test_fixture.cpp 5.7 KB

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  1. #include "test_fixture.hpp"
  2. #include <algorithm>
  3. #include <cstdint>
  4. #include <cstdio>
  5. #include <cstdlib>
  6. #include "gmock/gmock-cardinalities.h"
  7. #include "gmock/gmock.h"
  8. #include "gtest/gtest.h"
  9. #include "keyboard_report_util.hpp"
  10. #include "keycode.h"
  11. #include "test_driver.hpp"
  12. #include "test_logger.hpp"
  13. #include "test_matrix.h"
  14. #include "test_keymap_key.hpp"
  15. #include "timer.h"
  16. extern "C" {
  17. #include "action.h"
  18. #include "action_tapping.h"
  19. #include "action_util.h"
  20. #include "action_layer.h"
  21. #include "debug.h"
  22. #include "eeconfig.h"
  23. #include "keyboard.h"
  24. void set_time(uint32_t t);
  25. void advance_time(uint32_t ms);
  26. }
  27. using testing::_;
  28. /* This is used for dynamic dispatching keymap_key_to_keycode calls to the current active test_fixture. */
  29. TestFixture* TestFixture::m_this = nullptr;
  30. /* Override weak QMK function to allow the usage of isolated per-test keymaps in unit-tests.
  31. * The actual call is dynamicaly dispatched to the current active test fixture, which in turn has it's own keymap. */
  32. extern "C" uint16_t keymap_key_to_keycode(uint8_t layer, keypos_t position) {
  33. uint16_t keycode;
  34. TestFixture::m_this->get_keycode(layer, position, &keycode);
  35. return keycode;
  36. }
  37. void TestFixture::SetUpTestCase() {
  38. test_logger.info() << "test fixture setup-up start." << std::endl;
  39. // The following is enough to bootstrap the values set in main
  40. eeconfig_init_quantum();
  41. eeconfig_update_debug(debug_config.raw);
  42. TestDriver driver;
  43. keyboard_init();
  44. test_logger.info() << "test fixture setup-up end." << std::endl;
  45. }
  46. void TestFixture::TearDownTestCase() {}
  47. TestFixture::TestFixture() {
  48. m_this = this;
  49. timer_clear();
  50. test_logger.info() << "tapping term is " << +GET_TAPPING_TERM(KC_TRANSPARENT, &(keyrecord_t){}) << "ms" << std::endl;
  51. }
  52. TestFixture::~TestFixture() {
  53. test_logger.info() << "test fixture clean-up start." << std::endl;
  54. TestDriver driver;
  55. /* Reset keyboard state. */
  56. clear_all_keys();
  57. clear_keyboard();
  58. clear_oneshot_mods();
  59. clear_oneshot_locked_mods();
  60. reset_oneshot_layer();
  61. layer_clear();
  62. #if defined(SWAP_HANDS_ENABLE)
  63. clear_oneshot_swaphands();
  64. #endif
  65. idle_for(TAPPING_TERM * 10);
  66. VERIFY_AND_CLEAR(driver);
  67. /* Verify that the matrix really is cleared */
  68. EXPECT_NO_REPORT(driver);
  69. idle_for(TAPPING_TERM * 10);
  70. VERIFY_AND_CLEAR(driver);
  71. m_this = nullptr;
  72. test_logger.info() << "test fixture clean-up end." << std::endl;
  73. print_test_log();
  74. }
  75. void TestFixture::add_key(KeymapKey key) {
  76. if (this->find_key(key.layer, key.position)) {
  77. FAIL() << "key is already mapped for layer " << +key.layer << " and (column,row) (" << +key.position.col << "," << +key.position.row << ")";
  78. }
  79. this->keymap.push_back(key);
  80. }
  81. void TestFixture::tap_key(KeymapKey key, unsigned delay_ms) {
  82. key.press();
  83. idle_for(delay_ms);
  84. key.release();
  85. run_one_scan_loop();
  86. }
  87. void TestFixture::tap_combo(const std::vector<KeymapKey>& chord_keys, unsigned delay_ms) {
  88. for (KeymapKey key : chord_keys) { // Press each key.
  89. key.press();
  90. run_one_scan_loop();
  91. }
  92. if (delay_ms > 1) {
  93. idle_for(delay_ms - 1);
  94. }
  95. for (KeymapKey key : chord_keys) { // Release each key.
  96. key.release();
  97. run_one_scan_loop();
  98. }
  99. }
  100. void TestFixture::set_keymap(std::initializer_list<KeymapKey> keys) {
  101. this->keymap.clear();
  102. for (auto& key : keys) {
  103. add_key(key);
  104. }
  105. }
  106. const KeymapKey* TestFixture::find_key(layer_t layer, keypos_t position) const {
  107. auto keymap_key_predicate = [&](KeymapKey candidate) { return candidate.layer == layer && candidate.position.col == position.col && candidate.position.row == position.row; };
  108. auto result = std::find_if(this->keymap.begin(), this->keymap.end(), keymap_key_predicate);
  109. if (result != std::end(this->keymap)) {
  110. return &(*result);
  111. }
  112. return nullptr;
  113. }
  114. void TestFixture::get_keycode(const layer_t layer, const keypos_t position, uint16_t* result) const {
  115. bool key_is_out_of_bounds = position.col >= MATRIX_COLS && position.row >= MATRIX_ROWS;
  116. if (key_is_out_of_bounds) {
  117. /* See if this is done in hardware as well, because this is 100% out of bounds reads on all QMK keebs out there. */
  118. auto msg = [&]() {
  119. std::stringstream msg;
  120. msg << "keycode for position (" << +position.col << "," << +position.row << ") requested! This is out of bounds." << std::endl;
  121. return msg.str();
  122. }();
  123. *result = KC_NO;
  124. test_logger.error() << msg;
  125. EXPECT_FALSE(key_is_out_of_bounds) << msg;
  126. return;
  127. }
  128. if (auto key = this->find_key(layer, position)) {
  129. *result = key->code;
  130. return;
  131. }
  132. FAIL() << "no key is mapped for layer " << +layer << " and (column,row) " << +position.col << "," << +position.row << ")";
  133. }
  134. void TestFixture::run_one_scan_loop() {
  135. this->idle_for(1);
  136. }
  137. void TestFixture::idle_for(unsigned time) {
  138. test_logger.trace() << +time << " keyboard task " << (time > 1 ? "loops" : "loop") << std::endl;
  139. for (unsigned i = 0; i < time; i++) {
  140. keyboard_task();
  141. advance_time(1);
  142. }
  143. }
  144. void TestFixture::print_test_log() const {
  145. const ::testing::TestInfo* const test_info = ::testing::UnitTest::GetInstance()->current_test_info();
  146. if (HasFailure()) {
  147. std::cerr << test_info->test_case_name() << "." << test_info->name() << " failed!" << std::endl;
  148. test_logger.print_header();
  149. test_logger.print_log();
  150. }
  151. test_logger.reset();
  152. }
  153. void TestFixture::expect_layer_state(layer_t layer_state) const {
  154. test_logger.trace() << "layer state: (" << +layer_state << ") highest layer bit: (" << +get_highest_layer(layer_state) << ")" << std::endl;
  155. EXPECT_TRUE(layer_state_is(layer_state));
  156. }