test_ledc.c 18 KB

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  1. /* LEDC tested by PCNT in some case
  2. * PCNT can get the LEDC waveform frequency
  3. *
  4. * test environment of UT_T1_LEDC:
  5. * 1. connect GPIO18 with GPIO4
  6. * 2. connect GPIO5 to 3.3v (in case of it is pulled down by default)
  7. *
  8. * some calculation related with duty:
  9. * real duty = duty/2^duty_resolution
  10. */
  11. #include <esp_types.h>
  12. #include <stdio.h>
  13. #include <stdlib.h>
  14. #include <malloc.h>
  15. #include <string.h>
  16. #include "rom/ets_sys.h"
  17. #include "freertos/FreeRTOS.h"
  18. #include "freertos/task.h"
  19. #include "freertos/semphr.h"
  20. #include "freertos/queue.h"
  21. #include "freertos/xtensa_api.h"
  22. #include "unity.h"
  23. #include "soc/ledc_reg.h"
  24. #include "soc/ledc_struct.h"
  25. #include "esp_system.h"
  26. #include "driver/pcnt.h"
  27. #include "driver/ledc.h"
  28. #include "driver/gpio.h"
  29. #define PULSE_IO 18
  30. #define PCNT_INPUT_IO 4
  31. #define PCNT_CTRL_FLOATING_IO 5
  32. #define HIGHEST_LIMIT 10000
  33. #define LOWEST_LIMIT -10000
  34. // use PCNT to test the waveform of LEDC
  35. static int16_t wave_count(int last_time)
  36. {
  37. int16_t test_counter;
  38. pcnt_config_t pcnt_config = {
  39. .pulse_gpio_num = PCNT_INPUT_IO,
  40. .ctrl_gpio_num = PCNT_CTRL_FLOATING_IO,
  41. .channel = PCNT_CHANNEL_0,
  42. .unit = PCNT_UNIT_0,
  43. .pos_mode = PCNT_COUNT_INC,
  44. .neg_mode = PCNT_COUNT_DIS,
  45. .lctrl_mode = PCNT_MODE_REVERSE,
  46. .hctrl_mode = PCNT_MODE_KEEP,
  47. .counter_h_lim = HIGHEST_LIMIT,
  48. .counter_l_lim = LOWEST_LIMIT,
  49. };
  50. TEST_ESP_OK(pcnt_unit_config(&pcnt_config));
  51. // initialize first
  52. TEST_ESP_OK(pcnt_counter_pause(PCNT_UNIT_0));
  53. TEST_ESP_OK(pcnt_counter_clear(PCNT_UNIT_0));
  54. TEST_ESP_OK(pcnt_counter_resume(PCNT_UNIT_0));
  55. TEST_ESP_OK(pcnt_get_counter_value(PCNT_UNIT_0, &test_counter));
  56. vTaskDelay(last_time / portTICK_RATE_MS);
  57. TEST_ESP_OK(pcnt_get_counter_value(PCNT_UNIT_0, &test_counter));
  58. return test_counter;
  59. }
  60. // the PCNT will count the frequency of it
  61. static void frequency_set_get(ledc_mode_t speed_mode, ledc_timer_t timer, uint32_t freq_hz, int16_t real_freq, int16_t error)
  62. {
  63. int16_t count;
  64. TEST_ESP_OK(ledc_set_freq(speed_mode, timer, freq_hz));
  65. count = wave_count(1000);
  66. TEST_ASSERT_INT16_WITHIN(error, count, real_freq);
  67. TEST_ASSERT_EQUAL_INT32(ledc_get_freq(speed_mode, timer), real_freq);
  68. }
  69. static void timer_frequency_test(ledc_channel_t channel, ledc_timer_bit_t timer_bit, ledc_timer_t timer, ledc_mode_t speed_mode)
  70. {
  71. ledc_channel_config_t ledc_ch_config = {
  72. .gpio_num = PULSE_IO,
  73. .speed_mode = speed_mode,
  74. .channel = channel,
  75. .intr_type = LEDC_INTR_DISABLE,
  76. .timer_sel = timer,
  77. .duty = 4000,
  78. };
  79. ledc_timer_config_t ledc_time_config = {
  80. .speed_mode = speed_mode,
  81. .bit_num = timer_bit,
  82. .timer_num = timer,
  83. .freq_hz = 5000,
  84. };
  85. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  86. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  87. if(ledc_ch_config.speed_mode == LEDC_HIGH_SPEED_MODE) {
  88. frequency_set_get(ledc_ch_config.speed_mode, ledc_ch_config.timer_sel, 100, 100, 2);
  89. frequency_set_get(ledc_ch_config.speed_mode, ledc_ch_config.timer_sel, 5000, 5000, 5);
  90. frequency_set_get(ledc_ch_config.speed_mode, ledc_ch_config.timer_sel, 9000, 9025, 5);
  91. } else {
  92. frequency_set_get(ledc_ch_config.speed_mode, ledc_ch_config.timer_sel, 10, 10, 1);
  93. // comment it because this is a bug that when ledc in low speed mode, its frequency can't be changed
  94. // frequency_set_get(ledc_ch_config.speed_mode, ledc_ch_config.timer_sel, 50, 50, 2);
  95. // frequency_set_get(ledc_ch_config.speed_mode, ledc_ch_config.timer_sel, 100, 100, 2);
  96. }
  97. }
  98. static void timer_duty_set_get(ledc_mode_t speed_mode, ledc_channel_t channel, uint32_t duty)
  99. {
  100. TEST_ESP_OK(ledc_set_duty(speed_mode, channel, duty));
  101. TEST_ESP_OK(ledc_update_duty(speed_mode, channel));
  102. vTaskDelay(1000 / portTICK_RATE_MS);
  103. TEST_ASSERT_EQUAL_INT32(ledc_get_duty(speed_mode, channel), duty);
  104. }
  105. // use logic analyzer to view
  106. static void timer_duty_test(ledc_channel_t channel, ledc_timer_bit_t timer_bit, ledc_timer_t timer, ledc_mode_t speed_mode)
  107. {
  108. ledc_channel_config_t ledc_ch_config = {
  109. .gpio_num = PULSE_IO,
  110. .speed_mode = speed_mode,
  111. .channel = channel,
  112. .intr_type = LEDC_INTR_DISABLE,
  113. .timer_sel = timer,
  114. .duty = 4000,
  115. };
  116. ledc_timer_config_t ledc_time_config = {
  117. .speed_mode = speed_mode,
  118. .bit_num = timer_bit,
  119. .timer_num = timer,
  120. .freq_hz = 5000,
  121. };
  122. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  123. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  124. // duty ratio: (2^duty)/(2^timer_bit)
  125. timer_duty_set_get(ledc_ch_config.speed_mode, ledc_ch_config.channel, 0);
  126. timer_duty_set_get(ledc_ch_config.speed_mode, ledc_ch_config.channel, 1);
  127. timer_duty_set_get(ledc_ch_config.speed_mode, ledc_ch_config.channel, 1 << 12); // 50% duty
  128. timer_duty_set_get(ledc_ch_config.speed_mode, ledc_ch_config.channel, (1 << 13) - 1);
  129. timer_duty_set_get(ledc_ch_config.speed_mode, ledc_ch_config.channel, (1 << 13) - 2);
  130. }
  131. TEST_CASE("LEDC error log channel and timer config", "[ledc][test_env=UT_T1_LEDC]")
  132. {
  133. //channel configuration test
  134. ledc_channel_config_t ledc_ch_config = {
  135. .gpio_num = PULSE_IO,
  136. .speed_mode = LEDC_HIGH_SPEED_MODE,
  137. .channel = LEDC_CHANNEL_0,
  138. .intr_type = LEDC_INTR_DISABLE,
  139. .timer_sel = LEDC_TIMER_0,
  140. .duty = 4000,
  141. };
  142. // basic right parameter test
  143. ledc_channel_config_t temp_ch_config = ledc_ch_config;
  144. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  145. // with wrong GPIO using
  146. ledc_ch_config.gpio_num = 41;
  147. TEST_ASSERT(ledc_channel_config(&ledc_ch_config) == ESP_ERR_INVALID_ARG);
  148. // with wrong speed
  149. ledc_ch_config = temp_ch_config;
  150. ledc_ch_config.speed_mode = LEDC_SPEED_MODE_MAX;
  151. TEST_ASSERT(ledc_channel_config(&ledc_ch_config) == ESP_ERR_INVALID_ARG);
  152. // with wrong channel
  153. ledc_ch_config = temp_ch_config;
  154. ledc_ch_config.channel = LEDC_CHANNEL_MAX;
  155. TEST_ASSERT(ledc_channel_config(&ledc_ch_config) == ESP_ERR_INVALID_ARG);
  156. // with wrong interruption type
  157. ledc_ch_config = temp_ch_config;
  158. ledc_ch_config.intr_type = 2;
  159. TEST_ASSERT_FALSE((void *)ledc_channel_config(&ledc_ch_config));
  160. // with wrong timer
  161. ledc_ch_config = temp_ch_config;
  162. ledc_ch_config.timer_sel = 4;
  163. TEST_ASSERT(ledc_channel_config(&ledc_ch_config) == ESP_ERR_INVALID_ARG);
  164. ledc_ch_config = temp_ch_config;
  165. ledc_ch_config.duty = 12000;
  166. TEST_ASSERT_FALSE((void *)ledc_channel_config(&ledc_ch_config));
  167. // timer configuration test
  168. ledc_timer_config_t ledc_time_config;
  169. ledc_time_config.speed_mode = LEDC_HIGH_SPEED_MODE;
  170. ledc_time_config.duty_resolution = LEDC_TIMER_13_BIT;
  171. ledc_time_config.timer_num = LEDC_TIMER_0;
  172. ledc_time_config.freq_hz = 5000;
  173. ledc_timer_config_t temp_timer_config = ledc_time_config;
  174. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  175. ledc_time_config.speed_mode = LEDC_SPEED_MODE_MAX;
  176. TEST_ASSERT(ledc_timer_config(&ledc_time_config) == ESP_ERR_INVALID_ARG);
  177. // wrong duty_resolution
  178. ledc_time_config = temp_timer_config;
  179. ledc_time_config.duty_resolution = LEDC_TIMER_BIT_MAX;
  180. TEST_ASSERT(ledc_timer_config(&ledc_time_config) == ESP_ERR_INVALID_ARG);
  181. // wrong timer
  182. ledc_time_config = temp_timer_config;
  183. ledc_time_config.timer_num = 4;
  184. TEST_ASSERT(ledc_timer_config(&ledc_time_config) == ESP_ERR_INVALID_ARG);
  185. uint32_t current_level = LEDC.channel_group[LEDC_HIGH_SPEED_MODE].channel[LEDC_CHANNEL_0].conf0.idle_lv;
  186. TEST_ESP_OK(ledc_stop(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, !current_level));
  187. vTaskDelay(1000 / portTICK_RATE_MS);
  188. TEST_ASSERT_EQUAL_INT32( LEDC.channel_group[LEDC_HIGH_SPEED_MODE].channel[LEDC_CHANNEL_0].conf0.idle_lv, !current_level);
  189. }
  190. TEST_CASE("LEDC normal channel and timer config", "[ledc][test_env=UT_T1_LEDC]")
  191. {
  192. ledc_channel_config_t ledc_ch_config = {
  193. .gpio_num = PULSE_IO,
  194. .speed_mode = LEDC_HIGH_SPEED_MODE,
  195. .channel = LEDC_CHANNEL_0,
  196. .intr_type = LEDC_INTR_DISABLE,
  197. .timer_sel = LEDC_TIMER_0,
  198. .duty = 4000,
  199. };
  200. ledc_channel_config_t temp_ch_config = ledc_ch_config;
  201. ledc_timer_config_t ledc_time_config = {
  202. .speed_mode = LEDC_HIGH_SPEED_MODE,
  203. .bit_num = LEDC_TIMER_13_BIT,
  204. .timer_num = LEDC_TIMER_0,
  205. .freq_hz = 5000,
  206. };
  207. ledc_timer_config_t temp_time_config = ledc_time_config;
  208. // use all kinds of speed mode, channel, timer combination to test all of possible configuration
  209. ledc_mode_t speed_mode[2] = {LEDC_HIGH_SPEED_MODE, LEDC_LOW_SPEED_MODE};
  210. ledc_channel_t channel_type[8] = {LEDC_CHANNEL_0, LEDC_CHANNEL_1, LEDC_CHANNEL_2, LEDC_CHANNEL_3, LEDC_CHANNEL_4, LEDC_CHANNEL_5, LEDC_CHANNEL_6, LEDC_CHANNEL_7};
  211. ledc_timer_t timer_select[4] = {LEDC_TIMER_0, LEDC_TIMER_1, LEDC_TIMER_2, LEDC_TIMER_3};
  212. for (int i = 0; i < 2; i++) {
  213. ledc_ch_config.speed_mode = speed_mode[i];
  214. ledc_time_config.speed_mode = speed_mode[i];
  215. for (int j = 0; j < 8; j++) {
  216. ledc_ch_config.channel = channel_type[j];
  217. for (int k = 0; k < 4; k++) {
  218. ledc_ch_config.timer_sel = timer_select[k];
  219. ledc_time_config.timer_num = timer_select[k];
  220. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  221. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  222. ledc_ch_config = temp_ch_config;
  223. ledc_time_config = temp_time_config;
  224. }
  225. }
  226. }
  227. }
  228. // set it ignore: need to debug
  229. TEST_CASE("LEDC set and get frequency", "[ledc][test_env=UT_T1_LEDC][timeout=60][ignore]")
  230. {
  231. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_0, LEDC_HIGH_SPEED_MODE);
  232. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_1, LEDC_HIGH_SPEED_MODE);
  233. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_2, LEDC_HIGH_SPEED_MODE);
  234. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_3, LEDC_HIGH_SPEED_MODE);
  235. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_0, LEDC_LOW_SPEED_MODE);
  236. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_1, LEDC_LOW_SPEED_MODE);
  237. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_2, LEDC_LOW_SPEED_MODE);
  238. timer_frequency_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, LEDC_TIMER_3, LEDC_LOW_SPEED_MODE);
  239. }
  240. // the duty need to be detected by waveform given by the logic analyzer
  241. // can't get it directly, so set it "ignore"
  242. TEST_CASE("LEDC set and get dut(with logic analyzer)", "[ledc][ignore]")
  243. {
  244. ledc_timer_t timer_list[4] = {LEDC_TIMER_0, LEDC_TIMER_1, LEDC_TIMER_2, LEDC_TIMER_3};
  245. ledc_mode_t speed_mode_list[2] = {LEDC_HIGH_SPEED_MODE, LEDC_LOW_SPEED_MODE};
  246. for(int i=0; i<LEDC_TIMER_MAX-1; i++) {
  247. for(int j=0; j<LEDC_SPEED_MODE_MAX-1; j++) {
  248. timer_duty_test(LEDC_CHANNEL_0, LEDC_TIMER_13_BIT, timer_list[i], speed_mode_list[j]);
  249. }
  250. }
  251. }
  252. TEST_CASE("LEDC timer set", "[ledc][test_env=UT_T1_LEDC]")
  253. {
  254. ledc_channel_config_t ledc_ch_config = {
  255. .gpio_num = PULSE_IO,
  256. .speed_mode = LEDC_HIGH_SPEED_MODE,
  257. .channel = LEDC_CHANNEL_0,
  258. .intr_type = LEDC_INTR_DISABLE,
  259. .timer_sel = LEDC_TIMER_0,
  260. .duty = 800,
  261. };
  262. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  263. ledc_timer_config_t ledc_time_config = {
  264. .speed_mode = LEDC_HIGH_SPEED_MODE,
  265. .bit_num = 13,
  266. .timer_num = LEDC_TIMER_0,
  267. .freq_hz = 5000,
  268. };
  269. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  270. uint32_t freq_get;
  271. uint32_t count;
  272. //set timer 0 as 250Hz, use REF_TICK
  273. TEST_ESP_OK(ledc_timer_set(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0, 1000, 10, LEDC_REF_TICK));
  274. TEST_ESP_OK(ledc_timer_rst(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0));
  275. TEST_ASSERT_EQUAL_INT32(ledc_get_freq(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0), 250);
  276. freq_get = ledc_get_freq(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0);
  277. count = wave_count(1000);
  278. TEST_ASSERT_UINT32_WITHIN(10, count, freq_get);
  279. //set timer 3 as 500Hz, use APB_CLK
  280. TEST_ESP_OK(ledc_timer_set(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0, 5000, 13, LEDC_APB_CLK));
  281. TEST_ESP_OK(ledc_timer_rst(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0));
  282. TEST_ASSERT_EQUAL_INT32(ledc_get_freq(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0), 500);
  283. freq_get = ledc_get_freq(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0);
  284. count = wave_count(1000);
  285. TEST_ASSERT_UINT32_WITHIN(50, count, freq_get);
  286. printf("Bind channel 0 to timer 0\n");
  287. TEST_ESP_OK(ledc_bind_channel_timer(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, LEDC_TIMER_0));
  288. vTaskDelay(1000 / portTICK_RATE_MS);
  289. TEST_ASSERT_EQUAL_INT32(ledc_get_freq(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0), 500);
  290. uint32_t current_level = LEDC.channel_group[LEDC_HIGH_SPEED_MODE].channel[LEDC_CHANNEL_0].conf0.idle_lv;
  291. TEST_ESP_OK(ledc_stop(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, !current_level));
  292. vTaskDelay(1000 / portTICK_RATE_MS);
  293. TEST_ASSERT_EQUAL_INT32( LEDC.channel_group[LEDC_HIGH_SPEED_MODE].channel[LEDC_CHANNEL_0].conf0.idle_lv, !current_level);
  294. }
  295. TEST_CASE("LEDC timer pause and resume", "[ledc][test_env=UT_T1_LEDC]")
  296. {
  297. int16_t count;
  298. ledc_channel_config_t ledc_ch_config = {
  299. .gpio_num = PULSE_IO,
  300. .speed_mode = LEDC_HIGH_SPEED_MODE,
  301. .channel = LEDC_CHANNEL_0,
  302. .intr_type = LEDC_INTR_DISABLE,
  303. .timer_sel = LEDC_TIMER_0,
  304. .duty = 4000,
  305. };
  306. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  307. ledc_timer_config_t ledc_time_config = {
  308. .speed_mode = LEDC_HIGH_SPEED_MODE,
  309. .duty_resolution = LEDC_TIMER_13_BIT,
  310. .timer_num = LEDC_TIMER_0,
  311. .freq_hz = 5000,
  312. };
  313. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  314. count = wave_count(1000);
  315. TEST_ASSERT_INT16_WITHIN(5, count, 5000);
  316. //pause ledc timer, when pause it, will get no waveform count
  317. printf("Pause ledc timer\n");
  318. TEST_ESP_OK(ledc_timer_pause(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0));
  319. vTaskDelay(10 / portTICK_RATE_MS);
  320. count = wave_count(1000);
  321. TEST_ASSERT_INT16_WITHIN(5, count, 0);
  322. TEST_ASSERT_EQUAL_UINT32(count, 0);
  323. //resume ledc timer
  324. printf("Resume ledc timer\n");
  325. TEST_ESP_OK(ledc_timer_resume(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0));
  326. vTaskDelay(10 / portTICK_RATE_MS);
  327. count = wave_count(1000);
  328. TEST_ASSERT_UINT32_WITHIN(5, count, 5000);
  329. //reset ledc timer
  330. printf("reset ledc timer\n");
  331. TEST_ESP_OK(ledc_timer_rst(LEDC_HIGH_SPEED_MODE, LEDC_TIMER_0));
  332. vTaskDelay(100 / portTICK_RATE_MS);
  333. TEST_ASSERT_UINT32_WITHIN(5, count, 5000);
  334. }
  335. TEST_CASE("LEDC fade with time(logic analyzer)", "[ledc][ignore]")
  336. {
  337. ledc_channel_config_t ledc_ch_config = {
  338. .gpio_num = PULSE_IO,
  339. .speed_mode = LEDC_HIGH_SPEED_MODE,
  340. .channel = LEDC_CHANNEL_0,
  341. .intr_type = LEDC_INTR_DISABLE,
  342. .timer_sel = LEDC_TIMER_0,
  343. .duty = 0,
  344. };
  345. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  346. ledc_timer_config_t ledc_time_config = {
  347. .speed_mode = LEDC_HIGH_SPEED_MODE,
  348. .duty_resolution = LEDC_TIMER_13_BIT,
  349. .timer_num = LEDC_TIMER_0,
  350. .freq_hz = 5000,
  351. };
  352. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  353. //initialize fade service
  354. TEST_ESP_OK(ledc_fade_func_install(0));
  355. TEST_ESP_OK(ledc_set_fade_with_time(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, 4000, 1000));
  356. TEST_ESP_OK(ledc_fade_start(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, LEDC_FADE_WAIT_DONE));
  357. vTaskDelay(1000 / portTICK_RATE_MS);
  358. TEST_ASSERT_EQUAL_INT32(ledc_get_duty(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0), 4000);
  359. TEST_ESP_OK(ledc_set_fade_with_time(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, 0, 1000));
  360. TEST_ESP_OK(ledc_fade_start(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, LEDC_FADE_NO_WAIT));
  361. vTaskDelay(1000 / portTICK_RATE_MS);
  362. TEST_ASSERT_EQUAL_INT32(ledc_get_duty(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0), 0);
  363. //deinitial fade service
  364. ledc_fade_func_uninstall();
  365. }
  366. TEST_CASE("LEDC fade with step(logic analyzer)", "[ledc][ignore]")
  367. {
  368. ledc_channel_config_t ledc_ch_config = {
  369. .gpio_num = PULSE_IO,
  370. .speed_mode = LEDC_HIGH_SPEED_MODE,
  371. .channel = LEDC_CHANNEL_0,
  372. .intr_type = LEDC_INTR_DISABLE,
  373. .timer_sel = LEDC_TIMER_0,
  374. .duty = 0,
  375. };
  376. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  377. ledc_timer_config_t ledc_time_config = {
  378. .speed_mode = LEDC_HIGH_SPEED_MODE,
  379. .duty_resolution = LEDC_TIMER_13_BIT,
  380. .timer_num = LEDC_TIMER_0,
  381. .freq_hz = 5000,
  382. };
  383. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  384. //initialize fade service.
  385. TEST_ESP_OK(ledc_fade_func_install(0));
  386. TEST_ESP_OK(ledc_set_fade_with_step(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, 4000, 2, 1));
  387. TEST_ESP_OK(ledc_fade_start(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, LEDC_FADE_WAIT_DONE));
  388. vTaskDelay(1000 / portTICK_RATE_MS);
  389. TEST_ASSERT_EQUAL_INT32(ledc_get_duty(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0), 4000);
  390. TEST_ESP_OK(ledc_set_fade_with_step(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, 0, 4, 2));
  391. TEST_ESP_OK(ledc_fade_start(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, LEDC_FADE_NO_WAIT));
  392. vTaskDelay(1000 / portTICK_RATE_MS);
  393. TEST_ASSERT_EQUAL_INT32(ledc_get_duty(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0), 0);
  394. //scaler=0 check
  395. TEST_ASSERT(ledc_set_fade_with_step(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, 4000, 0, 1) == ESP_ERR_INVALID_ARG);
  396. //deinitial fade service
  397. ledc_fade_func_uninstall();
  398. }
  399. // memory leaking problem detecting
  400. TEST_CASE("LEDC memory test", "[ledc][test_env=UT_T1_LEDC]")
  401. {
  402. ledc_channel_config_t ledc_ch_config = {
  403. .gpio_num = PULSE_IO,
  404. .speed_mode = LEDC_HIGH_SPEED_MODE,
  405. .channel = LEDC_CHANNEL_0,
  406. .intr_type = LEDC_INTR_DISABLE,
  407. .timer_sel = LEDC_TIMER_0,
  408. .duty = 0,
  409. };
  410. TEST_ESP_OK(ledc_channel_config(&ledc_ch_config));
  411. ledc_timer_config_t ledc_time_config = {
  412. .speed_mode = LEDC_HIGH_SPEED_MODE,
  413. .duty_resolution = LEDC_TIMER_13_BIT,
  414. .timer_num = LEDC_TIMER_0,
  415. .freq_hz = 5000,
  416. };
  417. TEST_ESP_OK(ledc_timer_config(&ledc_time_config));
  418. uint32_t size = esp_get_free_heap_size();
  419. uint32_t i;
  420. // install and uninstall for 1000 times to test whether memory leaking exists
  421. for (i = 0; i <= 1000; i++) {
  422. TEST_ESP_OK(ledc_fade_func_install(0));
  423. ledc_fade_func_uninstall();
  424. }
  425. TEST_ASSERT_INT32_WITHIN(100, size, esp_get_free_heap_size());
  426. TEST_ESP_OK(ledc_stop(LEDC_HIGH_SPEED_MODE, LEDC_CHANNEL_0, 0));
  427. }