sr_ioctl.c 15 KB

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  1. #include <linux/kernel.h>
  2. #include <linux/sched.h>
  3. #include <linux/mm.h>
  4. #include <linux/fs.h>
  5. #include <linux/errno.h>
  6. #include <linux/string.h>
  7. #include <linux/blkdev.h>
  8. #include <linux/blkpg.h>
  9. #include <linux/cdrom.h>
  10. #include <linux/delay.h>
  11. #include <asm/io.h>
  12. #include <asm/uaccess.h>
  13. #include <scsi/scsi.h>
  14. #include <scsi/scsi_dbg.h>
  15. #include <scsi/scsi_device.h>
  16. #include <scsi/scsi_eh.h>
  17. #include <scsi/scsi_host.h>
  18. #include <scsi/scsi_ioctl.h>
  19. #include <scsi/scsi_request.h>
  20. #include "sr.h"
  21. #if 0
  22. #define DEBUG
  23. #endif
  24. /* The sr_is_xa() seems to trigger firmware bugs with some drives :-(
  25. * It is off by default and can be turned on with this module parameter */
  26. static int xa_test = 0;
  27. module_param(xa_test, int, S_IRUGO | S_IWUSR);
  28. #define IOCTL_RETRIES 3
  29. /* ATAPI drives don't have a SCMD_PLAYAUDIO_TI command. When these drives
  30. are emulating a SCSI device via the idescsi module, they need to have
  31. CDROMPLAYTRKIND commands translated into CDROMPLAYMSF commands for them */
  32. static int sr_fake_playtrkind(struct cdrom_device_info *cdi, struct cdrom_ti *ti)
  33. {
  34. struct cdrom_tocentry trk0_te, trk1_te;
  35. struct cdrom_tochdr tochdr;
  36. struct packet_command cgc;
  37. int ntracks, ret;
  38. if ((ret = sr_audio_ioctl(cdi, CDROMREADTOCHDR, &tochdr)))
  39. return ret;
  40. ntracks = tochdr.cdth_trk1 - tochdr.cdth_trk0 + 1;
  41. if (ti->cdti_trk1 == ntracks)
  42. ti->cdti_trk1 = CDROM_LEADOUT;
  43. else if (ti->cdti_trk1 != CDROM_LEADOUT)
  44. ti->cdti_trk1 ++;
  45. trk0_te.cdte_track = ti->cdti_trk0;
  46. trk0_te.cdte_format = CDROM_MSF;
  47. trk1_te.cdte_track = ti->cdti_trk1;
  48. trk1_te.cdte_format = CDROM_MSF;
  49. if ((ret = sr_audio_ioctl(cdi, CDROMREADTOCENTRY, &trk0_te)))
  50. return ret;
  51. if ((ret = sr_audio_ioctl(cdi, CDROMREADTOCENTRY, &trk1_te)))
  52. return ret;
  53. memset(&cgc, 0, sizeof(struct packet_command));
  54. cgc.cmd[0] = GPCMD_PLAY_AUDIO_MSF;
  55. cgc.cmd[3] = trk0_te.cdte_addr.msf.minute;
  56. cgc.cmd[4] = trk0_te.cdte_addr.msf.second;
  57. cgc.cmd[5] = trk0_te.cdte_addr.msf.frame;
  58. cgc.cmd[6] = trk1_te.cdte_addr.msf.minute;
  59. cgc.cmd[7] = trk1_te.cdte_addr.msf.second;
  60. cgc.cmd[8] = trk1_te.cdte_addr.msf.frame;
  61. cgc.data_direction = DMA_NONE;
  62. cgc.timeout = IOCTL_TIMEOUT;
  63. return sr_do_ioctl(cdi->handle, &cgc);
  64. }
  65. /* We do our own retries because we want to know what the specific
  66. error code is. Normally the UNIT_ATTENTION code will automatically
  67. clear after one error */
  68. int sr_do_ioctl(Scsi_CD *cd, struct packet_command *cgc)
  69. {
  70. struct scsi_request *SRpnt;
  71. struct scsi_device *SDev;
  72. struct request *req;
  73. int result, err = 0, retries = 0;
  74. SDev = cd->device;
  75. SRpnt = scsi_allocate_request(SDev, GFP_KERNEL);
  76. if (!SRpnt) {
  77. printk(KERN_ERR "Unable to allocate SCSI request in sr_do_ioctl");
  78. err = -ENOMEM;
  79. goto out;
  80. }
  81. SRpnt->sr_data_direction = cgc->data_direction;
  82. retry:
  83. if (!scsi_block_when_processing_errors(SDev)) {
  84. err = -ENODEV;
  85. goto out_free;
  86. }
  87. scsi_wait_req(SRpnt, cgc->cmd, cgc->buffer, cgc->buflen,
  88. cgc->timeout, IOCTL_RETRIES);
  89. req = SRpnt->sr_request;
  90. if (SRpnt->sr_buffer && req->buffer && SRpnt->sr_buffer != req->buffer) {
  91. memcpy(req->buffer, SRpnt->sr_buffer, SRpnt->sr_bufflen);
  92. kfree(SRpnt->sr_buffer);
  93. SRpnt->sr_buffer = req->buffer;
  94. }
  95. result = SRpnt->sr_result;
  96. /* Minimal error checking. Ignore cases we know about, and report the rest. */
  97. if (driver_byte(result) != 0) {
  98. switch (SRpnt->sr_sense_buffer[2] & 0xf) {
  99. case UNIT_ATTENTION:
  100. SDev->changed = 1;
  101. if (!cgc->quiet)
  102. printk(KERN_INFO "%s: disc change detected.\n", cd->cdi.name);
  103. if (retries++ < 10)
  104. goto retry;
  105. err = -ENOMEDIUM;
  106. break;
  107. case NOT_READY: /* This happens if there is no disc in drive */
  108. if (SRpnt->sr_sense_buffer[12] == 0x04 &&
  109. SRpnt->sr_sense_buffer[13] == 0x01) {
  110. /* sense: Logical unit is in process of becoming ready */
  111. if (!cgc->quiet)
  112. printk(KERN_INFO "%s: CDROM not ready yet.\n", cd->cdi.name);
  113. if (retries++ < 10) {
  114. /* sleep 2 sec and try again */
  115. ssleep(2);
  116. goto retry;
  117. } else {
  118. /* 20 secs are enough? */
  119. err = -ENOMEDIUM;
  120. break;
  121. }
  122. }
  123. if (!cgc->quiet)
  124. printk(KERN_INFO "%s: CDROM not ready. Make sure there is a disc in the drive.\n", cd->cdi.name);
  125. #ifdef DEBUG
  126. scsi_print_req_sense("sr", SRpnt);
  127. #endif
  128. err = -ENOMEDIUM;
  129. break;
  130. case ILLEGAL_REQUEST:
  131. err = -EIO;
  132. if (SRpnt->sr_sense_buffer[12] == 0x20 &&
  133. SRpnt->sr_sense_buffer[13] == 0x00)
  134. /* sense: Invalid command operation code */
  135. err = -EDRIVE_CANT_DO_THIS;
  136. #ifdef DEBUG
  137. __scsi_print_command(cgc->cmd);
  138. scsi_print_req_sense("sr", SRpnt);
  139. #endif
  140. break;
  141. default:
  142. printk(KERN_ERR "%s: CDROM (ioctl) error, command: ", cd->cdi.name);
  143. __scsi_print_command(cgc->cmd);
  144. scsi_print_req_sense("sr", SRpnt);
  145. err = -EIO;
  146. }
  147. }
  148. if (cgc->sense)
  149. memcpy(cgc->sense, SRpnt->sr_sense_buffer, sizeof(*cgc->sense));
  150. /* Wake up a process waiting for device */
  151. out_free:
  152. scsi_release_request(SRpnt);
  153. SRpnt = NULL;
  154. out:
  155. cgc->stat = err;
  156. return err;
  157. }
  158. /* ---------------------------------------------------------------------- */
  159. /* interface to cdrom.c */
  160. static int test_unit_ready(Scsi_CD *cd)
  161. {
  162. struct packet_command cgc;
  163. memset(&cgc, 0, sizeof(struct packet_command));
  164. cgc.cmd[0] = GPCMD_TEST_UNIT_READY;
  165. cgc.quiet = 1;
  166. cgc.data_direction = DMA_NONE;
  167. cgc.timeout = IOCTL_TIMEOUT;
  168. return sr_do_ioctl(cd, &cgc);
  169. }
  170. int sr_tray_move(struct cdrom_device_info *cdi, int pos)
  171. {
  172. Scsi_CD *cd = cdi->handle;
  173. struct packet_command cgc;
  174. memset(&cgc, 0, sizeof(struct packet_command));
  175. cgc.cmd[0] = GPCMD_START_STOP_UNIT;
  176. cgc.cmd[4] = (pos == 0) ? 0x03 /* close */ : 0x02 /* eject */ ;
  177. cgc.data_direction = DMA_NONE;
  178. cgc.timeout = IOCTL_TIMEOUT;
  179. return sr_do_ioctl(cd, &cgc);
  180. }
  181. int sr_lock_door(struct cdrom_device_info *cdi, int lock)
  182. {
  183. Scsi_CD *cd = cdi->handle;
  184. return scsi_set_medium_removal(cd->device, lock ?
  185. SCSI_REMOVAL_PREVENT : SCSI_REMOVAL_ALLOW);
  186. }
  187. int sr_drive_status(struct cdrom_device_info *cdi, int slot)
  188. {
  189. if (CDSL_CURRENT != slot) {
  190. /* we have no changer support */
  191. return -EINVAL;
  192. }
  193. if (0 == test_unit_ready(cdi->handle))
  194. return CDS_DISC_OK;
  195. return CDS_TRAY_OPEN;
  196. }
  197. int sr_disk_status(struct cdrom_device_info *cdi)
  198. {
  199. Scsi_CD *cd = cdi->handle;
  200. struct cdrom_tochdr toc_h;
  201. struct cdrom_tocentry toc_e;
  202. int i, rc, have_datatracks = 0;
  203. /* look for data tracks */
  204. if (0 != (rc = sr_audio_ioctl(cdi, CDROMREADTOCHDR, &toc_h)))
  205. return (rc == -ENOMEDIUM) ? CDS_NO_DISC : CDS_NO_INFO;
  206. for (i = toc_h.cdth_trk0; i <= toc_h.cdth_trk1; i++) {
  207. toc_e.cdte_track = i;
  208. toc_e.cdte_format = CDROM_LBA;
  209. if (sr_audio_ioctl(cdi, CDROMREADTOCENTRY, &toc_e))
  210. return CDS_NO_INFO;
  211. if (toc_e.cdte_ctrl & CDROM_DATA_TRACK) {
  212. have_datatracks = 1;
  213. break;
  214. }
  215. }
  216. if (!have_datatracks)
  217. return CDS_AUDIO;
  218. if (cd->xa_flag)
  219. return CDS_XA_2_1;
  220. else
  221. return CDS_DATA_1;
  222. }
  223. int sr_get_last_session(struct cdrom_device_info *cdi,
  224. struct cdrom_multisession *ms_info)
  225. {
  226. Scsi_CD *cd = cdi->handle;
  227. ms_info->addr.lba = cd->ms_offset;
  228. ms_info->xa_flag = cd->xa_flag || cd->ms_offset > 0;
  229. return 0;
  230. }
  231. /* primitive to determine whether we need to have GFP_DMA set based on
  232. * the status of the unchecked_isa_dma flag in the host structure */
  233. #define SR_GFP_DMA(cd) (((cd)->device->host->unchecked_isa_dma) ? GFP_DMA : 0)
  234. int sr_get_mcn(struct cdrom_device_info *cdi, struct cdrom_mcn *mcn)
  235. {
  236. Scsi_CD *cd = cdi->handle;
  237. struct packet_command cgc;
  238. char *buffer = kmalloc(32, GFP_KERNEL | SR_GFP_DMA(cd));
  239. int result;
  240. if (!buffer)
  241. return -ENOMEM;
  242. memset(&cgc, 0, sizeof(struct packet_command));
  243. cgc.cmd[0] = GPCMD_READ_SUBCHANNEL;
  244. cgc.cmd[2] = 0x40; /* I do want the subchannel info */
  245. cgc.cmd[3] = 0x02; /* Give me medium catalog number info */
  246. cgc.cmd[8] = 24;
  247. cgc.buffer = buffer;
  248. cgc.buflen = 24;
  249. cgc.data_direction = DMA_FROM_DEVICE;
  250. cgc.timeout = IOCTL_TIMEOUT;
  251. result = sr_do_ioctl(cd, &cgc);
  252. memcpy(mcn->medium_catalog_number, buffer + 9, 13);
  253. mcn->medium_catalog_number[13] = 0;
  254. kfree(buffer);
  255. return result;
  256. }
  257. int sr_reset(struct cdrom_device_info *cdi)
  258. {
  259. return 0;
  260. }
  261. int sr_select_speed(struct cdrom_device_info *cdi, int speed)
  262. {
  263. Scsi_CD *cd = cdi->handle;
  264. struct packet_command cgc;
  265. if (speed == 0)
  266. speed = 0xffff; /* set to max */
  267. else
  268. speed *= 177; /* Nx to kbyte/s */
  269. memset(&cgc, 0, sizeof(struct packet_command));
  270. cgc.cmd[0] = GPCMD_SET_SPEED; /* SET CD SPEED */
  271. cgc.cmd[2] = (speed >> 8) & 0xff; /* MSB for speed (in kbytes/sec) */
  272. cgc.cmd[3] = speed & 0xff; /* LSB */
  273. cgc.data_direction = DMA_NONE;
  274. cgc.timeout = IOCTL_TIMEOUT;
  275. if (sr_do_ioctl(cd, &cgc))
  276. return -EIO;
  277. return 0;
  278. }
  279. /* ----------------------------------------------------------------------- */
  280. /* this is called by the generic cdrom driver. arg is a _kernel_ pointer, */
  281. /* because the generic cdrom driver does the user access stuff for us. */
  282. /* only cdromreadtochdr and cdromreadtocentry are left - for use with the */
  283. /* sr_disk_status interface for the generic cdrom driver. */
  284. int sr_audio_ioctl(struct cdrom_device_info *cdi, unsigned int cmd, void *arg)
  285. {
  286. Scsi_CD *cd = cdi->handle;
  287. struct packet_command cgc;
  288. int result;
  289. unsigned char *buffer = kmalloc(32, GFP_KERNEL | SR_GFP_DMA(cd));
  290. if (!buffer)
  291. return -ENOMEM;
  292. memset(&cgc, 0, sizeof(struct packet_command));
  293. cgc.timeout = IOCTL_TIMEOUT;
  294. switch (cmd) {
  295. case CDROMREADTOCHDR:
  296. {
  297. struct cdrom_tochdr *tochdr = (struct cdrom_tochdr *) arg;
  298. cgc.cmd[0] = GPCMD_READ_TOC_PMA_ATIP;
  299. cgc.cmd[8] = 12; /* LSB of length */
  300. cgc.buffer = buffer;
  301. cgc.buflen = 12;
  302. cgc.quiet = 1;
  303. cgc.data_direction = DMA_FROM_DEVICE;
  304. result = sr_do_ioctl(cd, &cgc);
  305. tochdr->cdth_trk0 = buffer[2];
  306. tochdr->cdth_trk1 = buffer[3];
  307. break;
  308. }
  309. case CDROMREADTOCENTRY:
  310. {
  311. struct cdrom_tocentry *tocentry = (struct cdrom_tocentry *) arg;
  312. cgc.cmd[0] = GPCMD_READ_TOC_PMA_ATIP;
  313. cgc.cmd[1] |= (tocentry->cdte_format == CDROM_MSF) ? 0x02 : 0;
  314. cgc.cmd[6] = tocentry->cdte_track;
  315. cgc.cmd[8] = 12; /* LSB of length */
  316. cgc.buffer = buffer;
  317. cgc.buflen = 12;
  318. cgc.data_direction = DMA_FROM_DEVICE;
  319. result = sr_do_ioctl(cd, &cgc);
  320. tocentry->cdte_ctrl = buffer[5] & 0xf;
  321. tocentry->cdte_adr = buffer[5] >> 4;
  322. tocentry->cdte_datamode = (tocentry->cdte_ctrl & 0x04) ? 1 : 0;
  323. if (tocentry->cdte_format == CDROM_MSF) {
  324. tocentry->cdte_addr.msf.minute = buffer[9];
  325. tocentry->cdte_addr.msf.second = buffer[10];
  326. tocentry->cdte_addr.msf.frame = buffer[11];
  327. } else
  328. tocentry->cdte_addr.lba = (((((buffer[8] << 8) + buffer[9]) << 8)
  329. + buffer[10]) << 8) + buffer[11];
  330. break;
  331. }
  332. case CDROMPLAYTRKIND: {
  333. struct cdrom_ti* ti = (struct cdrom_ti*)arg;
  334. cgc.cmd[0] = GPCMD_PLAYAUDIO_TI;
  335. cgc.cmd[4] = ti->cdti_trk0;
  336. cgc.cmd[5] = ti->cdti_ind0;
  337. cgc.cmd[7] = ti->cdti_trk1;
  338. cgc.cmd[8] = ti->cdti_ind1;
  339. cgc.data_direction = DMA_NONE;
  340. result = sr_do_ioctl(cd, &cgc);
  341. if (result == -EDRIVE_CANT_DO_THIS)
  342. result = sr_fake_playtrkind(cdi, ti);
  343. break;
  344. }
  345. default:
  346. result = -EINVAL;
  347. }
  348. #if 0
  349. if (result)
  350. printk("DEBUG: sr_audio: result for ioctl %x: %x\n", cmd, result);
  351. #endif
  352. kfree(buffer);
  353. return result;
  354. }
  355. /* -----------------------------------------------------------------------
  356. * a function to read all sorts of funny cdrom sectors using the READ_CD
  357. * scsi-3 mmc command
  358. *
  359. * lba: linear block address
  360. * format: 0 = data (anything)
  361. * 1 = audio
  362. * 2 = data (mode 1)
  363. * 3 = data (mode 2)
  364. * 4 = data (mode 2 form1)
  365. * 5 = data (mode 2 form2)
  366. * blksize: 2048 | 2336 | 2340 | 2352
  367. */
  368. static int sr_read_cd(Scsi_CD *cd, unsigned char *dest, int lba, int format, int blksize)
  369. {
  370. struct packet_command cgc;
  371. #ifdef DEBUG
  372. printk("%s: sr_read_cd lba=%d format=%d blksize=%d\n",
  373. cd->cdi.name, lba, format, blksize);
  374. #endif
  375. memset(&cgc, 0, sizeof(struct packet_command));
  376. cgc.cmd[0] = GPCMD_READ_CD; /* READ_CD */
  377. cgc.cmd[1] = ((format & 7) << 2);
  378. cgc.cmd[2] = (unsigned char) (lba >> 24) & 0xff;
  379. cgc.cmd[3] = (unsigned char) (lba >> 16) & 0xff;
  380. cgc.cmd[4] = (unsigned char) (lba >> 8) & 0xff;
  381. cgc.cmd[5] = (unsigned char) lba & 0xff;
  382. cgc.cmd[8] = 1;
  383. switch (blksize) {
  384. case 2336:
  385. cgc.cmd[9] = 0x58;
  386. break;
  387. case 2340:
  388. cgc.cmd[9] = 0x78;
  389. break;
  390. case 2352:
  391. cgc.cmd[9] = 0xf8;
  392. break;
  393. default:
  394. cgc.cmd[9] = 0x10;
  395. break;
  396. }
  397. cgc.buffer = dest;
  398. cgc.buflen = blksize;
  399. cgc.data_direction = DMA_FROM_DEVICE;
  400. cgc.timeout = IOCTL_TIMEOUT;
  401. return sr_do_ioctl(cd, &cgc);
  402. }
  403. /*
  404. * read sectors with blocksizes other than 2048
  405. */
  406. static int sr_read_sector(Scsi_CD *cd, int lba, int blksize, unsigned char *dest)
  407. {
  408. struct packet_command cgc;
  409. int rc;
  410. /* we try the READ CD command first... */
  411. if (cd->readcd_known) {
  412. rc = sr_read_cd(cd, dest, lba, 0, blksize);
  413. if (-EDRIVE_CANT_DO_THIS != rc)
  414. return rc;
  415. cd->readcd_known = 0;
  416. printk("CDROM does'nt support READ CD (0xbe) command\n");
  417. /* fall & retry the other way */
  418. }
  419. /* ... if this fails, we switch the blocksize using MODE SELECT */
  420. if (blksize != cd->device->sector_size) {
  421. if (0 != (rc = sr_set_blocklength(cd, blksize)))
  422. return rc;
  423. }
  424. #ifdef DEBUG
  425. printk("%s: sr_read_sector lba=%d blksize=%d\n", cd->cdi.name, lba, blksize);
  426. #endif
  427. memset(&cgc, 0, sizeof(struct packet_command));
  428. cgc.cmd[0] = GPCMD_READ_10;
  429. cgc.cmd[2] = (unsigned char) (lba >> 24) & 0xff;
  430. cgc.cmd[3] = (unsigned char) (lba >> 16) & 0xff;
  431. cgc.cmd[4] = (unsigned char) (lba >> 8) & 0xff;
  432. cgc.cmd[5] = (unsigned char) lba & 0xff;
  433. cgc.cmd[8] = 1;
  434. cgc.buffer = dest;
  435. cgc.buflen = blksize;
  436. cgc.data_direction = DMA_FROM_DEVICE;
  437. cgc.timeout = IOCTL_TIMEOUT;
  438. rc = sr_do_ioctl(cd, &cgc);
  439. return rc;
  440. }
  441. /*
  442. * read a sector in raw mode to check the sector format
  443. * ret: 1 == mode2 (XA), 0 == mode1, <0 == error
  444. */
  445. int sr_is_xa(Scsi_CD *cd)
  446. {
  447. unsigned char *raw_sector;
  448. int is_xa;
  449. if (!xa_test)
  450. return 0;
  451. raw_sector = (unsigned char *) kmalloc(2048, GFP_KERNEL | SR_GFP_DMA(cd));
  452. if (!raw_sector)
  453. return -ENOMEM;
  454. if (0 == sr_read_sector(cd, cd->ms_offset + 16,
  455. CD_FRAMESIZE_RAW1, raw_sector)) {
  456. is_xa = (raw_sector[3] == 0x02) ? 1 : 0;
  457. } else {
  458. /* read a raw sector failed for some reason. */
  459. is_xa = -1;
  460. }
  461. kfree(raw_sector);
  462. #ifdef DEBUG
  463. printk("%s: sr_is_xa: %d\n", cd->cdi.name, is_xa);
  464. #endif
  465. return is_xa;
  466. }
  467. int sr_dev_ioctl(struct cdrom_device_info *cdi,
  468. unsigned int cmd, unsigned long arg)
  469. {
  470. Scsi_CD *cd = cdi->handle;
  471. int ret;
  472. ret = scsi_nonblockable_ioctl(cd->device, cmd,
  473. (void __user *)arg, NULL);
  474. /*
  475. * ENODEV means that we didn't recognise the ioctl, or that we
  476. * cannot execute it in the current device state. In either
  477. * case fall through to scsi_ioctl, which will return ENDOEV again
  478. * if it doesn't recognise the ioctl
  479. */
  480. if (ret != -ENODEV)
  481. return ret;
  482. return scsi_ioctl(cd->device, cmd, (void __user *)arg);
  483. }