main.c 6.7 KB

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  1. #include <stdio.h>
  2. #include <stdlib.h>
  3. #include <assert.h>
  4. #include <string.h>
  5. #include "Timer.h"
  6. #include "DummyTimer.h"
  7. #include "Test_ExpressionStatemachine.h"
  8. #include "Test_ExpressionEvent.h"
  9. /*@DescTest: Expression Statechart Test (Test_Expression.sct) */
  10. #define MAXEVENTSPERTYPE 4
  11. const char* stateName[6] = {"State1", "State2", "State3", "State4", "State5", "State6"};
  12. void setupStatemachine(Test_ExpressionStatemachine* machine, Timer* dummyTimer, EventPool* eventPool)
  13. {
  14. /* set up dummy Timer */
  15. dummyTimer_init(dummyTimer);
  16. /* Set up Event Pool */
  17. eventPool_init_heap(eventPool, event_last, MAXEVENTSPERTYPE);
  18. /* initialize state machine */
  19. test_ExpressionStatemachine_init(machine, dummyTimer, eventPool);
  20. }
  21. void teardownStatemachine(Test_ExpressionStatemachine* machine, Timer* dummyTimer, EventPool* eventPool)
  22. {
  23. test_ExpressionStatemachine_exit(machine);
  24. timer_exit(dummyTimer);
  25. eventPool_exit(eventPool);
  26. }
  27. /*@Test: test_default_var1 test behavior of var1 in default interface */
  28. int test_initialization()
  29. {
  30. Test_ExpressionStatemachine machine;
  31. Timer dummyTimer;
  32. EventPool eventPool;
  33. //integer retval;
  34. /*@Desc: setup initial statemachine */
  35. setupStatemachine(&machine, &dummyTimer, &eventPool);
  36. /*@Desc: teardown statemachine */
  37. teardownStatemachine(&machine, &dummyTimer, &eventPool);
  38. return 0;
  39. }
  40. /*@Test: test_default_var1 test behavior of var1 in default and other interface */
  41. int test_default_other_var1()
  42. {
  43. Test_ExpressionStatemachine machine;
  44. Timer dummyTimer;
  45. EventPool eventPool;
  46. real retval;
  47. /*@Desc: setup initial statemachine */
  48. setupStatemachine(&machine, &dummyTimer, &eventPool);
  49. /*@Desc: check initial value for var1 ( == 6) */
  50. assert( test_Expression_if_get_var1(&machine.interface) == 6 );
  51. /*@Desc: run an explicit cycle - without any waiting event */
  52. test_ExpressionStatemachine_runCycle(&machine);
  53. /*@Desc: check the initial state */
  54. printf("%s\n", stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)]);
  55. assert( strcmp(stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)], "State1") == 0);
  56. /*@Desc: check value for var1 after state1 entry / var1 is not changed during entry into state1 */
  57. assert( test_Expression_if_get_var1(&machine.interface) == 6 );
  58. /*@Desc: raise event1 on default interface with value 5 (actually unused) */
  59. test_Expression_if_raise_event1(&machine.interface, 5);
  60. /*@Desc: set other.var1 to "true" to let transition take place */
  61. test_Expression_if_other_set_var1(&machine.interfaceOther, bool_true);
  62. /*@Desc: run an explicit cycle */
  63. test_ExpressionStatemachine_runCycle(&machine);
  64. /*@Desc: check whether the state is set to "State2" */
  65. printf("%s\n", stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)]);
  66. assert( strcmp(stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)], "State2") == 0);
  67. /*@Desc: check whether the transition action was executed */
  68. assert( test_Expression_if_other_get_var1(&machine.interfaceOther) == bool_false);
  69. /*@Desc: check whether var1 has been increased by 1 (==7) */
  70. assert( test_Expression_if_get_var1(&machine.interface) == 7 );
  71. /*@Desc: check if the entry event2 is raised */
  72. assert( test_Expression_if_is_event2_raised(&machine.interface, &retval) == bool_true );
  73. /*@Desc: run an explicit cycle */
  74. test_ExpressionStatemachine_runCycle(&machine);
  75. /*@Desc: check whether var1 has been increased by 1 on onCycle (==8) */
  76. assert( test_Expression_if_get_var1(&machine.interface) == 8 );
  77. /*@Desc: check whether the state is still set to "State2" */
  78. printf("%s\n", stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)]);
  79. assert( strcmp(stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)], "State2") == 0);
  80. /*@Desc: teardown statemachine */
  81. teardownStatemachine(&machine, &dummyTimer, &eventPool);
  82. return 0;
  83. }
  84. int test_default_other_var2_var3()
  85. {
  86. Test_ExpressionStatemachine machine;
  87. Timer dummyTimer;
  88. EventPool eventPool;
  89. real testvalue1u = (19.4 + 19.4*123 + 0.1);
  90. real testvalue1l = (19.4 + 19.4*123 - 0.1);
  91. real testvalue2u = 19.4 + 19.4*123/5.0 + 0.1;
  92. real testvalue2l = 19.4 + 19.4*123/5.0 - 0.1;
  93. /*@Desc: setup initial statemachine */
  94. setupStatemachine(&machine, &dummyTimer, &eventPool);
  95. /*@Desc: check initial value for var2 ( == 123) */
  96. assert( test_Expression_if_get_var2(&machine.interface) == 123 );
  97. /*@Desc: check initial value for var3 (19.4) */
  98. assert( (test_Expression_if_get_var3(&machine.interface) > 19.3) &&
  99. (test_Expression_if_get_var3(&machine.interface) < 19.5));
  100. /*@Desc: run an explicit cycle - without any waiting event */
  101. test_ExpressionStatemachine_runCycle(&machine);
  102. /*@Desc: check the initial state */
  103. printf("%s\n", stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)]);
  104. assert( strcmp(stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)], "State1") == 0);
  105. /*@Desc: check, wether var3 on default interface is set correct after state1 entry */
  106. assert( (test_Expression_if_get_var3(&machine.interface) > testvalue1l) &&
  107. (test_Expression_if_get_var3(&machine.interface) < testvalue1u) );
  108. /*@Desc: check, wether var3 on default interface is set correct after state1 entry */
  109. assert( test_Expression_if_get_var2(&machine.interface) == 1 );
  110. /*@Desc: set var5 to "false" to let transition take place */
  111. test_Expression_if_set_var5(&machine.interface, bool_false);
  112. /*@Desc: raise event1 on default interface with value 5 (actually unused) */
  113. test_Expression_if_raise_event1(&machine.interface, 5);
  114. /*@Desc: check the initial state */
  115. printf("%s\n", stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)]);
  116. assert( strcmp(stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)], "State2") == 0);
  117. /*@Desc: check, wether var3 on default interface is set correct after entry */
  118. assert( (test_Expression_if_get_var3(&machine.interface) > testvalue2l) &&
  119. (test_Expression_if_get_var3(&machine.interface) < testvalue2u) );
  120. /*@Desc: set event1 with variable 5 (acutally unused) */
  121. test_Expression_if_raise_event1(&machine.interface, 5);
  122. /*@Desc: run an explicit cycle */
  123. test_ExpressionStatemachine_runCycle(&machine);
  124. /*@Desc: check the transition to state1 */
  125. printf("%s\n", stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)]);
  126. assert( strcmp(stateName[statemachineBase_getState((StatemachineBase*)&machine, 0)], "State1") == 0);
  127. /*@Desc-Info: I will not calculate the complete for var3 in this scenario */
  128. /*@Desc: teardown statemachine */
  129. teardownStatemachine(&machine, &dummyTimer, &eventPool);
  130. return 0;
  131. }
  132. int main(int argc, char** argv)
  133. {
  134. if (argc != 2)
  135. return -1;
  136. switch (atoi(argv[1])) {
  137. case 1:
  138. return test_default_other_var1();
  139. case 2:
  140. return test_default_other_var2_var3();
  141. }
  142. return 0;
  143. }