test_sdio.c 22 KB

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  1. // Copyright 2019 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. #include "unity.h"
  15. #include "esp_serial_slave_link/essl_sdio.h"
  16. #include "driver/sdspi_host.h"
  17. #include "test_utils.h"
  18. #include "param_test.h"
  19. #include "esp_log.h"
  20. #if defined(SOC_SDMMC_HOST_SUPPORTED) && defined(SOC_SDIO_SLAVE_SUPPORTED)
  21. #include "driver/sdio_slave.h"
  22. #include "driver/sdmmc_host.h"
  23. #define TIMEOUT_MAX UINT32_MAX
  24. #define INT_MASK_ALL 0xff
  25. #define SDIO_SLAVE_QUEUE_SIZE 20
  26. #define RX_BUFFER_SIZE 2048
  27. #define RX_BUFFER_NUM 10
  28. #define TX_BUFFER_SIZE 2048
  29. #define REG_ADDR_MAX 60
  30. //the test should run accross the boundary, i.e. over 0x100000 bytes.
  31. //TEST_CNT > 512
  32. #define TEST_CNT 10000
  33. #define TEST_RESET_DATA_LEN 10
  34. #ifndef MIN
  35. #define MIN(a, b) ((a)<(b)? (a): (b))
  36. #endif
  37. typedef enum {
  38. SDIO_1BIT = 0,
  39. SDIO_4BIT = 1,
  40. SDIO_SPI = 2,
  41. } sdio_mode_t;
  42. typedef void (*sdio_test_func)(essl_handle_t handle);
  43. typedef struct {
  44. const char test_name[16];
  45. sdio_mode_t sdio_mode;
  46. uint32_t freq;
  47. bool check_data;
  48. bool packet_mode;
  49. } sdio_test_config_t;
  50. sdio_test_config_t test_cfg_array[] = {
  51. //the first item will be the default config used by all tests
  52. {
  53. .test_name = "HS4B",
  54. .sdio_mode = SDIO_4BIT,
  55. .freq = SDMMC_FREQ_HIGHSPEED,
  56. .check_data = true,
  57. },
  58. {
  59. .test_name = "HS1B",
  60. .sdio_mode = SDIO_1BIT,
  61. .freq = SDMMC_FREQ_HIGHSPEED,
  62. .check_data = true,
  63. },
  64. {
  65. .test_name = "SPI",
  66. .sdio_mode = SDIO_SPI,
  67. .freq = SDMMC_FREQ_HIGHSPEED,
  68. .check_data = true,
  69. },
  70. //the performance test is only done when psram is not enabled
  71. #if !CONFIG_SPIRAM && !CONFIG_FREERTOS_CHECK_PORT_CRITICAL_COMPLIANCE
  72. {
  73. .test_name = "HS4B (perf)",
  74. .sdio_mode = SDIO_4BIT,
  75. .freq = SDMMC_FREQ_HIGHSPEED,
  76. },
  77. {
  78. .test_name = "HS1B (perf)",
  79. .sdio_mode = SDIO_1BIT,
  80. .freq = SDMMC_FREQ_HIGHSPEED,
  81. },
  82. {
  83. .test_name = "SPI (perf)",
  84. .sdio_mode = SDIO_SPI,
  85. .freq = SDMMC_FREQ_HIGHSPEED,
  86. },
  87. #endif
  88. };
  89. sdio_test_config_t packet_config = {
  90. .test_name = "HS4B packet",
  91. .sdio_mode = SDIO_4BIT,
  92. .freq = SDMMC_FREQ_HIGHSPEED,
  93. .check_data = true,
  94. .packet_mode = true,
  95. };
  96. const sdio_test_config_t* default_config = &test_cfg_array[0];
  97. #define TEST_SIZE (sizeof(test_cfg_array)/sizeof(sdio_test_config_t))
  98. static const char MASTER_TAG[] = "master";
  99. static const char SLAVE_TAG[] = "slave";
  100. /*******************************************************************************
  101. * Master
  102. ******************************************************************************/
  103. static sdmmc_card_t s_card;
  104. typedef void (*test_func_t)(essl_handle_t handle, const sdio_test_config_t* config);
  105. static void init_sdmmc_host(void);
  106. static void init_essl(essl_handle_t *out_handle, const sdio_test_config_t *conf);
  107. static void deinit_essl(essl_handle_t handle, const sdio_test_config_t *conf);
  108. static void test_framework_master(test_func_t test_func, const sdio_test_config_t* config)
  109. {
  110. ESP_LOGI(MASTER_TAG, "### Testing %s... ####", config->test_name);
  111. essl_handle_t handle;
  112. esp_err_t err;
  113. init_essl(&handle, config);
  114. err = essl_init(handle, TIMEOUT_MAX);
  115. TEST_ESP_OK(err);
  116. (*test_func)(handle, config);
  117. deinit_essl(handle, config);
  118. }
  119. static void init_sdmmc_host(void)
  120. {
  121. esp_err_t err;
  122. sdmmc_slot_config_t slot_config = SDMMC_SLOT_CONFIG_DEFAULT();
  123. err = sdmmc_host_init();
  124. TEST_ESP_OK(err);
  125. err = sdmmc_host_init_slot(SDMMC_HOST_SLOT_1, &slot_config);
  126. TEST_ESP_OK(err);
  127. }
  128. static void init_essl(essl_handle_t *out_handle, const sdio_test_config_t *conf)
  129. {
  130. sdmmc_host_t config;
  131. esp_err_t err;
  132. /* Probe */
  133. switch (conf->sdio_mode) {
  134. case SDIO_4BIT:
  135. ESP_LOGI(MASTER_TAG, "Probe using SD 4-bit...\n");
  136. config = (sdmmc_host_t)SDMMC_HOST_DEFAULT();
  137. config.flags = SDMMC_HOST_FLAG_4BIT;
  138. config.max_freq_khz = conf->freq;
  139. init_sdmmc_host();
  140. break;
  141. case SDIO_1BIT:
  142. ESP_LOGI(MASTER_TAG, "Probe using SD 1-bit...\n");
  143. config = (sdmmc_host_t)SDMMC_HOST_DEFAULT();
  144. config.flags = SDMMC_HOST_FLAG_1BIT;
  145. config.max_freq_khz = conf->freq;
  146. init_sdmmc_host();
  147. break;
  148. case SDIO_SPI:
  149. config = (sdmmc_host_t)SDSPI_HOST_DEFAULT();
  150. sdspi_slot_config_t slot_config = SDSPI_SLOT_CONFIG_DEFAULT();
  151. slot_config.gpio_miso = SDIO_SLAVE_SLOT1_IOMUX_PIN_NUM_D0;
  152. slot_config.gpio_mosi = SDIO_SLAVE_SLOT1_IOMUX_PIN_NUM_CMD;
  153. slot_config.gpio_sck = SDIO_SLAVE_SLOT1_IOMUX_PIN_NUM_CLK;
  154. slot_config.gpio_cs = SDIO_SLAVE_SLOT1_IOMUX_PIN_NUM_D3;
  155. slot_config.gpio_int = SDIO_SLAVE_SLOT1_IOMUX_PIN_NUM_D1;
  156. err = gpio_install_isr_service(0);
  157. TEST_ASSERT(err == ESP_OK || err == ESP_ERR_INVALID_STATE);
  158. err = sdspi_host_init();
  159. TEST_ESP_OK(err);
  160. err = sdspi_host_init_slot(HSPI_HOST, &slot_config);
  161. TEST_ESP_OK(err);
  162. ESP_LOGI(MASTER_TAG, "Probe using SPI...\n");
  163. break;
  164. }
  165. sdmmc_card_t *card = &s_card;
  166. //wait for at least 5 seconds
  167. int retry_times = 5;
  168. do {
  169. if (sdmmc_card_init(&config, card) == ESP_OK) {
  170. break;
  171. }
  172. ESP_LOGW(MASTER_TAG, "slave init failed, retry...");
  173. vTaskDelay(1000 / portTICK_PERIOD_MS);
  174. } while (--retry_times);
  175. TEST_ASSERT_MESSAGE(retry_times != 0, "Initializing slave failed.");
  176. essl_sdio_config_t ser_config = {
  177. .card = card,
  178. .recv_buffer_size = RX_BUFFER_SIZE,
  179. };
  180. err = essl_sdio_init_dev(out_handle, &ser_config);
  181. TEST_ESP_OK(err);
  182. err = essl_init(*out_handle, TIMEOUT_MAX);
  183. TEST_ESP_OK(err);
  184. }
  185. static void deinit_essl(essl_handle_t handle, const sdio_test_config_t *conf)
  186. {
  187. esp_err_t err;
  188. essl_sdio_deinit_dev(handle);
  189. if (conf->sdio_mode == SDIO_SPI) {
  190. gpio_uninstall_isr_service();
  191. err = sdspi_host_deinit();
  192. TEST_ESP_OK(err);
  193. } else {
  194. err = sdmmc_host_deinit();
  195. TEST_ESP_OK(err);
  196. }
  197. }
  198. static void send_finish_test(essl_handle_t handle)
  199. {
  200. //the slave needs a signal to quite the test
  201. essl_send_slave_intr(handle, BIT(7), TIMEOUT_MAX);
  202. }
  203. static void test_int(essl_handle_t handle, const sdio_test_config_t* config)
  204. {
  205. esp_err_t err;
  206. err = essl_set_intr_ena(handle, INT_MASK_ALL, TIMEOUT_MAX);
  207. TEST_ESP_OK(err);
  208. err = essl_wait_int(handle, 0);
  209. TEST_ASSERT_EQUAL_HEX(ESP_ERR_TIMEOUT, err);
  210. //tests all 8 interrupts of the slave, in which int 7 is used to terminate the test on the slave.
  211. for (int i = 0; i < 8; i ++) {
  212. uint32_t int_st;
  213. err = essl_send_slave_intr(handle, BIT(i), TIMEOUT_MAX);
  214. TEST_ESP_OK(err);
  215. //the slave should return interrupt with the same bit in 10 ms
  216. err = essl_wait_int(handle, 10);
  217. TEST_ESP_OK(err);
  218. err = essl_get_intr(handle, NULL, &int_st, TIMEOUT_MAX);
  219. TEST_ESP_OK(err);
  220. //check and clear the returned interrupt
  221. TEST_ASSERT_EQUAL_HEX(BIT(i), int_st);
  222. err = essl_clear_intr(handle, int_st, TIMEOUT_MAX);
  223. TEST_ESP_OK(err);
  224. }
  225. }
  226. static void test_sdio_interrupt_master(void)
  227. {
  228. test_framework_master(test_int, default_config);
  229. }
  230. static void test_reg(essl_handle_t handle, const sdio_test_config_t* config)
  231. {
  232. esp_err_t err;
  233. uint8_t data[REG_ADDR_MAX];
  234. srand(850);
  235. //initialize the buffer
  236. for (int i = 0; i < REG_ADDR_MAX; i++) {
  237. data[i] = rand();
  238. err = essl_write_reg(handle, i, data[i], NULL, 10);
  239. TEST_ESP_OK(err);
  240. }
  241. for (int i = 0; i < 512; i++) {
  242. //randomly write one
  243. int offset = rand() % REG_ADDR_MAX;
  244. uint8_t data_write = rand();
  245. data[offset] = data_write;
  246. err = essl_write_reg(handle, offset, data_write, NULL, 10);
  247. TEST_ESP_OK(err);
  248. //randomly read another one and compare
  249. offset = rand() % REG_ADDR_MAX;
  250. uint8_t data_read;
  251. err = essl_read_reg(handle, offset, &data_read, 10);
  252. TEST_ESP_OK(err);
  253. TEST_ASSERT_EQUAL_HEX8(data[offset], data_read);
  254. }
  255. send_finish_test(handle);
  256. }
  257. static void test_sdio_reg_master(void)
  258. {
  259. test_framework_master(test_reg, default_config);
  260. }
  261. static uint8_t tx_buffer[TX_BUFFER_SIZE*2];
  262. static uint8_t rcv_buffer[RX_BUFFER_SIZE*RX_BUFFER_NUM];
  263. static void init_tx_buffer(void)
  264. {
  265. srand(776);
  266. for (int i = 0; i < sizeof(tx_buffer); i++) {
  267. tx_buffer[i] = rand();
  268. }
  269. }
  270. static void get_master_send_data(int offset, uint8_t** out_start, int* out_len)
  271. {
  272. int page_cnt = offset / TX_BUFFER_SIZE;
  273. int offset_in_page = offset % TX_BUFFER_SIZE;
  274. srand(page_cnt);
  275. int page_offset = (rand() % (sizeof(tx_buffer) - (TX_BUFFER_SIZE) + 1)) & (~3);
  276. *out_start = &tx_buffer[page_offset + offset_in_page];
  277. *out_len = TX_BUFFER_SIZE - offset_in_page;
  278. }
  279. static void log_performance_tohost(uint32_t speed, const sdio_test_config_t* config)
  280. {
  281. if (!config->check_data) {
  282. switch (config->sdio_mode) {
  283. case SDIO_4BIT:
  284. TEST_PERFORMANCE_GREATER_THAN(SDIO_THROUGHPUT_MBSEC_TOHOST_4BIT, "%d", speed);
  285. break;
  286. case SDIO_1BIT:
  287. TEST_PERFORMANCE_GREATER_THAN(SDIO_THROUGHPUT_MBSEC_TOHOST_1BIT, "%d", speed);
  288. break;
  289. case SDIO_SPI:
  290. TEST_PERFORMANCE_GREATER_THAN(SDIO_THROUGHPUT_MBSEC_TOHOST_SPI, "%d", speed);
  291. break;
  292. }
  293. }
  294. ESP_LOGI(MASTER_TAG, "Throughput: %.2lf MB/s", speed/1000.);
  295. }
  296. static void test_tp_tohost_master(essl_handle_t handle, const sdio_test_config_t* config)
  297. {
  298. esp_err_t err;
  299. int expected_length = TEST_CNT * TX_BUFFER_SIZE;
  300. int recv_size = 4096;
  301. init_tx_buffer();
  302. //wait for the slave to get ready
  303. vTaskDelay(20);
  304. int remain_length = expected_length;
  305. int offset = 0;
  306. // though the flow is the same, the check of config->check_data influences the throughput much, put it outside
  307. uint32_t pre = xTaskGetTickCount();
  308. if (config->check_data) {
  309. do {
  310. size_t rcv_len;
  311. err = essl_get_packet(handle, rcv_buffer, recv_size, &rcv_len, TIMEOUT_MAX);
  312. TEST_ASSERT(err == ESP_OK || err == ESP_ERR_NOT_FINISHED);
  313. TEST_ASSERT_LESS_OR_EQUAL(remain_length, rcv_len);
  314. //compare until all received data are used
  315. int compared_len = 0;
  316. do {
  317. //get the expected master sent data, there may be several segments, so get and compare
  318. //several times
  319. uint8_t* cmp_start;
  320. int seg_len;
  321. get_master_send_data(offset, &cmp_start, &seg_len);
  322. int cmp_len = MIN(rcv_len-compared_len, seg_len);
  323. TEST_ASSERT_EQUAL_HEX8_ARRAY(cmp_start, &rcv_buffer[compared_len], cmp_len);
  324. compared_len += cmp_len;
  325. offset += cmp_len;
  326. } while (compared_len < rcv_len);
  327. remain_length -= rcv_len;
  328. } while (remain_length > 0);
  329. } else {
  330. do {
  331. size_t rcv_len;
  332. err = essl_get_packet(handle, rcv_buffer, recv_size, &rcv_len, TIMEOUT_MAX);
  333. TEST_ASSERT(err == ESP_OK || err == ESP_ERR_NOT_FINISHED);
  334. TEST_ASSERT_LESS_OR_EQUAL(remain_length, rcv_len);
  335. offset += rcv_len;
  336. remain_length -= rcv_len;
  337. } while (remain_length > 0);
  338. }
  339. uint32_t end = xTaskGetTickCount();
  340. uint32_t total_time_ms = (end-pre)*portTICK_PERIOD_MS;
  341. uint32_t throughput_byte_per_ms = expected_length / total_time_ms;
  342. ESP_LOGI(MASTER_TAG, "test done, total time: %d ms, bytes transferred: %d", total_time_ms, expected_length);
  343. log_performance_tohost(throughput_byte_per_ms, config);
  344. send_finish_test(handle);
  345. }
  346. static void log_performance_frhost(uint32_t speed, const sdio_test_config_t* config)
  347. {
  348. if (!config->check_data) {
  349. switch (config->sdio_mode) {
  350. case SDIO_4BIT:
  351. TEST_PERFORMANCE_GREATER_THAN(SDIO_THROUGHPUT_MBSEC_FRHOST_4BIT, "%d", speed);
  352. break;
  353. case SDIO_1BIT:
  354. TEST_PERFORMANCE_GREATER_THAN(SDIO_THROUGHPUT_MBSEC_FRHOST_1BIT, "%d", speed);
  355. break;
  356. case SDIO_SPI:
  357. TEST_PERFORMANCE_GREATER_THAN(SDIO_THROUGHPUT_MBSEC_FRHOST_SPI, "%d", speed);
  358. break;
  359. }
  360. }
  361. ESP_LOGI(MASTER_TAG, "Throughput: %.2lf MB/s", speed/1000.);
  362. }
  363. static void test_tp_frhost_master(essl_handle_t handle, const sdio_test_config_t* config)
  364. {
  365. esp_err_t err;
  366. int expected_length = TEST_CNT * TX_BUFFER_SIZE;
  367. init_tx_buffer();
  368. //wait for the slave to get ready
  369. vTaskDelay(20);
  370. int remain_length = expected_length;
  371. int offset = 0;
  372. uint32_t pre = xTaskGetTickCount();
  373. do {
  374. int send_len;
  375. uint8_t* send_start;
  376. get_master_send_data(offset, &send_start, &send_len);
  377. TEST_ASSERT_EQUAL(TX_BUFFER_SIZE, send_len);
  378. err = essl_send_packet(handle, send_start, send_len, TIMEOUT_MAX);
  379. TEST_ASSERT(err == ESP_OK);
  380. remain_length -= send_len;
  381. offset += send_len;
  382. } while (remain_length > 0);
  383. uint32_t end = xTaskGetTickCount();
  384. uint32_t total_time_ms = (end-pre)*portTICK_PERIOD_MS;
  385. uint32_t throughput_byte_per_ms = expected_length / total_time_ms;
  386. ESP_LOGI(MASTER_TAG, "test done, total time: %d ms, bytes transferred: %d", total_time_ms, expected_length);
  387. log_performance_frhost(throughput_byte_per_ms, config);
  388. send_finish_test(handle);
  389. }
  390. void test_reset_master(essl_handle_t handle, const sdio_test_config_t* config)
  391. {
  392. init_tx_buffer();
  393. //wait for the slave to stop, reset and start again
  394. vTaskDelay(10);
  395. for (int i = 0; i < 10; i++) {
  396. WORD_ALIGNED_ATTR uint8_t buffer[TEST_RESET_DATA_LEN];
  397. size_t read_len;
  398. esp_err_t err = essl_get_packet(handle, buffer, TEST_RESET_DATA_LEN, &read_len, portMAX_DELAY);
  399. if (err == ESP_ERR_NOT_FINISHED) {
  400. TEST_ASSERT_LESS_THAN(10, i);
  401. err = ESP_OK;
  402. }
  403. TEST_ESP_OK(err);
  404. TEST_ASSERT_EQUAL(TEST_RESET_DATA_LEN, read_len);
  405. TEST_ASSERT_EQUAL_HEX8_ARRAY(tx_buffer + 4*i, buffer, read_len);
  406. }
  407. for (int i = 0; i < 10; i++) {
  408. esp_err_t err = essl_send_packet(handle, tx_buffer + i * 8, TEST_RESET_DATA_LEN, portMAX_DELAY);
  409. TEST_ESP_OK(err);
  410. }
  411. send_finish_test(handle);
  412. }
  413. void test_sdio_reset_master(void)
  414. {
  415. test_framework_master(test_reset_master, &packet_config);
  416. }
  417. /*******************************************************************************
  418. * Slave
  419. ******************************************************************************/
  420. typedef struct {
  421. int queued_cnt;
  422. bool s_finished;
  423. } slave_context_t;
  424. typedef void (*test_func_slave_t)(slave_context_t *context, const sdio_test_config_t* config);
  425. static slave_context_t slave_context;
  426. static void event_cb(uint8_t event)
  427. {
  428. ESP_EARLY_LOGI(SLAVE_TAG, "event: %d", event);
  429. sdio_slave_send_host_int(event);
  430. if (event == 7) slave_context.s_finished = true;
  431. }
  432. static void wait_for_finish(slave_context_t *ctx)
  433. {
  434. while (!ctx->s_finished) {
  435. vTaskDelay(10);
  436. }
  437. //wait for host to read the respond from slave
  438. vTaskDelay(10);
  439. }
  440. static void test_framework_slave(test_func_slave_t test_func, const sdio_test_config_t* config)
  441. {
  442. slave_context.s_finished = false;
  443. esp_err_t err;
  444. sdio_slave_config_t slave_config = {
  445. .sending_mode = (config->packet_mode? SDIO_SLAVE_SEND_PACKET: SDIO_SLAVE_SEND_STREAM),
  446. .send_queue_size = SDIO_SLAVE_QUEUE_SIZE,
  447. .recv_buffer_size = RX_BUFFER_SIZE,
  448. .event_cb = event_cb,
  449. };
  450. err = sdio_slave_initialize(&slave_config);
  451. TEST_ESP_OK(err);
  452. err = sdio_slave_start();
  453. TEST_ESP_OK(err);
  454. ESP_LOGI(SLAVE_TAG, "slave ready");
  455. test_func(&slave_context, config);
  456. sdio_slave_stop();
  457. sdio_slave_deinit();
  458. }
  459. static void test_int_slave(slave_context_t* ctx, const sdio_test_config_t* config)
  460. {
  461. wait_for_finish(ctx);
  462. }
  463. static void test_sdio_interrupt_slave(void)
  464. {
  465. test_framework_slave(test_int_slave, default_config);
  466. }
  467. static void test_tp_tohost_slave(slave_context_t* ctx, const sdio_test_config_t* config)
  468. {
  469. #define QUEUE_FULL() (ctx->queued_cnt == SDIO_SLAVE_QUEUE_SIZE)
  470. #define QUEUE_EMPTY() (ctx->queued_cnt == 0)
  471. init_tx_buffer();
  472. esp_err_t err;
  473. int offset = 0;
  474. for (int i = 0; i < TEST_CNT; i++) {
  475. do {
  476. void* arg;
  477. //when the queue is full, do a blocking wait for 10ms, otherwise non-blocking
  478. err = sdio_slave_send_get_finished(&arg, QUEUE_FULL()? 1: 0);
  479. if (err == ESP_OK) {
  480. ctx->queued_cnt --;
  481. continue;
  482. }
  483. TEST_ASSERT_EQUAL(ESP_ERR_TIMEOUT, err);
  484. } while (QUEUE_FULL());
  485. uint8_t* start;
  486. int send_len;
  487. get_master_send_data(offset, &start, &send_len);
  488. TEST_ASSERT_EQUAL(TX_BUFFER_SIZE, send_len);
  489. err = sdio_slave_send_queue(start, send_len, NULL, portMAX_DELAY);
  490. TEST_ESP_OK(err);
  491. ctx->queued_cnt++;
  492. offset += TX_BUFFER_SIZE;
  493. }
  494. while (!QUEUE_EMPTY()) {
  495. void* arg;
  496. err = sdio_slave_send_get_finished(&arg, portMAX_DELAY);
  497. TEST_ESP_OK(err);
  498. ctx->queued_cnt--;
  499. }
  500. wait_for_finish(ctx);
  501. }
  502. static void slave_parepare_recv_buffer(void)
  503. {
  504. for (int i = 0; i < RX_BUFFER_NUM; i++) {
  505. sdio_slave_buf_handle_t buf_handle = sdio_slave_recv_register_buf(&rcv_buffer[i*RX_BUFFER_SIZE]);
  506. esp_err_t err = sdio_slave_recv_load_buf(buf_handle);
  507. TEST_ESP_OK(err);
  508. }
  509. }
  510. static void test_tp_frhost_slave(slave_context_t *ctx, const sdio_test_config_t* config)
  511. {
  512. esp_err_t err;
  513. init_tx_buffer();
  514. slave_parepare_recv_buffer();
  515. int offset = 0;
  516. for (int i = 0; i < TEST_CNT; i++) {
  517. sdio_slave_buf_handle_t buf_handle;
  518. uint8_t* buf;
  519. size_t rcv_len;
  520. err = sdio_slave_recv(&buf_handle, &buf, &rcv_len, portMAX_DELAY);
  521. TEST_ESP_OK(err);
  522. if (config->check_data) {
  523. //compare until all received data are used
  524. int compared_len = 0;
  525. do {
  526. //get the expected master sent data, there may be several segments, so get and compare
  527. //several times
  528. uint8_t* cmp_start;
  529. int seg_len;
  530. get_master_send_data(offset, &cmp_start, &seg_len);
  531. int cmp_len = MIN(rcv_len-compared_len, seg_len);
  532. TEST_ASSERT_EQUAL_HEX8_ARRAY(cmp_start, &buf[compared_len], cmp_len);
  533. compared_len += cmp_len;
  534. offset += cmp_len;
  535. } while (compared_len < rcv_len);
  536. } else {
  537. offset += rcv_len;
  538. }
  539. err = sdio_slave_recv_load_buf(buf_handle);
  540. TEST_ESP_OK(err);
  541. }
  542. wait_for_finish(ctx);
  543. }
  544. static void slave_tx_rx_short_data(void)
  545. {
  546. esp_err_t err;
  547. for (int i = 0; i < 10; i++) {
  548. err = sdio_slave_send_queue(tx_buffer + 4*i, TEST_RESET_DATA_LEN, (void*)i, portMAX_DELAY);
  549. TEST_ESP_OK(err);
  550. }
  551. for (int i = 0; i < 10; i++) {
  552. uint8_t* addr;
  553. size_t size;
  554. sdio_slave_buf_handle_t recv_handle;
  555. err = sdio_slave_recv(&recv_handle, &addr, &size, portMAX_DELAY);
  556. TEST_ESP_OK(err);
  557. TEST_ASSERT_EQUAL(TEST_RESET_DATA_LEN, size);
  558. TEST_ASSERT_EQUAL_HEX8_ARRAY(tx_buffer+i*8, addr, size);
  559. }
  560. for (int i = 0; i < 10; i++) {
  561. void* arg;
  562. err = sdio_slave_send_get_finished(&arg, portMAX_DELAY);
  563. TEST_ESP_OK(err);
  564. TEST_ASSERT_EQUAL(i, arg);
  565. }
  566. }
  567. void test_reset_slave(slave_context_t *context, const sdio_test_config_t* config)
  568. {
  569. sdio_slave_stop();
  570. esp_err_t err = sdio_slave_reset();
  571. TEST_ESP_OK(err);
  572. err = sdio_slave_start();
  573. TEST_ESP_OK(err);
  574. init_tx_buffer();
  575. slave_parepare_recv_buffer();
  576. slave_tx_rx_short_data();
  577. wait_for_finish(context);
  578. }
  579. void test_sdio_reset_slave(void)
  580. {
  581. test_framework_slave(test_reset_slave, &packet_config);
  582. }
  583. TEST_CASE_MULTIPLE_DEVICES("sdio interrupt", "[sdio][test_env=UT_SDIO]", test_sdio_interrupt_master, test_sdio_interrupt_slave);
  584. TEST_CASE_MULTIPLE_DEVICES("sdio register", "[sdio][test_env=UT_SDIO]", test_sdio_reg_master, test_sdio_interrupt_slave);
  585. TEST_CASE_MULTIPLE_DEVICES("sdio reset", "[sdio][test_env=UT_SDIO]", test_sdio_reset_master, test_sdio_reset_slave);
  586. static void test_sdio_frhost_master(const void* pset, void* context)
  587. {
  588. test_framework_master(test_tp_frhost_master, pset);
  589. }
  590. static void test_sdio_frhost_slave(const void* pset, void* context)
  591. {
  592. test_framework_slave(test_tp_frhost_slave, pset);
  593. }
  594. static void test_sdio_tohost_master(const void* pset, void* context)
  595. {
  596. test_framework_master(test_tp_tohost_master, pset);
  597. }
  598. static void test_sdio_tohost_slave(const void* pset, void* context)
  599. {
  600. test_framework_slave(test_tp_tohost_slave, pset);
  601. }
  602. static void null_pre(void** arg)
  603. {
  604. }
  605. static void null_post(void* arg)
  606. {
  607. }
  608. ptest_func_t frhost_master = {
  609. .pre_test = null_pre,
  610. .loop = test_sdio_frhost_master,
  611. .post_test = null_post,
  612. };
  613. ptest_func_t frhost_slave = {
  614. .pre_test = null_pre,
  615. .loop = test_sdio_frhost_slave,
  616. .post_test = null_post,
  617. };
  618. PARAM_GROUP_DECLARE_TYPE(IO_MODE, sdio_test_config_t, test_cfg_array);
  619. TEST_MASTER_SLAVE(SDIO_FRHOST, test_cfg_array, "[sdio][timeout=180][test_env=UT_SDIO]", &frhost_master, &frhost_slave);
  620. ptest_func_t tohost_master = {
  621. .pre_test = null_pre,
  622. .loop = test_sdio_tohost_master,
  623. .post_test = null_post,
  624. };
  625. ptest_func_t tohost_slave = {
  626. .pre_test = null_pre,
  627. .loop = test_sdio_tohost_slave,
  628. .post_test = null_post,
  629. };
  630. TEST_MASTER_SLAVE(SDIO_TOHOST, test_cfg_array, "[sdio][timeout=180][test_env=UT_SDIO]", &tohost_master, &tohost_slave);
  631. #endif