msc_client_async_seq.c 10 KB

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  1. /*
  2. * SPDX-FileCopyrightText: 2015-2021 Espressif Systems (Shanghai) CO LTD
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. */
  6. #include <stdint.h>
  7. #include <string.h>
  8. #include <stdlib.h>
  9. #include <sys/param.h>
  10. #include "freertos/FreeRTOS.h"
  11. #include "freertos/task.h"
  12. #include "esp_err.h"
  13. #include "esp_log.h"
  14. #include "test_usb_common.h"
  15. #include "test_usb_mock_classes.h"
  16. #include "msc_client.h"
  17. #include "usb/usb_host.h"
  18. #include "unity.h"
  19. #include "test_utils.h"
  20. /*
  21. Implementation of an MSC client used for USB Host Tests
  22. - Implemented using sequential call patterns, meaning:
  23. - The entire client is contained within a single task
  24. - All API calls and callbacks are run sequentially
  25. - No critical sections required since everything is sequential
  26. - The MSC client will:
  27. - Register itself as a client
  28. - Receive USB_HOST_CLIENT_EVENT_NEW_DEV event message, and open the device
  29. - Allocate IN and OUT transfer objects for MSC SCSI transfers
  30. - Iterate through multiple MSC SCSI block reads
  31. - Free transfer objects
  32. - Close device
  33. - Deregister MSC client
  34. */
  35. typedef enum {
  36. TEST_STAGE_WAIT_CONN,
  37. TEST_STAGE_DEV_OPEN,
  38. TEST_STAGE_MSC_RESET,
  39. TEST_STAGE_MSC_CBW,
  40. TEST_STAGE_MSC_DATA,
  41. TEST_STAGE_MSC_CSW,
  42. TEST_STAGE_DEV_CLOSE,
  43. } test_stage_t;
  44. typedef struct {
  45. msc_client_test_param_t test_param;
  46. test_stage_t cur_stage;
  47. test_stage_t next_stage;
  48. uint8_t dev_addr_to_open;
  49. usb_host_client_handle_t client_hdl;
  50. usb_device_handle_t dev_hdl;
  51. int num_sectors_read;
  52. } msc_client_obj_t;
  53. static void msc_transfer_cb(usb_transfer_t *transfer)
  54. {
  55. msc_client_obj_t *msc_obj = (msc_client_obj_t *)transfer->context;
  56. switch (msc_obj->cur_stage) {
  57. case TEST_STAGE_MSC_RESET: {
  58. //Check MSC SCSI interface reset
  59. TEST_ASSERT_EQUAL(USB_TRANSFER_STATUS_COMPLETED, transfer->status);
  60. TEST_ASSERT_EQUAL(transfer->num_bytes, transfer->actual_num_bytes);
  61. msc_obj->next_stage = TEST_STAGE_MSC_CBW;
  62. break;
  63. }
  64. case TEST_STAGE_MSC_CBW: {
  65. //Check MSC SCSI CBW transfer
  66. TEST_ASSERT_EQUAL(USB_TRANSFER_STATUS_COMPLETED, transfer->status);
  67. TEST_ASSERT_EQUAL(sizeof(mock_msc_bulk_cbw_t), transfer->actual_num_bytes);
  68. msc_obj->next_stage = TEST_STAGE_MSC_DATA;
  69. break;
  70. }
  71. case TEST_STAGE_MSC_DATA: {
  72. //Check MSC SCSI data IN transfer
  73. TEST_ASSERT_EQUAL(USB_TRANSFER_STATUS_COMPLETED, transfer->status);
  74. TEST_ASSERT_EQUAL(MOCK_MSC_SCSI_SECTOR_SIZE * msc_obj->test_param.num_sectors_per_xfer, transfer->actual_num_bytes);
  75. msc_obj->next_stage = TEST_STAGE_MSC_CSW;
  76. break;
  77. }
  78. case TEST_STAGE_MSC_CSW: {
  79. //Check MSC SCSI CSW transfer
  80. TEST_ASSERT_EQUAL(USB_TRANSFER_STATUS_COMPLETED, transfer->status);
  81. TEST_ASSERT_EQUAL(true, mock_msc_scsi_check_csw((mock_msc_bulk_csw_t *)transfer->data_buffer, msc_obj->test_param.msc_scsi_xfer_tag));
  82. msc_obj->num_sectors_read += msc_obj->test_param.num_sectors_per_xfer;
  83. if (msc_obj->num_sectors_read < msc_obj->test_param.num_sectors_to_read) {
  84. msc_obj->next_stage = TEST_STAGE_MSC_CBW;
  85. } else {
  86. msc_obj->next_stage = TEST_STAGE_DEV_CLOSE;
  87. }
  88. break;
  89. }
  90. default: {
  91. abort();
  92. break;
  93. }
  94. }
  95. }
  96. static void msc_client_event_cb(const usb_host_client_event_msg_t *event_msg, void *arg)
  97. {
  98. msc_client_obj_t *msc_obj = (msc_client_obj_t *)arg;
  99. switch (event_msg->event) {
  100. case USB_HOST_CLIENT_EVENT_NEW_DEV:
  101. TEST_ASSERT_EQUAL(TEST_STAGE_WAIT_CONN, msc_obj->cur_stage);
  102. msc_obj->next_stage = TEST_STAGE_DEV_OPEN;
  103. msc_obj->dev_addr_to_open = event_msg->new_dev.address;
  104. break;
  105. default:
  106. abort(); //Should never occur in this test
  107. break;
  108. }
  109. }
  110. void msc_client_async_seq_task(void *arg)
  111. {
  112. msc_client_obj_t msc_obj;
  113. memcpy(&msc_obj.test_param, arg, sizeof(msc_client_test_param_t));
  114. msc_obj.cur_stage = TEST_STAGE_WAIT_CONN;
  115. msc_obj.next_stage = TEST_STAGE_WAIT_CONN;
  116. msc_obj.client_hdl = NULL;
  117. msc_obj.dev_addr_to_open = 0;
  118. msc_obj.dev_hdl = NULL;
  119. msc_obj.num_sectors_read = 0;
  120. //Register client
  121. usb_host_client_config_t client_config = {
  122. .is_synchronous = false,
  123. .max_num_event_msg = MSC_ASYNC_CLIENT_MAX_EVENT_MSGS,
  124. .async = {
  125. .client_event_callback = msc_client_event_cb,
  126. .callback_arg = (void *)&msc_obj,
  127. },
  128. };
  129. TEST_ASSERT_EQUAL(ESP_OK, usb_host_client_register(&client_config, &msc_obj.client_hdl));
  130. //Allocate transfers
  131. usb_transfer_t *xfer_out = NULL; //Must be large enough to contain CBW and MSC reset control transfer
  132. usb_transfer_t *xfer_in = NULL; //Must be large enough to contain CSW and Data
  133. size_t out_worst_case_size = MAX(sizeof(mock_msc_bulk_cbw_t), sizeof(usb_setup_packet_t));
  134. size_t in_worst_case_size = usb_round_up_to_mps(MAX(MOCK_MSC_SCSI_SECTOR_SIZE * msc_obj.test_param.num_sectors_per_xfer, sizeof(mock_msc_bulk_csw_t)), MOCK_MSC_SCSI_BULK_EP_MPS);
  135. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_alloc(out_worst_case_size, 0, &xfer_out));
  136. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_alloc(in_worst_case_size, 0, &xfer_in));
  137. xfer_out->callback = msc_transfer_cb;
  138. xfer_in->callback = msc_transfer_cb;
  139. xfer_out->context = (void *)&msc_obj;
  140. xfer_in->context = (void *)&msc_obj;
  141. //Wait to be started by main thread
  142. ulTaskNotifyTake(pdTRUE, portMAX_DELAY);
  143. ESP_LOGD(MSC_CLIENT_TAG, "Starting");
  144. bool exit_loop = false;
  145. bool skip_event_handling = false;
  146. while (!exit_loop) {
  147. if (!skip_event_handling) {
  148. TEST_ASSERT_EQUAL(ESP_OK, usb_host_client_handle_events(msc_obj.client_hdl, portMAX_DELAY));
  149. }
  150. skip_event_handling = false;
  151. if (msc_obj.cur_stage == msc_obj.next_stage) {
  152. continue;
  153. }
  154. msc_obj.cur_stage = msc_obj.next_stage;
  155. switch (msc_obj.cur_stage) {
  156. case TEST_STAGE_DEV_OPEN: {
  157. ESP_LOGD(MSC_CLIENT_TAG, "Open");
  158. //Open the device
  159. TEST_ASSERT_EQUAL(ESP_OK, usb_host_device_open(msc_obj.client_hdl, msc_obj.dev_addr_to_open, &msc_obj.dev_hdl));
  160. //Target our transfers to the device
  161. xfer_out->device_handle = msc_obj.dev_hdl;
  162. xfer_in->device_handle = msc_obj.dev_hdl;
  163. //Check the VID/PID of the opened device
  164. const usb_device_desc_t *device_desc;
  165. TEST_ASSERT_EQUAL(ESP_OK, usb_host_get_device_descriptor(msc_obj.dev_hdl, &device_desc));
  166. TEST_ASSERT_EQUAL(msc_obj.test_param.idVendor, device_desc->idVendor);
  167. TEST_ASSERT_EQUAL(msc_obj.test_param.idProduct, device_desc->idProduct);
  168. //Claim the MSC interface
  169. TEST_ASSERT_EQUAL(ESP_OK, usb_host_interface_claim(msc_obj.client_hdl, msc_obj.dev_hdl, MOCK_MSC_SCSI_INTF_NUMBER, MOCK_MSC_SCSI_INTF_ALT_SETTING));
  170. msc_obj.next_stage = TEST_STAGE_MSC_RESET;
  171. skip_event_handling = true; //Need to execute TEST_STAGE_MSC_RESET
  172. break;
  173. }
  174. case TEST_STAGE_MSC_RESET: {
  175. ESP_LOGD(MSC_CLIENT_TAG, "MSC Reset");
  176. //Send an MSC SCSI interface reset
  177. MOCK_MSC_SCSI_REQ_INIT_RESET((usb_setup_packet_t *)xfer_out->data_buffer, MOCK_MSC_SCSI_INTF_NUMBER);
  178. xfer_out->num_bytes = sizeof(usb_setup_packet_t);
  179. xfer_out->bEndpointAddress = 0;
  180. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_submit_control(msc_obj.client_hdl, xfer_out));
  181. //Next stage set from transfer callback
  182. break;
  183. }
  184. case TEST_STAGE_MSC_CBW: {
  185. ESP_LOGD(MSC_CLIENT_TAG, "CBW");
  186. mock_msc_scsi_init_cbw((mock_msc_bulk_cbw_t *)xfer_out->data_buffer, true, msc_obj.next_stage, msc_obj.test_param.num_sectors_per_xfer, msc_obj.test_param.msc_scsi_xfer_tag);
  187. xfer_out->num_bytes = sizeof(mock_msc_bulk_cbw_t);
  188. xfer_out->bEndpointAddress = MOCK_MSC_SCSI_BULK_OUT_EP_ADDR;
  189. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_submit(xfer_out));
  190. //Next stage set from transfer callback
  191. break;
  192. }
  193. case TEST_STAGE_MSC_DATA: {
  194. ESP_LOGD(MSC_CLIENT_TAG, "Data");
  195. xfer_in->num_bytes = usb_round_up_to_mps(MOCK_MSC_SCSI_SECTOR_SIZE * msc_obj.test_param.num_sectors_per_xfer, MOCK_MSC_SCSI_BULK_EP_MPS);
  196. xfer_in->bEndpointAddress = MOCK_MSC_SCSI_BULK_IN_EP_ADDR;
  197. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_submit(xfer_in));
  198. //Next stage set from transfer callback
  199. break;
  200. }
  201. case TEST_STAGE_MSC_CSW: {
  202. ESP_LOGD(MSC_CLIENT_TAG, "CSW");
  203. xfer_in->num_bytes = usb_round_up_to_mps(sizeof(mock_msc_bulk_csw_t), MOCK_MSC_SCSI_BULK_EP_MPS);
  204. xfer_in->bEndpointAddress = MOCK_MSC_SCSI_BULK_IN_EP_ADDR;
  205. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_submit(xfer_in));
  206. //Next stage set from transfer callback
  207. break;
  208. }
  209. case TEST_STAGE_DEV_CLOSE: {
  210. ESP_LOGD(MSC_CLIENT_TAG, "Close");
  211. TEST_ASSERT_EQUAL(ESP_OK, usb_host_interface_release(msc_obj.client_hdl, msc_obj.dev_hdl, MOCK_MSC_SCSI_INTF_NUMBER));
  212. TEST_ASSERT_EQUAL(ESP_OK, usb_host_device_close(msc_obj.client_hdl, msc_obj.dev_hdl));
  213. exit_loop = true;
  214. break;
  215. }
  216. default:
  217. abort();
  218. break;
  219. }
  220. }
  221. //Free transfers and deregister the client
  222. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_free(xfer_out));
  223. TEST_ASSERT_EQUAL(ESP_OK, usb_host_transfer_free(xfer_in));
  224. TEST_ASSERT_EQUAL(ESP_OK, usb_host_client_deregister(msc_obj.client_hdl));
  225. ESP_LOGD(MSC_CLIENT_TAG, "Done");
  226. vTaskDelete(NULL);
  227. }