usb_storage.c 36 KB

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  1. /*
  2. * Most of this source has been derived from the Linux USB
  3. * project:
  4. * (c) 1999-2002 Matthew Dharm (mdharm-usb@one-eyed-alien.net)
  5. * (c) 2000 David L. Brown, Jr. (usb-storage@davidb.org)
  6. * (c) 1999 Michael Gee (michael@linuxspecific.com)
  7. * (c) 2000 Yggdrasil Computing, Inc.
  8. *
  9. *
  10. * Adapted for U-Boot:
  11. * (C) Copyright 2001 Denis Peter, MPL AG Switzerland
  12. *
  13. * For BBB support (C) Copyright 2003
  14. * Gary Jennejohn, DENX Software Engineering <gj@denx.de>
  15. *
  16. * BBB support based on /sys/dev/usb/umass.c from
  17. * FreeBSD.
  18. *
  19. * See file CREDITS for list of people who contributed to this
  20. * project.
  21. *
  22. * This program is free software; you can redistribute it and/or
  23. * modify it under the terms of the GNU General Public License as
  24. * published by the Free Software Foundation; either version 2 of
  25. * the License, or (at your option) any later version.
  26. *
  27. * This program is distributed in the hope that it will be useful,
  28. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  29. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  30. * GNU General Public License for more details.
  31. *
  32. * You should have received a copy of the GNU General Public License
  33. * along with this program; if not, write to the Free Software
  34. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  35. * MA 02111-1307 USA
  36. *
  37. */
  38. /* Note:
  39. * Currently only the CBI transport protocoll has been implemented, and it
  40. * is only tested with a TEAC USB Floppy. Other Massstorages with CBI or CB
  41. * transport protocoll may work as well.
  42. */
  43. /*
  44. * New Note:
  45. * Support for USB Mass Storage Devices (BBB) has been added. It has
  46. * only been tested with USB memory sticks.
  47. * Nota bene: if you are using the BBB support with a little-endian
  48. * CPU then you MUST define LITTLEENDIAN in the configuration file!
  49. */
  50. #include <common.h>
  51. #include <command.h>
  52. #include <asm/processor.h>
  53. #if defined(CONFIG_CMD_USB)
  54. #include <part.h>
  55. #include <usb.h>
  56. #ifdef CONFIG_USB_STORAGE
  57. #undef USB_STOR_DEBUG
  58. #undef BBB_COMDAT_TRACE
  59. #undef BBB_XPORT_TRACE
  60. #ifdef USB_STOR_DEBUG
  61. #define USB_STOR_PRINTF(fmt,args...) printf (fmt ,##args)
  62. #else
  63. #define USB_STOR_PRINTF(fmt,args...)
  64. #endif
  65. #include <scsi.h>
  66. /* direction table -- this indicates the direction of the data
  67. * transfer for each command code -- a 1 indicates input
  68. */
  69. unsigned char us_direction[256/8] = {
  70. 0x28, 0x81, 0x14, 0x14, 0x20, 0x01, 0x90, 0x77,
  71. 0x0C, 0x20, 0x00, 0x04, 0x00, 0x00, 0x00, 0x00,
  72. 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x00, 0x01,
  73. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
  74. };
  75. #define US_DIRECTION(x) ((us_direction[x>>3] >> (x & 7)) & 1)
  76. static unsigned char usb_stor_buf[512];
  77. static ccb usb_ccb;
  78. /*
  79. * CBI style
  80. */
  81. #define US_CBI_ADSC 0
  82. /*
  83. * BULK only
  84. */
  85. #define US_BBB_RESET 0xff
  86. #define US_BBB_GET_MAX_LUN 0xfe
  87. /* Command Block Wrapper */
  88. typedef struct {
  89. __u32 dCBWSignature;
  90. # define CBWSIGNATURE 0x43425355
  91. __u32 dCBWTag;
  92. __u32 dCBWDataTransferLength;
  93. __u8 bCBWFlags;
  94. # define CBWFLAGS_OUT 0x00
  95. # define CBWFLAGS_IN 0x80
  96. __u8 bCBWLUN;
  97. __u8 bCDBLength;
  98. # define CBWCDBLENGTH 16
  99. __u8 CBWCDB[CBWCDBLENGTH];
  100. } umass_bbb_cbw_t;
  101. #define UMASS_BBB_CBW_SIZE 31
  102. static __u32 CBWTag = 0;
  103. /* Command Status Wrapper */
  104. typedef struct {
  105. __u32 dCSWSignature;
  106. # define CSWSIGNATURE 0x53425355
  107. __u32 dCSWTag;
  108. __u32 dCSWDataResidue;
  109. __u8 bCSWStatus;
  110. # define CSWSTATUS_GOOD 0x0
  111. # define CSWSTATUS_FAILED 0x1
  112. # define CSWSTATUS_PHASE 0x2
  113. } umass_bbb_csw_t;
  114. #define UMASS_BBB_CSW_SIZE 13
  115. #define USB_MAX_STOR_DEV 5
  116. static int usb_max_devs = 0; /* number of highest available usb device */
  117. static block_dev_desc_t usb_dev_desc[USB_MAX_STOR_DEV];
  118. struct us_data;
  119. typedef int (*trans_cmnd)(ccb*, struct us_data*);
  120. typedef int (*trans_reset)(struct us_data*);
  121. struct us_data {
  122. struct usb_device *pusb_dev; /* this usb_device */
  123. unsigned int flags; /* from filter initially */
  124. unsigned char ifnum; /* interface number */
  125. unsigned char ep_in; /* in endpoint */
  126. unsigned char ep_out; /* out ....... */
  127. unsigned char ep_int; /* interrupt . */
  128. unsigned char subclass; /* as in overview */
  129. unsigned char protocol; /* .............. */
  130. unsigned char attention_done; /* force attn on first cmd */
  131. unsigned short ip_data; /* interrupt data */
  132. int action; /* what to do */
  133. int ip_wanted; /* needed */
  134. int *irq_handle; /* for USB int requests */
  135. unsigned int irqpipe; /* pipe for release_irq */
  136. unsigned char irqmaxp; /* max packed for irq Pipe */
  137. unsigned char irqinterval; /* Intervall for IRQ Pipe */
  138. ccb *srb; /* current srb */
  139. trans_reset transport_reset; /* reset routine */
  140. trans_cmnd transport; /* transport routine */
  141. };
  142. static struct us_data usb_stor[USB_MAX_STOR_DEV];
  143. #define USB_STOR_TRANSPORT_GOOD 0
  144. #define USB_STOR_TRANSPORT_FAILED -1
  145. #define USB_STOR_TRANSPORT_ERROR -2
  146. int usb_stor_get_info(struct usb_device *dev, struct us_data *us, block_dev_desc_t *dev_desc);
  147. int usb_storage_probe(struct usb_device *dev, unsigned int ifnum,struct us_data *ss);
  148. unsigned long usb_stor_read(int device, unsigned long blknr, unsigned long blkcnt, void *buffer);
  149. struct usb_device * usb_get_dev_index(int index);
  150. void uhci_show_temp_int_td(void);
  151. block_dev_desc_t *usb_stor_get_dev(int index)
  152. {
  153. return (index < USB_MAX_STOR_DEV) ? &usb_dev_desc[index] : NULL;
  154. }
  155. void usb_show_progress(void)
  156. {
  157. printf(".");
  158. }
  159. /*********************************************************************************
  160. * show info on storage devices; 'usb start/init' must be invoked earlier
  161. * as we only retrieve structures populated during devices initialization
  162. */
  163. int usb_stor_info(void)
  164. {
  165. int i;
  166. if (usb_max_devs > 0) {
  167. for (i = 0; i < usb_max_devs; i++) {
  168. printf (" Device %d: ", i);
  169. dev_print(&usb_dev_desc[i]);
  170. }
  171. return 0;
  172. }
  173. printf("No storage devices, perhaps not 'usb start'ed..?\n");
  174. return 1;
  175. }
  176. /*********************************************************************************
  177. * scan the usb and reports device info
  178. * to the user if mode = 1
  179. * returns current device or -1 if no
  180. */
  181. int usb_stor_scan(int mode)
  182. {
  183. unsigned char i;
  184. struct usb_device *dev;
  185. /* GJ */
  186. memset(usb_stor_buf, 0, sizeof(usb_stor_buf));
  187. if(mode==1) {
  188. printf(" scanning bus for storage devices... ");
  189. }
  190. usb_disable_asynch(1); /* asynch transfer not allowed */
  191. for(i=0;i<USB_MAX_STOR_DEV;i++) {
  192. memset(&usb_dev_desc[i],0,sizeof(block_dev_desc_t));
  193. usb_dev_desc[i].target=0xff;
  194. usb_dev_desc[i].if_type=IF_TYPE_USB;
  195. usb_dev_desc[i].dev=i;
  196. usb_dev_desc[i].part_type=PART_TYPE_UNKNOWN;
  197. usb_dev_desc[i].block_read=usb_stor_read;
  198. }
  199. usb_max_devs=0;
  200. for(i=0;i<USB_MAX_DEVICE;i++) {
  201. dev=usb_get_dev_index(i); /* get device */
  202. USB_STOR_PRINTF("i=%d\n",i);
  203. if(dev==NULL) {
  204. break; /* no more devices avaiable */
  205. }
  206. if(usb_storage_probe(dev,0,&usb_stor[usb_max_devs])) { /* ok, it is a storage devices */
  207. /* get info and fill it in */
  208. if(usb_stor_get_info(dev, &usb_stor[usb_max_devs], &usb_dev_desc[usb_max_devs]))
  209. usb_max_devs++;
  210. } /* if storage device */
  211. if(usb_max_devs==USB_MAX_STOR_DEV) {
  212. printf("max USB Storage Device reached: %d stopping\n",usb_max_devs);
  213. break;
  214. }
  215. } /* for */
  216. usb_disable_asynch(0); /* asynch transfer allowed */
  217. printf("%d Storage Device(s) found\n", usb_max_devs);
  218. if(usb_max_devs>0)
  219. return 0;
  220. else
  221. return-1;
  222. }
  223. static int usb_stor_irq(struct usb_device *dev)
  224. {
  225. struct us_data *us;
  226. us=(struct us_data *)dev->privptr;
  227. if(us->ip_wanted) {
  228. us->ip_wanted=0;
  229. }
  230. return 0;
  231. }
  232. #ifdef USB_STOR_DEBUG
  233. static void usb_show_srb(ccb * pccb)
  234. {
  235. int i;
  236. printf("SRB: len %d datalen 0x%lX\n ",pccb->cmdlen,pccb->datalen);
  237. for(i=0;i<12;i++) {
  238. printf("%02X ",pccb->cmd[i]);
  239. }
  240. printf("\n");
  241. }
  242. static void display_int_status(unsigned long tmp)
  243. {
  244. printf("Status: %s %s %s %s %s %s %s\n",
  245. (tmp & USB_ST_ACTIVE) ? "Active" : "",
  246. (tmp & USB_ST_STALLED) ? "Stalled" : "",
  247. (tmp & USB_ST_BUF_ERR) ? "Buffer Error" : "",
  248. (tmp & USB_ST_BABBLE_DET) ? "Babble Det" : "",
  249. (tmp & USB_ST_NAK_REC) ? "NAKed" : "",
  250. (tmp & USB_ST_CRC_ERR) ? "CRC Error" : "",
  251. (tmp & USB_ST_BIT_ERR) ? "Bitstuff Error" : "");
  252. }
  253. #endif
  254. /***********************************************************************
  255. * Data transfer routines
  256. ***********************************************************************/
  257. static int us_one_transfer(struct us_data *us, int pipe, char *buf, int length)
  258. {
  259. int max_size;
  260. int this_xfer;
  261. int result;
  262. int partial;
  263. int maxtry;
  264. int stat;
  265. /* determine the maximum packet size for these transfers */
  266. max_size = usb_maxpacket(us->pusb_dev, pipe) * 16;
  267. /* while we have data left to transfer */
  268. while (length) {
  269. /* calculate how long this will be -- maximum or a remainder */
  270. this_xfer = length > max_size ? max_size : length;
  271. length -= this_xfer;
  272. /* setup the retry counter */
  273. maxtry = 10;
  274. /* set up the transfer loop */
  275. do {
  276. /* transfer the data */
  277. USB_STOR_PRINTF("Bulk xfer 0x%x(%d) try #%d\n",
  278. (unsigned int)buf, this_xfer, 11 - maxtry);
  279. result = usb_bulk_msg(us->pusb_dev, pipe, buf,
  280. this_xfer, &partial, USB_CNTL_TIMEOUT*5);
  281. USB_STOR_PRINTF("bulk_msg returned %d xferred %d/%d\n",
  282. result, partial, this_xfer);
  283. if(us->pusb_dev->status!=0) {
  284. /* if we stall, we need to clear it before we go on */
  285. #ifdef USB_STOR_DEBUG
  286. display_int_status(us->pusb_dev->status);
  287. #endif
  288. if (us->pusb_dev->status & USB_ST_STALLED) {
  289. USB_STOR_PRINTF("stalled ->clearing endpoint halt for pipe 0x%x\n", pipe);
  290. stat = us->pusb_dev->status;
  291. usb_clear_halt(us->pusb_dev, pipe);
  292. us->pusb_dev->status=stat;
  293. if(this_xfer == partial) {
  294. USB_STOR_PRINTF("bulk transferred with error %X, but data ok\n",us->pusb_dev->status);
  295. return 0;
  296. }
  297. else
  298. return result;
  299. }
  300. if (us->pusb_dev->status & USB_ST_NAK_REC) {
  301. USB_STOR_PRINTF("Device NAKed bulk_msg\n");
  302. return result;
  303. }
  304. if(this_xfer == partial) {
  305. USB_STOR_PRINTF("bulk transferred with error %d, but data ok\n",us->pusb_dev->status);
  306. return 0;
  307. }
  308. /* if our try counter reaches 0, bail out */
  309. USB_STOR_PRINTF("bulk transferred with error %d, data %d\n",us->pusb_dev->status,partial);
  310. if (!maxtry--)
  311. return result;
  312. }
  313. /* update to show what data was transferred */
  314. this_xfer -= partial;
  315. buf += partial;
  316. /* continue until this transfer is done */
  317. } while ( this_xfer );
  318. }
  319. /* if we get here, we're done and successful */
  320. return 0;
  321. }
  322. static int usb_stor_BBB_reset(struct us_data *us)
  323. {
  324. int result;
  325. unsigned int pipe;
  326. /*
  327. * Reset recovery (5.3.4 in Universal Serial Bus Mass Storage Class)
  328. *
  329. * For Reset Recovery the host shall issue in the following order:
  330. * a) a Bulk-Only Mass Storage Reset
  331. * b) a Clear Feature HALT to the Bulk-In endpoint
  332. * c) a Clear Feature HALT to the Bulk-Out endpoint
  333. *
  334. * This is done in 3 steps.
  335. *
  336. * If the reset doesn't succeed, the device should be port reset.
  337. *
  338. * This comment stolen from FreeBSD's /sys/dev/usb/umass.c.
  339. */
  340. USB_STOR_PRINTF("BBB_reset\n");
  341. result = usb_control_msg(us->pusb_dev, usb_sndctrlpipe(us->pusb_dev,0),
  342. US_BBB_RESET, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  343. 0, us->ifnum, 0, 0, USB_CNTL_TIMEOUT*5);
  344. if((result < 0) && (us->pusb_dev->status & USB_ST_STALLED))
  345. {
  346. USB_STOR_PRINTF("RESET:stall\n");
  347. return -1;
  348. }
  349. /* long wait for reset */
  350. wait_ms(150);
  351. USB_STOR_PRINTF("BBB_reset result %d: status %X reset\n",result,us->pusb_dev->status);
  352. pipe = usb_rcvbulkpipe(us->pusb_dev, us->ep_in);
  353. result = usb_clear_halt(us->pusb_dev, pipe);
  354. /* long wait for reset */
  355. wait_ms(150);
  356. USB_STOR_PRINTF("BBB_reset result %d: status %X clearing IN endpoint\n",result,us->pusb_dev->status);
  357. /* long wait for reset */
  358. pipe = usb_sndbulkpipe(us->pusb_dev, us->ep_out);
  359. result = usb_clear_halt(us->pusb_dev, pipe);
  360. wait_ms(150);
  361. USB_STOR_PRINTF("BBB_reset result %d: status %X clearing OUT endpoint\n",result,us->pusb_dev->status);
  362. USB_STOR_PRINTF("BBB_reset done\n");
  363. return 0;
  364. }
  365. /* FIXME: this reset function doesn't really reset the port, and it
  366. * should. Actually it should probably do what it's doing here, and
  367. * reset the port physically
  368. */
  369. static int usb_stor_CB_reset(struct us_data *us)
  370. {
  371. unsigned char cmd[12];
  372. int result;
  373. USB_STOR_PRINTF("CB_reset\n");
  374. memset(cmd, 0xFF, sizeof(cmd));
  375. cmd[0] = SCSI_SEND_DIAG;
  376. cmd[1] = 4;
  377. result = usb_control_msg(us->pusb_dev, usb_sndctrlpipe(us->pusb_dev,0),
  378. US_CBI_ADSC, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  379. 0, us->ifnum, cmd, sizeof(cmd), USB_CNTL_TIMEOUT*5);
  380. /* long wait for reset */
  381. wait_ms(1500);
  382. USB_STOR_PRINTF("CB_reset result %d: status %X clearing endpoint halt\n",result,us->pusb_dev->status);
  383. usb_clear_halt(us->pusb_dev, usb_rcvbulkpipe(us->pusb_dev, us->ep_in));
  384. usb_clear_halt(us->pusb_dev, usb_rcvbulkpipe(us->pusb_dev, us->ep_out));
  385. USB_STOR_PRINTF("CB_reset done\n");
  386. return 0;
  387. }
  388. /*
  389. * Set up the command for a BBB device. Note that the actual SCSI
  390. * command is copied into cbw.CBWCDB.
  391. */
  392. int usb_stor_BBB_comdat(ccb *srb, struct us_data *us)
  393. {
  394. int result;
  395. int actlen;
  396. int dir_in;
  397. unsigned int pipe;
  398. umass_bbb_cbw_t cbw;
  399. dir_in = US_DIRECTION(srb->cmd[0]);
  400. #ifdef BBB_COMDAT_TRACE
  401. printf("dir %d lun %d cmdlen %d cmd %p datalen %d pdata %p\n", dir_in, srb->lun, srb->cmdlen, srb->cmd, srb->datalen, srb->pdata);
  402. if (srb->cmdlen) {
  403. for(result = 0;result < srb->cmdlen;result++)
  404. printf("cmd[%d] %#x ", result, srb->cmd[result]);
  405. printf("\n");
  406. }
  407. #endif
  408. /* sanity checks */
  409. if (!(srb->cmdlen <= CBWCDBLENGTH)) {
  410. USB_STOR_PRINTF("usb_stor_BBB_comdat:cmdlen too large\n");
  411. return -1;
  412. }
  413. /* always OUT to the ep */
  414. pipe = usb_sndbulkpipe(us->pusb_dev, us->ep_out);
  415. cbw.dCBWSignature = swap_32(CBWSIGNATURE);
  416. cbw.dCBWTag = swap_32(CBWTag++);
  417. cbw.dCBWDataTransferLength = swap_32(srb->datalen);
  418. cbw.bCBWFlags = (dir_in? CBWFLAGS_IN : CBWFLAGS_OUT);
  419. cbw.bCBWLUN = srb->lun;
  420. cbw.bCDBLength = srb->cmdlen;
  421. /* copy the command data into the CBW command data buffer */
  422. /* DST SRC LEN!!! */
  423. memcpy(cbw.CBWCDB, srb->cmd, srb->cmdlen);
  424. result = usb_bulk_msg(us->pusb_dev, pipe, &cbw, UMASS_BBB_CBW_SIZE, &actlen, USB_CNTL_TIMEOUT*5);
  425. if (result < 0)
  426. USB_STOR_PRINTF("usb_stor_BBB_comdat:usb_bulk_msg error\n");
  427. return result;
  428. }
  429. /* FIXME: we also need a CBI_command which sets up the completion
  430. * interrupt, and waits for it
  431. */
  432. int usb_stor_CB_comdat(ccb *srb, struct us_data *us)
  433. {
  434. int result = 0;
  435. int dir_in,retry;
  436. unsigned int pipe;
  437. unsigned long status;
  438. retry=5;
  439. dir_in=US_DIRECTION(srb->cmd[0]);
  440. if(dir_in)
  441. pipe=usb_rcvbulkpipe(us->pusb_dev, us->ep_in);
  442. else
  443. pipe=usb_sndbulkpipe(us->pusb_dev, us->ep_out);
  444. while(retry--) {
  445. USB_STOR_PRINTF("CBI gets a command: Try %d\n",5-retry);
  446. #ifdef USB_STOR_DEBUG
  447. usb_show_srb(srb);
  448. #endif
  449. /* let's send the command via the control pipe */
  450. result = usb_control_msg(us->pusb_dev, usb_sndctrlpipe(us->pusb_dev,0),
  451. US_CBI_ADSC, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  452. 0, us->ifnum,
  453. srb->cmd, srb->cmdlen, USB_CNTL_TIMEOUT*5);
  454. USB_STOR_PRINTF("CB_transport: control msg returned %d, status %X\n",result,us->pusb_dev->status);
  455. /* check the return code for the command */
  456. if (result < 0) {
  457. if(us->pusb_dev->status & USB_ST_STALLED) {
  458. status=us->pusb_dev->status;
  459. USB_STOR_PRINTF(" stall during command found, clear pipe\n");
  460. usb_clear_halt(us->pusb_dev, usb_sndctrlpipe(us->pusb_dev,0));
  461. us->pusb_dev->status=status;
  462. }
  463. USB_STOR_PRINTF(" error during command %02X Stat = %X\n",srb->cmd[0],us->pusb_dev->status);
  464. return result;
  465. }
  466. /* transfer the data payload for this command, if one exists*/
  467. USB_STOR_PRINTF("CB_transport: control msg returned %d, direction is %s to go 0x%lx\n",result,dir_in ? "IN" : "OUT",srb->datalen);
  468. if (srb->datalen) {
  469. result = us_one_transfer(us, pipe, (char *)srb->pdata,srb->datalen);
  470. USB_STOR_PRINTF("CBI attempted to transfer data, result is %d status %lX, len %d\n", result,us->pusb_dev->status,us->pusb_dev->act_len);
  471. if(!(us->pusb_dev->status & USB_ST_NAK_REC))
  472. break;
  473. } /* if (srb->datalen) */
  474. else
  475. break;
  476. }
  477. /* return result */
  478. return result;
  479. }
  480. int usb_stor_CBI_get_status (ccb * srb, struct us_data *us)
  481. {
  482. int timeout;
  483. us->ip_wanted = 1;
  484. submit_int_msg (us->pusb_dev, us->irqpipe,
  485. (void *) &us->ip_data, us->irqmaxp, us->irqinterval);
  486. timeout = 1000;
  487. while (timeout--) {
  488. if ((volatile int *) us->ip_wanted == 0)
  489. break;
  490. wait_ms (10);
  491. }
  492. if (us->ip_wanted) {
  493. printf (" Did not get interrupt on CBI\n");
  494. us->ip_wanted = 0;
  495. return USB_STOR_TRANSPORT_ERROR;
  496. }
  497. USB_STOR_PRINTF
  498. ("Got interrupt data 0x%x, transfered %d status 0x%lX\n",
  499. us->ip_data, us->pusb_dev->irq_act_len,
  500. us->pusb_dev->irq_status);
  501. /* UFI gives us ASC and ASCQ, like a request sense */
  502. if (us->subclass == US_SC_UFI) {
  503. if (srb->cmd[0] == SCSI_REQ_SENSE ||
  504. srb->cmd[0] == SCSI_INQUIRY)
  505. return USB_STOR_TRANSPORT_GOOD; /* Good */
  506. else if (us->ip_data)
  507. return USB_STOR_TRANSPORT_FAILED;
  508. else
  509. return USB_STOR_TRANSPORT_GOOD;
  510. }
  511. /* otherwise, we interpret the data normally */
  512. switch (us->ip_data) {
  513. case 0x0001:
  514. return USB_STOR_TRANSPORT_GOOD;
  515. case 0x0002:
  516. return USB_STOR_TRANSPORT_FAILED;
  517. default:
  518. return USB_STOR_TRANSPORT_ERROR;
  519. } /* switch */
  520. return USB_STOR_TRANSPORT_ERROR;
  521. }
  522. #define USB_TRANSPORT_UNKNOWN_RETRY 5
  523. #define USB_TRANSPORT_NOT_READY_RETRY 10
  524. /* clear a stall on an endpoint - special for BBB devices */
  525. int usb_stor_BBB_clear_endpt_stall(struct us_data *us, __u8 endpt)
  526. {
  527. int result;
  528. /* ENDPOINT_HALT = 0, so set value to 0 */
  529. result = usb_control_msg(us->pusb_dev, usb_sndctrlpipe(us->pusb_dev,0),
  530. USB_REQ_CLEAR_FEATURE, USB_RECIP_ENDPOINT,
  531. 0, endpt, 0, 0, USB_CNTL_TIMEOUT*5);
  532. return result;
  533. }
  534. int usb_stor_BBB_transport(ccb *srb, struct us_data *us)
  535. {
  536. int result, retry;
  537. int dir_in;
  538. int actlen, data_actlen;
  539. unsigned int pipe, pipein, pipeout;
  540. umass_bbb_csw_t csw;
  541. #ifdef BBB_XPORT_TRACE
  542. unsigned char *ptr;
  543. int index;
  544. #endif
  545. dir_in = US_DIRECTION(srb->cmd[0]);
  546. /* COMMAND phase */
  547. USB_STOR_PRINTF("COMMAND phase\n");
  548. result = usb_stor_BBB_comdat(srb, us);
  549. if (result < 0) {
  550. USB_STOR_PRINTF("failed to send CBW status %ld\n",
  551. us->pusb_dev->status);
  552. usb_stor_BBB_reset(us);
  553. return USB_STOR_TRANSPORT_FAILED;
  554. }
  555. wait_ms(5);
  556. pipein = usb_rcvbulkpipe(us->pusb_dev, us->ep_in);
  557. pipeout = usb_sndbulkpipe(us->pusb_dev, us->ep_out);
  558. /* DATA phase + error handling */
  559. data_actlen = 0;
  560. /* no data, go immediately to the STATUS phase */
  561. if (srb->datalen == 0)
  562. goto st;
  563. USB_STOR_PRINTF("DATA phase\n");
  564. if (dir_in)
  565. pipe = pipein;
  566. else
  567. pipe = pipeout;
  568. result = usb_bulk_msg(us->pusb_dev, pipe, srb->pdata, srb->datalen, &data_actlen, USB_CNTL_TIMEOUT*5);
  569. /* special handling of STALL in DATA phase */
  570. if((result < 0) && (us->pusb_dev->status & USB_ST_STALLED)) {
  571. USB_STOR_PRINTF("DATA:stall\n");
  572. /* clear the STALL on the endpoint */
  573. result = usb_stor_BBB_clear_endpt_stall(us, dir_in? us->ep_in : us->ep_out);
  574. if (result >= 0)
  575. /* continue on to STATUS phase */
  576. goto st;
  577. }
  578. if (result < 0) {
  579. USB_STOR_PRINTF("usb_bulk_msg error status %ld\n",
  580. us->pusb_dev->status);
  581. usb_stor_BBB_reset(us);
  582. return USB_STOR_TRANSPORT_FAILED;
  583. }
  584. #ifdef BBB_XPORT_TRACE
  585. for (index = 0; index < data_actlen; index++)
  586. printf("pdata[%d] %#x ", index, srb->pdata[index]);
  587. printf("\n");
  588. #endif
  589. /* STATUS phase + error handling */
  590. st:
  591. retry = 0;
  592. again:
  593. USB_STOR_PRINTF("STATUS phase\n");
  594. result = usb_bulk_msg(us->pusb_dev, pipein, &csw, UMASS_BBB_CSW_SIZE,
  595. &actlen, USB_CNTL_TIMEOUT*5);
  596. /* special handling of STALL in STATUS phase */
  597. if((result < 0) && (retry < 1) && (us->pusb_dev->status & USB_ST_STALLED)) {
  598. USB_STOR_PRINTF("STATUS:stall\n");
  599. /* clear the STALL on the endpoint */
  600. result = usb_stor_BBB_clear_endpt_stall(us, us->ep_in);
  601. if (result >= 0 && (retry++ < 1))
  602. /* do a retry */
  603. goto again;
  604. }
  605. if (result < 0) {
  606. USB_STOR_PRINTF("usb_bulk_msg error status %ld\n",
  607. us->pusb_dev->status);
  608. usb_stor_BBB_reset(us);
  609. return USB_STOR_TRANSPORT_FAILED;
  610. }
  611. #ifdef BBB_XPORT_TRACE
  612. ptr = (unsigned char *)&csw;
  613. for (index = 0; index < UMASS_BBB_CSW_SIZE; index++)
  614. printf("ptr[%d] %#x ", index, ptr[index]);
  615. printf("\n");
  616. #endif
  617. /* misuse pipe to get the residue */
  618. pipe = swap_32(csw.dCSWDataResidue);
  619. if (pipe == 0 && srb->datalen != 0 && srb->datalen - data_actlen != 0)
  620. pipe = srb->datalen - data_actlen;
  621. if (CSWSIGNATURE != swap_32(csw.dCSWSignature)) {
  622. USB_STOR_PRINTF("!CSWSIGNATURE\n");
  623. usb_stor_BBB_reset(us);
  624. return USB_STOR_TRANSPORT_FAILED;
  625. } else if ((CBWTag - 1) != swap_32(csw.dCSWTag)) {
  626. USB_STOR_PRINTF("!Tag\n");
  627. usb_stor_BBB_reset(us);
  628. return USB_STOR_TRANSPORT_FAILED;
  629. } else if (csw.bCSWStatus > CSWSTATUS_PHASE) {
  630. USB_STOR_PRINTF(">PHASE\n");
  631. usb_stor_BBB_reset(us);
  632. return USB_STOR_TRANSPORT_FAILED;
  633. } else if (csw.bCSWStatus == CSWSTATUS_PHASE) {
  634. USB_STOR_PRINTF("=PHASE\n");
  635. usb_stor_BBB_reset(us);
  636. return USB_STOR_TRANSPORT_FAILED;
  637. } else if (data_actlen > srb->datalen) {
  638. USB_STOR_PRINTF("transferred %dB instead of %dB\n",
  639. data_actlen, srb->datalen);
  640. return USB_STOR_TRANSPORT_FAILED;
  641. } else if (csw.bCSWStatus == CSWSTATUS_FAILED) {
  642. USB_STOR_PRINTF("FAILED\n");
  643. return USB_STOR_TRANSPORT_FAILED;
  644. }
  645. return result;
  646. }
  647. int usb_stor_CB_transport(ccb *srb, struct us_data *us)
  648. {
  649. int result,status;
  650. ccb *psrb;
  651. ccb reqsrb;
  652. int retry,notready;
  653. psrb=&reqsrb;
  654. status=USB_STOR_TRANSPORT_GOOD;
  655. retry=0;
  656. notready=0;
  657. /* issue the command */
  658. do_retry:
  659. result=usb_stor_CB_comdat(srb,us);
  660. USB_STOR_PRINTF("command / Data returned %d, status %X\n",result,us->pusb_dev->status);
  661. /* if this is an CBI Protocol, get IRQ */
  662. if(us->protocol==US_PR_CBI) {
  663. status=usb_stor_CBI_get_status(srb,us);
  664. /* if the status is error, report it */
  665. if(status==USB_STOR_TRANSPORT_ERROR) {
  666. USB_STOR_PRINTF(" USB CBI Command Error\n");
  667. return status;
  668. }
  669. srb->sense_buf[12]=(unsigned char)(us->ip_data>>8);
  670. srb->sense_buf[13]=(unsigned char)(us->ip_data&0xff);
  671. if(!us->ip_data) {
  672. /* if the status is good, report it */
  673. if(status==USB_STOR_TRANSPORT_GOOD) {
  674. USB_STOR_PRINTF(" USB CBI Command Good\n");
  675. return status;
  676. }
  677. }
  678. }
  679. /* do we have to issue an auto request? */
  680. /* HERE we have to check the result */
  681. if((result<0) && !(us->pusb_dev->status & USB_ST_STALLED)) {
  682. USB_STOR_PRINTF("ERROR %X\n",us->pusb_dev->status);
  683. us->transport_reset(us);
  684. return USB_STOR_TRANSPORT_ERROR;
  685. }
  686. if((us->protocol==US_PR_CBI) &&
  687. ((srb->cmd[0]==SCSI_REQ_SENSE) ||
  688. (srb->cmd[0]==SCSI_INQUIRY))) { /* do not issue an autorequest after request sense */
  689. USB_STOR_PRINTF("No auto request and good\n");
  690. return USB_STOR_TRANSPORT_GOOD;
  691. }
  692. /* issue an request_sense */
  693. memset(&psrb->cmd[0],0,12);
  694. psrb->cmd[0]=SCSI_REQ_SENSE;
  695. psrb->cmd[1]=srb->lun<<5;
  696. psrb->cmd[4]=18;
  697. psrb->datalen=18;
  698. psrb->pdata=&srb->sense_buf[0];
  699. psrb->cmdlen=12;
  700. /* issue the command */
  701. result=usb_stor_CB_comdat(psrb,us);
  702. USB_STOR_PRINTF("auto request returned %d\n",result);
  703. /* if this is an CBI Protocol, get IRQ */
  704. if(us->protocol==US_PR_CBI) {
  705. status=usb_stor_CBI_get_status(psrb,us);
  706. }
  707. if((result<0)&&!(us->pusb_dev->status & USB_ST_STALLED)) {
  708. USB_STOR_PRINTF(" AUTO REQUEST ERROR %d\n",us->pusb_dev->status);
  709. return USB_STOR_TRANSPORT_ERROR;
  710. }
  711. USB_STOR_PRINTF("autorequest returned 0x%02X 0x%02X 0x%02X 0x%02X\n",srb->sense_buf[0],srb->sense_buf[2],srb->sense_buf[12],srb->sense_buf[13]);
  712. /* Check the auto request result */
  713. if((srb->sense_buf[2]==0) &&
  714. (srb->sense_buf[12]==0) &&
  715. (srb->sense_buf[13]==0)) /* ok, no sense */
  716. return USB_STOR_TRANSPORT_GOOD;
  717. /* Check the auto request result */
  718. switch(srb->sense_buf[2]) {
  719. case 0x01: /* Recovered Error */
  720. return USB_STOR_TRANSPORT_GOOD;
  721. break;
  722. case 0x02: /* Not Ready */
  723. if(notready++ > USB_TRANSPORT_NOT_READY_RETRY) {
  724. printf("cmd 0x%02X returned 0x%02X 0x%02X 0x%02X 0x%02X (NOT READY)\n",
  725. srb->cmd[0],srb->sense_buf[0],srb->sense_buf[2],srb->sense_buf[12],srb->sense_buf[13]);
  726. return USB_STOR_TRANSPORT_FAILED;
  727. } else {
  728. wait_ms(100);
  729. goto do_retry;
  730. }
  731. break;
  732. default:
  733. if(retry++ > USB_TRANSPORT_UNKNOWN_RETRY) {
  734. printf("cmd 0x%02X returned 0x%02X 0x%02X 0x%02X 0x%02X\n",
  735. srb->cmd[0],srb->sense_buf[0],srb->sense_buf[2],srb->sense_buf[12],srb->sense_buf[13]);
  736. return USB_STOR_TRANSPORT_FAILED;
  737. } else {
  738. goto do_retry;
  739. }
  740. break;
  741. }
  742. return USB_STOR_TRANSPORT_FAILED;
  743. }
  744. static int usb_inquiry(ccb *srb,struct us_data *ss)
  745. {
  746. int retry,i;
  747. retry=5;
  748. do {
  749. memset(&srb->cmd[0],0,12);
  750. srb->cmd[0]=SCSI_INQUIRY;
  751. srb->cmd[1]=srb->lun<<5;
  752. srb->cmd[4]=36;
  753. srb->datalen=36;
  754. srb->cmdlen=12;
  755. i=ss->transport(srb,ss);
  756. USB_STOR_PRINTF("inquiry returns %d\n",i);
  757. if(i==0)
  758. break;
  759. } while(retry--);
  760. if(!retry) {
  761. printf("error in inquiry\n");
  762. return -1;
  763. }
  764. return 0;
  765. }
  766. static int usb_request_sense(ccb *srb,struct us_data *ss)
  767. {
  768. char *ptr;
  769. ptr=(char *)srb->pdata;
  770. memset(&srb->cmd[0],0,12);
  771. srb->cmd[0]=SCSI_REQ_SENSE;
  772. srb->cmd[1]=srb->lun<<5;
  773. srb->cmd[4]=18;
  774. srb->datalen=18;
  775. srb->pdata=&srb->sense_buf[0];
  776. srb->cmdlen=12;
  777. ss->transport(srb,ss);
  778. USB_STOR_PRINTF("Request Sense returned %02X %02X %02X\n",srb->sense_buf[2],srb->sense_buf[12],srb->sense_buf[13]);
  779. srb->pdata=(uchar *)ptr;
  780. return 0;
  781. }
  782. static int usb_test_unit_ready(ccb *srb,struct us_data *ss)
  783. {
  784. int retries = 10;
  785. do {
  786. memset(&srb->cmd[0],0,12);
  787. srb->cmd[0]=SCSI_TST_U_RDY;
  788. srb->cmd[1]=srb->lun<<5;
  789. srb->datalen=0;
  790. srb->cmdlen=12;
  791. if(ss->transport(srb,ss)==USB_STOR_TRANSPORT_GOOD) {
  792. return 0;
  793. }
  794. usb_request_sense (srb, ss);
  795. wait_ms (100);
  796. } while(retries--);
  797. return -1;
  798. }
  799. static int usb_read_capacity(ccb *srb,struct us_data *ss)
  800. {
  801. int retry;
  802. retry = 3; /* retries */
  803. do {
  804. memset(&srb->cmd[0],0,12);
  805. srb->cmd[0]=SCSI_RD_CAPAC;
  806. srb->cmd[1]=srb->lun<<5;
  807. srb->datalen=8;
  808. srb->cmdlen=12;
  809. if(ss->transport(srb,ss)==USB_STOR_TRANSPORT_GOOD) {
  810. return 0;
  811. }
  812. } while(retry--);
  813. return -1;
  814. }
  815. static int usb_read_10(ccb *srb,struct us_data *ss, unsigned long start, unsigned short blocks)
  816. {
  817. memset(&srb->cmd[0],0,12);
  818. srb->cmd[0]=SCSI_READ10;
  819. srb->cmd[1]=srb->lun<<5;
  820. srb->cmd[2]=((unsigned char) (start>>24))&0xff;
  821. srb->cmd[3]=((unsigned char) (start>>16))&0xff;
  822. srb->cmd[4]=((unsigned char) (start>>8))&0xff;
  823. srb->cmd[5]=((unsigned char) (start))&0xff;
  824. srb->cmd[7]=((unsigned char) (blocks>>8))&0xff;
  825. srb->cmd[8]=(unsigned char) blocks & 0xff;
  826. srb->cmdlen=12;
  827. USB_STOR_PRINTF("read10: start %lx blocks %x\n",start,blocks);
  828. return ss->transport(srb,ss);
  829. }
  830. #ifdef CONFIG_USB_BIN_FIXUP
  831. /*
  832. * Some USB storage devices queried for SCSI identification data respond with
  833. * binary strings, which if output to the console freeze the terminal. The
  834. * workaround is to modify the vendor and product strings read from such
  835. * device with proper values (as reported by 'usb info').
  836. *
  837. * Vendor and product length limits are taken from the definition of
  838. * block_dev_desc_t in include/part.h.
  839. */
  840. static void usb_bin_fixup(struct usb_device_descriptor descriptor,
  841. unsigned char vendor[],
  842. unsigned char product[]) {
  843. const unsigned char max_vendor_len = 40;
  844. const unsigned char max_product_len = 20;
  845. if (descriptor.idVendor == 0x0424 && descriptor.idProduct == 0x223a) {
  846. strncpy ((char *)vendor, "SMSC", max_vendor_len);
  847. strncpy ((char *)product, "Flash Media Cntrller", max_product_len);
  848. }
  849. }
  850. #endif /* CONFIG_USB_BIN_FIXUP */
  851. #define USB_MAX_READ_BLK 20
  852. unsigned long usb_stor_read(int device, unsigned long blknr, unsigned long blkcnt, void *buffer)
  853. {
  854. unsigned long start,blks, buf_addr;
  855. unsigned short smallblks;
  856. struct usb_device *dev;
  857. int retry,i;
  858. ccb *srb = &usb_ccb;
  859. if (blkcnt == 0)
  860. return 0;
  861. device &= 0xff;
  862. /* Setup device
  863. */
  864. USB_STOR_PRINTF("\nusb_read: dev %d \n",device);
  865. dev=NULL;
  866. for(i=0;i<USB_MAX_DEVICE;i++) {
  867. dev=usb_get_dev_index(i);
  868. if(dev==NULL) {
  869. return 0;
  870. }
  871. if(dev->devnum==usb_dev_desc[device].target)
  872. break;
  873. }
  874. usb_disable_asynch(1); /* asynch transfer not allowed */
  875. srb->lun=usb_dev_desc[device].lun;
  876. buf_addr=(unsigned long)buffer;
  877. start=blknr;
  878. blks=blkcnt;
  879. if(usb_test_unit_ready(srb,(struct us_data *)dev->privptr)) {
  880. printf("Device NOT ready\n Request Sense returned %02X %02X %02X\n",
  881. srb->sense_buf[2],srb->sense_buf[12],srb->sense_buf[13]);
  882. return 0;
  883. }
  884. USB_STOR_PRINTF("\nusb_read: dev %d startblk %lx, blccnt %lx buffer %lx\n",device,start,blks, buf_addr);
  885. do {
  886. retry=2;
  887. srb->pdata=(unsigned char *)buf_addr;
  888. if(blks>USB_MAX_READ_BLK) {
  889. smallblks=USB_MAX_READ_BLK;
  890. } else {
  891. smallblks=(unsigned short) blks;
  892. }
  893. retry_it:
  894. if(smallblks==USB_MAX_READ_BLK)
  895. usb_show_progress();
  896. srb->datalen=usb_dev_desc[device].blksz * smallblks;
  897. srb->pdata=(unsigned char *)buf_addr;
  898. if(usb_read_10(srb,(struct us_data *)dev->privptr, start, smallblks)) {
  899. USB_STOR_PRINTF("Read ERROR\n");
  900. usb_request_sense(srb,(struct us_data *)dev->privptr);
  901. if(retry--)
  902. goto retry_it;
  903. blkcnt-=blks;
  904. break;
  905. }
  906. start+=smallblks;
  907. blks-=smallblks;
  908. buf_addr+=srb->datalen;
  909. } while(blks!=0);
  910. USB_STOR_PRINTF("usb_read: end startblk %lx, blccnt %x buffer %lx\n",start,smallblks,buf_addr);
  911. usb_disable_asynch(0); /* asynch transfer allowed */
  912. if(blkcnt>=USB_MAX_READ_BLK)
  913. printf("\n");
  914. return(blkcnt);
  915. }
  916. /* Probe to see if a new device is actually a Storage device */
  917. int usb_storage_probe(struct usb_device *dev, unsigned int ifnum,struct us_data *ss)
  918. {
  919. struct usb_interface_descriptor *iface;
  920. int i;
  921. unsigned int flags = 0;
  922. int protocol = 0;
  923. int subclass = 0;
  924. /* let's examine the device now */
  925. iface = &dev->config.if_desc[ifnum];
  926. #if 0
  927. /* this is the place to patch some storage devices */
  928. USB_STOR_PRINTF("iVendor %X iProduct %X\n",dev->descriptor.idVendor,dev->descriptor.idProduct);
  929. if ((dev->descriptor.idVendor) == 0x066b && (dev->descriptor.idProduct) == 0x0103) {
  930. USB_STOR_PRINTF("patched for E-USB\n");
  931. protocol = US_PR_CB;
  932. subclass = US_SC_UFI; /* an assumption */
  933. }
  934. #endif
  935. if (dev->descriptor.bDeviceClass != 0 ||
  936. iface->bInterfaceClass != USB_CLASS_MASS_STORAGE ||
  937. iface->bInterfaceSubClass < US_SC_MIN ||
  938. iface->bInterfaceSubClass > US_SC_MAX) {
  939. /* if it's not a mass storage, we go no further */
  940. return 0;
  941. }
  942. memset(ss, 0, sizeof(struct us_data));
  943. /* At this point, we know we've got a live one */
  944. USB_STOR_PRINTF("\n\nUSB Mass Storage device detected\n");
  945. /* Initialize the us_data structure with some useful info */
  946. ss->flags = flags;
  947. ss->ifnum = ifnum;
  948. ss->pusb_dev = dev;
  949. ss->attention_done = 0;
  950. /* If the device has subclass and protocol, then use that. Otherwise,
  951. * take data from the specific interface.
  952. */
  953. if (subclass) {
  954. ss->subclass = subclass;
  955. ss->protocol = protocol;
  956. } else {
  957. ss->subclass = iface->bInterfaceSubClass;
  958. ss->protocol = iface->bInterfaceProtocol;
  959. }
  960. /* set the handler pointers based on the protocol */
  961. USB_STOR_PRINTF("Transport: ");
  962. switch (ss->protocol) {
  963. case US_PR_CB:
  964. USB_STOR_PRINTF("Control/Bulk\n");
  965. ss->transport = usb_stor_CB_transport;
  966. ss->transport_reset = usb_stor_CB_reset;
  967. break;
  968. case US_PR_CBI:
  969. USB_STOR_PRINTF("Control/Bulk/Interrupt\n");
  970. ss->transport = usb_stor_CB_transport;
  971. ss->transport_reset = usb_stor_CB_reset;
  972. break;
  973. case US_PR_BULK:
  974. USB_STOR_PRINTF("Bulk/Bulk/Bulk\n");
  975. ss->transport = usb_stor_BBB_transport;
  976. ss->transport_reset = usb_stor_BBB_reset;
  977. break;
  978. default:
  979. printf("USB Storage Transport unknown / not yet implemented\n");
  980. return 0;
  981. break;
  982. }
  983. /*
  984. * We are expecting a minimum of 2 endpoints - in and out (bulk).
  985. * An optional interrupt is OK (necessary for CBI protocol).
  986. * We will ignore any others.
  987. */
  988. for (i = 0; i < iface->bNumEndpoints; i++) {
  989. /* is it an BULK endpoint? */
  990. if ((iface->ep_desc[i].bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
  991. == USB_ENDPOINT_XFER_BULK) {
  992. if (iface->ep_desc[i].bEndpointAddress & USB_DIR_IN)
  993. ss->ep_in = iface->ep_desc[i].bEndpointAddress &
  994. USB_ENDPOINT_NUMBER_MASK;
  995. else
  996. ss->ep_out = iface->ep_desc[i].bEndpointAddress &
  997. USB_ENDPOINT_NUMBER_MASK;
  998. }
  999. /* is it an interrupt endpoint? */
  1000. if ((iface->ep_desc[i].bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
  1001. == USB_ENDPOINT_XFER_INT) {
  1002. ss->ep_int = iface->ep_desc[i].bEndpointAddress &
  1003. USB_ENDPOINT_NUMBER_MASK;
  1004. ss->irqinterval = iface->ep_desc[i].bInterval;
  1005. }
  1006. }
  1007. USB_STOR_PRINTF("Endpoints In %d Out %d Int %d\n",
  1008. ss->ep_in, ss->ep_out, ss->ep_int);
  1009. /* Do some basic sanity checks, and bail if we find a problem */
  1010. if (usb_set_interface(dev, iface->bInterfaceNumber, 0) ||
  1011. !ss->ep_in || !ss->ep_out ||
  1012. (ss->protocol == US_PR_CBI && ss->ep_int == 0)) {
  1013. USB_STOR_PRINTF("Problems with device\n");
  1014. return 0;
  1015. }
  1016. /* set class specific stuff */
  1017. /* We only handle certain protocols. Currently, these are
  1018. * the only ones.
  1019. * The SFF8070 accepts the requests used in u-boot
  1020. */
  1021. if (ss->subclass != US_SC_UFI && ss->subclass != US_SC_SCSI &&
  1022. ss->subclass != US_SC_8070) {
  1023. printf("Sorry, protocol %d not yet supported.\n",ss->subclass);
  1024. return 0;
  1025. }
  1026. if(ss->ep_int) { /* we had found an interrupt endpoint, prepare irq pipe */
  1027. /* set up the IRQ pipe and handler */
  1028. ss->irqinterval = (ss->irqinterval > 0) ? ss->irqinterval : 255;
  1029. ss->irqpipe = usb_rcvintpipe(ss->pusb_dev, ss->ep_int);
  1030. ss->irqmaxp = usb_maxpacket(dev, ss->irqpipe);
  1031. dev->irq_handle=usb_stor_irq;
  1032. }
  1033. dev->privptr=(void *)ss;
  1034. return 1;
  1035. }
  1036. int usb_stor_get_info(struct usb_device *dev,struct us_data *ss,block_dev_desc_t *dev_desc)
  1037. {
  1038. unsigned char perq,modi;
  1039. unsigned long cap[2];
  1040. unsigned long *capacity,*blksz;
  1041. ccb *pccb = &usb_ccb;
  1042. /* for some reasons a couple of devices would not survive this reset */
  1043. if (
  1044. /* Sony USM256E */
  1045. (dev->descriptor.idVendor == 0x054c &&
  1046. dev->descriptor.idProduct == 0x019e)
  1047. ||
  1048. /* USB007 Mini-USB2 Flash Drive */
  1049. (dev->descriptor.idVendor == 0x066f &&
  1050. dev->descriptor.idProduct == 0x2010)
  1051. ||
  1052. /* SanDisk Corporation Cruzer Micro 20044318410546613953 */
  1053. (dev->descriptor.idVendor == 0x0781 &&
  1054. dev->descriptor.idProduct == 0x5151)
  1055. )
  1056. USB_STOR_PRINTF("usb_stor_get_info: skipping RESET..\n");
  1057. else
  1058. ss->transport_reset(ss);
  1059. pccb->pdata = usb_stor_buf;
  1060. dev_desc->target = dev->devnum;
  1061. pccb->lun = dev_desc->lun;
  1062. USB_STOR_PRINTF(" address %d\n",dev_desc->target);
  1063. if(usb_inquiry(pccb,ss))
  1064. return -1;
  1065. perq = usb_stor_buf[0];
  1066. modi = usb_stor_buf[1];
  1067. if((perq & 0x1f) == 0x1f) {
  1068. return 0; /* skip unknown devices */
  1069. }
  1070. if((modi&0x80) == 0x80) {/* drive is removable */
  1071. dev_desc->removable = 1;
  1072. }
  1073. memcpy(&dev_desc->vendor[0], &usb_stor_buf[8], 8);
  1074. memcpy(&dev_desc->product[0], &usb_stor_buf[16], 16);
  1075. memcpy(&dev_desc->revision[0], &usb_stor_buf[32], 4);
  1076. dev_desc->vendor[8] = 0;
  1077. dev_desc->product[16] = 0;
  1078. dev_desc->revision[4] = 0;
  1079. #ifdef CONFIG_USB_BIN_FIXUP
  1080. usb_bin_fixup(dev->descriptor, (uchar *)dev_desc->vendor, (uchar *)dev_desc->product);
  1081. #endif /* CONFIG_USB_BIN_FIXUP */
  1082. USB_STOR_PRINTF("ISO Vers %X, Response Data %X\n",usb_stor_buf[2],usb_stor_buf[3]);
  1083. if(usb_test_unit_ready(pccb,ss)) {
  1084. printf("Device NOT ready\n Request Sense returned %02X %02X %02X\n",pccb->sense_buf[2],pccb->sense_buf[12],pccb->sense_buf[13]);
  1085. if(dev_desc->removable == 1) {
  1086. dev_desc->type = perq;
  1087. return 1;
  1088. }
  1089. else
  1090. return 0;
  1091. }
  1092. pccb->pdata = (unsigned char *)&cap[0];
  1093. memset(pccb->pdata,0,8);
  1094. if(usb_read_capacity(pccb,ss) != 0) {
  1095. printf("READ_CAP ERROR\n");
  1096. cap[0] = 2880;
  1097. cap[1] = 0x200;
  1098. }
  1099. USB_STOR_PRINTF("Read Capacity returns: 0x%lx, 0x%lx\n",cap[0],cap[1]);
  1100. #if 0
  1101. if(cap[0]>(0x200000 * 10)) /* greater than 10 GByte */
  1102. cap[0]>>=16;
  1103. #endif
  1104. #ifdef LITTLEENDIAN
  1105. cap[0] = ((unsigned long)(
  1106. (((unsigned long)(cap[0]) & (unsigned long)0x000000ffUL) << 24) |
  1107. (((unsigned long)(cap[0]) & (unsigned long)0x0000ff00UL) << 8) |
  1108. (((unsigned long)(cap[0]) & (unsigned long)0x00ff0000UL) >> 8) |
  1109. (((unsigned long)(cap[0]) & (unsigned long)0xff000000UL) >> 24) ));
  1110. cap[1] = ((unsigned long)(
  1111. (((unsigned long)(cap[1]) & (unsigned long)0x000000ffUL) << 24) |
  1112. (((unsigned long)(cap[1]) & (unsigned long)0x0000ff00UL) << 8) |
  1113. (((unsigned long)(cap[1]) & (unsigned long)0x00ff0000UL) >> 8) |
  1114. (((unsigned long)(cap[1]) & (unsigned long)0xff000000UL) >> 24) ));
  1115. #endif
  1116. /* this assumes bigendian! */
  1117. cap[0] += 1;
  1118. capacity = &cap[0];
  1119. blksz = &cap[1];
  1120. USB_STOR_PRINTF("Capacity = 0x%lx, blocksz = 0x%lx\n",*capacity,*blksz);
  1121. dev_desc->lba = *capacity;
  1122. dev_desc->blksz = *blksz;
  1123. dev_desc->type = perq;
  1124. USB_STOR_PRINTF(" address %d\n",dev_desc->target);
  1125. USB_STOR_PRINTF("partype: %d\n",dev_desc->part_type);
  1126. init_part(dev_desc);
  1127. USB_STOR_PRINTF("partype: %d\n",dev_desc->part_type);
  1128. return 1;
  1129. }
  1130. #endif /* CONFIG_USB_STORAGE */
  1131. #endif