Nevar pievienot vairāk kā 25 tēmas Tēmai ir jāsākas ar burtu vai ciparu, tā var saturēt domu zīmes ('-') un var būt līdz 35 simboliem gara.
 
 
 
 
 
 

136 rindas
5.5 KiB

  1. #include "plc_device.h"
  2. #include "plsr_persistence.h"
  3. #include <inttypes.h>
  4. #include <stdio.h>
  5. #include <stdlib.h>
  6. static unsigned int TestCount;
  7. #define TEST_CHECK(condition) \
  8. do \
  9. { \
  10. TestCount++; \
  11. if (!(condition)) \
  12. { \
  13. (void)fprintf(stderr, "FAIL line %d: %s\n", __LINE__, #condition); \
  14. exit(EXIT_FAILURE); \
  15. } \
  16. } while (0)
  17. static void TestAddressMap(void)
  18. {
  19. uint16_t eventAddress;
  20. TEST_CHECK(PlsrAxisAddressMap[0].hsdRuntimeBase == 0U);
  21. TEST_CHECK(PlsrAxisAddressMap[3].hsdRuntimeBase == 12U);
  22. TEST_CHECK(PlsrAxisAddressMap[0].smPulseActiveAddress == 1000U);
  23. TEST_CHECK(PlsrAxisAddressMap[3].smDirectionAddress == 1061U);
  24. TEST_CHECK(PlsrAxisAddressMap[2].sdRuntimeBase == 1040U);
  25. TEST_CHECK(PlsrAxisAddressMap[3].eventBase == 6300U);
  26. TEST_CHECK(PlcDeviceGetEventAddress(0U, 1U, &eventAddress) == PLC_DEVICE_OK);
  27. TEST_CHECK(eventAddress == 6000U);
  28. TEST_CHECK(PlcDeviceGetEventAddress(3U, 100U, &eventAddress) == PLC_DEVICE_OK);
  29. TEST_CHECK(eventAddress == 6399U);
  30. TEST_CHECK(PlcDeviceGetEventAddress(4U, 1U, &eventAddress)
  31. == PLC_DEVICE_INVALID_ARGUMENT);
  32. TEST_CHECK(PlcDeviceGetEventAddress(0U, 0U, &eventAddress)
  33. == PLC_DEVICE_INVALID_ARGUMENT);
  34. }
  35. static void TestHsdAndPersistence(void)
  36. {
  37. int32_t value32;
  38. int64_t value64;
  39. const int64_t firstPair = INT64_C(0x1234567887654321);
  40. const int64_t secondPair = -INT64_C(0x102030405060708);
  41. PlsrPersistenceTestResetStorage();
  42. TEST_CHECK(PlcDeviceInit() == PLC_DEVICE_OK);
  43. TEST_CHECK(PlcDeviceGetLastHsdLoadResult() == PLSR_PERSISTENCE_DEFAULTED);
  44. TEST_CHECK(PlcDeviceIsHsdDirty() != 0U);
  45. TEST_CHECK(PlcDeviceWriteHsdConfig(460U, 11) == PLC_DEVICE_OK);
  46. TEST_CHECK(PlcDeviceWriteHsdConfig(539U, -22) == PLC_DEVICE_OK);
  47. TEST_CHECK(PlcDeviceWriteHsdConfig(0U, 1) == PLC_DEVICE_READ_ONLY);
  48. TEST_CHECK(PlcDeviceWriteHsdConfig(459U, 1) == PLC_DEVICE_INVALID_ADDRESS);
  49. TEST_CHECK(PlcDeviceReadHsd(460U, &value32) == PLC_DEVICE_OK);
  50. TEST_CHECK(value32 == 11);
  51. TEST_CHECK(PlcDeviceReadHsd(539U, &value32) == PLC_DEVICE_OK);
  52. TEST_CHECK(value32 == -22);
  53. TEST_CHECK(PlcDeviceReadHsd(540U, &value32) == PLC_DEVICE_INVALID_ADDRESS);
  54. TEST_CHECK(PlcDevicePublishHsdPair(0U, firstPair) == PLC_DEVICE_OK);
  55. TEST_CHECK(PlcDeviceReadHsdPair(0U, &value64) == PLC_DEVICE_OK);
  56. TEST_CHECK(value64 == firstPair);
  57. TEST_CHECK(PlcDeviceReadHsdPair(1U, &value64) == PLC_DEVICE_INVALID_ADDRESS);
  58. TEST_CHECK(PlcDeviceCheckpointHsd() == PLC_DEVICE_OK);
  59. TEST_CHECK(PlcDeviceIsHsdDirty() == 0U);
  60. TEST_CHECK(PlcDeviceWriteHsdConfig(460U, 22) == PLC_DEVICE_OK);
  61. TEST_CHECK(PlcDevicePublishHsdPair(0U, secondPair) == PLC_DEVICE_OK);
  62. TEST_CHECK(PlcDeviceCheckpointHsd() == PLC_DEVICE_OK);
  63. PlsrPersistenceTestCorruptNewestHsd();
  64. TEST_CHECK(PlcDeviceInit() == PLC_DEVICE_OK);
  65. TEST_CHECK(PlcDeviceGetLastHsdLoadResult() == PLSR_PERSISTENCE_OK);
  66. TEST_CHECK(PlcDeviceReadHsd(460U, &value32) == PLC_DEVICE_OK);
  67. TEST_CHECK(value32 == 11);
  68. TEST_CHECK(PlcDeviceReadHsdPair(0U, &value64) == PLC_DEVICE_OK);
  69. TEST_CHECK(value64 == firstPair);
  70. }
  71. static void TestSfd(void)
  72. {
  73. int32_t value;
  74. TEST_CHECK(PlcDeviceWriteSfd(900U, 123) == PLC_DEVICE_OK);
  75. TEST_CHECK(PlcDeviceWriteSfd(1419U, -456) == PLC_DEVICE_OK);
  76. TEST_CHECK(PlcDeviceReadSfd(900U, &value) == PLC_DEVICE_OK);
  77. TEST_CHECK(value == 123);
  78. TEST_CHECK(PlcDeviceReadSfd(1419U, &value) == PLC_DEVICE_OK);
  79. TEST_CHECK(value == -456);
  80. TEST_CHECK(PlcDeviceReadSfd(899U, &value) == PLC_DEVICE_INVALID_ADDRESS);
  81. TEST_CHECK(PlcDeviceReadSfd(1420U, &value) == PLC_DEVICE_INVALID_ADDRESS);
  82. TEST_CHECK(PlcDeviceIsSfdDirty() != 0U);
  83. TEST_CHECK(PlcDeviceSaveSfd() == PLC_DEVICE_NOT_IMPLEMENTED);
  84. }
  85. static void TestSmAndSd(void)
  86. {
  87. uint8_t state;
  88. int32_t value;
  89. TEST_CHECK(PlcDevicePublishSm(2U, 1U, 0U) == PLC_DEVICE_OK);
  90. TEST_CHECK(PlcDeviceReadSm(1040U, &state) == PLC_DEVICE_OK);
  91. TEST_CHECK(state == 1U);
  92. TEST_CHECK(PlcDeviceReadSm(1041U, &state) == PLC_DEVICE_OK);
  93. TEST_CHECK(state == 0U);
  94. TEST_CHECK(PlcDeviceWriteSm(1040U, 0U) == PLC_DEVICE_READ_ONLY);
  95. TEST_CHECK(PlcDeviceReadSm(1042U, &state) == PLC_DEVICE_INVALID_ADDRESS);
  96. TEST_CHECK(PlcDevicePublishSd(3U, 11U, -12345) == PLC_DEVICE_OK);
  97. TEST_CHECK(PlcDeviceReadSd(1071U, &value) == PLC_DEVICE_OK);
  98. TEST_CHECK(value == -12345);
  99. TEST_CHECK(PlcDeviceWriteSd(1071U, 0) == PLC_DEVICE_READ_ONLY);
  100. TEST_CHECK(PlcDeviceReadSd(1012U, &value) == PLC_DEVICE_INVALID_ADDRESS);
  101. TEST_CHECK(PlcDevicePublishSd(4U, 0U, 0) == PLC_DEVICE_INVALID_ARGUMENT);
  102. TEST_CHECK(PlcDeviceInit() == PLC_DEVICE_OK);
  103. TEST_CHECK(PlcDeviceReadSm(1040U, &state) == PLC_DEVICE_OK);
  104. TEST_CHECK(state == 0U);
  105. TEST_CHECK(PlcDeviceReadSd(1071U, &value) == PLC_DEVICE_OK);
  106. TEST_CHECK(value == 0);
  107. }
  108. int main(void)
  109. {
  110. TestAddressMap();
  111. TestHsdAndPersistence();
  112. TestSfd();
  113. TestSmAndSd();
  114. (void)printf("PASS: %u checks\n", TestCount);
  115. return EXIT_SUCCESS;
  116. }