usbd_msc.c 31 KB

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  1. /*
  2. * Copyright (c) 2022, sakumisu
  3. * Copyright (c) 2024, zhihong chen
  4. *
  5. * SPDX-License-Identifier: Apache-2.0
  6. */
  7. #include "usbd_core.h"
  8. #include "usbd_msc.h"
  9. #include "usb_scsi.h"
  10. #undef USB_DBG_TAG
  11. #define USB_DBG_TAG "usbd_msc"
  12. #include "usb_log.h"
  13. #define MSD_OUT_EP_IDX 0
  14. #define MSD_IN_EP_IDX 1
  15. /* Describe EndPoints configuration */
  16. static struct usbd_endpoint mass_ep_data[CONFIG_USBDEV_MAX_BUS][2];
  17. /* MSC Bulk-only Stage */
  18. enum Stage {
  19. MSC_READ_CBW = 0, /* Command Block Wrapper */
  20. MSC_DATA_OUT = 1, /* Data Out Phase */
  21. MSC_DATA_IN = 2, /* Data In Phase */
  22. MSC_SEND_CSW = 3, /* Command Status Wrapper */
  23. MSC_WAIT_CSW = 4, /* Command Status Wrapper */
  24. };
  25. /* Device data structure */
  26. USB_NOCACHE_RAM_SECTION struct usbd_msc_priv {
  27. /* state of the bulk-only state machine */
  28. enum Stage stage;
  29. USB_MEM_ALIGNX struct CBW cbw;
  30. USB_MEM_ALIGNX struct CSW csw;
  31. USB_MEM_ALIGNX bool readonly;
  32. bool popup;
  33. uint8_t sKey; /* Sense key */
  34. uint8_t ASC; /* Additional Sense Code */
  35. uint8_t ASQ; /* Additional Sense Qualifier */
  36. uint8_t max_lun;
  37. uint32_t start_sector;
  38. uint32_t nsectors;
  39. uint32_t scsi_blk_size[CONFIG_USBDEV_MSC_MAX_LUN];
  40. uint32_t scsi_blk_nbr[CONFIG_USBDEV_MSC_MAX_LUN];
  41. USB_MEM_ALIGNX uint8_t block_buffer[CONFIG_USBDEV_MSC_MAX_BUFSIZE];
  42. #if defined(CONFIG_USBDEV_MSC_THREAD)
  43. usb_osal_mq_t usbd_msc_mq;
  44. usb_osal_thread_t usbd_msc_thread;
  45. uint32_t nbytes;
  46. #elif defined(CONFIG_USBDEV_MSC_POLLING)
  47. uint32_t event;
  48. uint32_t nbytes;
  49. #endif
  50. } g_usbd_msc[CONFIG_USBDEV_MAX_BUS];
  51. #ifdef CONFIG_USBDEV_MSC_THREAD
  52. static void usbdev_msc_thread(CONFIG_USB_OSAL_THREAD_SET_ARGV);
  53. #endif
  54. static void usdb_msc_set_max_lun(uint8_t busid)
  55. {
  56. g_usbd_msc[busid].max_lun = CONFIG_USBDEV_MSC_MAX_LUN - 1u;
  57. }
  58. static void usbd_msc_reset(uint8_t busid)
  59. {
  60. g_usbd_msc[busid].stage = MSC_READ_CBW;
  61. g_usbd_msc[busid].readonly = false;
  62. }
  63. static int msc_storage_class_interface_request_handler(uint8_t busid, struct usb_setup_packet *setup, uint8_t **data, uint32_t *len)
  64. {
  65. USB_LOG_DBG("MSC Class request: "
  66. "bRequest 0x%02x\r\n",
  67. setup->bRequest);
  68. switch (setup->bRequest) {
  69. case MSC_REQUEST_RESET:
  70. usbd_msc_reset(busid);
  71. break;
  72. case MSC_REQUEST_GET_MAX_LUN:
  73. (*data)[0] = g_usbd_msc[busid].max_lun;
  74. *len = 1;
  75. break;
  76. default:
  77. return -1;
  78. }
  79. return 0;
  80. }
  81. void msc_storage_notify_handler(uint8_t busid, uint8_t event, void *arg)
  82. {
  83. (void)arg;
  84. switch (event) {
  85. case USBD_EVENT_INIT:
  86. #if defined(CONFIG_USBDEV_MSC_THREAD)
  87. g_usbd_msc[busid].usbd_msc_mq = usb_osal_mq_create(1);
  88. if (g_usbd_msc[busid].usbd_msc_mq == NULL) {
  89. USB_LOG_ERR("No memory to alloc for g_usbd_msc[busid].usbd_msc_mq\r\n");
  90. }
  91. g_usbd_msc[busid].usbd_msc_thread = usb_osal_thread_create("usbd_msc", CONFIG_USBDEV_MSC_STACKSIZE, CONFIG_USBDEV_MSC_PRIO, usbdev_msc_thread, (void *)(uint32_t)busid);
  92. if (g_usbd_msc[busid].usbd_msc_thread == NULL) {
  93. USB_LOG_ERR("No memory to alloc for g_usbd_msc[busid].usbd_msc_thread\r\n");
  94. }
  95. #elif defined(CONFIG_USBDEV_MSC_POLLING)
  96. g_usbd_msc[busid].event = 0;
  97. #endif
  98. break;
  99. case USBD_EVENT_DEINIT:
  100. #if defined(CONFIG_USBDEV_MSC_THREAD)
  101. if (g_usbd_msc[busid].usbd_msc_mq) {
  102. usb_osal_mq_delete(g_usbd_msc[busid].usbd_msc_mq);
  103. }
  104. if (g_usbd_msc[busid].usbd_msc_thread) {
  105. usb_osal_thread_delete(g_usbd_msc[busid].usbd_msc_thread);
  106. }
  107. #endif
  108. break;
  109. case USBD_EVENT_RESET:
  110. usbd_msc_reset(busid);
  111. break;
  112. case USBD_EVENT_CONFIGURED:
  113. USB_LOG_DBG("Start reading cbw\r\n");
  114. usbd_ep_start_read(busid, mass_ep_data[busid][MSD_OUT_EP_IDX].ep_addr, (uint8_t *)&g_usbd_msc[busid].cbw, USB_SIZEOF_MSC_CBW);
  115. break;
  116. default:
  117. break;
  118. }
  119. }
  120. static void usbd_msc_bot_abort(uint8_t busid)
  121. {
  122. if ((g_usbd_msc[busid].cbw.bmFlags == 0) && (g_usbd_msc[busid].cbw.dDataLength != 0)) {
  123. usbd_ep_set_stall(busid, mass_ep_data[busid][MSD_OUT_EP_IDX].ep_addr);
  124. }
  125. usbd_ep_set_stall(busid, mass_ep_data[busid][MSD_IN_EP_IDX].ep_addr);
  126. usbd_ep_start_read(busid, mass_ep_data[busid][0].ep_addr, (uint8_t *)&g_usbd_msc[busid].cbw, USB_SIZEOF_MSC_CBW);
  127. }
  128. static void usbd_msc_send_csw(uint8_t busid, uint8_t CSW_Status)
  129. {
  130. g_usbd_msc[busid].csw.dSignature = MSC_CSW_Signature;
  131. g_usbd_msc[busid].csw.bStatus = CSW_Status;
  132. /* updating the State Machine , so that we wait CSW when this
  133. * transfer is complete, ie when we get a bulk in callback
  134. */
  135. g_usbd_msc[busid].stage = MSC_WAIT_CSW;
  136. USB_LOG_DBG("Send csw\r\n");
  137. usbd_ep_start_write(busid, mass_ep_data[busid][MSD_IN_EP_IDX].ep_addr, (uint8_t *)&g_usbd_msc[busid].csw, sizeof(struct CSW));
  138. }
  139. static void usbd_msc_send_info(uint8_t busid, uint8_t *buffer, uint8_t size)
  140. {
  141. size = MIN(size, g_usbd_msc[busid].cbw.dDataLength);
  142. /* updating the State Machine , so that we send CSW when this
  143. * transfer is complete, ie when we get a bulk in callback
  144. */
  145. g_usbd_msc[busid].stage = MSC_SEND_CSW;
  146. usbd_ep_start_write(busid, mass_ep_data[busid][MSD_IN_EP_IDX].ep_addr, buffer, size);
  147. g_usbd_msc[busid].csw.dDataResidue -= size;
  148. g_usbd_msc[busid].csw.bStatus = CSW_STATUS_CMD_PASSED;
  149. }
  150. static bool SCSI_processWrite(uint8_t busid, uint32_t nbytes);
  151. static bool SCSI_processRead(uint8_t busid);
  152. /**
  153. * @brief SCSI_SetSenseData
  154. * Load the last error code in the error list
  155. * @param sKey: Sense Key
  156. * @param ASC: Additional Sense Code
  157. * @retval none
  158. */
  159. static void SCSI_SetSenseData(uint8_t busid, uint32_t KCQ)
  160. {
  161. g_usbd_msc[busid].sKey = (uint8_t)(KCQ >> 16);
  162. g_usbd_msc[busid].ASC = (uint8_t)(KCQ >> 8);
  163. g_usbd_msc[busid].ASQ = (uint8_t)(KCQ);
  164. }
  165. /**
  166. * @brief SCSI Command list
  167. *
  168. */
  169. static bool SCSI_testUnitReady(uint8_t busid, uint8_t **data, uint32_t *len)
  170. {
  171. if (g_usbd_msc[busid].cbw.dDataLength != 0U) {
  172. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  173. return false;
  174. }
  175. *data = NULL;
  176. *len = 0;
  177. return true;
  178. }
  179. static bool SCSI_requestSense(uint8_t busid, uint8_t **data, uint32_t *len)
  180. {
  181. uint8_t data_len = SCSIRESP_FIXEDSENSEDATA_SIZEOF;
  182. if (g_usbd_msc[busid].cbw.dDataLength == 0U) {
  183. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  184. return false;
  185. }
  186. if (g_usbd_msc[busid].cbw.CB[4] < SCSIRESP_FIXEDSENSEDATA_SIZEOF) {
  187. data_len = g_usbd_msc[busid].cbw.CB[4];
  188. }
  189. uint8_t request_sense[SCSIRESP_FIXEDSENSEDATA_SIZEOF] = {
  190. 0x70,
  191. 0x00,
  192. 0x00, /* Sense Key */
  193. 0x00,
  194. 0x00,
  195. 0x00,
  196. 0x00,
  197. SCSIRESP_FIXEDSENSEDATA_SIZEOF - 8,
  198. 0x00,
  199. 0x00,
  200. 0x00,
  201. 0x00,
  202. 0x00, /* Additional Sense Code */
  203. 0x00, /* Additional Sense Request */
  204. 0x00,
  205. 0x00,
  206. 0x00,
  207. 0x00,
  208. };
  209. request_sense[2] = g_usbd_msc[busid].sKey;
  210. request_sense[12] = g_usbd_msc[busid].ASC;
  211. request_sense[13] = g_usbd_msc[busid].ASQ;
  212. #if 0
  213. request_sense[ 2] = 0x06; /* UNIT ATTENTION */
  214. request_sense[12] = 0x28; /* Additional Sense Code: Not ready to ready transition */
  215. request_sense[13] = 0x00; /* Additional Sense Code Qualifier */
  216. #endif
  217. #if 0
  218. request_sense[ 2] = 0x02; /* NOT READY */
  219. request_sense[12] = 0x3A; /* Additional Sense Code: Medium not present */
  220. request_sense[13] = 0x00; /* Additional Sense Code Qualifier */
  221. #endif
  222. #if 0
  223. request_sense[ 2] = 0x05; /* ILLEGAL REQUEST */
  224. request_sense[12] = 0x20; /* Additional Sense Code: Invalid command */
  225. request_sense[13] = 0x00; /* Additional Sense Code Qualifier */
  226. #endif
  227. #if 0
  228. request_sense[ 2] = 0x00; /* NO SENSE */
  229. request_sense[12] = 0x00; /* Additional Sense Code: No additional code */
  230. request_sense[13] = 0x00; /* Additional Sense Code Qualifier */
  231. #endif
  232. memcpy(*data, (uint8_t *)request_sense, data_len);
  233. *len = data_len;
  234. return true;
  235. }
  236. static bool SCSI_inquiry(uint8_t busid, uint8_t **data, uint32_t *len)
  237. {
  238. uint8_t data_len = SCSIRESP_INQUIRY_SIZEOF;
  239. uint8_t inquiry00[6] = {
  240. 0x00,
  241. 0x00,
  242. 0x00,
  243. (0x06 - 4U),
  244. 0x00,
  245. 0x80
  246. };
  247. /* USB Mass storage VPD Page 0x80 Inquiry Data for Unit Serial Number */
  248. uint8_t inquiry80[8] = {
  249. 0x00,
  250. 0x80,
  251. 0x00,
  252. 0x08,
  253. 0x20, /* Put Product Serial number */
  254. 0x20,
  255. 0x20,
  256. 0x20
  257. };
  258. uint8_t inquiry[SCSIRESP_INQUIRY_SIZEOF] = {
  259. /* 36 */
  260. /* LUN 0 */
  261. 0x00,
  262. 0x80,
  263. 0x02,
  264. 0x02,
  265. (SCSIRESP_INQUIRY_SIZEOF - 5),
  266. 0x00,
  267. 0x00,
  268. 0x00,
  269. ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', /* Manufacturer : 8 bytes */
  270. ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', /* Product : 16 Bytes */
  271. ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ',
  272. ' ', ' ', ' ', ' ' /* Version : 4 Bytes */
  273. };
  274. memcpy(&inquiry[8], CONFIG_USBDEV_MSC_MANUFACTURER_STRING, strlen(CONFIG_USBDEV_MSC_MANUFACTURER_STRING));
  275. memcpy(&inquiry[16], CONFIG_USBDEV_MSC_PRODUCT_STRING, strlen(CONFIG_USBDEV_MSC_PRODUCT_STRING));
  276. memcpy(&inquiry[32], CONFIG_USBDEV_MSC_VERSION_STRING, strlen(CONFIG_USBDEV_MSC_VERSION_STRING));
  277. if (g_usbd_msc[busid].cbw.dDataLength == 0U) {
  278. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  279. return false;
  280. }
  281. if ((g_usbd_msc[busid].cbw.CB[1] & 0x01U) != 0U) { /* Evpd is set */
  282. if (g_usbd_msc[busid].cbw.CB[2] == 0U) { /* Request for Supported Vital Product Data Pages*/
  283. data_len = 0x06;
  284. memcpy(*data, (uint8_t *)inquiry00, data_len);
  285. } else if (g_usbd_msc[busid].cbw.CB[2] == 0x80U) { /* Request for VPD page 0x80 Unit Serial Number */
  286. data_len = 0x08;
  287. memcpy(*data, (uint8_t *)inquiry80, data_len);
  288. } else { /* Request Not supported */
  289. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDFIELDINCBA);
  290. return false;
  291. }
  292. } else {
  293. if (g_usbd_msc[busid].cbw.CB[4] < SCSIRESP_INQUIRY_SIZEOF) {
  294. data_len = g_usbd_msc[busid].cbw.CB[4];
  295. }
  296. memcpy(*data, (uint8_t *)inquiry, data_len);
  297. }
  298. *len = data_len;
  299. return true;
  300. }
  301. static bool SCSI_startStopUnit(uint8_t busid, uint8_t **data, uint32_t *len)
  302. {
  303. if (g_usbd_msc[busid].cbw.dDataLength != 0U) {
  304. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  305. return false;
  306. }
  307. if ((g_usbd_msc[busid].cbw.CB[4] & 0x3U) == 0x1U) /* START=1 */
  308. {
  309. //SCSI_MEDIUM_UNLOCKED;
  310. } else if ((g_usbd_msc[busid].cbw.CB[4] & 0x3U) == 0x2U) /* START=0 and LOEJ Load Eject=1 */
  311. {
  312. //SCSI_MEDIUM_EJECTED;
  313. g_usbd_msc[busid].popup = true;
  314. } else if ((g_usbd_msc[busid].cbw.CB[4] & 0x3U) == 0x3U) /* START=1 and LOEJ Load Eject=1 */
  315. {
  316. //SCSI_MEDIUM_UNLOCKED;
  317. } else {
  318. }
  319. *data = NULL;
  320. *len = 0;
  321. return true;
  322. }
  323. static bool SCSI_preventAllowMediaRemoval(uint8_t busid, uint8_t **data, uint32_t *len)
  324. {
  325. if (g_usbd_msc[busid].cbw.dDataLength != 0U) {
  326. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  327. return false;
  328. }
  329. if (g_usbd_msc[busid].cbw.CB[4] == 0U) {
  330. //SCSI_MEDIUM_UNLOCKED;
  331. } else {
  332. //SCSI_MEDIUM_LOCKED;
  333. }
  334. *data = NULL;
  335. *len = 0;
  336. return true;
  337. }
  338. static bool SCSI_modeSense6(uint8_t busid, uint8_t **data, uint32_t *len)
  339. {
  340. uint8_t data_len = 4;
  341. if (g_usbd_msc[busid].cbw.dDataLength == 0U) {
  342. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  343. return false;
  344. }
  345. if (g_usbd_msc[busid].cbw.CB[4] < SCSIRESP_MODEPARAMETERHDR6_SIZEOF) {
  346. data_len = g_usbd_msc[busid].cbw.CB[4];
  347. }
  348. uint8_t sense6[SCSIRESP_MODEPARAMETERHDR6_SIZEOF] = { 0x03, 0x00, 0x00, 0x00 };
  349. if (g_usbd_msc[busid].readonly) {
  350. sense6[2] = 0x80;
  351. }
  352. memcpy(*data, (uint8_t *)sense6, data_len);
  353. *len = data_len;
  354. return true;
  355. }
  356. static bool SCSI_modeSense10(uint8_t busid, uint8_t **data, uint32_t *len)
  357. {
  358. uint8_t data_len = 27;
  359. if (g_usbd_msc[busid].cbw.dDataLength == 0U) {
  360. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  361. return false;
  362. }
  363. if (g_usbd_msc[busid].cbw.CB[8] < 27) {
  364. data_len = g_usbd_msc[busid].cbw.CB[8];
  365. }
  366. uint8_t sense10[27] = {
  367. 0x00,
  368. 0x26,
  369. 0x00,
  370. 0x00,
  371. 0x00,
  372. 0x00,
  373. 0x00,
  374. 0x00,
  375. 0x08,
  376. 0x12,
  377. 0x00,
  378. 0x00,
  379. 0x00,
  380. 0x00,
  381. 0x00,
  382. 0x00,
  383. 0x00,
  384. 0x00,
  385. 0x00,
  386. 0x00,
  387. 0x00,
  388. 0x00,
  389. 0x00,
  390. 0x00,
  391. 0x00,
  392. 0x00,
  393. 0x00
  394. };
  395. memcpy(*data, (uint8_t *)sense10, data_len);
  396. *len = data_len;
  397. return true;
  398. }
  399. static bool SCSI_readFormatCapacity(uint8_t busid, uint8_t **data, uint32_t *len)
  400. {
  401. if (g_usbd_msc[busid].cbw.dDataLength == 0U) {
  402. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  403. return false;
  404. }
  405. uint8_t format_capacity[SCSIRESP_READFORMATCAPACITIES_SIZEOF] = {
  406. 0x00,
  407. 0x00,
  408. 0x00,
  409. 0x08, /* Capacity List Length */
  410. (uint8_t)((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] >> 24) & 0xff),
  411. (uint8_t)((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] >> 16) & 0xff),
  412. (uint8_t)((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] >> 8) & 0xff),
  413. (uint8_t)((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] >> 0) & 0xff),
  414. 0x02, /* Descriptor Code: Formatted Media */
  415. 0x00,
  416. (uint8_t)((g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN] >> 8) & 0xff),
  417. (uint8_t)((g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN] >> 0) & 0xff),
  418. };
  419. memcpy(*data, (uint8_t *)format_capacity, SCSIRESP_READFORMATCAPACITIES_SIZEOF);
  420. *len = SCSIRESP_READFORMATCAPACITIES_SIZEOF;
  421. return true;
  422. }
  423. static bool SCSI_readCapacity10(uint8_t busid, uint8_t **data, uint32_t *len)
  424. {
  425. if (g_usbd_msc[busid].cbw.dDataLength == 0U) {
  426. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  427. return false;
  428. }
  429. uint8_t capacity10[SCSIRESP_READCAPACITY10_SIZEOF] = {
  430. (uint8_t)(((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] - 1) >> 24) & 0xff),
  431. (uint8_t)(((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] - 1) >> 16) & 0xff),
  432. (uint8_t)(((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] - 1) >> 8) & 0xff),
  433. (uint8_t)(((g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN] - 1) >> 0) & 0xff),
  434. (uint8_t)((g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN] >> 24) & 0xff),
  435. (uint8_t)((g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN] >> 16) & 0xff),
  436. (uint8_t)((g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN] >> 8) & 0xff),
  437. (uint8_t)((g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN] >> 0) & 0xff),
  438. };
  439. memcpy(*data, (uint8_t *)capacity10, SCSIRESP_READCAPACITY10_SIZEOF);
  440. *len = SCSIRESP_READCAPACITY10_SIZEOF;
  441. return true;
  442. }
  443. static bool SCSI_read10(uint8_t busid, uint8_t **data, uint32_t *len)
  444. {
  445. (void)data;
  446. (void)len;
  447. if (((g_usbd_msc[busid].cbw.bmFlags & 0x80U) != 0x80U) || (g_usbd_msc[busid].cbw.dDataLength == 0U)) {
  448. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  449. return false;
  450. }
  451. g_usbd_msc[busid].start_sector = GET_BE32(&g_usbd_msc[busid].cbw.CB[2]); /* Logical Block Address of First Block */
  452. g_usbd_msc[busid].nsectors = GET_BE16(&g_usbd_msc[busid].cbw.CB[7]); /* Number of Blocks to transfer */
  453. if ((g_usbd_msc[busid].start_sector + g_usbd_msc[busid].nsectors) > g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN]) {
  454. SCSI_SetSenseData(busid, SCSI_KCQIR_LBAOUTOFRANGE);
  455. return false;
  456. }
  457. if (g_usbd_msc[busid].cbw.dDataLength != (g_usbd_msc[busid].nsectors * g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN])) {
  458. return false;
  459. }
  460. g_usbd_msc[busid].stage = MSC_DATA_IN;
  461. #if defined(CONFIG_USBDEV_MSC_THREAD)
  462. usb_osal_mq_send(g_usbd_msc[busid].usbd_msc_mq, MSC_DATA_IN);
  463. return true;
  464. #elif defined(CONFIG_USBDEV_MSC_POLLING)
  465. g_usbd_msc[busid].event = MSC_DATA_IN;
  466. return true;
  467. #else
  468. return SCSI_processRead(busid);
  469. #endif
  470. }
  471. static bool SCSI_read12(uint8_t busid, uint8_t **data, uint32_t *len)
  472. {
  473. (void)data;
  474. (void)len;
  475. if (((g_usbd_msc[busid].cbw.bmFlags & 0x80U) != 0x80U) || (g_usbd_msc[busid].cbw.dDataLength == 0U)) {
  476. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  477. return false;
  478. }
  479. g_usbd_msc[busid].start_sector = GET_BE32(&g_usbd_msc[busid].cbw.CB[2]); /* Logical Block Address of First Block */
  480. g_usbd_msc[busid].nsectors = GET_BE32(&g_usbd_msc[busid].cbw.CB[6]); /* Number of Blocks to transfer */
  481. if ((g_usbd_msc[busid].start_sector + g_usbd_msc[busid].nsectors) > g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN]) {
  482. SCSI_SetSenseData(busid, SCSI_KCQIR_LBAOUTOFRANGE);
  483. return false;
  484. }
  485. if (g_usbd_msc[busid].cbw.dDataLength != (g_usbd_msc[busid].nsectors * g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN])) {
  486. return false;
  487. }
  488. g_usbd_msc[busid].stage = MSC_DATA_IN;
  489. #if defined(CONFIG_USBDEV_MSC_THREAD)
  490. usb_osal_mq_send(g_usbd_msc[busid].usbd_msc_mq, MSC_DATA_IN);
  491. return true;
  492. #elif defined(CONFIG_USBDEV_MSC_POLLING)
  493. g_usbd_msc[busid].event = MSC_DATA_IN;
  494. return true;
  495. #else
  496. return SCSI_processRead(busid);
  497. #endif
  498. }
  499. static bool SCSI_write10(uint8_t busid, uint8_t **data, uint32_t *len)
  500. {
  501. uint32_t data_len = 0;
  502. (void)data;
  503. (void)len;
  504. if (((g_usbd_msc[busid].cbw.bmFlags & 0x80U) != 0x00U) || (g_usbd_msc[busid].cbw.dDataLength == 0U)) {
  505. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  506. return false;
  507. }
  508. g_usbd_msc[busid].start_sector = GET_BE32(&g_usbd_msc[busid].cbw.CB[2]); /* Logical Block Address of First Block */
  509. g_usbd_msc[busid].nsectors = GET_BE16(&g_usbd_msc[busid].cbw.CB[7]); /* Number of Blocks to transfer */
  510. data_len = g_usbd_msc[busid].nsectors * g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN];
  511. if ((g_usbd_msc[busid].start_sector + g_usbd_msc[busid].nsectors) > g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN]) {
  512. return false;
  513. }
  514. if (g_usbd_msc[busid].cbw.dDataLength != data_len) {
  515. return false;
  516. }
  517. g_usbd_msc[busid].stage = MSC_DATA_OUT;
  518. data_len = MIN(data_len, CONFIG_USBDEV_MSC_MAX_BUFSIZE);
  519. usbd_ep_start_read(busid, mass_ep_data[busid][MSD_OUT_EP_IDX].ep_addr, g_usbd_msc[busid].block_buffer, data_len);
  520. return true;
  521. }
  522. static bool SCSI_write12(uint8_t busid, uint8_t **data, uint32_t *len)
  523. {
  524. uint32_t data_len = 0;
  525. (void)data;
  526. (void)len;
  527. if (((g_usbd_msc[busid].cbw.bmFlags & 0x80U) != 0x00U) || (g_usbd_msc[busid].cbw.dDataLength == 0U)) {
  528. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  529. return false;
  530. }
  531. g_usbd_msc[busid].start_sector = GET_BE32(&g_usbd_msc[busid].cbw.CB[2]); /* Logical Block Address of First Block */
  532. g_usbd_msc[busid].nsectors = GET_BE32(&g_usbd_msc[busid].cbw.CB[6]); /* Number of Blocks to transfer */
  533. data_len = g_usbd_msc[busid].nsectors * g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN];
  534. if ((g_usbd_msc[busid].start_sector + g_usbd_msc[busid].nsectors) > g_usbd_msc[busid].scsi_blk_nbr[g_usbd_msc[busid].cbw.bLUN]) {
  535. return false;
  536. }
  537. if (g_usbd_msc[busid].cbw.dDataLength != data_len) {
  538. return false;
  539. }
  540. g_usbd_msc[busid].stage = MSC_DATA_OUT;
  541. data_len = MIN(data_len, CONFIG_USBDEV_MSC_MAX_BUFSIZE);
  542. usbd_ep_start_read(busid, mass_ep_data[busid][MSD_OUT_EP_IDX].ep_addr, g_usbd_msc[busid].block_buffer, data_len);
  543. return true;
  544. }
  545. static bool SCSI_processRead(uint8_t busid)
  546. {
  547. uint32_t transfer_len;
  548. USB_LOG_DBG("read lba:%d\r\n", g_usbd_msc[busid].start_sector);
  549. transfer_len = MIN(g_usbd_msc[busid].nsectors * g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN], CONFIG_USBDEV_MSC_MAX_BUFSIZE);
  550. if (usbd_msc_sector_read(busid, g_usbd_msc[busid].cbw.bLUN, g_usbd_msc[busid].start_sector, g_usbd_msc[busid].block_buffer, transfer_len) != 0) {
  551. SCSI_SetSenseData(busid, SCSI_KCQHE_UREINRESERVEDAREA);
  552. return false;
  553. }
  554. g_usbd_msc[busid].start_sector += (transfer_len / g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN]);
  555. g_usbd_msc[busid].nsectors -= (transfer_len / g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN]);
  556. g_usbd_msc[busid].csw.dDataResidue -= transfer_len;
  557. if (g_usbd_msc[busid].nsectors == 0) {
  558. g_usbd_msc[busid].stage = MSC_SEND_CSW;
  559. }
  560. usbd_ep_start_write(busid, mass_ep_data[busid][MSD_IN_EP_IDX].ep_addr, g_usbd_msc[busid].block_buffer, transfer_len);
  561. return true;
  562. }
  563. static bool SCSI_processWrite(uint8_t busid, uint32_t nbytes)
  564. {
  565. uint32_t data_len = 0;
  566. USB_LOG_DBG("write lba:%d\r\n", g_usbd_msc[busid].start_sector);
  567. if (usbd_msc_sector_write(busid, g_usbd_msc[busid].cbw.bLUN, g_usbd_msc[busid].start_sector, g_usbd_msc[busid].block_buffer, nbytes) != 0) {
  568. SCSI_SetSenseData(busid, SCSI_KCQHE_WRITEFAULT);
  569. return false;
  570. }
  571. g_usbd_msc[busid].start_sector += (nbytes / g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN]);
  572. g_usbd_msc[busid].nsectors -= (nbytes / g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN]);
  573. g_usbd_msc[busid].csw.dDataResidue -= nbytes;
  574. if (g_usbd_msc[busid].nsectors == 0) {
  575. usbd_msc_send_csw(busid, CSW_STATUS_CMD_PASSED);
  576. } else {
  577. data_len = MIN(g_usbd_msc[busid].nsectors * g_usbd_msc[busid].scsi_blk_size[g_usbd_msc[busid].cbw.bLUN], CONFIG_USBDEV_MSC_MAX_BUFSIZE);
  578. usbd_ep_start_read(busid, mass_ep_data[busid][MSD_OUT_EP_IDX].ep_addr, g_usbd_msc[busid].block_buffer, data_len);
  579. }
  580. return true;
  581. }
  582. static bool SCSI_CBWDecode(uint8_t busid, uint32_t nbytes)
  583. {
  584. uint8_t *buf2send = g_usbd_msc[busid].block_buffer;
  585. uint32_t len2send = 0;
  586. bool ret = false;
  587. if (nbytes != sizeof(struct CBW)) {
  588. USB_LOG_ERR("size != sizeof(cbw)\r\n");
  589. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  590. return false;
  591. }
  592. g_usbd_msc[busid].csw.dTag = g_usbd_msc[busid].cbw.dTag;
  593. g_usbd_msc[busid].csw.dDataResidue = g_usbd_msc[busid].cbw.dDataLength;
  594. if ((g_usbd_msc[busid].cbw.dSignature != MSC_CBW_Signature) || (g_usbd_msc[busid].cbw.bCBLength < 1) || (g_usbd_msc[busid].cbw.bCBLength > 16)) {
  595. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  596. return false;
  597. } else {
  598. USB_LOG_DBG("Decode CB:0x%02x\r\n", g_usbd_msc[busid].cbw.CB[0]);
  599. switch (g_usbd_msc[busid].cbw.CB[0]) {
  600. case SCSI_CMD_TESTUNITREADY:
  601. ret = SCSI_testUnitReady(busid, &buf2send, &len2send);
  602. break;
  603. case SCSI_CMD_REQUESTSENSE:
  604. ret = SCSI_requestSense(busid, &buf2send, &len2send);
  605. break;
  606. case SCSI_CMD_INQUIRY:
  607. ret = SCSI_inquiry(busid, &buf2send, &len2send);
  608. break;
  609. case SCSI_CMD_STARTSTOPUNIT:
  610. ret = SCSI_startStopUnit(busid, &buf2send, &len2send);
  611. break;
  612. case SCSI_CMD_PREVENTMEDIAREMOVAL:
  613. ret = SCSI_preventAllowMediaRemoval(busid, &buf2send, &len2send);
  614. break;
  615. case SCSI_CMD_MODESENSE6:
  616. ret = SCSI_modeSense6(busid, &buf2send, &len2send);
  617. break;
  618. case SCSI_CMD_MODESENSE10:
  619. ret = SCSI_modeSense10(busid, &buf2send, &len2send);
  620. break;
  621. case SCSI_CMD_READFORMATCAPACITIES:
  622. ret = SCSI_readFormatCapacity(busid, &buf2send, &len2send);
  623. break;
  624. case SCSI_CMD_READCAPACITY10:
  625. ret = SCSI_readCapacity10(busid, &buf2send, &len2send);
  626. break;
  627. case SCSI_CMD_READ10:
  628. ret = SCSI_read10(busid, NULL, 0);
  629. break;
  630. case SCSI_CMD_READ12:
  631. ret = SCSI_read12(busid, NULL, 0);
  632. break;
  633. case SCSI_CMD_WRITE10:
  634. ret = SCSI_write10(busid, NULL, 0);
  635. break;
  636. case SCSI_CMD_WRITE12:
  637. ret = SCSI_write12(busid, NULL, 0);
  638. break;
  639. case SCSI_CMD_VERIFY10:
  640. ret = false;
  641. break;
  642. case SCSI_CMD_SYNCHCACHE10:
  643. ret = true;
  644. break;
  645. default:
  646. SCSI_SetSenseData(busid, SCSI_KCQIR_INVALIDCOMMAND);
  647. ret = false;
  648. break;
  649. }
  650. }
  651. if (ret) {
  652. if (g_usbd_msc[busid].stage == MSC_READ_CBW) {
  653. if (len2send) {
  654. USB_LOG_DBG("Send info len: %d\r\n", len2send);
  655. usbd_msc_send_info(busid, buf2send, len2send);
  656. } else {
  657. usbd_msc_send_csw(busid, CSW_STATUS_CMD_PASSED);
  658. }
  659. }
  660. }
  661. return ret;
  662. }
  663. void mass_storage_bulk_out(uint8_t busid, uint8_t ep, uint32_t nbytes)
  664. {
  665. (void)ep;
  666. switch (g_usbd_msc[busid].stage) {
  667. case MSC_READ_CBW:
  668. if (SCSI_CBWDecode(busid, nbytes) == false) {
  669. USB_LOG_ERR("Command: 0x%02x decode err\r\n", g_usbd_msc[busid].cbw.CB[0]);
  670. usbd_msc_bot_abort(busid);
  671. return;
  672. }
  673. break;
  674. case MSC_DATA_OUT:
  675. switch (g_usbd_msc[busid].cbw.CB[0]) {
  676. case SCSI_CMD_WRITE10:
  677. case SCSI_CMD_WRITE12:
  678. #if defined(CONFIG_USBDEV_MSC_THREAD)
  679. g_usbd_msc[busid].nbytes = nbytes;
  680. usb_osal_mq_send(g_usbd_msc[busid].usbd_msc_mq, MSC_DATA_OUT);
  681. #elif defined(CONFIG_USBDEV_MSC_POLLING)
  682. g_usbd_msc[busid].nbytes = nbytes;
  683. g_usbd_msc[busid].event = MSC_DATA_OUT;
  684. #else
  685. if (SCSI_processWrite(busid, nbytes) == false) {
  686. usbd_msc_send_csw(busid, CSW_STATUS_CMD_FAILED); /* send fail status to host,and the host will retry*/
  687. }
  688. #endif
  689. break;
  690. default:
  691. break;
  692. }
  693. break;
  694. default:
  695. break;
  696. }
  697. }
  698. void mass_storage_bulk_in(uint8_t busid, uint8_t ep, uint32_t nbytes)
  699. {
  700. (void)ep;
  701. (void)nbytes;
  702. switch (g_usbd_msc[busid].stage) {
  703. case MSC_DATA_IN:
  704. switch (g_usbd_msc[busid].cbw.CB[0]) {
  705. case SCSI_CMD_READ10:
  706. case SCSI_CMD_READ12:
  707. #if defined(CONFIG_USBDEV_MSC_THREAD)
  708. usb_osal_mq_send(g_usbd_msc[busid].usbd_msc_mq, MSC_DATA_IN);
  709. #elif defined(CONFIG_USBDEV_MSC_POLLING)
  710. g_usbd_msc[busid].event = MSC_DATA_IN;
  711. #else
  712. if (SCSI_processRead(busid) == false) {
  713. usbd_msc_send_csw(busid, CSW_STATUS_CMD_FAILED); /* send fail status to host,and the host will retry*/
  714. return;
  715. }
  716. #endif
  717. break;
  718. default:
  719. break;
  720. }
  721. break;
  722. /*the device has to send a CSW*/
  723. case MSC_SEND_CSW:
  724. usbd_msc_send_csw(busid, CSW_STATUS_CMD_PASSED);
  725. break;
  726. /*the host has received the CSW*/
  727. case MSC_WAIT_CSW:
  728. g_usbd_msc[busid].stage = MSC_READ_CBW;
  729. USB_LOG_DBG("Start reading cbw\r\n");
  730. usbd_ep_start_read(busid, mass_ep_data[busid][MSD_OUT_EP_IDX].ep_addr, (uint8_t *)&g_usbd_msc[busid].cbw, USB_SIZEOF_MSC_CBW);
  731. break;
  732. default:
  733. break;
  734. }
  735. }
  736. #if defined(CONFIG_USBDEV_MSC_THREAD)
  737. static void usbdev_msc_thread(CONFIG_USB_OSAL_THREAD_SET_ARGV)
  738. {
  739. uintptr_t event;
  740. int ret;
  741. uint8_t busid = (uint8_t)CONFIG_USB_OSAL_THREAD_GET_ARGV;
  742. while (1) {
  743. ret = usb_osal_mq_recv(g_usbd_msc[busid].usbd_msc_mq, (uintptr_t *)&event, USB_OSAL_WAITING_FOREVER);
  744. if (ret < 0) {
  745. continue;
  746. }
  747. if (event == MSC_DATA_OUT) {
  748. if (SCSI_processWrite(busid, g_usbd_msc[busid].nbytes) == false) {
  749. usbd_msc_send_csw(busid, CSW_STATUS_CMD_FAILED); /* send fail status to host,and the host will retry*/
  750. }
  751. } else if (event == MSC_DATA_IN) {
  752. if (SCSI_processRead(busid) == false) {
  753. usbd_msc_send_csw(busid, CSW_STATUS_CMD_FAILED); /* send fail status to host,and the host will retry*/
  754. }
  755. } else {
  756. }
  757. }
  758. }
  759. #elif defined(CONFIG_USBDEV_MSC_POLLING)
  760. void usbd_msc_polling(uint8_t busid)
  761. {
  762. uint8_t event;
  763. event = g_usbd_msc[busid].event;
  764. if (event != 0) {
  765. g_usbd_msc[busid].event = 0;
  766. if (event == MSC_DATA_OUT) {
  767. if (SCSI_processWrite(busid, g_usbd_msc[busid].nbytes) == false) {
  768. usbd_msc_send_csw(busid, CSW_STATUS_CMD_FAILED); /* send fail status to host,and the host will retry*/
  769. }
  770. } else if (event == MSC_DATA_IN) {
  771. if (SCSI_processRead(busid) == false) {
  772. usbd_msc_send_csw(busid, CSW_STATUS_CMD_FAILED); /* send fail status to host,and the host will retry*/
  773. }
  774. } else {
  775. }
  776. }
  777. }
  778. #endif
  779. struct usbd_interface *usbd_msc_init_intf(uint8_t busid, struct usbd_interface *intf, const uint8_t out_ep, const uint8_t in_ep)
  780. {
  781. intf->class_interface_handler = msc_storage_class_interface_request_handler;
  782. intf->class_endpoint_handler = NULL;
  783. intf->vendor_handler = NULL;
  784. intf->notify_handler = msc_storage_notify_handler;
  785. mass_ep_data[busid][MSD_OUT_EP_IDX].ep_addr = out_ep;
  786. mass_ep_data[busid][MSD_OUT_EP_IDX].ep_cb = mass_storage_bulk_out;
  787. mass_ep_data[busid][MSD_IN_EP_IDX].ep_addr = in_ep;
  788. mass_ep_data[busid][MSD_IN_EP_IDX].ep_cb = mass_storage_bulk_in;
  789. usbd_add_endpoint(busid, &mass_ep_data[busid][MSD_OUT_EP_IDX]);
  790. usbd_add_endpoint(busid, &mass_ep_data[busid][MSD_IN_EP_IDX]);
  791. memset((uint8_t *)&g_usbd_msc[busid], 0, sizeof(struct usbd_msc_priv));
  792. usdb_msc_set_max_lun(busid);
  793. for (uint8_t i = 0u; i <= g_usbd_msc[busid].max_lun; i++) {
  794. usbd_msc_get_cap(busid, i, &g_usbd_msc[busid].scsi_blk_nbr[i], &g_usbd_msc[busid].scsi_blk_size[i]);
  795. if (CONFIG_USBDEV_MSC_MAX_BUFSIZE % g_usbd_msc[busid].scsi_blk_size[i]) {
  796. USB_LOG_ERR("CONFIG_USBDEV_MSC_MAX_BUFSIZE must be a multiple of block size\r\n");
  797. while (1) {
  798. }
  799. }
  800. }
  801. return intf;
  802. }
  803. void usbd_msc_set_readonly(uint8_t busid, bool readonly)
  804. {
  805. g_usbd_msc[busid].readonly = readonly;
  806. }
  807. bool usbd_msc_get_popup(uint8_t busid)
  808. {
  809. return g_usbd_msc[busid].popup;
  810. }
  811. __WEAK void usbd_msc_get_cap(uint8_t busid, uint8_t lun, uint32_t *block_num, uint32_t *block_size)
  812. {
  813. (void)busid;
  814. (void)lun;
  815. *block_num = 0;
  816. *block_size = 0;
  817. }
  818. __WEAK int usbd_msc_sector_read(uint8_t busid, uint8_t lun, uint32_t sector, uint8_t *buffer, uint32_t length)
  819. {
  820. (void)busid;
  821. (void)lun;
  822. (void)sector;
  823. (void)buffer;
  824. (void)length;
  825. return 0;
  826. }
  827. __WEAK int usbd_msc_sector_write(uint8_t busid, uint8_t lun, uint32_t sector, uint8_t *buffer, uint32_t length)
  828. {
  829. (void)busid;
  830. (void)lun;
  831. (void)sector;
  832. (void)buffer;
  833. (void)length;
  834. return 0;
  835. }