) { /* Yes, ready ALL tasks waiting on queue */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_Q, OS_STAT_PEND_ABORT); | |||
| nbr_tasks++; | |||
| } | |||
| break; | |||
| case OS_PEND_OPT_NONE: | |||
| default: /* No, ready HPT waiting on queue */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_Q, OS_STAT_PEND_ABORT); | |||
| nbr_tasks++; | |||
| break; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find HPT ready to run */ | |||
| *perr = OS_ERR_PEND_ABORT; | |||
| return (nbr_tasks); | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| return (0u); /* No tasks waiting on queue */ | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * POST MESSAGE TO A QUEUE | |||
| * | |||
| * Description: This function sends a message to a queue | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired queue | |||
| * | |||
| * pmsg is a pointer to the message to send. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_Q_FULL If the queue cannot accept any more messages because it is full. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a queue. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * | |||
| * Note(s) : As of V2.60, this function allows you to send NULL pointer messages. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_POST_EN > 0u | |||
| INT8U OSQPost (OS_EVENT *pevent, | |||
| void *pmsg) | |||
| { | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| #endif | |||
| OS_TRACE_Q_POST_ENTER(pevent); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) { /* Validate event block type */ | |||
| OS_TRACE_Q_POST_EXIT(OS_ERR_EVENT_TYPE); | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task pending on queue */ | |||
| /* Ready highest priority task waiting on event */ | |||
| (void)OS_EventTaskRdy(pevent, pmsg, OS_STAT_Q, OS_STAT_PEND_OK); | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| OS_TRACE_Q_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Point to queue control block */ | |||
| if (pq->OSQEntries >= pq->OSQSize) { /* Make sure queue is not full */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_Q_POST_EXIT(OS_ERR_Q_FULL); | |||
| return (OS_ERR_Q_FULL); | |||
| } | |||
| *pq->OSQIn++ = pmsg; /* Insert message into queue */ | |||
| pq->OSQEntries++; /* Update the nbr of entries in the queue */ | |||
| if (pq->OSQIn == pq->OSQEnd) { /* Wrap IN ptr if we are at end of queue */ | |||
| pq->OSQIn = pq->OSQStart; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_Q_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * POST MESSAGE TO THE FRONT OF A QUEUE | |||
| * | |||
| * Description: This function sends a message to a queue but unlike OSQPost(), the message is posted at | |||
| * the front instead of the end of the queue. Using OSQPostFront() allows you to send | |||
| * 'priority' messages. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired queue | |||
| * | |||
| * pmsg is a pointer to the message to send. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_Q_FULL If the queue cannot accept any more messages because it is full. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a queue. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * | |||
| * Note(s) : As of V2.60, this function allows you to send NULL pointer messages. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_POST_FRONT_EN > 0u | |||
| INT8U OSQPostFront (OS_EVENT *pevent, | |||
| void *pmsg) | |||
| { | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| #endif | |||
| OS_TRACE_Q_POST_FRONT_ENTER(pevent); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) { /* Validate event block type */ | |||
| OS_TRACE_Q_POST_FRONT_EXIT(OS_ERR_EVENT_TYPE); | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task pending on queue */ | |||
| /* Ready highest priority task waiting on event */ | |||
| (void)OS_EventTaskRdy(pevent, pmsg, OS_STAT_Q, OS_STAT_PEND_OK); | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| OS_TRACE_Q_POST_FRONT_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Point to queue control block */ | |||
| if (pq->OSQEntries >= pq->OSQSize) { /* Make sure queue is not full */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_Q_POST_FRONT_EXIT(OS_ERR_Q_FULL); | |||
| return (OS_ERR_Q_FULL); | |||
| } | |||
| if (pq->OSQOut == pq->OSQStart) { /* Wrap OUT ptr if we are at the 1st queue entry */ | |||
| pq->OSQOut = pq->OSQEnd; | |||
| } | |||
| pq->OSQOut--; | |||
| *pq->OSQOut = pmsg; /* Insert message into queue */ | |||
| pq->OSQEntries++; /* Update the nbr of entries in the queue */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_Q_POST_FRONT_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * POST MESSAGE TO A QUEUE | |||
| * | |||
| * Description: This function sends a message to a queue. This call has been added to reduce code size | |||
| * since it can replace both OSQPost() and OSQPostFront(). Also, this function adds the | |||
| * capability to broadcast a message to ALL tasks waiting on the message queue. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired queue | |||
| * | |||
| * pmsg is a pointer to the message to send. | |||
| * | |||
| * opt determines the type of POST performed: | |||
| * OS_POST_OPT_NONE POST to a single waiting task | |||
| * (Identical to OSQPost()) | |||
| * OS_POST_OPT_BROADCAST POST to ALL tasks that are waiting on the queue | |||
| * OS_POST_OPT_FRONT POST as LIFO (Simulates OSQPostFront()) | |||
| * OS_POST_OPT_NO_SCHED Indicates that the scheduler will NOT be invoked | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_Q_FULL If the queue cannot accept any more messages because it is full. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a queue. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * | |||
| * Warning : Interrupts can be disabled for a long time if you do a 'broadcast'. In fact, the | |||
| * interrupt disable time is proportional to the number of tasks waiting on the queue. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_POST_OPT_EN > 0u | |||
| INT8U OSQPostOpt (OS_EVENT *pevent, | |||
| void *pmsg, | |||
| INT8U opt) | |||
| { | |||
| OS_Q *pq; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| #endif | |||
| OS_TRACE_Q_POST_OPT_ENTER(pevent, opt); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) { /* Validate event block type */ | |||
| OS_TRACE_Q_POST_OPT_EXIT(OS_ERR_EVENT_TYPE); | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0x00u) { /* See if any task pending on queue */ | |||
| if ((opt & OS_POST_OPT_BROADCAST) != 0x00u) { /* Do we need to post msg to ALL waiting tasks ? */ | |||
| while (pevent->OSEventGrp != 0u) { /* Yes, Post to ALL tasks waiting on queue */ | |||
| (void)OS_EventTaskRdy(pevent, pmsg, OS_STAT_Q, OS_STAT_PEND_OK); | |||
| } | |||
| } else { /* No, Post to HPT waiting on queue */ | |||
| (void)OS_EventTaskRdy(pevent, pmsg, OS_STAT_Q, OS_STAT_PEND_OK); | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| if ((opt & OS_POST_OPT_NO_SCHED) == 0u) { /* See if scheduler needs to be invoked */ | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| } | |||
| OS_TRACE_Q_POST_OPT_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| pq = (OS_Q *)pevent->OSEventPtr; /* Point to queue control block */ | |||
| if (pq->OSQEntries >= pq->OSQSize) { /* Make sure queue is not full */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_Q_POST_OPT_EXIT(OS_ERR_Q_FULL); | |||
| return (OS_ERR_Q_FULL); | |||
| } | |||
| if ((opt & OS_POST_OPT_FRONT) != 0x00u) { /* Do we post to the FRONT of the queue? */ | |||
| if (pq->OSQOut == pq->OSQStart) { /* Yes, Post as LIFO, Wrap OUT pointer if we ... */ | |||
| pq->OSQOut = pq->OSQEnd; /* ... are at the 1st queue entry */ | |||
| } | |||
| pq->OSQOut--; | |||
| *pq->OSQOut = pmsg; /* Insert message into queue */ | |||
| } else { /* No, Post as FIFO */ | |||
| *pq->OSQIn++ = pmsg; /* Insert message into queue */ | |||
| if (pq->OSQIn == pq->OSQEnd) { /* Wrap IN ptr if we are at end of queue */ | |||
| pq->OSQIn = pq->OSQStart; | |||
| } | |||
| } | |||
| pq->OSQEntries++; /* Update the nbr of entries in the queue */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_Q_POST_OPT_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * QUERY A MESSAGE QUEUE | |||
| * | |||
| * Description: This function obtains information about a message queue. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired queue | |||
| * | |||
| * p_q_data is a pointer to a structure that will contain information about the message | |||
| * queue. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_EVENT_TYPE If you are attempting to obtain data from a non queue. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer | |||
| * OS_ERR_PDATA_NULL If 'p_q_data' is a NULL pointer | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_Q_QUERY_EN > 0u | |||
| INT8U OSQQuery (OS_EVENT *pevent, | |||
| OS_Q_DATA *p_q_data) | |||
| { | |||
| OS_Q *pq; | |||
| INT8U i; | |||
| OS_PRIO *psrc; | |||
| OS_PRIO *pdest; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| if (p_q_data == (OS_Q_DATA *)0) { /* Validate 'p_q_data' */ | |||
| return (OS_ERR_PDATA_NULL); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_Q) { /* Validate event block type */ | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| p_q_data->OSEventGrp = pevent->OSEventGrp; /* Copy message queue wait list */ | |||
| psrc = &pevent->OSEventTbl[0]; | |||
| pdest = &p_q_data->OSEventTbl[0]; | |||
| for (i = 0u; i < OS_EVENT_TBL_SIZE; i++) { | |||
| *pdest++ = *psrc++; | |||
| } | |||
| pq = (OS_Q *)pevent->OSEventPtr; | |||
| if (pq->OSQEntries > 0u) { | |||
| p_q_data->OSMsg = *pq->OSQOut; /* Get next message to return if available */ | |||
| } else { | |||
| p_q_data->OSMsg = (void *)0; | |||
| } | |||
| p_q_data->OSNMsgs = pq->OSQEntries; | |||
| p_q_data->OSQSize = pq->OSQSize; | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif /* OS_Q_QUERY_EN */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * QUEUE MODULE INITIALIZATION | |||
| * | |||
| * Description : This function is called by uC/OS-II to initialize the message queue module. Your | |||
| * application MUST NOT call this function. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Returns : none | |||
| * | |||
| * Note(s) : This function is INTERNAL to uC/OS-II and your application should not call it. | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OS_QInit (void) | |||
| { | |||
| #if OS_MAX_QS == 1u | |||
| OSQFreeList = &OSQTbl[0]; /* Only ONE queue! */ | |||
| OSQFreeList->OSQPtr = (OS_Q *)0; | |||
| #endif | |||
| #if OS_MAX_QS >= 2u | |||
| INT16U ix; | |||
| INT16U ix_next; | |||
| OS_Q *pq1; | |||
| OS_Q *pq2; | |||
| OS_MemClr((INT8U *)&OSQTbl[0], sizeof(OSQTbl)); /* Clear the queue table */ | |||
| for (ix = 0u; ix < (OS_MAX_QS - 1u); ix++) { /* Init. list of free QUEUE control blocks */ | |||
| ix_next = ix + 1u; | |||
| pq1 = &OSQTbl[ix]; | |||
| pq2 = &OSQTbl[ix_next]; | |||
| pq1->OSQPtr = pq2; | |||
| } | |||
| pq1 = &OSQTbl[ix]; | |||
| pq1->OSQPtr = (OS_Q *)0; | |||
| OSQFreeList = &OSQTbl[0]; | |||
| #endif | |||
| } | |||
| #endif /* OS_Q_EN */ | |||
| #endif /* OS_Q_C */ | |||
| @@ -0,0 +1,679 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * SEMAPHORE MANAGEMENT | |||
| * | |||
| * Filename : os_sem.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_SEM_C | |||
| #define OS_SEM_C | |||
| #define MICRIUM_SOURCE | |||
| #ifndef OS_MASTER_FILE | |||
| #include <ucos_ii.h> | |||
| #endif | |||
| #if OS_SEM_EN > 0u | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ACCEPT SEMAPHORE | |||
| * | |||
| * Description: This function checks the semaphore to see if a resource is available or, if an event | |||
| * occurred. Unlike OSSemPend(), OSSemAccept() does not suspend the calling task if the | |||
| * resource is not available or the event did not occur. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block | |||
| * | |||
| * Returns : > 0 if the resource is available or the event did not occur the semaphore is | |||
| * decremented to obtain the resource. | |||
| * == 0 if the resource is not available or the event did not occur or, | |||
| * if 'pevent' is a NULL pointer or, | |||
| * if you didn't pass a pointer to a semaphore | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_SEM_ACCEPT_EN > 0u | |||
| INT16U OSSemAccept (OS_EVENT *pevent) | |||
| { | |||
| INT16U cnt; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (0u); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_SEM) { /* Validate event block type */ | |||
| return (0u); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| cnt = pevent->OSEventCnt; | |||
| if (cnt > 0u) { /* See if resource is available */ | |||
| pevent->OSEventCnt--; /* Yes, decrement semaphore and notify caller */ | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| return (cnt); /* Return semaphore count */ | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * CREATE A SEMAPHORE | |||
| * | |||
| * Description: This function creates a semaphore. | |||
| * | |||
| * Arguments : cnt is the initial value for the semaphore. If the value is 0, no resource is | |||
| * available (or no event has occurred). You initialize the semaphore to a | |||
| * non-zero value to specify how many resources are available (e.g. if you have | |||
| * 10 resources, you would initialize the semaphore to 10). | |||
| * | |||
| * Returns : != (void *)0 is a pointer to the event control block (OS_EVENT) associated with the | |||
| * created semaphore | |||
| * == (void *)0 if no event control blocks were available | |||
| ********************************************************************************************************* | |||
| */ | |||
| OS_EVENT *OSSemCreate (INT16U cnt) | |||
| { | |||
| OS_EVENT *pevent; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| return ((OS_EVENT *)0); /* ... can't CREATE from an ISR */ | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| pevent = OSEventFreeList; /* Get next free event control block */ | |||
| if (OSEventFreeList != (OS_EVENT *)0) { /* See if pool of free ECB pool was empty */ | |||
| OSEventFreeList = (OS_EVENT *)OSEventFreeList->OSEventPtr; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| if (pevent != (OS_EVENT *)0) { /* Get an event control block */ | |||
| pevent->OSEventType = OS_EVENT_TYPE_SEM; | |||
| pevent->OSEventCnt = cnt; /* Set semaphore value */ | |||
| pevent->OSEventPtr = (void *)0; /* Unlink from ECB free list */ | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| OS_EventWaitListInit(pevent); /* Initialize to 'nobody waiting' on sem. */ | |||
| OS_TRACE_SEM_CREATE(pevent, pevent->OSEventName); | |||
| } | |||
| return (pevent); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DELETE A SEMAPHORE | |||
| * | |||
| * Description: This function deletes a semaphore and readies all tasks pending on the semaphore. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * semaphore. | |||
| * | |||
| * opt determines delete options as follows: | |||
| * opt == OS_DEL_NO_PEND Delete semaphore ONLY if no task pending | |||
| * opt == OS_DEL_ALWAYS Deletes the semaphore even if tasks are waiting. | |||
| * In this case, all the tasks pending will be readied. | |||
| * | |||
| * perr is a pointer to an error code that can contain one of the following values: | |||
| * OS_ERR_NONE The call was successful and the semaphore was | |||
| * deleted | |||
| * OS_ERR_DEL_ISR If you attempted to delete the semaphore from an | |||
| * ISR | |||
| * OS_ERR_ILLEGAL_DEL_RUN_TIME If you tried to delete the semaphore after | |||
| * safety critical operation started. | |||
| * OS_ERR_INVALID_OPT An invalid option was specified | |||
| * OS_ERR_TASK_WAITING One or more tasks were waiting on the semaphore | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a semaphore | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * | |||
| * Returns : pevent upon error | |||
| * (OS_EVENT *)0 if the semaphore was successfully deleted. | |||
| * | |||
| * Note(s) : 1) This function must be used with care. Tasks that would normally expect the presence of | |||
| * the semaphore MUST check the return code of OSSemPend(). | |||
| * 2) OSSemAccept() callers will not know that the intended semaphore has been deleted unless | |||
| * they check 'pevent' to see that it's a NULL pointer. | |||
| * 3) This call can potentially disable interrupts for a long time. The interrupt disable | |||
| * time is directly proportional to the number of tasks waiting on the semaphore. | |||
| * 4) Because ALL tasks pending on the semaphore will be readied, you MUST be careful in | |||
| * applications where the semaphore is used for mutual exclusion because the resource(s) | |||
| * will no longer be guarded by the semaphore. | |||
| * 5) All tasks that were waiting for the semaphore will be readied and returned an | |||
| * OS_ERR_PEND_ABORT if OSSemDel() was called with OS_DEL_ALWAYS | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_SEM_DEL_EN > 0u | |||
| OS_EVENT *OSSemDel (OS_EVENT *pevent, | |||
| INT8U opt, | |||
| INT8U *perr) | |||
| { | |||
| BOOLEAN tasks_waiting; | |||
| OS_EVENT *pevent_return; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL_IEC61508 | |||
| if (OSSafetyCriticalStartFlag == OS_TRUE) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| *perr = OS_ERR_ILLEGAL_DEL_RUN_TIME; | |||
| return ((OS_EVENT *)0); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (pevent); | |||
| } | |||
| #endif | |||
| OS_TRACE_SEM_DEL_ENTER(pevent, opt); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_SEM) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_SEM_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_DEL_ISR; /* ... can't DELETE from an ISR */ | |||
| OS_TRACE_SEM_DEL_EXIT(*perr); | |||
| return (pevent); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any tasks waiting on semaphore */ | |||
| tasks_waiting = OS_TRUE; /* Yes */ | |||
| } else { | |||
| tasks_waiting = OS_FALSE; /* No */ | |||
| } | |||
| switch (opt) { | |||
| case OS_DEL_NO_PEND: /* Delete semaphore only if no task waiting */ | |||
| if (tasks_waiting == OS_FALSE) { | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; /* Get next free event control block */ | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Semaphore has been deleted */ | |||
| } else { | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_TASK_WAITING; | |||
| pevent_return = pevent; | |||
| } | |||
| break; | |||
| case OS_DEL_ALWAYS: /* Always delete the semaphore */ | |||
| while (pevent->OSEventGrp != 0u) { /* Ready ALL tasks waiting for semaphore */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_SEM, OS_STAT_PEND_ABORT); | |||
| } | |||
| #if OS_EVENT_NAME_EN > 0u | |||
| pevent->OSEventName = (INT8U *)(void *)"?"; | |||
| #endif | |||
| pevent->OSEventType = OS_EVENT_TYPE_UNUSED; | |||
| pevent->OSEventPtr = OSEventFreeList; /* Return Event Control Block to free list */ | |||
| pevent->OSEventCnt = 0u; | |||
| OSEventFreeList = pevent; /* Get next free event control block */ | |||
| OS_EXIT_CRITICAL(); | |||
| if (tasks_waiting == OS_TRUE) { /* Reschedule only if task(s) were waiting */ | |||
| OS_Sched(); /* Find highest priority task ready to run */ | |||
| } | |||
| *perr = OS_ERR_NONE; | |||
| pevent_return = (OS_EVENT *)0; /* Semaphore has been deleted */ | |||
| break; | |||
| default: | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_INVALID_OPT; | |||
| pevent_return = pevent; | |||
| break; | |||
| } | |||
| OS_TRACE_SEM_DEL_EXIT(*perr); | |||
| return (pevent_return); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * PEND ON SEMAPHORE | |||
| * | |||
| * Description: This function waits for a semaphore. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * semaphore. | |||
| * | |||
| * timeout is an optional timeout period (in clock ticks). If non-zero, your task will | |||
| * wait for the resource up to the amount of time specified by this argument. | |||
| * If you specify 0, however, your task will wait forever at the specified | |||
| * semaphore or, until the resource becomes available (or the event occurs). | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * | |||
| * OS_ERR_NONE The call was successful and your task owns the resource | |||
| * or, the event you are waiting for occurred. | |||
| * OS_ERR_TIMEOUT The semaphore was not received within the specified | |||
| * 'timeout'. | |||
| * OS_ERR_PEND_ABORT The wait on the semaphore was aborted. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a semaphore. | |||
| * OS_ERR_PEND_ISR If you called this function from an ISR and the result | |||
| * would lead to a suspension. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * OS_ERR_PEND_LOCKED If you called this function when the scheduler is locked | |||
| * | |||
| * Returns : none | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OSSemPend (OS_EVENT *pevent, | |||
| INT32U timeout, | |||
| INT8U *perr) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return; | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return; | |||
| } | |||
| #endif | |||
| OS_TRACE_SEM_PEND_ENTER(pevent, timeout); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_SEM) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| OS_TRACE_SEM_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| if (OSIntNesting > 0u) { /* See if called from ISR ... */ | |||
| *perr = OS_ERR_PEND_ISR; /* ... can't PEND from an ISR */ | |||
| OS_TRACE_SEM_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| if (OSLockNesting > 0u) { /* See if called with scheduler locked ... */ | |||
| *perr = OS_ERR_PEND_LOCKED; /* ... can't PEND when locked */ | |||
| OS_TRACE_SEM_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventCnt > 0u) { /* If sem. is positive, resource available ... */ | |||
| pevent->OSEventCnt--; /* ... decrement semaphore only if positive. */ | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| OS_TRACE_SEM_PEND_EXIT(*perr); | |||
| return; | |||
| } | |||
| /* Otherwise, must wait until event occurs */ | |||
| OSTCBCur->OSTCBStat |= OS_STAT_SEM; /* Resource not available, pend on semaphore */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; | |||
| OSTCBCur->OSTCBDly = timeout; /* Store pend timeout in TCB */ | |||
| OS_EventTaskWait(pevent); /* Suspend task until event or timeout occurs */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find next highest priority task ready */ | |||
| OS_ENTER_CRITICAL(); | |||
| switch (OSTCBCur->OSTCBStatPend) { /* See if we timed-out or aborted */ | |||
| case OS_STAT_PEND_OK: | |||
| *perr = OS_ERR_NONE; | |||
| break; | |||
| case OS_STAT_PEND_ABORT: | |||
| *perr = OS_ERR_PEND_ABORT; /* Indicate that we aborted */ | |||
| break; | |||
| case OS_STAT_PEND_TO: | |||
| default: | |||
| OS_EventTaskRemove(OSTCBCur, pevent); | |||
| *perr = OS_ERR_TIMEOUT; /* Indicate that we didn't get event within TO */ | |||
| break; | |||
| } | |||
| OSTCBCur->OSTCBStat = OS_STAT_RDY; /* Set task status to ready */ | |||
| OSTCBCur->OSTCBStatPend = OS_STAT_PEND_OK; /* Clear pend status */ | |||
| OSTCBCur->OSTCBEventPtr = (OS_EVENT *)0; /* Clear event pointers */ | |||
| #if (OS_EVENT_MULTI_EN > 0u) | |||
| OSTCBCur->OSTCBEventMultiPtr = (OS_EVENT **)0; | |||
| OSTCBCur->OSTCBEventMultiRdy = (OS_EVENT *)0; | |||
| #endif | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_SEM_PEND_EXIT(*perr); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * ABORT WAITING ON A SEMAPHORE | |||
| * | |||
| * Description: This function aborts & readies any tasks currently waiting on a semaphore. This function | |||
| * should be used to fault-abort the wait on the semaphore, rather than to normally signal | |||
| * the semaphore via OSSemPost(). | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * semaphore. | |||
| * | |||
| * opt determines the type of ABORT performed: | |||
| * OS_PEND_OPT_NONE ABORT wait for a single task (HPT) waiting on the | |||
| * semaphore | |||
| * OS_PEND_OPT_BROADCAST ABORT wait for ALL tasks that are waiting on the | |||
| * semaphore | |||
| * | |||
| * perr is a pointer to where an error message will be deposited. Possible error | |||
| * messages are: | |||
| * | |||
| * OS_ERR_NONE No tasks were waiting on the semaphore. | |||
| * OS_ERR_PEND_ABORT At least one task waiting on the semaphore was readied | |||
| * and informed of the aborted wait; check return value | |||
| * for the number of tasks whose wait on the semaphore | |||
| * was aborted. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a semaphore. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * | |||
| * Returns : == 0 if no tasks were waiting on the semaphore, or upon error. | |||
| * > 0 if one or more tasks waiting on the semaphore are now readied and informed. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_SEM_PEND_ABORT_EN > 0u | |||
| INT8U OSSemPendAbort (OS_EVENT *pevent, | |||
| INT8U opt, | |||
| INT8U *perr) | |||
| { | |||
| INT8U nbr_tasks; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return (0u); | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return (0u); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_SEM) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| return (0u); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task waiting on semaphore? */ | |||
| nbr_tasks = 0u; | |||
| switch (opt) { | |||
| case OS_PEND_OPT_BROADCAST: /* Do we need to abort ALL waiting tasks? */ | |||
| while (pevent->OSEventGrp != 0u) { /* Yes, ready ALL tasks waiting on semaphore */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_SEM, OS_STAT_PEND_ABORT); | |||
| nbr_tasks++; | |||
| } | |||
| break; | |||
| case OS_PEND_OPT_NONE: | |||
| default: /* No, ready HPT waiting on semaphore */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_SEM, OS_STAT_PEND_ABORT); | |||
| nbr_tasks++; | |||
| break; | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find HPT ready to run */ | |||
| *perr = OS_ERR_PEND_ABORT; | |||
| return (nbr_tasks); | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| return (0u); /* No tasks waiting on semaphore */ | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * POST TO A SEMAPHORE | |||
| * | |||
| * Description: This function signals a semaphore | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * semaphore. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the semaphore was signaled. | |||
| * OS_ERR_SEM_OVF If the semaphore count exceeded its limit. In other words, you have | |||
| * signaled the semaphore more often than you waited on it with either | |||
| * OSSemAccept() or OSSemPend(). | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a semaphore | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| ********************************************************************************************************* | |||
| */ | |||
| INT8U OSSemPost (OS_EVENT *pevent) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| #endif | |||
| OS_TRACE_SEM_POST_ENTER(pevent); | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_SEM) { /* Validate event block type */ | |||
| OS_TRACE_SEM_POST_EXIT(OS_ERR_EVENT_TYPE); | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| if (pevent->OSEventGrp != 0u) { /* See if any task waiting for semaphore */ | |||
| /* Ready HPT waiting on event */ | |||
| (void)OS_EventTaskRdy(pevent, (void *)0, OS_STAT_SEM, OS_STAT_PEND_OK); | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find HPT ready to run */ | |||
| OS_TRACE_SEM_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| if (pevent->OSEventCnt < 65535u) { /* Make sure semaphore will not overflow */ | |||
| pevent->OSEventCnt++; /* Increment semaphore count to register event */ | |||
| OS_EXIT_CRITICAL(); | |||
| OS_TRACE_SEM_POST_EXIT(OS_ERR_NONE); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| OS_EXIT_CRITICAL(); /* Semaphore value has reached its maximum */ | |||
| OS_TRACE_SEM_POST_EXIT(OS_ERR_SEM_OVF); | |||
| return (OS_ERR_SEM_OVF); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * QUERY A SEMAPHORE | |||
| * | |||
| * Description: This function obtains information about a semaphore | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block associated with the desired | |||
| * semaphore | |||
| * | |||
| * p_sem_data is a pointer to a structure that will contain information about the | |||
| * semaphore. | |||
| * | |||
| * Returns : OS_ERR_NONE The call was successful and the message was sent | |||
| * OS_ERR_EVENT_TYPE If you are attempting to obtain data from a non semaphore. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * OS_ERR_PDATA_NULL If 'p_sem_data' is a NULL pointer | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_SEM_QUERY_EN > 0u | |||
| INT8U OSSemQuery (OS_EVENT *pevent, | |||
| OS_SEM_DATA *p_sem_data) | |||
| { | |||
| INT8U i; | |||
| OS_PRIO *psrc; | |||
| OS_PRIO *pdest; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| return (OS_ERR_PEVENT_NULL); | |||
| } | |||
| if (p_sem_data == (OS_SEM_DATA *)0) { /* Validate 'p_sem_data' */ | |||
| return (OS_ERR_PDATA_NULL); | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_SEM) { /* Validate event block type */ | |||
| return (OS_ERR_EVENT_TYPE); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| p_sem_data->OSEventGrp = pevent->OSEventGrp; /* Copy message mailbox wait list */ | |||
| psrc = &pevent->OSEventTbl[0]; | |||
| pdest = &p_sem_data->OSEventTbl[0]; | |||
| for (i = 0u; i < OS_EVENT_TBL_SIZE; i++) { | |||
| *pdest++ = *psrc++; | |||
| } | |||
| p_sem_data->OSCnt = pevent->OSEventCnt; /* Get semaphore count */ | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif /* OS_SEM_QUERY_EN */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * SET SEMAPHORE | |||
| * | |||
| * Description: This function sets the semaphore count to the value specified as an argument. Typically, | |||
| * this value would be 0. | |||
| * | |||
| * You would typically use this function when a semaphore is used as a signaling mechanism | |||
| * and, you want to reset the count value. | |||
| * | |||
| * Arguments : pevent is a pointer to the event control block | |||
| * | |||
| * cnt is the new value for the semaphore count. You would pass 0 to reset the | |||
| * semaphore count. | |||
| * | |||
| * perr is a pointer to an error code returned by the function as follows: | |||
| * | |||
| * OS_ERR_NONE The call was successful and the semaphore value was set. | |||
| * OS_ERR_EVENT_TYPE If you didn't pass a pointer to a semaphore. | |||
| * OS_ERR_PEVENT_NULL If 'pevent' is a NULL pointer. | |||
| * OS_ERR_TASK_WAITING If tasks are waiting on the semaphore. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_SEM_SET_EN > 0u | |||
| void OSSemSet (OS_EVENT *pevent, | |||
| INT16U cnt, | |||
| INT8U *perr) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| #ifdef OS_SAFETY_CRITICAL | |||
| if (perr == (INT8U *)0) { | |||
| OS_SAFETY_CRITICAL_EXCEPTION(); | |||
| return; | |||
| } | |||
| #endif | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (pevent == (OS_EVENT *)0) { /* Validate 'pevent' */ | |||
| *perr = OS_ERR_PEVENT_NULL; | |||
| return; | |||
| } | |||
| #endif | |||
| if (pevent->OSEventType != OS_EVENT_TYPE_SEM) { /* Validate event block type */ | |||
| *perr = OS_ERR_EVENT_TYPE; | |||
| return; | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| *perr = OS_ERR_NONE; | |||
| if (pevent->OSEventCnt > 0u) { /* See if semaphore already has a count */ | |||
| pevent->OSEventCnt = cnt; /* Yes, set it to the new value specified. */ | |||
| } else { /* No */ | |||
| if (pevent->OSEventGrp == 0u) { /* See if task(s) waiting? */ | |||
| pevent->OSEventCnt = cnt; /* No, OK to set the value */ | |||
| } else { | |||
| *perr = OS_ERR_TASK_WAITING; | |||
| } | |||
| } | |||
| OS_EXIT_CRITICAL(); | |||
| } | |||
| #endif | |||
| #endif /* OS_SEM_EN */ | |||
| #endif /* OS_SEM_C */ | |||
| @@ -0,0 +1,280 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * TIME MANAGEMENT | |||
| * | |||
| * Filename : os_time.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_TIME_C | |||
| #define OS_TIME_C | |||
| #define MICRIUM_SOURCE | |||
| #ifndef OS_MASTER_FILE | |||
| #include <ucos_ii.h> | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DELAY TASK 'n' TICKS | |||
| * | |||
| * Description: This function is called to delay execution of the currently running task until the | |||
| * specified number of system ticks expires. This, of course, directly equates to delaying | |||
| * the current task for some time to expire. No delay will result If the specified delay is | |||
| * 0. If the specified delay is greater than 0 then, a context switch will result. | |||
| * | |||
| * Arguments : ticks is the time delay that the task will be suspended in number of clock 'ticks'. | |||
| * Note that by specifying 0, the task will not be delayed. | |||
| * | |||
| * Returns : none | |||
| ********************************************************************************************************* | |||
| */ | |||
| void OSTimeDly (INT32U ticks) | |||
| { | |||
| INT8U y; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| if (OSIntNesting > 0u) { /* See if trying to call from an ISR */ | |||
| return; | |||
| } | |||
| if (OSLockNesting > 0u) { /* See if called with scheduler locked */ | |||
| return; | |||
| } | |||
| if (ticks > 0u) { /* 0 means no delay! */ | |||
| OS_ENTER_CRITICAL(); | |||
| y = OSTCBCur->OSTCBY; /* Delay current task */ | |||
| OSRdyTbl[y] &= (OS_PRIO)~OSTCBCur->OSTCBBitX; | |||
| OS_TRACE_TASK_SUSPENDED(OSTCBCur); | |||
| if (OSRdyTbl[y] == 0u) { | |||
| OSRdyGrp &= (OS_PRIO)~OSTCBCur->OSTCBBitY; | |||
| } | |||
| OSTCBCur->OSTCBDly = ticks; /* Load ticks in TCB */ | |||
| OS_TRACE_TASK_DLY(ticks); | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* Find next task to run! */ | |||
| } | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * DELAY TASK FOR SPECIFIED TIME | |||
| * | |||
| * Description: This function is called to delay execution of the currently running task until some time | |||
| * expires. This call allows you to specify the delay time in HOURS, MINUTES, SECONDS and | |||
| * MILLISECONDS instead of ticks. | |||
| * | |||
| * Arguments : hours specifies the number of hours that the task will be delayed (max. is 255) | |||
| * minutes specifies the number of minutes (max. 59) | |||
| * seconds specifies the number of seconds (max. 59) | |||
| * ms specifies the number of milliseconds (max. 999) | |||
| * | |||
| * Returns : OS_ERR_NONE | |||
| * OS_ERR_TIME_INVALID_MINUTES | |||
| * OS_ERR_TIME_INVALID_SECONDS | |||
| * OS_ERR_TIME_INVALID_MS | |||
| * OS_ERR_TIME_ZERO_DLY | |||
| * OS_ERR_TIME_DLY_ISR | |||
| * | |||
| * Note(s) : The resolution on the milliseconds depends on the tick rate. For example, you can't do | |||
| * a 10 mS delay if the ticker interrupts every 100 mS. In this case, the delay would be | |||
| * set to 0. The actual delay is rounded to the nearest tick. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_TIME_DLY_HMSM_EN > 0u | |||
| INT8U OSTimeDlyHMSM (INT8U hours, | |||
| INT8U minutes, | |||
| INT8U seconds, | |||
| INT16U ms) | |||
| { | |||
| INT32U ticks; | |||
| if (OSIntNesting > 0u) { /* See if trying to call from an ISR */ | |||
| return (OS_ERR_TIME_DLY_ISR); | |||
| } | |||
| if (OSLockNesting > 0u) { /* See if called with scheduler locked */ | |||
| return (OS_ERR_SCHED_LOCKED); | |||
| } | |||
| #if OS_ARG_CHK_EN > 0u | |||
| if (hours == 0u) { | |||
| if (minutes == 0u) { | |||
| if (seconds == 0u) { | |||
| if (ms == 0u) { | |||
| return (OS_ERR_TIME_ZERO_DLY); | |||
| } | |||
| } | |||
| } | |||
| } | |||
| if (minutes > 59u) { | |||
| return (OS_ERR_TIME_INVALID_MINUTES); /* Validate arguments to be within range */ | |||
| } | |||
| if (seconds > 59u) { | |||
| return (OS_ERR_TIME_INVALID_SECONDS); | |||
| } | |||
| if (ms > 999u) { | |||
| return (OS_ERR_TIME_INVALID_MS); | |||
| } | |||
| #endif | |||
| /* Compute the total number of clock ticks required.. */ | |||
| /* .. (rounded to the nearest tick) */ | |||
| ticks = ((INT32U)hours * 3600uL + (INT32U)minutes * 60uL + (INT32U)seconds) * OS_TICKS_PER_SEC | |||
| + OS_TICKS_PER_SEC * ((INT32U)ms + 500uL / OS_TICKS_PER_SEC) / 1000uL; | |||
| OSTimeDly(ticks); | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * RESUME A DELAYED TASK | |||
| * | |||
| * Description: This function is used resume a task that has been delayed through a call to either | |||
| * OSTimeDly() or OSTimeDlyHMSM(). Note that you can call this function to resume a | |||
| * task that is waiting for an event with timeout. This would make the task look | |||
| * like a timeout occurred. | |||
| * | |||
| * Arguments : prio specifies the priority of the task to resume | |||
| * | |||
| * Returns : OS_ERR_NONE Task has been resumed | |||
| * OS_ERR_PRIO_INVALID if the priority you specify is higher that the maximum allowed | |||
| * (i.e. >= OS_LOWEST_PRIO) | |||
| * OS_ERR_TIME_NOT_DLY Task is not waiting for time to expire | |||
| * OS_ERR_TASK_NOT_EXIST The desired task has not been created or has been assigned to a Mutex. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_TIME_DLY_RESUME_EN > 0u | |||
| INT8U OSTimeDlyResume (INT8U prio) | |||
| { | |||
| OS_TCB *ptcb; | |||
| #if OS_CRITICAL_METHOD == 3u /* Storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| if (prio >= OS_LOWEST_PRIO) { | |||
| return (OS_ERR_PRIO_INVALID); | |||
| } | |||
| OS_ENTER_CRITICAL(); | |||
| ptcb = OSTCBPrioTbl[prio]; /* Make sure that task exist */ | |||
| if (ptcb == (OS_TCB *)0) { | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_TASK_NOT_EXIST); /* The task does not exist */ | |||
| } | |||
| if (ptcb == OS_TCB_RESERVED) { | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_TASK_NOT_EXIST); /* The task does not exist */ | |||
| } | |||
| if (ptcb->OSTCBDly == 0u) { /* See if task is delayed */ | |||
| OS_EXIT_CRITICAL(); | |||
| return (OS_ERR_TIME_NOT_DLY); /* Indicate that task was not delayed */ | |||
| } | |||
| ptcb->OSTCBDly = 0u; /* Clear the time delay */ | |||
| if ((ptcb->OSTCBStat & OS_STAT_PEND_ANY) != OS_STAT_RDY) { | |||
| ptcb->OSTCBStat &= ~OS_STAT_PEND_ANY; /* Yes, Clear status flag */ | |||
| ptcb->OSTCBStatPend = OS_STAT_PEND_TO; /* Indicate PEND timeout */ | |||
| } else { | |||
| ptcb->OSTCBStatPend = OS_STAT_PEND_OK; | |||
| } | |||
| if ((ptcb->OSTCBStat & OS_STAT_SUSPEND) == OS_STAT_RDY) { /* Is task suspended? */ | |||
| OSRdyGrp |= ptcb->OSTCBBitY; /* No, Make ready */ | |||
| OSRdyTbl[ptcb->OSTCBY] |= ptcb->OSTCBBitX; | |||
| OS_TRACE_TASK_READY(ptcb); | |||
| OS_EXIT_CRITICAL(); | |||
| OS_Sched(); /* See if this is new highest priority */ | |||
| } else { | |||
| OS_EXIT_CRITICAL(); /* Task may be suspended */ | |||
| } | |||
| return (OS_ERR_NONE); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * GET CURRENT SYSTEM TIME | |||
| * | |||
| * Description: This function is used by your application to obtain the current value of the 32-bit | |||
| * counter which keeps track of the number of clock ticks. | |||
| * | |||
| * Arguments : none | |||
| * | |||
| * Returns : The current value of OSTime | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_TIME_GET_SET_EN > 0u | |||
| INT32U OSTimeGet (void) | |||
| { | |||
| INT32U ticks; | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| OS_ENTER_CRITICAL(); | |||
| ticks = OSTime; | |||
| OS_EXIT_CRITICAL(); | |||
| return (ticks); | |||
| } | |||
| #endif | |||
| /* | |||
| ********************************************************************************************************* | |||
| * SET SYSTEM CLOCK | |||
| * | |||
| * Description: This function sets the 32-bit counter which keeps track of the number of clock ticks. | |||
| * | |||
| * Arguments : ticks specifies the new value that OSTime needs to take. | |||
| * | |||
| * Returns : none | |||
| ********************************************************************************************************* | |||
| */ | |||
| #if OS_TIME_GET_SET_EN > 0u | |||
| void OSTimeSet (INT32U ticks) | |||
| { | |||
| #if OS_CRITICAL_METHOD == 3u /* Allocate storage for CPU status register */ | |||
| OS_CPU_SR cpu_sr = 0u; | |||
| #endif | |||
| OS_ENTER_CRITICAL(); | |||
| OSTime = ticks; | |||
| OS_EXIT_CRITICAL(); | |||
| } | |||
| #endif | |||
| #endif /* OS_TIME_C */ | |||
| @@ -0,0 +1,474 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * | |||
| * TRACE SUPPORT | |||
| * | |||
| * Filename : os_trace.h | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| * Note(s) : (1) The header file os_trace_events.h is the interface between uC/OS-II and your trace | |||
| * recorder of choice. | |||
| * To support trace recording, include one of the sub-folders at uCOS-II/Trace/ into | |||
| * your project. | |||
| ********************************************************************************************************* | |||
| */ | |||
| #ifndef OS_TRACE_H | |||
| #define OS_TRACE_H | |||
| #include <os_cfg.h> | |||
| #if (defined(OS_TRACE_EN) && (OS_TRACE_EN > 0u)) | |||
| #include <os_trace_events.h> /* See Note #1. */ | |||
| #endif | |||
| /* | |||
| ************************************************************************************************************************** | |||
| * uC/OS-II Trace Default Macros (Empty) | |||
| ************************************************************************************************************************** | |||
| */ | |||
| #ifndef OS_TRACE_INIT | |||
| #define OS_TRACE_INIT() | |||
| #endif | |||
| #ifndef OS_TRACE_START | |||
| #define OS_TRACE_START() | |||
| #endif | |||
| #ifndef OS_TRACE_STOP | |||
| #define OS_TRACE_STOP() | |||
| #endif | |||
| #ifndef OS_TRACE_CLEAR | |||
| #define OS_TRACE_CLEAR() | |||
| #endif | |||
| #ifndef OS_TRACE_ISR_ENTER | |||
| #define OS_TRACE_ISR_ENTER() | |||
| #endif | |||
| #ifndef OS_TRACE_ISR_EXIT | |||
| #define OS_TRACE_ISR_EXIT() | |||
| #endif | |||
| #ifndef OS_TRACE_ISR_EXIT_TO_SCHEDULER | |||
| #define OS_TRACE_ISR_EXIT_TO_SCHEDULER() | |||
| #endif | |||
| #ifndef OS_TRACE_TICK_INCREMENT | |||
| #define OS_TRACE_TICK_INCREMENT(OSTickCtr) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_CREATE | |||
| #define OS_TRACE_TASK_CREATE(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_CREATE_FAILED | |||
| #define OS_TRACE_TASK_CREATE_FAILED(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_DEL | |||
| #define OS_TRACE_TASK_DEL(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_READY | |||
| #define OS_TRACE_TASK_READY(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_SWITCHED_IN | |||
| #define OS_TRACE_TASK_SWITCHED_IN(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_DLY | |||
| #define OS_TRACE_TASK_DLY(dly_ticks) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_SUSPEND | |||
| #define OS_TRACE_TASK_SUSPEND(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_SUSPENDED | |||
| #define OS_TRACE_TASK_SUSPENDED(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_RESUME | |||
| #define OS_TRACE_TASK_RESUME(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_PRIO_CHANGE | |||
| #define OS_TRACE_TASK_PRIO_CHANGE(p_tcb, prio) | |||
| #endif | |||
| #ifndef OS_TRACE_TASK_NAME_SET | |||
| #define OS_TRACE_TASK_NAME_SET(p_tcb) | |||
| #endif | |||
| #ifndef OS_TRACE_EVENT_NAME_SET | |||
| #define OS_TRACE_EVENT_NAME_SET(p_event, p_name) | |||
| #endif | |||
| #ifndef OS_TRACE_ISR_REGISTER | |||
| #define OS_TRACE_ISR_REGISTER(isr_id, isr_name, isr_prio) | |||
| #endif | |||
| #ifndef OS_TRACE_ISR_BEGIN | |||
| #define OS_TRACE_ISR_BEGIN(isr_id) | |||
| #endif | |||
| #ifndef OS_TRACE_ISR_END | |||
| #define OS_TRACE_ISR_END() | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_CREATE | |||
| #define OS_TRACE_MBOX_CREATE(p_mbox, p_name) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_CREATE | |||
| #define OS_TRACE_MUTEX_CREATE(p_mutex, p_name) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_DEL | |||
| #define OS_TRACE_MUTEX_DEL(p_mutex) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_POST | |||
| #define OS_TRACE_MUTEX_POST(p_mutex) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_POST_FAILED | |||
| #define OS_TRACE_MUTEX_POST_FAILED(p_mutex) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_PEND | |||
| #define OS_TRACE_MUTEX_PEND(p_mutex) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_PEND_FAILED | |||
| #define OS_TRACE_MUTEX_PEND_FAILED(p_mutex) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_PEND_BLOCK | |||
| #define OS_TRACE_MUTEX_PEND_BLOCK(p_mutex) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_TASK_PRIO_INHERIT | |||
| #define OS_TRACE_MUTEX_TASK_PRIO_INHERIT(p_tcb, prio) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_TASK_PRIO_DISINHERIT | |||
| #define OS_TRACE_MUTEX_TASK_PRIO_DISINHERIT(p_tcb, prio) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_CREATE | |||
| #define OS_TRACE_SEM_CREATE(p_sem, p_name) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_DEL | |||
| #define OS_TRACE_SEM_DEL(p_sem) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_POST | |||
| #define OS_TRACE_SEM_POST(p_sem) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_POST_FAILED | |||
| #define OS_TRACE_SEM_POST_FAILED(p_sem) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_PEND | |||
| #define OS_TRACE_SEM_PEND(p_sem) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_PEND_FAILED | |||
| #define OS_TRACE_SEM_PEND_FAILED(p_sem) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_PEND_BLOCK | |||
| #define OS_TRACE_SEM_PEND_BLOCK(p_sem) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_CREATE | |||
| #define OS_TRACE_Q_CREATE(p_q, p_name) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_DEL | |||
| #define OS_TRACE_Q_DEL(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST | |||
| #define OS_TRACE_Q_POST(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST_FAILED | |||
| #define OS_TRACE_Q_POST_FAILED(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_PEND | |||
| #define OS_TRACE_Q_PEND(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_PEND_FAILED | |||
| #define OS_TRACE_Q_PEND_FAILED(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_PEND_BLOCK | |||
| #define OS_TRACE_Q_PEND_BLOCK(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_CREATE | |||
| #define OS_TRACE_FLAG_CREATE(p_grp, p_name) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_DEL | |||
| #define OS_TRACE_FLAG_DEL(p_grp) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_POST | |||
| #define OS_TRACE_FLAG_POST(p_grp) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_POST_FAILED | |||
| #define OS_TRACE_FLAG_POST_FAILED(p_grp) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_PEND | |||
| #define OS_TRACE_FLAG_PEND(p_grp) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_PEND_FAILED | |||
| #define OS_TRACE_FLAG_PEND_FAILED(p_grp) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_PEND_BLOCK | |||
| #define OS_TRACE_FLAG_PEND_BLOCK(p_grp) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_CREATE | |||
| #define OS_TRACE_MEM_CREATE(p_mem) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_PUT | |||
| #define OS_TRACE_MEM_PUT(p_mem) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_PUT_FAILED | |||
| #define OS_TRACE_MEM_PUT_FAILED(p_mem) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_GET | |||
| #define OS_TRACE_MEM_GET(p_mem) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_GET_FAILED | |||
| #define OS_TRACE_MEM_GET_FAILED(p_mem) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_CREATE | |||
| #define OS_TRACE_TMR_CREATE(p_tmr, p_name) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_DEL_ENTER | |||
| #define OS_TRACE_MBOX_DEL_ENTER(p_mbox, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_POST_ENTER | |||
| #define OS_TRACE_MBOX_POST_ENTER(p_mbox) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_POST_OPT_ENTER | |||
| #define OS_TRACE_MBOX_POST_OPT_ENTER(p_mbox, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_PEND_ENTER | |||
| #define OS_TRACE_MBOX_PEND_ENTER(p_mbox, timeout) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_DEL_ENTER | |||
| #define OS_TRACE_MUTEX_DEL_ENTER(p_mutex, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_POST_ENTER | |||
| #define OS_TRACE_MUTEX_POST_ENTER(p_mutex) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_PEND_ENTER | |||
| #define OS_TRACE_MUTEX_PEND_ENTER(p_mutex, timeout) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_DEL_ENTER | |||
| #define OS_TRACE_SEM_DEL_ENTER(p_sem, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_POST_ENTER | |||
| #define OS_TRACE_SEM_POST_ENTER(p_sem) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_PEND_ENTER | |||
| #define OS_TRACE_SEM_PEND_ENTER(p_sem, timeout) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_DEL_ENTER | |||
| #define OS_TRACE_Q_DEL_ENTER(p_q, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST_ENTER | |||
| #define OS_TRACE_Q_POST_ENTER(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST_FRONT_ENTER | |||
| #define OS_TRACE_Q_POST_FRONT_ENTER(p_q) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST_OPT_ENTER | |||
| #define OS_TRACE_Q_POST_OPT_ENTER(p_q, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_PEND_ENTER | |||
| #define OS_TRACE_Q_PEND_ENTER(p_q, timeout) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_DEL_ENTER | |||
| #define OS_TRACE_FLAG_DEL_ENTER(p_grp, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_DEL_ENTER | |||
| #define OS_TRACE_TMR_DEL_ENTER(p_tmr) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_START_ENTER | |||
| #define OS_TRACE_TMR_START_ENTER(p_tmr) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_STOP_ENTER | |||
| #define OS_TRACE_TMR_STOP_ENTER(p_tmr) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_EXPIRED | |||
| #define OS_TRACE_TMR_EXPIRED(p_tmr) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_POST_ENTER | |||
| #define OS_TRACE_FLAG_POST_ENTER(p_grp, flags, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_PEND_ENTER | |||
| #define OS_TRACE_FLAG_PEND_ENTER(p_grp, flags, timeout, opt) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_PUT_ENTER | |||
| #define OS_TRACE_MEM_PUT_ENTER(p_mem, p_blk) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_GET_ENTER | |||
| #define OS_TRACE_MEM_GET_ENTER(p_mem) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_DEL_EXIT | |||
| #define OS_TRACE_MBOX_DEL_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_POST_EXIT | |||
| #define OS_TRACE_MBOX_POST_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_POST_OPT_EXIT | |||
| #define OS_TRACE_MBOX_POST_OPT_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MBOX_PEND_EXIT | |||
| #define OS_TRACE_MBOX_PEND_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_DEL_EXIT | |||
| #define OS_TRACE_MUTEX_DEL_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_POST_EXIT | |||
| #define OS_TRACE_MUTEX_POST_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MUTEX_PEND_EXIT | |||
| #define OS_TRACE_MUTEX_PEND_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_DEL_EXIT | |||
| #define OS_TRACE_SEM_DEL_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_POST_EXIT | |||
| #define OS_TRACE_SEM_POST_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_SEM_PEND_EXIT | |||
| #define OS_TRACE_SEM_PEND_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_DEL_EXIT | |||
| #define OS_TRACE_Q_DEL_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST_EXIT | |||
| #define OS_TRACE_Q_POST_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST_FRONT_EXIT | |||
| #define OS_TRACE_Q_POST_FRONT_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_POST_OPT_EXIT | |||
| #define OS_TRACE_Q_POST_OPT_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_Q_PEND_EXIT | |||
| #define OS_TRACE_Q_PEND_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_DEL_EXIT | |||
| #define OS_TRACE_FLAG_DEL_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_POST_EXIT | |||
| #define OS_TRACE_FLAG_POST_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_FLAG_PEND_EXIT | |||
| #define OS_TRACE_FLAG_PEND_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_PUT_EXIT | |||
| #define OS_TRACE_MEM_PUT_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_MEM_GET_EXIT | |||
| #define OS_TRACE_MEM_GET_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_DEL_EXIT | |||
| #define OS_TRACE_TMR_DEL_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_START_EXIT | |||
| #define OS_TRACE_TMR_START_EXIT(RetVal) | |||
| #endif | |||
| #ifndef OS_TRACE_TMR_STOP_EXIT | |||
| #define OS_TRACE_TMR_STOP_EXIT(RetVal) | |||
| #endif | |||
| #endif | |||
| @@ -0,0 +1,39 @@ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * uC/OS-II | |||
| * The Real-Time Kernel | |||
| * | |||
| * Copyright 1992-2020 Silicon Laboratories Inc. www.silabs.com | |||
| * | |||
| * SPDX-License-Identifier: APACHE-2.0 | |||
| * | |||
| * This software is subject to an open source license and is distributed by | |||
| * Silicon Laboratories Inc. pursuant to the terms of the Apache License, | |||
| * Version 2.0 available at www.apache.org/licenses/LICENSE-2.0. | |||
| * | |||
| ********************************************************************************************************* | |||
| */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * Filename : ucos_ii.c | |||
| * Version : V2.93.00 | |||
| ********************************************************************************************************* | |||
| */ | |||
| #define OS_GLOBALS /* Declare GLOBAL variables */ | |||
| #include <ucos_ii.h> | |||
| #define OS_MASTER_FILE /* Prevent the following files from including includes.h */ | |||
| #include <os_core.c> | |||
| #include <os_flag.c> | |||
| #include <os_mbox.c> | |||
| #include <os_mem.c> | |||
| #include <os_mutex.c> | |||
| #include <os_q.c> | |||
| #include <os_sem.c> | |||
| #include <os_task.c> | |||
| #include <os_time.c> | |||
| #include <os_tmr.c> | |||
| @@ -0,0 +1,433 @@ | |||
| /* USER CODE BEGIN Header */ | |||
| /** | |||
| ****************************************************************************** | |||
| * @file : main.c | |||
| * @brief : Main program body | |||
| ****************************************************************************** | |||
| * @attention | |||
| * | |||
| * <h2><center>© Copyright (c) 2026 STMicroelectronics. | |||
| * All rights reserved.</center></h2> | |||
| * | |||
| * This software component is licensed by ST under BSD 3-Clause license, | |||
| * the "License"; You may not use this file except in compliance with the | |||
| * License. You may obtain a copy of the License at: | |||
| * opensource.org/licenses/BSD-3-Clause | |||
| * | |||
| ****************************************************************************** | |||
| */ | |||
| /* USER CODE END Header */ | |||
| /* Includes ------------------------------------------------------------------*/ | |||
| #include "main.h" | |||
| /* Private includes ----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN Includes */ | |||
| #include "modbus.h" | |||
| /* USER CODE END Includes */ | |||
| /* Private typedef -----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PTD */ | |||
| /* USER CODE END PTD */ | |||
| /* Private define ------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PD */ | |||
| /* USER CODE END PD */ | |||
| /* Private macro -------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PM */ | |||
| /* USER CODE END PM */ | |||
| /* Private variables ---------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PV */ | |||
| /* uC/OS-II Task Stacks */ | |||
| static OS_STK App_TaskStartStk[APP_TASK_START_STK_SIZE]; | |||
| static OS_STK App_TaskLedStk[APP_TASK_LED_STK_SIZE]; | |||
| static OS_STK App_TaskModbusStk[256u]; | |||
| static OS_STK App_TaskT35CheckStk[128u]; | |||
| /* USART1 & Modbus */ | |||
| UART_HandleTypeDef huart1; | |||
| static Modbus_Slave_t ModbusSlave; | |||
| static OS_EVENT *ModbusSem; /* 信号量: 通知 Modbus 任务有新帧 */ | |||
| /* Modbus RX 缓冲区 */ | |||
| static uint8_t ModbusRxBuf[MODBUS_RX_BUF_SIZE]; | |||
| static uint16_t ModbusRxLen = 0u; | |||
| static uint32_t ModbusRxTick = 0u; /* 最后收到字节的 tick */ | |||
| /* Modbus TX 缓冲区 */ | |||
| static uint8_t ModbusTxBuf[MODBUS_TX_BUF_SIZE]; | |||
| static uint16_t ModbusTxLen = 0u; | |||
| /* USER CODE END PV */ | |||
| /* Private function prototypes -----------------------------------------------*/ | |||
| void SystemClock_Config(void); | |||
| static void MX_GPIO_Init(void); | |||
| /* USER CODE BEGIN PFP */ | |||
| /* uC/OS-II Task Prototypes */ | |||
| static void App_TaskStart(void *p_arg); | |||
| static void App_TaskLed(void *p_arg); | |||
| static void App_TaskModbus(void *p_arg); | |||
| /* Local Functions */ | |||
| static void MX_USART1_UART_Init(void); | |||
| static void USART1_StartRx(void); | |||
| /* USER CODE END PFP */ | |||
| /* Private user code ---------------------------------------------------------*/ | |||
| /* USER CODE BEGIN 0 */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * LED 闪烁任务 | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void App_TaskLed(void *p_arg) | |||
| { | |||
| (void)p_arg; | |||
| while (1) { | |||
| LED_TOGGLE(); | |||
| OSTimeDlyHMSM(0, 0, 0, 100); /* 100ms 闪烁,Modbus 通信时更明显 */ | |||
| } | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * MODBUS 从站任务 | |||
| * | |||
| * 等待信号量 → 处理 Modbus 帧 → 发送响应 → 重新启动接收 | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void App_TaskModbus(void *p_arg) | |||
| { | |||
| uint8_t err; | |||
| uint16_t tx_len; | |||
| INT8U os_err; | |||
| (void)p_arg; | |||
| Modbus_SlaveInit(&ModbusSlave, MODBUS_SLAVE_ADDR_DEFAULT); | |||
| USART1_StartRx(); /* 启动第一次接收 */ | |||
| while (1) { | |||
| /* 等待帧接收完成信号(超时 10ms,用于检测 T3.5 超时) */ | |||
| OSSemPend(ModbusSem, MODBUS_T35_TIMEOUT, &os_err); | |||
| /* 检查是否收到完整帧 */ | |||
| if (ModbusRxLen > 0u) { | |||
| /* 处理 Modbus 帧 */ | |||
| err = Modbus_ProcessFrame(&ModbusSlave, | |||
| ModbusRxBuf, ModbusRxLen, | |||
| ModbusTxBuf, &tx_len); | |||
| /* 发送响应(成功或异常响应都需要发送) */ | |||
| if (err >= 0 && tx_len > 0u) { | |||
| HAL_UART_Transmit(&huart1, ModbusTxBuf, tx_len, 50u); | |||
| } | |||
| ModbusRxLen = 0u; /* 清空接收缓冲 */ | |||
| } | |||
| /* 重新启动 UART 接收 */ | |||
| USART1_StartRx(); | |||
| } | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * RX 字节接收回调 | |||
| ********************************************************************************************************* | |||
| */ | |||
| void HAL_UART_RxCpltCallback(UART_HandleTypeDef *huart) | |||
| { | |||
| if (huart->Instance == USART1) { | |||
| ModbusRxLen++; | |||
| ModbusRxTick = OSTimeGet(); /* 记录最后接收时间 */ | |||
| if (ModbusRxLen < MODBUS_RX_BUF_SIZE) { | |||
| HAL_UART_Receive_IT(&huart1, &ModbusRxBuf[ModbusRxLen], 1u); | |||
| } else { | |||
| /* 缓冲区溢出,重置 */ | |||
| ModbusRxLen = 0u; | |||
| HAL_UART_Receive_IT(&huart1, &ModbusRxBuf[0], 1u); | |||
| } | |||
| } | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * 启动 USART1 接收 | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void USART1_StartRx(void) | |||
| { | |||
| ModbusRxLen = 0u; | |||
| ModbusRxTick = OSTimeGet(); | |||
| HAL_UART_Receive_IT(&huart1, &ModbusRxBuf[0], 1u); | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * T3.5 超时检测任务 | |||
| * | |||
| * 周期性检查接收超时,超时后发送信号量给 Modbus 任务 | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void App_TaskT35Check(void *p_arg) | |||
| { | |||
| INT8U os_err; | |||
| (void)p_arg; | |||
| while (1) { | |||
| OSTimeDly(MODBUS_T35_TIMEOUT); /* 每隔 T3.5 时间检查一次 */ | |||
| if (ModbusRxLen > 0u) { | |||
| uint32_t elapsed = OSTimeGet() - ModbusRxTick; | |||
| /* 如果超过 T3.5 没有收到新数据,认为帧结束 */ | |||
| if (elapsed >= MODBUS_T35_TIMEOUT) { | |||
| OSSemPost(ModbusSem); /* 通知 Modbus 任务处理 */ | |||
| } | |||
| } | |||
| } | |||
| } | |||
| /* | |||
| ********************************************************************************************************* | |||
| * STARTUP TASK | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void App_TaskStart(void *p_arg) | |||
| { | |||
| (void)p_arg; | |||
| /* 创建信号量 (初始计数值 = 0) */ | |||
| ModbusSem = OSSemCreate(0u); | |||
| /* 创建 LED 闪烁任务 */ | |||
| OSTaskCreateExt(App_TaskLed, | |||
| (void *)0, | |||
| (OS_STK *)&App_TaskLedStk[APP_TASK_LED_STK_SIZE - 1u], | |||
| APP_TASK_LED_PRIO, | |||
| APP_TASK_LED_PRIO, | |||
| (OS_STK *)&App_TaskLedStk[0], | |||
| APP_TASK_LED_STK_SIZE, | |||
| (void *)0, | |||
| OS_TASK_OPT_STK_CHK | OS_TASK_OPT_STK_CLR); | |||
| /* 创建 Modbus 从站处理任务 */ | |||
| OSTaskCreateExt(App_TaskModbus, | |||
| (void *)0, | |||
| (OS_STK *)&App_TaskModbusStk[255u], | |||
| APP_TASK_MODBUS_PRIO, | |||
| APP_TASK_MODBUS_PRIO, | |||
| (OS_STK *)&App_TaskModbusStk[0], | |||
| 256u, | |||
| (void *)0, | |||
| OS_TASK_OPT_STK_CHK | OS_TASK_OPT_STK_CLR); | |||
| /* T3.5 超时检测任务 */ | |||
| OSTaskCreateExt(App_TaskT35Check, | |||
| (void *)0, | |||
| (OS_STK *)&App_TaskT35CheckStk[127u], | |||
| APP_TASK_MODBUS_PRIO + 1u, | |||
| APP_TASK_MODBUS_PRIO + 1u, | |||
| (OS_STK *)&App_TaskT35CheckStk[0], | |||
| 128u, | |||
| (void *)0, | |||
| OS_TASK_OPT_STK_CHK | OS_TASK_OPT_STK_CLR); | |||
| /* 挂起自身 */ | |||
| while (1) { | |||
| OSTaskSuspend(OS_PRIO_SELF); | |||
| } | |||
| } | |||
| /* USER CODE END 0 */ | |||
| /** | |||
| * @brief The application entry point. | |||
| * @retval int | |||
| */ | |||
| int main(void) | |||
| { | |||
| /* USER CODE BEGIN 1 */ | |||
| /* USER CODE END 1 */ | |||
| /* MCU Configuration--------------------------------------------------------*/ | |||
| /* Reset of all peripherals, Initializes the Flash interface and the Systick. */ | |||
| HAL_Init(); | |||
| /* USER CODE BEGIN Init */ | |||
| /* USER CODE END Init */ | |||
| /* Configure the system clock */ | |||
| SystemClock_Config(); | |||
| /* USER CODE BEGIN SysInit */ | |||
| /* USER CODE END SysInit */ | |||
| /* Initialize all configured peripherals */ | |||
| MX_GPIO_Init(); | |||
| MX_USART1_UART_Init(); /* 初始化 Modbus 通信串口 (USART1, 9600-8-N-1) */ | |||
| /* USER CODE BEGIN 2 */ | |||
| /* uC/OS-II 初始化 */ | |||
| OSInit(); | |||
| /* 创建启动任务 */ | |||
| OSTaskCreateExt(App_TaskStart, | |||
| (void *)0, | |||
| (OS_STK *)&App_TaskStartStk[APP_TASK_START_STK_SIZE - 1u], | |||
| APP_TASK_START_PRIO, | |||
| APP_TASK_START_PRIO, | |||
| (OS_STK *)&App_TaskStartStk[0], | |||
| APP_TASK_START_STK_SIZE, | |||
| (void *)0, | |||
| OS_TASK_OPT_STK_CHK | OS_TASK_OPT_STK_CLR); | |||
| /* 启动 uC/OS-II 多任务调度 */ | |||
| OSStart(); | |||
| /* USER CODE END 2 */ | |||
| /* Infinite loop */ | |||
| /* USER CODE BEGIN WHILE */ | |||
| while (1) | |||
| { | |||
| /* USER CODE END WHILE */ | |||
| /* USER CODE BEGIN 3 */ | |||
| } | |||
| /* USER CODE END 3 */ | |||
| } | |||
| /** | |||
| * @brief System Clock Configuration | |||
| * @retval None | |||
| */ | |||
| void SystemClock_Config(void) | |||
| { | |||
| RCC_OscInitTypeDef RCC_OscInitStruct = {0}; | |||
| RCC_ClkInitTypeDef RCC_ClkInitStruct = {0}; | |||
| /** Configure the main internal regulator output voltage | |||
| */ | |||
| __HAL_RCC_PWR_CLK_ENABLE(); | |||
| __HAL_PWR_VOLTAGESCALING_CONFIG(PWR_REGULATOR_VOLTAGE_SCALE1); | |||
| /** Initializes the RCC Oscillators according to the specified parameters | |||
| * in the RCC_OscInitTypeDef structure. | |||
| */ | |||
| RCC_OscInitStruct.OscillatorType = RCC_OSCILLATORTYPE_HSI; | |||
| RCC_OscInitStruct.HSIState = RCC_HSI_ON; | |||
| RCC_OscInitStruct.HSICalibrationValue = RCC_HSICALIBRATION_DEFAULT; | |||
| RCC_OscInitStruct.PLL.PLLState = RCC_PLL_NONE; | |||
| if (HAL_RCC_OscConfig(&RCC_OscInitStruct) != HAL_OK) | |||
| { | |||
| Error_Handler(); | |||
| } | |||
| /** Initializes the CPU, AHB and APB buses clocks | |||
| */ | |||
| RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK|RCC_CLOCKTYPE_SYSCLK | |||
| |RCC_CLOCKTYPE_PCLK1|RCC_CLOCKTYPE_PCLK2; | |||
| RCC_ClkInitStruct.SYSCLKSource = RCC_SYSCLKSOURCE_HSI; | |||
| RCC_ClkInitStruct.AHBCLKDivider = RCC_SYSCLK_DIV1; | |||
| RCC_ClkInitStruct.APB1CLKDivider = RCC_HCLK_DIV2; | |||
| RCC_ClkInitStruct.APB2CLKDivider = RCC_HCLK_DIV1; | |||
| if (HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_0) != HAL_OK) | |||
| { | |||
| Error_Handler(); | |||
| } | |||
| } | |||
| /** | |||
| * @brief GPIO Initialization Function | |||
| * @param None | |||
| * @retval None | |||
| */ | |||
| static void MX_GPIO_Init(void) | |||
| { | |||
| GPIO_InitTypeDef GPIO_InitStruct = {0}; | |||
| /* GPIO Ports Clock Enable */ | |||
| __HAL_RCC_GPIOH_CLK_ENABLE(); | |||
| __HAL_RCC_GPIOF_CLK_ENABLE(); | |||
| /*Configure GPIO pin : PF6 */ | |||
| GPIO_InitStruct.Pin = GPIO_PIN_6; | |||
| GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP; | |||
| GPIO_InitStruct.Pull = GPIO_PULLUP; | |||
| GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW; | |||
| HAL_GPIO_Init(GPIOF, &GPIO_InitStruct); | |||
| } | |||
| /* USER CODE BEGIN 4 */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * USART1 初始化 | |||
| ********************************************************************************************************* | |||
| */ | |||
| static void MX_USART1_UART_Init(void) | |||
| { | |||
| huart1.Instance = USART1; | |||
| huart1.Init.BaudRate = 9600u; | |||
| huart1.Init.WordLength = UART_WORDLENGTH_8B; | |||
| huart1.Init.StopBits = UART_STOPBITS_1; | |||
| huart1.Init.Parity = UART_PARITY_NONE; | |||
| huart1.Init.Mode = UART_MODE_TX_RX; | |||
| huart1.Init.HwFlowCtl = UART_HWCONTROL_NONE; | |||
| huart1.Init.OverSampling = UART_OVERSAMPLING_16; | |||
| HAL_UART_Init(&huart1); | |||
| } | |||
| /* USER CODE END 4 */ | |||
| /** | |||
| * @brief This function is executed in case of error occurrence. | |||
| * @retval None | |||
| */ | |||
| void Error_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN Error_Handler_Debug */ | |||
| /* User can add his own implementation to report the HAL error return state */ | |||
| __disable_irq(); | |||
| while (1) | |||
| { | |||
| } | |||
| /* USER CODE END Error_Handler_Debug */ | |||
| } | |||
| #ifdef USE_FULL_ASSERT | |||
| /** | |||
| * @brief Reports the name of the source file and the source line number | |||
| * where the assert_param error has occurred. | |||
| * @param file: pointer to the source file name | |||
| * @param line: assert_param error line source number | |||
| * @retval None | |||
| */ | |||
| void assert_failed(uint8_t *file, uint32_t line) | |||
| { | |||
| /* USER CODE BEGIN 6 */ | |||
| /* User can add his own implementation to report the file name and line number, | |||
| ex: printf("Wrong parameters value: file %s on line %d\r\n", file, line) */ | |||
| /* USER CODE END 6 */ | |||
| } | |||
| #endif /* USE_FULL_ASSERT */ | |||
| /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ | |||
| @@ -0,0 +1,119 @@ | |||
| /* USER CODE BEGIN Header */ | |||
| /** | |||
| ****************************************************************************** | |||
| * @file stm32f4xx_hal_msp.c | |||
| * @brief This file provides code for the MSP Initialization | |||
| * and de-Initialization codes. | |||
| ****************************************************************************** | |||
| * @attention | |||
| * | |||
| * <h2><center>© Copyright (c) 2026 STMicroelectronics. | |||
| * All rights reserved.</center></h2> | |||
| * | |||
| * This software component is licensed by ST under BSD 3-Clause license, | |||
| * the "License"; You may not use this file except in compliance with the | |||
| * License. You may obtain a copy of the License at: | |||
| * opensource.org/licenses/BSD-3-Clause | |||
| * | |||
| ****************************************************************************** | |||
| */ | |||
| /* USER CODE END Header */ | |||
| /* Includes ------------------------------------------------------------------*/ | |||
| #include "main.h" | |||
| /* USER CODE BEGIN Includes */ | |||
| /* USER CODE END Includes */ | |||
| /* Private typedef -----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN TD */ | |||
| /* USER CODE END TD */ | |||
| /* Private define ------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN Define */ | |||
| /* USER CODE END Define */ | |||
| /* Private macro -------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN Macro */ | |||
| /* USER CODE END Macro */ | |||
| /* Private variables ---------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PV */ | |||
| /* USER CODE END PV */ | |||
| /* Private function prototypes -----------------------------------------------*/ | |||
| /* USER CODE BEGIN PFP */ | |||
| /* USER CODE END PFP */ | |||
| /* External functions --------------------------------------------------------*/ | |||
| /* USER CODE BEGIN ExternalFunctions */ | |||
| /* USER CODE END ExternalFunctions */ | |||
| /* USER CODE BEGIN 0 */ | |||
| /* USER CODE END 0 */ | |||
| /** | |||
| * Initializes the Global MSP. | |||
| */ | |||
| void HAL_MspInit(void) | |||
| { | |||
| /* USER CODE BEGIN MspInit 0 */ | |||
| /* USER CODE END MspInit 0 */ | |||
| __HAL_RCC_SYSCFG_CLK_ENABLE(); | |||
| __HAL_RCC_PWR_CLK_ENABLE(); | |||
| /* System interrupt init*/ | |||
| /* USER CODE BEGIN MspInit 1 */ | |||
| /* USER CODE END MspInit 1 */ | |||
| } | |||
| /* USER CODE BEGIN 1 */ | |||
| /* | |||
| ********************************************************************************************************* | |||
| * USART1 MSP 初始化 | |||
| ********************************************************************************************************* | |||
| */ | |||
| void HAL_UART_MspInit(UART_HandleTypeDef *huart) | |||
| { | |||
| GPIO_InitTypeDef GPIO_InitStruct = {0}; | |||
| if (huart->Instance == USART1) { | |||
| /* 使能 USART1 和 GPIOA 时钟 */ | |||
| __HAL_RCC_USART1_CLK_ENABLE(); | |||
| __HAL_RCC_GPIOA_CLK_ENABLE(); | |||
| /* PA9: USART1_TX (AF7, Push-Pull) */ | |||
| GPIO_InitStruct.Pin = GPIO_PIN_9; | |||
| GPIO_InitStruct.Mode = GPIO_MODE_AF_PP; | |||
| GPIO_InitStruct.Pull = GPIO_PULLUP; | |||
| GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW; | |||
| GPIO_InitStruct.Alternate = GPIO_AF7_USART1; | |||
| HAL_GPIO_Init(GPIOA, &GPIO_InitStruct); | |||
| /* PA10: USART1_RX (AF7, Input) */ | |||
| GPIO_InitStruct.Pin = GPIO_PIN_10; | |||
| GPIO_InitStruct.Mode = GPIO_MODE_AF_OD; | |||
| GPIO_InitStruct.Pull = GPIO_PULLUP; | |||
| GPIO_InitStruct.Alternate = GPIO_AF7_USART1; | |||
| HAL_GPIO_Init(GPIOA, &GPIO_InitStruct); | |||
| /* 使能 USART1 中断 */ | |||
| HAL_NVIC_SetPriority(USART1_IRQn, 6u, 0u); | |||
| HAL_NVIC_EnableIRQ(USART1_IRQn); | |||
| } | |||
| } | |||
| /* USER CODE END 1 */ | |||
| /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ | |||
| @@ -0,0 +1,216 @@ | |||
| /* USER CODE BEGIN Header */ | |||
| /** | |||
| ****************************************************************************** | |||
| * @file stm32f4xx_it.c | |||
| * @brief Interrupt Service Routines. | |||
| ****************************************************************************** | |||
| * @attention | |||
| * | |||
| * <h2><center>© Copyright (c) 2026 STMicroelectronics. | |||
| * All rights reserved.</center></h2> | |||
| * | |||
| * This software component is licensed by ST under BSD 3-Clause license, | |||
| * the "License"; You may not use this file except in compliance with the | |||
| * License. You may obtain a copy of the License at: | |||
| * opensource.org/licenses/BSD-3-Clause | |||
| * | |||
| ****************************************************************************** | |||
| */ | |||
| /* USER CODE END Header */ | |||
| /* Includes ------------------------------------------------------------------*/ | |||
| #include "main.h" | |||
| #include "stm32f4xx_it.h" | |||
| /* Private includes ----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN Includes */ | |||
| #include <ucos_ii.h> | |||
| /* USER CODE END Includes */ | |||
| /* Private typedef -----------------------------------------------------------*/ | |||
| /* USER CODE BEGIN TD */ | |||
| /* USER CODE END TD */ | |||
| /* Private define ------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PD */ | |||
| /* USER CODE END PD */ | |||
| /* Private macro -------------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PM */ | |||
| /* USER CODE END PM */ | |||
| /* Private variables ---------------------------------------------------------*/ | |||
| /* USER CODE BEGIN PV */ | |||
| /* USER CODE END PV */ | |||
| /* Private function prototypes -----------------------------------------------*/ | |||
| /* USER CODE BEGIN PFP */ | |||
| /* USER CODE END PFP */ | |||
| /* Private user code ---------------------------------------------------------*/ | |||
| /* USER CODE BEGIN 0 */ | |||
| /* USER CODE END 0 */ | |||
| /* External variables --------------------------------------------------------*/ | |||
| /* USER CODE BEGIN EV */ | |||
| /* USER CODE END EV */ | |||
| /******************************************************************************/ | |||
| /* Cortex-M4 Processor Interruption and Exception Handlers */ | |||
| /******************************************************************************/ | |||
| /** | |||
| * @brief This function handles Non maskable interrupt. | |||
| */ | |||
| void NMI_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN NonMaskableInt_IRQn 0 */ | |||
| /* USER CODE END NonMaskableInt_IRQn 0 */ | |||
| /* USER CODE BEGIN NonMaskableInt_IRQn 1 */ | |||
| while (1) | |||
| { | |||
| } | |||
| /* USER CODE END NonMaskableInt_IRQn 1 */ | |||
| } | |||
| /** | |||
| * @brief This function handles Hard fault interrupt. | |||
| */ | |||
| void HardFault_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN HardFault_IRQn 0 */ | |||
| /* USER CODE END HardFault_IRQn 0 */ | |||
| while (1) | |||
| { | |||
| /* USER CODE BEGIN W1_HardFault_IRQn 0 */ | |||
| /* USER CODE END W1_HardFault_IRQn 0 */ | |||
| } | |||
| } | |||
| /** | |||
| * @brief This function handles Memory management fault. | |||
| */ | |||
| void MemManage_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN MemoryManagement_IRQn 0 */ | |||
| /* USER CODE END MemoryManagement_IRQn 0 */ | |||
| while (1) | |||
| { | |||
| /* USER CODE BEGIN W1_MemoryManagement_IRQn 0 */ | |||
| /* USER CODE END W1_MemoryManagement_IRQn 0 */ | |||
| } | |||
| } | |||
| /** | |||
| * @brief This function handles Pre-fetch fault, memory access fault. | |||
| */ | |||
| void BusFault_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN BusFault_IRQn 0 */ | |||
| /* USER CODE END BusFault_IRQn 0 */ | |||
| while (1) | |||
| { | |||
| /* USER CODE BEGIN W1_BusFault_IRQn 0 */ | |||
| /* USER CODE END W1_BusFault_IRQn 0 */ | |||
| } | |||
| } | |||
| /** | |||
| * @brief This function handles Undefined instruction or illegal state. | |||
| */ | |||
| void UsageFault_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN UsageFault_IRQn 0 */ | |||
| /* USER CODE END UsageFault_IRQn 0 */ | |||
| while (1) | |||
| { | |||
| /* USER CODE BEGIN W1_UsageFault_IRQn 0 */ | |||
| /* USER CODE END W1_UsageFault_IRQn 0 */ | |||
| } | |||
| } | |||
| /** | |||
| * @brief This function handles System service call via SWI instruction. | |||
| */ | |||
| void SVC_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN SVCall_IRQn 0 */ | |||
| /* USER CODE END SVCall_IRQn 0 */ | |||
| /* USER CODE BEGIN SVCall_IRQn 1 */ | |||
| /* USER CODE END SVCall_IRQn 1 */ | |||
| } | |||
| /** | |||
| * @brief This function handles Debug monitor. | |||
| */ | |||
| void DebugMon_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN DebugMonitor_IRQn 0 */ | |||
| /* USER CODE END DebugMonitor_IRQn 0 */ | |||
| /* USER CODE BEGIN DebugMonitor_IRQn 1 */ | |||
| /* USER CODE END DebugMonitor_IRQn 1 */ | |||
| } | |||
| /** | |||
| * @brief This function handles Pendable request for system service. | |||
| */ | |||
| void PendSV_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN PendSV_IRQn 0 */ | |||
| /* USER CODE END PendSV_IRQn 0 */ | |||
| /* USER CODE BEGIN PendSV_IRQn 1 */ | |||
| /* USER CODE END PendSV_IRQn 1 */ | |||
| } | |||
| /** | |||
| * @brief This function handles System tick timer. | |||
| */ | |||
| void SysTick_Handler(void) | |||
| { | |||
| /* USER CODE BEGIN SysTick_IRQn 0 */ | |||
| /* USER CODE END SysTick_IRQn 0 */ | |||
| if (OSRunning == OS_TRUE) { | |||
| OSIntEnter(); | |||
| OSTimeTick(); | |||
| OSIntExit(); | |||
| } | |||
| HAL_IncTick(); | |||
| /* USER CODE BEGIN SysTick_IRQn 1 */ | |||
| /* USER CODE END SysTick_IRQn 1 */ | |||
| } | |||
| /******************************************************************************/ | |||
| /* STM32F4xx Peripheral Interrupt Handlers */ | |||
| /* Add here the Interrupt Handlers for the used peripherals. */ | |||
| /* For the available peripheral interrupt handler names, */ | |||
| /* please refer to the startup file (startup_stm32f4xx.s). */ | |||
| /******************************************************************************/ | |||
| /* USER CODE BEGIN 1 */ | |||
| void USART1_IRQHandler(void) | |||
| { | |||
| HAL_UART_IRQHandler(&huart1); | |||
| } | |||
| /* USER CODE END 1 */ | |||
| /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ | |||
| @@ -0,0 +1,749 @@ | |||
| /** | |||
| ****************************************************************************** | |||
| * @file system_stm32f4xx.c | |||
| * @author MCD Application Team | |||
| * @brief CMSIS Cortex-M4 Device Peripheral Access Layer System Source File. | |||
| * | |||
| * This file provides two functions and one global variable to be called from | |||
| * user application: | |||
| * - SystemInit(): This function is called at startup just after reset and | |||
| * before branch to main program. This call is made inside | |||
| * the "startup_stm32f4xx.s" file. | |||
| * | |||
| * - SystemCoreClock variable: Contains the core clock (HCLK), it can be used | |||
| * by the user application to setup the SysTick | |||
| * timer or configure other parameters. | |||
| * | |||
| * - SystemCoreClockUpdate(): Updates the variable SystemCoreClock and must | |||
| * be called whenever the core clock is changed | |||
| * during program execution. | |||
| * | |||
| * | |||
| ****************************************************************************** | |||
| * @attention | |||
| * | |||
| * <h2><center>© Copyright (c) 2017 STMicroelectronics. | |||
| * All rights reserved.</center></h2> | |||
| * | |||
| * This software component is licensed by ST under BSD 3-Clause license, | |||
| * the "License"; You may not use this file except in compliance with the | |||
| * License. You may obtain a copy of the License at: | |||
| * opensource.org/licenses/BSD-3-Clause | |||
| * | |||
| ****************************************************************************** | |||
| */ | |||
| /** @addtogroup CMSIS | |||
| * @{ | |||
| */ | |||
| /** @addtogroup stm32f4xx_system | |||
| * @{ | |||
| */ | |||
| /** @addtogroup STM32F4xx_System_Private_Includes | |||
| * @{ | |||
| */ | |||
| #include "stm32f4xx.h" | |||
| #if !defined (HSE_VALUE) | |||
| #define HSE_VALUE ((uint32_t)25000000) /*!< Default value of the External oscillator in Hz */ | |||
| #endif /* HSE_VALUE */ | |||
| #if !defined (HSI_VALUE) | |||
| #define HSI_VALUE ((uint32_t)16000000) /*!< Value of the Internal oscillator in Hz*/ | |||
| #endif /* HSI_VALUE */ | |||
| /** | |||
| * @} | |||
| */ | |||
| /** @addtogroup STM32F4xx_System_Private_TypesDefinitions | |||
| * @{ | |||
| */ | |||
| /** | |||
| * @} | |||
| */ | |||
| /** @addtogroup STM32F4xx_System_Private_Defines | |||
| * @{ | |||
| */ | |||
| /************************* Miscellaneous Configuration ************************/ | |||
| /*!< Uncomment the following line if you need to use external SRAM or SDRAM as data memory */ | |||
| #if defined(STM32F405xx) || defined(STM32F415xx) || defined(STM32F407xx) || defined(STM32F417xx)\ | |||
| || defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx)\ | |||
| || defined(STM32F469xx) || defined(STM32F479xx) || defined(STM32F412Zx) || defined(STM32F412Vx) | |||
| /* #define DATA_IN_ExtSRAM */ | |||
| #endif /* STM32F40xxx || STM32F41xxx || STM32F42xxx || STM32F43xxx || STM32F469xx || STM32F479xx ||\ | |||
| STM32F412Zx || STM32F412Vx */ | |||
| #if defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx)\ | |||
| || defined(STM32F446xx) || defined(STM32F469xx) || defined(STM32F479xx) | |||
| /* #define DATA_IN_ExtSDRAM */ | |||
| #endif /* STM32F427xx || STM32F437xx || STM32F429xx || STM32F439xx || STM32F446xx || STM32F469xx ||\ | |||
| STM32F479xx */ | |||
| /* Note: Following vector table addresses must be defined in line with linker | |||
| configuration. */ | |||
| /*!< Uncomment the following line if you need to relocate the vector table | |||
| anywhere in Flash or Sram, else the vector table is kept at the automatic | |||
| remap of boot address selected */ | |||
| /* #define USER_VECT_TAB_ADDRESS */ | |||
| #if defined(USER_VECT_TAB_ADDRESS) | |||
| /*!< Uncomment the following line if you need to relocate your vector Table | |||
| in Sram else user remap will be done in Flash. */ | |||
| /* #define VECT_TAB_SRAM */ | |||
| #if defined(VECT_TAB_SRAM) | |||
| #define VECT_TAB_BASE_ADDRESS SRAM_BASE /*!< Vector Table base address field. | |||
| This value must be a multiple of 0x200. */ | |||
| #define VECT_TAB_OFFSET 0x00000000U /*!< Vector Table base offset field. | |||
| This value must be a multiple of 0x200. */ | |||
| #else | |||
| #define VECT_TAB_BASE_ADDRESS FLASH_BASE /*!< Vector Table base address field. | |||
| This value must be a multiple of 0x200. */ | |||
| #define VECT_TAB_OFFSET 0x00000000U /*!< Vector Table base offset field. | |||
| This value must be a multiple of 0x200. */ | |||
| #endif /* VECT_TAB_SRAM */ | |||
| #endif /* USER_VECT_TAB_ADDRESS */ | |||
| /******************************************************************************/ | |||
| /** | |||
| * @} | |||
| */ | |||
| /** @addtogroup STM32F4xx_System_Private_Macros | |||
| * @{ | |||
| */ | |||
| /** | |||
| * @} | |||
| */ | |||
| /** @addtogroup STM32F4xx_System_Private_Variables | |||
| * @{ | |||
| */ | |||
| /* This variable is updated in three ways: | |||
| 1) by calling CMSIS function SystemCoreClockUpdate() | |||
| 2) by calling HAL API function HAL_RCC_GetHCLKFreq() | |||
| 3) each time HAL_RCC_ClockConfig() is called to configure the system clock frequency | |||
| Note: If you use this function to configure the system clock; then there | |||
| is no need to call the 2 first functions listed above, since SystemCoreClock | |||
| variable is updated automatically. | |||
| */ | |||
| uint32_t SystemCoreClock = 16000000; | |||
| const uint8_t AHBPrescTable[16] = {0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 6, 7, 8, 9}; | |||
| const uint8_t APBPrescTable[8] = {0, 0, 0, 0, 1, 2, 3, 4}; | |||
| /** | |||
| * @} | |||
| */ | |||
| /** @addtogroup STM32F4xx_System_Private_FunctionPrototypes | |||
| * @{ | |||
| */ | |||
| #if defined (DATA_IN_ExtSRAM) || defined (DATA_IN_ExtSDRAM) | |||
| static void SystemInit_ExtMemCtl(void); | |||
| #endif /* DATA_IN_ExtSRAM || DATA_IN_ExtSDRAM */ | |||
| /** | |||
| * @} | |||
| */ | |||
| /** @addtogroup STM32F4xx_System_Private_Functions | |||
| * @{ | |||
| */ | |||
| /** | |||
| * @brief Setup the microcontroller system | |||
| * Initialize the FPU setting, vector table location and External memory | |||
| * configuration. | |||
| * @param None | |||
| * @retval None | |||
| */ | |||
| void SystemInit(void) | |||
| { | |||
| /* FPU settings ------------------------------------------------------------*/ | |||
| #if (__FPU_PRESENT == 1) && (__FPU_USED == 1) | |||
| SCB->CPACR |= ((3UL << 10*2)|(3UL << 11*2)); /* set CP10 and CP11 Full Access */ | |||
| #endif | |||
| #if defined (DATA_IN_ExtSRAM) || defined (DATA_IN_ExtSDRAM) | |||
| SystemInit_ExtMemCtl(); | |||
| #endif /* DATA_IN_ExtSRAM || DATA_IN_ExtSDRAM */ | |||
| /* Configure the Vector Table location -------------------------------------*/ | |||
| #if defined(USER_VECT_TAB_ADDRESS) | |||
| SCB->VTOR = VECT_TAB_BASE_ADDRESS | VECT_TAB_OFFSET; /* Vector Table Relocation in Internal SRAM */ | |||
| #endif /* USER_VECT_TAB_ADDRESS */ | |||
| } | |||
| /** | |||
| * @brief Update SystemCoreClock variable according to Clock Register Values. | |||
| * The SystemCoreClock variable contains the core clock (HCLK), it can | |||
| * be used by the user application to setup the SysTick timer or configure | |||
| * other parameters. | |||
| * | |||
| * @note Each time the core clock (HCLK) changes, this function must be called | |||
| * to update SystemCoreClock variable value. Otherwise, any configuration | |||
| * based on this variable will be incorrect. | |||
| * | |||
| * @note - The system frequency computed by this function is not the real | |||
| * frequency in the chip. It is calculated based on the predefined | |||
| * constant and the selected clock source: | |||
| * | |||
| * - If SYSCLK source is HSI, SystemCoreClock will contain the HSI_VALUE(*) | |||
| * | |||
| * - If SYSCLK source is HSE, SystemCoreClock will contain the HSE_VALUE(**) | |||
| * | |||
| * - If SYSCLK source is PLL, SystemCoreClock will contain the HSE_VALUE(**) | |||
| * or HSI_VALUE(*) multiplied/divided by the PLL factors. | |||
| * | |||
| * (*) HSI_VALUE is a constant defined in stm32f4xx_hal_conf.h file (default value | |||
| * 16 MHz) but the real value may vary depending on the variations | |||
| * in voltage and temperature. | |||
| * | |||
| * (**) HSE_VALUE is a constant defined in stm32f4xx_hal_conf.h file (its value | |||
| * depends on the application requirements), user has to ensure that HSE_VALUE | |||
| * is same as the real frequency of the crystal used. Otherwise, this function | |||
| * may have wrong result. | |||
| * | |||
| * - The result of this function could be not correct when using fractional | |||
| * value for HSE crystal. | |||
| * | |||
| * @param None | |||
| * @retval None | |||
| */ | |||
| void SystemCoreClockUpdate(void) | |||
| { | |||
| uint32_t tmp = 0, pllvco = 0, pllp = 2, pllsource = 0, pllm = 2; | |||
| /* Get SYSCLK source -------------------------------------------------------*/ | |||
| tmp = RCC->CFGR & RCC_CFGR_SWS; | |||
| switch (tmp) | |||
| { | |||
| case 0x00: /* HSI used as system clock source */ | |||
| SystemCoreClock = HSI_VALUE; | |||
| break; | |||
| case 0x04: /* HSE used as system clock source */ | |||
| SystemCoreClock = HSE_VALUE; | |||
| break; | |||
| case 0x08: /* PLL used as system clock source */ | |||
| /* PLL_VCO = (HSE_VALUE or HSI_VALUE / PLL_M) * PLL_N | |||
| SYSCLK = PLL_VCO / PLL_P | |||
| */ | |||
| pllsource = (RCC->PLLCFGR & RCC_PLLCFGR_PLLSRC) >> 22; | |||
| pllm = RCC->PLLCFGR & RCC_PLLCFGR_PLLM; | |||
| if (pllsource != 0) | |||
| { | |||
| /* HSE used as PLL clock source */ | |||
| pllvco = (HSE_VALUE / pllm) * ((RCC->PLLCFGR & RCC_PLLCFGR_PLLN) >> 6); | |||
| } | |||
| else | |||
| { | |||
| /* HSI used as PLL clock source */ | |||
| pllvco = (HSI_VALUE / pllm) * ((RCC->PLLCFGR & RCC_PLLCFGR_PLLN) >> 6); | |||
| } | |||
| pllp = (((RCC->PLLCFGR & RCC_PLLCFGR_PLLP) >>16) + 1 ) *2; | |||
| SystemCoreClock = pllvco/pllp; | |||
| break; | |||
| default: | |||
| SystemCoreClock = HSI_VALUE; | |||
| break; | |||
| } | |||
| /* Compute HCLK frequency --------------------------------------------------*/ | |||
| /* Get HCLK prescaler */ | |||
| tmp = AHBPrescTable[((RCC->CFGR & RCC_CFGR_HPRE) >> 4)]; | |||
| /* HCLK frequency */ | |||
| SystemCoreClock >>= tmp; | |||
| } | |||
| #if defined (DATA_IN_ExtSRAM) && defined (DATA_IN_ExtSDRAM) | |||
| #if defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx)\ | |||
| || defined(STM32F469xx) || defined(STM32F479xx) | |||
| /** | |||
| * @brief Setup the external memory controller. | |||
| * Called in startup_stm32f4xx.s before jump to main. | |||
| * This function configures the external memories (SRAM/SDRAM) | |||
| * This SRAM/SDRAM will be used as program data memory (including heap and stack). | |||
| * @param None | |||
| * @retval None | |||
| */ | |||
| void SystemInit_ExtMemCtl(void) | |||
| { | |||
| __IO uint32_t tmp = 0x00; | |||
| register uint32_t tmpreg = 0, timeout = 0xFFFF; | |||
| register __IO uint32_t index; | |||
| /* Enable GPIOC, GPIOD, GPIOE, GPIOF, GPIOG, GPIOH and GPIOI interface clock */ | |||
| RCC->AHB1ENR |= 0x000001F8; | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB1ENR, RCC_AHB1ENR_GPIOCEN); | |||
| /* Connect PDx pins to FMC Alternate function */ | |||
| GPIOD->AFR[0] = 0x00CCC0CC; | |||
| GPIOD->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PDx pins in Alternate function mode */ | |||
| GPIOD->MODER = 0xAAAA0A8A; | |||
| /* Configure PDx pins speed to 100 MHz */ | |||
| GPIOD->OSPEEDR = 0xFFFF0FCF; | |||
| /* Configure PDx pins Output type to push-pull */ | |||
| GPIOD->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PDx pins */ | |||
| GPIOD->PUPDR = 0x00000000; | |||
| /* Connect PEx pins to FMC Alternate function */ | |||
| GPIOE->AFR[0] = 0xC00CC0CC; | |||
| GPIOE->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PEx pins in Alternate function mode */ | |||
| GPIOE->MODER = 0xAAAA828A; | |||
| /* Configure PEx pins speed to 100 MHz */ | |||
| GPIOE->OSPEEDR = 0xFFFFC3CF; | |||
| /* Configure PEx pins Output type to push-pull */ | |||
| GPIOE->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PEx pins */ | |||
| GPIOE->PUPDR = 0x00000000; | |||
| /* Connect PFx pins to FMC Alternate function */ | |||
| GPIOF->AFR[0] = 0xCCCCCCCC; | |||
| GPIOF->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PFx pins in Alternate function mode */ | |||
| GPIOF->MODER = 0xAA800AAA; | |||
| /* Configure PFx pins speed to 50 MHz */ | |||
| GPIOF->OSPEEDR = 0xAA800AAA; | |||
| /* Configure PFx pins Output type to push-pull */ | |||
| GPIOF->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PFx pins */ | |||
| GPIOF->PUPDR = 0x00000000; | |||
| /* Connect PGx pins to FMC Alternate function */ | |||
| GPIOG->AFR[0] = 0xCCCCCCCC; | |||
| GPIOG->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PGx pins in Alternate function mode */ | |||
| GPIOG->MODER = 0xAAAAAAAA; | |||
| /* Configure PGx pins speed to 50 MHz */ | |||
| GPIOG->OSPEEDR = 0xAAAAAAAA; | |||
| /* Configure PGx pins Output type to push-pull */ | |||
| GPIOG->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PGx pins */ | |||
| GPIOG->PUPDR = 0x00000000; | |||
| /* Connect PHx pins to FMC Alternate function */ | |||
| GPIOH->AFR[0] = 0x00C0CC00; | |||
| GPIOH->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PHx pins in Alternate function mode */ | |||
| GPIOH->MODER = 0xAAAA08A0; | |||
| /* Configure PHx pins speed to 50 MHz */ | |||
| GPIOH->OSPEEDR = 0xAAAA08A0; | |||
| /* Configure PHx pins Output type to push-pull */ | |||
| GPIOH->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PHx pins */ | |||
| GPIOH->PUPDR = 0x00000000; | |||
| /* Connect PIx pins to FMC Alternate function */ | |||
| GPIOI->AFR[0] = 0xCCCCCCCC; | |||
| GPIOI->AFR[1] = 0x00000CC0; | |||
| /* Configure PIx pins in Alternate function mode */ | |||
| GPIOI->MODER = 0x0028AAAA; | |||
| /* Configure PIx pins speed to 50 MHz */ | |||
| GPIOI->OSPEEDR = 0x0028AAAA; | |||
| /* Configure PIx pins Output type to push-pull */ | |||
| GPIOI->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PIx pins */ | |||
| GPIOI->PUPDR = 0x00000000; | |||
| /*-- FMC Configuration -------------------------------------------------------*/ | |||
| /* Enable the FMC interface clock */ | |||
| RCC->AHB3ENR |= 0x00000001; | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB3ENR, RCC_AHB3ENR_FMCEN); | |||
| FMC_Bank5_6->SDCR[0] = 0x000019E4; | |||
| FMC_Bank5_6->SDTR[0] = 0x01115351; | |||
| /* SDRAM initialization sequence */ | |||
| /* Clock enable command */ | |||
| FMC_Bank5_6->SDCMR = 0x00000011; | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* Delay */ | |||
| for (index = 0; index<1000; index++); | |||
| /* PALL command */ | |||
| FMC_Bank5_6->SDCMR = 0x00000012; | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| timeout = 0xFFFF; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* Auto refresh command */ | |||
| FMC_Bank5_6->SDCMR = 0x00000073; | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| timeout = 0xFFFF; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* MRD register program */ | |||
| FMC_Bank5_6->SDCMR = 0x00046014; | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| timeout = 0xFFFF; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* Set refresh count */ | |||
| tmpreg = FMC_Bank5_6->SDRTR; | |||
| FMC_Bank5_6->SDRTR = (tmpreg | (0x0000027C<<1)); | |||
| /* Disable write protection */ | |||
| tmpreg = FMC_Bank5_6->SDCR[0]; | |||
| FMC_Bank5_6->SDCR[0] = (tmpreg & 0xFFFFFDFF); | |||
| #if defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx) | |||
| /* Configure and enable Bank1_SRAM2 */ | |||
| FMC_Bank1->BTCR[2] = 0x00001011; | |||
| FMC_Bank1->BTCR[3] = 0x00000201; | |||
| FMC_Bank1E->BWTR[2] = 0x0fffffff; | |||
| #endif /* STM32F427xx || STM32F437xx || STM32F429xx || STM32F439xx */ | |||
| #if defined(STM32F469xx) || defined(STM32F479xx) | |||
| /* Configure and enable Bank1_SRAM2 */ | |||
| FMC_Bank1->BTCR[2] = 0x00001091; | |||
| FMC_Bank1->BTCR[3] = 0x00110212; | |||
| FMC_Bank1E->BWTR[2] = 0x0fffffff; | |||
| #endif /* STM32F469xx || STM32F479xx */ | |||
| (void)(tmp); | |||
| } | |||
| #endif /* STM32F427xx || STM32F437xx || STM32F429xx || STM32F439xx || STM32F469xx || STM32F479xx */ | |||
| #elif defined (DATA_IN_ExtSRAM) || defined (DATA_IN_ExtSDRAM) | |||
| /** | |||
| * @brief Setup the external memory controller. | |||
| * Called in startup_stm32f4xx.s before jump to main. | |||
| * This function configures the external memories (SRAM/SDRAM) | |||
| * This SRAM/SDRAM will be used as program data memory (including heap and stack). | |||
| * @param None | |||
| * @retval None | |||
| */ | |||
| void SystemInit_ExtMemCtl(void) | |||
| { | |||
| __IO uint32_t tmp = 0x00; | |||
| #if defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx)\ | |||
| || defined(STM32F446xx) || defined(STM32F469xx) || defined(STM32F479xx) | |||
| #if defined (DATA_IN_ExtSDRAM) | |||
| register uint32_t tmpreg = 0, timeout = 0xFFFF; | |||
| register __IO uint32_t index; | |||
| #if defined(STM32F446xx) | |||
| /* Enable GPIOA, GPIOC, GPIOD, GPIOE, GPIOF, GPIOG interface | |||
| clock */ | |||
| RCC->AHB1ENR |= 0x0000007D; | |||
| #else | |||
| /* Enable GPIOC, GPIOD, GPIOE, GPIOF, GPIOG, GPIOH and GPIOI interface | |||
| clock */ | |||
| RCC->AHB1ENR |= 0x000001F8; | |||
| #endif /* STM32F446xx */ | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB1ENR, RCC_AHB1ENR_GPIOCEN); | |||
| #if defined(STM32F446xx) | |||
| /* Connect PAx pins to FMC Alternate function */ | |||
| GPIOA->AFR[0] |= 0xC0000000; | |||
| GPIOA->AFR[1] |= 0x00000000; | |||
| /* Configure PDx pins in Alternate function mode */ | |||
| GPIOA->MODER |= 0x00008000; | |||
| /* Configure PDx pins speed to 50 MHz */ | |||
| GPIOA->OSPEEDR |= 0x00008000; | |||
| /* Configure PDx pins Output type to push-pull */ | |||
| GPIOA->OTYPER |= 0x00000000; | |||
| /* No pull-up, pull-down for PDx pins */ | |||
| GPIOA->PUPDR |= 0x00000000; | |||
| /* Connect PCx pins to FMC Alternate function */ | |||
| GPIOC->AFR[0] |= 0x00CC0000; | |||
| GPIOC->AFR[1] |= 0x00000000; | |||
| /* Configure PDx pins in Alternate function mode */ | |||
| GPIOC->MODER |= 0x00000A00; | |||
| /* Configure PDx pins speed to 50 MHz */ | |||
| GPIOC->OSPEEDR |= 0x00000A00; | |||
| /* Configure PDx pins Output type to push-pull */ | |||
| GPIOC->OTYPER |= 0x00000000; | |||
| /* No pull-up, pull-down for PDx pins */ | |||
| GPIOC->PUPDR |= 0x00000000; | |||
| #endif /* STM32F446xx */ | |||
| /* Connect PDx pins to FMC Alternate function */ | |||
| GPIOD->AFR[0] = 0x000000CC; | |||
| GPIOD->AFR[1] = 0xCC000CCC; | |||
| /* Configure PDx pins in Alternate function mode */ | |||
| GPIOD->MODER = 0xA02A000A; | |||
| /* Configure PDx pins speed to 50 MHz */ | |||
| GPIOD->OSPEEDR = 0xA02A000A; | |||
| /* Configure PDx pins Output type to push-pull */ | |||
| GPIOD->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PDx pins */ | |||
| GPIOD->PUPDR = 0x00000000; | |||
| /* Connect PEx pins to FMC Alternate function */ | |||
| GPIOE->AFR[0] = 0xC00000CC; | |||
| GPIOE->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PEx pins in Alternate function mode */ | |||
| GPIOE->MODER = 0xAAAA800A; | |||
| /* Configure PEx pins speed to 50 MHz */ | |||
| GPIOE->OSPEEDR = 0xAAAA800A; | |||
| /* Configure PEx pins Output type to push-pull */ | |||
| GPIOE->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PEx pins */ | |||
| GPIOE->PUPDR = 0x00000000; | |||
| /* Connect PFx pins to FMC Alternate function */ | |||
| GPIOF->AFR[0] = 0xCCCCCCCC; | |||
| GPIOF->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PFx pins in Alternate function mode */ | |||
| GPIOF->MODER = 0xAA800AAA; | |||
| /* Configure PFx pins speed to 50 MHz */ | |||
| GPIOF->OSPEEDR = 0xAA800AAA; | |||
| /* Configure PFx pins Output type to push-pull */ | |||
| GPIOF->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PFx pins */ | |||
| GPIOF->PUPDR = 0x00000000; | |||
| /* Connect PGx pins to FMC Alternate function */ | |||
| GPIOG->AFR[0] = 0xCCCCCCCC; | |||
| GPIOG->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PGx pins in Alternate function mode */ | |||
| GPIOG->MODER = 0xAAAAAAAA; | |||
| /* Configure PGx pins speed to 50 MHz */ | |||
| GPIOG->OSPEEDR = 0xAAAAAAAA; | |||
| /* Configure PGx pins Output type to push-pull */ | |||
| GPIOG->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PGx pins */ | |||
| GPIOG->PUPDR = 0x00000000; | |||
| #if defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx)\ | |||
| || defined(STM32F469xx) || defined(STM32F479xx) | |||
| /* Connect PHx pins to FMC Alternate function */ | |||
| GPIOH->AFR[0] = 0x00C0CC00; | |||
| GPIOH->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PHx pins in Alternate function mode */ | |||
| GPIOH->MODER = 0xAAAA08A0; | |||
| /* Configure PHx pins speed to 50 MHz */ | |||
| GPIOH->OSPEEDR = 0xAAAA08A0; | |||
| /* Configure PHx pins Output type to push-pull */ | |||
| GPIOH->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PHx pins */ | |||
| GPIOH->PUPDR = 0x00000000; | |||
| /* Connect PIx pins to FMC Alternate function */ | |||
| GPIOI->AFR[0] = 0xCCCCCCCC; | |||
| GPIOI->AFR[1] = 0x00000CC0; | |||
| /* Configure PIx pins in Alternate function mode */ | |||
| GPIOI->MODER = 0x0028AAAA; | |||
| /* Configure PIx pins speed to 50 MHz */ | |||
| GPIOI->OSPEEDR = 0x0028AAAA; | |||
| /* Configure PIx pins Output type to push-pull */ | |||
| GPIOI->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PIx pins */ | |||
| GPIOI->PUPDR = 0x00000000; | |||
| #endif /* STM32F427xx || STM32F437xx || STM32F429xx || STM32F439xx || STM32F469xx || STM32F479xx */ | |||
| /*-- FMC Configuration -------------------------------------------------------*/ | |||
| /* Enable the FMC interface clock */ | |||
| RCC->AHB3ENR |= 0x00000001; | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB3ENR, RCC_AHB3ENR_FMCEN); | |||
| /* Configure and enable SDRAM bank1 */ | |||
| #if defined(STM32F446xx) | |||
| FMC_Bank5_6->SDCR[0] = 0x00001954; | |||
| #else | |||
| FMC_Bank5_6->SDCR[0] = 0x000019E4; | |||
| #endif /* STM32F446xx */ | |||
| FMC_Bank5_6->SDTR[0] = 0x01115351; | |||
| /* SDRAM initialization sequence */ | |||
| /* Clock enable command */ | |||
| FMC_Bank5_6->SDCMR = 0x00000011; | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* Delay */ | |||
| for (index = 0; index<1000; index++); | |||
| /* PALL command */ | |||
| FMC_Bank5_6->SDCMR = 0x00000012; | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| timeout = 0xFFFF; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* Auto refresh command */ | |||
| #if defined(STM32F446xx) | |||
| FMC_Bank5_6->SDCMR = 0x000000F3; | |||
| #else | |||
| FMC_Bank5_6->SDCMR = 0x00000073; | |||
| #endif /* STM32F446xx */ | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| timeout = 0xFFFF; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* MRD register program */ | |||
| #if defined(STM32F446xx) | |||
| FMC_Bank5_6->SDCMR = 0x00044014; | |||
| #else | |||
| FMC_Bank5_6->SDCMR = 0x00046014; | |||
| #endif /* STM32F446xx */ | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| timeout = 0xFFFF; | |||
| while((tmpreg != 0) && (timeout-- > 0)) | |||
| { | |||
| tmpreg = FMC_Bank5_6->SDSR & 0x00000020; | |||
| } | |||
| /* Set refresh count */ | |||
| tmpreg = FMC_Bank5_6->SDRTR; | |||
| #if defined(STM32F446xx) | |||
| FMC_Bank5_6->SDRTR = (tmpreg | (0x0000050C<<1)); | |||
| #else | |||
| FMC_Bank5_6->SDRTR = (tmpreg | (0x0000027C<<1)); | |||
| #endif /* STM32F446xx */ | |||
| /* Disable write protection */ | |||
| tmpreg = FMC_Bank5_6->SDCR[0]; | |||
| FMC_Bank5_6->SDCR[0] = (tmpreg & 0xFFFFFDFF); | |||
| #endif /* DATA_IN_ExtSDRAM */ | |||
| #endif /* STM32F427xx || STM32F437xx || STM32F429xx || STM32F439xx || STM32F446xx || STM32F469xx || STM32F479xx */ | |||
| #if defined(STM32F405xx) || defined(STM32F415xx) || defined(STM32F407xx) || defined(STM32F417xx)\ | |||
| || defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx)\ | |||
| || defined(STM32F469xx) || defined(STM32F479xx) || defined(STM32F412Zx) || defined(STM32F412Vx) | |||
| #if defined(DATA_IN_ExtSRAM) | |||
| /*-- GPIOs Configuration -----------------------------------------------------*/ | |||
| /* Enable GPIOD, GPIOE, GPIOF and GPIOG interface clock */ | |||
| RCC->AHB1ENR |= 0x00000078; | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB1ENR, RCC_AHB1ENR_GPIODEN); | |||
| /* Connect PDx pins to FMC Alternate function */ | |||
| GPIOD->AFR[0] = 0x00CCC0CC; | |||
| GPIOD->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PDx pins in Alternate function mode */ | |||
| GPIOD->MODER = 0xAAAA0A8A; | |||
| /* Configure PDx pins speed to 100 MHz */ | |||
| GPIOD->OSPEEDR = 0xFFFF0FCF; | |||
| /* Configure PDx pins Output type to push-pull */ | |||
| GPIOD->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PDx pins */ | |||
| GPIOD->PUPDR = 0x00000000; | |||
| /* Connect PEx pins to FMC Alternate function */ | |||
| GPIOE->AFR[0] = 0xC00CC0CC; | |||
| GPIOE->AFR[1] = 0xCCCCCCCC; | |||
| /* Configure PEx pins in Alternate function mode */ | |||
| GPIOE->MODER = 0xAAAA828A; | |||
| /* Configure PEx pins speed to 100 MHz */ | |||
| GPIOE->OSPEEDR = 0xFFFFC3CF; | |||
| /* Configure PEx pins Output type to push-pull */ | |||
| GPIOE->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PEx pins */ | |||
| GPIOE->PUPDR = 0x00000000; | |||
| /* Connect PFx pins to FMC Alternate function */ | |||
| GPIOF->AFR[0] = 0x00CCCCCC; | |||
| GPIOF->AFR[1] = 0xCCCC0000; | |||
| /* Configure PFx pins in Alternate function mode */ | |||
| GPIOF->MODER = 0xAA000AAA; | |||
| /* Configure PFx pins speed to 100 MHz */ | |||
| GPIOF->OSPEEDR = 0xFF000FFF; | |||
| /* Configure PFx pins Output type to push-pull */ | |||
| GPIOF->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PFx pins */ | |||
| GPIOF->PUPDR = 0x00000000; | |||
| /* Connect PGx pins to FMC Alternate function */ | |||
| GPIOG->AFR[0] = 0x00CCCCCC; | |||
| GPIOG->AFR[1] = 0x000000C0; | |||
| /* Configure PGx pins in Alternate function mode */ | |||
| GPIOG->MODER = 0x00085AAA; | |||
| /* Configure PGx pins speed to 100 MHz */ | |||
| GPIOG->OSPEEDR = 0x000CAFFF; | |||
| /* Configure PGx pins Output type to push-pull */ | |||
| GPIOG->OTYPER = 0x00000000; | |||
| /* No pull-up, pull-down for PGx pins */ | |||
| GPIOG->PUPDR = 0x00000000; | |||
| /*-- FMC/FSMC Configuration --------------------------------------------------*/ | |||
| /* Enable the FMC/FSMC interface clock */ | |||
| RCC->AHB3ENR |= 0x00000001; | |||
| #if defined(STM32F427xx) || defined(STM32F437xx) || defined(STM32F429xx) || defined(STM32F439xx) | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB3ENR, RCC_AHB3ENR_FMCEN); | |||
| /* Configure and enable Bank1_SRAM2 */ | |||
| FMC_Bank1->BTCR[2] = 0x00001011; | |||
| FMC_Bank1->BTCR[3] = 0x00000201; | |||
| FMC_Bank1E->BWTR[2] = 0x0fffffff; | |||
| #endif /* STM32F427xx || STM32F437xx || STM32F429xx || STM32F439xx */ | |||
| #if defined(STM32F469xx) || defined(STM32F479xx) | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB3ENR, RCC_AHB3ENR_FMCEN); | |||
| /* Configure and enable Bank1_SRAM2 */ | |||
| FMC_Bank1->BTCR[2] = 0x00001091; | |||
| FMC_Bank1->BTCR[3] = 0x00110212; | |||
| FMC_Bank1E->BWTR[2] = 0x0fffffff; | |||
| #endif /* STM32F469xx || STM32F479xx */ | |||
| #if defined(STM32F405xx) || defined(STM32F415xx) || defined(STM32F407xx)|| defined(STM32F417xx)\ | |||
| || defined(STM32F412Zx) || defined(STM32F412Vx) | |||
| /* Delay after an RCC peripheral clock enabling */ | |||
| tmp = READ_BIT(RCC->AHB3ENR, RCC_AHB3ENR_FSMCEN); | |||
| /* Configure and enable Bank1_SRAM2 */ | |||
| FSMC_Bank1->BTCR[2] = 0x00001011; | |||
| FSMC_Bank1->BTCR[3] = 0x00000201; | |||
| FSMC_Bank1E->BWTR[2] = 0x0FFFFFFF; | |||
| #endif /* STM32F405xx || STM32F415xx || STM32F407xx || STM32F417xx || STM32F412Zx || STM32F412Vx */ | |||
| #endif /* DATA_IN_ExtSRAM */ | |||
| #endif /* STM32F405xx || STM32F415xx || STM32F407xx || STM32F417xx || STM32F427xx || STM32F437xx ||\ | |||
| STM32F429xx || STM32F439xx || STM32F469xx || STM32F479xx || STM32F412Zx || STM32F412Vx */ | |||
| (void)(tmp); | |||
| } | |||
| #endif /* DATA_IN_ExtSRAM && DATA_IN_ExtSDRAM */ | |||
| /** | |||
| * @} | |||
| */ | |||
| /** | |||
| * @} | |||
| */ | |||
| /** | |||
| * @} | |||
| */ | |||
| /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/ | |||
| @@ -0,0 +1,865 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_armcc.h | |||
| * @brief CMSIS compiler ARMCC (Arm Compiler 5) header file | |||
| * @version V5.0.4 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #ifndef __CMSIS_ARMCC_H | |||
| #define __CMSIS_ARMCC_H | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 400677) | |||
| #error "Please use Arm Compiler Toolchain V4.0.677 or later!" | |||
| #endif | |||
| /* CMSIS compiler control architecture macros */ | |||
| #if ((defined (__TARGET_ARCH_6_M ) && (__TARGET_ARCH_6_M == 1)) || \ | |||
| (defined (__TARGET_ARCH_6S_M ) && (__TARGET_ARCH_6S_M == 1)) ) | |||
| #define __ARM_ARCH_6M__ 1 | |||
| #endif | |||
| #if (defined (__TARGET_ARCH_7_M ) && (__TARGET_ARCH_7_M == 1)) | |||
| #define __ARM_ARCH_7M__ 1 | |||
| #endif | |||
| #if (defined (__TARGET_ARCH_7E_M) && (__TARGET_ARCH_7E_M == 1)) | |||
| #define __ARM_ARCH_7EM__ 1 | |||
| #endif | |||
| /* __ARM_ARCH_8M_BASE__ not applicable */ | |||
| /* __ARM_ARCH_8M_MAIN__ not applicable */ | |||
| /* CMSIS compiler specific defines */ | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE __inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static __inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE static __forceinline | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __declspec(noreturn) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed)) | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #define __PACKED_STRUCT __packed struct | |||
| #endif | |||
| #ifndef __PACKED_UNION | |||
| #define __PACKED_UNION __packed union | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 /* deprecated */ | |||
| #define __UNALIGNED_UINT32(x) (*((__packed uint32_t *)(x))) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| #define __UNALIGNED_UINT16_WRITE(addr, val) ((*((__packed uint16_t *)(addr))) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| #define __UNALIGNED_UINT16_READ(addr) (*((const __packed uint16_t *)(addr))) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| #define __UNALIGNED_UINT32_WRITE(addr, val) ((*((__packed uint32_t *)(addr))) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| #define __UNALIGNED_UINT32_READ(addr) (*((const __packed uint32_t *)(addr))) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #endif | |||
| #ifndef __RESTRICT | |||
| #define __RESTRICT __restrict | |||
| #endif | |||
| /* ########################### Core Function Access ########################### */ | |||
| /** \ingroup CMSIS_Core_FunctionInterface | |||
| \defgroup CMSIS_Core_RegAccFunctions CMSIS Core Register Access Functions | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Enable IRQ Interrupts | |||
| \details Enables IRQ interrupts by clearing the I-bit in the CPSR. | |||
| Can only be executed in Privileged modes. | |||
| */ | |||
| /* intrinsic void __enable_irq(); */ | |||
| /** | |||
| \brief Disable IRQ Interrupts | |||
| \details Disables IRQ interrupts by setting the I-bit in the CPSR. | |||
| Can only be executed in Privileged modes. | |||
| */ | |||
| /* intrinsic void __disable_irq(); */ | |||
| /** | |||
| \brief Get Control Register | |||
| \details Returns the content of the Control Register. | |||
| \return Control Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_CONTROL(void) | |||
| { | |||
| register uint32_t __regControl __ASM("control"); | |||
| return(__regControl); | |||
| } | |||
| /** | |||
| \brief Set Control Register | |||
| \details Writes the given value to the Control Register. | |||
| \param [in] control Control Register value to set | |||
| */ | |||
| __STATIC_INLINE void __set_CONTROL(uint32_t control) | |||
| { | |||
| register uint32_t __regControl __ASM("control"); | |||
| __regControl = control; | |||
| } | |||
| /** | |||
| \brief Get IPSR Register | |||
| \details Returns the content of the IPSR Register. | |||
| \return IPSR Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_IPSR(void) | |||
| { | |||
| register uint32_t __regIPSR __ASM("ipsr"); | |||
| return(__regIPSR); | |||
| } | |||
| /** | |||
| \brief Get APSR Register | |||
| \details Returns the content of the APSR Register. | |||
| \return APSR Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_APSR(void) | |||
| { | |||
| register uint32_t __regAPSR __ASM("apsr"); | |||
| return(__regAPSR); | |||
| } | |||
| /** | |||
| \brief Get xPSR Register | |||
| \details Returns the content of the xPSR Register. | |||
| \return xPSR Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_xPSR(void) | |||
| { | |||
| register uint32_t __regXPSR __ASM("xpsr"); | |||
| return(__regXPSR); | |||
| } | |||
| /** | |||
| \brief Get Process Stack Pointer | |||
| \details Returns the current value of the Process Stack Pointer (PSP). | |||
| \return PSP Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_PSP(void) | |||
| { | |||
| register uint32_t __regProcessStackPointer __ASM("psp"); | |||
| return(__regProcessStackPointer); | |||
| } | |||
| /** | |||
| \brief Set Process Stack Pointer | |||
| \details Assigns the given value to the Process Stack Pointer (PSP). | |||
| \param [in] topOfProcStack Process Stack Pointer value to set | |||
| */ | |||
| __STATIC_INLINE void __set_PSP(uint32_t topOfProcStack) | |||
| { | |||
| register uint32_t __regProcessStackPointer __ASM("psp"); | |||
| __regProcessStackPointer = topOfProcStack; | |||
| } | |||
| /** | |||
| \brief Get Main Stack Pointer | |||
| \details Returns the current value of the Main Stack Pointer (MSP). | |||
| \return MSP Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_MSP(void) | |||
| { | |||
| register uint32_t __regMainStackPointer __ASM("msp"); | |||
| return(__regMainStackPointer); | |||
| } | |||
| /** | |||
| \brief Set Main Stack Pointer | |||
| \details Assigns the given value to the Main Stack Pointer (MSP). | |||
| \param [in] topOfMainStack Main Stack Pointer value to set | |||
| */ | |||
| __STATIC_INLINE void __set_MSP(uint32_t topOfMainStack) | |||
| { | |||
| register uint32_t __regMainStackPointer __ASM("msp"); | |||
| __regMainStackPointer = topOfMainStack; | |||
| } | |||
| /** | |||
| \brief Get Priority Mask | |||
| \details Returns the current state of the priority mask bit from the Priority Mask Register. | |||
| \return Priority Mask value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_PRIMASK(void) | |||
| { | |||
| register uint32_t __regPriMask __ASM("primask"); | |||
| return(__regPriMask); | |||
| } | |||
| /** | |||
| \brief Set Priority Mask | |||
| \details Assigns the given value to the Priority Mask Register. | |||
| \param [in] priMask Priority Mask | |||
| */ | |||
| __STATIC_INLINE void __set_PRIMASK(uint32_t priMask) | |||
| { | |||
| register uint32_t __regPriMask __ASM("primask"); | |||
| __regPriMask = (priMask); | |||
| } | |||
| #if ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \ | |||
| (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) | |||
| /** | |||
| \brief Enable FIQ | |||
| \details Enables FIQ interrupts by clearing the F-bit in the CPSR. | |||
| Can only be executed in Privileged modes. | |||
| */ | |||
| #define __enable_fault_irq __enable_fiq | |||
| /** | |||
| \brief Disable FIQ | |||
| \details Disables FIQ interrupts by setting the F-bit in the CPSR. | |||
| Can only be executed in Privileged modes. | |||
| */ | |||
| #define __disable_fault_irq __disable_fiq | |||
| /** | |||
| \brief Get Base Priority | |||
| \details Returns the current value of the Base Priority register. | |||
| \return Base Priority register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_BASEPRI(void) | |||
| { | |||
| register uint32_t __regBasePri __ASM("basepri"); | |||
| return(__regBasePri); | |||
| } | |||
| /** | |||
| \brief Set Base Priority | |||
| \details Assigns the given value to the Base Priority register. | |||
| \param [in] basePri Base Priority value to set | |||
| */ | |||
| __STATIC_INLINE void __set_BASEPRI(uint32_t basePri) | |||
| { | |||
| register uint32_t __regBasePri __ASM("basepri"); | |||
| __regBasePri = (basePri & 0xFFU); | |||
| } | |||
| /** | |||
| \brief Set Base Priority with condition | |||
| \details Assigns the given value to the Base Priority register only if BASEPRI masking is disabled, | |||
| or the new value increases the BASEPRI priority level. | |||
| \param [in] basePri Base Priority value to set | |||
| */ | |||
| __STATIC_INLINE void __set_BASEPRI_MAX(uint32_t basePri) | |||
| { | |||
| register uint32_t __regBasePriMax __ASM("basepri_max"); | |||
| __regBasePriMax = (basePri & 0xFFU); | |||
| } | |||
| /** | |||
| \brief Get Fault Mask | |||
| \details Returns the current value of the Fault Mask register. | |||
| \return Fault Mask register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_FAULTMASK(void) | |||
| { | |||
| register uint32_t __regFaultMask __ASM("faultmask"); | |||
| return(__regFaultMask); | |||
| } | |||
| /** | |||
| \brief Set Fault Mask | |||
| \details Assigns the given value to the Fault Mask register. | |||
| \param [in] faultMask Fault Mask value to set | |||
| */ | |||
| __STATIC_INLINE void __set_FAULTMASK(uint32_t faultMask) | |||
| { | |||
| register uint32_t __regFaultMask __ASM("faultmask"); | |||
| __regFaultMask = (faultMask & (uint32_t)1U); | |||
| } | |||
| #endif /* ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \ | |||
| (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */ | |||
| /** | |||
| \brief Get FPSCR | |||
| \details Returns the current value of the Floating Point Status/Control register. | |||
| \return Floating Point Status/Control register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_FPSCR(void) | |||
| { | |||
| #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) ) | |||
| register uint32_t __regfpscr __ASM("fpscr"); | |||
| return(__regfpscr); | |||
| #else | |||
| return(0U); | |||
| #endif | |||
| } | |||
| /** | |||
| \brief Set FPSCR | |||
| \details Assigns the given value to the Floating Point Status/Control register. | |||
| \param [in] fpscr Floating Point Status/Control value to set | |||
| */ | |||
| __STATIC_INLINE void __set_FPSCR(uint32_t fpscr) | |||
| { | |||
| #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) ) | |||
| register uint32_t __regfpscr __ASM("fpscr"); | |||
| __regfpscr = (fpscr); | |||
| #else | |||
| (void)fpscr; | |||
| #endif | |||
| } | |||
| /*@} end of CMSIS_Core_RegAccFunctions */ | |||
| /* ########################## Core Instruction Access ######################### */ | |||
| /** \defgroup CMSIS_Core_InstructionInterface CMSIS Core Instruction Interface | |||
| Access to dedicated instructions | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief No Operation | |||
| \details No Operation does nothing. This instruction can be used for code alignment purposes. | |||
| */ | |||
| #define __NOP __nop | |||
| /** | |||
| \brief Wait For Interrupt | |||
| \details Wait For Interrupt is a hint instruction that suspends execution until one of a number of events occurs. | |||
| */ | |||
| #define __WFI __wfi | |||
| /** | |||
| \brief Wait For Event | |||
| \details Wait For Event is a hint instruction that permits the processor to enter | |||
| a low-power state until one of a number of events occurs. | |||
| */ | |||
| #define __WFE __wfe | |||
| /** | |||
| \brief Send Event | |||
| \details Send Event is a hint instruction. It causes an event to be signaled to the CPU. | |||
| */ | |||
| #define __SEV __sev | |||
| /** | |||
| \brief Instruction Synchronization Barrier | |||
| \details Instruction Synchronization Barrier flushes the pipeline in the processor, | |||
| so that all instructions following the ISB are fetched from cache or memory, | |||
| after the instruction has been completed. | |||
| */ | |||
| #define __ISB() do {\ | |||
| __schedule_barrier();\ | |||
| __isb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Data Synchronization Barrier | |||
| \details Acts as a special kind of Data Memory Barrier. | |||
| It completes when all explicit memory accesses before this instruction complete. | |||
| */ | |||
| #define __DSB() do {\ | |||
| __schedule_barrier();\ | |||
| __dsb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Data Memory Barrier | |||
| \details Ensures the apparent order of the explicit memory operations before | |||
| and after the instruction, without ensuring their completion. | |||
| */ | |||
| #define __DMB() do {\ | |||
| __schedule_barrier();\ | |||
| __dmb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Reverse byte order (32 bit) | |||
| \details Reverses the byte order in unsigned integer value. For example, 0x12345678 becomes 0x78563412. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #define __REV __rev | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order within each halfword of a word. For example, 0x12345678 becomes 0x34127856. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #ifndef __NO_EMBEDDED_ASM | |||
| __attribute__((section(".rev16_text"))) __STATIC_INLINE __ASM uint32_t __REV16(uint32_t value) | |||
| { | |||
| rev16 r0, r0 | |||
| bx lr | |||
| } | |||
| #endif | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order in a 16-bit value and returns the signed 16-bit result. For example, 0x0080 becomes 0x8000. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #ifndef __NO_EMBEDDED_ASM | |||
| __attribute__((section(".revsh_text"))) __STATIC_INLINE __ASM int16_t __REVSH(int16_t value) | |||
| { | |||
| revsh r0, r0 | |||
| bx lr | |||
| } | |||
| #endif | |||
| /** | |||
| \brief Rotate Right in unsigned value (32 bit) | |||
| \details Rotate Right (immediate) provides the value of the contents of a register rotated by a variable number of bits. | |||
| \param [in] op1 Value to rotate | |||
| \param [in] op2 Number of Bits to rotate | |||
| \return Rotated value | |||
| */ | |||
| #define __ROR __ror | |||
| /** | |||
| \brief Breakpoint | |||
| \details Causes the processor to enter Debug state. | |||
| Debug tools can use this to investigate system state when the instruction at a particular address is reached. | |||
| \param [in] value is ignored by the processor. | |||
| If required, a debugger can use it to store additional information about the breakpoint. | |||
| */ | |||
| #define __BKPT(value) __breakpoint(value) | |||
| /** | |||
| \brief Reverse bit order of value | |||
| \details Reverses the bit order of the given value. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #if ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \ | |||
| (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) | |||
| #define __RBIT __rbit | |||
| #else | |||
| __attribute__((always_inline)) __STATIC_INLINE uint32_t __RBIT(uint32_t value) | |||
| { | |||
| uint32_t result; | |||
| uint32_t s = (4U /*sizeof(v)*/ * 8U) - 1U; /* extra shift needed at end */ | |||
| result = value; /* r will be reversed bits of v; first get LSB of v */ | |||
| for (value >>= 1U; value != 0U; value >>= 1U) | |||
| { | |||
| result <<= 1U; | |||
| result |= value & 1U; | |||
| s--; | |||
| } | |||
| result <<= s; /* shift when v's highest bits are zero */ | |||
| return result; | |||
| } | |||
| #endif | |||
| /** | |||
| \brief Count leading zeros | |||
| \details Counts the number of leading zeros of a data value. | |||
| \param [in] value Value to count the leading zeros | |||
| \return number of leading zeros in value | |||
| */ | |||
| #define __CLZ __clz | |||
| #if ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \ | |||
| (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) | |||
| /** | |||
| \brief LDR Exclusive (8 bit) | |||
| \details Executes a exclusive LDR instruction for 8 bit value. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint8_t at (*ptr) | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __LDREXB(ptr) ((uint8_t ) __ldrex(ptr)) | |||
| #else | |||
| #define __LDREXB(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint8_t ) __ldrex(ptr)) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief LDR Exclusive (16 bit) | |||
| \details Executes a exclusive LDR instruction for 16 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint16_t at (*ptr) | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __LDREXH(ptr) ((uint16_t) __ldrex(ptr)) | |||
| #else | |||
| #define __LDREXH(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint16_t) __ldrex(ptr)) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief LDR Exclusive (32 bit) | |||
| \details Executes a exclusive LDR instruction for 32 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint32_t at (*ptr) | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __LDREXW(ptr) ((uint32_t ) __ldrex(ptr)) | |||
| #else | |||
| #define __LDREXW(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint32_t ) __ldrex(ptr)) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief STR Exclusive (8 bit) | |||
| \details Executes a exclusive STR instruction for 8 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __STREXB(value, ptr) __strex(value, ptr) | |||
| #else | |||
| #define __STREXB(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief STR Exclusive (16 bit) | |||
| \details Executes a exclusive STR instruction for 16 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __STREXH(value, ptr) __strex(value, ptr) | |||
| #else | |||
| #define __STREXH(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief STR Exclusive (32 bit) | |||
| \details Executes a exclusive STR instruction for 32 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __STREXW(value, ptr) __strex(value, ptr) | |||
| #else | |||
| #define __STREXW(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief Remove the exclusive lock | |||
| \details Removes the exclusive lock which is created by LDREX. | |||
| */ | |||
| #define __CLREX __clrex | |||
| /** | |||
| \brief Signed Saturate | |||
| \details Saturates a signed value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (1..32) | |||
| \return Saturated value | |||
| */ | |||
| #define __SSAT __ssat | |||
| /** | |||
| \brief Unsigned Saturate | |||
| \details Saturates an unsigned value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (0..31) | |||
| \return Saturated value | |||
| */ | |||
| #define __USAT __usat | |||
| /** | |||
| \brief Rotate Right with Extend (32 bit) | |||
| \details Moves each bit of a bitstring right by one bit. | |||
| The carry input is shifted in at the left end of the bitstring. | |||
| \param [in] value Value to rotate | |||
| \return Rotated value | |||
| */ | |||
| #ifndef __NO_EMBEDDED_ASM | |||
| __attribute__((section(".rrx_text"))) __STATIC_INLINE __ASM uint32_t __RRX(uint32_t value) | |||
| { | |||
| rrx r0, r0 | |||
| bx lr | |||
| } | |||
| #endif | |||
| /** | |||
| \brief LDRT Unprivileged (8 bit) | |||
| \details Executes a Unprivileged LDRT instruction for 8 bit value. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint8_t at (*ptr) | |||
| */ | |||
| #define __LDRBT(ptr) ((uint8_t ) __ldrt(ptr)) | |||
| /** | |||
| \brief LDRT Unprivileged (16 bit) | |||
| \details Executes a Unprivileged LDRT instruction for 16 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint16_t at (*ptr) | |||
| */ | |||
| #define __LDRHT(ptr) ((uint16_t) __ldrt(ptr)) | |||
| /** | |||
| \brief LDRT Unprivileged (32 bit) | |||
| \details Executes a Unprivileged LDRT instruction for 32 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint32_t at (*ptr) | |||
| */ | |||
| #define __LDRT(ptr) ((uint32_t ) __ldrt(ptr)) | |||
| /** | |||
| \brief STRT Unprivileged (8 bit) | |||
| \details Executes a Unprivileged STRT instruction for 8 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| */ | |||
| #define __STRBT(value, ptr) __strt(value, ptr) | |||
| /** | |||
| \brief STRT Unprivileged (16 bit) | |||
| \details Executes a Unprivileged STRT instruction for 16 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| */ | |||
| #define __STRHT(value, ptr) __strt(value, ptr) | |||
| /** | |||
| \brief STRT Unprivileged (32 bit) | |||
| \details Executes a Unprivileged STRT instruction for 32 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| */ | |||
| #define __STRT(value, ptr) __strt(value, ptr) | |||
| #else /* ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \ | |||
| (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */ | |||
| /** | |||
| \brief Signed Saturate | |||
| \details Saturates a signed value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (1..32) | |||
| \return Saturated value | |||
| */ | |||
| __attribute__((always_inline)) __STATIC_INLINE int32_t __SSAT(int32_t val, uint32_t sat) | |||
| { | |||
| if ((sat >= 1U) && (sat <= 32U)) | |||
| { | |||
| const int32_t max = (int32_t)((1U << (sat - 1U)) - 1U); | |||
| const int32_t min = -1 - max ; | |||
| if (val > max) | |||
| { | |||
| return max; | |||
| } | |||
| else if (val < min) | |||
| { | |||
| return min; | |||
| } | |||
| } | |||
| return val; | |||
| } | |||
| /** | |||
| \brief Unsigned Saturate | |||
| \details Saturates an unsigned value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (0..31) | |||
| \return Saturated value | |||
| */ | |||
| __attribute__((always_inline)) __STATIC_INLINE uint32_t __USAT(int32_t val, uint32_t sat) | |||
| { | |||
| if (sat <= 31U) | |||
| { | |||
| const uint32_t max = ((1U << sat) - 1U); | |||
| if (val > (int32_t)max) | |||
| { | |||
| return max; | |||
| } | |||
| else if (val < 0) | |||
| { | |||
| return 0U; | |||
| } | |||
| } | |||
| return (uint32_t)val; | |||
| } | |||
| #endif /* ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \ | |||
| (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */ | |||
| /*@}*/ /* end of group CMSIS_Core_InstructionInterface */ | |||
| /* ################### Compiler specific Intrinsics ########################### */ | |||
| /** \defgroup CMSIS_SIMD_intrinsics CMSIS SIMD Intrinsics | |||
| Access to dedicated SIMD instructions | |||
| @{ | |||
| */ | |||
| #if ((defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) | |||
| #define __SADD8 __sadd8 | |||
| #define __QADD8 __qadd8 | |||
| #define __SHADD8 __shadd8 | |||
| #define __UADD8 __uadd8 | |||
| #define __UQADD8 __uqadd8 | |||
| #define __UHADD8 __uhadd8 | |||
| #define __SSUB8 __ssub8 | |||
| #define __QSUB8 __qsub8 | |||
| #define __SHSUB8 __shsub8 | |||
| #define __USUB8 __usub8 | |||
| #define __UQSUB8 __uqsub8 | |||
| #define __UHSUB8 __uhsub8 | |||
| #define __SADD16 __sadd16 | |||
| #define __QADD16 __qadd16 | |||
| #define __SHADD16 __shadd16 | |||
| #define __UADD16 __uadd16 | |||
| #define __UQADD16 __uqadd16 | |||
| #define __UHADD16 __uhadd16 | |||
| #define __SSUB16 __ssub16 | |||
| #define __QSUB16 __qsub16 | |||
| #define __SHSUB16 __shsub16 | |||
| #define __USUB16 __usub16 | |||
| #define __UQSUB16 __uqsub16 | |||
| #define __UHSUB16 __uhsub16 | |||
| #define __SASX __sasx | |||
| #define __QASX __qasx | |||
| #define __SHASX __shasx | |||
| #define __UASX __uasx | |||
| #define __UQASX __uqasx | |||
| #define __UHASX __uhasx | |||
| #define __SSAX __ssax | |||
| #define __QSAX __qsax | |||
| #define __SHSAX __shsax | |||
| #define __USAX __usax | |||
| #define __UQSAX __uqsax | |||
| #define __UHSAX __uhsax | |||
| #define __USAD8 __usad8 | |||
| #define __USADA8 __usada8 | |||
| #define __SSAT16 __ssat16 | |||
| #define __USAT16 __usat16 | |||
| #define __UXTB16 __uxtb16 | |||
| #define __UXTAB16 __uxtab16 | |||
| #define __SXTB16 __sxtb16 | |||
| #define __SXTAB16 __sxtab16 | |||
| #define __SMUAD __smuad | |||
| #define __SMUADX __smuadx | |||
| #define __SMLAD __smlad | |||
| #define __SMLADX __smladx | |||
| #define __SMLALD __smlald | |||
| #define __SMLALDX __smlaldx | |||
| #define __SMUSD __smusd | |||
| #define __SMUSDX __smusdx | |||
| #define __SMLSD __smlsd | |||
| #define __SMLSDX __smlsdx | |||
| #define __SMLSLD __smlsld | |||
| #define __SMLSLDX __smlsldx | |||
| #define __SEL __sel | |||
| #define __QADD __qadd | |||
| #define __QSUB __qsub | |||
| #define __PKHBT(ARG1,ARG2,ARG3) ( ((((uint32_t)(ARG1)) ) & 0x0000FFFFUL) | \ | |||
| ((((uint32_t)(ARG2)) << (ARG3)) & 0xFFFF0000UL) ) | |||
| #define __PKHTB(ARG1,ARG2,ARG3) ( ((((uint32_t)(ARG1)) ) & 0xFFFF0000UL) | \ | |||
| ((((uint32_t)(ARG2)) >> (ARG3)) & 0x0000FFFFUL) ) | |||
| #define __SMMLA(ARG1,ARG2,ARG3) ( (int32_t)((((int64_t)(ARG1) * (ARG2)) + \ | |||
| ((int64_t)(ARG3) << 32U) ) >> 32U)) | |||
| #endif /* ((defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */ | |||
| /*@} end of group CMSIS_SIMD_intrinsics */ | |||
| #endif /* __CMSIS_ARMCC_H */ | |||
| @@ -0,0 +1,266 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_compiler.h | |||
| * @brief CMSIS compiler generic header file | |||
| * @version V5.0.4 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #ifndef __CMSIS_COMPILER_H | |||
| #define __CMSIS_COMPILER_H | |||
| #include <stdint.h> | |||
| /* | |||
| * Arm Compiler 4/5 | |||
| */ | |||
| #if defined ( __CC_ARM ) | |||
| #include "cmsis_armcc.h" | |||
| /* | |||
| * Arm Compiler 6 (armclang) | |||
| */ | |||
| #elif defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050) | |||
| #include "cmsis_armclang.h" | |||
| /* | |||
| * GNU Compiler | |||
| */ | |||
| #elif defined ( __GNUC__ ) | |||
| #include "cmsis_gcc.h" | |||
| /* | |||
| * IAR Compiler | |||
| */ | |||
| #elif defined ( __ICCARM__ ) | |||
| #include <cmsis_iccarm.h> | |||
| /* | |||
| * TI Arm Compiler | |||
| */ | |||
| #elif defined ( __TI_ARM__ ) | |||
| #include <cmsis_ccs.h> | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __attribute__((noreturn)) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed)) | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #define __PACKED_STRUCT struct __attribute__((packed)) | |||
| #endif | |||
| #ifndef __PACKED_UNION | |||
| #define __PACKED_UNION union __attribute__((packed)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 /* deprecated */ | |||
| struct __attribute__((packed)) T_UINT32 { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32(x) (((struct T_UINT32 *)(x))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| __PACKED_STRUCT T_UINT16_WRITE { uint16_t v; }; | |||
| #define __UNALIGNED_UINT16_WRITE(addr, val) (void)((((struct T_UINT16_WRITE *)(void*)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| __PACKED_STRUCT T_UINT16_READ { uint16_t v; }; | |||
| #define __UNALIGNED_UINT16_READ(addr) (((const struct T_UINT16_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| __PACKED_STRUCT T_UINT32_WRITE { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32_WRITE(addr, val) (void)((((struct T_UINT32_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| __PACKED_STRUCT T_UINT32_READ { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32_READ(addr) (((const struct T_UINT32_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #endif | |||
| #ifndef __RESTRICT | |||
| #warning No compiler specific solution for __RESTRICT. __RESTRICT is ignored. | |||
| #define __RESTRICT | |||
| #endif | |||
| /* | |||
| * TASKING Compiler | |||
| */ | |||
| #elif defined ( __TASKING__ ) | |||
| /* | |||
| * The CMSIS functions have been implemented as intrinsics in the compiler. | |||
| * Please use "carm -?i" to get an up to date list of all intrinsics, | |||
| * Including the CMSIS ones. | |||
| */ | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __attribute__((noreturn)) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __packed__ | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #define __PACKED_STRUCT struct __packed__ | |||
| #endif | |||
| #ifndef __PACKED_UNION | |||
| #define __PACKED_UNION union __packed__ | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 /* deprecated */ | |||
| struct __packed__ T_UINT32 { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32(x) (((struct T_UINT32 *)(x))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| __PACKED_STRUCT T_UINT16_WRITE { uint16_t v; }; | |||
| #define __UNALIGNED_UINT16_WRITE(addr, val) (void)((((struct T_UINT16_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| __PACKED_STRUCT T_UINT16_READ { uint16_t v; }; | |||
| #define __UNALIGNED_UINT16_READ(addr) (((const struct T_UINT16_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| __PACKED_STRUCT T_UINT32_WRITE { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32_WRITE(addr, val) (void)((((struct T_UINT32_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| __PACKED_STRUCT T_UINT32_READ { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32_READ(addr) (((const struct T_UINT32_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __align(x) | |||
| #endif | |||
| #ifndef __RESTRICT | |||
| #warning No compiler specific solution for __RESTRICT. __RESTRICT is ignored. | |||
| #define __RESTRICT | |||
| #endif | |||
| /* | |||
| * COSMIC Compiler | |||
| */ | |||
| #elif defined ( __CSMC__ ) | |||
| #include <cmsis_csm.h> | |||
| #ifndef __ASM | |||
| #define __ASM _asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| // NO RETURN is automatically detected hence no warning here | |||
| #define __NO_RETURN | |||
| #endif | |||
| #ifndef __USED | |||
| #warning No compiler specific solution for __USED. __USED is ignored. | |||
| #define __USED | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __weak | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED @packed | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #define __PACKED_STRUCT @packed struct | |||
| #endif | |||
| #ifndef __PACKED_UNION | |||
| #define __PACKED_UNION @packed union | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 /* deprecated */ | |||
| @packed struct T_UINT32 { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32(x) (((struct T_UINT32 *)(x))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| __PACKED_STRUCT T_UINT16_WRITE { uint16_t v; }; | |||
| #define __UNALIGNED_UINT16_WRITE(addr, val) (void)((((struct T_UINT16_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| __PACKED_STRUCT T_UINT16_READ { uint16_t v; }; | |||
| #define __UNALIGNED_UINT16_READ(addr) (((const struct T_UINT16_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| __PACKED_STRUCT T_UINT32_WRITE { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32_WRITE(addr, val) (void)((((struct T_UINT32_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| __PACKED_STRUCT T_UINT32_READ { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32_READ(addr) (((const struct T_UINT32_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #warning No compiler specific solution for __ALIGNED. __ALIGNED is ignored. | |||
| #define __ALIGNED(x) | |||
| #endif | |||
| #ifndef __RESTRICT | |||
| #warning No compiler specific solution for __RESTRICT. __RESTRICT is ignored. | |||
| #define __RESTRICT | |||
| #endif | |||
| #else | |||
| #error Unknown compiler. | |||
| #endif | |||
| #endif /* __CMSIS_COMPILER_H */ | |||
| @@ -0,0 +1,935 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_iccarm.h | |||
| * @brief CMSIS compiler ICCARM (IAR Compiler for Arm) header file | |||
| * @version V5.0.7 | |||
| * @date 19. June 2018 | |||
| ******************************************************************************/ | |||
| //------------------------------------------------------------------------------ | |||
| // | |||
| // Copyright (c) 2017-2018 IAR Systems | |||
| // | |||
| // Licensed under the Apache License, Version 2.0 (the "License") | |||
| // you may not use this file except in compliance with the License. | |||
| // You may obtain a copy of the License at | |||
| // http://www.apache.org/licenses/LICENSE-2.0 | |||
| // | |||
| // Unless required by applicable law or agreed to in writing, software | |||
| // distributed under the License is distributed on an "AS IS" BASIS, | |||
| // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| // See the License for the specific language governing permissions and | |||
| // limitations under the License. | |||
| // | |||
| //------------------------------------------------------------------------------ | |||
| #ifndef __CMSIS_ICCARM_H__ | |||
| #define __CMSIS_ICCARM_H__ | |||
| #ifndef __ICCARM__ | |||
| #error This file should only be compiled by ICCARM | |||
| #endif | |||
| #pragma system_include | |||
| #define __IAR_FT _Pragma("inline=forced") __intrinsic | |||
| #if (__VER__ >= 8000000) | |||
| #define __ICCARM_V8 1 | |||
| #else | |||
| #define __ICCARM_V8 0 | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #if __ICCARM_V8 | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #elif (__VER__ >= 7080000) | |||
| /* Needs IAR language extensions */ | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #else | |||
| #warning No compiler specific solution for __ALIGNED.__ALIGNED is ignored. | |||
| #define __ALIGNED(x) | |||
| #endif | |||
| #endif | |||
| /* Define compiler macros for CPU architecture, used in CMSIS 5. | |||
| */ | |||
| #if __ARM_ARCH_6M__ || __ARM_ARCH_7M__ || __ARM_ARCH_7EM__ || __ARM_ARCH_8M_BASE__ || __ARM_ARCH_8M_MAIN__ | |||
| /* Macros already defined */ | |||
| #else | |||
| #if defined(__ARM8M_MAINLINE__) || defined(__ARM8EM_MAINLINE__) | |||
| #define __ARM_ARCH_8M_MAIN__ 1 | |||
| #elif defined(__ARM8M_BASELINE__) | |||
| #define __ARM_ARCH_8M_BASE__ 1 | |||
| #elif defined(__ARM_ARCH_PROFILE) && __ARM_ARCH_PROFILE == 'M' | |||
| #if __ARM_ARCH == 6 | |||
| #define __ARM_ARCH_6M__ 1 | |||
| #elif __ARM_ARCH == 7 | |||
| #if __ARM_FEATURE_DSP | |||
| #define __ARM_ARCH_7EM__ 1 | |||
| #else | |||
| #define __ARM_ARCH_7M__ 1 | |||
| #endif | |||
| #endif /* __ARM_ARCH */ | |||
| #endif /* __ARM_ARCH_PROFILE == 'M' */ | |||
| #endif | |||
| /* Alternativ core deduction for older ICCARM's */ | |||
| #if !defined(__ARM_ARCH_6M__) && !defined(__ARM_ARCH_7M__) && !defined(__ARM_ARCH_7EM__) && \ | |||
| !defined(__ARM_ARCH_8M_BASE__) && !defined(__ARM_ARCH_8M_MAIN__) | |||
| #if defined(__ARM6M__) && (__CORE__ == __ARM6M__) | |||
| #define __ARM_ARCH_6M__ 1 | |||
| #elif defined(__ARM7M__) && (__CORE__ == __ARM7M__) | |||
| #define __ARM_ARCH_7M__ 1 | |||
| #elif defined(__ARM7EM__) && (__CORE__ == __ARM7EM__) | |||
| #define __ARM_ARCH_7EM__ 1 | |||
| #elif defined(__ARM8M_BASELINE__) && (__CORE == __ARM8M_BASELINE__) | |||
| #define __ARM_ARCH_8M_BASE__ 1 | |||
| #elif defined(__ARM8M_MAINLINE__) && (__CORE == __ARM8M_MAINLINE__) | |||
| #define __ARM_ARCH_8M_MAIN__ 1 | |||
| #elif defined(__ARM8EM_MAINLINE__) && (__CORE == __ARM8EM_MAINLINE__) | |||
| #define __ARM_ARCH_8M_MAIN__ 1 | |||
| #else | |||
| #error "Unknown target." | |||
| #endif | |||
| #endif | |||
| #if defined(__ARM_ARCH_6M__) && __ARM_ARCH_6M__==1 | |||
| #define __IAR_M0_FAMILY 1 | |||
| #elif defined(__ARM_ARCH_8M_BASE__) && __ARM_ARCH_8M_BASE__==1 | |||
| #define __IAR_M0_FAMILY 1 | |||
| #else | |||
| #define __IAR_M0_FAMILY 0 | |||
| #endif | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #if __ICCARM_V8 | |||
| #define __NO_RETURN __attribute__((__noreturn__)) | |||
| #else | |||
| #define __NO_RETURN _Pragma("object_attribute=__noreturn") | |||
| #endif | |||
| #endif | |||
| #ifndef __PACKED | |||
| #if __ICCARM_V8 | |||
| #define __PACKED __attribute__((packed, aligned(1))) | |||
| #else | |||
| /* Needs IAR language extensions */ | |||
| #define __PACKED __packed | |||
| #endif | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #if __ICCARM_V8 | |||
| #define __PACKED_STRUCT struct __attribute__((packed, aligned(1))) | |||
| #else | |||
| /* Needs IAR language extensions */ | |||
| #define __PACKED_STRUCT __packed struct | |||
| #endif | |||
| #endif | |||
| #ifndef __PACKED_UNION | |||
| #if __ICCARM_V8 | |||
| #define __PACKED_UNION union __attribute__((packed, aligned(1))) | |||
| #else | |||
| /* Needs IAR language extensions */ | |||
| #define __PACKED_UNION __packed union | |||
| #endif | |||
| #endif | |||
| #ifndef __RESTRICT | |||
| #define __RESTRICT __restrict | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __FORCEINLINE | |||
| #define __FORCEINLINE _Pragma("inline=forced") | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT uint16_t __iar_uint16_read(void const *ptr) | |||
| { | |||
| return *(__packed uint16_t*)(ptr); | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT16_READ(PTR) __iar_uint16_read(PTR) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT void __iar_uint16_write(void const *ptr, uint16_t val) | |||
| { | |||
| *(__packed uint16_t*)(ptr) = val;; | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT16_WRITE(PTR,VAL) __iar_uint16_write(PTR,VAL) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT uint32_t __iar_uint32_read(void const *ptr) | |||
| { | |||
| return *(__packed uint32_t*)(ptr); | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT32_READ(PTR) __iar_uint32_read(PTR) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT void __iar_uint32_write(void const *ptr, uint32_t val) | |||
| { | |||
| *(__packed uint32_t*)(ptr) = val;; | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT32_WRITE(PTR,VAL) __iar_uint32_write(PTR,VAL) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 /* deprecated */ | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __packed struct __iar_u32 { uint32_t v; }; | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT32(PTR) (((struct __iar_u32 *)(PTR))->v) | |||
| #endif | |||
| #ifndef __USED | |||
| #if __ICCARM_V8 | |||
| #define __USED __attribute__((used)) | |||
| #else | |||
| #define __USED _Pragma("__root") | |||
| #endif | |||
| #endif | |||
| #ifndef __WEAK | |||
| #if __ICCARM_V8 | |||
| #define __WEAK __attribute__((weak)) | |||
| #else | |||
| #define __WEAK _Pragma("__weak") | |||
| #endif | |||
| #endif | |||
| #ifndef __ICCARM_INTRINSICS_VERSION__ | |||
| #define __ICCARM_INTRINSICS_VERSION__ 0 | |||
| #endif | |||
| #if __ICCARM_INTRINSICS_VERSION__ == 2 | |||
| #if defined(__CLZ) | |||
| #undef __CLZ | |||
| #endif | |||
| #if defined(__REVSH) | |||
| #undef __REVSH | |||
| #endif | |||
| #if defined(__RBIT) | |||
| #undef __RBIT | |||
| #endif | |||
| #if defined(__SSAT) | |||
| #undef __SSAT | |||
| #endif | |||
| #if defined(__USAT) | |||
| #undef __USAT | |||
| #endif | |||
| #include "iccarm_builtin.h" | |||
| #define __disable_fault_irq __iar_builtin_disable_fiq | |||
| #define __disable_irq __iar_builtin_disable_interrupt | |||
| #define __enable_fault_irq __iar_builtin_enable_fiq | |||
| #define __enable_irq __iar_builtin_enable_interrupt | |||
| #define __arm_rsr __iar_builtin_rsr | |||
| #define __arm_wsr __iar_builtin_wsr | |||
| #define __get_APSR() (__arm_rsr("APSR")) | |||
| #define __get_BASEPRI() (__arm_rsr("BASEPRI")) | |||
| #define __get_CONTROL() (__arm_rsr("CONTROL")) | |||
| #define __get_FAULTMASK() (__arm_rsr("FAULTMASK")) | |||
| #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) ) | |||
| #define __get_FPSCR() (__arm_rsr("FPSCR")) | |||
| #define __set_FPSCR(VALUE) (__arm_wsr("FPSCR", (VALUE))) | |||
| #else | |||
| #define __get_FPSCR() ( 0 ) | |||
| #define __set_FPSCR(VALUE) ((void)VALUE) | |||
| #endif | |||
| #define __get_IPSR() (__arm_rsr("IPSR")) | |||
| #define __get_MSP() (__arm_rsr("MSP")) | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure MSPLIM is RAZ/WI | |||
| #define __get_MSPLIM() (0U) | |||
| #else | |||
| #define __get_MSPLIM() (__arm_rsr("MSPLIM")) | |||
| #endif | |||
| #define __get_PRIMASK() (__arm_rsr("PRIMASK")) | |||
| #define __get_PSP() (__arm_rsr("PSP")) | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure PSPLIM is RAZ/WI | |||
| #define __get_PSPLIM() (0U) | |||
| #else | |||
| #define __get_PSPLIM() (__arm_rsr("PSPLIM")) | |||
| #endif | |||
| #define __get_xPSR() (__arm_rsr("xPSR")) | |||
| #define __set_BASEPRI(VALUE) (__arm_wsr("BASEPRI", (VALUE))) | |||
| #define __set_BASEPRI_MAX(VALUE) (__arm_wsr("BASEPRI_MAX", (VALUE))) | |||
| #define __set_CONTROL(VALUE) (__arm_wsr("CONTROL", (VALUE))) | |||
| #define __set_FAULTMASK(VALUE) (__arm_wsr("FAULTMASK", (VALUE))) | |||
| #define __set_MSP(VALUE) (__arm_wsr("MSP", (VALUE))) | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure MSPLIM is RAZ/WI | |||
| #define __set_MSPLIM(VALUE) ((void)(VALUE)) | |||
| #else | |||
| #define __set_MSPLIM(VALUE) (__arm_wsr("MSPLIM", (VALUE))) | |||
| #endif | |||
| #define __set_PRIMASK(VALUE) (__arm_wsr("PRIMASK", (VALUE))) | |||
| #define __set_PSP(VALUE) (__arm_wsr("PSP", (VALUE))) | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure PSPLIM is RAZ/WI | |||
| #define __set_PSPLIM(VALUE) ((void)(VALUE)) | |||
| #else | |||
| #define __set_PSPLIM(VALUE) (__arm_wsr("PSPLIM", (VALUE))) | |||
| #endif | |||
| #define __TZ_get_CONTROL_NS() (__arm_rsr("CONTROL_NS")) | |||
| #define __TZ_set_CONTROL_NS(VALUE) (__arm_wsr("CONTROL_NS", (VALUE))) | |||
| #define __TZ_get_PSP_NS() (__arm_rsr("PSP_NS")) | |||
| #define __TZ_set_PSP_NS(VALUE) (__arm_wsr("PSP_NS", (VALUE))) | |||
| #define __TZ_get_MSP_NS() (__arm_rsr("MSP_NS")) | |||
| #define __TZ_set_MSP_NS(VALUE) (__arm_wsr("MSP_NS", (VALUE))) | |||
| #define __TZ_get_SP_NS() (__arm_rsr("SP_NS")) | |||
| #define __TZ_set_SP_NS(VALUE) (__arm_wsr("SP_NS", (VALUE))) | |||
| #define __TZ_get_PRIMASK_NS() (__arm_rsr("PRIMASK_NS")) | |||
| #define __TZ_set_PRIMASK_NS(VALUE) (__arm_wsr("PRIMASK_NS", (VALUE))) | |||
| #define __TZ_get_BASEPRI_NS() (__arm_rsr("BASEPRI_NS")) | |||
| #define __TZ_set_BASEPRI_NS(VALUE) (__arm_wsr("BASEPRI_NS", (VALUE))) | |||
| #define __TZ_get_FAULTMASK_NS() (__arm_rsr("FAULTMASK_NS")) | |||
| #define __TZ_set_FAULTMASK_NS(VALUE)(__arm_wsr("FAULTMASK_NS", (VALUE))) | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure PSPLIM is RAZ/WI | |||
| #define __TZ_get_PSPLIM_NS() (0U) | |||
| #define __TZ_set_PSPLIM_NS(VALUE) ((void)(VALUE)) | |||
| #else | |||
| #define __TZ_get_PSPLIM_NS() (__arm_rsr("PSPLIM_NS")) | |||
| #define __TZ_set_PSPLIM_NS(VALUE) (__arm_wsr("PSPLIM_NS", (VALUE))) | |||
| #endif | |||
| #define __TZ_get_MSPLIM_NS() (__arm_rsr("MSPLIM_NS")) | |||
| #define __TZ_set_MSPLIM_NS(VALUE) (__arm_wsr("MSPLIM_NS", (VALUE))) | |||
| #define __NOP __iar_builtin_no_operation | |||
| #define __CLZ __iar_builtin_CLZ | |||
| #define __CLREX __iar_builtin_CLREX | |||
| #define __DMB __iar_builtin_DMB | |||
| #define __DSB __iar_builtin_DSB | |||
| #define __ISB __iar_builtin_ISB | |||
| #define __LDREXB __iar_builtin_LDREXB | |||
| #define __LDREXH __iar_builtin_LDREXH | |||
| #define __LDREXW __iar_builtin_LDREX | |||
| #define __RBIT __iar_builtin_RBIT | |||
| #define __REV __iar_builtin_REV | |||
| #define __REV16 __iar_builtin_REV16 | |||
| __IAR_FT int16_t __REVSH(int16_t val) | |||
| { | |||
| return (int16_t) __iar_builtin_REVSH(val); | |||
| } | |||
| #define __ROR __iar_builtin_ROR | |||
| #define __RRX __iar_builtin_RRX | |||
| #define __SEV __iar_builtin_SEV | |||
| #if !__IAR_M0_FAMILY | |||
| #define __SSAT __iar_builtin_SSAT | |||
| #endif | |||
| #define __STREXB __iar_builtin_STREXB | |||
| #define __STREXH __iar_builtin_STREXH | |||
| #define __STREXW __iar_builtin_STREX | |||
| #if !__IAR_M0_FAMILY | |||
| #define __USAT __iar_builtin_USAT | |||
| #endif | |||
| #define __WFE __iar_builtin_WFE | |||
| #define __WFI __iar_builtin_WFI | |||
| #if __ARM_MEDIA__ | |||
| #define __SADD8 __iar_builtin_SADD8 | |||
| #define __QADD8 __iar_builtin_QADD8 | |||
| #define __SHADD8 __iar_builtin_SHADD8 | |||
| #define __UADD8 __iar_builtin_UADD8 | |||
| #define __UQADD8 __iar_builtin_UQADD8 | |||
| #define __UHADD8 __iar_builtin_UHADD8 | |||
| #define __SSUB8 __iar_builtin_SSUB8 | |||
| #define __QSUB8 __iar_builtin_QSUB8 | |||
| #define __SHSUB8 __iar_builtin_SHSUB8 | |||
| #define __USUB8 __iar_builtin_USUB8 | |||
| #define __UQSUB8 __iar_builtin_UQSUB8 | |||
| #define __UHSUB8 __iar_builtin_UHSUB8 | |||
| #define __SADD16 __iar_builtin_SADD16 | |||
| #define __QADD16 __iar_builtin_QADD16 | |||
| #define __SHADD16 __iar_builtin_SHADD16 | |||
| #define __UADD16 __iar_builtin_UADD16 | |||
| #define __UQADD16 __iar_builtin_UQADD16 | |||
| #define __UHADD16 __iar_builtin_UHADD16 | |||
| #define __SSUB16 __iar_builtin_SSUB16 | |||
| #define __QSUB16 __iar_builtin_QSUB16 | |||
| #define __SHSUB16 __iar_builtin_SHSUB16 | |||
| #define __USUB16 __iar_builtin_USUB16 | |||
| #define __UQSUB16 __iar_builtin_UQSUB16 | |||
| #define __UHSUB16 __iar_builtin_UHSUB16 | |||
| #define __SASX __iar_builtin_SASX | |||
| #define __QASX __iar_builtin_QASX | |||
| #define __SHASX __iar_builtin_SHASX | |||
| #define __UASX __iar_builtin_UASX | |||
| #define __UQASX __iar_builtin_UQASX | |||
| #define __UHASX __iar_builtin_UHASX | |||
| #define __SSAX __iar_builtin_SSAX | |||
| #define __QSAX __iar_builtin_QSAX | |||
| #define __SHSAX __iar_builtin_SHSAX | |||
| #define __USAX __iar_builtin_USAX | |||
| #define __UQSAX __iar_builtin_UQSAX | |||
| #define __UHSAX __iar_builtin_UHSAX | |||
| #define __USAD8 __iar_builtin_USAD8 | |||
| #define __USADA8 __iar_builtin_USADA8 | |||
| #define __SSAT16 __iar_builtin_SSAT16 | |||
| #define __USAT16 __iar_builtin_USAT16 | |||
| #define __UXTB16 __iar_builtin_UXTB16 | |||
| #define __UXTAB16 __iar_builtin_UXTAB16 | |||
| #define __SXTB16 __iar_builtin_SXTB16 | |||
| #define __SXTAB16 __iar_builtin_SXTAB16 | |||
| #define __SMUAD __iar_builtin_SMUAD | |||
| #define __SMUADX __iar_builtin_SMUADX | |||
| #define __SMMLA __iar_builtin_SMMLA | |||
| #define __SMLAD __iar_builtin_SMLAD | |||
| #define __SMLADX __iar_builtin_SMLADX | |||
| #define __SMLALD __iar_builtin_SMLALD | |||
| #define __SMLALDX __iar_builtin_SMLALDX | |||
| #define __SMUSD __iar_builtin_SMUSD | |||
| #define __SMUSDX __iar_builtin_SMUSDX | |||
| #define __SMLSD __iar_builtin_SMLSD | |||
| #define __SMLSDX __iar_builtin_SMLSDX | |||
| #define __SMLSLD __iar_builtin_SMLSLD | |||
| #define __SMLSLDX __iar_builtin_SMLSLDX | |||
| #define __SEL __iar_builtin_SEL | |||
| #define __QADD __iar_builtin_QADD | |||
| #define __QSUB __iar_builtin_QSUB | |||
| #define __PKHBT __iar_builtin_PKHBT | |||
| #define __PKHTB __iar_builtin_PKHTB | |||
| #endif | |||
| #else /* __ICCARM_INTRINSICS_VERSION__ == 2 */ | |||
| #if __IAR_M0_FAMILY | |||
| /* Avoid clash between intrinsics.h and arm_math.h when compiling for Cortex-M0. */ | |||
| #define __CLZ __cmsis_iar_clz_not_active | |||
| #define __SSAT __cmsis_iar_ssat_not_active | |||
| #define __USAT __cmsis_iar_usat_not_active | |||
| #define __RBIT __cmsis_iar_rbit_not_active | |||
| #define __get_APSR __cmsis_iar_get_APSR_not_active | |||
| #endif | |||
| #if (!((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) )) | |||
| #define __get_FPSCR __cmsis_iar_get_FPSR_not_active | |||
| #define __set_FPSCR __cmsis_iar_set_FPSR_not_active | |||
| #endif | |||
| #ifdef __INTRINSICS_INCLUDED | |||
| #error intrinsics.h is already included previously! | |||
| #endif | |||
| #include <intrinsics.h> | |||
| #if __IAR_M0_FAMILY | |||
| /* Avoid clash between intrinsics.h and arm_math.h when compiling for Cortex-M0. */ | |||
| #undef __CLZ | |||
| #undef __SSAT | |||
| #undef __USAT | |||
| #undef __RBIT | |||
| #undef __get_APSR | |||
| __STATIC_INLINE uint8_t __CLZ(uint32_t data) | |||
| { | |||
| if (data == 0U) { return 32U; } | |||
| uint32_t count = 0U; | |||
| uint32_t mask = 0x80000000U; | |||
| while ((data & mask) == 0U) | |||
| { | |||
| count += 1U; | |||
| mask = mask >> 1U; | |||
| } | |||
| return count; | |||
| } | |||
| __STATIC_INLINE uint32_t __RBIT(uint32_t v) | |||
| { | |||
| uint8_t sc = 31U; | |||
| uint32_t r = v; | |||
| for (v >>= 1U; v; v >>= 1U) | |||
| { | |||
| r <<= 1U; | |||
| r |= v & 1U; | |||
| sc--; | |||
| } | |||
| return (r << sc); | |||
| } | |||
| __STATIC_INLINE uint32_t __get_APSR(void) | |||
| { | |||
| uint32_t res; | |||
| __asm("MRS %0,APSR" : "=r" (res)); | |||
| return res; | |||
| } | |||
| #endif | |||
| #if (!((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) )) | |||
| #undef __get_FPSCR | |||
| #undef __set_FPSCR | |||
| #define __get_FPSCR() (0) | |||
| #define __set_FPSCR(VALUE) ((void)VALUE) | |||
| #endif | |||
| #pragma diag_suppress=Pe940 | |||
| #pragma diag_suppress=Pe177 | |||
| #define __enable_irq __enable_interrupt | |||
| #define __disable_irq __disable_interrupt | |||
| #define __NOP __no_operation | |||
| #define __get_xPSR __get_PSR | |||
| #if (!defined(__ARM_ARCH_6M__) || __ARM_ARCH_6M__==0) | |||
| __IAR_FT uint32_t __LDREXW(uint32_t volatile *ptr) | |||
| { | |||
| return __LDREX((unsigned long *)ptr); | |||
| } | |||
| __IAR_FT uint32_t __STREXW(uint32_t value, uint32_t volatile *ptr) | |||
| { | |||
| return __STREX(value, (unsigned long *)ptr); | |||
| } | |||
| #endif | |||
| /* __CORTEX_M is defined in core_cm0.h, core_cm3.h and core_cm4.h. */ | |||
| #if (__CORTEX_M >= 0x03) | |||
| __IAR_FT uint32_t __RRX(uint32_t value) | |||
| { | |||
| uint32_t result; | |||
| __ASM("RRX %0, %1" : "=r"(result) : "r" (value) : "cc"); | |||
| return(result); | |||
| } | |||
| __IAR_FT void __set_BASEPRI_MAX(uint32_t value) | |||
| { | |||
| __asm volatile("MSR BASEPRI_MAX,%0"::"r" (value)); | |||
| } | |||
| #define __enable_fault_irq __enable_fiq | |||
| #define __disable_fault_irq __disable_fiq | |||
| #endif /* (__CORTEX_M >= 0x03) */ | |||
| __IAR_FT uint32_t __ROR(uint32_t op1, uint32_t op2) | |||
| { | |||
| return (op1 >> op2) | (op1 << ((sizeof(op1)*8)-op2)); | |||
| } | |||
| #if ((defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) || \ | |||
| (defined (__ARM_ARCH_8M_BASE__ ) && (__ARM_ARCH_8M_BASE__ == 1)) ) | |||
| __IAR_FT uint32_t __get_MSPLIM(void) | |||
| { | |||
| uint32_t res; | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE ) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure MSPLIM is RAZ/WI | |||
| res = 0U; | |||
| #else | |||
| __asm volatile("MRS %0,MSPLIM" : "=r" (res)); | |||
| #endif | |||
| return res; | |||
| } | |||
| __IAR_FT void __set_MSPLIM(uint32_t value) | |||
| { | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE ) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure MSPLIM is RAZ/WI | |||
| (void)value; | |||
| #else | |||
| __asm volatile("MSR MSPLIM,%0" :: "r" (value)); | |||
| #endif | |||
| } | |||
| __IAR_FT uint32_t __get_PSPLIM(void) | |||
| { | |||
| uint32_t res; | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE ) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure PSPLIM is RAZ/WI | |||
| res = 0U; | |||
| #else | |||
| __asm volatile("MRS %0,PSPLIM" : "=r" (res)); | |||
| #endif | |||
| return res; | |||
| } | |||
| __IAR_FT void __set_PSPLIM(uint32_t value) | |||
| { | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE ) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure PSPLIM is RAZ/WI | |||
| (void)value; | |||
| #else | |||
| __asm volatile("MSR PSPLIM,%0" :: "r" (value)); | |||
| #endif | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_CONTROL_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,CONTROL_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_CONTROL_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR CONTROL_NS,%0" :: "r" (value)); | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_PSP_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,PSP_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_PSP_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR PSP_NS,%0" :: "r" (value)); | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_MSP_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,MSP_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_MSP_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR MSP_NS,%0" :: "r" (value)); | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_SP_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,SP_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_SP_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR SP_NS,%0" :: "r" (value)); | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_PRIMASK_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,PRIMASK_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_PRIMASK_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR PRIMASK_NS,%0" :: "r" (value)); | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_BASEPRI_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,BASEPRI_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_BASEPRI_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR BASEPRI_NS,%0" :: "r" (value)); | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_FAULTMASK_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,FAULTMASK_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_FAULTMASK_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR FAULTMASK_NS,%0" :: "r" (value)); | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_PSPLIM_NS(void) | |||
| { | |||
| uint32_t res; | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE ) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure PSPLIM is RAZ/WI | |||
| res = 0U; | |||
| #else | |||
| __asm volatile("MRS %0,PSPLIM_NS" : "=r" (res)); | |||
| #endif | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_PSPLIM_NS(uint32_t value) | |||
| { | |||
| #if (!(defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) && \ | |||
| (!defined (__ARM_FEATURE_CMSE ) || (__ARM_FEATURE_CMSE < 3))) | |||
| // without main extensions, the non-secure PSPLIM is RAZ/WI | |||
| (void)value; | |||
| #else | |||
| __asm volatile("MSR PSPLIM_NS,%0" :: "r" (value)); | |||
| #endif | |||
| } | |||
| __IAR_FT uint32_t __TZ_get_MSPLIM_NS(void) | |||
| { | |||
| uint32_t res; | |||
| __asm volatile("MRS %0,MSPLIM_NS" : "=r" (res)); | |||
| return res; | |||
| } | |||
| __IAR_FT void __TZ_set_MSPLIM_NS(uint32_t value) | |||
| { | |||
| __asm volatile("MSR MSPLIM_NS,%0" :: "r" (value)); | |||
| } | |||
| #endif /* __ARM_ARCH_8M_MAIN__ or __ARM_ARCH_8M_BASE__ */ | |||
| #endif /* __ICCARM_INTRINSICS_VERSION__ == 2 */ | |||
| #define __BKPT(value) __asm volatile ("BKPT %0" : : "i"(value)) | |||
| #if __IAR_M0_FAMILY | |||
| __STATIC_INLINE int32_t __SSAT(int32_t val, uint32_t sat) | |||
| { | |||
| if ((sat >= 1U) && (sat <= 32U)) | |||
| { | |||
| const int32_t max = (int32_t)((1U << (sat - 1U)) - 1U); | |||
| const int32_t min = -1 - max ; | |||
| if (val > max) | |||
| { | |||
| return max; | |||
| } | |||
| else if (val < min) | |||
| { | |||
| return min; | |||
| } | |||
| } | |||
| return val; | |||
| } | |||
| __STATIC_INLINE uint32_t __USAT(int32_t val, uint32_t sat) | |||
| { | |||
| if (sat <= 31U) | |||
| { | |||
| const uint32_t max = ((1U << sat) - 1U); | |||
| if (val > (int32_t)max) | |||
| { | |||
| return max; | |||
| } | |||
| else if (val < 0) | |||
| { | |||
| return 0U; | |||
| } | |||
| } | |||
| return (uint32_t)val; | |||
| } | |||
| #endif | |||
| #if (__CORTEX_M >= 0x03) /* __CORTEX_M is defined in core_cm0.h, core_cm3.h and core_cm4.h. */ | |||
| __IAR_FT uint8_t __LDRBT(volatile uint8_t *addr) | |||
| { | |||
| uint32_t res; | |||
| __ASM("LDRBT %0, [%1]" : "=r" (res) : "r" (addr) : "memory"); | |||
| return ((uint8_t)res); | |||
| } | |||
| __IAR_FT uint16_t __LDRHT(volatile uint16_t *addr) | |||
| { | |||
| uint32_t res; | |||
| __ASM("LDRHT %0, [%1]" : "=r" (res) : "r" (addr) : "memory"); | |||
| return ((uint16_t)res); | |||
| } | |||
| __IAR_FT uint32_t __LDRT(volatile uint32_t *addr) | |||
| { | |||
| uint32_t res; | |||
| __ASM("LDRT %0, [%1]" : "=r" (res) : "r" (addr) : "memory"); | |||
| return res; | |||
| } | |||
| __IAR_FT void __STRBT(uint8_t value, volatile uint8_t *addr) | |||
| { | |||
| __ASM("STRBT %1, [%0]" : : "r" (addr), "r" ((uint32_t)value) : "memory"); | |||
| } | |||
| __IAR_FT void __STRHT(uint16_t value, volatile uint16_t *addr) | |||
| { | |||
| __ASM("STRHT %1, [%0]" : : "r" (addr), "r" ((uint32_t)value) : "memory"); | |||
| } | |||
| __IAR_FT void __STRT(uint32_t value, volatile uint32_t *addr) | |||
| { | |||
| __ASM("STRT %1, [%0]" : : "r" (addr), "r" (value) : "memory"); | |||
| } | |||
| #endif /* (__CORTEX_M >= 0x03) */ | |||
| #if ((defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) || \ | |||
| (defined (__ARM_ARCH_8M_BASE__ ) && (__ARM_ARCH_8M_BASE__ == 1)) ) | |||
| __IAR_FT uint8_t __LDAB(volatile uint8_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("LDAB %0, [%1]" : "=r" (res) : "r" (ptr) : "memory"); | |||
| return ((uint8_t)res); | |||
| } | |||
| __IAR_FT uint16_t __LDAH(volatile uint16_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("LDAH %0, [%1]" : "=r" (res) : "r" (ptr) : "memory"); | |||
| return ((uint16_t)res); | |||
| } | |||
| __IAR_FT uint32_t __LDA(volatile uint32_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("LDA %0, [%1]" : "=r" (res) : "r" (ptr) : "memory"); | |||
| return res; | |||
| } | |||
| __IAR_FT void __STLB(uint8_t value, volatile uint8_t *ptr) | |||
| { | |||
| __ASM volatile ("STLB %1, [%0]" :: "r" (ptr), "r" (value) : "memory"); | |||
| } | |||
| __IAR_FT void __STLH(uint16_t value, volatile uint16_t *ptr) | |||
| { | |||
| __ASM volatile ("STLH %1, [%0]" :: "r" (ptr), "r" (value) : "memory"); | |||
| } | |||
| __IAR_FT void __STL(uint32_t value, volatile uint32_t *ptr) | |||
| { | |||
| __ASM volatile ("STL %1, [%0]" :: "r" (ptr), "r" (value) : "memory"); | |||
| } | |||
| __IAR_FT uint8_t __LDAEXB(volatile uint8_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("LDAEXB %0, [%1]" : "=r" (res) : "r" (ptr) : "memory"); | |||
| return ((uint8_t)res); | |||
| } | |||
| __IAR_FT uint16_t __LDAEXH(volatile uint16_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("LDAEXH %0, [%1]" : "=r" (res) : "r" (ptr) : "memory"); | |||
| return ((uint16_t)res); | |||
| } | |||
| __IAR_FT uint32_t __LDAEX(volatile uint32_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("LDAEX %0, [%1]" : "=r" (res) : "r" (ptr) : "memory"); | |||
| return res; | |||
| } | |||
| __IAR_FT uint32_t __STLEXB(uint8_t value, volatile uint8_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("STLEXB %0, %2, [%1]" : "=r" (res) : "r" (ptr), "r" (value) : "memory"); | |||
| return res; | |||
| } | |||
| __IAR_FT uint32_t __STLEXH(uint16_t value, volatile uint16_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("STLEXH %0, %2, [%1]" : "=r" (res) : "r" (ptr), "r" (value) : "memory"); | |||
| return res; | |||
| } | |||
| __IAR_FT uint32_t __STLEX(uint32_t value, volatile uint32_t *ptr) | |||
| { | |||
| uint32_t res; | |||
| __ASM volatile ("STLEX %0, %2, [%1]" : "=r" (res) : "r" (ptr), "r" (value) : "memory"); | |||
| return res; | |||
| } | |||
| #endif /* __ARM_ARCH_8M_MAIN__ or __ARM_ARCH_8M_BASE__ */ | |||
| #undef __IAR_FT | |||
| #undef __IAR_M0_FAMILY | |||
| #undef __ICCARM_V8 | |||
| #pragma diag_default=Pe940 | |||
| #pragma diag_default=Pe177 | |||
| #endif /* __CMSIS_ICCARM_H__ */ | |||
| @@ -0,0 +1,39 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_version.h | |||
| * @brief CMSIS Core(M) Version definitions | |||
| * @version V5.0.2 | |||
| * @date 19. April 2017 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2017 ARM Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef __CMSIS_VERSION_H | |||
| #define __CMSIS_VERSION_H | |||
| /* CMSIS Version definitions */ | |||
| #define __CM_CMSIS_VERSION_MAIN ( 5U) /*!< [31:16] CMSIS Core(M) main version */ | |||
| #define __CM_CMSIS_VERSION_SUB ( 1U) /*!< [15:0] CMSIS Core(M) sub version */ | |||
| #define __CM_CMSIS_VERSION ((__CM_CMSIS_VERSION_MAIN << 16U) | \ | |||
| __CM_CMSIS_VERSION_SUB ) /*!< CMSIS Core(M) version number */ | |||
| #endif | |||
| @@ -0,0 +1,949 @@ | |||
| /**************************************************************************//** | |||
| * @file core_cm0.h | |||
| * @brief CMSIS Cortex-M0 Core Peripheral Access Layer Header File | |||
| * @version V5.0.5 | |||
| * @date 28. May 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef __CORE_CM0_H_GENERIC | |||
| #define __CORE_CM0_H_GENERIC | |||
| #include <stdint.h> | |||
| #ifdef __cplusplus | |||
| extern "C" { | |||
| #endif | |||
| /** | |||
| \page CMSIS_MISRA_Exceptions MISRA-C:2004 Compliance Exceptions | |||
| CMSIS violates the following MISRA-C:2004 rules: | |||
| \li Required Rule 8.5, object/function definition in header file.<br> | |||
| Function definitions in header files are used to allow 'inlining'. | |||
| \li Required Rule 18.4, declaration of union type or object of union type: '{...}'.<br> | |||
| Unions are used for effective representation of core registers. | |||
| \li Advisory Rule 19.7, Function-like macro defined.<br> | |||
| Function-like macros are used to allow more efficient code. | |||
| */ | |||
| /******************************************************************************* | |||
| * CMSIS definitions | |||
| ******************************************************************************/ | |||
| /** | |||
| \ingroup Cortex_M0 | |||
| @{ | |||
| */ | |||
| #include "cmsis_version.h" | |||
| /* CMSIS CM0 definitions */ | |||
| #define __CM0_CMSIS_VERSION_MAIN (__CM_CMSIS_VERSION_MAIN) /*!< \deprecated [31:16] CMSIS HAL main version */ | |||
| #define __CM0_CMSIS_VERSION_SUB (__CM_CMSIS_VERSION_SUB) /*!< \deprecated [15:0] CMSIS HAL sub version */ | |||
| #define __CM0_CMSIS_VERSION ((__CM0_CMSIS_VERSION_MAIN << 16U) | \ | |||
| __CM0_CMSIS_VERSION_SUB ) /*!< \deprecated CMSIS HAL version number */ | |||
| #define __CORTEX_M (0U) /*!< Cortex-M Core */ | |||
| /** __FPU_USED indicates whether an FPU is used or not. | |||
| This core does not support an FPU at all | |||
| */ | |||
| #define __FPU_USED 0U | |||
| #if defined ( __CC_ARM ) | |||
| #if defined __TARGET_FPU_VFP | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050) | |||
| #if defined __ARM_PCS_VFP | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __GNUC__ ) | |||
| #if defined (__VFP_FP__) && !defined(__SOFTFP__) | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __ICCARM__ ) | |||
| #if defined __ARMVFP__ | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __TI_ARM__ ) | |||
| #if defined __TI_VFP_SUPPORT__ | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __TASKING__ ) | |||
| #if defined __FPU_VFP__ | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __CSMC__ ) | |||
| #if ( __CSMC__ & 0x400U) | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #endif | |||
| #include "cmsis_compiler.h" /* CMSIS compiler specific defines */ | |||
| #ifdef __cplusplus | |||
| } | |||
| #endif | |||
| #endif /* __CORE_CM0_H_GENERIC */ | |||
| #ifndef __CMSIS_GENERIC | |||
| #ifndef __CORE_CM0_H_DEPENDANT | |||
| #define __CORE_CM0_H_DEPENDANT | |||
| #ifdef __cplusplus | |||
| extern "C" { | |||
| #endif | |||
| /* check device defines and use defaults */ | |||
| #if defined __CHECK_DEVICE_DEFINES | |||
| #ifndef __CM0_REV | |||
| #define __CM0_REV 0x0000U | |||
| #warning "__CM0_REV not defined in device header file; using default!" | |||
| #endif | |||
| #ifndef __NVIC_PRIO_BITS | |||
| #define __NVIC_PRIO_BITS 2U | |||
| #warning "__NVIC_PRIO_BITS not defined in device header file; using default!" | |||
| #endif | |||
| #ifndef __Vendor_SysTickConfig | |||
| #define __Vendor_SysTickConfig 0U | |||
| #warning "__Vendor_SysTickConfig not defined in device header file; using default!" | |||
| #endif | |||
| #endif | |||
| /* IO definitions (access restrictions to peripheral registers) */ | |||
| /** | |||
| \defgroup CMSIS_glob_defs CMSIS Global Defines | |||
| <strong>IO Type Qualifiers</strong> are used | |||
| \li to specify the access to peripheral variables. | |||
| \li for automatic generation of peripheral register debug information. | |||
| */ | |||
| #ifdef __cplusplus | |||
| #define __I volatile /*!< Defines 'read only' permissions */ | |||
| #else | |||
| #define __I volatile const /*!< Defines 'read only' permissions */ | |||
| #endif | |||
| #define __O volatile /*!< Defines 'write only' permissions */ | |||
| #define __IO volatile /*!< Defines 'read / write' permissions */ | |||
| /* following defines should be used for structure members */ | |||
| #define __IM volatile const /*! Defines 'read only' structure member permissions */ | |||
| #define __OM volatile /*! Defines 'write only' structure member permissions */ | |||
| #define __IOM volatile /*! Defines 'read / write' structure member permissions */ | |||
| /*@} end of group Cortex_M0 */ | |||
| /******************************************************************************* | |||
| * Register Abstraction | |||
| Core Register contain: | |||
| - Core Register | |||
| - Core NVIC Register | |||
| - Core SCB Register | |||
| - Core SysTick Register | |||
| ******************************************************************************/ | |||
| /** | |||
| \defgroup CMSIS_core_register Defines and Type Definitions | |||
| \brief Type definitions and defines for Cortex-M processor based devices. | |||
| */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_CORE Status and Control Registers | |||
| \brief Core Register type definitions. | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Union type to access the Application Program Status Register (APSR). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t _reserved0:28; /*!< bit: 0..27 Reserved */ | |||
| uint32_t V:1; /*!< bit: 28 Overflow condition code flag */ | |||
| uint32_t C:1; /*!< bit: 29 Carry condition code flag */ | |||
| uint32_t Z:1; /*!< bit: 30 Zero condition code flag */ | |||
| uint32_t N:1; /*!< bit: 31 Negative condition code flag */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } APSR_Type; | |||
| /* APSR Register Definitions */ | |||
| #define APSR_N_Pos 31U /*!< APSR: N Position */ | |||
| #define APSR_N_Msk (1UL << APSR_N_Pos) /*!< APSR: N Mask */ | |||
| #define APSR_Z_Pos 30U /*!< APSR: Z Position */ | |||
| #define APSR_Z_Msk (1UL << APSR_Z_Pos) /*!< APSR: Z Mask */ | |||
| #define APSR_C_Pos 29U /*!< APSR: C Position */ | |||
| #define APSR_C_Msk (1UL << APSR_C_Pos) /*!< APSR: C Mask */ | |||
| #define APSR_V_Pos 28U /*!< APSR: V Position */ | |||
| #define APSR_V_Msk (1UL << APSR_V_Pos) /*!< APSR: V Mask */ | |||
| /** | |||
| \brief Union type to access the Interrupt Program Status Register (IPSR). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t ISR:9; /*!< bit: 0.. 8 Exception number */ | |||
| uint32_t _reserved0:23; /*!< bit: 9..31 Reserved */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } IPSR_Type; | |||
| /* IPSR Register Definitions */ | |||
| #define IPSR_ISR_Pos 0U /*!< IPSR: ISR Position */ | |||
| #define IPSR_ISR_Msk (0x1FFUL /*<< IPSR_ISR_Pos*/) /*!< IPSR: ISR Mask */ | |||
| /** | |||
| \brief Union type to access the Special-Purpose Program Status Registers (xPSR). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t ISR:9; /*!< bit: 0.. 8 Exception number */ | |||
| uint32_t _reserved0:15; /*!< bit: 9..23 Reserved */ | |||
| uint32_t T:1; /*!< bit: 24 Thumb bit (read 0) */ | |||
| uint32_t _reserved1:3; /*!< bit: 25..27 Reserved */ | |||
| uint32_t V:1; /*!< bit: 28 Overflow condition code flag */ | |||
| uint32_t C:1; /*!< bit: 29 Carry condition code flag */ | |||
| uint32_t Z:1; /*!< bit: 30 Zero condition code flag */ | |||
| uint32_t N:1; /*!< bit: 31 Negative condition code flag */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } xPSR_Type; | |||
| /* xPSR Register Definitions */ | |||
| #define xPSR_N_Pos 31U /*!< xPSR: N Position */ | |||
| #define xPSR_N_Msk (1UL << xPSR_N_Pos) /*!< xPSR: N Mask */ | |||
| #define xPSR_Z_Pos 30U /*!< xPSR: Z Position */ | |||
| #define xPSR_Z_Msk (1UL << xPSR_Z_Pos) /*!< xPSR: Z Mask */ | |||
| #define xPSR_C_Pos 29U /*!< xPSR: C Position */ | |||
| #define xPSR_C_Msk (1UL << xPSR_C_Pos) /*!< xPSR: C Mask */ | |||
| #define xPSR_V_Pos 28U /*!< xPSR: V Position */ | |||
| #define xPSR_V_Msk (1UL << xPSR_V_Pos) /*!< xPSR: V Mask */ | |||
| #define xPSR_T_Pos 24U /*!< xPSR: T Position */ | |||
| #define xPSR_T_Msk (1UL << xPSR_T_Pos) /*!< xPSR: T Mask */ | |||
| #define xPSR_ISR_Pos 0U /*!< xPSR: ISR Position */ | |||
| #define xPSR_ISR_Msk (0x1FFUL /*<< xPSR_ISR_Pos*/) /*!< xPSR: ISR Mask */ | |||
| /** | |||
| \brief Union type to access the Control Registers (CONTROL). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t _reserved0:1; /*!< bit: 0 Reserved */ | |||
| uint32_t SPSEL:1; /*!< bit: 1 Stack to be used */ | |||
| uint32_t _reserved1:30; /*!< bit: 2..31 Reserved */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } CONTROL_Type; | |||
| /* CONTROL Register Definitions */ | |||
| #define CONTROL_SPSEL_Pos 1U /*!< CONTROL: SPSEL Position */ | |||
| #define CONTROL_SPSEL_Msk (1UL << CONTROL_SPSEL_Pos) /*!< CONTROL: SPSEL Mask */ | |||
| /*@} end of group CMSIS_CORE */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_NVIC Nested Vectored Interrupt Controller (NVIC) | |||
| \brief Type definitions for the NVIC Registers | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Structure type to access the Nested Vectored Interrupt Controller (NVIC). | |||
| */ | |||
| typedef struct | |||
| { | |||
| __IOM uint32_t ISER[1U]; /*!< Offset: 0x000 (R/W) Interrupt Set Enable Register */ | |||
| uint32_t RESERVED0[31U]; | |||
| __IOM uint32_t ICER[1U]; /*!< Offset: 0x080 (R/W) Interrupt Clear Enable Register */ | |||
| uint32_t RSERVED1[31U]; | |||
| __IOM uint32_t ISPR[1U]; /*!< Offset: 0x100 (R/W) Interrupt Set Pending Register */ | |||
| uint32_t RESERVED2[31U]; | |||
| __IOM uint32_t ICPR[1U]; /*!< Offset: 0x180 (R/W) Interrupt Clear Pending Register */ | |||
| uint32_t RESERVED3[31U]; | |||
| uint32_t RESERVED4[64U]; | |||
| __IOM uint32_t IP[8U]; /*!< Offset: 0x300 (R/W) Interrupt Priority Register */ | |||
| } NVIC_Type; | |||
| /*@} end of group CMSIS_NVIC */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_SCB System Control Block (SCB) | |||
| \brief Type definitions for the System Control Block Registers | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Structure type to access the System Control Block (SCB). | |||
| */ | |||
| typedef struct | |||
| { | |||
| __IM uint32_t CPUID; /*!< Offset: 0x000 (R/ ) CPUID Base Register */ | |||
| __IOM uint32_t ICSR; /*!< Offset: 0x004 (R/W) Interrupt Control and State Register */ | |||
| uint32_t RESERVED0; | |||
| __IOM uint32_t AIRCR; /*!< Offset: 0x00C (R/W) Application Interrupt and Reset Control Register */ | |||
| __IOM uint32_t SCR; /*!< Offset: 0x010 (R/W) System Control Register */ | |||
| __IOM uint32_t CCR; /*!< Offset: 0x014 (R/W) Configuration Control Register */ | |||
| uint32_t RESERVED1; | |||
| __IOM uint32_t SHP[2U]; /*!< Offset: 0x01C (R/W) System Handlers Priority Registers. [0] is RESERVED */ | |||
| __IOM uint32_t SHCSR; /*!< Offset: 0x024 (R/W) System Handler Control and State Register */ | |||
| } SCB_Type; | |||
| /* SCB CPUID Register Definitions */ | |||
| #define SCB_CPUID_IMPLEMENTER_Pos 24U /*!< SCB CPUID: IMPLEMENTER Position */ | |||
| #define SCB_CPUID_IMPLEMENTER_Msk (0xFFUL << SCB_CPUID_IMPLEMENTER_Pos) /*!< SCB CPUID: IMPLEMENTER Mask */ | |||
| #define SCB_CPUID_VARIANT_Pos 20U /*!< SCB CPUID: VARIANT Position */ | |||
| #define SCB_CPUID_VARIANT_Msk (0xFUL << SCB_CPUID_VARIANT_Pos) /*!< SCB CPUID: VARIANT Mask */ | |||
| #define SCB_CPUID_ARCHITECTURE_Pos 16U /*!< SCB CPUID: ARCHITECTURE Position */ | |||
| #define SCB_CPUID_ARCHITECTURE_Msk (0xFUL << SCB_CPUID_ARCHITECTURE_Pos) /*!< SCB CPUID: ARCHITECTURE Mask */ | |||
| #define SCB_CPUID_PARTNO_Pos 4U /*!< SCB CPUID: PARTNO Position */ | |||
| #define SCB_CPUID_PARTNO_Msk (0xFFFUL << SCB_CPUID_PARTNO_Pos) /*!< SCB CPUID: PARTNO Mask */ | |||
| #define SCB_CPUID_REVISION_Pos 0U /*!< SCB CPUID: REVISION Position */ | |||
| #define SCB_CPUID_REVISION_Msk (0xFUL /*<< SCB_CPUID_REVISION_Pos*/) /*!< SCB CPUID: REVISION Mask */ | |||
| /* SCB Interrupt Control State Register Definitions */ | |||
| #define SCB_ICSR_NMIPENDSET_Pos 31U /*!< SCB ICSR: NMIPENDSET Position */ | |||
| #define SCB_ICSR_NMIPENDSET_Msk (1UL << SCB_ICSR_NMIPENDSET_Pos) /*!< SCB ICSR: NMIPENDSET Mask */ | |||
| #define SCB_ICSR_PENDSVSET_Pos 28U /*!< SCB ICSR: PENDSVSET Position */ | |||
| #define SCB_ICSR_PENDSVSET_Msk (1UL << SCB_ICSR_PENDSVSET_Pos) /*!< SCB ICSR: PENDSVSET Mask */ | |||
| #define SCB_ICSR_PENDSVCLR_Pos 27U /*!< SCB ICSR: PENDSVCLR Position */ | |||
| #define SCB_ICSR_PENDSVCLR_Msk (1UL << SCB_ICSR_PENDSVCLR_Pos) /*!< SCB ICSR: PENDSVCLR Mask */ | |||
| #define SCB_ICSR_PENDSTSET_Pos 26U /*!< SCB ICSR: PENDSTSET Position */ | |||
| #define SCB_ICSR_PENDSTSET_Msk (1UL << SCB_ICSR_PENDSTSET_Pos) /*!< SCB ICSR: PENDSTSET Mask */ | |||
| #define SCB_ICSR_PENDSTCLR_Pos 25U /*!< SCB ICSR: PENDSTCLR Position */ | |||
| #define SCB_ICSR_PENDSTCLR_Msk (1UL << SCB_ICSR_PENDSTCLR_Pos) /*!< SCB ICSR: PENDSTCLR Mask */ | |||
| #define SCB_ICSR_ISRPREEMPT_Pos 23U /*!< SCB ICSR: ISRPREEMPT Position */ | |||
| #define SCB_ICSR_ISRPREEMPT_Msk (1UL << SCB_ICSR_ISRPREEMPT_Pos) /*!< SCB ICSR: ISRPREEMPT Mask */ | |||
| #define SCB_ICSR_ISRPENDING_Pos 22U /*!< SCB ICSR: ISRPENDING Position */ | |||
| #define SCB_ICSR_ISRPENDING_Msk (1UL << SCB_ICSR_ISRPENDING_Pos) /*!< SCB ICSR: ISRPENDING Mask */ | |||
| #define SCB_ICSR_VECTPENDING_Pos 12U /*!< SCB ICSR: VECTPENDING Position */ | |||
| #define SCB_ICSR_VECTPENDING_Msk (0x1FFUL << SCB_ICSR_VECTPENDING_Pos) /*!< SCB ICSR: VECTPENDING Mask */ | |||
| #define SCB_ICSR_VECTACTIVE_Pos 0U /*!< SCB ICSR: VECTACTIVE Position */ | |||
| #define SCB_ICSR_VECTACTIVE_Msk (0x1FFUL /*<< SCB_ICSR_VECTACTIVE_Pos*/) /*!< SCB ICSR: VECTACTIVE Mask */ | |||
| /* SCB Application Interrupt and Reset Control Register Definitions */ | |||
| #define SCB_AIRCR_VECTKEY_Pos 16U /*!< SCB AIRCR: VECTKEY Position */ | |||
| #define SCB_AIRCR_VECTKEY_Msk (0xFFFFUL << SCB_AIRCR_VECTKEY_Pos) /*!< SCB AIRCR: VECTKEY Mask */ | |||
| #define SCB_AIRCR_VECTKEYSTAT_Pos 16U /*!< SCB AIRCR: VECTKEYSTAT Position */ | |||
| #define SCB_AIRCR_VECTKEYSTAT_Msk (0xFFFFUL << SCB_AIRCR_VECTKEYSTAT_Pos) /*!< SCB AIRCR: VECTKEYSTAT Mask */ | |||
| #define SCB_AIRCR_ENDIANESS_Pos 15U /*!< SCB AIRCR: ENDIANESS Position */ | |||
| #define SCB_AIRCR_ENDIANESS_Msk (1UL << SCB_AIRCR_ENDIANESS_Pos) /*!< SCB AIRCR: ENDIANESS Mask */ | |||
| #define SCB_AIRCR_SYSRESETREQ_Pos 2U /*!< SCB AIRCR: SYSRESETREQ Position */ | |||
| #define SCB_AIRCR_SYSRESETREQ_Msk (1UL << SCB_AIRCR_SYSRESETREQ_Pos) /*!< SCB AIRCR: SYSRESETREQ Mask */ | |||
| #define SCB_AIRCR_VECTCLRACTIVE_Pos 1U /*!< SCB AIRCR: VECTCLRACTIVE Position */ | |||
| #define SCB_AIRCR_VECTCLRACTIVE_Msk (1UL << SCB_AIRCR_VECTCLRACTIVE_Pos) /*!< SCB AIRCR: VECTCLRACTIVE Mask */ | |||
| /* SCB System Control Register Definitions */ | |||
| #define SCB_SCR_SEVONPEND_Pos 4U /*!< SCB SCR: SEVONPEND Position */ | |||
| #define SCB_SCR_SEVONPEND_Msk (1UL << SCB_SCR_SEVONPEND_Pos) /*!< SCB SCR: SEVONPEND Mask */ | |||
| #define SCB_SCR_SLEEPDEEP_Pos 2U /*!< SCB SCR: SLEEPDEEP Position */ | |||
| #define SCB_SCR_SLEEPDEEP_Msk (1UL << SCB_SCR_SLEEPDEEP_Pos) /*!< SCB SCR: SLEEPDEEP Mask */ | |||
| #define SCB_SCR_SLEEPONEXIT_Pos 1U /*!< SCB SCR: SLEEPONEXIT Position */ | |||
| #define SCB_SCR_SLEEPONEXIT_Msk (1UL << SCB_SCR_SLEEPONEXIT_Pos) /*!< SCB SCR: SLEEPONEXIT Mask */ | |||
| /* SCB Configuration Control Register Definitions */ | |||
| #define SCB_CCR_STKALIGN_Pos 9U /*!< SCB CCR: STKALIGN Position */ | |||
| #define SCB_CCR_STKALIGN_Msk (1UL << SCB_CCR_STKALIGN_Pos) /*!< SCB CCR: STKALIGN Mask */ | |||
| #define SCB_CCR_UNALIGN_TRP_Pos 3U /*!< SCB CCR: UNALIGN_TRP Position */ | |||
| #define SCB_CCR_UNALIGN_TRP_Msk (1UL << SCB_CCR_UNALIGN_TRP_Pos) /*!< SCB CCR: UNALIGN_TRP Mask */ | |||
| /* SCB System Handler Control and State Register Definitions */ | |||
| #define SCB_SHCSR_SVCALLPENDED_Pos 15U /*!< SCB SHCSR: SVCALLPENDED Position */ | |||
| #define SCB_SHCSR_SVCALLPENDED_Msk (1UL << SCB_SHCSR_SVCALLPENDED_Pos) /*!< SCB SHCSR: SVCALLPENDED Mask */ | |||
| /*@} end of group CMSIS_SCB */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_SysTick System Tick Timer (SysTick) | |||
| \brief Type definitions for the System Timer Registers. | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Structure type to access the System Timer (SysTick). | |||
| */ | |||
| typedef struct | |||
| { | |||
| __IOM uint32_t CTRL; /*!< Offset: 0x000 (R/W) SysTick Control and Status Register */ | |||
| __IOM uint32_t LOAD; /*!< Offset: 0x004 (R/W) SysTick Reload Value Register */ | |||
| __IOM uint32_t VAL; /*!< Offset: 0x008 (R/W) SysTick Current Value Register */ | |||
| __IM uint32_t CALIB; /*!< Offset: 0x00C (R/ ) SysTick Calibration Register */ | |||
| } SysTick_Type; | |||
| /* SysTick Control / Status Register Definitions */ | |||
| #define SysTick_CTRL_COUNTFLAG_Pos 16U /*!< SysTick CTRL: COUNTFLAG Position */ | |||
| #define SysTick_CTRL_COUNTFLAG_Msk (1UL << SysTick_CTRL_COUNTFLAG_Pos) /*!< SysTick CTRL: COUNTFLAG Mask */ | |||
| #define SysTick_CTRL_CLKSOURCE_Pos 2U /*!< SysTick CTRL: CLKSOURCE Position */ | |||
| #define SysTick_CTRL_CLKSOURCE_Msk (1UL << SysTick_CTRL_CLKSOURCE_Pos) /*!< SysTick CTRL: CLKSOURCE Mask */ | |||
| #define SysTick_CTRL_TICKINT_Pos 1U /*!< SysTick CTRL: TICKINT Position */ | |||
| #define SysTick_CTRL_TICKINT_Msk (1UL << SysTick_CTRL_TICKINT_Pos) /*!< SysTick CTRL: TICKINT Mask */ | |||
| #define SysTick_CTRL_ENABLE_Pos 0U /*!< SysTick CTRL: ENABLE Position */ | |||
| #define SysTick_CTRL_ENABLE_Msk (1UL /*<< SysTick_CTRL_ENABLE_Pos*/) /*!< SysTick CTRL: ENABLE Mask */ | |||
| /* SysTick Reload Register Definitions */ | |||
| #define SysTick_LOAD_RELOAD_Pos 0U /*!< SysTick LOAD: RELOAD Position */ | |||
| #define SysTick_LOAD_RELOAD_Msk (0xFFFFFFUL /*<< SysTick_LOAD_RELOAD_Pos*/) /*!< SysTick LOAD: RELOAD Mask */ | |||
| /* SysTick Current Register Definitions */ | |||
| #define SysTick_VAL_CURRENT_Pos 0U /*!< SysTick VAL: CURRENT Position */ | |||
| #define SysTick_VAL_CURRENT_Msk (0xFFFFFFUL /*<< SysTick_VAL_CURRENT_Pos*/) /*!< SysTick VAL: CURRENT Mask */ | |||
| /* SysTick Calibration Register Definitions */ | |||
| #define SysTick_CALIB_NOREF_Pos 31U /*!< SysTick CALIB: NOREF Position */ | |||
| #define SysTick_CALIB_NOREF_Msk (1UL << SysTick_CALIB_NOREF_Pos) /*!< SysTick CALIB: NOREF Mask */ | |||
| #define SysTick_CALIB_SKEW_Pos 30U /*!< SysTick CALIB: SKEW Position */ | |||
| #define SysTick_CALIB_SKEW_Msk (1UL << SysTick_CALIB_SKEW_Pos) /*!< SysTick CALIB: SKEW Mask */ | |||
| #define SysTick_CALIB_TENMS_Pos 0U /*!< SysTick CALIB: TENMS Position */ | |||
| #define SysTick_CALIB_TENMS_Msk (0xFFFFFFUL /*<< SysTick_CALIB_TENMS_Pos*/) /*!< SysTick CALIB: TENMS Mask */ | |||
| /*@} end of group CMSIS_SysTick */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_CoreDebug Core Debug Registers (CoreDebug) | |||
| \brief Cortex-M0 Core Debug Registers (DCB registers, SHCSR, and DFSR) are only accessible over DAP and not via processor. | |||
| Therefore they are not covered by the Cortex-M0 header file. | |||
| @{ | |||
| */ | |||
| /*@} end of group CMSIS_CoreDebug */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_core_bitfield Core register bit field macros | |||
| \brief Macros for use with bit field definitions (xxx_Pos, xxx_Msk). | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Mask and shift a bit field value for use in a register bit range. | |||
| \param[in] field Name of the register bit field. | |||
| \param[in] value Value of the bit field. This parameter is interpreted as an uint32_t type. | |||
| \return Masked and shifted value. | |||
| */ | |||
| #define _VAL2FLD(field, value) (((uint32_t)(value) << field ## _Pos) & field ## _Msk) | |||
| /** | |||
| \brief Mask and shift a register value to extract a bit filed value. | |||
| \param[in] field Name of the register bit field. | |||
| \param[in] value Value of register. This parameter is interpreted as an uint32_t type. | |||
| \return Masked and shifted bit field value. | |||
| */ | |||
| #define _FLD2VAL(field, value) (((uint32_t)(value) & field ## _Msk) >> field ## _Pos) | |||
| /*@} end of group CMSIS_core_bitfield */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_core_base Core Definitions | |||
| \brief Definitions for base addresses, unions, and structures. | |||
| @{ | |||
| */ | |||
| /* Memory mapping of Core Hardware */ | |||
| #define SCS_BASE (0xE000E000UL) /*!< System Control Space Base Address */ | |||
| #define SysTick_BASE (SCS_BASE + 0x0010UL) /*!< SysTick Base Address */ | |||
| #define NVIC_BASE (SCS_BASE + 0x0100UL) /*!< NVIC Base Address */ | |||
| #define SCB_BASE (SCS_BASE + 0x0D00UL) /*!< System Control Block Base Address */ | |||
| #define SCB ((SCB_Type *) SCB_BASE ) /*!< SCB configuration struct */ | |||
| #define SysTick ((SysTick_Type *) SysTick_BASE ) /*!< SysTick configuration struct */ | |||
| #define NVIC ((NVIC_Type *) NVIC_BASE ) /*!< NVIC configuration struct */ | |||
| /*@} */ | |||
| /******************************************************************************* | |||
| * Hardware Abstraction Layer | |||
| Core Function Interface contains: | |||
| - Core NVIC Functions | |||
| - Core SysTick Functions | |||
| - Core Register Access Functions | |||
| ******************************************************************************/ | |||
| /** | |||
| \defgroup CMSIS_Core_FunctionInterface Functions and Instructions Reference | |||
| */ | |||
| /* ########################## NVIC functions #################################### */ | |||
| /** | |||
| \ingroup CMSIS_Core_FunctionInterface | |||
| \defgroup CMSIS_Core_NVICFunctions NVIC Functions | |||
| \brief Functions that manage interrupts and exceptions via the NVIC. | |||
| @{ | |||
| */ | |||
| #ifdef CMSIS_NVIC_VIRTUAL | |||
| #ifndef CMSIS_NVIC_VIRTUAL_HEADER_FILE | |||
| #define CMSIS_NVIC_VIRTUAL_HEADER_FILE "cmsis_nvic_virtual.h" | |||
| #endif | |||
| #include CMSIS_NVIC_VIRTUAL_HEADER_FILE | |||
| #else | |||
| #define NVIC_SetPriorityGrouping __NVIC_SetPriorityGrouping | |||
| #define NVIC_GetPriorityGrouping __NVIC_GetPriorityGrouping | |||
| #define NVIC_EnableIRQ __NVIC_EnableIRQ | |||
| #define NVIC_GetEnableIRQ __NVIC_GetEnableIRQ | |||
| #define NVIC_DisableIRQ __NVIC_DisableIRQ | |||
| #define NVIC_GetPendingIRQ __NVIC_GetPendingIRQ | |||
| #define NVIC_SetPendingIRQ __NVIC_SetPendingIRQ | |||
| #define NVIC_ClearPendingIRQ __NVIC_ClearPendingIRQ | |||
| /*#define NVIC_GetActive __NVIC_GetActive not available for Cortex-M0 */ | |||
| #define NVIC_SetPriority __NVIC_SetPriority | |||
| #define NVIC_GetPriority __NVIC_GetPriority | |||
| #define NVIC_SystemReset __NVIC_SystemReset | |||
| #endif /* CMSIS_NVIC_VIRTUAL */ | |||
| #ifdef CMSIS_VECTAB_VIRTUAL | |||
| #ifndef CMSIS_VECTAB_VIRTUAL_HEADER_FILE | |||
| #define CMSIS_VECTAB_VIRTUAL_HEADER_FILE "cmsis_vectab_virtual.h" | |||
| #endif | |||
| #include CMSIS_VECTAB_VIRTUAL_HEADER_FILE | |||
| #else | |||
| #define NVIC_SetVector __NVIC_SetVector | |||
| #define NVIC_GetVector __NVIC_GetVector | |||
| #endif /* (CMSIS_VECTAB_VIRTUAL) */ | |||
| #define NVIC_USER_IRQ_OFFSET 16 | |||
| /* The following EXC_RETURN values are saved the LR on exception entry */ | |||
| #define EXC_RETURN_HANDLER (0xFFFFFFF1UL) /* return to Handler mode, uses MSP after return */ | |||
| #define EXC_RETURN_THREAD_MSP (0xFFFFFFF9UL) /* return to Thread mode, uses MSP after return */ | |||
| #define EXC_RETURN_THREAD_PSP (0xFFFFFFFDUL) /* return to Thread mode, uses PSP after return */ | |||
| /* Interrupt Priorities are WORD accessible only under Armv6-M */ | |||
| /* The following MACROS handle generation of the register offset and byte masks */ | |||
| #define _BIT_SHIFT(IRQn) ( ((((uint32_t)(int32_t)(IRQn)) ) & 0x03UL) * 8UL) | |||
| #define _SHP_IDX(IRQn) ( (((((uint32_t)(int32_t)(IRQn)) & 0x0FUL)-8UL) >> 2UL) ) | |||
| #define _IP_IDX(IRQn) ( (((uint32_t)(int32_t)(IRQn)) >> 2UL) ) | |||
| #define __NVIC_SetPriorityGrouping(X) (void)(X) | |||
| #define __NVIC_GetPriorityGrouping() (0U) | |||
| /** | |||
| \brief Enable Interrupt | |||
| \details Enables a device specific interrupt in the NVIC interrupt controller. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_EnableIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ISER[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| } | |||
| } | |||
| /** | |||
| \brief Get Interrupt Enable status | |||
| \details Returns a device specific interrupt enable status from the NVIC interrupt controller. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \return 0 Interrupt is not enabled. | |||
| \return 1 Interrupt is enabled. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetEnableIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| return((uint32_t)(((NVIC->ISER[0U] & (1UL << (((uint32_t)IRQn) & 0x1FUL))) != 0UL) ? 1UL : 0UL)); | |||
| } | |||
| else | |||
| { | |||
| return(0U); | |||
| } | |||
| } | |||
| /** | |||
| \brief Disable Interrupt | |||
| \details Disables a device specific interrupt in the NVIC interrupt controller. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_DisableIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ICER[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| __DSB(); | |||
| __ISB(); | |||
| } | |||
| } | |||
| /** | |||
| \brief Get Pending Interrupt | |||
| \details Reads the NVIC pending register and returns the pending bit for the specified device specific interrupt. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \return 0 Interrupt status is not pending. | |||
| \return 1 Interrupt status is pending. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetPendingIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| return((uint32_t)(((NVIC->ISPR[0U] & (1UL << (((uint32_t)IRQn) & 0x1FUL))) != 0UL) ? 1UL : 0UL)); | |||
| } | |||
| else | |||
| { | |||
| return(0U); | |||
| } | |||
| } | |||
| /** | |||
| \brief Set Pending Interrupt | |||
| \details Sets the pending bit of a device specific interrupt in the NVIC pending register. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_SetPendingIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ISPR[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| } | |||
| } | |||
| /** | |||
| \brief Clear Pending Interrupt | |||
| \details Clears the pending bit of a device specific interrupt in the NVIC pending register. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_ClearPendingIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ICPR[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| } | |||
| } | |||
| /** | |||
| \brief Set Interrupt Priority | |||
| \details Sets the priority of a device specific interrupt or a processor exception. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| \param [in] IRQn Interrupt number. | |||
| \param [in] priority Priority to set. | |||
| \note The priority cannot be set for every processor exception. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_SetPriority(IRQn_Type IRQn, uint32_t priority) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->IP[_IP_IDX(IRQn)] = ((uint32_t)(NVIC->IP[_IP_IDX(IRQn)] & ~(0xFFUL << _BIT_SHIFT(IRQn))) | | |||
| (((priority << (8U - __NVIC_PRIO_BITS)) & (uint32_t)0xFFUL) << _BIT_SHIFT(IRQn))); | |||
| } | |||
| else | |||
| { | |||
| SCB->SHP[_SHP_IDX(IRQn)] = ((uint32_t)(SCB->SHP[_SHP_IDX(IRQn)] & ~(0xFFUL << _BIT_SHIFT(IRQn))) | | |||
| (((priority << (8U - __NVIC_PRIO_BITS)) & (uint32_t)0xFFUL) << _BIT_SHIFT(IRQn))); | |||
| } | |||
| } | |||
| /** | |||
| \brief Get Interrupt Priority | |||
| \details Reads the priority of a device specific interrupt or a processor exception. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| \param [in] IRQn Interrupt number. | |||
| \return Interrupt Priority. | |||
| Value is aligned automatically to the implemented priority bits of the microcontroller. | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetPriority(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| return((uint32_t)(((NVIC->IP[ _IP_IDX(IRQn)] >> _BIT_SHIFT(IRQn) ) & (uint32_t)0xFFUL) >> (8U - __NVIC_PRIO_BITS))); | |||
| } | |||
| else | |||
| { | |||
| return((uint32_t)(((SCB->SHP[_SHP_IDX(IRQn)] >> _BIT_SHIFT(IRQn) ) & (uint32_t)0xFFUL) >> (8U - __NVIC_PRIO_BITS))); | |||
| } | |||
| } | |||
| /** | |||
| \brief Encode Priority | |||
| \details Encodes the priority for an interrupt with the given priority group, | |||
| preemptive priority value, and subpriority value. | |||
| In case of a conflict between priority grouping and available | |||
| priority bits (__NVIC_PRIO_BITS), the smallest possible priority group is set. | |||
| \param [in] PriorityGroup Used priority group. | |||
| \param [in] PreemptPriority Preemptive priority value (starting from 0). | |||
| \param [in] SubPriority Subpriority value (starting from 0). | |||
| \return Encoded priority. Value can be used in the function \ref NVIC_SetPriority(). | |||
| */ | |||
| __STATIC_INLINE uint32_t NVIC_EncodePriority (uint32_t PriorityGroup, uint32_t PreemptPriority, uint32_t SubPriority) | |||
| { | |||
| uint32_t PriorityGroupTmp = (PriorityGroup & (uint32_t)0x07UL); /* only values 0..7 are used */ | |||
| uint32_t PreemptPriorityBits; | |||
| uint32_t SubPriorityBits; | |||
| PreemptPriorityBits = ((7UL - PriorityGroupTmp) > (uint32_t)(__NVIC_PRIO_BITS)) ? (uint32_t)(__NVIC_PRIO_BITS) : (uint32_t)(7UL - PriorityGroupTmp); | |||
| SubPriorityBits = ((PriorityGroupTmp + (uint32_t)(__NVIC_PRIO_BITS)) < (uint32_t)7UL) ? (uint32_t)0UL : (uint32_t)((PriorityGroupTmp - 7UL) + (uint32_t)(__NVIC_PRIO_BITS)); | |||
| return ( | |||
| ((PreemptPriority & (uint32_t)((1UL << (PreemptPriorityBits)) - 1UL)) << SubPriorityBits) | | |||
| ((SubPriority & (uint32_t)((1UL << (SubPriorityBits )) - 1UL))) | |||
| ); | |||
| } | |||
| /** | |||
| \brief Decode Priority | |||
| \details Decodes an interrupt priority value with a given priority group to | |||
| preemptive priority value and subpriority value. | |||
| In case of a conflict between priority grouping and available | |||
| priority bits (__NVIC_PRIO_BITS) the smallest possible priority group is set. | |||
| \param [in] Priority Priority value, which can be retrieved with the function \ref NVIC_GetPriority(). | |||
| \param [in] PriorityGroup Used priority group. | |||
| \param [out] pPreemptPriority Preemptive priority value (starting from 0). | |||
| \param [out] pSubPriority Subpriority value (starting from 0). | |||
| */ | |||
| __STATIC_INLINE void NVIC_DecodePriority (uint32_t Priority, uint32_t PriorityGroup, uint32_t* const pPreemptPriority, uint32_t* const pSubPriority) | |||
| { | |||
| uint32_t PriorityGroupTmp = (PriorityGroup & (uint32_t)0x07UL); /* only values 0..7 are used */ | |||
| uint32_t PreemptPriorityBits; | |||
| uint32_t SubPriorityBits; | |||
| PreemptPriorityBits = ((7UL - PriorityGroupTmp) > (uint32_t)(__NVIC_PRIO_BITS)) ? (uint32_t)(__NVIC_PRIO_BITS) : (uint32_t)(7UL - PriorityGroupTmp); | |||
| SubPriorityBits = ((PriorityGroupTmp + (uint32_t)(__NVIC_PRIO_BITS)) < (uint32_t)7UL) ? (uint32_t)0UL : (uint32_t)((PriorityGroupTmp - 7UL) + (uint32_t)(__NVIC_PRIO_BITS)); | |||
| *pPreemptPriority = (Priority >> SubPriorityBits) & (uint32_t)((1UL << (PreemptPriorityBits)) - 1UL); | |||
| *pSubPriority = (Priority ) & (uint32_t)((1UL << (SubPriorityBits )) - 1UL); | |||
| } | |||
| /** | |||
| \brief Set Interrupt Vector | |||
| \details Sets an interrupt vector in SRAM based interrupt vector table. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| Address 0 must be mapped to SRAM. | |||
| \param [in] IRQn Interrupt number | |||
| \param [in] vector Address of interrupt handler function | |||
| */ | |||
| __STATIC_INLINE void __NVIC_SetVector(IRQn_Type IRQn, uint32_t vector) | |||
| { | |||
| uint32_t *vectors = (uint32_t *)0x0U; | |||
| vectors[(int32_t)IRQn + NVIC_USER_IRQ_OFFSET] = vector; | |||
| } | |||
| /** | |||
| \brief Get Interrupt Vector | |||
| \details Reads an interrupt vector from interrupt vector table. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| \param [in] IRQn Interrupt number. | |||
| \return Address of interrupt handler function | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetVector(IRQn_Type IRQn) | |||
| { | |||
| uint32_t *vectors = (uint32_t *)0x0U; | |||
| return vectors[(int32_t)IRQn + NVIC_USER_IRQ_OFFSET]; | |||
| } | |||
| /** | |||
| \brief System Reset | |||
| \details Initiates a system reset request to reset the MCU. | |||
| */ | |||
| __NO_RETURN __STATIC_INLINE void __NVIC_SystemReset(void) | |||
| { | |||
| __DSB(); /* Ensure all outstanding memory accesses included | |||
| buffered write are completed before reset */ | |||
| SCB->AIRCR = ((0x5FAUL << SCB_AIRCR_VECTKEY_Pos) | | |||
| SCB_AIRCR_SYSRESETREQ_Msk); | |||
| __DSB(); /* Ensure completion of memory access */ | |||
| for(;;) /* wait until reset */ | |||
| { | |||
| __NOP(); | |||
| } | |||
| } | |||
| /*@} end of CMSIS_Core_NVICFunctions */ | |||
| /* ########################## FPU functions #################################### */ | |||
| /** | |||
| \ingroup CMSIS_Core_FunctionInterface | |||
| \defgroup CMSIS_Core_FpuFunctions FPU Functions | |||
| \brief Function that provides FPU type. | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief get FPU type | |||
| \details returns the FPU type | |||
| \returns | |||
| - \b 0: No FPU | |||
| - \b 1: Single precision FPU | |||
| - \b 2: Double + Single precision FPU | |||
| */ | |||
| __STATIC_INLINE uint32_t SCB_GetFPUType(void) | |||
| { | |||
| return 0U; /* No FPU */ | |||
| } | |||
| /*@} end of CMSIS_Core_FpuFunctions */ | |||
| /* ################################## SysTick function ############################################ */ | |||
| /** | |||
| \ingroup CMSIS_Core_FunctionInterface | |||
| \defgroup CMSIS_Core_SysTickFunctions SysTick Functions | |||
| \brief Functions that configure the System. | |||
| @{ | |||
| */ | |||
| #if defined (__Vendor_SysTickConfig) && (__Vendor_SysTickConfig == 0U) | |||
| /** | |||
| \brief System Tick Configuration | |||
| \details Initializes the System Timer and its interrupt, and starts the System Tick Timer. | |||
| Counter is in free running mode to generate periodic interrupts. | |||
| \param [in] ticks Number of ticks between two interrupts. | |||
| \return 0 Function succeeded. | |||
| \return 1 Function failed. | |||
| \note When the variable <b>__Vendor_SysTickConfig</b> is set to 1, then the | |||
| function <b>SysTick_Config</b> is not included. In this case, the file <b><i>device</i>.h</b> | |||
| must contain a vendor-specific implementation of this function. | |||
| */ | |||
| __STATIC_INLINE uint32_t SysTick_Config(uint32_t ticks) | |||
| { | |||
| if ((ticks - 1UL) > SysTick_LOAD_RELOAD_Msk) | |||
| { | |||
| return (1UL); /* Reload value impossible */ | |||
| } | |||
| SysTick->LOAD = (uint32_t)(ticks - 1UL); /* set reload register */ | |||
| NVIC_SetPriority (SysTick_IRQn, (1UL << __NVIC_PRIO_BITS) - 1UL); /* set Priority for Systick Interrupt */ | |||
| SysTick->VAL = 0UL; /* Load the SysTick Counter Value */ | |||
| SysTick->CTRL = SysTick_CTRL_CLKSOURCE_Msk | | |||
| SysTick_CTRL_TICKINT_Msk | | |||
| SysTick_CTRL_ENABLE_Msk; /* Enable SysTick IRQ and SysTick Timer */ | |||
| return (0UL); /* Function successful */ | |||
| } | |||
| #endif | |||
| /*@} end of CMSIS_Core_SysTickFunctions */ | |||
| #ifdef __cplusplus | |||
| } | |||
| #endif | |||
| #endif /* __CORE_CM0_H_DEPENDANT */ | |||
| #endif /* __CMSIS_GENERIC */ | |||
| @@ -0,0 +1,976 @@ | |||
| /**************************************************************************//** | |||
| * @file core_cm1.h | |||
| * @brief CMSIS Cortex-M1 Core Peripheral Access Layer Header File | |||
| * @version V1.0.0 | |||
| * @date 23. July 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef __CORE_CM1_H_GENERIC | |||
| #define __CORE_CM1_H_GENERIC | |||
| #include <stdint.h> | |||
| #ifdef __cplusplus | |||
| extern "C" { | |||
| #endif | |||
| /** | |||
| \page CMSIS_MISRA_Exceptions MISRA-C:2004 Compliance Exceptions | |||
| CMSIS violates the following MISRA-C:2004 rules: | |||
| \li Required Rule 8.5, object/function definition in header file.<br> | |||
| Function definitions in header files are used to allow 'inlining'. | |||
| \li Required Rule 18.4, declaration of union type or object of union type: '{...}'.<br> | |||
| Unions are used for effective representation of core registers. | |||
| \li Advisory Rule 19.7, Function-like macro defined.<br> | |||
| Function-like macros are used to allow more efficient code. | |||
| */ | |||
| /******************************************************************************* | |||
| * CMSIS definitions | |||
| ******************************************************************************/ | |||
| /** | |||
| \ingroup Cortex_M1 | |||
| @{ | |||
| */ | |||
| #include "cmsis_version.h" | |||
| /* CMSIS CM1 definitions */ | |||
| #define __CM1_CMSIS_VERSION_MAIN (__CM_CMSIS_VERSION_MAIN) /*!< \deprecated [31:16] CMSIS HAL main version */ | |||
| #define __CM1_CMSIS_VERSION_SUB (__CM_CMSIS_VERSION_SUB) /*!< \deprecated [15:0] CMSIS HAL sub version */ | |||
| #define __CM1_CMSIS_VERSION ((__CM1_CMSIS_VERSION_MAIN << 16U) | \ | |||
| __CM1_CMSIS_VERSION_SUB ) /*!< \deprecated CMSIS HAL version number */ | |||
| #define __CORTEX_M (1U) /*!< Cortex-M Core */ | |||
| /** __FPU_USED indicates whether an FPU is used or not. | |||
| This core does not support an FPU at all | |||
| */ | |||
| #define __FPU_USED 0U | |||
| #if defined ( __CC_ARM ) | |||
| #if defined __TARGET_FPU_VFP | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050) | |||
| #if defined __ARM_PCS_VFP | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __GNUC__ ) | |||
| #if defined (__VFP_FP__) && !defined(__SOFTFP__) | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __ICCARM__ ) | |||
| #if defined __ARMVFP__ | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __TI_ARM__ ) | |||
| #if defined __TI_VFP_SUPPORT__ | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __TASKING__ ) | |||
| #if defined __FPU_VFP__ | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #elif defined ( __CSMC__ ) | |||
| #if ( __CSMC__ & 0x400U) | |||
| #error "Compiler generates FPU instructions for a device without an FPU (check __FPU_PRESENT)" | |||
| #endif | |||
| #endif | |||
| #include "cmsis_compiler.h" /* CMSIS compiler specific defines */ | |||
| #ifdef __cplusplus | |||
| } | |||
| #endif | |||
| #endif /* __CORE_CM1_H_GENERIC */ | |||
| #ifndef __CMSIS_GENERIC | |||
| #ifndef __CORE_CM1_H_DEPENDANT | |||
| #define __CORE_CM1_H_DEPENDANT | |||
| #ifdef __cplusplus | |||
| extern "C" { | |||
| #endif | |||
| /* check device defines and use defaults */ | |||
| #if defined __CHECK_DEVICE_DEFINES | |||
| #ifndef __CM1_REV | |||
| #define __CM1_REV 0x0100U | |||
| #warning "__CM1_REV not defined in device header file; using default!" | |||
| #endif | |||
| #ifndef __NVIC_PRIO_BITS | |||
| #define __NVIC_PRIO_BITS 2U | |||
| #warning "__NVIC_PRIO_BITS not defined in device header file; using default!" | |||
| #endif | |||
| #ifndef __Vendor_SysTickConfig | |||
| #define __Vendor_SysTickConfig 0U | |||
| #warning "__Vendor_SysTickConfig not defined in device header file; using default!" | |||
| #endif | |||
| #endif | |||
| /* IO definitions (access restrictions to peripheral registers) */ | |||
| /** | |||
| \defgroup CMSIS_glob_defs CMSIS Global Defines | |||
| <strong>IO Type Qualifiers</strong> are used | |||
| \li to specify the access to peripheral variables. | |||
| \li for automatic generation of peripheral register debug information. | |||
| */ | |||
| #ifdef __cplusplus | |||
| #define __I volatile /*!< Defines 'read only' permissions */ | |||
| #else | |||
| #define __I volatile const /*!< Defines 'read only' permissions */ | |||
| #endif | |||
| #define __O volatile /*!< Defines 'write only' permissions */ | |||
| #define __IO volatile /*!< Defines 'read / write' permissions */ | |||
| /* following defines should be used for structure members */ | |||
| #define __IM volatile const /*! Defines 'read only' structure member permissions */ | |||
| #define __OM volatile /*! Defines 'write only' structure member permissions */ | |||
| #define __IOM volatile /*! Defines 'read / write' structure member permissions */ | |||
| /*@} end of group Cortex_M1 */ | |||
| /******************************************************************************* | |||
| * Register Abstraction | |||
| Core Register contain: | |||
| - Core Register | |||
| - Core NVIC Register | |||
| - Core SCB Register | |||
| - Core SysTick Register | |||
| ******************************************************************************/ | |||
| /** | |||
| \defgroup CMSIS_core_register Defines and Type Definitions | |||
| \brief Type definitions and defines for Cortex-M processor based devices. | |||
| */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_CORE Status and Control Registers | |||
| \brief Core Register type definitions. | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Union type to access the Application Program Status Register (APSR). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t _reserved0:28; /*!< bit: 0..27 Reserved */ | |||
| uint32_t V:1; /*!< bit: 28 Overflow condition code flag */ | |||
| uint32_t C:1; /*!< bit: 29 Carry condition code flag */ | |||
| uint32_t Z:1; /*!< bit: 30 Zero condition code flag */ | |||
| uint32_t N:1; /*!< bit: 31 Negative condition code flag */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } APSR_Type; | |||
| /* APSR Register Definitions */ | |||
| #define APSR_N_Pos 31U /*!< APSR: N Position */ | |||
| #define APSR_N_Msk (1UL << APSR_N_Pos) /*!< APSR: N Mask */ | |||
| #define APSR_Z_Pos 30U /*!< APSR: Z Position */ | |||
| #define APSR_Z_Msk (1UL << APSR_Z_Pos) /*!< APSR: Z Mask */ | |||
| #define APSR_C_Pos 29U /*!< APSR: C Position */ | |||
| #define APSR_C_Msk (1UL << APSR_C_Pos) /*!< APSR: C Mask */ | |||
| #define APSR_V_Pos 28U /*!< APSR: V Position */ | |||
| #define APSR_V_Msk (1UL << APSR_V_Pos) /*!< APSR: V Mask */ | |||
| /** | |||
| \brief Union type to access the Interrupt Program Status Register (IPSR). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t ISR:9; /*!< bit: 0.. 8 Exception number */ | |||
| uint32_t _reserved0:23; /*!< bit: 9..31 Reserved */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } IPSR_Type; | |||
| /* IPSR Register Definitions */ | |||
| #define IPSR_ISR_Pos 0U /*!< IPSR: ISR Position */ | |||
| #define IPSR_ISR_Msk (0x1FFUL /*<< IPSR_ISR_Pos*/) /*!< IPSR: ISR Mask */ | |||
| /** | |||
| \brief Union type to access the Special-Purpose Program Status Registers (xPSR). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t ISR:9; /*!< bit: 0.. 8 Exception number */ | |||
| uint32_t _reserved0:15; /*!< bit: 9..23 Reserved */ | |||
| uint32_t T:1; /*!< bit: 24 Thumb bit (read 0) */ | |||
| uint32_t _reserved1:3; /*!< bit: 25..27 Reserved */ | |||
| uint32_t V:1; /*!< bit: 28 Overflow condition code flag */ | |||
| uint32_t C:1; /*!< bit: 29 Carry condition code flag */ | |||
| uint32_t Z:1; /*!< bit: 30 Zero condition code flag */ | |||
| uint32_t N:1; /*!< bit: 31 Negative condition code flag */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } xPSR_Type; | |||
| /* xPSR Register Definitions */ | |||
| #define xPSR_N_Pos 31U /*!< xPSR: N Position */ | |||
| #define xPSR_N_Msk (1UL << xPSR_N_Pos) /*!< xPSR: N Mask */ | |||
| #define xPSR_Z_Pos 30U /*!< xPSR: Z Position */ | |||
| #define xPSR_Z_Msk (1UL << xPSR_Z_Pos) /*!< xPSR: Z Mask */ | |||
| #define xPSR_C_Pos 29U /*!< xPSR: C Position */ | |||
| #define xPSR_C_Msk (1UL << xPSR_C_Pos) /*!< xPSR: C Mask */ | |||
| #define xPSR_V_Pos 28U /*!< xPSR: V Position */ | |||
| #define xPSR_V_Msk (1UL << xPSR_V_Pos) /*!< xPSR: V Mask */ | |||
| #define xPSR_T_Pos 24U /*!< xPSR: T Position */ | |||
| #define xPSR_T_Msk (1UL << xPSR_T_Pos) /*!< xPSR: T Mask */ | |||
| #define xPSR_ISR_Pos 0U /*!< xPSR: ISR Position */ | |||
| #define xPSR_ISR_Msk (0x1FFUL /*<< xPSR_ISR_Pos*/) /*!< xPSR: ISR Mask */ | |||
| /** | |||
| \brief Union type to access the Control Registers (CONTROL). | |||
| */ | |||
| typedef union | |||
| { | |||
| struct | |||
| { | |||
| uint32_t _reserved0:1; /*!< bit: 0 Reserved */ | |||
| uint32_t SPSEL:1; /*!< bit: 1 Stack to be used */ | |||
| uint32_t _reserved1:30; /*!< bit: 2..31 Reserved */ | |||
| } b; /*!< Structure used for bit access */ | |||
| uint32_t w; /*!< Type used for word access */ | |||
| } CONTROL_Type; | |||
| /* CONTROL Register Definitions */ | |||
| #define CONTROL_SPSEL_Pos 1U /*!< CONTROL: SPSEL Position */ | |||
| #define CONTROL_SPSEL_Msk (1UL << CONTROL_SPSEL_Pos) /*!< CONTROL: SPSEL Mask */ | |||
| /*@} end of group CMSIS_CORE */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_NVIC Nested Vectored Interrupt Controller (NVIC) | |||
| \brief Type definitions for the NVIC Registers | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Structure type to access the Nested Vectored Interrupt Controller (NVIC). | |||
| */ | |||
| typedef struct | |||
| { | |||
| __IOM uint32_t ISER[1U]; /*!< Offset: 0x000 (R/W) Interrupt Set Enable Register */ | |||
| uint32_t RESERVED0[31U]; | |||
| __IOM uint32_t ICER[1U]; /*!< Offset: 0x080 (R/W) Interrupt Clear Enable Register */ | |||
| uint32_t RSERVED1[31U]; | |||
| __IOM uint32_t ISPR[1U]; /*!< Offset: 0x100 (R/W) Interrupt Set Pending Register */ | |||
| uint32_t RESERVED2[31U]; | |||
| __IOM uint32_t ICPR[1U]; /*!< Offset: 0x180 (R/W) Interrupt Clear Pending Register */ | |||
| uint32_t RESERVED3[31U]; | |||
| uint32_t RESERVED4[64U]; | |||
| __IOM uint32_t IP[8U]; /*!< Offset: 0x300 (R/W) Interrupt Priority Register */ | |||
| } NVIC_Type; | |||
| /*@} end of group CMSIS_NVIC */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_SCB System Control Block (SCB) | |||
| \brief Type definitions for the System Control Block Registers | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Structure type to access the System Control Block (SCB). | |||
| */ | |||
| typedef struct | |||
| { | |||
| __IM uint32_t CPUID; /*!< Offset: 0x000 (R/ ) CPUID Base Register */ | |||
| __IOM uint32_t ICSR; /*!< Offset: 0x004 (R/W) Interrupt Control and State Register */ | |||
| uint32_t RESERVED0; | |||
| __IOM uint32_t AIRCR; /*!< Offset: 0x00C (R/W) Application Interrupt and Reset Control Register */ | |||
| __IOM uint32_t SCR; /*!< Offset: 0x010 (R/W) System Control Register */ | |||
| __IOM uint32_t CCR; /*!< Offset: 0x014 (R/W) Configuration Control Register */ | |||
| uint32_t RESERVED1; | |||
| __IOM uint32_t SHP[2U]; /*!< Offset: 0x01C (R/W) System Handlers Priority Registers. [0] is RESERVED */ | |||
| __IOM uint32_t SHCSR; /*!< Offset: 0x024 (R/W) System Handler Control and State Register */ | |||
| } SCB_Type; | |||
| /* SCB CPUID Register Definitions */ | |||
| #define SCB_CPUID_IMPLEMENTER_Pos 24U /*!< SCB CPUID: IMPLEMENTER Position */ | |||
| #define SCB_CPUID_IMPLEMENTER_Msk (0xFFUL << SCB_CPUID_IMPLEMENTER_Pos) /*!< SCB CPUID: IMPLEMENTER Mask */ | |||
| #define SCB_CPUID_VARIANT_Pos 20U /*!< SCB CPUID: VARIANT Position */ | |||
| #define SCB_CPUID_VARIANT_Msk (0xFUL << SCB_CPUID_VARIANT_Pos) /*!< SCB CPUID: VARIANT Mask */ | |||
| #define SCB_CPUID_ARCHITECTURE_Pos 16U /*!< SCB CPUID: ARCHITECTURE Position */ | |||
| #define SCB_CPUID_ARCHITECTURE_Msk (0xFUL << SCB_CPUID_ARCHITECTURE_Pos) /*!< SCB CPUID: ARCHITECTURE Mask */ | |||
| #define SCB_CPUID_PARTNO_Pos 4U /*!< SCB CPUID: PARTNO Position */ | |||
| #define SCB_CPUID_PARTNO_Msk (0xFFFUL << SCB_CPUID_PARTNO_Pos) /*!< SCB CPUID: PARTNO Mask */ | |||
| #define SCB_CPUID_REVISION_Pos 0U /*!< SCB CPUID: REVISION Position */ | |||
| #define SCB_CPUID_REVISION_Msk (0xFUL /*<< SCB_CPUID_REVISION_Pos*/) /*!< SCB CPUID: REVISION Mask */ | |||
| /* SCB Interrupt Control State Register Definitions */ | |||
| #define SCB_ICSR_NMIPENDSET_Pos 31U /*!< SCB ICSR: NMIPENDSET Position */ | |||
| #define SCB_ICSR_NMIPENDSET_Msk (1UL << SCB_ICSR_NMIPENDSET_Pos) /*!< SCB ICSR: NMIPENDSET Mask */ | |||
| #define SCB_ICSR_PENDSVSET_Pos 28U /*!< SCB ICSR: PENDSVSET Position */ | |||
| #define SCB_ICSR_PENDSVSET_Msk (1UL << SCB_ICSR_PENDSVSET_Pos) /*!< SCB ICSR: PENDSVSET Mask */ | |||
| #define SCB_ICSR_PENDSVCLR_Pos 27U /*!< SCB ICSR: PENDSVCLR Position */ | |||
| #define SCB_ICSR_PENDSVCLR_Msk (1UL << SCB_ICSR_PENDSVCLR_Pos) /*!< SCB ICSR: PENDSVCLR Mask */ | |||
| #define SCB_ICSR_PENDSTSET_Pos 26U /*!< SCB ICSR: PENDSTSET Position */ | |||
| #define SCB_ICSR_PENDSTSET_Msk (1UL << SCB_ICSR_PENDSTSET_Pos) /*!< SCB ICSR: PENDSTSET Mask */ | |||
| #define SCB_ICSR_PENDSTCLR_Pos 25U /*!< SCB ICSR: PENDSTCLR Position */ | |||
| #define SCB_ICSR_PENDSTCLR_Msk (1UL << SCB_ICSR_PENDSTCLR_Pos) /*!< SCB ICSR: PENDSTCLR Mask */ | |||
| #define SCB_ICSR_ISRPREEMPT_Pos 23U /*!< SCB ICSR: ISRPREEMPT Position */ | |||
| #define SCB_ICSR_ISRPREEMPT_Msk (1UL << SCB_ICSR_ISRPREEMPT_Pos) /*!< SCB ICSR: ISRPREEMPT Mask */ | |||
| #define SCB_ICSR_ISRPENDING_Pos 22U /*!< SCB ICSR: ISRPENDING Position */ | |||
| #define SCB_ICSR_ISRPENDING_Msk (1UL << SCB_ICSR_ISRPENDING_Pos) /*!< SCB ICSR: ISRPENDING Mask */ | |||
| #define SCB_ICSR_VECTPENDING_Pos 12U /*!< SCB ICSR: VECTPENDING Position */ | |||
| #define SCB_ICSR_VECTPENDING_Msk (0x1FFUL << SCB_ICSR_VECTPENDING_Pos) /*!< SCB ICSR: VECTPENDING Mask */ | |||
| #define SCB_ICSR_VECTACTIVE_Pos 0U /*!< SCB ICSR: VECTACTIVE Position */ | |||
| #define SCB_ICSR_VECTACTIVE_Msk (0x1FFUL /*<< SCB_ICSR_VECTACTIVE_Pos*/) /*!< SCB ICSR: VECTACTIVE Mask */ | |||
| /* SCB Application Interrupt and Reset Control Register Definitions */ | |||
| #define SCB_AIRCR_VECTKEY_Pos 16U /*!< SCB AIRCR: VECTKEY Position */ | |||
| #define SCB_AIRCR_VECTKEY_Msk (0xFFFFUL << SCB_AIRCR_VECTKEY_Pos) /*!< SCB AIRCR: VECTKEY Mask */ | |||
| #define SCB_AIRCR_VECTKEYSTAT_Pos 16U /*!< SCB AIRCR: VECTKEYSTAT Position */ | |||
| #define SCB_AIRCR_VECTKEYSTAT_Msk (0xFFFFUL << SCB_AIRCR_VECTKEYSTAT_Pos) /*!< SCB AIRCR: VECTKEYSTAT Mask */ | |||
| #define SCB_AIRCR_ENDIANESS_Pos 15U /*!< SCB AIRCR: ENDIANESS Position */ | |||
| #define SCB_AIRCR_ENDIANESS_Msk (1UL << SCB_AIRCR_ENDIANESS_Pos) /*!< SCB AIRCR: ENDIANESS Mask */ | |||
| #define SCB_AIRCR_SYSRESETREQ_Pos 2U /*!< SCB AIRCR: SYSRESETREQ Position */ | |||
| #define SCB_AIRCR_SYSRESETREQ_Msk (1UL << SCB_AIRCR_SYSRESETREQ_Pos) /*!< SCB AIRCR: SYSRESETREQ Mask */ | |||
| #define SCB_AIRCR_VECTCLRACTIVE_Pos 1U /*!< SCB AIRCR: VECTCLRACTIVE Position */ | |||
| #define SCB_AIRCR_VECTCLRACTIVE_Msk (1UL << SCB_AIRCR_VECTCLRACTIVE_Pos) /*!< SCB AIRCR: VECTCLRACTIVE Mask */ | |||
| /* SCB System Control Register Definitions */ | |||
| #define SCB_SCR_SEVONPEND_Pos 4U /*!< SCB SCR: SEVONPEND Position */ | |||
| #define SCB_SCR_SEVONPEND_Msk (1UL << SCB_SCR_SEVONPEND_Pos) /*!< SCB SCR: SEVONPEND Mask */ | |||
| #define SCB_SCR_SLEEPDEEP_Pos 2U /*!< SCB SCR: SLEEPDEEP Position */ | |||
| #define SCB_SCR_SLEEPDEEP_Msk (1UL << SCB_SCR_SLEEPDEEP_Pos) /*!< SCB SCR: SLEEPDEEP Mask */ | |||
| #define SCB_SCR_SLEEPONEXIT_Pos 1U /*!< SCB SCR: SLEEPONEXIT Position */ | |||
| #define SCB_SCR_SLEEPONEXIT_Msk (1UL << SCB_SCR_SLEEPONEXIT_Pos) /*!< SCB SCR: SLEEPONEXIT Mask */ | |||
| /* SCB Configuration Control Register Definitions */ | |||
| #define SCB_CCR_STKALIGN_Pos 9U /*!< SCB CCR: STKALIGN Position */ | |||
| #define SCB_CCR_STKALIGN_Msk (1UL << SCB_CCR_STKALIGN_Pos) /*!< SCB CCR: STKALIGN Mask */ | |||
| #define SCB_CCR_UNALIGN_TRP_Pos 3U /*!< SCB CCR: UNALIGN_TRP Position */ | |||
| #define SCB_CCR_UNALIGN_TRP_Msk (1UL << SCB_CCR_UNALIGN_TRP_Pos) /*!< SCB CCR: UNALIGN_TRP Mask */ | |||
| /* SCB System Handler Control and State Register Definitions */ | |||
| #define SCB_SHCSR_SVCALLPENDED_Pos 15U /*!< SCB SHCSR: SVCALLPENDED Position */ | |||
| #define SCB_SHCSR_SVCALLPENDED_Msk (1UL << SCB_SHCSR_SVCALLPENDED_Pos) /*!< SCB SHCSR: SVCALLPENDED Mask */ | |||
| /*@} end of group CMSIS_SCB */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_SCnSCB System Controls not in SCB (SCnSCB) | |||
| \brief Type definitions for the System Control and ID Register not in the SCB | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Structure type to access the System Control and ID Register not in the SCB. | |||
| */ | |||
| typedef struct | |||
| { | |||
| uint32_t RESERVED0[2U]; | |||
| __IOM uint32_t ACTLR; /*!< Offset: 0x008 (R/W) Auxiliary Control Register */ | |||
| } SCnSCB_Type; | |||
| /* Auxiliary Control Register Definitions */ | |||
| #define SCnSCB_ACTLR_ITCMUAEN_Pos 4U /*!< ACTLR: Instruction TCM Upper Alias Enable Position */ | |||
| #define SCnSCB_ACTLR_ITCMUAEN_Msk (1UL << SCnSCB_ACTLR_ITCMUAEN_Pos) /*!< ACTLR: Instruction TCM Upper Alias Enable Mask */ | |||
| #define SCnSCB_ACTLR_ITCMLAEN_Pos 3U /*!< ACTLR: Instruction TCM Lower Alias Enable Position */ | |||
| #define SCnSCB_ACTLR_ITCMLAEN_Msk (1UL << SCnSCB_ACTLR_ITCMLAEN_Pos) /*!< ACTLR: Instruction TCM Lower Alias Enable Mask */ | |||
| /*@} end of group CMSIS_SCnotSCB */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_SysTick System Tick Timer (SysTick) | |||
| \brief Type definitions for the System Timer Registers. | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Structure type to access the System Timer (SysTick). | |||
| */ | |||
| typedef struct | |||
| { | |||
| __IOM uint32_t CTRL; /*!< Offset: 0x000 (R/W) SysTick Control and Status Register */ | |||
| __IOM uint32_t LOAD; /*!< Offset: 0x004 (R/W) SysTick Reload Value Register */ | |||
| __IOM uint32_t VAL; /*!< Offset: 0x008 (R/W) SysTick Current Value Register */ | |||
| __IM uint32_t CALIB; /*!< Offset: 0x00C (R/ ) SysTick Calibration Register */ | |||
| } SysTick_Type; | |||
| /* SysTick Control / Status Register Definitions */ | |||
| #define SysTick_CTRL_COUNTFLAG_Pos 16U /*!< SysTick CTRL: COUNTFLAG Position */ | |||
| #define SysTick_CTRL_COUNTFLAG_Msk (1UL << SysTick_CTRL_COUNTFLAG_Pos) /*!< SysTick CTRL: COUNTFLAG Mask */ | |||
| #define SysTick_CTRL_CLKSOURCE_Pos 2U /*!< SysTick CTRL: CLKSOURCE Position */ | |||
| #define SysTick_CTRL_CLKSOURCE_Msk (1UL << SysTick_CTRL_CLKSOURCE_Pos) /*!< SysTick CTRL: CLKSOURCE Mask */ | |||
| #define SysTick_CTRL_TICKINT_Pos 1U /*!< SysTick CTRL: TICKINT Position */ | |||
| #define SysTick_CTRL_TICKINT_Msk (1UL << SysTick_CTRL_TICKINT_Pos) /*!< SysTick CTRL: TICKINT Mask */ | |||
| #define SysTick_CTRL_ENABLE_Pos 0U /*!< SysTick CTRL: ENABLE Position */ | |||
| #define SysTick_CTRL_ENABLE_Msk (1UL /*<< SysTick_CTRL_ENABLE_Pos*/) /*!< SysTick CTRL: ENABLE Mask */ | |||
| /* SysTick Reload Register Definitions */ | |||
| #define SysTick_LOAD_RELOAD_Pos 0U /*!< SysTick LOAD: RELOAD Position */ | |||
| #define SysTick_LOAD_RELOAD_Msk (0xFFFFFFUL /*<< SysTick_LOAD_RELOAD_Pos*/) /*!< SysTick LOAD: RELOAD Mask */ | |||
| /* SysTick Current Register Definitions */ | |||
| #define SysTick_VAL_CURRENT_Pos 0U /*!< SysTick VAL: CURRENT Position */ | |||
| #define SysTick_VAL_CURRENT_Msk (0xFFFFFFUL /*<< SysTick_VAL_CURRENT_Pos*/) /*!< SysTick VAL: CURRENT Mask */ | |||
| /* SysTick Calibration Register Definitions */ | |||
| #define SysTick_CALIB_NOREF_Pos 31U /*!< SysTick CALIB: NOREF Position */ | |||
| #define SysTick_CALIB_NOREF_Msk (1UL << SysTick_CALIB_NOREF_Pos) /*!< SysTick CALIB: NOREF Mask */ | |||
| #define SysTick_CALIB_SKEW_Pos 30U /*!< SysTick CALIB: SKEW Position */ | |||
| #define SysTick_CALIB_SKEW_Msk (1UL << SysTick_CALIB_SKEW_Pos) /*!< SysTick CALIB: SKEW Mask */ | |||
| #define SysTick_CALIB_TENMS_Pos 0U /*!< SysTick CALIB: TENMS Position */ | |||
| #define SysTick_CALIB_TENMS_Msk (0xFFFFFFUL /*<< SysTick_CALIB_TENMS_Pos*/) /*!< SysTick CALIB: TENMS Mask */ | |||
| /*@} end of group CMSIS_SysTick */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_CoreDebug Core Debug Registers (CoreDebug) | |||
| \brief Cortex-M1 Core Debug Registers (DCB registers, SHCSR, and DFSR) are only accessible over DAP and not via processor. | |||
| Therefore they are not covered by the Cortex-M1 header file. | |||
| @{ | |||
| */ | |||
| /*@} end of group CMSIS_CoreDebug */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_core_bitfield Core register bit field macros | |||
| \brief Macros for use with bit field definitions (xxx_Pos, xxx_Msk). | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief Mask and shift a bit field value for use in a register bit range. | |||
| \param[in] field Name of the register bit field. | |||
| \param[in] value Value of the bit field. This parameter is interpreted as an uint32_t type. | |||
| \return Masked and shifted value. | |||
| */ | |||
| #define _VAL2FLD(field, value) (((uint32_t)(value) << field ## _Pos) & field ## _Msk) | |||
| /** | |||
| \brief Mask and shift a register value to extract a bit filed value. | |||
| \param[in] field Name of the register bit field. | |||
| \param[in] value Value of register. This parameter is interpreted as an uint32_t type. | |||
| \return Masked and shifted bit field value. | |||
| */ | |||
| #define _FLD2VAL(field, value) (((uint32_t)(value) & field ## _Msk) >> field ## _Pos) | |||
| /*@} end of group CMSIS_core_bitfield */ | |||
| /** | |||
| \ingroup CMSIS_core_register | |||
| \defgroup CMSIS_core_base Core Definitions | |||
| \brief Definitions for base addresses, unions, and structures. | |||
| @{ | |||
| */ | |||
| /* Memory mapping of Core Hardware */ | |||
| #define SCS_BASE (0xE000E000UL) /*!< System Control Space Base Address */ | |||
| #define SysTick_BASE (SCS_BASE + 0x0010UL) /*!< SysTick Base Address */ | |||
| #define NVIC_BASE (SCS_BASE + 0x0100UL) /*!< NVIC Base Address */ | |||
| #define SCB_BASE (SCS_BASE + 0x0D00UL) /*!< System Control Block Base Address */ | |||
| #define SCnSCB ((SCnSCB_Type *) SCS_BASE ) /*!< System control Register not in SCB */ | |||
| #define SCB ((SCB_Type *) SCB_BASE ) /*!< SCB configuration struct */ | |||
| #define SysTick ((SysTick_Type *) SysTick_BASE ) /*!< SysTick configuration struct */ | |||
| #define NVIC ((NVIC_Type *) NVIC_BASE ) /*!< NVIC configuration struct */ | |||
| /*@} */ | |||
| /******************************************************************************* | |||
| * Hardware Abstraction Layer | |||
| Core Function Interface contains: | |||
| - Core NVIC Functions | |||
| - Core SysTick Functions | |||
| - Core Register Access Functions | |||
| ******************************************************************************/ | |||
| /** | |||
| \defgroup CMSIS_Core_FunctionInterface Functions and Instructions Reference | |||
| */ | |||
| /* ########################## NVIC functions #################################### */ | |||
| /** | |||
| \ingroup CMSIS_Core_FunctionInterface | |||
| \defgroup CMSIS_Core_NVICFunctions NVIC Functions | |||
| \brief Functions that manage interrupts and exceptions via the NVIC. | |||
| @{ | |||
| */ | |||
| #ifdef CMSIS_NVIC_VIRTUAL | |||
| #ifndef CMSIS_NVIC_VIRTUAL_HEADER_FILE | |||
| #define CMSIS_NVIC_VIRTUAL_HEADER_FILE "cmsis_nvic_virtual.h" | |||
| #endif | |||
| #include CMSIS_NVIC_VIRTUAL_HEADER_FILE | |||
| #else | |||
| #define NVIC_SetPriorityGrouping __NVIC_SetPriorityGrouping | |||
| #define NVIC_GetPriorityGrouping __NVIC_GetPriorityGrouping | |||
| #define NVIC_EnableIRQ __NVIC_EnableIRQ | |||
| #define NVIC_GetEnableIRQ __NVIC_GetEnableIRQ | |||
| #define NVIC_DisableIRQ __NVIC_DisableIRQ | |||
| #define NVIC_GetPendingIRQ __NVIC_GetPendingIRQ | |||
| #define NVIC_SetPendingIRQ __NVIC_SetPendingIRQ | |||
| #define NVIC_ClearPendingIRQ __NVIC_ClearPendingIRQ | |||
| /*#define NVIC_GetActive __NVIC_GetActive not available for Cortex-M1 */ | |||
| #define NVIC_SetPriority __NVIC_SetPriority | |||
| #define NVIC_GetPriority __NVIC_GetPriority | |||
| #define NVIC_SystemReset __NVIC_SystemReset | |||
| #endif /* CMSIS_NVIC_VIRTUAL */ | |||
| #ifdef CMSIS_VECTAB_VIRTUAL | |||
| #ifndef CMSIS_VECTAB_VIRTUAL_HEADER_FILE | |||
| #define CMSIS_VECTAB_VIRTUAL_HEADER_FILE "cmsis_vectab_virtual.h" | |||
| #endif | |||
| #include CMSIS_VECTAB_VIRTUAL_HEADER_FILE | |||
| #else | |||
| #define NVIC_SetVector __NVIC_SetVector | |||
| #define NVIC_GetVector __NVIC_GetVector | |||
| #endif /* (CMSIS_VECTAB_VIRTUAL) */ | |||
| #define NVIC_USER_IRQ_OFFSET 16 | |||
| /* The following EXC_RETURN values are saved the LR on exception entry */ | |||
| #define EXC_RETURN_HANDLER (0xFFFFFFF1UL) /* return to Handler mode, uses MSP after return */ | |||
| #define EXC_RETURN_THREAD_MSP (0xFFFFFFF9UL) /* return to Thread mode, uses MSP after return */ | |||
| #define EXC_RETURN_THREAD_PSP (0xFFFFFFFDUL) /* return to Thread mode, uses PSP after return */ | |||
| /* Interrupt Priorities are WORD accessible only under Armv6-M */ | |||
| /* The following MACROS handle generation of the register offset and byte masks */ | |||
| #define _BIT_SHIFT(IRQn) ( ((((uint32_t)(int32_t)(IRQn)) ) & 0x03UL) * 8UL) | |||
| #define _SHP_IDX(IRQn) ( (((((uint32_t)(int32_t)(IRQn)) & 0x0FUL)-8UL) >> 2UL) ) | |||
| #define _IP_IDX(IRQn) ( (((uint32_t)(int32_t)(IRQn)) >> 2UL) ) | |||
| #define __NVIC_SetPriorityGrouping(X) (void)(X) | |||
| #define __NVIC_GetPriorityGrouping() (0U) | |||
| /** | |||
| \brief Enable Interrupt | |||
| \details Enables a device specific interrupt in the NVIC interrupt controller. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_EnableIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ISER[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| } | |||
| } | |||
| /** | |||
| \brief Get Interrupt Enable status | |||
| \details Returns a device specific interrupt enable status from the NVIC interrupt controller. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \return 0 Interrupt is not enabled. | |||
| \return 1 Interrupt is enabled. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetEnableIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| return((uint32_t)(((NVIC->ISER[0U] & (1UL << (((uint32_t)IRQn) & 0x1FUL))) != 0UL) ? 1UL : 0UL)); | |||
| } | |||
| else | |||
| { | |||
| return(0U); | |||
| } | |||
| } | |||
| /** | |||
| \brief Disable Interrupt | |||
| \details Disables a device specific interrupt in the NVIC interrupt controller. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_DisableIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ICER[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| __DSB(); | |||
| __ISB(); | |||
| } | |||
| } | |||
| /** | |||
| \brief Get Pending Interrupt | |||
| \details Reads the NVIC pending register and returns the pending bit for the specified device specific interrupt. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \return 0 Interrupt status is not pending. | |||
| \return 1 Interrupt status is pending. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetPendingIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| return((uint32_t)(((NVIC->ISPR[0U] & (1UL << (((uint32_t)IRQn) & 0x1FUL))) != 0UL) ? 1UL : 0UL)); | |||
| } | |||
| else | |||
| { | |||
| return(0U); | |||
| } | |||
| } | |||
| /** | |||
| \brief Set Pending Interrupt | |||
| \details Sets the pending bit of a device specific interrupt in the NVIC pending register. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_SetPendingIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ISPR[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| } | |||
| } | |||
| /** | |||
| \brief Clear Pending Interrupt | |||
| \details Clears the pending bit of a device specific interrupt in the NVIC pending register. | |||
| \param [in] IRQn Device specific interrupt number. | |||
| \note IRQn must not be negative. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_ClearPendingIRQ(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->ICPR[0U] = (uint32_t)(1UL << (((uint32_t)IRQn) & 0x1FUL)); | |||
| } | |||
| } | |||
| /** | |||
| \brief Set Interrupt Priority | |||
| \details Sets the priority of a device specific interrupt or a processor exception. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| \param [in] IRQn Interrupt number. | |||
| \param [in] priority Priority to set. | |||
| \note The priority cannot be set for every processor exception. | |||
| */ | |||
| __STATIC_INLINE void __NVIC_SetPriority(IRQn_Type IRQn, uint32_t priority) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| NVIC->IP[_IP_IDX(IRQn)] = ((uint32_t)(NVIC->IP[_IP_IDX(IRQn)] & ~(0xFFUL << _BIT_SHIFT(IRQn))) | | |||
| (((priority << (8U - __NVIC_PRIO_BITS)) & (uint32_t)0xFFUL) << _BIT_SHIFT(IRQn))); | |||
| } | |||
| else | |||
| { | |||
| SCB->SHP[_SHP_IDX(IRQn)] = ((uint32_t)(SCB->SHP[_SHP_IDX(IRQn)] & ~(0xFFUL << _BIT_SHIFT(IRQn))) | | |||
| (((priority << (8U - __NVIC_PRIO_BITS)) & (uint32_t)0xFFUL) << _BIT_SHIFT(IRQn))); | |||
| } | |||
| } | |||
| /** | |||
| \brief Get Interrupt Priority | |||
| \details Reads the priority of a device specific interrupt or a processor exception. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| \param [in] IRQn Interrupt number. | |||
| \return Interrupt Priority. | |||
| Value is aligned automatically to the implemented priority bits of the microcontroller. | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetPriority(IRQn_Type IRQn) | |||
| { | |||
| if ((int32_t)(IRQn) >= 0) | |||
| { | |||
| return((uint32_t)(((NVIC->IP[ _IP_IDX(IRQn)] >> _BIT_SHIFT(IRQn) ) & (uint32_t)0xFFUL) >> (8U - __NVIC_PRIO_BITS))); | |||
| } | |||
| else | |||
| { | |||
| return((uint32_t)(((SCB->SHP[_SHP_IDX(IRQn)] >> _BIT_SHIFT(IRQn) ) & (uint32_t)0xFFUL) >> (8U - __NVIC_PRIO_BITS))); | |||
| } | |||
| } | |||
| /** | |||
| \brief Encode Priority | |||
| \details Encodes the priority for an interrupt with the given priority group, | |||
| preemptive priority value, and subpriority value. | |||
| In case of a conflict between priority grouping and available | |||
| priority bits (__NVIC_PRIO_BITS), the smallest possible priority group is set. | |||
| \param [in] PriorityGroup Used priority group. | |||
| \param [in] PreemptPriority Preemptive priority value (starting from 0). | |||
| \param [in] SubPriority Subpriority value (starting from 0). | |||
| \return Encoded priority. Value can be used in the function \ref NVIC_SetPriority(). | |||
| */ | |||
| __STATIC_INLINE uint32_t NVIC_EncodePriority (uint32_t PriorityGroup, uint32_t PreemptPriority, uint32_t SubPriority) | |||
| { | |||
| uint32_t PriorityGroupTmp = (PriorityGroup & (uint32_t)0x07UL); /* only values 0..7 are used */ | |||
| uint32_t PreemptPriorityBits; | |||
| uint32_t SubPriorityBits; | |||
| PreemptPriorityBits = ((7UL - PriorityGroupTmp) > (uint32_t)(__NVIC_PRIO_BITS)) ? (uint32_t)(__NVIC_PRIO_BITS) : (uint32_t)(7UL - PriorityGroupTmp); | |||
| SubPriorityBits = ((PriorityGroupTmp + (uint32_t)(__NVIC_PRIO_BITS)) < (uint32_t)7UL) ? (uint32_t)0UL : (uint32_t)((PriorityGroupTmp - 7UL) + (uint32_t)(__NVIC_PRIO_BITS)); | |||
| return ( | |||
| ((PreemptPriority & (uint32_t)((1UL << (PreemptPriorityBits)) - 1UL)) << SubPriorityBits) | | |||
| ((SubPriority & (uint32_t)((1UL << (SubPriorityBits )) - 1UL))) | |||
| ); | |||
| } | |||
| /** | |||
| \brief Decode Priority | |||
| \details Decodes an interrupt priority value with a given priority group to | |||
| preemptive priority value and subpriority value. | |||
| In case of a conflict between priority grouping and available | |||
| priority bits (__NVIC_PRIO_BITS) the smallest possible priority group is set. | |||
| \param [in] Priority Priority value, which can be retrieved with the function \ref NVIC_GetPriority(). | |||
| \param [in] PriorityGroup Used priority group. | |||
| \param [out] pPreemptPriority Preemptive priority value (starting from 0). | |||
| \param [out] pSubPriority Subpriority value (starting from 0). | |||
| */ | |||
| __STATIC_INLINE void NVIC_DecodePriority (uint32_t Priority, uint32_t PriorityGroup, uint32_t* const pPreemptPriority, uint32_t* const pSubPriority) | |||
| { | |||
| uint32_t PriorityGroupTmp = (PriorityGroup & (uint32_t)0x07UL); /* only values 0..7 are used */ | |||
| uint32_t PreemptPriorityBits; | |||
| uint32_t SubPriorityBits; | |||
| PreemptPriorityBits = ((7UL - PriorityGroupTmp) > (uint32_t)(__NVIC_PRIO_BITS)) ? (uint32_t)(__NVIC_PRIO_BITS) : (uint32_t)(7UL - PriorityGroupTmp); | |||
| SubPriorityBits = ((PriorityGroupTmp + (uint32_t)(__NVIC_PRIO_BITS)) < (uint32_t)7UL) ? (uint32_t)0UL : (uint32_t)((PriorityGroupTmp - 7UL) + (uint32_t)(__NVIC_PRIO_BITS)); | |||
| *pPreemptPriority = (Priority >> SubPriorityBits) & (uint32_t)((1UL << (PreemptPriorityBits)) - 1UL); | |||
| *pSubPriority = (Priority ) & (uint32_t)((1UL << (SubPriorityBits )) - 1UL); | |||
| } | |||
| /** | |||
| \brief Set Interrupt Vector | |||
| \details Sets an interrupt vector in SRAM based interrupt vector table. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| Address 0 must be mapped to SRAM. | |||
| \param [in] IRQn Interrupt number | |||
| \param [in] vector Address of interrupt handler function | |||
| */ | |||
| __STATIC_INLINE void __NVIC_SetVector(IRQn_Type IRQn, uint32_t vector) | |||
| { | |||
| uint32_t *vectors = (uint32_t *)0x0U; | |||
| vectors[(int32_t)IRQn + NVIC_USER_IRQ_OFFSET] = vector; | |||
| } | |||
| /** | |||
| \brief Get Interrupt Vector | |||
| \details Reads an interrupt vector from interrupt vector table. | |||
| The interrupt number can be positive to specify a device specific interrupt, | |||
| or negative to specify a processor exception. | |||
| \param [in] IRQn Interrupt number. | |||
| \return Address of interrupt handler function | |||
| */ | |||
| __STATIC_INLINE uint32_t __NVIC_GetVector(IRQn_Type IRQn) | |||
| { | |||
| uint32_t *vectors = (uint32_t *)0x0U; | |||
| return vectors[(int32_t)IRQn + NVIC_USER_IRQ_OFFSET]; | |||
| } | |||
| /** | |||
| \brief System Reset | |||
| \details Initiates a system reset request to reset the MCU. | |||
| */ | |||
| __NO_RETURN __STATIC_INLINE void __NVIC_SystemReset(void) | |||
| { | |||
| __DSB(); /* Ensure all outstanding memory accesses included | |||
| buffered write are completed before reset */ | |||
| SCB->AIRCR = ((0x5FAUL << SCB_AIRCR_VECTKEY_Pos) | | |||
| SCB_AIRCR_SYSRESETREQ_Msk); | |||
| __DSB(); /* Ensure completion of memory access */ | |||
| for(;;) /* wait until reset */ | |||
| { | |||
| __NOP(); | |||
| } | |||
| } | |||
| /*@} end of CMSIS_Core_NVICFunctions */ | |||
| /* ########################## FPU functions #################################### */ | |||
| /** | |||
| \ingroup CMSIS_Core_FunctionInterface | |||
| \defgroup CMSIS_Core_FpuFunctions FPU Functions | |||
| \brief Function that provides FPU type. | |||
| @{ | |||
| */ | |||
| /** | |||
| \brief get FPU type | |||
| \details returns the FPU type | |||
| \returns | |||
| - \b 0: No FPU | |||
| - \b 1: Single precision FPU | |||
| - \b 2: Double + Single precision FPU | |||
| */ | |||
| __STATIC_INLINE uint32_t SCB_GetFPUType(void) | |||
| { | |||
| return 0U; /* No FPU */ | |||
| } | |||
| /*@} end of CMSIS_Core_FpuFunctions */ | |||
| /* ################################## SysTick function ############################################ */ | |||
| /** | |||
| \ingroup CMSIS_Core_FunctionInterface | |||
| \defgroup CMSIS_Core_SysTickFunctions SysTick Functions | |||
| \brief Functions that configure the System. | |||
| @{ | |||
| */ | |||
| #if defined (__Vendor_SysTickConfig) && (__Vendor_SysTickConfig == 0U) | |||
| /** | |||
| \brief System Tick Configuration | |||
| \details Initializes the System Timer and its interrupt, and starts the System Tick Timer. | |||
| Counter is in free running mode to generate periodic interrupts. | |||
| \param [in] ticks Number of ticks between two interrupts. | |||
| \return 0 Function succeeded. | |||
| \return 1 Function failed. | |||
| \note When the variable <b>__Vendor_SysTickConfig</b> is set to 1, then the | |||
| function <b>SysTick_Config</b> is not included. In this case, the file <b><i>device</i>.h</b> | |||
| must contain a vendor-specific implementation of this function. | |||
| */ | |||
| __STATIC_INLINE uint32_t SysTick_Config(uint32_t ticks) | |||
| { | |||
| if ((ticks - 1UL) > SysTick_LOAD_RELOAD_Msk) | |||
| { | |||
| return (1UL); /* Reload value impossible */ | |||
| } | |||
| SysTick->LOAD = (uint32_t)(ticks - 1UL); /* set reload register */ | |||
| NVIC_SetPriority (SysTick_IRQn, (1UL << __NVIC_PRIO_BITS) - 1UL); /* set Priority for Systick Interrupt */ | |||
| SysTick->VAL = 0UL; /* Load the SysTick Counter Value */ | |||
| SysTick->CTRL = SysTick_CTRL_CLKSOURCE_Msk | | |||
| SysTick_CTRL_TICKINT_Msk | | |||
| SysTick_CTRL_ENABLE_Msk; /* Enable SysTick IRQ and SysTick Timer */ | |||
| return (0UL); /* Function successful */ | |||
| } | |||
| #endif | |||
| /*@} end of CMSIS_Core_SysTickFunctions */ | |||
| #ifdef __cplusplus | |||
| } | |||
| #endif | |||
| #endif /* __CORE_CM1_H_DEPENDANT */ | |||
| #endif /* __CMSIS_GENERIC */ | |||
| @@ -0,0 +1,270 @@ | |||
| /****************************************************************************** | |||
| * @file mpu_armv7.h | |||
| * @brief CMSIS MPU API for Armv7-M MPU | |||
| * @version V5.0.4 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2017-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef ARM_MPU_ARMV7_H | |||
| #define ARM_MPU_ARMV7_H | |||
| #define ARM_MPU_REGION_SIZE_32B ((uint8_t)0x04U) ///!< MPU Region Size 32 Bytes | |||
| #define ARM_MPU_REGION_SIZE_64B ((uint8_t)0x05U) ///!< MPU Region Size 64 Bytes | |||
| #define ARM_MPU_REGION_SIZE_128B ((uint8_t)0x06U) ///!< MPU Region Size 128 Bytes | |||
| #define ARM_MPU_REGION_SIZE_256B ((uint8_t)0x07U) ///!< MPU Region Size 256 Bytes | |||
| #define ARM_MPU_REGION_SIZE_512B ((uint8_t)0x08U) ///!< MPU Region Size 512 Bytes | |||
| #define ARM_MPU_REGION_SIZE_1KB ((uint8_t)0x09U) ///!< MPU Region Size 1 KByte | |||
| #define ARM_MPU_REGION_SIZE_2KB ((uint8_t)0x0AU) ///!< MPU Region Size 2 KBytes | |||
| #define ARM_MPU_REGION_SIZE_4KB ((uint8_t)0x0BU) ///!< MPU Region Size 4 KBytes | |||
| #define ARM_MPU_REGION_SIZE_8KB ((uint8_t)0x0CU) ///!< MPU Region Size 8 KBytes | |||
| #define ARM_MPU_REGION_SIZE_16KB ((uint8_t)0x0DU) ///!< MPU Region Size 16 KBytes | |||
| #define ARM_MPU_REGION_SIZE_32KB ((uint8_t)0x0EU) ///!< MPU Region Size 32 KBytes | |||
| #define ARM_MPU_REGION_SIZE_64KB ((uint8_t)0x0FU) ///!< MPU Region Size 64 KBytes | |||
| #define ARM_MPU_REGION_SIZE_128KB ((uint8_t)0x10U) ///!< MPU Region Size 128 KBytes | |||
| #define ARM_MPU_REGION_SIZE_256KB ((uint8_t)0x11U) ///!< MPU Region Size 256 KBytes | |||
| #define ARM_MPU_REGION_SIZE_512KB ((uint8_t)0x12U) ///!< MPU Region Size 512 KBytes | |||
| #define ARM_MPU_REGION_SIZE_1MB ((uint8_t)0x13U) ///!< MPU Region Size 1 MByte | |||
| #define ARM_MPU_REGION_SIZE_2MB ((uint8_t)0x14U) ///!< MPU Region Size 2 MBytes | |||
| #define ARM_MPU_REGION_SIZE_4MB ((uint8_t)0x15U) ///!< MPU Region Size 4 MBytes | |||
| #define ARM_MPU_REGION_SIZE_8MB ((uint8_t)0x16U) ///!< MPU Region Size 8 MBytes | |||
| #define ARM_MPU_REGION_SIZE_16MB ((uint8_t)0x17U) ///!< MPU Region Size 16 MBytes | |||
| #define ARM_MPU_REGION_SIZE_32MB ((uint8_t)0x18U) ///!< MPU Region Size 32 MBytes | |||
| #define ARM_MPU_REGION_SIZE_64MB ((uint8_t)0x19U) ///!< MPU Region Size 64 MBytes | |||
| #define ARM_MPU_REGION_SIZE_128MB ((uint8_t)0x1AU) ///!< MPU Region Size 128 MBytes | |||
| #define ARM_MPU_REGION_SIZE_256MB ((uint8_t)0x1BU) ///!< MPU Region Size 256 MBytes | |||
| #define ARM_MPU_REGION_SIZE_512MB ((uint8_t)0x1CU) ///!< MPU Region Size 512 MBytes | |||
| #define ARM_MPU_REGION_SIZE_1GB ((uint8_t)0x1DU) ///!< MPU Region Size 1 GByte | |||
| #define ARM_MPU_REGION_SIZE_2GB ((uint8_t)0x1EU) ///!< MPU Region Size 2 GBytes | |||
| #define ARM_MPU_REGION_SIZE_4GB ((uint8_t)0x1FU) ///!< MPU Region Size 4 GBytes | |||
| #define ARM_MPU_AP_NONE 0U ///!< MPU Access Permission no access | |||
| #define ARM_MPU_AP_PRIV 1U ///!< MPU Access Permission privileged access only | |||
| #define ARM_MPU_AP_URO 2U ///!< MPU Access Permission unprivileged access read-only | |||
| #define ARM_MPU_AP_FULL 3U ///!< MPU Access Permission full access | |||
| #define ARM_MPU_AP_PRO 5U ///!< MPU Access Permission privileged access read-only | |||
| #define ARM_MPU_AP_RO 6U ///!< MPU Access Permission read-only access | |||
| /** MPU Region Base Address Register Value | |||
| * | |||
| * \param Region The region to be configured, number 0 to 15. | |||
| * \param BaseAddress The base address for the region. | |||
| */ | |||
| #define ARM_MPU_RBAR(Region, BaseAddress) \ | |||
| (((BaseAddress) & MPU_RBAR_ADDR_Msk) | \ | |||
| ((Region) & MPU_RBAR_REGION_Msk) | \ | |||
| (MPU_RBAR_VALID_Msk)) | |||
| /** | |||
| * MPU Memory Access Attributes | |||
| * | |||
| * \param TypeExtField Type extension field, allows you to configure memory access type, for example strongly ordered, peripheral. | |||
| * \param IsShareable Region is shareable between multiple bus masters. | |||
| * \param IsCacheable Region is cacheable, i.e. its value may be kept in cache. | |||
| * \param IsBufferable Region is bufferable, i.e. using write-back caching. Cacheable but non-bufferable regions use write-through policy. | |||
| */ | |||
| #define ARM_MPU_ACCESS_(TypeExtField, IsShareable, IsCacheable, IsBufferable) \ | |||
| ((((TypeExtField ) << MPU_RASR_TEX_Pos) & MPU_RASR_TEX_Msk) | \ | |||
| (((IsShareable ) << MPU_RASR_S_Pos) & MPU_RASR_S_Msk) | \ | |||
| (((IsCacheable ) << MPU_RASR_C_Pos) & MPU_RASR_C_Msk) | \ | |||
| (((IsBufferable ) << MPU_RASR_B_Pos) & MPU_RASR_B_Msk)) | |||
| /** | |||
| * MPU Region Attribute and Size Register Value | |||
| * | |||
| * \param DisableExec Instruction access disable bit, 1= disable instruction fetches. | |||
| * \param AccessPermission Data access permissions, allows you to configure read/write access for User and Privileged mode. | |||
| * \param AccessAttributes Memory access attribution, see \ref ARM_MPU_ACCESS_. | |||
| * \param SubRegionDisable Sub-region disable field. | |||
| * \param Size Region size of the region to be configured, for example 4K, 8K. | |||
| */ | |||
| #define ARM_MPU_RASR_EX(DisableExec, AccessPermission, AccessAttributes, SubRegionDisable, Size) \ | |||
| ((((DisableExec ) << MPU_RASR_XN_Pos) & MPU_RASR_XN_Msk) | \ | |||
| (((AccessPermission) << MPU_RASR_AP_Pos) & MPU_RASR_AP_Msk) | \ | |||
| (((AccessAttributes) ) & (MPU_RASR_TEX_Msk | MPU_RASR_S_Msk | MPU_RASR_C_Msk | MPU_RASR_B_Msk))) | |||
| /** | |||
| * MPU Region Attribute and Size Register Value | |||
| * | |||
| * \param DisableExec Instruction access disable bit, 1= disable instruction fetches. | |||
| * \param AccessPermission Data access permissions, allows you to configure read/write access for User and Privileged mode. | |||
| * \param TypeExtField Type extension field, allows you to configure memory access type, for example strongly ordered, peripheral. | |||
| * \param IsShareable Region is shareable between multiple bus masters. | |||
| * \param IsCacheable Region is cacheable, i.e. its value may be kept in cache. | |||
| * \param IsBufferable Region is bufferable, i.e. using write-back caching. Cacheable but non-bufferable regions use write-through policy. | |||
| * \param SubRegionDisable Sub-region disable field. | |||
| * \param Size Region size of the region to be configured, for example 4K, 8K. | |||
| */ | |||
| #define ARM_MPU_RASR(DisableExec, AccessPermission, TypeExtField, IsShareable, IsCacheable, IsBufferable, SubRegionDisable, Size) \ | |||
| ARM_MPU_RASR_EX(DisableExec, AccessPermission, ARM_MPU_ACCESS_(TypeExtField, IsShareable, IsCacheable, IsBufferable), SubRegionDisable, Size) | |||
| /** | |||
| * MPU Memory Access Attribute for strongly ordered memory. | |||
| * - TEX: 000b | |||
| * - Shareable | |||
| * - Non-cacheable | |||
| * - Non-bufferable | |||
| */ | |||
| #define ARM_MPU_ACCESS_ORDERED ARM_MPU_ACCESS_(0U, 1U, 0U, 0U) | |||
| /** | |||
| * MPU Memory Access Attribute for device memory. | |||
| * - TEX: 000b (if non-shareable) or 010b (if shareable) | |||
| * - Shareable or non-shareable | |||
| * - Non-cacheable | |||
| * - Bufferable (if shareable) or non-bufferable (if non-shareable) | |||
| * | |||
| * \param IsShareable Configures the device memory as shareable or non-shareable. | |||
| */ | |||
| #define ARM_MPU_ACCESS_DEVICE(IsShareable) ((IsShareable) ? ARM_MPU_ACCESS_(0U, 1U, 0U, 1U) : ARM_MPU_ACCESS_(2U, 0U, 0U, 0U)) | |||
| /** | |||
| * MPU Memory Access Attribute for normal memory. | |||
| * - TEX: 1BBb (reflecting outer cacheability rules) | |||
| * - Shareable or non-shareable | |||
| * - Cacheable or non-cacheable (reflecting inner cacheability rules) | |||
| * - Bufferable or non-bufferable (reflecting inner cacheability rules) | |||
| * | |||
| * \param OuterCp Configures the outer cache policy. | |||
| * \param InnerCp Configures the inner cache policy. | |||
| * \param IsShareable Configures the memory as shareable or non-shareable. | |||
| */ | |||
| #define ARM_MPU_ACCESS_NORMAL(OuterCp, InnerCp, IsShareable) ARM_MPU_ACCESS_((4U | (OuterCp)), IsShareable, ((InnerCp) & 2U), ((InnerCp) & 1U)) | |||
| /** | |||
| * MPU Memory Access Attribute non-cacheable policy. | |||
| */ | |||
| #define ARM_MPU_CACHEP_NOCACHE 0U | |||
| /** | |||
| * MPU Memory Access Attribute write-back, write and read allocate policy. | |||
| */ | |||
| #define ARM_MPU_CACHEP_WB_WRA 1U | |||
| /** | |||
| * MPU Memory Access Attribute write-through, no write allocate policy. | |||
| */ | |||
| #define ARM_MPU_CACHEP_WT_NWA 2U | |||
| /** | |||
| * MPU Memory Access Attribute write-back, no write allocate policy. | |||
| */ | |||
| #define ARM_MPU_CACHEP_WB_NWA 3U | |||
| /** | |||
| * Struct for a single MPU Region | |||
| */ | |||
| typedef struct { | |||
| uint32_t RBAR; //!< The region base address register value (RBAR) | |||
| uint32_t RASR; //!< The region attribute and size register value (RASR) \ref MPU_RASR | |||
| } ARM_MPU_Region_t; | |||
| /** Enable the MPU. | |||
| * \param MPU_Control Default access permissions for unconfigured regions. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Enable(uint32_t MPU_Control) | |||
| { | |||
| __DSB(); | |||
| __ISB(); | |||
| MPU->CTRL = MPU_Control | MPU_CTRL_ENABLE_Msk; | |||
| #ifdef SCB_SHCSR_MEMFAULTENA_Msk | |||
| SCB->SHCSR |= SCB_SHCSR_MEMFAULTENA_Msk; | |||
| #endif | |||
| } | |||
| /** Disable the MPU. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Disable(void) | |||
| { | |||
| __DSB(); | |||
| __ISB(); | |||
| #ifdef SCB_SHCSR_MEMFAULTENA_Msk | |||
| SCB->SHCSR &= ~SCB_SHCSR_MEMFAULTENA_Msk; | |||
| #endif | |||
| MPU->CTRL &= ~MPU_CTRL_ENABLE_Msk; | |||
| } | |||
| /** Clear and disable the given MPU region. | |||
| * \param rnr Region number to be cleared. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_ClrRegion(uint32_t rnr) | |||
| { | |||
| MPU->RNR = rnr; | |||
| MPU->RASR = 0U; | |||
| } | |||
| /** Configure an MPU region. | |||
| * \param rbar Value for RBAR register. | |||
| * \param rsar Value for RSAR register. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetRegion(uint32_t rbar, uint32_t rasr) | |||
| { | |||
| MPU->RBAR = rbar; | |||
| MPU->RASR = rasr; | |||
| } | |||
| /** Configure the given MPU region. | |||
| * \param rnr Region number to be configured. | |||
| * \param rbar Value for RBAR register. | |||
| * \param rsar Value for RSAR register. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetRegionEx(uint32_t rnr, uint32_t rbar, uint32_t rasr) | |||
| { | |||
| MPU->RNR = rnr; | |||
| MPU->RBAR = rbar; | |||
| MPU->RASR = rasr; | |||
| } | |||
| /** Memcopy with strictly ordered memory access, e.g. for register targets. | |||
| * \param dst Destination data is copied to. | |||
| * \param src Source data is copied from. | |||
| * \param len Amount of data words to be copied. | |||
| */ | |||
| __STATIC_INLINE void orderedCpy(volatile uint32_t* dst, const uint32_t* __RESTRICT src, uint32_t len) | |||
| { | |||
| uint32_t i; | |||
| for (i = 0U; i < len; ++i) | |||
| { | |||
| dst[i] = src[i]; | |||
| } | |||
| } | |||
| /** Load the given number of MPU regions from a table. | |||
| * \param table Pointer to the MPU configuration table. | |||
| * \param cnt Amount of regions to be configured. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Load(ARM_MPU_Region_t const* table, uint32_t cnt) | |||
| { | |||
| const uint32_t rowWordSize = sizeof(ARM_MPU_Region_t)/4U; | |||
| while (cnt > MPU_TYPE_RALIASES) { | |||
| orderedCpy(&(MPU->RBAR), &(table->RBAR), MPU_TYPE_RALIASES*rowWordSize); | |||
| table += MPU_TYPE_RALIASES; | |||
| cnt -= MPU_TYPE_RALIASES; | |||
| } | |||
| orderedCpy(&(MPU->RBAR), &(table->RBAR), cnt*rowWordSize); | |||
| } | |||
| #endif | |||
| @@ -0,0 +1,333 @@ | |||
| /****************************************************************************** | |||
| * @file mpu_armv8.h | |||
| * @brief CMSIS MPU API for Armv8-M MPU | |||
| * @version V5.0.4 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2017-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef ARM_MPU_ARMV8_H | |||
| #define ARM_MPU_ARMV8_H | |||
| /** \brief Attribute for device memory (outer only) */ | |||
| #define ARM_MPU_ATTR_DEVICE ( 0U ) | |||
| /** \brief Attribute for non-cacheable, normal memory */ | |||
| #define ARM_MPU_ATTR_NON_CACHEABLE ( 4U ) | |||
| /** \brief Attribute for normal memory (outer and inner) | |||
| * \param NT Non-Transient: Set to 1 for non-transient data. | |||
| * \param WB Write-Back: Set to 1 to use write-back update policy. | |||
| * \param RA Read Allocation: Set to 1 to use cache allocation on read miss. | |||
| * \param WA Write Allocation: Set to 1 to use cache allocation on write miss. | |||
| */ | |||
| #define ARM_MPU_ATTR_MEMORY_(NT, WB, RA, WA) \ | |||
| (((NT & 1U) << 3U) | ((WB & 1U) << 2U) | ((RA & 1U) << 1U) | (WA & 1U)) | |||
| /** \brief Device memory type non Gathering, non Re-ordering, non Early Write Acknowledgement */ | |||
| #define ARM_MPU_ATTR_DEVICE_nGnRnE (0U) | |||
| /** \brief Device memory type non Gathering, non Re-ordering, Early Write Acknowledgement */ | |||
| #define ARM_MPU_ATTR_DEVICE_nGnRE (1U) | |||
| /** \brief Device memory type non Gathering, Re-ordering, Early Write Acknowledgement */ | |||
| #define ARM_MPU_ATTR_DEVICE_nGRE (2U) | |||
| /** \brief Device memory type Gathering, Re-ordering, Early Write Acknowledgement */ | |||
| #define ARM_MPU_ATTR_DEVICE_GRE (3U) | |||
| /** \brief Memory Attribute | |||
| * \param O Outer memory attributes | |||
| * \param I O == ARM_MPU_ATTR_DEVICE: Device memory attributes, else: Inner memory attributes | |||
| */ | |||
| #define ARM_MPU_ATTR(O, I) (((O & 0xFU) << 4U) | (((O & 0xFU) != 0U) ? (I & 0xFU) : ((I & 0x3U) << 2U))) | |||
| /** \brief Normal memory non-shareable */ | |||
| #define ARM_MPU_SH_NON (0U) | |||
| /** \brief Normal memory outer shareable */ | |||
| #define ARM_MPU_SH_OUTER (2U) | |||
| /** \brief Normal memory inner shareable */ | |||
| #define ARM_MPU_SH_INNER (3U) | |||
| /** \brief Memory access permissions | |||
| * \param RO Read-Only: Set to 1 for read-only memory. | |||
| * \param NP Non-Privileged: Set to 1 for non-privileged memory. | |||
| */ | |||
| #define ARM_MPU_AP_(RO, NP) (((RO & 1U) << 1U) | (NP & 1U)) | |||
| /** \brief Region Base Address Register value | |||
| * \param BASE The base address bits [31:5] of a memory region. The value is zero extended. Effective address gets 32 byte aligned. | |||
| * \param SH Defines the Shareability domain for this memory region. | |||
| * \param RO Read-Only: Set to 1 for a read-only memory region. | |||
| * \param NP Non-Privileged: Set to 1 for a non-privileged memory region. | |||
| * \oaram XN eXecute Never: Set to 1 for a non-executable memory region. | |||
| */ | |||
| #define ARM_MPU_RBAR(BASE, SH, RO, NP, XN) \ | |||
| ((BASE & MPU_RBAR_BASE_Msk) | \ | |||
| ((SH << MPU_RBAR_SH_Pos) & MPU_RBAR_SH_Msk) | \ | |||
| ((ARM_MPU_AP_(RO, NP) << MPU_RBAR_AP_Pos) & MPU_RBAR_AP_Msk) | \ | |||
| ((XN << MPU_RBAR_XN_Pos) & MPU_RBAR_XN_Msk)) | |||
| /** \brief Region Limit Address Register value | |||
| * \param LIMIT The limit address bits [31:5] for this memory region. The value is one extended. | |||
| * \param IDX The attribute index to be associated with this memory region. | |||
| */ | |||
| #define ARM_MPU_RLAR(LIMIT, IDX) \ | |||
| ((LIMIT & MPU_RLAR_LIMIT_Msk) | \ | |||
| ((IDX << MPU_RLAR_AttrIndx_Pos) & MPU_RLAR_AttrIndx_Msk) | \ | |||
| (MPU_RLAR_EN_Msk)) | |||
| /** | |||
| * Struct for a single MPU Region | |||
| */ | |||
| typedef struct { | |||
| uint32_t RBAR; /*!< Region Base Address Register value */ | |||
| uint32_t RLAR; /*!< Region Limit Address Register value */ | |||
| } ARM_MPU_Region_t; | |||
| /** Enable the MPU. | |||
| * \param MPU_Control Default access permissions for unconfigured regions. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Enable(uint32_t MPU_Control) | |||
| { | |||
| __DSB(); | |||
| __ISB(); | |||
| MPU->CTRL = MPU_Control | MPU_CTRL_ENABLE_Msk; | |||
| #ifdef SCB_SHCSR_MEMFAULTENA_Msk | |||
| SCB->SHCSR |= SCB_SHCSR_MEMFAULTENA_Msk; | |||
| #endif | |||
| } | |||
| /** Disable the MPU. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Disable(void) | |||
| { | |||
| __DSB(); | |||
| __ISB(); | |||
| #ifdef SCB_SHCSR_MEMFAULTENA_Msk | |||
| SCB->SHCSR &= ~SCB_SHCSR_MEMFAULTENA_Msk; | |||
| #endif | |||
| MPU->CTRL &= ~MPU_CTRL_ENABLE_Msk; | |||
| } | |||
| #ifdef MPU_NS | |||
| /** Enable the Non-secure MPU. | |||
| * \param MPU_Control Default access permissions for unconfigured regions. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Enable_NS(uint32_t MPU_Control) | |||
| { | |||
| __DSB(); | |||
| __ISB(); | |||
| MPU_NS->CTRL = MPU_Control | MPU_CTRL_ENABLE_Msk; | |||
| #ifdef SCB_SHCSR_MEMFAULTENA_Msk | |||
| SCB_NS->SHCSR |= SCB_SHCSR_MEMFAULTENA_Msk; | |||
| #endif | |||
| } | |||
| /** Disable the Non-secure MPU. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Disable_NS(void) | |||
| { | |||
| __DSB(); | |||
| __ISB(); | |||
| #ifdef SCB_SHCSR_MEMFAULTENA_Msk | |||
| SCB_NS->SHCSR &= ~SCB_SHCSR_MEMFAULTENA_Msk; | |||
| #endif | |||
| MPU_NS->CTRL &= ~MPU_CTRL_ENABLE_Msk; | |||
| } | |||
| #endif | |||
| /** Set the memory attribute encoding to the given MPU. | |||
| * \param mpu Pointer to the MPU to be configured. | |||
| * \param idx The attribute index to be set [0-7] | |||
| * \param attr The attribute value to be set. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetMemAttrEx(MPU_Type* mpu, uint8_t idx, uint8_t attr) | |||
| { | |||
| const uint8_t reg = idx / 4U; | |||
| const uint32_t pos = ((idx % 4U) * 8U); | |||
| const uint32_t mask = 0xFFU << pos; | |||
| if (reg >= (sizeof(mpu->MAIR) / sizeof(mpu->MAIR[0]))) { | |||
| return; // invalid index | |||
| } | |||
| mpu->MAIR[reg] = ((mpu->MAIR[reg] & ~mask) | ((attr << pos) & mask)); | |||
| } | |||
| /** Set the memory attribute encoding. | |||
| * \param idx The attribute index to be set [0-7] | |||
| * \param attr The attribute value to be set. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetMemAttr(uint8_t idx, uint8_t attr) | |||
| { | |||
| ARM_MPU_SetMemAttrEx(MPU, idx, attr); | |||
| } | |||
| #ifdef MPU_NS | |||
| /** Set the memory attribute encoding to the Non-secure MPU. | |||
| * \param idx The attribute index to be set [0-7] | |||
| * \param attr The attribute value to be set. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetMemAttr_NS(uint8_t idx, uint8_t attr) | |||
| { | |||
| ARM_MPU_SetMemAttrEx(MPU_NS, idx, attr); | |||
| } | |||
| #endif | |||
| /** Clear and disable the given MPU region of the given MPU. | |||
| * \param mpu Pointer to MPU to be used. | |||
| * \param rnr Region number to be cleared. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_ClrRegionEx(MPU_Type* mpu, uint32_t rnr) | |||
| { | |||
| mpu->RNR = rnr; | |||
| mpu->RLAR = 0U; | |||
| } | |||
| /** Clear and disable the given MPU region. | |||
| * \param rnr Region number to be cleared. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_ClrRegion(uint32_t rnr) | |||
| { | |||
| ARM_MPU_ClrRegionEx(MPU, rnr); | |||
| } | |||
| #ifdef MPU_NS | |||
| /** Clear and disable the given Non-secure MPU region. | |||
| * \param rnr Region number to be cleared. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_ClrRegion_NS(uint32_t rnr) | |||
| { | |||
| ARM_MPU_ClrRegionEx(MPU_NS, rnr); | |||
| } | |||
| #endif | |||
| /** Configure the given MPU region of the given MPU. | |||
| * \param mpu Pointer to MPU to be used. | |||
| * \param rnr Region number to be configured. | |||
| * \param rbar Value for RBAR register. | |||
| * \param rlar Value for RLAR register. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetRegionEx(MPU_Type* mpu, uint32_t rnr, uint32_t rbar, uint32_t rlar) | |||
| { | |||
| mpu->RNR = rnr; | |||
| mpu->RBAR = rbar; | |||
| mpu->RLAR = rlar; | |||
| } | |||
| /** Configure the given MPU region. | |||
| * \param rnr Region number to be configured. | |||
| * \param rbar Value for RBAR register. | |||
| * \param rlar Value for RLAR register. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetRegion(uint32_t rnr, uint32_t rbar, uint32_t rlar) | |||
| { | |||
| ARM_MPU_SetRegionEx(MPU, rnr, rbar, rlar); | |||
| } | |||
| #ifdef MPU_NS | |||
| /** Configure the given Non-secure MPU region. | |||
| * \param rnr Region number to be configured. | |||
| * \param rbar Value for RBAR register. | |||
| * \param rlar Value for RLAR register. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_SetRegion_NS(uint32_t rnr, uint32_t rbar, uint32_t rlar) | |||
| { | |||
| ARM_MPU_SetRegionEx(MPU_NS, rnr, rbar, rlar); | |||
| } | |||
| #endif | |||
| /** Memcopy with strictly ordered memory access, e.g. for register targets. | |||
| * \param dst Destination data is copied to. | |||
| * \param src Source data is copied from. | |||
| * \param len Amount of data words to be copied. | |||
| */ | |||
| __STATIC_INLINE void orderedCpy(volatile uint32_t* dst, const uint32_t* __RESTRICT src, uint32_t len) | |||
| { | |||
| uint32_t i; | |||
| for (i = 0U; i < len; ++i) | |||
| { | |||
| dst[i] = src[i]; | |||
| } | |||
| } | |||
| /** Load the given number of MPU regions from a table to the given MPU. | |||
| * \param mpu Pointer to the MPU registers to be used. | |||
| * \param rnr First region number to be configured. | |||
| * \param table Pointer to the MPU configuration table. | |||
| * \param cnt Amount of regions to be configured. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_LoadEx(MPU_Type* mpu, uint32_t rnr, ARM_MPU_Region_t const* table, uint32_t cnt) | |||
| { | |||
| const uint32_t rowWordSize = sizeof(ARM_MPU_Region_t)/4U; | |||
| if (cnt == 1U) { | |||
| mpu->RNR = rnr; | |||
| orderedCpy(&(mpu->RBAR), &(table->RBAR), rowWordSize); | |||
| } else { | |||
| uint32_t rnrBase = rnr & ~(MPU_TYPE_RALIASES-1U); | |||
| uint32_t rnrOffset = rnr % MPU_TYPE_RALIASES; | |||
| mpu->RNR = rnrBase; | |||
| while ((rnrOffset + cnt) > MPU_TYPE_RALIASES) { | |||
| uint32_t c = MPU_TYPE_RALIASES - rnrOffset; | |||
| orderedCpy(&(mpu->RBAR)+(rnrOffset*2U), &(table->RBAR), c*rowWordSize); | |||
| table += c; | |||
| cnt -= c; | |||
| rnrOffset = 0U; | |||
| rnrBase += MPU_TYPE_RALIASES; | |||
| mpu->RNR = rnrBase; | |||
| } | |||
| orderedCpy(&(mpu->RBAR)+(rnrOffset*2U), &(table->RBAR), cnt*rowWordSize); | |||
| } | |||
| } | |||
| /** Load the given number of MPU regions from a table. | |||
| * \param rnr First region number to be configured. | |||
| * \param table Pointer to the MPU configuration table. | |||
| * \param cnt Amount of regions to be configured. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Load(uint32_t rnr, ARM_MPU_Region_t const* table, uint32_t cnt) | |||
| { | |||
| ARM_MPU_LoadEx(MPU, rnr, table, cnt); | |||
| } | |||
| #ifdef MPU_NS | |||
| /** Load the given number of MPU regions from a table to the Non-secure MPU. | |||
| * \param rnr First region number to be configured. | |||
| * \param table Pointer to the MPU configuration table. | |||
| * \param cnt Amount of regions to be configured. | |||
| */ | |||
| __STATIC_INLINE void ARM_MPU_Load_NS(uint32_t rnr, ARM_MPU_Region_t const* table, uint32_t cnt) | |||
| { | |||
| ARM_MPU_LoadEx(MPU_NS, rnr, table, cnt); | |||
| } | |||
| #endif | |||
| #endif | |||
| @@ -0,0 +1,70 @@ | |||
| /****************************************************************************** | |||
| * @file tz_context.h | |||
| * @brief Context Management for Armv8-M TrustZone | |||
| * @version V1.0.1 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2017-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef TZ_CONTEXT_H | |||
| #define TZ_CONTEXT_H | |||
| #include <stdint.h> | |||
| #ifndef TZ_MODULEID_T | |||
| #define TZ_MODULEID_T | |||
| /// \details Data type that identifies secure software modules called by a process. | |||
| typedef uint32_t TZ_ModuleId_t; | |||
| #endif | |||
| /// \details TZ Memory ID identifies an allocated memory slot. | |||
| typedef uint32_t TZ_MemoryId_t; | |||
| /// Initialize secure context memory system | |||
| /// \return execution status (1: success, 0: error) | |||
| uint32_t TZ_InitContextSystem_S (void); | |||
| /// Allocate context memory for calling secure software modules in TrustZone | |||
| /// \param[in] module identifies software modules called from non-secure mode | |||
| /// \return value != 0 id TrustZone memory slot identifier | |||
| /// \return value 0 no memory available or internal error | |||
| TZ_MemoryId_t TZ_AllocModuleContext_S (TZ_ModuleId_t module); | |||
| /// Free context memory that was previously allocated with \ref TZ_AllocModuleContext_S | |||
| /// \param[in] id TrustZone memory slot identifier | |||
| /// \return execution status (1: success, 0: error) | |||
| uint32_t TZ_FreeModuleContext_S (TZ_MemoryId_t id); | |||
| /// Load secure context (called on RTOS thread context switch) | |||
| /// \param[in] id TrustZone memory slot identifier | |||
| /// \return execution status (1: success, 0: error) | |||
| uint32_t TZ_LoadContext_S (TZ_MemoryId_t id); | |||
| /// Store secure context (called on RTOS thread context switch) | |||
| /// \param[in] id TrustZone memory slot identifier | |||
| /// \return execution status (1: success, 0: error) | |||
| uint32_t TZ_StoreContext_S (TZ_MemoryId_t id); | |||
| #endif // TZ_CONTEXT_H | |||
| @@ -0,0 +1,58 @@ | |||
| /****************************************************************************** | |||
| * @file main_s.c | |||
| * @brief Code template for secure main function | |||
| * @version V1.1.1 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2013-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| /* Use CMSE intrinsics */ | |||
| #include <arm_cmse.h> | |||
| #include "RTE_Components.h" | |||
| #include CMSIS_device_header | |||
| /* TZ_START_NS: Start address of non-secure application */ | |||
| #ifndef TZ_START_NS | |||
| #define TZ_START_NS (0x200000U) | |||
| #endif | |||
| /* typedef for non-secure callback functions */ | |||
| typedef void (*funcptr_void) (void) __attribute__((cmse_nonsecure_call)); | |||
| /* Secure main() */ | |||
| int main(void) { | |||
| funcptr_void NonSecure_ResetHandler; | |||
| /* Add user setup code for secure part here*/ | |||
| /* Set non-secure main stack (MSP_NS) */ | |||
| __TZ_set_MSP_NS(*((uint32_t *)(TZ_START_NS))); | |||
| /* Get non-secure reset handler */ | |||
| NonSecure_ResetHandler = (funcptr_void)(*((uint32_t *)((TZ_START_NS) + 4U))); | |||
| /* Start non-secure state software application */ | |||
| NonSecure_ResetHandler(); | |||
| /* Non-secure software does not return, this code is not executed */ | |||
| while (1) { | |||
| __NOP(); | |||
| } | |||
| } | |||
| @@ -0,0 +1,200 @@ | |||
| /****************************************************************************** | |||
| * @file tz_context.c | |||
| * @brief Context Management for Armv8-M TrustZone - Sample implementation | |||
| * @version V1.1.1 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2016-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #include "RTE_Components.h" | |||
| #include CMSIS_device_header | |||
| #include "tz_context.h" | |||
| /// Number of process slots (threads may call secure library code) | |||
| #ifndef TZ_PROCESS_STACK_SLOTS | |||
| #define TZ_PROCESS_STACK_SLOTS 8U | |||
| #endif | |||
| /// Stack size of the secure library code | |||
| #ifndef TZ_PROCESS_STACK_SIZE | |||
| #define TZ_PROCESS_STACK_SIZE 256U | |||
| #endif | |||
| typedef struct { | |||
| uint32_t sp_top; // stack space top | |||
| uint32_t sp_limit; // stack space limit | |||
| uint32_t sp; // current stack pointer | |||
| } stack_info_t; | |||
| static stack_info_t ProcessStackInfo [TZ_PROCESS_STACK_SLOTS]; | |||
| static uint64_t ProcessStackMemory[TZ_PROCESS_STACK_SLOTS][TZ_PROCESS_STACK_SIZE/8U]; | |||
| static uint32_t ProcessStackFreeSlot = 0xFFFFFFFFU; | |||
| /// Initialize secure context memory system | |||
| /// \return execution status (1: success, 0: error) | |||
| __attribute__((cmse_nonsecure_entry)) | |||
| uint32_t TZ_InitContextSystem_S (void) { | |||
| uint32_t n; | |||
| if (__get_IPSR() == 0U) { | |||
| return 0U; // Thread Mode | |||
| } | |||
| for (n = 0U; n < TZ_PROCESS_STACK_SLOTS; n++) { | |||
| ProcessStackInfo[n].sp = 0U; | |||
| ProcessStackInfo[n].sp_limit = (uint32_t)&ProcessStackMemory[n]; | |||
| ProcessStackInfo[n].sp_top = (uint32_t)&ProcessStackMemory[n] + TZ_PROCESS_STACK_SIZE; | |||
| *((uint32_t *)ProcessStackMemory[n]) = n + 1U; | |||
| } | |||
| *((uint32_t *)ProcessStackMemory[--n]) = 0xFFFFFFFFU; | |||
| ProcessStackFreeSlot = 0U; | |||
| // Default process stack pointer and stack limit | |||
| __set_PSPLIM((uint32_t)ProcessStackMemory); | |||
| __set_PSP ((uint32_t)ProcessStackMemory); | |||
| // Privileged Thread Mode using PSP | |||
| __set_CONTROL(0x02U); | |||
| return 1U; // Success | |||
| } | |||
| /// Allocate context memory for calling secure software modules in TrustZone | |||
| /// \param[in] module identifies software modules called from non-secure mode | |||
| /// \return value != 0 id TrustZone memory slot identifier | |||
| /// \return value 0 no memory available or internal error | |||
| __attribute__((cmse_nonsecure_entry)) | |||
| TZ_MemoryId_t TZ_AllocModuleContext_S (TZ_ModuleId_t module) { | |||
| uint32_t slot; | |||
| (void)module; // Ignore (fixed Stack size) | |||
| if (__get_IPSR() == 0U) { | |||
| return 0U; // Thread Mode | |||
| } | |||
| if (ProcessStackFreeSlot == 0xFFFFFFFFU) { | |||
| return 0U; // No slot available | |||
| } | |||
| slot = ProcessStackFreeSlot; | |||
| ProcessStackFreeSlot = *((uint32_t *)ProcessStackMemory[slot]); | |||
| ProcessStackInfo[slot].sp = ProcessStackInfo[slot].sp_top; | |||
| return (slot + 1U); | |||
| } | |||
| /// Free context memory that was previously allocated with \ref TZ_AllocModuleContext_S | |||
| /// \param[in] id TrustZone memory slot identifier | |||
| /// \return execution status (1: success, 0: error) | |||
| __attribute__((cmse_nonsecure_entry)) | |||
| uint32_t TZ_FreeModuleContext_S (TZ_MemoryId_t id) { | |||
| uint32_t slot; | |||
| if (__get_IPSR() == 0U) { | |||
| return 0U; // Thread Mode | |||
| } | |||
| if ((id == 0U) || (id > TZ_PROCESS_STACK_SLOTS)) { | |||
| return 0U; // Invalid ID | |||
| } | |||
| slot = id - 1U; | |||
| if (ProcessStackInfo[slot].sp == 0U) { | |||
| return 0U; // Inactive slot | |||
| } | |||
| ProcessStackInfo[slot].sp = 0U; | |||
| *((uint32_t *)ProcessStackMemory[slot]) = ProcessStackFreeSlot; | |||
| ProcessStackFreeSlot = slot; | |||
| return 1U; // Success | |||
| } | |||
| /// Load secure context (called on RTOS thread context switch) | |||
| /// \param[in] id TrustZone memory slot identifier | |||
| /// \return execution status (1: success, 0: error) | |||
| __attribute__((cmse_nonsecure_entry)) | |||
| uint32_t TZ_LoadContext_S (TZ_MemoryId_t id) { | |||
| uint32_t slot; | |||
| if ((__get_IPSR() == 0U) || ((__get_CONTROL() & 2U) == 0U)) { | |||
| return 0U; // Thread Mode or using Main Stack for threads | |||
| } | |||
| if ((id == 0U) || (id > TZ_PROCESS_STACK_SLOTS)) { | |||
| return 0U; // Invalid ID | |||
| } | |||
| slot = id - 1U; | |||
| if (ProcessStackInfo[slot].sp == 0U) { | |||
| return 0U; // Inactive slot | |||
| } | |||
| // Setup process stack pointer and stack limit | |||
| __set_PSPLIM(ProcessStackInfo[slot].sp_limit); | |||
| __set_PSP (ProcessStackInfo[slot].sp); | |||
| return 1U; // Success | |||
| } | |||
| /// Store secure context (called on RTOS thread context switch) | |||
| /// \param[in] id TrustZone memory slot identifier | |||
| /// \return execution status (1: success, 0: error) | |||
| __attribute__((cmse_nonsecure_entry)) | |||
| uint32_t TZ_StoreContext_S (TZ_MemoryId_t id) { | |||
| uint32_t slot; | |||
| uint32_t sp; | |||
| if ((__get_IPSR() == 0U) || ((__get_CONTROL() & 2U) == 0U)) { | |||
| return 0U; // Thread Mode or using Main Stack for threads | |||
| } | |||
| if ((id == 0U) || (id > TZ_PROCESS_STACK_SLOTS)) { | |||
| return 0U; // Invalid ID | |||
| } | |||
| slot = id - 1U; | |||
| if (ProcessStackInfo[slot].sp == 0U) { | |||
| return 0U; // Inactive slot | |||
| } | |||
| sp = __get_PSP(); | |||
| if ((sp < ProcessStackInfo[slot].sp_limit) || | |||
| (sp > ProcessStackInfo[slot].sp_top)) { | |||
| return 0U; // SP out of range | |||
| } | |||
| ProcessStackInfo[slot].sp = sp; | |||
| // Default process stack pointer and stack limit | |||
| __set_PSPLIM((uint32_t)ProcessStackMemory); | |||
| __set_PSP ((uint32_t)ProcessStackMemory); | |||
| return 1U; // Success | |||
| } | |||
| @@ -0,0 +1,544 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_armcc.h | |||
| * @brief CMSIS compiler specific macros, functions, instructions | |||
| * @version V1.0.2 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #ifndef __CMSIS_ARMCC_H | |||
| #define __CMSIS_ARMCC_H | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 400677) | |||
| #error "Please use Arm Compiler Toolchain V4.0.677 or later!" | |||
| #endif | |||
| /* CMSIS compiler control architecture macros */ | |||
| #if (defined (__TARGET_ARCH_7_A ) && (__TARGET_ARCH_7_A == 1)) | |||
| #define __ARM_ARCH_7A__ 1 | |||
| #endif | |||
| /* CMSIS compiler specific defines */ | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE __inline | |||
| #endif | |||
| #ifndef __FORCEINLINE | |||
| #define __FORCEINLINE __forceinline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static __inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE static __forceinline | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __declspec(noreturn) | |||
| #endif | |||
| #ifndef CMSIS_DEPRECATED | |||
| #define CMSIS_DEPRECATED __attribute__((deprecated)) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed)) | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #define __PACKED_STRUCT __packed struct | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| #define __UNALIGNED_UINT16_WRITE(addr, val) ((*((__packed uint16_t *)(addr))) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| #define __UNALIGNED_UINT16_READ(addr) (*((const __packed uint16_t *)(addr))) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| #define __UNALIGNED_UINT32_WRITE(addr, val) ((*((__packed uint32_t *)(addr))) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| #define __UNALIGNED_UINT32_READ(addr) (*((const __packed uint32_t *)(addr))) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed)) | |||
| #endif | |||
| /* ########################## Core Instruction Access ######################### */ | |||
| /** | |||
| \brief No Operation | |||
| */ | |||
| #define __NOP __nop | |||
| /** | |||
| \brief Wait For Interrupt | |||
| */ | |||
| #define __WFI __wfi | |||
| /** | |||
| \brief Wait For Event | |||
| */ | |||
| #define __WFE __wfe | |||
| /** | |||
| \brief Send Event | |||
| */ | |||
| #define __SEV __sev | |||
| /** | |||
| \brief Instruction Synchronization Barrier | |||
| */ | |||
| #define __ISB() do {\ | |||
| __schedule_barrier();\ | |||
| __isb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Data Synchronization Barrier | |||
| */ | |||
| #define __DSB() do {\ | |||
| __schedule_barrier();\ | |||
| __dsb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Data Memory Barrier | |||
| */ | |||
| #define __DMB() do {\ | |||
| __schedule_barrier();\ | |||
| __dmb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Reverse byte order (32 bit) | |||
| \details Reverses the byte order in unsigned integer value. For example, 0x12345678 becomes 0x78563412. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #define __REV __rev | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order within each halfword of a word. For example, 0x12345678 becomes 0x34127856. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #ifndef __NO_EMBEDDED_ASM | |||
| __attribute__((section(".rev16_text"))) __STATIC_INLINE __ASM uint32_t __REV16(uint32_t value) | |||
| { | |||
| rev16 r0, r0 | |||
| bx lr | |||
| } | |||
| #endif | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order in a 16-bit value and returns the signed 16-bit result. For example, 0x0080 becomes 0x8000. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #ifndef __NO_EMBEDDED_ASM | |||
| __attribute__((section(".revsh_text"))) __STATIC_INLINE __ASM int16_t __REVSH(int16_t value) | |||
| { | |||
| revsh r0, r0 | |||
| bx lr | |||
| } | |||
| #endif | |||
| /** | |||
| \brief Rotate Right in unsigned value (32 bit) | |||
| \param [in] op1 Value to rotate | |||
| \param [in] op2 Number of Bits to rotate | |||
| \return Rotated value | |||
| */ | |||
| #define __ROR __ror | |||
| /** | |||
| \brief Breakpoint | |||
| \param [in] value is ignored by the processor. | |||
| If required, a debugger can use it to store additional information about the breakpoint. | |||
| */ | |||
| #define __BKPT(value) __breakpoint(value) | |||
| /** | |||
| \brief Reverse bit order of value | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #define __RBIT __rbit | |||
| /** | |||
| \brief Count leading zeros | |||
| \param [in] value Value to count the leading zeros | |||
| \return number of leading zeros in value | |||
| */ | |||
| #define __CLZ __clz | |||
| /** | |||
| \brief LDR Exclusive (8 bit) | |||
| \details Executes a exclusive LDR instruction for 8 bit value. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint8_t at (*ptr) | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __LDREXB(ptr) ((uint8_t ) __ldrex(ptr)) | |||
| #else | |||
| #define __LDREXB(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint8_t ) __ldrex(ptr)) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief LDR Exclusive (16 bit) | |||
| \details Executes a exclusive LDR instruction for 16 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint16_t at (*ptr) | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __LDREXH(ptr) ((uint16_t) __ldrex(ptr)) | |||
| #else | |||
| #define __LDREXH(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint16_t) __ldrex(ptr)) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief LDR Exclusive (32 bit) | |||
| \details Executes a exclusive LDR instruction for 32 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint32_t at (*ptr) | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __LDREXW(ptr) ((uint32_t ) __ldrex(ptr)) | |||
| #else | |||
| #define __LDREXW(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint32_t ) __ldrex(ptr)) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief STR Exclusive (8 bit) | |||
| \details Executes a exclusive STR instruction for 8 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __STREXB(value, ptr) __strex(value, ptr) | |||
| #else | |||
| #define __STREXB(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief STR Exclusive (16 bit) | |||
| \details Executes a exclusive STR instruction for 16 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __STREXH(value, ptr) __strex(value, ptr) | |||
| #else | |||
| #define __STREXH(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief STR Exclusive (32 bit) | |||
| \details Executes a exclusive STR instruction for 32 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020) | |||
| #define __STREXW(value, ptr) __strex(value, ptr) | |||
| #else | |||
| #define __STREXW(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop") | |||
| #endif | |||
| /** | |||
| \brief Remove the exclusive lock | |||
| \details Removes the exclusive lock which is created by LDREX. | |||
| */ | |||
| #define __CLREX __clrex | |||
| /** | |||
| \brief Signed Saturate | |||
| \details Saturates a signed value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (1..32) | |||
| \return Saturated value | |||
| */ | |||
| #define __SSAT __ssat | |||
| /** | |||
| \brief Unsigned Saturate | |||
| \details Saturates an unsigned value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (0..31) | |||
| \return Saturated value | |||
| */ | |||
| #define __USAT __usat | |||
| /* ########################### Core Function Access ########################### */ | |||
| /** | |||
| \brief Get FPSCR (Floating Point Status/Control) | |||
| \return Floating Point Status/Control register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_FPSCR(void) | |||
| { | |||
| #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) ) | |||
| register uint32_t __regfpscr __ASM("fpscr"); | |||
| return(__regfpscr); | |||
| #else | |||
| return(0U); | |||
| #endif | |||
| } | |||
| /** | |||
| \brief Set FPSCR (Floating Point Status/Control) | |||
| \param [in] fpscr Floating Point Status/Control value to set | |||
| */ | |||
| __STATIC_INLINE void __set_FPSCR(uint32_t fpscr) | |||
| { | |||
| #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) ) | |||
| register uint32_t __regfpscr __ASM("fpscr"); | |||
| __regfpscr = (fpscr); | |||
| #else | |||
| (void)fpscr; | |||
| #endif | |||
| } | |||
| /** \brief Get CPSR (Current Program Status Register) | |||
| \return CPSR Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_CPSR(void) | |||
| { | |||
| register uint32_t __regCPSR __ASM("cpsr"); | |||
| return(__regCPSR); | |||
| } | |||
| /** \brief Set CPSR (Current Program Status Register) | |||
| \param [in] cpsr CPSR value to set | |||
| */ | |||
| __STATIC_INLINE void __set_CPSR(uint32_t cpsr) | |||
| { | |||
| register uint32_t __regCPSR __ASM("cpsr"); | |||
| __regCPSR = cpsr; | |||
| } | |||
| /** \brief Get Mode | |||
| \return Processor Mode | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_mode(void) | |||
| { | |||
| return (__get_CPSR() & 0x1FU); | |||
| } | |||
| /** \brief Set Mode | |||
| \param [in] mode Mode value to set | |||
| */ | |||
| __STATIC_INLINE __ASM void __set_mode(uint32_t mode) | |||
| { | |||
| MOV r1, lr | |||
| MSR CPSR_C, r0 | |||
| BX r1 | |||
| } | |||
| /** \brief Get Stack Pointer | |||
| \return Stack Pointer | |||
| */ | |||
| __STATIC_INLINE __ASM uint32_t __get_SP(void) | |||
| { | |||
| MOV r0, sp | |||
| BX lr | |||
| } | |||
| /** \brief Set Stack Pointer | |||
| \param [in] stack Stack Pointer value to set | |||
| */ | |||
| __STATIC_INLINE __ASM void __set_SP(uint32_t stack) | |||
| { | |||
| MOV sp, r0 | |||
| BX lr | |||
| } | |||
| /** \brief Get USR/SYS Stack Pointer | |||
| \return USR/SYSStack Pointer | |||
| */ | |||
| __STATIC_INLINE __ASM uint32_t __get_SP_usr(void) | |||
| { | |||
| ARM | |||
| PRESERVE8 | |||
| MRS R1, CPSR | |||
| CPS #0x1F ;no effect in USR mode | |||
| MOV R0, SP | |||
| MSR CPSR_c, R1 ;no effect in USR mode | |||
| ISB | |||
| BX LR | |||
| } | |||
| /** \brief Set USR/SYS Stack Pointer | |||
| \param [in] topOfProcStack USR/SYS Stack Pointer value to set | |||
| */ | |||
| __STATIC_INLINE __ASM void __set_SP_usr(uint32_t topOfProcStack) | |||
| { | |||
| ARM | |||
| PRESERVE8 | |||
| MRS R1, CPSR | |||
| CPS #0x1F ;no effect in USR mode | |||
| MOV SP, R0 | |||
| MSR CPSR_c, R1 ;no effect in USR mode | |||
| ISB | |||
| BX LR | |||
| } | |||
| /** \brief Get FPEXC (Floating Point Exception Control Register) | |||
| \return Floating Point Exception Control Register value | |||
| */ | |||
| __STATIC_INLINE uint32_t __get_FPEXC(void) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| register uint32_t __regfpexc __ASM("fpexc"); | |||
| return(__regfpexc); | |||
| #else | |||
| return(0); | |||
| #endif | |||
| } | |||
| /** \brief Set FPEXC (Floating Point Exception Control Register) | |||
| \param [in] fpexc Floating Point Exception Control value to set | |||
| */ | |||
| __STATIC_INLINE void __set_FPEXC(uint32_t fpexc) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| register uint32_t __regfpexc __ASM("fpexc"); | |||
| __regfpexc = (fpexc); | |||
| #endif | |||
| } | |||
| /* | |||
| * Include common core functions to access Coprocessor 15 registers | |||
| */ | |||
| #define __get_CP(cp, op1, Rt, CRn, CRm, op2) do { register volatile uint32_t tmp __ASM("cp" # cp ":" # op1 ":c" # CRn ":c" # CRm ":" # op2); (Rt) = tmp; } while(0) | |||
| #define __set_CP(cp, op1, Rt, CRn, CRm, op2) do { register volatile uint32_t tmp __ASM("cp" # cp ":" # op1 ":c" # CRn ":c" # CRm ":" # op2); tmp = (Rt); } while(0) | |||
| #define __get_CP64(cp, op1, Rt, CRm) \ | |||
| do { \ | |||
| uint32_t ltmp, htmp; \ | |||
| __ASM volatile("MRRC p" # cp ", " # op1 ", ltmp, htmp, c" # CRm); \ | |||
| (Rt) = ((((uint64_t)htmp) << 32U) | ((uint64_t)ltmp)); \ | |||
| } while(0) | |||
| #define __set_CP64(cp, op1, Rt, CRm) \ | |||
| do { \ | |||
| const uint64_t tmp = (Rt); \ | |||
| const uint32_t ltmp = (uint32_t)(tmp); \ | |||
| const uint32_t htmp = (uint32_t)(tmp >> 32U); \ | |||
| __ASM volatile("MCRR p" # cp ", " # op1 ", ltmp, htmp, c" # CRm); \ | |||
| } while(0) | |||
| #include "cmsis_cp15.h" | |||
| /** \brief Enable Floating Point Unit | |||
| Critical section, called from undef handler, so systick is disabled | |||
| */ | |||
| __STATIC_INLINE __ASM void __FPU_Enable(void) | |||
| { | |||
| ARM | |||
| //Permit access to VFP/NEON, registers by modifying CPACR | |||
| MRC p15,0,R1,c1,c0,2 | |||
| ORR R1,R1,#0x00F00000 | |||
| MCR p15,0,R1,c1,c0,2 | |||
| //Ensure that subsequent instructions occur in the context of VFP/NEON access permitted | |||
| ISB | |||
| //Enable VFP/NEON | |||
| VMRS R1,FPEXC | |||
| ORR R1,R1,#0x40000000 | |||
| VMSR FPEXC,R1 | |||
| //Initialise VFP/NEON registers to 0 | |||
| MOV R2,#0 | |||
| //Initialise D16 registers to 0 | |||
| VMOV D0, R2,R2 | |||
| VMOV D1, R2,R2 | |||
| VMOV D2, R2,R2 | |||
| VMOV D3, R2,R2 | |||
| VMOV D4, R2,R2 | |||
| VMOV D5, R2,R2 | |||
| VMOV D6, R2,R2 | |||
| VMOV D7, R2,R2 | |||
| VMOV D8, R2,R2 | |||
| VMOV D9, R2,R2 | |||
| VMOV D10,R2,R2 | |||
| VMOV D11,R2,R2 | |||
| VMOV D12,R2,R2 | |||
| VMOV D13,R2,R2 | |||
| VMOV D14,R2,R2 | |||
| VMOV D15,R2,R2 | |||
| IF {TARGET_FEATURE_EXTENSION_REGISTER_COUNT} == 32 | |||
| //Initialise D32 registers to 0 | |||
| VMOV D16,R2,R2 | |||
| VMOV D17,R2,R2 | |||
| VMOV D18,R2,R2 | |||
| VMOV D19,R2,R2 | |||
| VMOV D20,R2,R2 | |||
| VMOV D21,R2,R2 | |||
| VMOV D22,R2,R2 | |||
| VMOV D23,R2,R2 | |||
| VMOV D24,R2,R2 | |||
| VMOV D25,R2,R2 | |||
| VMOV D26,R2,R2 | |||
| VMOV D27,R2,R2 | |||
| VMOV D28,R2,R2 | |||
| VMOV D29,R2,R2 | |||
| VMOV D30,R2,R2 | |||
| VMOV D31,R2,R2 | |||
| ENDIF | |||
| //Initialise FPSCR to a known state | |||
| VMRS R2,FPSCR | |||
| LDR R3,=0x00086060 //Mask off all bits that do not have to be preserved. Non-preserved bits can/should be zero. | |||
| AND R2,R2,R3 | |||
| VMSR FPSCR,R2 | |||
| BX LR | |||
| } | |||
| #endif /* __CMSIS_ARMCC_H */ | |||
| @@ -0,0 +1,503 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_armclang.h | |||
| * @brief CMSIS compiler specific macros, functions, instructions | |||
| * @version V1.0.2 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #ifndef __CMSIS_ARMCLANG_H | |||
| #define __CMSIS_ARMCLANG_H | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #ifndef __ARM_COMPAT_H | |||
| #include <arm_compat.h> /* Compatibility header for Arm Compiler 5 intrinsics */ | |||
| #endif | |||
| /* CMSIS compiler specific defines */ | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE __inline | |||
| #endif | |||
| #ifndef __FORCEINLINE | |||
| #define __FORCEINLINE __attribute__((always_inline)) | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static __inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __attribute__((always_inline)) static __inline | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __attribute__((__noreturn__)) | |||
| #endif | |||
| #ifndef CMSIS_DEPRECATED | |||
| #define CMSIS_DEPRECATED __attribute__((deprecated)) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed, aligned(1))) | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #define __PACKED_STRUCT struct __attribute__((packed, aligned(1))) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| #pragma clang diagnostic push | |||
| #pragma clang diagnostic ignored "-Wpacked" | |||
| /*lint -esym(9058, T_UINT16_WRITE)*/ /* disable MISRA 2012 Rule 2.4 for T_UINT16_WRITE */ | |||
| __PACKED_STRUCT T_UINT16_WRITE { uint16_t v; }; | |||
| #pragma clang diagnostic pop | |||
| #define __UNALIGNED_UINT16_WRITE(addr, val) (void)((((struct T_UINT16_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| #pragma clang diagnostic push | |||
| #pragma clang diagnostic ignored "-Wpacked" | |||
| /*lint -esym(9058, T_UINT16_READ)*/ /* disable MISRA 2012 Rule 2.4 for T_UINT16_READ */ | |||
| __PACKED_STRUCT T_UINT16_READ { uint16_t v; }; | |||
| #pragma clang diagnostic pop | |||
| #define __UNALIGNED_UINT16_READ(addr) (((const struct T_UINT16_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| #pragma clang diagnostic push | |||
| #pragma clang diagnostic ignored "-Wpacked" | |||
| /*lint -esym(9058, T_UINT32_WRITE)*/ /* disable MISRA 2012 Rule 2.4 for T_UINT32_WRITE */ | |||
| __PACKED_STRUCT T_UINT32_WRITE { uint32_t v; }; | |||
| #pragma clang diagnostic pop | |||
| #define __UNALIGNED_UINT32_WRITE(addr, val) (void)((((struct T_UINT32_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| #pragma clang diagnostic push | |||
| #pragma clang diagnostic ignored "-Wpacked" | |||
| __PACKED_STRUCT T_UINT32_READ { uint32_t v; }; | |||
| #pragma clang diagnostic pop | |||
| #define __UNALIGNED_UINT32_READ(addr) (((const struct T_UINT32_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed)) | |||
| #endif | |||
| /* ########################## Core Instruction Access ######################### */ | |||
| /** | |||
| \brief No Operation | |||
| */ | |||
| #define __NOP __builtin_arm_nop | |||
| /** | |||
| \brief Wait For Interrupt | |||
| */ | |||
| #define __WFI __builtin_arm_wfi | |||
| /** | |||
| \brief Wait For Event | |||
| */ | |||
| #define __WFE __builtin_arm_wfe | |||
| /** | |||
| \brief Send Event | |||
| */ | |||
| #define __SEV __builtin_arm_sev | |||
| /** | |||
| \brief Instruction Synchronization Barrier | |||
| */ | |||
| #define __ISB() do {\ | |||
| __schedule_barrier();\ | |||
| __builtin_arm_isb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Data Synchronization Barrier | |||
| */ | |||
| #define __DSB() do {\ | |||
| __schedule_barrier();\ | |||
| __builtin_arm_dsb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Data Memory Barrier | |||
| */ | |||
| #define __DMB() do {\ | |||
| __schedule_barrier();\ | |||
| __builtin_arm_dmb(0xF);\ | |||
| __schedule_barrier();\ | |||
| } while (0U) | |||
| /** | |||
| \brief Reverse byte order (32 bit) | |||
| \details Reverses the byte order in unsigned integer value. For example, 0x12345678 becomes 0x78563412. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #define __REV(value) __builtin_bswap32(value) | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order within each halfword of a word. For example, 0x12345678 becomes 0x34127856. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #define __REV16(value) __ROR(__REV(value), 16) | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order in a 16-bit value and returns the signed 16-bit result. For example, 0x0080 becomes 0x8000. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #define __REVSH(value) (int16_t)__builtin_bswap16(value) | |||
| /** | |||
| \brief Rotate Right in unsigned value (32 bit) | |||
| \details Rotate Right (immediate) provides the value of the contents of a register rotated by a variable number of bits. | |||
| \param [in] op1 Value to rotate | |||
| \param [in] op2 Number of Bits to rotate | |||
| \return Rotated value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __ROR(uint32_t op1, uint32_t op2) | |||
| { | |||
| op2 %= 32U; | |||
| if (op2 == 0U) | |||
| { | |||
| return op1; | |||
| } | |||
| return (op1 >> op2) | (op1 << (32U - op2)); | |||
| } | |||
| /** | |||
| \brief Breakpoint | |||
| \param [in] value is ignored by the processor. | |||
| If required, a debugger can use it to store additional information about the breakpoint. | |||
| */ | |||
| #define __BKPT(value) __ASM volatile ("bkpt "#value) | |||
| /** | |||
| \brief Reverse bit order of value | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #define __RBIT __builtin_arm_rbit | |||
| /** | |||
| \brief Count leading zeros | |||
| \param [in] value Value to count the leading zeros | |||
| \return number of leading zeros in value | |||
| */ | |||
| #define __CLZ (uint8_t)__builtin_clz | |||
| /** | |||
| \brief LDR Exclusive (8 bit) | |||
| \details Executes a exclusive LDR instruction for 8 bit value. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint8_t at (*ptr) | |||
| */ | |||
| #define __LDREXB (uint8_t)__builtin_arm_ldrex | |||
| /** | |||
| \brief LDR Exclusive (16 bit) | |||
| \details Executes a exclusive LDR instruction for 16 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint16_t at (*ptr) | |||
| */ | |||
| #define __LDREXH (uint16_t)__builtin_arm_ldrex | |||
| /** | |||
| \brief LDR Exclusive (32 bit) | |||
| \details Executes a exclusive LDR instruction for 32 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint32_t at (*ptr) | |||
| */ | |||
| #define __LDREXW (uint32_t)__builtin_arm_ldrex | |||
| /** | |||
| \brief STR Exclusive (8 bit) | |||
| \details Executes a exclusive STR instruction for 8 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #define __STREXB (uint32_t)__builtin_arm_strex | |||
| /** | |||
| \brief STR Exclusive (16 bit) | |||
| \details Executes a exclusive STR instruction for 16 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #define __STREXH (uint32_t)__builtin_arm_strex | |||
| /** | |||
| \brief STR Exclusive (32 bit) | |||
| \details Executes a exclusive STR instruction for 32 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| #define __STREXW (uint32_t)__builtin_arm_strex | |||
| /** | |||
| \brief Remove the exclusive lock | |||
| \details Removes the exclusive lock which is created by LDREX. | |||
| */ | |||
| #define __CLREX __builtin_arm_clrex | |||
| /** | |||
| \brief Signed Saturate | |||
| \details Saturates a signed value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (1..32) | |||
| \return Saturated value | |||
| */ | |||
| #define __SSAT __builtin_arm_ssat | |||
| /** | |||
| \brief Unsigned Saturate | |||
| \details Saturates an unsigned value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (0..31) | |||
| \return Saturated value | |||
| */ | |||
| #define __USAT __builtin_arm_usat | |||
| /* ########################### Core Function Access ########################### */ | |||
| /** | |||
| \brief Get FPSCR | |||
| \details Returns the current value of the Floating Point Status/Control register. | |||
| \return Floating Point Status/Control register value | |||
| */ | |||
| #define __get_FPSCR __builtin_arm_get_fpscr | |||
| /** | |||
| \brief Set FPSCR | |||
| \details Assigns the given value to the Floating Point Status/Control register. | |||
| \param [in] fpscr Floating Point Status/Control value to set | |||
| */ | |||
| #define __set_FPSCR __builtin_arm_set_fpscr | |||
| /** \brief Get CPSR Register | |||
| \return CPSR Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CPSR(void) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile("MRS %0, cpsr" : "=r" (result) ); | |||
| return(result); | |||
| } | |||
| /** \brief Set CPSR Register | |||
| \param [in] cpsr CPSR value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CPSR(uint32_t cpsr) | |||
| { | |||
| __ASM volatile ("MSR cpsr, %0" : : "r" (cpsr) : "memory"); | |||
| } | |||
| /** \brief Get Mode | |||
| \return Processor Mode | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_mode(void) | |||
| { | |||
| return (__get_CPSR() & 0x1FU); | |||
| } | |||
| /** \brief Set Mode | |||
| \param [in] mode Mode value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_mode(uint32_t mode) | |||
| { | |||
| __ASM volatile("MSR cpsr_c, %0" : : "r" (mode) : "memory"); | |||
| } | |||
| /** \brief Get Stack Pointer | |||
| \return Stack Pointer value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_SP() | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile("MOV %0, sp" : "=r" (result) : : "memory"); | |||
| return result; | |||
| } | |||
| /** \brief Set Stack Pointer | |||
| \param [in] stack Stack Pointer value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_SP(uint32_t stack) | |||
| { | |||
| __ASM volatile("MOV sp, %0" : : "r" (stack) : "memory"); | |||
| } | |||
| /** \brief Get USR/SYS Stack Pointer | |||
| \return USR/SYS Stack Pointer value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_SP_usr() | |||
| { | |||
| uint32_t cpsr; | |||
| uint32_t result; | |||
| __ASM volatile( | |||
| "MRS %0, cpsr \n" | |||
| "CPS #0x1F \n" // no effect in USR mode | |||
| "MOV %1, sp \n" | |||
| "MSR cpsr_c, %2 \n" // no effect in USR mode | |||
| "ISB" : "=r"(cpsr), "=r"(result) : "r"(cpsr) : "memory" | |||
| ); | |||
| return result; | |||
| } | |||
| /** \brief Set USR/SYS Stack Pointer | |||
| \param [in] topOfProcStack USR/SYS Stack Pointer value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_SP_usr(uint32_t topOfProcStack) | |||
| { | |||
| uint32_t cpsr; | |||
| __ASM volatile( | |||
| "MRS %0, cpsr \n" | |||
| "CPS #0x1F \n" // no effect in USR mode | |||
| "MOV sp, %1 \n" | |||
| "MSR cpsr_c, %2 \n" // no effect in USR mode | |||
| "ISB" : "=r"(cpsr) : "r" (topOfProcStack), "r"(cpsr) : "memory" | |||
| ); | |||
| } | |||
| /** \brief Get FPEXC | |||
| \return Floating Point Exception Control register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_FPEXC(void) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| uint32_t result; | |||
| __ASM volatile("VMRS %0, fpexc" : "=r" (result) : : "memory"); | |||
| return(result); | |||
| #else | |||
| return(0); | |||
| #endif | |||
| } | |||
| /** \brief Set FPEXC | |||
| \param [in] fpexc Floating Point Exception Control value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_FPEXC(uint32_t fpexc) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| __ASM volatile ("VMSR fpexc, %0" : : "r" (fpexc) : "memory"); | |||
| #endif | |||
| } | |||
| /* | |||
| * Include common core functions to access Coprocessor 15 registers | |||
| */ | |||
| #define __get_CP(cp, op1, Rt, CRn, CRm, op2) __ASM volatile("MRC p" # cp ", " # op1 ", %0, c" # CRn ", c" # CRm ", " # op2 : "=r" (Rt) : : "memory" ) | |||
| #define __set_CP(cp, op1, Rt, CRn, CRm, op2) __ASM volatile("MCR p" # cp ", " # op1 ", %0, c" # CRn ", c" # CRm ", " # op2 : : "r" (Rt) : "memory" ) | |||
| #define __get_CP64(cp, op1, Rt, CRm) __ASM volatile("MRRC p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : "=r" (Rt) : : "memory" ) | |||
| #define __set_CP64(cp, op1, Rt, CRm) __ASM volatile("MCRR p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : : "r" (Rt) : "memory" ) | |||
| #include "cmsis_cp15.h" | |||
| /** \brief Enable Floating Point Unit | |||
| Critical section, called from undef handler, so systick is disabled | |||
| */ | |||
| __STATIC_INLINE void __FPU_Enable(void) | |||
| { | |||
| __ASM volatile( | |||
| //Permit access to VFP/NEON, registers by modifying CPACR | |||
| " MRC p15,0,R1,c1,c0,2 \n" | |||
| " ORR R1,R1,#0x00F00000 \n" | |||
| " MCR p15,0,R1,c1,c0,2 \n" | |||
| //Ensure that subsequent instructions occur in the context of VFP/NEON access permitted | |||
| " ISB \n" | |||
| //Enable VFP/NEON | |||
| " VMRS R1,FPEXC \n" | |||
| " ORR R1,R1,#0x40000000 \n" | |||
| " VMSR FPEXC,R1 \n" | |||
| //Initialise VFP/NEON registers to 0 | |||
| " MOV R2,#0 \n" | |||
| //Initialise D16 registers to 0 | |||
| " VMOV D0, R2,R2 \n" | |||
| " VMOV D1, R2,R2 \n" | |||
| " VMOV D2, R2,R2 \n" | |||
| " VMOV D3, R2,R2 \n" | |||
| " VMOV D4, R2,R2 \n" | |||
| " VMOV D5, R2,R2 \n" | |||
| " VMOV D6, R2,R2 \n" | |||
| " VMOV D7, R2,R2 \n" | |||
| " VMOV D8, R2,R2 \n" | |||
| " VMOV D9, R2,R2 \n" | |||
| " VMOV D10,R2,R2 \n" | |||
| " VMOV D11,R2,R2 \n" | |||
| " VMOV D12,R2,R2 \n" | |||
| " VMOV D13,R2,R2 \n" | |||
| " VMOV D14,R2,R2 \n" | |||
| " VMOV D15,R2,R2 \n" | |||
| #if __ARM_NEON == 1 | |||
| //Initialise D32 registers to 0 | |||
| " VMOV D16,R2,R2 \n" | |||
| " VMOV D17,R2,R2 \n" | |||
| " VMOV D18,R2,R2 \n" | |||
| " VMOV D19,R2,R2 \n" | |||
| " VMOV D20,R2,R2 \n" | |||
| " VMOV D21,R2,R2 \n" | |||
| " VMOV D22,R2,R2 \n" | |||
| " VMOV D23,R2,R2 \n" | |||
| " VMOV D24,R2,R2 \n" | |||
| " VMOV D25,R2,R2 \n" | |||
| " VMOV D26,R2,R2 \n" | |||
| " VMOV D27,R2,R2 \n" | |||
| " VMOV D28,R2,R2 \n" | |||
| " VMOV D29,R2,R2 \n" | |||
| " VMOV D30,R2,R2 \n" | |||
| " VMOV D31,R2,R2 \n" | |||
| #endif | |||
| //Initialise FPSCR to a known state | |||
| " VMRS R2,FPSCR \n" | |||
| " LDR R3,=0x00086060 \n" //Mask off all bits that do not have to be preserved. Non-preserved bits can/should be zero. | |||
| " AND R2,R2,R3 \n" | |||
| " VMSR FPSCR,R2 " | |||
| ); | |||
| } | |||
| #endif /* __CMSIS_ARMCLANG_H */ | |||
| @@ -0,0 +1,201 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_compiler.h | |||
| * @brief CMSIS compiler specific macros, functions, instructions | |||
| * @version V1.0.2 | |||
| * @date 10. January 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #ifndef __CMSIS_COMPILER_H | |||
| #define __CMSIS_COMPILER_H | |||
| #include <stdint.h> | |||
| /* | |||
| * Arm Compiler 4/5 | |||
| */ | |||
| #if defined ( __CC_ARM ) | |||
| #include "cmsis_armcc.h" | |||
| /* | |||
| * Arm Compiler 6 (armclang) | |||
| */ | |||
| #elif defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050) | |||
| #include "cmsis_armclang.h" | |||
| /* | |||
| * GNU Compiler | |||
| */ | |||
| #elif defined ( __GNUC__ ) | |||
| #include "cmsis_gcc.h" | |||
| /* | |||
| * IAR Compiler | |||
| */ | |||
| #elif defined ( __ICCARM__ ) | |||
| #include "cmsis_iccarm.h" | |||
| /* | |||
| * TI Arm Compiler | |||
| */ | |||
| #elif defined ( __TI_ARM__ ) | |||
| #include <cmsis_ccs.h> | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __attribute__((noreturn)) | |||
| #endif | |||
| #ifndef CMSIS_DEPRECATED | |||
| #define CMSIS_DEPRECATED __attribute__((deprecated)) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 | |||
| struct __attribute__((packed)) T_UINT32 { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32(x) (((struct T_UINT32 *)(x))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed)) | |||
| #endif | |||
| /* | |||
| * TASKING Compiler | |||
| */ | |||
| #elif defined ( __TASKING__ ) | |||
| /* | |||
| * The CMSIS functions have been implemented as intrinsics in the compiler. | |||
| * Please use "carm -?i" to get an up to date list of all intrinsics, | |||
| * Including the CMSIS ones. | |||
| */ | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __attribute__((noreturn)) | |||
| #endif | |||
| #ifndef CMSIS_DEPRECATED | |||
| #define CMSIS_DEPRECATED __attribute__((deprecated)) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 | |||
| struct __packed__ T_UINT32 { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32(x) (((struct T_UINT32 *)(x))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __align(x) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __packed__ | |||
| #endif | |||
| /* | |||
| * COSMIC Compiler | |||
| */ | |||
| #elif defined ( __CSMC__ ) | |||
| #include <cmsis_csm.h> | |||
| #ifndef __ASM | |||
| #define __ASM _asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| // NO RETURN is automatically detected hence no warning here | |||
| #define __NO_RETURN | |||
| #endif | |||
| #ifndef __USED | |||
| #warning No compiler specific solution for __USED. __USED is ignored. | |||
| #define __USED | |||
| #endif | |||
| #ifndef CMSIS_DEPRECATED | |||
| #warning No compiler specific solution for CMSIS_DEPRECATED. CMSIS_DEPRECATED is ignored. | |||
| #define CMSIS_DEPRECATED | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __weak | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32 | |||
| @packed struct T_UINT32 { uint32_t v; }; | |||
| #define __UNALIGNED_UINT32(x) (((struct T_UINT32 *)(x))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #warning No compiler specific solution for __ALIGNED. __ALIGNED is ignored. | |||
| #define __ALIGNED(x) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED @packed | |||
| #endif | |||
| #else | |||
| #error Unknown compiler. | |||
| #endif | |||
| #endif /* __CMSIS_COMPILER_H */ | |||
| @@ -0,0 +1,514 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_cp15.h | |||
| * @brief CMSIS compiler specific macros, functions, instructions | |||
| * @version V1.0.1 | |||
| * @date 07. Sep 2017 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2017 ARM Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef __CMSIS_CP15_H | |||
| #define __CMSIS_CP15_H | |||
| /** \brief Get ACTLR | |||
| \return Auxiliary Control register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_ACTLR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 1, 0, 1); | |||
| return(result); | |||
| } | |||
| /** \brief Set ACTLR | |||
| \param [in] actlr Auxiliary Control value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_ACTLR(uint32_t actlr) | |||
| { | |||
| __set_CP(15, 0, actlr, 1, 0, 1); | |||
| } | |||
| /** \brief Get CPACR | |||
| \return Coprocessor Access Control register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CPACR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 1, 0, 2); | |||
| return result; | |||
| } | |||
| /** \brief Set CPACR | |||
| \param [in] cpacr Coprocessor Access Control value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CPACR(uint32_t cpacr) | |||
| { | |||
| __set_CP(15, 0, cpacr, 1, 0, 2); | |||
| } | |||
| /** \brief Get DFSR | |||
| \return Data Fault Status Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_DFSR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 5, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Set DFSR | |||
| \param [in] dfsr Data Fault Status value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DFSR(uint32_t dfsr) | |||
| { | |||
| __set_CP(15, 0, dfsr, 5, 0, 0); | |||
| } | |||
| /** \brief Get IFSR | |||
| \return Instruction Fault Status Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_IFSR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 5, 0, 1); | |||
| return result; | |||
| } | |||
| /** \brief Set IFSR | |||
| \param [in] ifsr Instruction Fault Status value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_IFSR(uint32_t ifsr) | |||
| { | |||
| __set_CP(15, 0, ifsr, 5, 0, 1); | |||
| } | |||
| /** \brief Get ISR | |||
| \return Interrupt Status Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_ISR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 12, 1, 0); | |||
| return result; | |||
| } | |||
| /** \brief Get CBAR | |||
| \return Configuration Base Address register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CBAR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 4, result, 15, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Get TTBR0 | |||
| This function returns the value of the Translation Table Base Register 0. | |||
| \return Translation Table Base Register 0 value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_TTBR0(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 2, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Set TTBR0 | |||
| This function assigns the given value to the Translation Table Base Register 0. | |||
| \param [in] ttbr0 Translation Table Base Register 0 value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_TTBR0(uint32_t ttbr0) | |||
| { | |||
| __set_CP(15, 0, ttbr0, 2, 0, 0); | |||
| } | |||
| /** \brief Get DACR | |||
| This function returns the value of the Domain Access Control Register. | |||
| \return Domain Access Control Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_DACR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 3, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Set DACR | |||
| This function assigns the given value to the Domain Access Control Register. | |||
| \param [in] dacr Domain Access Control Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DACR(uint32_t dacr) | |||
| { | |||
| __set_CP(15, 0, dacr, 3, 0, 0); | |||
| } | |||
| /** \brief Set SCTLR | |||
| This function assigns the given value to the System Control Register. | |||
| \param [in] sctlr System Control Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_SCTLR(uint32_t sctlr) | |||
| { | |||
| __set_CP(15, 0, sctlr, 1, 0, 0); | |||
| } | |||
| /** \brief Get SCTLR | |||
| \return System Control Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_SCTLR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 1, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Set ACTRL | |||
| \param [in] actrl Auxiliary Control Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_ACTRL(uint32_t actrl) | |||
| { | |||
| __set_CP(15, 0, actrl, 1, 0, 1); | |||
| } | |||
| /** \brief Get ACTRL | |||
| \return Auxiliary Control Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_ACTRL(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 1, 0, 1); | |||
| return result; | |||
| } | |||
| /** \brief Get MPIDR | |||
| This function returns the value of the Multiprocessor Affinity Register. | |||
| \return Multiprocessor Affinity Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_MPIDR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 0, 0, 5); | |||
| return result; | |||
| } | |||
| /** \brief Get VBAR | |||
| This function returns the value of the Vector Base Address Register. | |||
| \return Vector Base Address Register | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_VBAR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 12, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Set VBAR | |||
| This function assigns the given value to the Vector Base Address Register. | |||
| \param [in] vbar Vector Base Address Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_VBAR(uint32_t vbar) | |||
| { | |||
| __set_CP(15, 0, vbar, 12, 0, 0); | |||
| } | |||
| /** \brief Get MVBAR | |||
| This function returns the value of the Monitor Vector Base Address Register. | |||
| \return Monitor Vector Base Address Register | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_MVBAR(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 12, 0, 1); | |||
| return result; | |||
| } | |||
| /** \brief Set MVBAR | |||
| This function assigns the given value to the Monitor Vector Base Address Register. | |||
| \param [in] mvbar Monitor Vector Base Address Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_MVBAR(uint32_t mvbar) | |||
| { | |||
| __set_CP(15, 0, mvbar, 12, 0, 1); | |||
| } | |||
| #if (defined(__CORTEX_A) && (__CORTEX_A == 7U) && \ | |||
| defined(__TIM_PRESENT) && (__TIM_PRESENT == 1U)) || \ | |||
| defined(DOXYGEN) | |||
| /** \brief Set CNTFRQ | |||
| This function assigns the given value to PL1 Physical Timer Counter Frequency Register (CNTFRQ). | |||
| \param [in] value CNTFRQ Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CNTFRQ(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 14, 0, 0); | |||
| } | |||
| /** \brief Get CNTFRQ | |||
| This function returns the value of the PL1 Physical Timer Counter Frequency Register (CNTFRQ). | |||
| \return CNTFRQ Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CNTFRQ(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 14, 0 , 0); | |||
| return result; | |||
| } | |||
| /** \brief Set CNTP_TVAL | |||
| This function assigns the given value to PL1 Physical Timer Value Register (CNTP_TVAL). | |||
| \param [in] value CNTP_TVAL Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CNTP_TVAL(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 14, 2, 0); | |||
| } | |||
| /** \brief Get CNTP_TVAL | |||
| This function returns the value of the PL1 Physical Timer Value Register (CNTP_TVAL). | |||
| \return CNTP_TVAL Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CNTP_TVAL(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 14, 2, 0); | |||
| return result; | |||
| } | |||
| /** \brief Get CNTPCT | |||
| This function returns the value of the 64 bits PL1 Physical Count Register (CNTPCT). | |||
| \return CNTPCT Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint64_t __get_CNTPCT(void) | |||
| { | |||
| uint64_t result; | |||
| __get_CP64(15, 0, result, 14); | |||
| return result; | |||
| } | |||
| /** \brief Set CNTP_CVAL | |||
| This function assigns the given value to 64bits PL1 Physical Timer CompareValue Register (CNTP_CVAL). | |||
| \param [in] value CNTP_CVAL Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CNTP_CVAL(uint64_t value) | |||
| { | |||
| __set_CP64(15, 2, value, 14); | |||
| } | |||
| /** \brief Get CNTP_CVAL | |||
| This function returns the value of the 64 bits PL1 Physical Timer CompareValue Register (CNTP_CVAL). | |||
| \return CNTP_CVAL Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint64_t __get_CNTP_CVAL(void) | |||
| { | |||
| uint64_t result; | |||
| __get_CP64(15, 2, result, 14); | |||
| return result; | |||
| } | |||
| /** \brief Set CNTP_CTL | |||
| This function assigns the given value to PL1 Physical Timer Control Register (CNTP_CTL). | |||
| \param [in] value CNTP_CTL Register value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CNTP_CTL(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 14, 2, 1); | |||
| } | |||
| /** \brief Get CNTP_CTL register | |||
| \return CNTP_CTL Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CNTP_CTL(void) | |||
| { | |||
| uint32_t result; | |||
| __get_CP(15, 0, result, 14, 2, 1); | |||
| return result; | |||
| } | |||
| #endif | |||
| /** \brief Set TLBIALL | |||
| TLB Invalidate All | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_TLBIALL(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 8, 7, 0); | |||
| } | |||
| /** \brief Set BPIALL. | |||
| Branch Predictor Invalidate All | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_BPIALL(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 7, 5, 6); | |||
| } | |||
| /** \brief Set ICIALLU | |||
| Instruction Cache Invalidate All | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_ICIALLU(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 7, 5, 0); | |||
| } | |||
| /** \brief Set DCCMVAC | |||
| Data cache clean | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DCCMVAC(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 7, 10, 1); | |||
| } | |||
| /** \brief Set DCIMVAC | |||
| Data cache invalidate | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DCIMVAC(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 7, 6, 1); | |||
| } | |||
| /** \brief Set DCCIMVAC | |||
| Data cache clean and invalidate | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DCCIMVAC(uint32_t value) | |||
| { | |||
| __set_CP(15, 0, value, 7, 14, 1); | |||
| } | |||
| /** \brief Set CSSELR | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CSSELR(uint32_t value) | |||
| { | |||
| // __ASM volatile("MCR p15, 2, %0, c0, c0, 0" : : "r"(value) : "memory"); | |||
| __set_CP(15, 2, value, 0, 0, 0); | |||
| } | |||
| /** \brief Get CSSELR | |||
| \return CSSELR Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CSSELR(void) | |||
| { | |||
| uint32_t result; | |||
| // __ASM volatile("MRC p15, 2, %0, c0, c0, 0" : "=r"(result) : : "memory"); | |||
| __get_CP(15, 2, result, 0, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Set CCSIDR | |||
| \deprecated CCSIDR itself is read-only. Use __set_CSSELR to select cache level instead. | |||
| */ | |||
| CMSIS_DEPRECATED | |||
| __STATIC_FORCEINLINE void __set_CCSIDR(uint32_t value) | |||
| { | |||
| __set_CSSELR(value); | |||
| } | |||
| /** \brief Get CCSIDR | |||
| \return CCSIDR Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CCSIDR(void) | |||
| { | |||
| uint32_t result; | |||
| // __ASM volatile("MRC p15, 1, %0, c0, c0, 0" : "=r"(result) : : "memory"); | |||
| __get_CP(15, 1, result, 0, 0, 0); | |||
| return result; | |||
| } | |||
| /** \brief Get CLIDR | |||
| \return CLIDR Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CLIDR(void) | |||
| { | |||
| uint32_t result; | |||
| // __ASM volatile("MRC p15, 1, %0, c0, c0, 1" : "=r"(result) : : "memory"); | |||
| __get_CP(15, 1, result, 0, 0, 1); | |||
| return result; | |||
| } | |||
| /** \brief Set DCISW | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DCISW(uint32_t value) | |||
| { | |||
| // __ASM volatile("MCR p15, 0, %0, c7, c6, 2" : : "r"(value) : "memory") | |||
| __set_CP(15, 0, value, 7, 6, 2); | |||
| } | |||
| /** \brief Set DCCSW | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DCCSW(uint32_t value) | |||
| { | |||
| // __ASM volatile("MCR p15, 0, %0, c7, c10, 2" : : "r"(value) : "memory") | |||
| __set_CP(15, 0, value, 7, 10, 2); | |||
| } | |||
| /** \brief Set DCCISW | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_DCCISW(uint32_t value) | |||
| { | |||
| // __ASM volatile("MCR p15, 0, %0, c7, c14, 2" : : "r"(value) : "memory") | |||
| __set_CP(15, 0, value, 7, 14, 2); | |||
| } | |||
| #endif | |||
| @@ -0,0 +1,679 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_gcc.h | |||
| * @brief CMSIS compiler specific macros, functions, instructions | |||
| * @version V1.0.2 | |||
| * @date 09. April 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2009-2018 Arm Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #ifndef __CMSIS_GCC_H | |||
| #define __CMSIS_GCC_H | |||
| /* ignore some GCC warnings */ | |||
| #pragma GCC diagnostic push | |||
| #pragma GCC diagnostic ignored "-Wsign-conversion" | |||
| #pragma GCC diagnostic ignored "-Wconversion" | |||
| #pragma GCC diagnostic ignored "-Wunused-parameter" | |||
| /* Fallback for __has_builtin */ | |||
| #ifndef __has_builtin | |||
| #define __has_builtin(x) (0) | |||
| #endif | |||
| /* CMSIS compiler specific defines */ | |||
| #ifndef __ASM | |||
| #define __ASM asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __FORCEINLINE | |||
| #define __FORCEINLINE __attribute__((always_inline)) | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __attribute__((always_inline)) static inline | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #define __NO_RETURN __attribute__((__noreturn__)) | |||
| #endif | |||
| #ifndef CMSIS_DEPRECATED | |||
| #define CMSIS_DEPRECATED __attribute__((deprecated)) | |||
| #endif | |||
| #ifndef __USED | |||
| #define __USED __attribute__((used)) | |||
| #endif | |||
| #ifndef __WEAK | |||
| #define __WEAK __attribute__((weak)) | |||
| #endif | |||
| #ifndef __PACKED | |||
| #define __PACKED __attribute__((packed, aligned(1))) | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| #define __PACKED_STRUCT struct __attribute__((packed, aligned(1))) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| #pragma GCC diagnostic push | |||
| #pragma GCC diagnostic ignored "-Wpacked" | |||
| /*lint -esym(9058, T_UINT16_WRITE)*/ /* disable MISRA 2012 Rule 2.4 for T_UINT16_WRITE */ | |||
| __PACKED_STRUCT T_UINT16_WRITE { uint16_t v; }; | |||
| #pragma GCC diagnostic pop | |||
| #define __UNALIGNED_UINT16_WRITE(addr, val) (void)((((struct T_UINT16_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| #pragma GCC diagnostic push | |||
| #pragma GCC diagnostic ignored "-Wpacked" | |||
| /*lint -esym(9058, T_UINT16_READ)*/ /* disable MISRA 2012 Rule 2.4 for T_UINT16_READ */ | |||
| __PACKED_STRUCT T_UINT16_READ { uint16_t v; }; | |||
| #pragma GCC diagnostic pop | |||
| #define __UNALIGNED_UINT16_READ(addr) (((const struct T_UINT16_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| #pragma GCC diagnostic push | |||
| #pragma GCC diagnostic ignored "-Wpacked" | |||
| /*lint -esym(9058, T_UINT32_WRITE)*/ /* disable MISRA 2012 Rule 2.4 for T_UINT32_WRITE */ | |||
| __PACKED_STRUCT T_UINT32_WRITE { uint32_t v; }; | |||
| #pragma GCC diagnostic pop | |||
| #define __UNALIGNED_UINT32_WRITE(addr, val) (void)((((struct T_UINT32_WRITE *)(void *)(addr))->v) = (val)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| #pragma GCC diagnostic push | |||
| #pragma GCC diagnostic ignored "-Wpacked" | |||
| __PACKED_STRUCT T_UINT32_READ { uint32_t v; }; | |||
| #pragma GCC diagnostic pop | |||
| #define __UNALIGNED_UINT32_READ(addr) (((const struct T_UINT32_READ *)(const void *)(addr))->v) | |||
| #endif | |||
| #ifndef __ALIGNED | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #endif | |||
| /* ########################## Core Instruction Access ######################### */ | |||
| /** | |||
| \brief No Operation | |||
| */ | |||
| #define __NOP() __ASM volatile ("nop") | |||
| /** | |||
| \brief Wait For Interrupt | |||
| */ | |||
| #define __WFI() __ASM volatile ("wfi") | |||
| /** | |||
| \brief Wait For Event | |||
| */ | |||
| #define __WFE() __ASM volatile ("wfe") | |||
| /** | |||
| \brief Send Event | |||
| */ | |||
| #define __SEV() __ASM volatile ("sev") | |||
| /** | |||
| \brief Instruction Synchronization Barrier | |||
| \details Instruction Synchronization Barrier flushes the pipeline in the processor, | |||
| so that all instructions following the ISB are fetched from cache or memory, | |||
| after the instruction has been completed. | |||
| */ | |||
| __STATIC_FORCEINLINE void __ISB(void) | |||
| { | |||
| __ASM volatile ("isb 0xF":::"memory"); | |||
| } | |||
| /** | |||
| \brief Data Synchronization Barrier | |||
| \details Acts as a special kind of Data Memory Barrier. | |||
| It completes when all explicit memory accesses before this instruction complete. | |||
| */ | |||
| __STATIC_FORCEINLINE void __DSB(void) | |||
| { | |||
| __ASM volatile ("dsb 0xF":::"memory"); | |||
| } | |||
| /** | |||
| \brief Data Memory Barrier | |||
| \details Ensures the apparent order of the explicit memory operations before | |||
| and after the instruction, without ensuring their completion. | |||
| */ | |||
| __STATIC_FORCEINLINE void __DMB(void) | |||
| { | |||
| __ASM volatile ("dmb 0xF":::"memory"); | |||
| } | |||
| /** | |||
| \brief Reverse byte order (32 bit) | |||
| \details Reverses the byte order in unsigned integer value. For example, 0x12345678 becomes 0x78563412. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __REV(uint32_t value) | |||
| { | |||
| #if (__GNUC__ > 4) || (__GNUC__ == 4 && __GNUC_MINOR__ >= 5) | |||
| return __builtin_bswap32(value); | |||
| #else | |||
| uint32_t result; | |||
| __ASM volatile ("rev %0, %1" : __CMSIS_GCC_OUT_REG (result) : __CMSIS_GCC_USE_REG (value) ); | |||
| return result; | |||
| #endif | |||
| } | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order within each halfword of a word. For example, 0x12345678 becomes 0x34127856. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| #ifndef __NO_EMBEDDED_ASM | |||
| __attribute__((section(".rev16_text"))) __STATIC_INLINE uint32_t __REV16(uint32_t value) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile("rev16 %0, %1" : "=r" (result) : "r" (value)); | |||
| return result; | |||
| } | |||
| #endif | |||
| /** | |||
| \brief Reverse byte order (16 bit) | |||
| \details Reverses the byte order in a 16-bit value and returns the signed 16-bit result. For example, 0x0080 becomes 0x8000. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| __STATIC_FORCEINLINE int16_t __REVSH(int16_t value) | |||
| { | |||
| #if (__GNUC__ > 4) || (__GNUC__ == 4 && __GNUC_MINOR__ >= 8) | |||
| return (int16_t)__builtin_bswap16(value); | |||
| #else | |||
| int16_t result; | |||
| __ASM volatile ("revsh %0, %1" : __CMSIS_GCC_OUT_REG (result) : __CMSIS_GCC_USE_REG (value) ); | |||
| return result; | |||
| #endif | |||
| } | |||
| /** | |||
| \brief Rotate Right in unsigned value (32 bit) | |||
| \details Rotate Right (immediate) provides the value of the contents of a register rotated by a variable number of bits. | |||
| \param [in] op1 Value to rotate | |||
| \param [in] op2 Number of Bits to rotate | |||
| \return Rotated value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __ROR(uint32_t op1, uint32_t op2) | |||
| { | |||
| op2 %= 32U; | |||
| if (op2 == 0U) { | |||
| return op1; | |||
| } | |||
| return (op1 >> op2) | (op1 << (32U - op2)); | |||
| } | |||
| /** | |||
| \brief Breakpoint | |||
| \param [in] value is ignored by the processor. | |||
| If required, a debugger can use it to store additional information about the breakpoint. | |||
| */ | |||
| #define __BKPT(value) __ASM volatile ("bkpt "#value) | |||
| /** | |||
| \brief Reverse bit order of value | |||
| \details Reverses the bit order of the given value. | |||
| \param [in] value Value to reverse | |||
| \return Reversed value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __RBIT(uint32_t value) | |||
| { | |||
| uint32_t result; | |||
| #if ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \ | |||
| (defined (__ARM_ARCH_7EM__ ) && (__ARM_ARCH_7EM__ == 1)) || \ | |||
| (defined (__ARM_ARCH_8M_MAIN__ ) && (__ARM_ARCH_8M_MAIN__ == 1)) ) | |||
| __ASM volatile ("rbit %0, %1" : "=r" (result) : "r" (value) ); | |||
| #else | |||
| int32_t s = (4U /*sizeof(v)*/ * 8U) - 1U; /* extra shift needed at end */ | |||
| result = value; /* r will be reversed bits of v; first get LSB of v */ | |||
| for (value >>= 1U; value; value >>= 1U) | |||
| { | |||
| result <<= 1U; | |||
| result |= value & 1U; | |||
| s--; | |||
| } | |||
| result <<= s; /* shift when v's highest bits are zero */ | |||
| #endif | |||
| return result; | |||
| } | |||
| /** | |||
| \brief Count leading zeros | |||
| \param [in] value Value to count the leading zeros | |||
| \return number of leading zeros in value | |||
| */ | |||
| #define __CLZ (uint8_t)__builtin_clz | |||
| /** | |||
| \brief LDR Exclusive (8 bit) | |||
| \details Executes a exclusive LDR instruction for 8 bit value. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint8_t at (*ptr) | |||
| */ | |||
| __STATIC_FORCEINLINE uint8_t __LDREXB(volatile uint8_t *addr) | |||
| { | |||
| uint32_t result; | |||
| #if (__GNUC__ > 4) || (__GNUC__ == 4 && __GNUC_MINOR__ >= 8) | |||
| __ASM volatile ("ldrexb %0, %1" : "=r" (result) : "Q" (*addr) ); | |||
| #else | |||
| /* Prior to GCC 4.8, "Q" will be expanded to [rx, #0] which is not | |||
| accepted by assembler. So has to use following less efficient pattern. | |||
| */ | |||
| __ASM volatile ("ldrexb %0, [%1]" : "=r" (result) : "r" (addr) : "memory" ); | |||
| #endif | |||
| return ((uint8_t) result); /* Add explicit type cast here */ | |||
| } | |||
| /** | |||
| \brief LDR Exclusive (16 bit) | |||
| \details Executes a exclusive LDR instruction for 16 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint16_t at (*ptr) | |||
| */ | |||
| __STATIC_FORCEINLINE uint16_t __LDREXH(volatile uint16_t *addr) | |||
| { | |||
| uint32_t result; | |||
| #if (__GNUC__ > 4) || (__GNUC__ == 4 && __GNUC_MINOR__ >= 8) | |||
| __ASM volatile ("ldrexh %0, %1" : "=r" (result) : "Q" (*addr) ); | |||
| #else | |||
| /* Prior to GCC 4.8, "Q" will be expanded to [rx, #0] which is not | |||
| accepted by assembler. So has to use following less efficient pattern. | |||
| */ | |||
| __ASM volatile ("ldrexh %0, [%1]" : "=r" (result) : "r" (addr) : "memory" ); | |||
| #endif | |||
| return ((uint16_t) result); /* Add explicit type cast here */ | |||
| } | |||
| /** | |||
| \brief LDR Exclusive (32 bit) | |||
| \details Executes a exclusive LDR instruction for 32 bit values. | |||
| \param [in] ptr Pointer to data | |||
| \return value of type uint32_t at (*ptr) | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __LDREXW(volatile uint32_t *addr) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile ("ldrex %0, %1" : "=r" (result) : "Q" (*addr) ); | |||
| return(result); | |||
| } | |||
| /** | |||
| \brief STR Exclusive (8 bit) | |||
| \details Executes a exclusive STR instruction for 8 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __STREXB(uint8_t value, volatile uint8_t *addr) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile ("strexb %0, %2, %1" : "=&r" (result), "=Q" (*addr) : "r" ((uint32_t)value) ); | |||
| return(result); | |||
| } | |||
| /** | |||
| \brief STR Exclusive (16 bit) | |||
| \details Executes a exclusive STR instruction for 16 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __STREXH(uint16_t value, volatile uint16_t *addr) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile ("strexh %0, %2, %1" : "=&r" (result), "=Q" (*addr) : "r" ((uint32_t)value) ); | |||
| return(result); | |||
| } | |||
| /** | |||
| \brief STR Exclusive (32 bit) | |||
| \details Executes a exclusive STR instruction for 32 bit values. | |||
| \param [in] value Value to store | |||
| \param [in] ptr Pointer to location | |||
| \return 0 Function succeeded | |||
| \return 1 Function failed | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __STREXW(uint32_t value, volatile uint32_t *addr) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile ("strex %0, %2, %1" : "=&r" (result), "=Q" (*addr) : "r" (value) ); | |||
| return(result); | |||
| } | |||
| /** | |||
| \brief Remove the exclusive lock | |||
| \details Removes the exclusive lock which is created by LDREX. | |||
| */ | |||
| __STATIC_FORCEINLINE void __CLREX(void) | |||
| { | |||
| __ASM volatile ("clrex" ::: "memory"); | |||
| } | |||
| /** | |||
| \brief Signed Saturate | |||
| \details Saturates a signed value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (1..32) | |||
| \return Saturated value | |||
| */ | |||
| #define __SSAT(ARG1,ARG2) \ | |||
| __extension__ \ | |||
| ({ \ | |||
| int32_t __RES, __ARG1 = (ARG1); \ | |||
| __ASM ("ssat %0, %1, %2" : "=r" (__RES) : "I" (ARG2), "r" (__ARG1) ); \ | |||
| __RES; \ | |||
| }) | |||
| /** | |||
| \brief Unsigned Saturate | |||
| \details Saturates an unsigned value. | |||
| \param [in] value Value to be saturated | |||
| \param [in] sat Bit position to saturate to (0..31) | |||
| \return Saturated value | |||
| */ | |||
| #define __USAT(ARG1,ARG2) \ | |||
| __extension__ \ | |||
| ({ \ | |||
| uint32_t __RES, __ARG1 = (ARG1); \ | |||
| __ASM ("usat %0, %1, %2" : "=r" (__RES) : "I" (ARG2), "r" (__ARG1) ); \ | |||
| __RES; \ | |||
| }) | |||
| /* ########################### Core Function Access ########################### */ | |||
| /** | |||
| \brief Enable IRQ Interrupts | |||
| \details Enables IRQ interrupts by clearing the I-bit in the CPSR. | |||
| Can only be executed in Privileged modes. | |||
| */ | |||
| __STATIC_FORCEINLINE void __enable_irq(void) | |||
| { | |||
| __ASM volatile ("cpsie i" : : : "memory"); | |||
| } | |||
| /** | |||
| \brief Disable IRQ Interrupts | |||
| \details Disables IRQ interrupts by setting the I-bit in the CPSR. | |||
| Can only be executed in Privileged modes. | |||
| */ | |||
| __STATIC_FORCEINLINE void __disable_irq(void) | |||
| { | |||
| __ASM volatile ("cpsid i" : : : "memory"); | |||
| } | |||
| /** | |||
| \brief Get FPSCR | |||
| \details Returns the current value of the Floating Point Status/Control register. | |||
| \return Floating Point Status/Control register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_FPSCR(void) | |||
| { | |||
| #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) ) | |||
| #if __has_builtin(__builtin_arm_get_fpscr) | |||
| // Re-enable using built-in when GCC has been fixed | |||
| // || (__GNUC__ > 7) || (__GNUC__ == 7 && __GNUC_MINOR__ >= 2) | |||
| /* see https://gcc.gnu.org/ml/gcc-patches/2017-04/msg00443.html */ | |||
| return __builtin_arm_get_fpscr(); | |||
| #else | |||
| uint32_t result; | |||
| __ASM volatile ("VMRS %0, fpscr" : "=r" (result) ); | |||
| return(result); | |||
| #endif | |||
| #else | |||
| return(0U); | |||
| #endif | |||
| } | |||
| /** | |||
| \brief Set FPSCR | |||
| \details Assigns the given value to the Floating Point Status/Control register. | |||
| \param [in] fpscr Floating Point Status/Control value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_FPSCR(uint32_t fpscr) | |||
| { | |||
| #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \ | |||
| (defined (__FPU_USED ) && (__FPU_USED == 1U)) ) | |||
| #if __has_builtin(__builtin_arm_set_fpscr) | |||
| // Re-enable using built-in when GCC has been fixed | |||
| // || (__GNUC__ > 7) || (__GNUC__ == 7 && __GNUC_MINOR__ >= 2) | |||
| /* see https://gcc.gnu.org/ml/gcc-patches/2017-04/msg00443.html */ | |||
| __builtin_arm_set_fpscr(fpscr); | |||
| #else | |||
| __ASM volatile ("VMSR fpscr, %0" : : "r" (fpscr) : "vfpcc", "memory"); | |||
| #endif | |||
| #else | |||
| (void)fpscr; | |||
| #endif | |||
| } | |||
| /** \brief Get CPSR Register | |||
| \return CPSR Register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_CPSR(void) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile("MRS %0, cpsr" : "=r" (result) ); | |||
| return(result); | |||
| } | |||
| /** \brief Set CPSR Register | |||
| \param [in] cpsr CPSR value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_CPSR(uint32_t cpsr) | |||
| { | |||
| __ASM volatile ("MSR cpsr, %0" : : "r" (cpsr) : "memory"); | |||
| } | |||
| /** \brief Get Mode | |||
| \return Processor Mode | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_mode(void) | |||
| { | |||
| return (__get_CPSR() & 0x1FU); | |||
| } | |||
| /** \brief Set Mode | |||
| \param [in] mode Mode value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_mode(uint32_t mode) | |||
| { | |||
| __ASM volatile("MSR cpsr_c, %0" : : "r" (mode) : "memory"); | |||
| } | |||
| /** \brief Get Stack Pointer | |||
| \return Stack Pointer value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_SP(void) | |||
| { | |||
| uint32_t result; | |||
| __ASM volatile("MOV %0, sp" : "=r" (result) : : "memory"); | |||
| return result; | |||
| } | |||
| /** \brief Set Stack Pointer | |||
| \param [in] stack Stack Pointer value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_SP(uint32_t stack) | |||
| { | |||
| __ASM volatile("MOV sp, %0" : : "r" (stack) : "memory"); | |||
| } | |||
| /** \brief Get USR/SYS Stack Pointer | |||
| \return USR/SYS Stack Pointer value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_SP_usr(void) | |||
| { | |||
| uint32_t cpsr = __get_CPSR(); | |||
| uint32_t result; | |||
| __ASM volatile( | |||
| "CPS #0x1F \n" | |||
| "MOV %0, sp " : "=r"(result) : : "memory" | |||
| ); | |||
| __set_CPSR(cpsr); | |||
| __ISB(); | |||
| return result; | |||
| } | |||
| /** \brief Set USR/SYS Stack Pointer | |||
| \param [in] topOfProcStack USR/SYS Stack Pointer value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_SP_usr(uint32_t topOfProcStack) | |||
| { | |||
| uint32_t cpsr = __get_CPSR(); | |||
| __ASM volatile( | |||
| "CPS #0x1F \n" | |||
| "MOV sp, %0 " : : "r" (topOfProcStack) : "memory" | |||
| ); | |||
| __set_CPSR(cpsr); | |||
| __ISB(); | |||
| } | |||
| /** \brief Get FPEXC | |||
| \return Floating Point Exception Control register value | |||
| */ | |||
| __STATIC_FORCEINLINE uint32_t __get_FPEXC(void) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| uint32_t result; | |||
| __ASM volatile("VMRS %0, fpexc" : "=r" (result) ); | |||
| return(result); | |||
| #else | |||
| return(0); | |||
| #endif | |||
| } | |||
| /** \brief Set FPEXC | |||
| \param [in] fpexc Floating Point Exception Control value to set | |||
| */ | |||
| __STATIC_FORCEINLINE void __set_FPEXC(uint32_t fpexc) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| __ASM volatile ("VMSR fpexc, %0" : : "r" (fpexc) : "memory"); | |||
| #endif | |||
| } | |||
| /* | |||
| * Include common core functions to access Coprocessor 15 registers | |||
| */ | |||
| #define __get_CP(cp, op1, Rt, CRn, CRm, op2) __ASM volatile("MRC p" # cp ", " # op1 ", %0, c" # CRn ", c" # CRm ", " # op2 : "=r" (Rt) : : "memory" ) | |||
| #define __set_CP(cp, op1, Rt, CRn, CRm, op2) __ASM volatile("MCR p" # cp ", " # op1 ", %0, c" # CRn ", c" # CRm ", " # op2 : : "r" (Rt) : "memory" ) | |||
| #define __get_CP64(cp, op1, Rt, CRm) __ASM volatile("MRRC p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : "=r" (Rt) : : "memory" ) | |||
| #define __set_CP64(cp, op1, Rt, CRm) __ASM volatile("MCRR p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : : "r" (Rt) : "memory" ) | |||
| #include "cmsis_cp15.h" | |||
| /** \brief Enable Floating Point Unit | |||
| Critical section, called from undef handler, so systick is disabled | |||
| */ | |||
| __STATIC_INLINE void __FPU_Enable(void) | |||
| { | |||
| __ASM volatile( | |||
| //Permit access to VFP/NEON, registers by modifying CPACR | |||
| " MRC p15,0,R1,c1,c0,2 \n" | |||
| " ORR R1,R1,#0x00F00000 \n" | |||
| " MCR p15,0,R1,c1,c0,2 \n" | |||
| //Ensure that subsequent instructions occur in the context of VFP/NEON access permitted | |||
| " ISB \n" | |||
| //Enable VFP/NEON | |||
| " VMRS R1,FPEXC \n" | |||
| " ORR R1,R1,#0x40000000 \n" | |||
| " VMSR FPEXC,R1 \n" | |||
| //Initialise VFP/NEON registers to 0 | |||
| " MOV R2,#0 \n" | |||
| //Initialise D16 registers to 0 | |||
| " VMOV D0, R2,R2 \n" | |||
| " VMOV D1, R2,R2 \n" | |||
| " VMOV D2, R2,R2 \n" | |||
| " VMOV D3, R2,R2 \n" | |||
| " VMOV D4, R2,R2 \n" | |||
| " VMOV D5, R2,R2 \n" | |||
| " VMOV D6, R2,R2 \n" | |||
| " VMOV D7, R2,R2 \n" | |||
| " VMOV D8, R2,R2 \n" | |||
| " VMOV D9, R2,R2 \n" | |||
| " VMOV D10,R2,R2 \n" | |||
| " VMOV D11,R2,R2 \n" | |||
| " VMOV D12,R2,R2 \n" | |||
| " VMOV D13,R2,R2 \n" | |||
| " VMOV D14,R2,R2 \n" | |||
| " VMOV D15,R2,R2 \n" | |||
| #if (defined(__ARM_NEON) && (__ARM_NEON == 1)) | |||
| //Initialise D32 registers to 0 | |||
| " VMOV D16,R2,R2 \n" | |||
| " VMOV D17,R2,R2 \n" | |||
| " VMOV D18,R2,R2 \n" | |||
| " VMOV D19,R2,R2 \n" | |||
| " VMOV D20,R2,R2 \n" | |||
| " VMOV D21,R2,R2 \n" | |||
| " VMOV D22,R2,R2 \n" | |||
| " VMOV D23,R2,R2 \n" | |||
| " VMOV D24,R2,R2 \n" | |||
| " VMOV D25,R2,R2 \n" | |||
| " VMOV D26,R2,R2 \n" | |||
| " VMOV D27,R2,R2 \n" | |||
| " VMOV D28,R2,R2 \n" | |||
| " VMOV D29,R2,R2 \n" | |||
| " VMOV D30,R2,R2 \n" | |||
| " VMOV D31,R2,R2 \n" | |||
| #endif | |||
| //Initialise FPSCR to a known state | |||
| " VMRS R2,FPSCR \n" | |||
| " LDR R3,=0x00086060 \n" //Mask off all bits that do not have to be preserved. Non-preserved bits can/should be zero. | |||
| " AND R2,R2,R3 \n" | |||
| " VMSR FPSCR,R2 " | |||
| ); | |||
| } | |||
| #pragma GCC diagnostic pop | |||
| #endif /* __CMSIS_GCC_H */ | |||
| @@ -0,0 +1,559 @@ | |||
| /**************************************************************************//** | |||
| * @file cmsis_iccarm.h | |||
| * @brief CMSIS compiler ICCARM (IAR Compiler for Arm) header file | |||
| * @version V5.0.6 | |||
| * @date 02. March 2018 | |||
| ******************************************************************************/ | |||
| //------------------------------------------------------------------------------ | |||
| // | |||
| // Copyright (c) 2017-2018 IAR Systems | |||
| // | |||
| // Licensed under the Apache License, Version 2.0 (the "License") | |||
| // you may not use this file except in compliance with the License. | |||
| // You may obtain a copy of the License at | |||
| // http://www.apache.org/licenses/LICENSE-2.0 | |||
| // | |||
| // Unless required by applicable law or agreed to in writing, software | |||
| // distributed under the License is distributed on an "AS IS" BASIS, | |||
| // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| // See the License for the specific language governing permissions and | |||
| // limitations under the License. | |||
| // | |||
| //------------------------------------------------------------------------------ | |||
| #ifndef __CMSIS_ICCARM_H__ | |||
| #define __CMSIS_ICCARM_H__ | |||
| #ifndef __ICCARM__ | |||
| #error This file should only be compiled by ICCARM | |||
| #endif | |||
| #pragma system_include | |||
| #define __IAR_FT _Pragma("inline=forced") __intrinsic | |||
| #if (__VER__ >= 8000000) | |||
| #define __ICCARM_V8 1 | |||
| #else | |||
| #define __ICCARM_V8 0 | |||
| #endif | |||
| #pragma language=extended | |||
| #ifndef __ALIGNED | |||
| #if __ICCARM_V8 | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #elif (__VER__ >= 7080000) | |||
| /* Needs IAR language extensions */ | |||
| #define __ALIGNED(x) __attribute__((aligned(x))) | |||
| #else | |||
| #warning No compiler specific solution for __ALIGNED.__ALIGNED is ignored. | |||
| #define __ALIGNED(x) | |||
| #endif | |||
| #endif | |||
| /* Define compiler macros for CPU architecture, used in CMSIS 5. | |||
| */ | |||
| #if __ARM_ARCH_7A__ | |||
| /* Macro already defined */ | |||
| #else | |||
| #if defined(__ARM7A__) | |||
| #define __ARM_ARCH_7A__ 1 | |||
| #endif | |||
| #endif | |||
| #ifndef __ASM | |||
| #define __ASM __asm | |||
| #endif | |||
| #ifndef __INLINE | |||
| #define __INLINE inline | |||
| #endif | |||
| #ifndef __NO_RETURN | |||
| #if __ICCARM_V8 | |||
| #define __NO_RETURN __attribute__((__noreturn__)) | |||
| #else | |||
| #define __NO_RETURN _Pragma("object_attribute=__noreturn") | |||
| #endif | |||
| #endif | |||
| #ifndef __PACKED | |||
| /* Needs IAR language extensions */ | |||
| #if __ICCARM_V8 | |||
| #define __PACKED __attribute__((packed, aligned(1))) | |||
| #else | |||
| #define __PACKED __packed | |||
| #endif | |||
| #endif | |||
| #ifndef __PACKED_STRUCT | |||
| /* Needs IAR language extensions */ | |||
| #if __ICCARM_V8 | |||
| #define __PACKED_STRUCT struct __attribute__((packed, aligned(1))) | |||
| #else | |||
| #define __PACKED_STRUCT __packed struct | |||
| #endif | |||
| #endif | |||
| #ifndef __PACKED_UNION | |||
| /* Needs IAR language extensions */ | |||
| #if __ICCARM_V8 | |||
| #define __PACKED_UNION union __attribute__((packed, aligned(1))) | |||
| #else | |||
| #define __PACKED_UNION __packed union | |||
| #endif | |||
| #endif | |||
| #ifndef __RESTRICT | |||
| #define __RESTRICT __restrict | |||
| #endif | |||
| #ifndef __STATIC_INLINE | |||
| #define __STATIC_INLINE static inline | |||
| #endif | |||
| #ifndef __FORCEINLINE | |||
| #define __FORCEINLINE _Pragma("inline=forced") | |||
| #endif | |||
| #ifndef __STATIC_FORCEINLINE | |||
| #define __STATIC_FORCEINLINE __FORCEINLINE __STATIC_INLINE | |||
| #endif | |||
| #ifndef CMSIS_DEPRECATED | |||
| #define CMSIS_DEPRECATED __attribute__((deprecated)) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_READ | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT uint16_t __iar_uint16_read(void const *ptr) | |||
| { | |||
| return *(__packed uint16_t*)(ptr); | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT16_READ(PTR) __iar_uint16_read(PTR) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT16_WRITE | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT void __iar_uint16_write(void const *ptr, uint16_t val) | |||
| { | |||
| *(__packed uint16_t*)(ptr) = val;; | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT16_WRITE(PTR,VAL) __iar_uint16_write(PTR,VAL) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_READ | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT uint32_t __iar_uint32_read(void const *ptr) | |||
| { | |||
| return *(__packed uint32_t*)(ptr); | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT32_READ(PTR) __iar_uint32_read(PTR) | |||
| #endif | |||
| #ifndef __UNALIGNED_UINT32_WRITE | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __IAR_FT void __iar_uint32_write(void const *ptr, uint32_t val) | |||
| { | |||
| *(__packed uint32_t*)(ptr) = val;; | |||
| } | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT32_WRITE(PTR,VAL) __iar_uint32_write(PTR,VAL) | |||
| #endif | |||
| #if 0 | |||
| #ifndef __UNALIGNED_UINT32 /* deprecated */ | |||
| #pragma language=save | |||
| #pragma language=extended | |||
| __packed struct __iar_u32 { uint32_t v; }; | |||
| #pragma language=restore | |||
| #define __UNALIGNED_UINT32(PTR) (((struct __iar_u32 *)(PTR))->v) | |||
| #endif | |||
| #endif | |||
| #ifndef __USED | |||
| #if __ICCARM_V8 | |||
| #define __USED __attribute__((used)) | |||
| #else | |||
| #define __USED _Pragma("__root") | |||
| #endif | |||
| #endif | |||
| #ifndef __WEAK | |||
| #if __ICCARM_V8 | |||
| #define __WEAK __attribute__((weak)) | |||
| #else | |||
| #define __WEAK _Pragma("__weak") | |||
| #endif | |||
| #endif | |||
| #ifndef __ICCARM_INTRINSICS_VERSION__ | |||
| #define __ICCARM_INTRINSICS_VERSION__ 0 | |||
| #endif | |||
| #if __ICCARM_INTRINSICS_VERSION__ == 2 | |||
| #if defined(__CLZ) | |||
| #undef __CLZ | |||
| #endif | |||
| #if defined(__REVSH) | |||
| #undef __REVSH | |||
| #endif | |||
| #if defined(__RBIT) | |||
| #undef __RBIT | |||
| #endif | |||
| #if defined(__SSAT) | |||
| #undef __SSAT | |||
| #endif | |||
| #if defined(__USAT) | |||
| #undef __USAT | |||
| #endif | |||
| #include "iccarm_builtin.h" | |||
| #define __enable_irq __iar_builtin_enable_interrupt | |||
| #define __disable_irq __iar_builtin_disable_interrupt | |||
| #define __enable_fault_irq __iar_builtin_enable_fiq | |||
| #define __disable_fault_irq __iar_builtin_disable_fiq | |||
| #define __arm_rsr __iar_builtin_rsr | |||
| #define __arm_wsr __iar_builtin_wsr | |||
| #if __FPU_PRESENT | |||
| #define __get_FPSCR() (__arm_rsr("FPSCR")) | |||
| #else | |||
| #define __get_FPSCR() ( 0 ) | |||
| #endif | |||
| #define __set_FPSCR(VALUE) (__arm_wsr("FPSCR", VALUE)) | |||
| #define __get_CPSR() (__arm_rsr("CPSR")) | |||
| #define __get_mode() (__get_CPSR() & 0x1FU) | |||
| #define __set_CPSR(VALUE) (__arm_wsr("CPSR", (VALUE))) | |||
| #define __set_mode(VALUE) (__arm_wsr("CPSR_c", (VALUE))) | |||
| #define __get_FPEXC() (__arm_rsr("FPEXC")) | |||
| #define __set_FPEXC(VALUE) (__arm_wsr("FPEXC", VALUE)) | |||
| #define __get_CP(cp, op1, RT, CRn, CRm, op2) \ | |||
| ((RT) = __arm_rsr("p" # cp ":" # op1 ":c" # CRn ":c" # CRm ":" # op2)) | |||
| #define __set_CP(cp, op1, RT, CRn, CRm, op2) \ | |||
| (__arm_wsr("p" # cp ":" # op1 ":c" # CRn ":c" # CRm ":" # op2, (RT))) | |||
| #define __get_CP64(cp, op1, Rt, CRm) \ | |||
| __ASM volatile("MRRC p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : "=r" (Rt) : : "memory" ) | |||
| #define __set_CP64(cp, op1, Rt, CRm) \ | |||
| __ASM volatile("MCRR p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : : "r" (Rt) : "memory" ) | |||
| #include "cmsis_cp15.h" | |||
| #define __NOP __iar_builtin_no_operation | |||
| #define __CLZ __iar_builtin_CLZ | |||
| #define __CLREX __iar_builtin_CLREX | |||
| #define __DMB __iar_builtin_DMB | |||
| #define __DSB __iar_builtin_DSB | |||
| #define __ISB __iar_builtin_ISB | |||
| #define __LDREXB __iar_builtin_LDREXB | |||
| #define __LDREXH __iar_builtin_LDREXH | |||
| #define __LDREXW __iar_builtin_LDREX | |||
| #define __RBIT __iar_builtin_RBIT | |||
| #define __REV __iar_builtin_REV | |||
| #define __REV16 __iar_builtin_REV16 | |||
| __IAR_FT int16_t __REVSH(int16_t val) | |||
| { | |||
| return (int16_t) __iar_builtin_REVSH(val); | |||
| } | |||
| #define __ROR __iar_builtin_ROR | |||
| #define __RRX __iar_builtin_RRX | |||
| #define __SEV __iar_builtin_SEV | |||
| #define __SSAT __iar_builtin_SSAT | |||
| #define __STREXB __iar_builtin_STREXB | |||
| #define __STREXH __iar_builtin_STREXH | |||
| #define __STREXW __iar_builtin_STREX | |||
| #define __USAT __iar_builtin_USAT | |||
| #define __WFE __iar_builtin_WFE | |||
| #define __WFI __iar_builtin_WFI | |||
| #define __SADD8 __iar_builtin_SADD8 | |||
| #define __QADD8 __iar_builtin_QADD8 | |||
| #define __SHADD8 __iar_builtin_SHADD8 | |||
| #define __UADD8 __iar_builtin_UADD8 | |||
| #define __UQADD8 __iar_builtin_UQADD8 | |||
| #define __UHADD8 __iar_builtin_UHADD8 | |||
| #define __SSUB8 __iar_builtin_SSUB8 | |||
| #define __QSUB8 __iar_builtin_QSUB8 | |||
| #define __SHSUB8 __iar_builtin_SHSUB8 | |||
| #define __USUB8 __iar_builtin_USUB8 | |||
| #define __UQSUB8 __iar_builtin_UQSUB8 | |||
| #define __UHSUB8 __iar_builtin_UHSUB8 | |||
| #define __SADD16 __iar_builtin_SADD16 | |||
| #define __QADD16 __iar_builtin_QADD16 | |||
| #define __SHADD16 __iar_builtin_SHADD16 | |||
| #define __UADD16 __iar_builtin_UADD16 | |||
| #define __UQADD16 __iar_builtin_UQADD16 | |||
| #define __UHADD16 __iar_builtin_UHADD16 | |||
| #define __SSUB16 __iar_builtin_SSUB16 | |||
| #define __QSUB16 __iar_builtin_QSUB16 | |||
| #define __SHSUB16 __iar_builtin_SHSUB16 | |||
| #define __USUB16 __iar_builtin_USUB16 | |||
| #define __UQSUB16 __iar_builtin_UQSUB16 | |||
| #define __UHSUB16 __iar_builtin_UHSUB16 | |||
| #define __SASX __iar_builtin_SASX | |||
| #define __QASX __iar_builtin_QASX | |||
| #define __SHASX __iar_builtin_SHASX | |||
| #define __UASX __iar_builtin_UASX | |||
| #define __UQASX __iar_builtin_UQASX | |||
| #define __UHASX __iar_builtin_UHASX | |||
| #define __SSAX __iar_builtin_SSAX | |||
| #define __QSAX __iar_builtin_QSAX | |||
| #define __SHSAX __iar_builtin_SHSAX | |||
| #define __USAX __iar_builtin_USAX | |||
| #define __UQSAX __iar_builtin_UQSAX | |||
| #define __UHSAX __iar_builtin_UHSAX | |||
| #define __USAD8 __iar_builtin_USAD8 | |||
| #define __USADA8 __iar_builtin_USADA8 | |||
| #define __SSAT16 __iar_builtin_SSAT16 | |||
| #define __USAT16 __iar_builtin_USAT16 | |||
| #define __UXTB16 __iar_builtin_UXTB16 | |||
| #define __UXTAB16 __iar_builtin_UXTAB16 | |||
| #define __SXTB16 __iar_builtin_SXTB16 | |||
| #define __SXTAB16 __iar_builtin_SXTAB16 | |||
| #define __SMUAD __iar_builtin_SMUAD | |||
| #define __SMUADX __iar_builtin_SMUADX | |||
| #define __SMMLA __iar_builtin_SMMLA | |||
| #define __SMLAD __iar_builtin_SMLAD | |||
| #define __SMLADX __iar_builtin_SMLADX | |||
| #define __SMLALD __iar_builtin_SMLALD | |||
| #define __SMLALDX __iar_builtin_SMLALDX | |||
| #define __SMUSD __iar_builtin_SMUSD | |||
| #define __SMUSDX __iar_builtin_SMUSDX | |||
| #define __SMLSD __iar_builtin_SMLSD | |||
| #define __SMLSDX __iar_builtin_SMLSDX | |||
| #define __SMLSLD __iar_builtin_SMLSLD | |||
| #define __SMLSLDX __iar_builtin_SMLSLDX | |||
| #define __SEL __iar_builtin_SEL | |||
| #define __QADD __iar_builtin_QADD | |||
| #define __QSUB __iar_builtin_QSUB | |||
| #define __PKHBT __iar_builtin_PKHBT | |||
| #define __PKHTB __iar_builtin_PKHTB | |||
| #else /* __ICCARM_INTRINSICS_VERSION__ == 2 */ | |||
| #if !__FPU_PRESENT | |||
| #define __get_FPSCR __cmsis_iar_get_FPSR_not_active | |||
| #endif | |||
| #ifdef __INTRINSICS_INCLUDED | |||
| #error intrinsics.h is already included previously! | |||
| #endif | |||
| #include <intrinsics.h> | |||
| #if !__FPU_PRESENT | |||
| #define __get_FPSCR() (0) | |||
| #endif | |||
| #pragma diag_suppress=Pe940 | |||
| #pragma diag_suppress=Pe177 | |||
| #define __enable_irq __enable_interrupt | |||
| #define __disable_irq __disable_interrupt | |||
| #define __enable_fault_irq __enable_fiq | |||
| #define __disable_fault_irq __disable_fiq | |||
| #define __NOP __no_operation | |||
| #define __get_xPSR __get_PSR | |||
| __IAR_FT void __set_mode(uint32_t mode) | |||
| { | |||
| __ASM volatile("MSR cpsr_c, %0" : : "r" (mode) : "memory"); | |||
| } | |||
| __IAR_FT uint32_t __LDREXW(uint32_t volatile *ptr) | |||
| { | |||
| return __LDREX((unsigned long *)ptr); | |||
| } | |||
| __IAR_FT uint32_t __STREXW(uint32_t value, uint32_t volatile *ptr) | |||
| { | |||
| return __STREX(value, (unsigned long *)ptr); | |||
| } | |||
| __IAR_FT uint32_t __RRX(uint32_t value) | |||
| { | |||
| uint32_t result; | |||
| __ASM("RRX %0, %1" : "=r"(result) : "r" (value) : "cc"); | |||
| return(result); | |||
| } | |||
| __IAR_FT uint32_t __ROR(uint32_t op1, uint32_t op2) | |||
| { | |||
| return (op1 >> op2) | (op1 << ((sizeof(op1)*8)-op2)); | |||
| } | |||
| __IAR_FT uint32_t __get_FPEXC(void) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| uint32_t result; | |||
| __ASM volatile("VMRS %0, fpexc" : "=r" (result) : : "memory"); | |||
| return(result); | |||
| #else | |||
| return(0); | |||
| #endif | |||
| } | |||
| __IAR_FT void __set_FPEXC(uint32_t fpexc) | |||
| { | |||
| #if (__FPU_PRESENT == 1) | |||
| __ASM volatile ("VMSR fpexc, %0" : : "r" (fpexc) : "memory"); | |||
| #endif | |||
| } | |||
| #define __get_CP(cp, op1, Rt, CRn, CRm, op2) \ | |||
| __ASM volatile("MRC p" # cp ", " # op1 ", %0, c" # CRn ", c" # CRm ", " # op2 : "=r" (Rt) : : "memory" ) | |||
| #define __set_CP(cp, op1, Rt, CRn, CRm, op2) \ | |||
| __ASM volatile("MCR p" # cp ", " # op1 ", %0, c" # CRn ", c" # CRm ", " # op2 : : "r" (Rt) : "memory" ) | |||
| #define __get_CP64(cp, op1, Rt, CRm) \ | |||
| __ASM volatile("MRRC p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : "=r" (Rt) : : "memory" ) | |||
| #define __set_CP64(cp, op1, Rt, CRm) \ | |||
| __ASM volatile("MCRR p" # cp ", " # op1 ", %Q0, %R0, c" # CRm : : "r" (Rt) : "memory" ) | |||
| #include "cmsis_cp15.h" | |||
| #endif /* __ICCARM_INTRINSICS_VERSION__ == 2 */ | |||
| #define __BKPT(value) __asm volatile ("BKPT %0" : : "i"(value)) | |||
| __IAR_FT uint32_t __get_SP_usr(void) | |||
| { | |||
| uint32_t cpsr; | |||
| uint32_t result; | |||
| __ASM volatile( | |||
| "MRS %0, cpsr \n" | |||
| "CPS #0x1F \n" // no effect in USR mode | |||
| "MOV %1, sp \n" | |||
| "MSR cpsr_c, %2 \n" // no effect in USR mode | |||
| "ISB" : "=r"(cpsr), "=r"(result) : "r"(cpsr) : "memory" | |||
| ); | |||
| return result; | |||
| } | |||
| __IAR_FT void __set_SP_usr(uint32_t topOfProcStack) | |||
| { | |||
| uint32_t cpsr; | |||
| __ASM volatile( | |||
| "MRS %0, cpsr \n" | |||
| "CPS #0x1F \n" // no effect in USR mode | |||
| "MOV sp, %1 \n" | |||
| "MSR cpsr_c, %2 \n" // no effect in USR mode | |||
| "ISB" : "=r"(cpsr) : "r" (topOfProcStack), "r"(cpsr) : "memory" | |||
| ); | |||
| } | |||
| #define __get_mode() (__get_CPSR() & 0x1FU) | |||
| __STATIC_INLINE | |||
| void __FPU_Enable(void) | |||
| { | |||
| __ASM volatile( | |||
| //Permit access to VFP/NEON, registers by modifying CPACR | |||
| " MRC p15,0,R1,c1,c0,2 \n" | |||
| " ORR R1,R1,#0x00F00000 \n" | |||
| " MCR p15,0,R1,c1,c0,2 \n" | |||
| //Ensure that subsequent instructions occur in the context of VFP/NEON access permitted | |||
| " ISB \n" | |||
| //Enable VFP/NEON | |||
| " VMRS R1,FPEXC \n" | |||
| " ORR R1,R1,#0x40000000 \n" | |||
| " VMSR FPEXC,R1 \n" | |||
| //Initialise VFP/NEON registers to 0 | |||
| " MOV R2,#0 \n" | |||
| //Initialise D16 registers to 0 | |||
| " VMOV D0, R2,R2 \n" | |||
| " VMOV D1, R2,R2 \n" | |||
| " VMOV D2, R2,R2 \n" | |||
| " VMOV D3, R2,R2 \n" | |||
| " VMOV D4, R2,R2 \n" | |||
| " VMOV D5, R2,R2 \n" | |||
| " VMOV D6, R2,R2 \n" | |||
| " VMOV D7, R2,R2 \n" | |||
| " VMOV D8, R2,R2 \n" | |||
| " VMOV D9, R2,R2 \n" | |||
| " VMOV D10,R2,R2 \n" | |||
| " VMOV D11,R2,R2 \n" | |||
| " VMOV D12,R2,R2 \n" | |||
| " VMOV D13,R2,R2 \n" | |||
| " VMOV D14,R2,R2 \n" | |||
| " VMOV D15,R2,R2 \n" | |||
| #ifdef __ARM_ADVANCED_SIMD__ | |||
| //Initialise D32 registers to 0 | |||
| " VMOV D16,R2,R2 \n" | |||
| " VMOV D17,R2,R2 \n" | |||
| " VMOV D18,R2,R2 \n" | |||
| " VMOV D19,R2,R2 \n" | |||
| " VMOV D20,R2,R2 \n" | |||
| " VMOV D21,R2,R2 \n" | |||
| " VMOV D22,R2,R2 \n" | |||
| " VMOV D23,R2,R2 \n" | |||
| " VMOV D24,R2,R2 \n" | |||
| " VMOV D25,R2,R2 \n" | |||
| " VMOV D26,R2,R2 \n" | |||
| " VMOV D27,R2,R2 \n" | |||
| " VMOV D28,R2,R2 \n" | |||
| " VMOV D29,R2,R2 \n" | |||
| " VMOV D30,R2,R2 \n" | |||
| " VMOV D31,R2,R2 \n" | |||
| #endif | |||
| //Initialise FPSCR to a known state | |||
| " VMRS R2,FPSCR \n" | |||
| " MOV32 R3,#0x00086060 \n" //Mask off all bits that do not have to be preserved. Non-preserved bits can/should be zero. | |||
| " AND R2,R2,R3 \n" | |||
| " VMSR FPSCR,R2 \n"); | |||
| } | |||
| #undef __IAR_FT | |||
| #undef __ICCARM_V8 | |||
| #pragma diag_default=Pe940 | |||
| #pragma diag_default=Pe177 | |||
| #endif /* __CMSIS_ICCARM_H__ */ | |||
| @@ -0,0 +1,186 @@ | |||
| /**************************************************************************//** | |||
| * @file irq_ctrl.h | |||
| * @brief Interrupt Controller API header file | |||
| * @version V1.0.0 | |||
| * @date 23. June 2017 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2017 ARM Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #if defined ( __ICCARM__ ) | |||
| #pragma system_include /* treat file as system include file for MISRA check */ | |||
| #elif defined (__clang__) | |||
| #pragma clang system_header /* treat file as system include file */ | |||
| #endif | |||
| #ifndef IRQ_CTRL_H_ | |||
| #define IRQ_CTRL_H_ | |||
| #include <stdint.h> | |||
| #ifndef IRQHANDLER_T | |||
| #define IRQHANDLER_T | |||
| /// Interrupt handler data type | |||
| typedef void (*IRQHandler_t) (void); | |||
| #endif | |||
| #ifndef IRQN_ID_T | |||
| #define IRQN_ID_T | |||
| /// Interrupt ID number data type | |||
| typedef int32_t IRQn_ID_t; | |||
| #endif | |||
| /* Interrupt mode bit-masks */ | |||
| #define IRQ_MODE_TRIG_Pos (0U) | |||
| #define IRQ_MODE_TRIG_Msk (0x07UL /*<< IRQ_MODE_TRIG_Pos*/) | |||
| #define IRQ_MODE_TRIG_LEVEL (0x00UL /*<< IRQ_MODE_TRIG_Pos*/) ///< Trigger: level triggered interrupt | |||
| #define IRQ_MODE_TRIG_LEVEL_LOW (0x01UL /*<< IRQ_MODE_TRIG_Pos*/) ///< Trigger: low level triggered interrupt | |||
| #define IRQ_MODE_TRIG_LEVEL_HIGH (0x02UL /*<< IRQ_MODE_TRIG_Pos*/) ///< Trigger: high level triggered interrupt | |||
| #define IRQ_MODE_TRIG_EDGE (0x04UL /*<< IRQ_MODE_TRIG_Pos*/) ///< Trigger: edge triggered interrupt | |||
| #define IRQ_MODE_TRIG_EDGE_RISING (0x05UL /*<< IRQ_MODE_TRIG_Pos*/) ///< Trigger: rising edge triggered interrupt | |||
| #define IRQ_MODE_TRIG_EDGE_FALLING (0x06UL /*<< IRQ_MODE_TRIG_Pos*/) ///< Trigger: falling edge triggered interrupt | |||
| #define IRQ_MODE_TRIG_EDGE_BOTH (0x07UL /*<< IRQ_MODE_TRIG_Pos*/) ///< Trigger: rising and falling edge triggered interrupt | |||
| #define IRQ_MODE_TYPE_Pos (3U) | |||
| #define IRQ_MODE_TYPE_Msk (0x01UL << IRQ_MODE_TYPE_Pos) | |||
| #define IRQ_MODE_TYPE_IRQ (0x00UL << IRQ_MODE_TYPE_Pos) ///< Type: interrupt source triggers CPU IRQ line | |||
| #define IRQ_MODE_TYPE_FIQ (0x01UL << IRQ_MODE_TYPE_Pos) ///< Type: interrupt source triggers CPU FIQ line | |||
| #define IRQ_MODE_DOMAIN_Pos (4U) | |||
| #define IRQ_MODE_DOMAIN_Msk (0x01UL << IRQ_MODE_DOMAIN_Pos) | |||
| #define IRQ_MODE_DOMAIN_NONSECURE (0x00UL << IRQ_MODE_DOMAIN_Pos) ///< Domain: interrupt is targeting non-secure domain | |||
| #define IRQ_MODE_DOMAIN_SECURE (0x01UL << IRQ_MODE_DOMAIN_Pos) ///< Domain: interrupt is targeting secure domain | |||
| #define IRQ_MODE_CPU_Pos (5U) | |||
| #define IRQ_MODE_CPU_Msk (0xFFUL << IRQ_MODE_CPU_Pos) | |||
| #define IRQ_MODE_CPU_ALL (0x00UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets all CPUs | |||
| #define IRQ_MODE_CPU_0 (0x01UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 0 | |||
| #define IRQ_MODE_CPU_1 (0x02UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 1 | |||
| #define IRQ_MODE_CPU_2 (0x04UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 2 | |||
| #define IRQ_MODE_CPU_3 (0x08UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 3 | |||
| #define IRQ_MODE_CPU_4 (0x10UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 4 | |||
| #define IRQ_MODE_CPU_5 (0x20UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 5 | |||
| #define IRQ_MODE_CPU_6 (0x40UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 6 | |||
| #define IRQ_MODE_CPU_7 (0x80UL << IRQ_MODE_CPU_Pos) ///< CPU: interrupt targets CPU 7 | |||
| #define IRQ_MODE_ERROR (0x80000000UL) ///< Bit indicating mode value error | |||
| /* Interrupt priority bit-masks */ | |||
| #define IRQ_PRIORITY_Msk (0x0000FFFFUL) ///< Interrupt priority value bit-mask | |||
| #define IRQ_PRIORITY_ERROR (0x80000000UL) ///< Bit indicating priority value error | |||
| /// Initialize interrupt controller. | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_Initialize (void); | |||
| /// Register interrupt handler. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \param[in] handler interrupt handler function address | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_SetHandler (IRQn_ID_t irqn, IRQHandler_t handler); | |||
| /// Get the registered interrupt handler. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return registered interrupt handler function address. | |||
| IRQHandler_t IRQ_GetHandler (IRQn_ID_t irqn); | |||
| /// Enable interrupt. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_Enable (IRQn_ID_t irqn); | |||
| /// Disable interrupt. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_Disable (IRQn_ID_t irqn); | |||
| /// Get interrupt enable state. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return 0 - interrupt is disabled, 1 - interrupt is enabled. | |||
| uint32_t IRQ_GetEnableState (IRQn_ID_t irqn); | |||
| /// Configure interrupt request mode. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \param[in] mode mode configuration | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_SetMode (IRQn_ID_t irqn, uint32_t mode); | |||
| /// Get interrupt mode configuration. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return current interrupt mode configuration with optional IRQ_MODE_ERROR bit set. | |||
| uint32_t IRQ_GetMode (IRQn_ID_t irqn); | |||
| /// Get ID number of current interrupt request (IRQ). | |||
| /// \return interrupt ID number. | |||
| IRQn_ID_t IRQ_GetActiveIRQ (void); | |||
| /// Get ID number of current fast interrupt request (FIQ). | |||
| /// \return interrupt ID number. | |||
| IRQn_ID_t IRQ_GetActiveFIQ (void); | |||
| /// Signal end of interrupt processing. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_EndOfInterrupt (IRQn_ID_t irqn); | |||
| /// Set interrupt pending flag. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_SetPending (IRQn_ID_t irqn); | |||
| /// Get interrupt pending flag. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return 0 - interrupt is not pending, 1 - interrupt is pending. | |||
| uint32_t IRQ_GetPending (IRQn_ID_t irqn); | |||
| /// Clear interrupt pending flag. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_ClearPending (IRQn_ID_t irqn); | |||
| /// Set interrupt priority value. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \param[in] priority interrupt priority value | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_SetPriority (IRQn_ID_t irqn, uint32_t priority); | |||
| /// Get interrupt priority. | |||
| /// \param[in] irqn interrupt ID number | |||
| /// \return current interrupt priority value with optional IRQ_PRIORITY_ERROR bit set. | |||
| uint32_t IRQ_GetPriority (IRQn_ID_t irqn); | |||
| /// Set priority masking threshold. | |||
| /// \param[in] priority priority masking threshold value | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_SetPriorityMask (uint32_t priority); | |||
| /// Get priority masking threshold | |||
| /// \return current priority masking threshold value with optional IRQ_PRIORITY_ERROR bit set. | |||
| uint32_t IRQ_GetPriorityMask (void); | |||
| /// Set priority grouping field split point | |||
| /// \param[in] bits number of MSB bits included in the group priority field comparison | |||
| /// \return 0 on success, -1 on error. | |||
| int32_t IRQ_SetPriorityGroupBits (uint32_t bits); | |||
| /// Get priority grouping field split point | |||
| /// \return current number of MSB bits included in the group priority field comparison with | |||
| /// optional IRQ_PRIORITY_ERROR bit set. | |||
| uint32_t IRQ_GetPriorityGroupBits (void); | |||
| #endif // IRQ_CTRL_H_ | |||
| @@ -0,0 +1,410 @@ | |||
| /**************************************************************************//** | |||
| * @file irq_ctrl_gic.c | |||
| * @brief Interrupt controller handling implementation for GIC | |||
| * @version V1.0.1 | |||
| * @date 9. April 2018 | |||
| ******************************************************************************/ | |||
| /* | |||
| * Copyright (c) 2017 ARM Limited. All rights reserved. | |||
| * | |||
| * SPDX-License-Identifier: Apache-2.0 | |||
| * | |||
| * Licensed under the Apache License, Version 2.0 (the License); you may | |||
| * not use this file except in compliance with the License. | |||
| * You may obtain a copy of the License at | |||
| * | |||
| * www.apache.org/licenses/LICENSE-2.0 | |||
| * | |||
| * Unless required by applicable law or agreed to in writing, software | |||
| * distributed under the License is distributed on an AS IS BASIS, WITHOUT | |||
| * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | |||
| * See the License for the specific language governing permissions and | |||
| * limitations under the License. | |||
| */ | |||
| #include <stddef.h> | |||
| #include "RTE_Components.h" | |||
| #include CMSIS_device_header | |||
| #include "irq_ctrl.h" | |||
| #if defined(__GIC_PRESENT) && (__GIC_PRESENT == 1U) | |||
| /// Number of implemented interrupt lines | |||
| #ifndef IRQ_GIC_LINE_COUNT | |||
| #define IRQ_GIC_LINE_COUNT (1020U) | |||
| #endif | |||
| static IRQHandler_t IRQTable[IRQ_GIC_LINE_COUNT] = { 0U }; | |||
| static uint32_t IRQ_ID0; | |||
| /// Initialize interrupt controller. | |||
| __WEAK int32_t IRQ_Initialize (void) { | |||
| uint32_t i; | |||
| for (i = 0U; i < IRQ_GIC_LINE_COUNT; i++) { | |||
| IRQTable[i] = (IRQHandler_t)NULL; | |||
| } | |||
| GIC_Enable(); | |||
| return (0); | |||
| } | |||
| /// Register interrupt handler. | |||
| __WEAK int32_t IRQ_SetHandler (IRQn_ID_t irqn, IRQHandler_t handler) { | |||
| int32_t status; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| IRQTable[irqn] = handler; | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Get the registered interrupt handler. | |||
| __WEAK IRQHandler_t IRQ_GetHandler (IRQn_ID_t irqn) { | |||
| IRQHandler_t h; | |||
| // Ignore CPUID field (software generated interrupts) | |||
| irqn &= 0x3FFU; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| h = IRQTable[irqn]; | |||
| } else { | |||
| h = (IRQHandler_t)0; | |||
| } | |||
| return (h); | |||
| } | |||
| /// Enable interrupt. | |||
| __WEAK int32_t IRQ_Enable (IRQn_ID_t irqn) { | |||
| int32_t status; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| GIC_EnableIRQ ((IRQn_Type)irqn); | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Disable interrupt. | |||
| __WEAK int32_t IRQ_Disable (IRQn_ID_t irqn) { | |||
| int32_t status; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| GIC_DisableIRQ ((IRQn_Type)irqn); | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Get interrupt enable state. | |||
| __WEAK uint32_t IRQ_GetEnableState (IRQn_ID_t irqn) { | |||
| uint32_t enable; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| enable = GIC_GetEnableIRQ((IRQn_Type)irqn); | |||
| } else { | |||
| enable = 0U; | |||
| } | |||
| return (enable); | |||
| } | |||
| /// Configure interrupt request mode. | |||
| __WEAK int32_t IRQ_SetMode (IRQn_ID_t irqn, uint32_t mode) { | |||
| uint32_t val; | |||
| uint8_t cfg; | |||
| uint8_t secure; | |||
| uint8_t cpu; | |||
| int32_t status = 0; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| // Check triggering mode | |||
| val = (mode & IRQ_MODE_TRIG_Msk); | |||
| if (val == IRQ_MODE_TRIG_LEVEL) { | |||
| cfg = 0x00U; | |||
| } else if (val == IRQ_MODE_TRIG_EDGE) { | |||
| cfg = 0x02U; | |||
| } else { | |||
| cfg = 0x00U; | |||
| status = -1; | |||
| } | |||
| // Check interrupt type | |||
| val = mode & IRQ_MODE_TYPE_Msk; | |||
| if (val != IRQ_MODE_TYPE_IRQ) { | |||
| status = -1; | |||
| } | |||
| // Check interrupt domain | |||
| val = mode & IRQ_MODE_DOMAIN_Msk; | |||
| if (val == IRQ_MODE_DOMAIN_NONSECURE) { | |||
| secure = 0U; | |||
| } else { | |||
| // Check security extensions support | |||
| val = GIC_DistributorInfo() & (1UL << 10U); | |||
| if (val != 0U) { | |||
| // Security extensions are supported | |||
| secure = 1U; | |||
| } else { | |||
| secure = 0U; | |||
| status = -1; | |||
| } | |||
| } | |||
| // Check interrupt CPU targets | |||
| val = mode & IRQ_MODE_CPU_Msk; | |||
| if (val == IRQ_MODE_CPU_ALL) { | |||
| cpu = 0xFFU; | |||
| } else { | |||
| cpu = val >> IRQ_MODE_CPU_Pos; | |||
| } | |||
| // Apply configuration if no mode error | |||
| if (status == 0) { | |||
| GIC_SetConfiguration((IRQn_Type)irqn, cfg); | |||
| GIC_SetTarget ((IRQn_Type)irqn, cpu); | |||
| if (secure != 0U) { | |||
| GIC_SetGroup ((IRQn_Type)irqn, secure); | |||
| } | |||
| } | |||
| } | |||
| return (status); | |||
| } | |||
| /// Get interrupt mode configuration. | |||
| __WEAK uint32_t IRQ_GetMode (IRQn_ID_t irqn) { | |||
| uint32_t mode; | |||
| uint32_t val; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| mode = IRQ_MODE_TYPE_IRQ; | |||
| // Get trigger mode | |||
| val = GIC_GetConfiguration((IRQn_Type)irqn); | |||
| if ((val & 2U) != 0U) { | |||
| // Corresponding interrupt is edge triggered | |||
| mode |= IRQ_MODE_TRIG_EDGE; | |||
| } else { | |||
| // Corresponding interrupt is level triggered | |||
| mode |= IRQ_MODE_TRIG_LEVEL; | |||
| } | |||
| // Get interrupt CPU targets | |||
| mode |= GIC_GetTarget ((IRQn_Type)irqn) << IRQ_MODE_CPU_Pos; | |||
| } else { | |||
| mode = IRQ_MODE_ERROR; | |||
| } | |||
| return (mode); | |||
| } | |||
| /// Get ID number of current interrupt request (IRQ). | |||
| __WEAK IRQn_ID_t IRQ_GetActiveIRQ (void) { | |||
| IRQn_ID_t irqn; | |||
| uint32_t prio; | |||
| /* Dummy read to avoid GIC 390 errata 801120 */ | |||
| GIC_GetHighPendingIRQ(); | |||
| irqn = GIC_AcknowledgePending(); | |||
| __DSB(); | |||
| /* Workaround GIC 390 errata 733075 (GIC-390_Errata_Notice_v6.pdf, 09-Jul-2014) */ | |||
| /* The following workaround code is for a single-core system. It would be */ | |||
| /* different in a multi-core system. */ | |||
| /* If the ID is 0 or 0x3FE or 0x3FF, then the GIC CPU interface may be locked-up */ | |||
| /* so unlock it, otherwise service the interrupt as normal. */ | |||
| /* Special IDs 1020=0x3FC and 1021=0x3FD are reserved values in GICv1 and GICv2 */ | |||
| /* so will not occur here. */ | |||
| if ((irqn == 0) || (irqn >= 0x3FE)) { | |||
| /* Unlock the CPU interface with a dummy write to Interrupt Priority Register */ | |||
| prio = GIC_GetPriority((IRQn_Type)0); | |||
| GIC_SetPriority ((IRQn_Type)0, prio); | |||
| __DSB(); | |||
| if ((irqn == 0U) && ((GIC_GetIRQStatus ((IRQn_Type)irqn) & 1U) != 0U) && (IRQ_ID0 == 0U)) { | |||
| /* If the ID is 0, is active and has not been seen before */ | |||
| IRQ_ID0 = 1U; | |||
| } | |||
| /* End of Workaround GIC 390 errata 733075 */ | |||
| } | |||
| return (irqn); | |||
| } | |||
| /// Get ID number of current fast interrupt request (FIQ). | |||
| __WEAK IRQn_ID_t IRQ_GetActiveFIQ (void) { | |||
| return ((IRQn_ID_t)-1); | |||
| } | |||
| /// Signal end of interrupt processing. | |||
| __WEAK int32_t IRQ_EndOfInterrupt (IRQn_ID_t irqn) { | |||
| int32_t status; | |||
| IRQn_Type irq = (IRQn_Type)irqn; | |||
| irqn &= 0x3FFU; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| GIC_EndInterrupt (irq); | |||
| if (irqn == 0) { | |||
| IRQ_ID0 = 0U; | |||
| } | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Set interrupt pending flag. | |||
| __WEAK int32_t IRQ_SetPending (IRQn_ID_t irqn) { | |||
| int32_t status; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| GIC_SetPendingIRQ ((IRQn_Type)irqn); | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Get interrupt pending flag. | |||
| __WEAK uint32_t IRQ_GetPending (IRQn_ID_t irqn) { | |||
| uint32_t pending; | |||
| if ((irqn >= 16) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| pending = GIC_GetPendingIRQ ((IRQn_Type)irqn); | |||
| } else { | |||
| pending = 0U; | |||
| } | |||
| return (pending & 1U); | |||
| } | |||
| /// Clear interrupt pending flag. | |||
| __WEAK int32_t IRQ_ClearPending (IRQn_ID_t irqn) { | |||
| int32_t status; | |||
| if ((irqn >= 16) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| GIC_ClearPendingIRQ ((IRQn_Type)irqn); | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Set interrupt priority value. | |||
| __WEAK int32_t IRQ_SetPriority (IRQn_ID_t irqn, uint32_t priority) { | |||
| int32_t status; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| GIC_SetPriority ((IRQn_Type)irqn, priority); | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Get interrupt priority. | |||
| __WEAK uint32_t IRQ_GetPriority (IRQn_ID_t irqn) { | |||
| uint32_t priority; | |||
| if ((irqn >= 0) && (irqn < (IRQn_ID_t)IRQ_GIC_LINE_COUNT)) { | |||
| priority = GIC_GetPriority ((IRQn_Type)irqn); | |||
| } else { | |||
| priority = IRQ_PRIORITY_ERROR; | |||
| } | |||
| return (priority); | |||
| } | |||
| /// Set priority masking threshold. | |||
| __WEAK int32_t IRQ_SetPriorityMask (uint32_t priority) { | |||
| GIC_SetInterfacePriorityMask (priority); | |||
| return (0); | |||
| } | |||
| /// Get priority masking threshold | |||
| __WEAK uint32_t IRQ_GetPriorityMask (void) { | |||
| return GIC_GetInterfacePriorityMask(); | |||
| } | |||
| /// Set priority grouping field split point | |||
| __WEAK int32_t IRQ_SetPriorityGroupBits (uint32_t bits) { | |||
| int32_t status; | |||
| if (bits == IRQ_PRIORITY_Msk) { | |||
| bits = 7U; | |||
| } | |||
| if (bits < 8U) { | |||
| GIC_SetBinaryPoint (7U - bits); | |||
| status = 0; | |||
| } else { | |||
| status = -1; | |||
| } | |||
| return (status); | |||
| } | |||
| /// Get priority grouping field split point | |||
| __WEAK uint32_t IRQ_GetPriorityGroupBits (void) { | |||
| uint32_t bp; | |||
| bp = GIC_GetBinaryPoint() & 0x07U; | |||
| return (7U - bp); | |||
| } | |||
| #endif | |||
| @@ -0,0 +1,220 @@ | |||
| #ifndef _ARR_DESC_H_ | |||
| #define _ARR_DESC_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include <stdint.h> | |||
| #include <string.h> /* memset() */ | |||
| #include "../util/util.h" /* CONCAT() */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Type Definitions */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Array-descriptor struct. | |||
| */ | |||
| typedef struct ARR_DESC_struct | |||
| { | |||
| void * data_ptr; /* Pointer to the array contents. */ | |||
| int32_t element_count; /* Number of current elements. */ | |||
| int32_t element_size; /* Size of current elements in bytes. */ | |||
| int32_t underlying_size; /* Size of underlying array in bytes. */ | |||
| } ARR_DESC_t; | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Prefix of the array variable's name when creating an array and an array | |||
| * descriptor at the same time. | |||
| */ | |||
| #define ARR_DESC_ARR_PREFIX ARR_DESC_ARR_ | |||
| /** | |||
| * Evaluate to the array variable's name when creating an array and an array | |||
| * descriptor at the same time. | |||
| */ | |||
| #define ARR_DESC_ARR_NAME(name) \ | |||
| CONCAT(ARR_DESC_ARR_PREFIX, name) | |||
| /** | |||
| * Define an #ARR_DESC_t by itself. | |||
| * | |||
| * @note The user must supply an array to store the data used by the | |||
| * #ARR_DESC_t. | |||
| */ | |||
| #define ARR_DESC_INTERNAL_DEFINE(name, data_ptr, \ | |||
| element_count, element_size) \ | |||
| ARR_DESC_t name = { \ | |||
| data_ptr, \ | |||
| element_count, \ | |||
| element_size, \ | |||
| element_count * element_size \ | |||
| } \ | |||
| /** | |||
| * Define both an array and an #ARR_DESC_t that describes it. | |||
| * | |||
| * @note Use the #CURLY() macro for the content field; it provides the curly | |||
| * braces necessary for an array initialization. | |||
| */ | |||
| #define ARR_DESC_DEFINE(type, name, element_count, content) \ | |||
| type ARR_DESC_ARR_NAME(name)[element_count] = content; \ | |||
| ARR_DESC_INTERNAL_DEFINE(name, \ | |||
| &ARR_DESC_ARR_NAME(name), \ | |||
| element_count, \ | |||
| sizeof(type)) /* Note the lacking semicolon */ | |||
| /** | |||
| * Create a #ARR_DESC_t which refers to a subset of the data in another. | |||
| * | |||
| * The new #ARR_DESC_t shares the same underlying array as the aliased | |||
| * #ARR_DESC_t, but only describes a subset of the originals values. | |||
| */ | |||
| #define ARR_DESC_DEFINE_SUBSET(name, original, element_cnt) \ | |||
| ARR_DESC_INTERNAL_DEFINE(name, \ | |||
| &ARR_DESC_ARR_NAME(original), \ | |||
| element_cnt, \ | |||
| sizeof(ARR_DESC_ARR_NAME(original)[0]) \ | |||
| ) /* Note the lacking semicolon */ | |||
| /** | |||
| * Creat an #ARR_DESC_t which points to the data in an existing array. | |||
| * | |||
| * @param start_idx Offset in array_ptr of first element. | |||
| * @param element_cnt Number of elements to include in the #ARR_DESC_t. | |||
| * | |||
| * @example | |||
| * | |||
| * float my_floats[4] = {0.0f, 1.0f, 2.0f, 3.0f}; | |||
| * | |||
| * ARR_DESC_DEFINE_USING_ARR(my_arr_desc, my_floats, 1, 3); | |||
| * | |||
| * printf("Element 0: %f\n", ARR_DESC_ELT(float, 0, &my_arr_desc)); | |||
| * printf("Element 1: %f\n", ARR_DESC_ELT(float, 1, &my_arr_desc)); | |||
| * | |||
| * Outputs: | |||
| * | |||
| * Element 0: 1.000000 | |||
| * Element 1: 2.000000 | |||
| * | |||
| * @warning There are no checks in place to catch invalid start indices; This | |||
| * is left to the user. | |||
| */ | |||
| #define ARR_DESC_DEFINE_USING_ARR(type, name, array_ptr, start_idx, element_cnt) \ | |||
| ARR_DESC_INTERNAL_DEFINE( \ | |||
| name, \ | |||
| (type *) (array_ptr + start_idx), \ | |||
| element_cnt, \ | |||
| sizeof(type) \ | |||
| ) /* Note the lacking semicolon*/ | |||
| /** | |||
| * Declare an #ARR_DESC_t object. | |||
| */ | |||
| #define ARR_DESC_DECLARE(name) \ | |||
| extern ARR_DESC_t name /* Note the lacking semicolon */ | |||
| /** | |||
| * Evaluate to the number of bytes stored in the #ARR_DESC_t. | |||
| */ | |||
| #define ARR_DESC_BYTES(arr_desc_ptr) \ | |||
| ((arr_desc_ptr)->element_count * (arr_desc_ptr)->element_size) | |||
| /** | |||
| * Set the contents of #ARR_DESC_t to value. | |||
| */ | |||
| #define ARR_DESC_MEMSET(arr_desc_ptr, value, bytes) \ | |||
| do \ | |||
| { \ | |||
| memset((arr_desc_ptr)->data_ptr, \ | |||
| value, \ | |||
| BOUND(0, \ | |||
| (arr_desc_ptr)->underlying_size, \ | |||
| bytes) \ | |||
| ); \ | |||
| } while (0) | |||
| /** | |||
| * Perform a memcpy of 'bytes' bytes from the source #ARR_DESC_t to the | |||
| * destination #ARR_DESC_t. | |||
| */ | |||
| #define ARR_DESC_MEMCPY(arr_desc_dest_ptr, arr_desc_src_ptr, bytes) \ | |||
| do \ | |||
| { \ | |||
| memcpy((arr_desc_dest_ptr)->data_ptr, \ | |||
| (arr_desc_src_ptr)->data_ptr, \ | |||
| BOUND(0, \ | |||
| (arr_desc_dest_ptr)->underlying_size, \ | |||
| bytes)); \ | |||
| } while (0) | |||
| /** | |||
| * Evaluate to true if the source #ARR_DESC_t contents will fit into the | |||
| * destination #ARR_DESC_t and false otherwise. | |||
| */ | |||
| #define ARR_DESC_COPYABLE(arr_desc_dest_ptr, arr_desc_src_ptr) \ | |||
| (ARR_DESC_BYTES(arr_desc_src_ptr) <= \ | |||
| (arr_desc_dest_ptr)->underlying_size) | |||
| /** | |||
| * Copy all the data from the source #ARR_DESC_t to the destination | |||
| * #ARR_DESC_t. | |||
| * | |||
| * @note If the destination #ARR_DESC_t is too small to fit the source data the | |||
| * copy is aborted and nothing happens. | |||
| */ | |||
| #define ARR_DESC_COPY(arr_desc_dest_ptr, arr_desc_src_ptr) \ | |||
| do \ | |||
| { \ | |||
| if (ARR_DESC_COPYABLE(arr_desc_dest_ptr, \ | |||
| arr_desc_src_ptr)) \ | |||
| { \ | |||
| ARR_DESC_MEMCPY(arr_desc_dest_ptr, \ | |||
| arr_desc_src_ptr, \ | |||
| ARR_DESC_BYTES(arr_desc_src_ptr)); \ | |||
| /* Update the properties*/ \ | |||
| (arr_desc_dest_ptr)->element_count = \ | |||
| (arr_desc_src_ptr)->element_count; \ | |||
| (arr_desc_dest_ptr)->element_size = \ | |||
| (arr_desc_src_ptr)->element_size; \ | |||
| } \ | |||
| } while (0) | |||
| /** | |||
| * Compare the data in two #ARR_DESC_t structs for the specified number of | |||
| * bytes. | |||
| */ | |||
| #define ARR_DESC_MEMCMP(arr_desc_ptr_a, arr_desc_ptr_b, bytes) \ | |||
| memcmp((arr_desc_ptr_a)->data_ptr, \ | |||
| (arr_desc_ptr_b)->data_ptr, \ | |||
| bytes) /* Note the lacking semicolon */ \ | |||
| /** | |||
| * Zero out the contents of the #ARR_DESC_t. | |||
| */ | |||
| #define ARR_DESC_ZERO(arr_desc_ptr) \ | |||
| ARR_DESC_MEMSET(arr_desc_ptr, \ | |||
| 0, \ | |||
| (arr_desc_ptr)->underlying_size) | |||
| /** | |||
| * Evaluate to the data address in #ARR_DESC_t at offset. | |||
| */ | |||
| #define ARR_DESC_DATA_ADDR(type, arr_desc_ptr, offset) \ | |||
| ((void*)(((type *) \ | |||
| ((arr_desc_ptr)->data_ptr)) \ | |||
| + offset)) | |||
| /** | |||
| * Evaluate to the element in #ARR_DESC_t with type at idx. | |||
| */ | |||
| #define ARR_DESC_ELT(type, idx, arr_desc_ptr) \ | |||
| (*((type *) ARR_DESC_DATA_ADDR(type, \ | |||
| arr_desc_ptr, \ | |||
| idx))) | |||
| #endif /* _ARR_DESC_H_ */ | |||
| @@ -0,0 +1,17 @@ | |||
| #ifndef _JTEST_H_ | |||
| #define _JTEST_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "jtest_fw.h" | |||
| #include "jtest_test.h" | |||
| #include "jtest_test_define.h" | |||
| #include "jtest_test_call.h" | |||
| #include "jtest_group.h" | |||
| #include "jtest_group_define.h" | |||
| #include "jtest_group_call.h" | |||
| #include "jtest_cycle.h" | |||
| #endif /* _JTEST_H_ */ | |||
| @@ -0,0 +1,65 @@ | |||
| #ifndef _JTEST_CYCLE_H_ | |||
| #define _JTEST_CYCLE_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "jtest_fw.h" /* JTEST_DUMP_STRF() */ | |||
| #include "jtest_systick.h" | |||
| #include "jtest_util.h" /* STR() */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Declare Module Variables */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| extern const char * JTEST_CYCLE_STRF; | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Wrap the function call, fn_call, to count execution cycles and display the | |||
| * results. | |||
| */ | |||
| /* skipp function name + param | |||
| #define JTEST_COUNT_CYCLES(fn_call) \ | |||
| do \ | |||
| { \ | |||
| uint32_t __jtest_cycle_end_count; \ | |||
| \ | |||
| JTEST_SYSTICK_RESET(SysTick); \ | |||
| JTEST_SYSTICK_START(SysTick); \ | |||
| \ | |||
| fn_call; \ | |||
| \ | |||
| __jtest_cycle_end_count = \ | |||
| JTEST_SYSTICK_VALUE(SysTick); \ | |||
| \ | |||
| JTEST_SYSTICK_RESET(SysTick); \ | |||
| JTEST_DUMP_STRF(JTEST_CYCLE_STRF, \ | |||
| STR(fn_call), \ | |||
| (JTEST_SYSTICK_INITIAL_VALUE - \ | |||
| __jtest_cycle_end_count)); \ | |||
| } while (0) | |||
| */ | |||
| #define JTEST_COUNT_CYCLES(fn_call) \ | |||
| do \ | |||
| { \ | |||
| uint32_t __jtest_cycle_end_count; \ | |||
| \ | |||
| JTEST_SYSTICK_RESET(SysTick); \ | |||
| JTEST_SYSTICK_START(SysTick); \ | |||
| \ | |||
| fn_call; \ | |||
| \ | |||
| __jtest_cycle_end_count = \ | |||
| JTEST_SYSTICK_VALUE(SysTick); \ | |||
| \ | |||
| JTEST_SYSTICK_RESET(SysTick); \ | |||
| JTEST_DUMP_STRF(JTEST_CYCLE_STRF, \ | |||
| (JTEST_SYSTICK_INITIAL_VALUE - \ | |||
| __jtest_cycle_end_count)); \ | |||
| } while (0) | |||
| #endif /* _JTEST_CYCLE_H_ */ | |||
| @@ -0,0 +1,37 @@ | |||
| #ifndef _JTEST_DEFINE_H_ | |||
| #define _JTEST_DEFINE_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Makes a symbol for use as a struct name. Names made this way have two parts; | |||
| * the first parts is a prefix common to all structs of that class. The second | |||
| * is a specifier which differs for each instance of that struct type. | |||
| */ | |||
| #define JTEST_STRUCT_NAME(prefix, specifier) \ | |||
| CONCAT(prefix, specifier) | |||
| /** | |||
| * Define a struct with type with a name generated by #JTEST_STRUCT_NAME(). | |||
| */ | |||
| #define JTEST_DEFINE_STRUCT(type, struct_name) \ | |||
| type struct_name | |||
| /** | |||
| * Declare a struct with type with a name generated by #JTEST_STRUCT_NAME(). | |||
| */ | |||
| #define JTEST_DECLARE_STRUCT(struct_definition) \ | |||
| extern struct_definition | |||
| /** | |||
| * Define and initialize a struct (created with JTEST_DEFINE_STRUCT()) and | |||
| * initialize it with init_values. | |||
| */ | |||
| #define JTEST_INIT_STRUCT(struct_definition, init_values) \ | |||
| struct_definition = { \ | |||
| init_values \ | |||
| } | |||
| #endif /* _JTEST_DEFINE_H_ */ | |||
| @@ -0,0 +1,253 @@ | |||
| #ifndef _JTEST_FW_H_ | |||
| #define _JTEST_FW_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include <stdint.h> /* int32_t */ | |||
| #include <string.h> /* strcpy() */ | |||
| #include <stdio.h> /* sprintf() */ | |||
| #include "jtest_pf.h" /* Extend JTEST_FW_t with Pass/Fail data */ | |||
| #include "jtest_group.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Type Definitions */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * A struct used to interface with the Keil Debugger. | |||
| */ | |||
| typedef struct JTEST_FW_struct | |||
| { | |||
| /* Action Triggers: The Keil debugger monitors these values for changes. In | |||
| * response to a change, the debugger executes code on the host. */ | |||
| volatile int32_t test_start; | |||
| volatile int32_t test_end; | |||
| volatile int32_t group_start; | |||
| volatile int32_t group_end; | |||
| volatile int32_t dump_str; | |||
| volatile int32_t dump_data; | |||
| volatile int32_t exit_fw; | |||
| JTEST_GROUP_t * current_group_ptr; | |||
| /* Buffers: The C-code cannot send strings and data directly to the | |||
| * debugging framework. Instead, the debugger can be told to read 128 byte | |||
| * (by default) chunks of memory. Data received in this manner requires | |||
| * post-processing to be legible.*/ | |||
| char * str_buffer; | |||
| char * data_buffer; | |||
| /* Pass/Fail Data */ | |||
| JTEST_PF_MEMBERS; | |||
| } JTEST_FW_t; | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Default name for the JTEST_FW struct. | |||
| * | |||
| * Define your own if you want the variable containing the #JTEST_FW_t to have | |||
| * a different name. | |||
| */ | |||
| #ifndef JTEST_FW | |||
| #define JTEST_FW JTEST_FW | |||
| #endif | |||
| /** | |||
| * Default name for the JTEST_FW_STR_BUFFER. | |||
| * | |||
| * Define your own if you want the variable containing the char buffer to have | |||
| * a different name. | |||
| */ | |||
| #ifndef JTEST_FW_STR_BUFFER | |||
| #define JTEST_FW_STR_BUFFER JTEST_FW_STR_BUFFER | |||
| #endif | |||
| /** | |||
| * Size of the #JTEST_FW_t, output string-buffer. | |||
| * | |||
| * If you change this value, make sure the "dump_str_fn" and "dump_data_fn" | |||
| * functions in jtest_fns.ini uses the same size. If you aren't sure, read the | |||
| * documentation Keil Debugger Command 'DISPLAY'. | |||
| */ | |||
| #define JTEST_BUF_SIZE 256 | |||
| /** | |||
| * The maximum number of bytes output at once using #JTEST_DUMP_STRF(). | |||
| */ | |||
| #define JTEST_STR_MAX_OUTPUT_SIZE 128 | |||
| /** | |||
| * The maximum number of block transimissions needed to send a string from a | |||
| * buffer with JTEST_BUF_SIZE. | |||
| */ | |||
| #define JTEST_STR_MAX_OUTPUT_SEGMENTS \ | |||
| (JTEST_BUF_SIZE / JTEST_STR_MAX_OUTPUT_SIZE) | |||
| /** | |||
| * Initialize the JTEST framework. | |||
| */ | |||
| #define JTEST_INIT() \ | |||
| do \ | |||
| { \ | |||
| JTEST_FW.str_buffer = JTEST_FW_STR_BUFFER; \ | |||
| } while (0) | |||
| /* Debugger Action-triggering Macros */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Dispatch macro to trigger various actions in the Keil Debugger. | |||
| */ | |||
| #define JTEST_TRIGGER_ACTION(action_name) \ | |||
| do \ | |||
| { \ | |||
| action_name(); \ | |||
| } while (0) | |||
| /** | |||
| * Trigger the "Test Start" action in the Keil Debugger. | |||
| */ | |||
| #define JTEST_ACT_TEST_START() \ | |||
| JTEST_TRIGGER_ACTION(test_start) | |||
| /** | |||
| * Trigger the "Test End" action in the Keil Debugger. | |||
| */ | |||
| #define JTEST_ACT_TEST_END() \ | |||
| JTEST_TRIGGER_ACTION(test_end) | |||
| /** | |||
| * Trigger the "Group Start" action in the Keil Debugger. | |||
| */ | |||
| #define JTEST_ACT_GROUP_START() \ | |||
| JTEST_TRIGGER_ACTION(group_start) | |||
| /** | |||
| * Trigger the "Group End" action in the Keil Debugger. | |||
| */ | |||
| #define JTEST_ACT_GROUP_END() \ | |||
| JTEST_TRIGGER_ACTION(group_end) | |||
| /** | |||
| * Fill the buffer named buf_name with value and dump it to the Keil debugger | |||
| * using action. | |||
| */ | |||
| #define JTEST_ACT_DUMP(action, buf_name, value) \ | |||
| do \ | |||
| { \ | |||
| JTEST_CLEAR_BUFFER(buf_name); \ | |||
| strcpy(JTEST_FW.buf_name, (value)); \ | |||
| JTEST_TRIGGER_ACTION(action); \ | |||
| } while (0) | |||
| /** | |||
| * Trigger the "Exit Framework" action in the Keil Debugger. | |||
| */ | |||
| #define JTEST_ACT_EXIT_FW() \ | |||
| do \ | |||
| { \ | |||
| JTEST_TRIGGER_ACTION(exit_fw); \ | |||
| } while (0) | |||
| /* Buffer Manipulation Macros */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Clear the JTEST_FW buffer with name buf_name. | |||
| */ | |||
| #define JTEST_CLEAR_BUFFER(buf_name) \ | |||
| do \ | |||
| { \ | |||
| memset(JTEST_FW.buf_name, 0, JTEST_BUF_SIZE); \ | |||
| } while (0) | |||
| /** | |||
| * Clear the memory needed for the JTEST_FW's string buffer. | |||
| */ | |||
| #define JTEST_CLEAR_STR_BUFFER() \ | |||
| JTEST_CLEAR_BUFFER(str_buffer) | |||
| /** | |||
| * Clear the memory needed for the JTEST_FW's data buffer. | |||
| */ | |||
| #define JTEST_CLEAR_DATA_BUFFER() \ | |||
| JTEST_CLEAR_BUFFER(data_buffer) | |||
| /** | |||
| * Dump the given string to the Keil Debugger. | |||
| */ | |||
| #define JTEST_DUMP_STR(string) \ | |||
| JTEST_ACT_DUMP(dump_str, str_buffer, string) | |||
| /** | |||
| * Dump a formatted string to the Keil Debugger. | |||
| */ | |||
| #define JTEST_DUMP_STRF(format_str, ... ) \ | |||
| do \ | |||
| { \ | |||
| JTEST_CLEAR_STR_BUFFER(); \ | |||
| sprintf(JTEST_FW.str_buffer,format_str, __VA_ARGS__); \ | |||
| jtest_dump_str_segments(); \ | |||
| } while (0) | |||
| /* Pass/Fail Macros */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Increment the number of passed tests in #JTEST_FW. | |||
| */ | |||
| #define JTEST_FW_INC_PASSED(amount) \ | |||
| JTEST_PF_INC_PASSED(&JTEST_FW, amount) | |||
| /** | |||
| * Increment the number of passed tests in #JTEST_FW. | |||
| */ | |||
| #define JTEST_FW_INC_FAILED(amount) \ | |||
| JTEST_PF_INC_FAILED(&JTEST_FW, amount) | |||
| /* Manipulating the Current Group */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Evaluate to the current_group_ptr in #JTEST_FW. | |||
| */ | |||
| #define JTEST_CURRENT_GROUP_PTR() \ | |||
| (JTEST_FW.current_group_ptr) | |||
| #define JTEST_SET_CURRENT_GROUP(group_ptr) \ | |||
| do \ | |||
| { \ | |||
| JTEST_CURRENT_GROUP_PTR() = group_ptr; \ | |||
| } while (0) | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Declare Global Variables */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| extern char JTEST_FW_STR_BUFFER[JTEST_BUF_SIZE]; | |||
| extern volatile JTEST_FW_t JTEST_FW; | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Function Prototypes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| void jtest_dump_str_segments(void); | |||
| void test_start (void); | |||
| void test_end (void); | |||
| void group_start (void); | |||
| void group_end (void); | |||
| void dump_str (void); | |||
| void dump_data (void); | |||
| void exit_fw (void); | |||
| #endif /* _JTEST_FW_H_ */ | |||
| @@ -0,0 +1,66 @@ | |||
| #ifndef _JTEST_GROUP_H_ | |||
| #define _JTEST_GROUP_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "jtest_pf.h" | |||
| #include "jtest_util.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Type Definitions */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * A struct which represents a group of #JTEST_TEST_t structs. This struct is | |||
| * used to run the group of tests, and report on their outcomes. | |||
| */ | |||
| typedef struct JTEST_GROUP_struct | |||
| { | |||
| void (* group_fn_ptr) (void); /**< Pointer to the test group */ | |||
| char * name_str; /**< Name of the group */ | |||
| /* Extend the #JTEST_GROUP_t with Pass/Fail information.*/ | |||
| JTEST_PF_MEMBERS; | |||
| } JTEST_GROUP_t; | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Set the name of JTEST_GROUP_t. | |||
| */ | |||
| #define JTEST_GROUP_SET_NAME(group_ptr, name) \ | |||
| JTEST_SET_STRUCT_ATTRIBUTE(group_ptr, name_str, name) | |||
| #define JTEST_GROUP_SET_FN(group_ptr, fn_ptr) \ | |||
| JTEST_SET_STRUCT_ATTRIBUTE(group_ptr, group_fn_ptr, fn_ptr) | |||
| /** | |||
| * Increment the number of tests passed in the JTEST_GROUP_t pointed to by | |||
| * group_ptr. | |||
| */ | |||
| #define JTEST_GROUP_INC_PASSED(group_ptr, amount) \ | |||
| JTEST_PF_INC_PASSED(group_ptr, amount) | |||
| /** | |||
| * Increment the number of tests failed in the JTEST_GROUP_t pointed to by | |||
| * group_ptr. | |||
| */ | |||
| #define JTEST_GROUP_INC_FAILED(group_ptr, amount) \ | |||
| JTEST_PF_INC_FAILED(group_ptr, amount) | |||
| /** | |||
| * Reset the pass/fail information of the #JTEST_GROUP_t pointed to by | |||
| * group_ptr. | |||
| */ | |||
| #define JTEST_GROUP_RESET_PF(group_ptr) \ | |||
| do \ | |||
| { \ | |||
| JTEST_PF_RESET_PASSED(group_ptr); \ | |||
| JTEST_PF_RESET_FAILED(group_ptr); \ | |||
| } while (0) | |||
| #endif /* _JTEST_GROUP_H_ */ | |||
| @@ -0,0 +1,126 @@ | |||
| #ifndef _JTEST_GROUP_CALL_H_ | |||
| #define _JTEST_GROUP_CALL_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "jtest_fw.h" | |||
| #include <inttypes.h> | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Execute the test in the #JTEST_GROUP_t struct associated witht he identifier | |||
| * group_fn. | |||
| */ | |||
| #define JTEST_GROUP_RUN(group_fn) \ | |||
| do \ | |||
| { \ | |||
| JTEST_DUMP_STR("Group Name:\n"); \ | |||
| JTEST_DUMP_STR(JTEST_GROUP_STRUCT_NAME(group_fn).name_str); \ | |||
| JTEST_GROUP_STRUCT_NAME(group_fn).group_fn_ptr(); \ | |||
| } while (0) | |||
| /** | |||
| * Update the enclosing #JTEST_GROUP_t's pass/fail information using the | |||
| * current #JTEST_GROUP_t's. | |||
| * | |||
| * @param group_ptr Pointer to the current #JTEST_GROUP_t. | |||
| * @param parent_ptr Pointer to the enclosing #JTEST_GROUP_t. | |||
| * | |||
| * @warning Only run this if the current #JTEST_GROUP_t is being called within | |||
| * the context of another #JTEST_GROUP_t. | |||
| */ | |||
| #define JTEST_GROUP_UPDATE_PARENT_GROUP_PF(group_ptr, parent_group_ptr) \ | |||
| do \ | |||
| { \ | |||
| JTEST_GROUP_INC_PASSED(parent_group_ptr, \ | |||
| (group_ptr)->passed); \ | |||
| JTEST_GROUP_INC_FAILED(parent_group_ptr, \ | |||
| (group_ptr)->failed); \ | |||
| } while (0) | |||
| /** | |||
| * Update the #JTEST_FW's pass/fail information using the current | |||
| * #JTEST_GROUP_t's. | |||
| */ | |||
| #define JTEST_GROUP_UPDATE_FW_PF(group_ptr) \ | |||
| do \ | |||
| { \ | |||
| JTEST_FW_INC_PASSED((group_ptr)->passed); \ | |||
| JTEST_FW_INC_FAILED((group_ptr)->failed); \ | |||
| } while (0) | |||
| /** | |||
| * Update the enclosing context with the current #JTEST_GROUP_t's pass/fail | |||
| * information. If this group isn't in an enclosing group, it updates the | |||
| * #JTEST_FW's pass/fail info by default. | |||
| */ | |||
| #define JTEST_GROUP_UPDATE_PARENT_GROUP_OR_FW_PF(group_ptr, \ | |||
| parent_group_ptr) \ | |||
| do \ | |||
| { \ | |||
| /* Update the pass fail counts in the parent group */ \ | |||
| if (parent_group_ptr /* Null implies Top*/) \ | |||
| { \ | |||
| JTEST_GROUP_UPDATE_PARENT_GROUP_PF( \ | |||
| group_ptr, \ | |||
| parent_group_ptr); \ | |||
| } else { \ | |||
| JTEST_GROUP_UPDATE_FW_PF( \ | |||
| group_ptr); \ | |||
| } \ | |||
| } while (0) | |||
| /** | |||
| * Dump the results of running the #JTEST_GROUP_t to the Keil Debugger. | |||
| */ | |||
| #define JTEST_GROUP_DUMP_RESULTS(group_ptr) \ | |||
| do \ | |||
| { \ | |||
| JTEST_DUMP_STRF( \ | |||
| "Tests Run: %" PRIu32 "\n" \ | |||
| "----------\n" \ | |||
| " Passed: %" PRIu32 "\n" \ | |||
| " Failed: %" PRIu32 "\n", \ | |||
| (group_ptr)->passed + (group_ptr)->failed, \ | |||
| (group_ptr)->passed, \ | |||
| (group_ptr)->failed); \ | |||
| } while (0) | |||
| /** | |||
| * Call the #JTEST_GROUP_t associated with the identifier group_fn. | |||
| */ | |||
| #define JTEST_GROUP_CALL(group_fn) \ | |||
| do \ | |||
| { /* Save the current group from JTEST_FW_t before swapping */ \ | |||
| /* it to this group (in order to restore it later )*/ \ | |||
| JTEST_GROUP_t * __jtest_temp_group_ptr = \ | |||
| JTEST_CURRENT_GROUP_PTR(); \ | |||
| JTEST_SET_CURRENT_GROUP(&JTEST_GROUP_STRUCT_NAME(group_fn)); \ | |||
| \ | |||
| /* Reset this group's pass/fail count. Each group */ \ | |||
| /* should only remember counts for its last execution. */ \ | |||
| JTEST_GROUP_RESET_PF(JTEST_CURRENT_GROUP_PTR()); \ | |||
| \ | |||
| /* Run the current group */ \ | |||
| JTEST_ACT_GROUP_START(); \ | |||
| JTEST_GROUP_RUN(group_fn); \ | |||
| JTEST_ACT_GROUP_END(); \ | |||
| \ | |||
| /* Update the pass fail counts in the parent group (or FW) */ \ | |||
| JTEST_GROUP_UPDATE_PARENT_GROUP_OR_FW_PF( \ | |||
| JTEST_CURRENT_GROUP_PTR(), \ | |||
| __jtest_temp_group_ptr); \ | |||
| \ | |||
| JTEST_GROUP_DUMP_RESULTS(JTEST_CURRENT_GROUP_PTR()); \ | |||
| \ | |||
| /* Restore the previously current group */ \ | |||
| JTEST_SET_CURRENT_GROUP(__jtest_temp_group_ptr); \ | |||
| } while (0) | |||
| #endif /* _JTEST_GROUP_CALL_H_ */ | |||
| @@ -0,0 +1,87 @@ | |||
| #ifndef _JTEST_GROUP_DEFINE_H_ | |||
| #define _JTEST_GROUP_DEFINE_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "jtest_util.h" | |||
| #include "jtest_define.h" | |||
| #include "jtest_group.h" | |||
| /* For defining macros with optional arguments */ | |||
| #include "opt_arg/opt_arg.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Prefix for all #JTEST_GROUP_t structs. | |||
| */ | |||
| #define JTEST_GROUP_STRUCT_NAME_PREFIX G_JTEST_GROUP_STRUCT_ | |||
| /** | |||
| * Define test template used by #JTEST_GROUP_t tests. | |||
| */ | |||
| #define JTEST_GROUP_FN_TEMPLATE(group_fn) \ | |||
| void group_fn(void) | |||
| #define JTEST_GROUP_FN_PROTOTYPE JTEST_GROUP_FN_TEMPLATE /**< Alias for | |||
| #JTEST_GROUP_FN_TEMPLATE. */ | |||
| /** | |||
| * Evaluate to the name of the #JTEST_GROUP_t struct associated with group_fn. | |||
| */ | |||
| #define JTEST_GROUP_STRUCT_NAME(group_fn) \ | |||
| JTEST_STRUCT_NAME(JTEST_GROUP_STRUCT_NAME_PREFIX, group_fn) | |||
| /** | |||
| * Define a #JTEST_GROUP_t struct based on the given group_fn. | |||
| */ | |||
| #define JTEST_GROUP_DEFINE_STRUCT(group_fn) \ | |||
| JTEST_DEFINE_STRUCT(JTEST_GROUP_t, \ | |||
| JTEST_GROUP_STRUCT_NAME(group_fn)) | |||
| /** | |||
| * Declare a #JTEST_GROUP_t struct based on the given group_fn. | |||
| */ | |||
| #define JTEST_GROUP_DECLARE_STRUCT(group_fn) \ | |||
| JTEST_DECLARE_STRUCT(JTEST_GROUP_DEFINE_STRUCT(group_fn)) | |||
| /** | |||
| * Contents needed to initialize a JTEST_GROUP_t struct. | |||
| */ | |||
| #define JTEST_GROUP_STRUCT_INIT(group_fn) \ | |||
| group_fn, \ | |||
| STR_NL(group_fn), \ | |||
| JTEST_PF_MEMBER_INIT | |||
| /** | |||
| * Initialize the contents of a #JTEST_GROUP_t struct. | |||
| */ | |||
| #define JTEST_GROUP_INIT(group_fn) \ | |||
| JTEST_GROUP_DEFINE_STRUCT(group_fn) = { \ | |||
| JTEST_GROUP_STRUCT_INIT(group_fn) \ | |||
| } | |||
| /* Test Definition Macro */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Define a #JTEST_GROUP_t object and a test function. | |||
| */ | |||
| #define JTEST_DEFINE_GROUP(group_fn) \ | |||
| JTEST_GROUP_FN_PROTOTYPE(group_fn); \ | |||
| JTEST_GROUP_INIT(group_fn); \ | |||
| JTEST_GROUP_FN_PROTOTYPE(group_fn) /* Notice the lacking semicolon */ | |||
| /** | |||
| * Declare a #JTEST_GROUP_t object and a test function prototype. | |||
| */ | |||
| #define JTEST_DECLARE_GROUP(group_fn) \ | |||
| JTEST_GROUP_FN_PROTOTYPE(group_fn); \ | |||
| JTEST_GROUP_DECLARE_STRUCT(group_fn) /* Note the lacking semicolon */ | |||
| #endif /* _JTEST_GROUP_DEFINE_H_ */ | |||
| @@ -0,0 +1,85 @@ | |||
| #ifndef _JTEST_PF_H_ | |||
| #define _JTEST_PF_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Purpose */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* jtest_pf.h Contains macros useful for capturing pass/fail data. */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Members that can be added to other structs to extend them pass/fail data and | |||
| * corresponding functionality. | |||
| */ | |||
| #define JTEST_PF_MEMBERS \ | |||
| uint32_t passed; \ | |||
| uint32_t failed /* Note the lacking semicolon*/ \ | |||
| /** | |||
| * Used for initializing JTEST_PF_MEMBERS in a struct declaration. | |||
| */ | |||
| #define JTEST_PF_MEMBER_INIT \ | |||
| 0, \ | |||
| 0 | |||
| /* Member-Incrementing Macros */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Dispatch macro for incrementing #JTEST_PF_MEMBERS. | |||
| * | |||
| * @param xxx Values: 'passed', 'failed' | |||
| */ | |||
| #define JTEST_PF_INC_XXX(xxx, struct_pf_ptr, amount) \ | |||
| do \ | |||
| { \ | |||
| ((struct_pf_ptr)->xxx) += (amount); \ | |||
| } while (0) | |||
| /** | |||
| * Specialization of the #JTEST_PF_INC_XXX macro to increment the passed | |||
| * member. | |||
| */ | |||
| #define JTEST_PF_INC_PASSED(struct_pf_ptr, amount) \ | |||
| JTEST_PF_INC_XXX(passed, struct_pf_ptr, amount) | |||
| /** | |||
| * Specialization of the #JTEST_PF_INC_XXX macro to increment the failed | |||
| * member. | |||
| */ | |||
| #define JTEST_PF_INC_FAILED(struct_pf_ptr, amount) \ | |||
| JTEST_PF_INC_XXX(failed, struct_pf_ptr, amount) | |||
| /* Member-Resetting Macros */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Dispatch macro for setting #JTEST_PF_MEMBERS to zero. | |||
| * | |||
| * @param xxx Values: 'passed', 'failed' | |||
| */ | |||
| #define JTEST_PF_RESET_XXX(xxx, struct_pf_ptr) \ | |||
| do \ | |||
| { \ | |||
| ((struct_pf_ptr)->xxx) = UINT32_C(0); \ | |||
| } while (0) | |||
| /** | |||
| * Specialization of #JTEST_PF_RESET_XXX for the 'passed' member. | |||
| */ | |||
| #define JTEST_PF_RESET_PASSED(struct_pf_ptr) \ | |||
| JTEST_PF_RESET_XXX(passed, struct_pf_ptr) | |||
| /** | |||
| * Specialization of #JTEST_PF_RESET_XXX for the 'failed' member. | |||
| */ | |||
| #define JTEST_PF_RESET_FAILED(struct_pf_ptr) \ | |||
| JTEST_PF_RESET_XXX(failed, struct_pf_ptr) | |||
| #endif /* _JTEST_PF_H_ */ | |||
| @@ -0,0 +1,93 @@ | |||
| #ifndef _JTEST_SYSTICK_H_ | |||
| #define _JTEST_SYSTICK_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Get access to the SysTick structure. */ | |||
| #if defined ARMCM0 | |||
| #include "ARMCM0.h" | |||
| #elif defined ARMCM0P | |||
| #include "ARMCM0plus.h" | |||
| #elif defined ARMCM3 | |||
| #include "ARMCM3.h" | |||
| #elif defined ARMCM4 | |||
| #include "ARMCM4.h" | |||
| #elif defined ARMCM4_FP | |||
| #include "ARMCM4_FP.h" | |||
| #elif defined ARMCM7 | |||
| #include "ARMCM7.h" | |||
| #elif defined ARMCM7_SP | |||
| #include "ARMCM7_SP.h" | |||
| #elif defined ARMCM7_DP | |||
| #include "ARMCM7_DP.h" | |||
| #elif defined ARMSC000 | |||
| #include "ARMSC000.h" | |||
| #elif defined ARMSC300 | |||
| #include "ARMSC300.h" | |||
| #elif defined ARMv8MBL | |||
| #include "ARMv8MBL.h" | |||
| #elif defined ARMv8MML | |||
| #include "ARMv8MML.h" | |||
| #elif defined ARMv8MML_DSP | |||
| #include "ARMv8MML_DSP.h" | |||
| #elif defined ARMv8MML_SP | |||
| #include "ARMv8MML_SP.h" | |||
| #elif defined ARMv8MML_DSP_SP | |||
| #include "ARMv8MML_DSP_SP.h" | |||
| #elif defined ARMv8MML_DP | |||
| #include "ARMv8MML_DP.h" | |||
| #elif defined ARMv8MML_DSP_DP | |||
| #include "ARMv8MML_DSP_DP.h" | |||
| #else | |||
| #warning "no appropriate header file found!" | |||
| #endif | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Initial value for the SysTick module. | |||
| * | |||
| * @note This is also the maximum value, important as SysTick is a decrementing | |||
| * counter. | |||
| */ | |||
| #define JTEST_SYSTICK_INITIAL_VALUE 0xFFFFFF | |||
| /** | |||
| * Reset the SysTick, decrementing timer to it's maximum value and disable it. | |||
| * | |||
| * This macro should leave the SysTick timer in a state that's ready for cycle | |||
| * counting. | |||
| */ | |||
| #define JTEST_SYSTICK_RESET(systick_ptr) \ | |||
| do \ | |||
| { \ | |||
| (systick_ptr)->LOAD = JTEST_SYSTICK_INITIAL_VALUE; \ | |||
| (systick_ptr)->VAL = 1; \ | |||
| \ | |||
| /* Disable the SysTick module. */ \ | |||
| (systick_ptr)->CTRL = UINT32_C(0x000000); \ | |||
| } while (0) | |||
| /** | |||
| * Start the SysTick timer, sourced by the processor clock. | |||
| */ | |||
| #define JTEST_SYSTICK_START(systick_ptr) \ | |||
| do \ | |||
| { \ | |||
| (systick_ptr)->CTRL = \ | |||
| SysTick_CTRL_ENABLE_Msk | \ | |||
| SysTick_CTRL_CLKSOURCE_Msk; /* Internal clk*/ \ | |||
| } while (0) | |||
| /** | |||
| * Evaluate to the current value of the SysTick timer. | |||
| */ | |||
| #define JTEST_SYSTICK_VALUE(systick_ptr) \ | |||
| ((systick_ptr)->VAL) | |||
| #endif /* _JTEST_SYSTICK_H_ */ | |||
| @@ -0,0 +1,100 @@ | |||
| #ifndef _JTEST_TEST_H_ | |||
| #define _JTEST_TEST_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include <stdint.h> | |||
| #include "jtest_util.h" | |||
| #include "jtest_test_ret.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Type Definitions */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * A struct which represents a Test in the JTEST framework. This struct is | |||
| * used to enable, run, and describe the test it represents. | |||
| */ | |||
| typedef struct JTEST_TEST_struct | |||
| { | |||
| JTEST_TEST_RET_t ( * test_fn_ptr)(void); /**< Pointer to the test function. */ | |||
| char * test_fn_str; /**< Name of the test function */ | |||
| char * fut_str; /**< Name of the function under test. */ | |||
| /** | |||
| * Flags that govern how the #JTEST_TEST_t behaves. | |||
| */ | |||
| union { | |||
| struct { | |||
| unsigned enabled : 1; | |||
| unsigned unused : 7; | |||
| } bits; | |||
| uint8_t byte; /* Access all flags at once. */ | |||
| } flags; | |||
| } JTEST_TEST_t; | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Assign a test function to the #JTEST_TEST_t struct. | |||
| */ | |||
| #define JTEST_TEST_SET_FN(jtest_test_ptr, fn_ptr) \ | |||
| JTEST_SET_STRUCT_ATTRIBUTE(jtest_test_ptr, test_fn_ptr, fn_ptr) | |||
| /** | |||
| * Specify a function under test (FUT) for the #JTEST_TEST_t struct. | |||
| */ | |||
| #define JTEST_TEST_SET_FUT(jtest_test_ptr, str) \ | |||
| JTEST_SET_STRUCT_ATTRIBUTE(jtest_test_ptr, fut_str, str) | |||
| /* Macros concerning JTEST_TEST_t flags */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #define JTEST_TEST_FLAG_SET 1 /**< Value of a set #JTEST_TEST_t flag. */ | |||
| #define JTEST_TEST_FLAG_CLR 0 /**< Value of a cleared #JTEST_TEST_t flag. */ | |||
| /** | |||
| * Evaluate to the flag in #JTEST_TEST_t having flag_name. | |||
| */ | |||
| #define JTEST_TEST_FLAG(jtest_test_ptr, flag_name) \ | |||
| ((jtest_test_ptr)->flags.bits.flag_name) | |||
| /** | |||
| * Dispatch macro for setting and clearing #JTEST_TEST_t flags. | |||
| * | |||
| * @param jtest_test_ptr Pointer to a #JTEST_TEST_t struct. | |||
| * @param flag_name Name of the flag to set in #JTEST_TEST_t.flags.bits | |||
| * @param xxx Vaid values: "SET" or "CLR" | |||
| * | |||
| * @note This function depends on JTEST_TEST_FLAG_SET and JTEST_TEST_FLAG_CLR. | |||
| */ | |||
| #define JTEST_TEST_XXX_FLAG(jtest_test_ptr, flag_name, xxx) \ | |||
| do \ | |||
| { \ | |||
| JTEST_TEST_FLAG(jtest_test_ptr, flag_name) = JTEST_TEST_FLAG_##xxx ; \ | |||
| } while (0) | |||
| /** | |||
| * Specification of #JTEST_TEST_XXX_FLAG to set #JTEST_TEST_t flags. | |||
| */ | |||
| #define JTEST_TEST_SET_FLAG(jtest_test_ptr, flag_name) \ | |||
| JTEST_TEST_XXX_FLAG(jtest_test_ptr, flag_name, SET) | |||
| /** | |||
| * Specification of #JTEST_TEST_XXX_FLAG to clear #JTEST_TEST_t flags. | |||
| */ | |||
| #define JTEST_TEST_CLR_FLAG(jtest_test_ptr, flag_name) \ | |||
| JTEST_TEST_XXX_FLAG(jtest_test_ptr, flag_name, CLR) | |||
| /** | |||
| * Evaluate to true if the #JTEST_TEST_t is enabled. | |||
| */ | |||
| #define JTEST_TEST_IS_ENABLED(jtest_test_ptr) \ | |||
| (JTEST_TEST_FLAG(jtest_test_ptr, enabled) == JTEST_TEST_FLAG_SET) | |||
| #endif /* _JTEST_TEST_H_ */ | |||
| @@ -0,0 +1,121 @@ | |||
| #ifndef _JTEST_TEST_CALL_H_ | |||
| #define _JTEST_TEST_CALL_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "jtest_test.h" | |||
| #include "jtest_test_define.h" | |||
| #include "jtest_fw.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Exectute the test in the #JTEST_TEST_t struct associated with the identifier | |||
| * test_fn and store the result in retval. | |||
| */ | |||
| #define JTEST_TEST_RUN(retval, test_fn) \ | |||
| do \ | |||
| { \ | |||
| JTEST_DUMP_STR("Test Name:\n"); \ | |||
| JTEST_DUMP_STR(JTEST_TEST_STRUCT_NAME(test_fn).test_fn_str); \ | |||
| JTEST_DUMP_STR("Function Under Test:\n"); \ | |||
| JTEST_DUMP_STR(JTEST_TEST_STRUCT_NAME(test_fn).fut_str); \ | |||
| retval = JTEST_TEST_STRUCT_NAME(test_fn).test_fn_ptr(); \ | |||
| } while (0) | |||
| /** | |||
| * Update the enclosing #JTEST_GROUP_t's pass/fail information based on | |||
| * test_retval. | |||
| * | |||
| * @param test_retval A #JTEST_TEST_RET_enum for the current test. | |||
| * | |||
| * @warning Only use if #JTEST_TEST_t is called in the context of a | |||
| * #JTEST_GROUP_t. | |||
| */ | |||
| #define JTEST_TEST_UPDATE_PARENT_GROUP_PF(test_retval) \ | |||
| do \ | |||
| { \ | |||
| /* Update enclosing JTEST_GROUP_t with pass/fail info */ \ | |||
| if (test_retval == JTEST_TEST_PASSED) \ | |||
| { \ | |||
| JTEST_GROUP_INC_PASSED(JTEST_CURRENT_GROUP_PTR(), 1); \ | |||
| } else { \ | |||
| JTEST_GROUP_INC_FAILED(JTEST_CURRENT_GROUP_PTR(), 1); \ | |||
| } \ | |||
| } while (0) | |||
| /** | |||
| * Update the #JTEST_FW with pass/fail information based on test_retval. | |||
| * | |||
| * @param test_retval A #JTEST_TEST_RET_enum for the current test. | |||
| */ | |||
| #define JTEST_TEST_UPDATE_FW_PF(test_retval) \ | |||
| do \ | |||
| { \ | |||
| /* Update the JTEST_FW with pass/fail info */ \ | |||
| if (test_retval == JTEST_TEST_PASSED) \ | |||
| { \ | |||
| JTEST_FW_INC_PASSED( 1); \ | |||
| } else { \ | |||
| JTEST_FW_INC_FAILED(1); \ | |||
| } \ | |||
| } while (0) | |||
| /** | |||
| * Update the enclosing JTEST_GROUP_t's pass/fail information, or the | |||
| * #JTEST_FW's if this test has no enclosing #JTEST_GROUP_t. | |||
| * | |||
| * @param test_retval A #JTEST_TEST_RET_enum for the current test. | |||
| */ | |||
| #define JTEST_TEST_UPDATE_PARENT_GROUP_OR_FW_PF(test_retval) \ | |||
| do \ | |||
| { \ | |||
| /* Update pass-fail information */ \ | |||
| if (JTEST_CURRENT_GROUP_PTR() /* Non-null */) \ | |||
| { \ | |||
| JTEST_TEST_UPDATE_PARENT_GROUP_PF(test_retval); \ | |||
| } else { \ | |||
| JTEST_TEST_UPDATE_FW_PF(test_retval); \ | |||
| } \ | |||
| } while (0) | |||
| /** | |||
| * Dump the results of the test to the Keil Debugger. | |||
| */ | |||
| #define JTEST_TEST_DUMP_RESULTS(test_retval) \ | |||
| do \ | |||
| { \ | |||
| if (test_retval == JTEST_TEST_PASSED) \ | |||
| { \ | |||
| JTEST_DUMP_STR("Test Passed\n"); \ | |||
| } else { \ | |||
| JTEST_DUMP_STR("Test Failed\n"); \ | |||
| } \ | |||
| } while (0) | |||
| /** | |||
| * Call the #JTEST_TEST_t assocaited with the identifier test_fn. | |||
| */ | |||
| #define JTEST_TEST_CALL(test_fn) \ | |||
| do \ | |||
| { \ | |||
| if (JTEST_TEST_IS_ENABLED(&JTEST_TEST_STRUCT_NAME(test_fn))) \ | |||
| { \ | |||
| /* Default to failure */ \ | |||
| JTEST_TEST_RET_t __jtest_test_ret = JTEST_TEST_FAILED; \ | |||
| \ | |||
| JTEST_ACT_TEST_START(); \ | |||
| JTEST_TEST_RUN(__jtest_test_ret, test_fn); \ | |||
| \ | |||
| /* Update pass-fail information */ \ | |||
| JTEST_TEST_UPDATE_PARENT_GROUP_OR_FW_PF(__jtest_test_ret); \ | |||
| \ | |||
| JTEST_TEST_DUMP_RESULTS(__jtest_test_ret); \ | |||
| JTEST_ACT_TEST_END(); \ | |||
| } \ | |||
| } while (0) | |||
| #endif /* _JTEST_TEST_CALL_H_ */ | |||
| @@ -0,0 +1,133 @@ | |||
| #ifndef _JTEST_TEST_DEFINE_H_ | |||
| #define _JTEST_TEST_DEFINE_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "jtest_util.h" | |||
| #include "jtest_define.h" | |||
| #include "jtest_test.h" | |||
| /* For defining macros with optional arguments */ | |||
| #include "opt_arg/opt_arg.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Prefix for all #JTEST_TEST_t structs. | |||
| */ | |||
| #define JTEST_TEST_STRUCT_NAME_PREFIX G_JTEST_TEST_STRUCT_ | |||
| /** | |||
| * Define test template used by #JTEST_TEST_t tests. | |||
| */ | |||
| #define JTEST_TEST_FN_TEMPLATE(test_fn) \ | |||
| JTEST_TEST_RET_t test_fn(void) | |||
| #define JTEST_TEST_FN_PROTOTYPE JTEST_TEST_FN_TEMPLATE /**< Alias for | |||
| * #JTEST_TEST_FN_TEMPLATE. */ | |||
| /** | |||
| * Evaluate to the name of the #JTEST_TEST_t struct associated with test_fn. | |||
| */ | |||
| #define JTEST_TEST_STRUCT_NAME(test_fn) \ | |||
| JTEST_STRUCT_NAME(JTEST_TEST_STRUCT_NAME_PREFIX, test_fn) | |||
| /** | |||
| * Define a #JTEST_TEST_t struct based on the given test_fn. | |||
| */ | |||
| #define JTEST_TEST_DEFINE_STRUCT(test_fn) \ | |||
| JTEST_DEFINE_STRUCT(JTEST_TEST_t, \ | |||
| JTEST_TEST_STRUCT_NAME(test_fn)) | |||
| /** | |||
| * Declare a #JTEST_TEST_t struct based on the given test_fn. | |||
| */ | |||
| #define JTEST_TEST_DECLARE_STRUCT(test_fn) \ | |||
| JTEST_DECLARE_STRUCT(JTEST_TEST_DEFINE_STRUCT(test_fn)) | |||
| /** | |||
| * Contents needed to initialize a JTEST_TEST_t struct. | |||
| */ | |||
| #define JTEST_TEST_STRUCT_INIT(test_fn, fut, enable) \ | |||
| test_fn, \ | |||
| STR_NL(test_fn), \ | |||
| STR_NL(fut), \ | |||
| { \ | |||
| { \ | |||
| enable, \ | |||
| 0 \ | |||
| } \ | |||
| } \ | |||
| /** | |||
| * Initialize the contents of a #JTEST_TEST_t struct. | |||
| */ | |||
| #define JTEST_TEST_INIT(test_fn, fut, enable) \ | |||
| JTEST_TEST_DEFINE_STRUCT(test_fn) = { \ | |||
| JTEST_TEST_STRUCT_INIT(test_fn, fut, enable) \ | |||
| } | |||
| /* Test Definition Macro */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Define a #JTEST_TEST_t object and a test function. | |||
| */ | |||
| #define _JTEST_DEFINE_TEST(test_fn, fut, enable) \ | |||
| JTEST_TEST_FN_PROTOTYPE(test_fn); \ | |||
| JTEST_TEST_INIT(test_fn, fut, enable); \ | |||
| JTEST_TEST_FN_PROTOTYPE(test_fn) /* Notice the lacking semicolon */ | |||
| /** | |||
| * Declare a #JTEST_TEST_t object and a test function prototype. | |||
| */ | |||
| #define JTEST_DECLARE_TEST(test_fn) \ | |||
| JTEST_TEST_FN_PROTOTYPE(test_fn); \ | |||
| JTEST_TEST_DECLARE_STRUCT(test_fn) /* Note the lacking semicolon */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros with optional arguments */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Top-level Interface */ | |||
| #define JTEST_DEFINE_TEST(...) \ | |||
| JTEST_DEFINE_TEST_(PP_NARG(__VA_ARGS__), ##__VA_ARGS__) | |||
| /* Dispatch Macro*/ | |||
| #define JTEST_DEFINE_TEST_(N, ...) \ | |||
| SPLICE(JTEST_DEFINE_TEST_, N)(__VA_ARGS__) | |||
| /* Default Arguments */ | |||
| #define JTEST_DEFINE_TEST_DEFAULT_FUT /* Blank */ | |||
| #define JTEST_DEFINE_TEST_DEFAULT_ENABLE \ | |||
| JTEST_TRUE /* Tests enabled by | |||
| * default. */ | |||
| /* Dispatch Cases*/ | |||
| #define JTEST_DEFINE_TEST_1(_1) \ | |||
| _JTEST_DEFINE_TEST( \ | |||
| _1, \ | |||
| JTEST_DEFINE_TEST_DEFAULT_FUT, \ | |||
| JTEST_DEFINE_TEST_DEFAULT_ENABLE \ | |||
| ) | |||
| #define JTEST_DEFINE_TEST_2(_1, _2) \ | |||
| _JTEST_DEFINE_TEST( \ | |||
| _1, \ | |||
| _2, \ | |||
| JTEST_DEFINE_TEST_DEFAULT_ENABLE \ | |||
| ) | |||
| #define JTEST_DEFINE_TEST_3(_1, _2, _3) \ | |||
| _JTEST_DEFINE_TEST( \ | |||
| _1, \ | |||
| _2, \ | |||
| _3 \ | |||
| ) | |||
| #endif /* _JTEST_TEST_DEFINE_H_ */ | |||
| @@ -0,0 +1,17 @@ | |||
| #ifndef _JTEST_TEST_RET_H_ | |||
| #define _JTEST_TEST_RET_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Type Definitions */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Values a #JTEST_TEST_t can return. | |||
| */ | |||
| typedef enum JTEST_TEST_RET_enum | |||
| { | |||
| JTEST_TEST_PASSED, | |||
| JTEST_TEST_FAILED | |||
| } JTEST_TEST_RET_t; | |||
| #endif /* _JTEST_TEST_RET_H_ */ | |||
| @@ -0,0 +1,27 @@ | |||
| #ifndef _JTEST_UTIL_H_ | |||
| #define _JTEST_UTIL_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "util/util.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Define boolean values for the framework. */ | |||
| #define JTEST_TRUE 1 /**< Value used for TRUE in JTEST. */ | |||
| #define JTEST_FALSE 0 /**< Value used for FALSE in JTEST. */ | |||
| /** | |||
| * Set the value of the attribute in the struct to by struct_ptr to value. | |||
| */ | |||
| #define JTEST_SET_STRUCT_ATTRIBUTE(struct_ptr, attribute, value) \ | |||
| do \ | |||
| { \ | |||
| (struct_ptr)->attribute = (value); \ | |||
| } while (0) | |||
| #endif /* _JTEST_UTIL_H_ */ | |||
| @@ -0,0 +1,15 @@ | |||
| #ifndef _OPT_ARG_H_ | |||
| #define _OPT_ARG_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "pp_narg.h" | |||
| #include "splice.h" | |||
| /* If you are Joseph Jaoudi, you have a snippet which expands into an | |||
| example. If you are not Joseph, but possess his code, study the examples. If | |||
| you have no examples, turn back contact Joseph. */ | |||
| #endif /* _OPT_ARG_H_ */ | |||
| @@ -0,0 +1,25 @@ | |||
| #ifndef _PP_NARG_H_ | |||
| #define _PP_NARG_H_ | |||
| #define PP_NARG(...) \ | |||
| PP_NARG_(__VA_ARGS__,PP_RSEQ_N()) | |||
| #define PP_NARG_(...) \ | |||
| PP_ARG_N(__VA_ARGS__) | |||
| #define PP_ARG_N( \ | |||
| _1, _2, _3, _4, _5, _6, _7, _8, _9,_10, \ | |||
| _11,_12,_13,_14,_15,_16,_17,_18,_19,_20, \ | |||
| _21,_22,_23,_24,_25,_26,_27,_28,_29,_30, \ | |||
| _31,_32,_33,_34,_35,_36,_37,_38,_39,_40, \ | |||
| _41,_42,_43,_44,_45,_46,_47,_48,_49,_50, \ | |||
| _51,_52,_53,_54,_55,_56,_57,_58,_59,_60, \ | |||
| _61,_62,_63,N,...) N | |||
| #define PP_RSEQ_N() \ | |||
| 63,62,61,60, \ | |||
| 59,58,57,56,55,54,53,52,51,50, \ | |||
| 49,48,47,46,45,44,43,42,41,40, \ | |||
| 39,38,37,36,35,34,33,32,31,30, \ | |||
| 29,28,27,26,25,24,23,22,21,20, \ | |||
| 19,18,17,16,15,14,13,12,11,10, \ | |||
| 9,8,7,6,5,4,3,2,1,0 | |||
| #endif /* _PP_NARG_H_ */ | |||
| @@ -0,0 +1,8 @@ | |||
| #ifndef _SPLICE_H_ | |||
| #define _SPLICE_H_ | |||
| #define SPLICE(a,b) SPLICE_1(a,b) | |||
| #define SPLICE_1(a,b) SPLICE_2(a,b) | |||
| #define SPLICE_2(a,b) a##b | |||
| #endif /* _SPLICE_H_ */ | |||
| @@ -0,0 +1,52 @@ | |||
| #ifndef _UTIL_H_ | |||
| #define _UTIL_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Convert a symbol to a string and add a 'NewLine'. | |||
| */ | |||
| #define STR_NL(x) STR1_NL(x) | |||
| #define STR1_NL(x) (STR2_NL(x)"\n") | |||
| #define STR2_NL(x) #x | |||
| /** | |||
| * Convert a symbol to a string. | |||
| */ | |||
| #define STR(x) STR1(x) | |||
| #define STR1(x) STR2(x) | |||
| #define STR2(x) #x | |||
| /** | |||
| * Concatenate two symbols. | |||
| */ | |||
| #define CONCAT(a, b) CONCAT1(a, b) | |||
| #define CONCAT1(a, b) CONCAT2(a, b) | |||
| #define CONCAT2(a, b) a##b | |||
| /** | |||
| * Place curly braces around a varaible number of macro arguments. | |||
| */ | |||
| #define CURLY(...) {__VA_ARGS__} | |||
| /** | |||
| * Place parenthesis around a variable number of macro arguments. | |||
| */ | |||
| #define PAREN(...) (__VA_ARGS__) | |||
| /* Standard min/max macros. */ | |||
| #define MIN(x,y) (((x) < (y)) ? (x) : (y) ) | |||
| #define MAX(x,y) (((x) > (y)) ? (x) : (y) ) | |||
| /** | |||
| * Bound value using low and high limits. | |||
| * | |||
| * Evaluate to a number in the range, endpoint inclusive. | |||
| */ | |||
| #define BOUND(low, high, value) \ | |||
| MAX(MIN(high, value), low) | |||
| #endif /* _UTIL_H_ */ | |||
| @@ -0,0 +1,9 @@ | |||
| #include "../inc/jtest_cycle.h" | |||
| #include <inttypes.h> | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Define Module Variables */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* const char * JTEST_CYCLE_STRF = "Running: %s\nCycles: %" PRIu32 "\n"; */ | |||
| const char * JTEST_CYCLE_STRF = "Cycles: %" PRIu32 "\n"; /* function name + parameter string skipped */ | |||
| @@ -0,0 +1,36 @@ | |||
| #include "jtest_fw.h" | |||
| /** | |||
| * Dump the JTEST_FW.str_buffer the Keil framework in pieces. | |||
| * | |||
| * The JTEST_FW.str_buffer contains more characters than the Keil framework can | |||
| * dump at once. This function dumps them in blocks. | |||
| */ | |||
| void jtest_dump_str_segments(void) | |||
| { | |||
| uint32_t seg_idx = 0; | |||
| uint32_t memmove_idx = 0; | |||
| uint32_t seg_cnt = | |||
| (strlen(JTEST_FW.str_buffer) / JTEST_STR_MAX_OUTPUT_SIZE) + 1; | |||
| for( seg_idx = 0; seg_idx < seg_cnt; ++seg_idx) | |||
| { | |||
| JTEST_TRIGGER_ACTION(dump_str); | |||
| if (seg_idx < JTEST_STR_MAX_OUTPUT_SEGMENTS) | |||
| { | |||
| memmove_idx = 0; | |||
| while (memmove_idx < (seg_cnt - seg_idx -1) ) | |||
| { | |||
| memmove( | |||
| JTEST_FW.str_buffer+ | |||
| (memmove_idx* JTEST_STR_MAX_OUTPUT_SIZE), | |||
| JTEST_FW.str_buffer+ | |||
| ((memmove_idx+1)*JTEST_STR_MAX_OUTPUT_SIZE), | |||
| JTEST_BUF_SIZE); | |||
| ++memmove_idx; | |||
| } | |||
| } | |||
| } | |||
| return; | |||
| } | |||
| @@ -0,0 +1,9 @@ | |||
| #include "../inc/jtest.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Define Global Variables */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| char JTEST_FW_STR_BUFFER[JTEST_BUF_SIZE] = {0}; | |||
| volatile JTEST_FW_t JTEST_FW = {0}; | |||
| @@ -0,0 +1,37 @@ | |||
| #include "jtest_fw.h" | |||
| void test_start (void) { | |||
| // ; | |||
| JTEST_FW.test_start++; | |||
| } | |||
| void test_end (void) { | |||
| // ; | |||
| JTEST_FW.test_end++; | |||
| } | |||
| void group_start (void) { | |||
| // ; | |||
| JTEST_FW.group_start++; | |||
| } | |||
| void group_end (void) { | |||
| // ; | |||
| JTEST_FW.group_end++; | |||
| } | |||
| void dump_str (void) { | |||
| // ; | |||
| JTEST_FW.dump_str++; | |||
| } | |||
| void dump_data (void) { | |||
| // ; | |||
| JTEST_FW.dump_data++; | |||
| } | |||
| void exit_fw (void) { | |||
| // ; | |||
| JTEST_FW.exit_fw++; | |||
| } | |||
| @@ -0,0 +1,9 @@ | |||
| #ifndef _ALL_TESTS_H_ | |||
| #define _ALL_TESTS_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Declare Test Groups */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| JTEST_DECLARE_GROUP(all_tests); | |||
| #endif /* _ALL_TESTS_H_ */ | |||
| @@ -0,0 +1,267 @@ | |||
| #ifndef _BASIC_MATH_TEMPLATES_H_ | |||
| #define _BASIC_MATH_TEMPLATES_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "test_templates.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Group Specific Templates */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Compare the outputs used by basic math tests for the function under test and | |||
| * the reference function. | |||
| */ | |||
| #define BASIC_MATH_COMPARE_INTERFACE(block_size, output_type) \ | |||
| TEST_ASSERT_BUFFERS_EQUAL( \ | |||
| basic_math_output_ref.data_ptr, \ | |||
| basic_math_output_fut.data_ptr, \ | |||
| block_size * sizeof(output_type)) | |||
| /* | |||
| * Comparison SNR thresholds for the data types used in basic_math_tests. | |||
| */ | |||
| #define BASIC_MATH_SNR_THRESHOLD_float32_t 120 | |||
| #define BASIC_MATH_SNR_THRESHOLD_q31_t 100 | |||
| #define BASIC_MATH_SNR_THRESHOLD_q15_t 75 | |||
| #define BASIC_MATH_SNR_THRESHOLD_q7_t 25 | |||
| /** | |||
| * Compare reference and fut outputs using SNR. | |||
| * | |||
| * @note The outputs are converted to float32_t before comparison. | |||
| */ | |||
| #define BASIC_MATH_SNR_COMPARE_INTERFACE(block_size, output_type) \ | |||
| do \ | |||
| { \ | |||
| TEST_CONVERT_AND_ASSERT_SNR( \ | |||
| basic_math_output_f32_ref, \ | |||
| basic_math_output_ref.data_ptr, \ | |||
| basic_math_output_f32_fut, \ | |||
| basic_math_output_fut.data_ptr, \ | |||
| block_size, \ | |||
| output_type, \ | |||
| BASIC_MATH_SNR_THRESHOLD_##output_type \ | |||
| ); \ | |||
| } while (0) | |||
| /** | |||
| * Compare reference and fut outputs using SNR. | |||
| * | |||
| * @note The outputs are converted to float32_t before comparison. | |||
| */ | |||
| #define BASIC_MATH_SNR_ELT1_COMPARE_INTERFACE(block_size, output_type) \ | |||
| do \ | |||
| { \ | |||
| TEST_CONVERT_AND_ASSERT_SNR( \ | |||
| basic_math_output_f32_ref, \ | |||
| basic_math_output_ref.data_ptr, \ | |||
| basic_math_output_f32_fut, \ | |||
| basic_math_output_fut.data_ptr, \ | |||
| 1, \ | |||
| output_type, \ | |||
| BASIC_MATH_SNR_THRESHOLD_##output_type \ | |||
| ); \ | |||
| } while (0) | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Input Interfaces */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* | |||
| * General: | |||
| * Input interfaces provide inputs to functions inside test templates. They | |||
| * ONLY provide the inputs. The output variables should be hard coded. | |||
| * | |||
| * The input interfaces must have the following format: | |||
| * | |||
| * ARM_xxx_INPUT_INTERFACE() or | |||
| * REF_xxx_INPUT_INTERFACE() | |||
| * | |||
| * The xxx must be lowercase, and is intended to be the indentifying substring | |||
| * in the function's name. Acceptable values are 'sub' or 'add' from the | |||
| * functions arm_add_q31. | |||
| */ | |||
| #define ARM_abs_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, basic_math_output_fut.data_ptr, block_size) | |||
| #define REF_abs_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, basic_math_output_ref.data_ptr, block_size) | |||
| #define ARM_add_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, basic_math_output_fut.data_ptr, block_size) \ | |||
| #define REF_add_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, basic_math_output_ref.data_ptr, block_size) \ | |||
| #define ARM_dot_prod_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, block_size, basic_math_output_fut.data_ptr) \ | |||
| #define REF_dot_prod_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, block_size, basic_math_output_ref.data_ptr) \ | |||
| #define ARM_mult_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, basic_math_output_fut.data_ptr, block_size) \ | |||
| #define REF_mult_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, basic_math_output_ref.data_ptr, block_size) \ | |||
| #define ARM_negate_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, basic_math_output_fut.data_ptr, block_size) | |||
| #define REF_negate_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, basic_math_output_ref.data_ptr, block_size) | |||
| #define ARM_offset_INPUT_INTERFACE(input, elt, block_size) \ | |||
| PAREN(input, elt, basic_math_output_fut.data_ptr, block_size) \ | |||
| #define REF_offset_INPUT_INTERFACE(input, elt, block_size) \ | |||
| PAREN(input, elt, basic_math_output_ref.data_ptr, block_size) \ | |||
| #define ARM_shift_INPUT_INTERFACE(input, elt, block_size) \ | |||
| PAREN(input, elt, basic_math_output_fut.data_ptr, block_size) \ | |||
| #define REF_shift_INPUT_INTERFACE(input, elt, block_size) \ | |||
| PAREN(input, elt, basic_math_output_ref.data_ptr, block_size) \ | |||
| #define ARM_scale_float_INPUT_INTERFACE(input, elt, block_size) \ | |||
| PAREN(input, elt, basic_math_output_fut.data_ptr, block_size) \ | |||
| #define REF_scale_float_INPUT_INTERFACE(input, elt, block_size) \ | |||
| PAREN(input, elt, basic_math_output_ref.data_ptr, block_size) \ | |||
| /* These two are for the fixed point functions */ | |||
| #define ARM_scale_INPUT_INTERFACE(input, elt1, elt2, block_size) \ | |||
| PAREN(input, elt1, elt2, basic_math_output_fut.data_ptr, block_size) \ | |||
| #define REF_scale_INPUT_INTERFACE(input, elt1, elt2, block_size) \ | |||
| PAREN(input, elt1, elt2, basic_math_output_ref.data_ptr, block_size) \ | |||
| #define ARM_sub_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, basic_math_output_fut.data_ptr, block_size) \ | |||
| #define REF_sub_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, basic_math_output_ref.data_ptr, block_size) \ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Test Templates */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Specialization of #TEST_TEMPLATE_BUF1_BLK() for basic math tests. | |||
| * | |||
| * @note This macro relies on the existance of ARM_xxx_INPUT_INTERFACE and | |||
| * REF_xxx_INPUT_INTERFACEs. | |||
| */ | |||
| #define BASIC_MATH_DEFINE_TEST_TEMPLATE_BUF1_BLK(fn_name, \ | |||
| suffix, \ | |||
| input_type, \ | |||
| output_type) \ | |||
| JTEST_DEFINE_TEST(arm_##fn_name##_##suffix##_test, \ | |||
| arm_##fn_name##_##suffix) \ | |||
| { \ | |||
| TEST_TEMPLATE_BUF1_BLK( \ | |||
| basic_math_f_all, \ | |||
| basic_math_block_sizes, \ | |||
| input_type, \ | |||
| output_type, \ | |||
| arm_##fn_name##_##suffix, \ | |||
| ARM_##fn_name##_INPUT_INTERFACE, \ | |||
| ref_##fn_name##_##suffix, \ | |||
| REF_##fn_name##_INPUT_INTERFACE, \ | |||
| BASIC_MATH_COMPARE_INTERFACE); \ | |||
| } | |||
| /** | |||
| * Specialization of #TEST_TEMPLATE_BUF2_BLK() for basic math tests. | |||
| * | |||
| * @note This macro relies on the existance of ARM_xxx_INPUT_INTERFACE and | |||
| * REF_xxx_INPUT_INTERFACEs. | |||
| */ | |||
| #define BASIC_MATH_DEFINE_TEST_TEMPLATE_BUF2_BLK(fn_name, \ | |||
| suffix, \ | |||
| input_type, \ | |||
| output_type, \ | |||
| comparison_interface) \ | |||
| JTEST_DEFINE_TEST(arm_##fn_name##_##suffix##_test, \ | |||
| arm_##fn_name##_##suffix) \ | |||
| { \ | |||
| TEST_TEMPLATE_BUF2_BLK( \ | |||
| basic_math_f_all, \ | |||
| basic_math_f_all, \ | |||
| basic_math_block_sizes, \ | |||
| input_type, \ | |||
| output_type, \ | |||
| arm_##fn_name##_##suffix, \ | |||
| ARM_##fn_name##_INPUT_INTERFACE, \ | |||
| ref_##fn_name##_##suffix, \ | |||
| REF_##fn_name##_INPUT_INTERFACE, \ | |||
| comparison_interface); \ | |||
| } | |||
| /** | |||
| * Specialization of #TEST_TEMPLATE_BUF1_ELT1_BLK() for basic math tests. | |||
| * | |||
| * @note This macro relies on the existance of ARM_xxx_INPUT_INTERFACE and | |||
| * REF_xxx_INPUT_INTERFACEs. | |||
| */ | |||
| #define BASIC_MATH_DEFINE_TEST_TEMPLATE_BUF1_ELT1_BLK(fn_name, \ | |||
| suffix, \ | |||
| input_type, \ | |||
| elt_type, \ | |||
| output_type) \ | |||
| JTEST_DEFINE_TEST(arm_##fn_name##_##suffix##_test, \ | |||
| arm_##fn_name##_##suffix) \ | |||
| { \ | |||
| TEST_TEMPLATE_BUF1_ELT1_BLK( \ | |||
| basic_math_f_all, \ | |||
| basic_math_elts, \ | |||
| basic_math_block_sizes, \ | |||
| input_type, \ | |||
| elt_type, \ | |||
| output_type, \ | |||
| arm_##fn_name##_##suffix, \ | |||
| ARM_##fn_name##_INPUT_INTERFACE, \ | |||
| ref_##fn_name##_##suffix, \ | |||
| REF_##fn_name##_INPUT_INTERFACE, \ | |||
| BASIC_MATH_COMPARE_INTERFACE); \ | |||
| } | |||
| /** | |||
| * Specialization of #TEST_TEMPLATE_BUF1_ELT2_BLK() for basic math tests. | |||
| * | |||
| * @note This macro relies on the existance of ARM_xxx_INPUT_INTERFACE and | |||
| * REF_xxx_INPUT_INTERFACEs. | |||
| */ | |||
| #define BASIC_MATH_DEFINE_TEST_TEMPLATE_BUF1_ELT2_BLK(fn_name, \ | |||
| suffix, \ | |||
| input_type, \ | |||
| elt1_type, \ | |||
| elt2_type, \ | |||
| output_type) \ | |||
| JTEST_DEFINE_TEST(arm_##fn_name##_##suffix##_test, \ | |||
| arm_##fn_name##_##suffix) \ | |||
| { \ | |||
| TEST_TEMPLATE_BUF1_ELT2_BLK( \ | |||
| basic_math_f_all, \ | |||
| basic_math_elts, \ | |||
| basic_math_elts2, \ | |||
| basic_math_block_sizes, \ | |||
| input_type, \ | |||
| elt1_type, \ | |||
| elt2_type, \ | |||
| output_type, \ | |||
| arm_##fn_name##_##suffix, \ | |||
| ARM_##fn_name##_INPUT_INTERFACE, \ | |||
| ref_##fn_name##_##suffix, \ | |||
| REF_##fn_name##_INPUT_INTERFACE, \ | |||
| BASIC_MATH_COMPARE_INTERFACE); \ | |||
| } | |||
| #endif /* _BASIC_MATH_TEMPLATES_H_ */ | |||
| @@ -0,0 +1,46 @@ | |||
| #ifndef ARM_BASIC_MATH_TEST_DATA_H | |||
| #define ARM_BASIC_MATH_TEST_DATA_H | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "arr_desc.h" | |||
| #include "arm_math.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #define BASIC_MATH_MAX_INPUT_ELEMENTS 32 | |||
| #define BASIC_MATH_BIGGEST_INPUT_TYPE float32_t | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Declare Variables */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Input/Output Buffers */ | |||
| ARR_DESC_DECLARE(basic_math_output_fut); | |||
| ARR_DESC_DECLARE(basic_math_output_ref); | |||
| extern BASIC_MATH_BIGGEST_INPUT_TYPE | |||
| basic_math_output_f32_ref[BASIC_MATH_MAX_INPUT_ELEMENTS]; | |||
| extern BASIC_MATH_BIGGEST_INPUT_TYPE | |||
| basic_math_output_f32_fut[BASIC_MATH_MAX_INPUT_ELEMENTS]; | |||
| /* Block Sizes*/ | |||
| ARR_DESC_DECLARE(basic_math_block_sizes); | |||
| /* Numbers */ | |||
| ARR_DESC_DECLARE(basic_math_elts); | |||
| ARR_DESC_DECLARE(basic_math_elts2); | |||
| ARR_DESC_DECLARE(basic_math_eltsf); | |||
| /* Float Inputs */ | |||
| ARR_DESC_DECLARE(basic_math_zeros); | |||
| ARR_DESC_DECLARE(basic_math_f_2); | |||
| ARR_DESC_DECLARE(basic_math_f_15); | |||
| ARR_DESC_DECLARE(basic_math_f_32); | |||
| ARR_DESC_DECLARE(basic_math_f_all); | |||
| #endif | |||
| @@ -0,0 +1,9 @@ | |||
| #ifndef _BASIC_MATH_TEST_GROUP_H_ | |||
| #define _BASIC_MATH_TEST_GROUP_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Declare Test Groups */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| JTEST_DECLARE_GROUP(basic_math_tests); | |||
| #endif /* _BASIC_MATH_TEST_GROUP_H_ */ | |||
| @@ -0,0 +1,17 @@ | |||
| #ifndef _BASIC_MATH_TESTS_H_ | |||
| #define _BASIC_MATH_TESTS_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Test/Group Declarations */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| JTEST_DECLARE_GROUP(abs_tests); | |||
| JTEST_DECLARE_GROUP(add_tests); | |||
| JTEST_DECLARE_GROUP(dot_prod_tests); | |||
| JTEST_DECLARE_GROUP(mult_tests); | |||
| JTEST_DECLARE_GROUP(negate_tests); | |||
| JTEST_DECLARE_GROUP(offset_tests); | |||
| JTEST_DECLARE_GROUP(scale_tests); | |||
| JTEST_DECLARE_GROUP(shift_tests); | |||
| JTEST_DECLARE_GROUP(sub_tests); | |||
| #endif /* _BASIC_MATH_TESTS_H_ */ | |||
| @@ -0,0 +1,222 @@ | |||
| #ifndef _COMPLEX_MATH_TEMPLATES_H_ | |||
| #define _COMPLEX_MATH_TEMPLATES_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "test_templates.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Group Specific Templates */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Compare the real outputs from the function under test and the reference | |||
| * function. | |||
| */ | |||
| #define COMPLEX_MATH_COMPARE_RE_INTERFACE(block_size, output_type) \ | |||
| TEST_ASSERT_BUFFERS_EQUAL( \ | |||
| complex_math_output_ref_a.data_ptr, \ | |||
| complex_math_output_fut_a.data_ptr, \ | |||
| block_size * sizeof(output_type)) | |||
| /** | |||
| * Compare the real and imaginary outputs from the function under test and the | |||
| * reference function. | |||
| */ | |||
| #define COMPLEX_MATH_COMPARE_CMPLX_INTERFACE(block_size, output_type) \ | |||
| do \ | |||
| { \ | |||
| COMPLEX_MATH_COMPARE_RE_INTERFACE(block_size * 2, output_type); \ | |||
| } while (0) | |||
| /* | |||
| * Comparison SNR thresholds for the data types used in complex_math_tests. | |||
| */ | |||
| #define COMPLEX_MATH_SNR_THRESHOLD_float32_t 120 | |||
| #define COMPLEX_MATH_SNR_THRESHOLD_q31_t 100 | |||
| #define COMPLEX_MATH_SNR_THRESHOLD_q15_t 75 | |||
| /** | |||
| * Compare reference and fut outputs using SNR. | |||
| * | |||
| * The output_suffix specifies which output buffers to use for the | |||
| * comparison. An output_suffix of 'a' expands to the following buffers: | |||
| * | |||
| * - complex_math_output_f32_ref_a | |||
| * - complex_math_output_f32_fut_a | |||
| * - complex_math_output_ref_a | |||
| * - complex_math_output_fut_a | |||
| * | |||
| * @note The outputs are converted to float32_t before comparison. | |||
| */ | |||
| #define COMPLEX_MATH_SNR_COMPARE_OUT_INTERFACE(block_size, \ | |||
| output_type, \ | |||
| output_suffix) \ | |||
| do \ | |||
| { \ | |||
| TEST_CONVERT_AND_ASSERT_SNR( \ | |||
| complex_math_output_f32_ref_##output_suffix, \ | |||
| complex_math_output_ref_##output_suffix.data_ptr, \ | |||
| complex_math_output_f32_fut_##output_suffix, \ | |||
| complex_math_output_fut_##output_suffix.data_ptr, \ | |||
| block_size, \ | |||
| output_type, \ | |||
| COMPLEX_MATH_SNR_THRESHOLD_##output_type \ | |||
| ); \ | |||
| } while (0) | |||
| /** | |||
| * Specification of #COMPLEX_MATH_SNR_COMPARE_INTERFACE() for real outputs. | |||
| */ | |||
| #define COMPLEX_MATH_SNR_COMPARE_RE_INTERFACE(block_size, \ | |||
| output_type) \ | |||
| COMPLEX_MATH_SNR_COMPARE_OUT_INTERFACE(block_size, \ | |||
| output_type, \ | |||
| a) | |||
| /** | |||
| * Specification of #COMPLEX_MATH_SNR_COMPARE_INTERFACE() for complex outputs. | |||
| */ | |||
| #define COMPLEX_MATH_SNR_COMPARE_CMPLX_INTERFACE(block_size, \ | |||
| output_type) \ | |||
| COMPLEX_MATH_SNR_COMPARE_OUT_INTERFACE(block_size * 2, \ | |||
| output_type, \ | |||
| a) | |||
| /** | |||
| * Compare reference and fut split outputs using SNR. | |||
| * | |||
| * 'Split' refers to two separate output buffers; one for real and one for | |||
| * complex. | |||
| */ | |||
| #define COMPLEX_MATH_SNR_COMPARE_SPLIT_INTERFACE(block_size, \ | |||
| output_type) \ | |||
| do \ | |||
| { \ | |||
| COMPLEX_MATH_SNR_COMPARE_OUT_INTERFACE(block_size, \ | |||
| output_type, \ | |||
| a); \ | |||
| COMPLEX_MATH_SNR_COMPARE_OUT_INTERFACE(block_size, \ | |||
| output_type, \ | |||
| b); \ | |||
| } while (0) | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Input Interfaces */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* | |||
| * General: | |||
| * Input interfaces provide inputs to functions inside test templates. They | |||
| * ONLY provide the inputs. The output variables should be hard coded. | |||
| * | |||
| * The input interfaces must have the following format: | |||
| * | |||
| * ARM_xxx_INPUT_INTERFACE() or | |||
| * REF_xxx_INPUT_INTERFACE() | |||
| * | |||
| * The xxx must be lowercase, and is intended to be the indentifying substring | |||
| * in the function's name. Acceptable values are 'sub' or 'add' from the | |||
| * functions arm_add_q31. | |||
| */ | |||
| #define ARM_cmplx_conj_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, complex_math_output_fut_a.data_ptr, block_size) | |||
| #define REF_cmplx_conj_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, complex_math_output_ref_a.data_ptr, block_size) | |||
| #define ARM_cmplx_dot_prod_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, block_size, \ | |||
| complex_math_output_fut_a.data_ptr, \ | |||
| complex_math_output_fut_b.data_ptr) | |||
| #define REF_cmplx_dot_prod_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, block_size, \ | |||
| complex_math_output_ref_a.data_ptr, \ | |||
| complex_math_output_ref_b.data_ptr) | |||
| #define ARM_cmplx_mag_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, complex_math_output_fut_a.data_ptr, block_size) | |||
| #define REF_cmplx_mag_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, complex_math_output_ref_a.data_ptr, block_size) | |||
| #define ARM_cmplx_mag_squared_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, complex_math_output_fut_a.data_ptr, block_size) | |||
| #define REF_cmplx_mag_squared_INPUT_INTERFACE(input, block_size) \ | |||
| PAREN(input, complex_math_output_ref_a.data_ptr, block_size) | |||
| #define ARM_cmplx_mult_cmplx_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, complex_math_output_fut_a.data_ptr, block_size) | |||
| #define REF_cmplx_mult_cmplx_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, complex_math_output_ref_a.data_ptr, block_size) | |||
| #define ARM_cmplx_mult_real_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, complex_math_output_fut_a.data_ptr, block_size) | |||
| #define REF_cmplx_mult_real_INPUT_INTERFACE(input_a, input_b, block_size) \ | |||
| PAREN(input_a, input_b, complex_math_output_ref_a.data_ptr, block_size) | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Test Templates */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Specialization of #TEST_TEMPLATE_BUF1_BLK() for complex math tests. | |||
| * | |||
| * @note This macro relies on the existance of ARM_xxx_INPUT_INTERFACE and | |||
| * REF_xxx_INPUT_INTERFACEs. | |||
| */ | |||
| #define COMPLEX_MATH_DEFINE_TEST_TEMPLATE_BUF1_BLK(fn_name, \ | |||
| suffix, \ | |||
| input_type, \ | |||
| output_type, \ | |||
| comparison_interface) \ | |||
| JTEST_DEFINE_TEST(arm_##fn_name##_##suffix##_test, \ | |||
| arm_##fn_name##_##suffix) \ | |||
| { \ | |||
| TEST_TEMPLATE_BUF1_BLK( \ | |||
| complex_math_f_all, \ | |||
| complex_math_block_sizes, \ | |||
| input_type, \ | |||
| output_type, \ | |||
| arm_##fn_name##_##suffix, \ | |||
| ARM_##fn_name##_INPUT_INTERFACE, \ | |||
| ref_##fn_name##_##suffix, \ | |||
| REF_##fn_name##_INPUT_INTERFACE, \ | |||
| comparison_interface); \ | |||
| } | |||
| /** | |||
| * Specialization of #TEST_TEMPLATE_BUF2_BLK1() for complex math tests. | |||
| * | |||
| * @note This macro relies on the existance of ARM_xxx_INPUT_INTERFACE and | |||
| * REF_xxx_INPUT_INTERFACEs. | |||
| */ | |||
| #define COMPLEX_MATH_DEFINE_TEST_TEMPLATE_BUF2_BLK(fn_name, \ | |||
| suffix, \ | |||
| input_type, \ | |||
| output_type, \ | |||
| comparison_interface) \ | |||
| JTEST_DEFINE_TEST(arm_##fn_name##_##suffix##_test, \ | |||
| arm_##fn_name##_##suffix) \ | |||
| { \ | |||
| TEST_TEMPLATE_BUF2_BLK( \ | |||
| complex_math_f_all, \ | |||
| complex_math_f_all, \ | |||
| complex_math_block_sizes, \ | |||
| input_type, \ | |||
| output_type, \ | |||
| arm_##fn_name##_##suffix, \ | |||
| ARM_##fn_name##_INPUT_INTERFACE, \ | |||
| ref_##fn_name##_##suffix, \ | |||
| REF_##fn_name##_INPUT_INTERFACE, \ | |||
| comparison_interface); \ | |||
| } | |||
| #endif /* _COMPLEX_MATH_TEMPLATES_H_ */ | |||
| @@ -0,0 +1,50 @@ | |||
| #ifndef _COMPLEX_MATH_TEST_DATA_H_ | |||
| #define _COMPLEX_MATH_TEST_DATA_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "arr_desc.h" | |||
| #include "arm_math.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #define COMPLEX_MATH_MAX_INPUT_ELEMENTS 32 | |||
| #define COMPLEX_MATH_BIGGEST_INPUT_TYPE float32_t | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Decalare Variables */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Input/Output Buffers */ | |||
| ARR_DESC_DECLARE(complex_math_output_fut_a); | |||
| ARR_DESC_DECLARE(complex_math_output_fut_b); | |||
| ARR_DESC_DECLARE(complex_math_output_ref_a); | |||
| ARR_DESC_DECLARE(complex_math_output_ref_b); | |||
| extern COMPLEX_MATH_BIGGEST_INPUT_TYPE | |||
| complex_math_output_f32_ref_a[COMPLEX_MATH_MAX_INPUT_ELEMENTS * 2]; | |||
| extern COMPLEX_MATH_BIGGEST_INPUT_TYPE | |||
| complex_math_output_f32_ref_b[COMPLEX_MATH_MAX_INPUT_ELEMENTS * 2]; | |||
| extern COMPLEX_MATH_BIGGEST_INPUT_TYPE | |||
| complex_math_output_f32_fut_a[COMPLEX_MATH_MAX_INPUT_ELEMENTS * 2]; | |||
| extern COMPLEX_MATH_BIGGEST_INPUT_TYPE | |||
| complex_math_output_f32_fut_b[COMPLEX_MATH_MAX_INPUT_ELEMENTS * 2]; | |||
| /* Block Sizes*/ | |||
| ARR_DESC_DECLARE(complex_math_block_sizes); | |||
| /* Float Inputs */ | |||
| ARR_DESC_DECLARE(complex_math_zeros); | |||
| ARR_DESC_DECLARE(complex_math_f_2); | |||
| ARR_DESC_DECLARE(complex_math_f_15); | |||
| ARR_DESC_DECLARE(complex_math_f_32); | |||
| ARR_DESC_DECLARE(complex_math_f_all); | |||
| #endif /* _COMPLEX_MATH_TEST_DATA_H_ */ | |||
| @@ -0,0 +1,9 @@ | |||
| #ifndef _COMPLEX_MATH_TEST_GROUP_H_ | |||
| #define _COMPLEX_MATH_TEST_GROUP_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Declare Test Groups */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| JTEST_DECLARE_GROUP(complex_math_tests); | |||
| #endif /* _COMPLEX_MATH_TEST_GROUP_H_ */ | |||
| @@ -0,0 +1,14 @@ | |||
| #ifndef _COMPLEX_MATH_TESTS_H_ | |||
| #define _COMPLEX_MATH_TESTS_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Test/Group Declarations */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| JTEST_DECLARE_GROUP(cmplx_conj_tests); | |||
| JTEST_DECLARE_GROUP(cmplx_dot_prod_tests); | |||
| JTEST_DECLARE_GROUP(cmplx_mag_tests); | |||
| JTEST_DECLARE_GROUP(cmplx_mag_squared_tests); | |||
| JTEST_DECLARE_GROUP(cmplx_mult_cmplx_tests); | |||
| JTEST_DECLARE_GROUP(cmplx_mult_real_tests); | |||
| #endif /* _COMPLEX_MATH_TESTS_H_ */ | |||
| @@ -0,0 +1,46 @@ | |||
| #ifndef _CONTROLLER_TEMPLATES_H_ | |||
| #define _CONTROLLER_TEMPLATES_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "test_templates.h" | |||
| #include <string.h> /* memcpy() */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Group Specific Templates */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /** | |||
| * Comparison SNR thresholds for the data types used in transform_tests. | |||
| */ | |||
| #define CONTROLLER_SNR_THRESHOLD_float32_t 110 | |||
| #define CONTROLLER_SNR_THRESHOLD_q31_t 100 | |||
| #define CONTROLLER_SNR_THRESHOLD_q15_t 45 | |||
| /** | |||
| * Compare the outputs from the function under test and the reference | |||
| * function using SNR. | |||
| */ | |||
| #define CONTROLLER_SNR_COMPARE_INTERFACE(block_size, \ | |||
| output_type) \ | |||
| do \ | |||
| { \ | |||
| TEST_CONVERT_AND_ASSERT_SNR( \ | |||
| controller_output_f32_ref, \ | |||
| (output_type *) controller_output_ref, \ | |||
| controller_output_f32_fut, \ | |||
| (output_type *) controller_output_fut, \ | |||
| block_size, \ | |||
| output_type, \ | |||
| CONTROLLER_SNR_THRESHOLD_##output_type \ | |||
| ); \ | |||
| } while (0) | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* TEST Templates */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #endif /* _CONTROLLER_TEMPLATES_H_ */ | |||
| @@ -0,0 +1,33 @@ | |||
| #ifndef _CONTROLLER_TEST_DATA_H_ | |||
| #define _CONTROLLER_TEST_DATA_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Includes */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #include "arm_math.h" | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Macros and Defines */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| #define CONTROLLER_MAX_LEN 1024 | |||
| #define CONTROLLER_MAX_COEFFS_LEN (12 * 3) | |||
| #define TRANFORM_BIGGEST_INPUT_TYPE float32_t | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Variable Declarations */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| extern float32_t controller_output_fut[CONTROLLER_MAX_LEN]; | |||
| extern float32_t controller_output_ref[CONTROLLER_MAX_LEN]; | |||
| extern float32_t controller_output_f32_fut[CONTROLLER_MAX_LEN]; | |||
| extern float32_t controller_output_f32_ref[CONTROLLER_MAX_LEN]; | |||
| extern const float32_t controller_f32_inputs[CONTROLLER_MAX_LEN]; | |||
| extern const q31_t controller_q31_inputs[CONTROLLER_MAX_LEN]; | |||
| extern const q15_t * controller_q15_inputs; | |||
| extern const float32_t controller_f32_coeffs[CONTROLLER_MAX_COEFFS_LEN]; | |||
| extern const q31_t controller_q31_coeffs[CONTROLLER_MAX_COEFFS_LEN]; | |||
| extern const q15_t controller_q15_coeffs[CONTROLLER_MAX_COEFFS_LEN]; | |||
| #endif /* _CONTROLLER_TEST_DATA_H_ */ | |||
| @@ -0,0 +1,9 @@ | |||
| #ifndef _CONTROLLER_TEST_GROUP_H_ | |||
| #define _CONTROLLER_TEST_GROUP_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Declare Test Group */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| JTEST_DECLARE_GROUP(controller_tests); | |||
| #endif /* _CONTROLLER_TEST_GROUP_H_ */ | |||
| @@ -0,0 +1,11 @@ | |||
| #ifndef _CONTROLLER_TESTS_H_ | |||
| #define _CONTROLLER_TESTS_H_ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| /* Test/Group Declarations */ | |||
| /*--------------------------------------------------------------------------------*/ | |||
| JTEST_DECLARE_GROUP(pid_reset_tests); | |||
| JTEST_DECLARE_GROUP(sin_cos_tests); | |||
| JTEST_DECLARE_GROUP(pid_tests); | |||
| #endif /* _CONTROLLER_TESTS_H_ */ | |||