test_utils.h 10 KB

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  1. // Copyright 2015-2018 Espressif Systems (Shanghai) PTE LTD
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. //
  7. // http://www.apache.org/licenses/LICENSE-2.0
  8. //
  9. // Unless required by applicable law or agreed to in writing, software
  10. // distributed under the License is distributed on an "AS IS" BASIS,
  11. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. // See the License for the specific language governing permissions and
  13. // limitations under the License.
  14. #pragma once
  15. // Utilities for esp-idf unit tests
  16. #include <stdint.h>
  17. #include <esp_partition.h>
  18. #include "sdkconfig.h"
  19. #include "freertos/FreeRTOS.h"
  20. #include "freertos/task.h"
  21. #include "unity.h"
  22. #include "soc/soc_caps.h"
  23. /* include performance pass standards header file */
  24. #include "idf_performance.h"
  25. #include "idf_performance_target.h"
  26. #ifdef __cplusplus
  27. extern "C" {
  28. #endif
  29. /* For performance check with unity test on IDF */
  30. /* These macros should only be used with ESP-IDF.
  31. * To use performance check, we need to first define pass standard in idf_performance.h.
  32. */
  33. //macros call this to expand an argument instead of directly converting into str
  34. #define PERFORMANCE_STR(s) #s
  35. //macros call this to contact strings after expanding them
  36. #define PERFORMANCE_CON(a, b) _PERFORMANCE_CON(a, b)
  37. #define _PERFORMANCE_CON(a, b) a##b
  38. #define TEST_PERFORMANCE_LESS_THAN(name, value_fmt, value) do { \
  39. printf("[Performance][" PERFORMANCE_STR(name) "]: "value_fmt"\n", value); \
  40. TEST_ASSERT(value < PERFORMANCE_CON(IDF_PERFORMANCE_MAX_, name)); \
  41. } while(0)
  42. #define TEST_PERFORMANCE_GREATER_THAN(name, value_fmt, value) do { \
  43. printf("[Performance][" PERFORMANCE_STR(name) "]: "value_fmt"\n", value); \
  44. TEST_ASSERT(value > PERFORMANCE_CON(IDF_PERFORMANCE_MIN_, name)); \
  45. } while(0)
  46. /* Macros to be used when performance is calculated using the cache compensated timer
  47. will not assert if ccomp not supported */
  48. #if SOC_CCOMP_TIMER_SUPPORTED
  49. #define TEST_PERFORMANCE_CCOMP_GREATER_THAN(name, value_fmt, value) \
  50. TEST_PERFORMANCE_GREATER_THAN(name, value_fmt, value)
  51. #define TEST_PERFORMANCE_CCOMP_LESS_THAN(name, value_fmt, value) \
  52. TEST_PERFORMANCE_LESS_THAN(name, value_fmt, value)
  53. #else
  54. #define TEST_PERFORMANCE_CCOMP_GREATER_THAN(name, value_fmt, value) \
  55. printf("[Performance][" PERFORMANCE_STR(name) "]: "value_fmt"\n", value);
  56. #define TEST_PERFORMANCE_CCOMP_LESS_THAN(name, value_fmt, value) \
  57. printf("[Performance][" PERFORMANCE_STR(name) "]: "value_fmt"\n", value);
  58. #endif //SOC_CCOMP_TIMER_SUPPORTED
  59. /* @brief macro to print IDF performance
  60. * @param mode : performance item name. a string pointer.
  61. * @param value_fmt: print format and unit of the value, for example: "%02fms", "%dKB"
  62. * @param value : the performance value.
  63. */
  64. #define IDF_LOG_PERFORMANCE(item, value_fmt, value) \
  65. printf("[Performance][%s]: "value_fmt"\n", item, value)
  66. /* Some definitions applicable to Unity running in FreeRTOS */
  67. #define UNITY_FREERTOS_PRIORITY CONFIG_UNITY_FREERTOS_PRIORITY
  68. #define UNITY_FREERTOS_CPU CONFIG_UNITY_FREERTOS_CPU
  69. #define UNITY_FREERTOS_STACK_SIZE CONFIG_UNITY_FREERTOS_STACK_SIZE
  70. /* Return the 'flash_test' custom data partition (type 0x55)
  71. defined in the custom partition table.
  72. */
  73. const esp_partition_t *get_test_data_partition(void);
  74. /**
  75. * @brief Initialize reference clock
  76. *
  77. * Reference clock provides timestamps at constant 1 MHz frequency, even when
  78. * the APB frequency is changing.
  79. */
  80. void ref_clock_init(void);
  81. /**
  82. * @brief Deinitialize reference clock
  83. */
  84. void ref_clock_deinit(void);
  85. /**
  86. * @brief Get reference clock timestamp
  87. * @return number of microseconds since the reference clock was initialized
  88. */
  89. uint64_t ref_clock_get(void);
  90. /**
  91. * @brief Entry point of the test application
  92. *
  93. * Starts Unity test runner in a separate task and returns.
  94. */
  95. void test_main(void);
  96. /**
  97. * @brief Reset automatic leak checking which happens in unit tests.
  98. *
  99. * Updates recorded "before" free memory values to the free memory values
  100. * at time of calling. Resets leak checker if tracing is enabled in
  101. * config.
  102. *
  103. * This can be called if a test case does something which allocates
  104. * memory on first use, for example.
  105. *
  106. * @note Use with care as this can mask real memory leak problems.
  107. */
  108. void unity_reset_leak_checks(void);
  109. /**
  110. * @brief Call this function from a test case which requires TCP/IP or
  111. * LWIP functionality.
  112. *
  113. * @note This should be the first function the test case calls, as it will
  114. * allocate memory on first use (and also reset the test case leak checker).
  115. */
  116. void test_case_uses_tcpip(void);
  117. /**
  118. * @brief wait for signals with parameters.
  119. *
  120. * for multiple devices test cases, DUT might need to wait for other DUTs before continue testing.
  121. * As all DUTs are independent, need user (or test script) interaction to make test synchronized.
  122. *
  123. * Here we provide signal functions for this.
  124. * For example, we're testing GPIO, DUT1 has one pin connect to with DUT2.
  125. * DUT2 will output high level and then DUT1 will read input.
  126. * DUT1 should call `unity_wait_for_signal("output high level");` before it reads input.
  127. * DUT2 should call `unity_send_signal("output high level");` after it finished setting output high level.
  128. * According to the console logs:
  129. *
  130. * DUT1 console:
  131. *
  132. * ```
  133. * Waiting for signal: [output high level]!
  134. * Please press "Enter" key to once any board send this signal.
  135. * ```
  136. *
  137. * DUT2 console:
  138. *
  139. * ```
  140. * Send signal: [output high level]!
  141. * ```
  142. *
  143. * Then we press Enter key on DUT1's console, DUT1 starts to read input and then test success.
  144. *
  145. * Another example, we have 2 DUTs in multiple devices test, and DUT1 need to get DUT2's mac address to perform BT connection.
  146. * DUT1 should call `unity_wait_for_signal_param("dut2 mac address", mac, 19);` to wait for DUT2's mac address.
  147. * DUT2 should call `unity_send_signal_param("dut2 mac address", "10:20:30:40:50:60");` to send to DUT1 its mac address.
  148. * According to the console logs:
  149. *
  150. * DUT1 console:
  151. *
  152. * ```
  153. * Waiting for signal: [dut2 mac address]!
  154. * Please input parameter value from any board send this signal and press "Enter" key.
  155. * ```
  156. *
  157. * DUT2 console:
  158. *
  159. * ```
  160. * Send signal: [dut2 mac address][10:20:30:40:50:60]!
  161. * ```
  162. *
  163. * @param signal_name signal name which DUT expected to wait before proceed testing
  164. * @param parameter_buf buffer to receive parameter
  165. * @param buf_len length of parameter_buf.
  166. * Currently we have a limitation that it will write 1 extra byte at the end of string.
  167. * We need to use a buffer with 2 bytes longer than actual string length.
  168. */
  169. void unity_wait_for_signal_param(const char* signal_name, char *parameter_buf, uint8_t buf_len);
  170. /**
  171. * @brief wait for signals.
  172. *
  173. * @param signal_name signal name which DUT expected to wait before proceed testing
  174. */
  175. static inline void unity_wait_for_signal(const char* signal_name)
  176. {
  177. unity_wait_for_signal_param(signal_name, NULL, 0);
  178. }
  179. /**
  180. * @brief DUT send signal and pass parameter to other devices.
  181. *
  182. * @param signal_name signal name which DUT send once it finished preparing.
  183. * @param parameter a string to let remote device to receive.
  184. */
  185. void unity_send_signal_param(const char* signal_name, const char *parameter);
  186. /**
  187. * @brief DUT send signal with parameter.
  188. *
  189. * @param signal_name signal name which DUT send once it finished preparing.
  190. */
  191. static inline void unity_send_signal(const char* signal_name)
  192. {
  193. unity_send_signal_param(signal_name, NULL);
  194. }
  195. /**
  196. * @brief convert mac string to mac address
  197. *
  198. * @param mac_str MAC address string with format "xx:xx:xx:xx:xx:xx"
  199. * @param[out] mac_addr store converted MAC address
  200. */
  201. bool unity_util_convert_mac_from_string(const char* mac_str, uint8_t *mac_addr);
  202. /**
  203. * @brief Leak for components
  204. */
  205. typedef enum {
  206. COMP_LEAK_GENERAL = 0, /**< Leak by default */
  207. COMP_LEAK_LWIP, /**< Leak for LWIP */
  208. COMP_LEAK_NVS, /**< Leak for NVS */
  209. COMP_LEAK_ALL, /**< Use for getting the summary leak level */
  210. } esp_comp_leak_t;
  211. /**
  212. * @brief Type of leak
  213. */
  214. typedef enum {
  215. TYPE_LEAK_WARNING = 0, /**< Warning level of leak */
  216. TYPE_LEAK_CRITICAL, /**< Critical level of leak */
  217. TYPE_LEAK_MAX, /**< Max number of leak levels */
  218. } esp_type_leak_t;
  219. /**
  220. * @brief Set a leak level for the required type and component.
  221. *
  222. * @param[in] leak_level Level of leak
  223. * @param[in] type Type of leak
  224. * @param[in] component Name of component
  225. *
  226. * return ESP_OK: Successful.
  227. * ESP_ERR_INVALID_ARG: Invalid argument.
  228. */
  229. esp_err_t test_utils_set_leak_level(size_t leak_level, esp_type_leak_t type, esp_comp_leak_t component);
  230. /**
  231. * @brief Get a leak level for the required type and component.
  232. *
  233. * @param[in] type Type of leak.
  234. * @param[in] component Name of component. If COMP_LEAK_ALL, then the level will be summarized for all components.
  235. * return Leak level
  236. */
  237. size_t test_utils_get_leak_level(esp_type_leak_t type, esp_comp_leak_t component);
  238. typedef struct test_utils_exhaust_memory_record_s *test_utils_exhaust_memory_rec;
  239. /**
  240. * Limit the largest free block of memory with a particular capability set to
  241. * 'limit' bytes (meaning an allocation of 'limit' should succeed at least once,
  242. * but any allocation of more bytes will fail.)
  243. *
  244. * Returns a record pointer which needs to be passed back in to test_utils_free_exhausted_memory
  245. * before the test completes, to avoid a major memory leak.
  246. *
  247. * @param caps Capabilities of memory to exhause
  248. * @param limit The size to limit largest free block to
  249. * @return Record pointer to pass to test_utils_free_exhausted_memory() once done
  250. */
  251. test_utils_exhaust_memory_rec test_utils_exhaust_memory(uint32_t caps, size_t limit);
  252. /**
  253. * Call to free memory which was taken up by test_utils_exhaust_memory() call
  254. *
  255. * @param rec Result previously returned from test_utils_exhaust_memory()
  256. */
  257. void test_utils_free_exhausted_memory(test_utils_exhaust_memory_rec rec);
  258. /**
  259. * @brief Delete task ensuring dynamic memory (for stack, tcb etc.) gets freed up immediately
  260. *
  261. * @param[in] thandle Handle of task to be deleted (should not be NULL or self handle)
  262. */
  263. void test_utils_task_delete(TaskHandle_t thandle);
  264. #ifdef __cplusplus
  265. }
  266. #endif