ide-cd_ioctl.c 11 KB

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  1. /*
  2. * cdrom.c IOCTLs handling for ide-cd driver.
  3. *
  4. * Copyright (C) 1994-1996 Scott Snyder <snyder@fnald0.fnal.gov>
  5. * Copyright (C) 1996-1998 Erik Andersen <andersee@debian.org>
  6. * Copyright (C) 1998-2000 Jens Axboe <axboe@suse.de>
  7. */
  8. #include <linux/kernel.h>
  9. #include <linux/cdrom.h>
  10. #include <linux/gfp.h>
  11. #include <linux/ide.h>
  12. #include <scsi/scsi.h>
  13. #include "ide-cd.h"
  14. /****************************************************************************
  15. * Other driver requests (open, close, check media change).
  16. */
  17. int ide_cdrom_open_real(struct cdrom_device_info *cdi, int purpose)
  18. {
  19. return 0;
  20. }
  21. /*
  22. * Close down the device. Invalidate all cached blocks.
  23. */
  24. void ide_cdrom_release_real(struct cdrom_device_info *cdi)
  25. {
  26. ide_drive_t *drive = cdi->handle;
  27. if (!cdi->use_count)
  28. drive->atapi_flags &= ~IDE_AFLAG_TOC_VALID;
  29. }
  30. /*
  31. * add logic to try GET_EVENT command first to check for media and tray
  32. * status. this should be supported by newer cd-r/w and all DVD etc
  33. * drives
  34. */
  35. int ide_cdrom_drive_status(struct cdrom_device_info *cdi, int slot_nr)
  36. {
  37. ide_drive_t *drive = cdi->handle;
  38. struct media_event_desc med;
  39. struct request_sense sense;
  40. int stat;
  41. if (slot_nr != CDSL_CURRENT)
  42. return -EINVAL;
  43. stat = cdrom_check_status(drive, &sense);
  44. if (!stat || sense.sense_key == UNIT_ATTENTION)
  45. return CDS_DISC_OK;
  46. if (!cdrom_get_media_event(cdi, &med)) {
  47. if (med.media_present)
  48. return CDS_DISC_OK;
  49. else if (med.door_open)
  50. return CDS_TRAY_OPEN;
  51. else
  52. return CDS_NO_DISC;
  53. }
  54. if (sense.sense_key == NOT_READY && sense.asc == 0x04
  55. && sense.ascq == 0x04)
  56. return CDS_DISC_OK;
  57. /*
  58. * If not using Mt Fuji extended media tray reports,
  59. * just return TRAY_OPEN since ATAPI doesn't provide
  60. * any other way to detect this...
  61. */
  62. if (sense.sense_key == NOT_READY) {
  63. if (sense.asc == 0x3a && sense.ascq == 1)
  64. return CDS_NO_DISC;
  65. else
  66. return CDS_TRAY_OPEN;
  67. }
  68. return CDS_DRIVE_NOT_READY;
  69. }
  70. int ide_cdrom_check_media_change_real(struct cdrom_device_info *cdi,
  71. int slot_nr)
  72. {
  73. ide_drive_t *drive = cdi->handle;
  74. int retval;
  75. if (slot_nr == CDSL_CURRENT) {
  76. (void) cdrom_check_status(drive, NULL);
  77. retval = (drive->dev_flags & IDE_DFLAG_MEDIA_CHANGED) ? 1 : 0;
  78. drive->dev_flags &= ~IDE_DFLAG_MEDIA_CHANGED;
  79. return retval;
  80. } else {
  81. return -EINVAL;
  82. }
  83. }
  84. /* Eject the disk if EJECTFLAG is 0.
  85. If EJECTFLAG is 1, try to reload the disk. */
  86. static
  87. int cdrom_eject(ide_drive_t *drive, int ejectflag,
  88. struct request_sense *sense)
  89. {
  90. struct cdrom_info *cd = drive->driver_data;
  91. struct cdrom_device_info *cdi = &cd->devinfo;
  92. char loej = 0x02;
  93. unsigned char cmd[BLK_MAX_CDB];
  94. if ((drive->atapi_flags & IDE_AFLAG_NO_EJECT) && !ejectflag)
  95. return -EDRIVE_CANT_DO_THIS;
  96. /* reload fails on some drives, if the tray is locked */
  97. if ((drive->atapi_flags & IDE_AFLAG_DOOR_LOCKED) && ejectflag)
  98. return 0;
  99. /* only tell drive to close tray if open, if it can do that */
  100. if (ejectflag && (cdi->mask & CDC_CLOSE_TRAY))
  101. loej = 0;
  102. memset(cmd, 0, BLK_MAX_CDB);
  103. cmd[0] = GPCMD_START_STOP_UNIT;
  104. cmd[4] = loej | (ejectflag != 0);
  105. return ide_cd_queue_pc(drive, cmd, 0, NULL, NULL, sense, 0, 0);
  106. }
  107. /* Lock the door if LOCKFLAG is nonzero; unlock it otherwise. */
  108. static
  109. int ide_cd_lockdoor(ide_drive_t *drive, int lockflag,
  110. struct request_sense *sense)
  111. {
  112. struct request_sense my_sense;
  113. int stat;
  114. if (sense == NULL)
  115. sense = &my_sense;
  116. /* If the drive cannot lock the door, just pretend. */
  117. if ((drive->dev_flags & IDE_DFLAG_DOORLOCKING) == 0) {
  118. stat = 0;
  119. } else {
  120. unsigned char cmd[BLK_MAX_CDB];
  121. memset(cmd, 0, BLK_MAX_CDB);
  122. cmd[0] = GPCMD_PREVENT_ALLOW_MEDIUM_REMOVAL;
  123. cmd[4] = lockflag ? 1 : 0;
  124. stat = ide_cd_queue_pc(drive, cmd, 0, NULL, NULL,
  125. sense, 0, 0);
  126. }
  127. /* If we got an illegal field error, the drive
  128. probably cannot lock the door. */
  129. if (stat != 0 &&
  130. sense->sense_key == ILLEGAL_REQUEST &&
  131. (sense->asc == 0x24 || sense->asc == 0x20)) {
  132. printk(KERN_ERR "%s: door locking not supported\n",
  133. drive->name);
  134. drive->dev_flags &= ~IDE_DFLAG_DOORLOCKING;
  135. stat = 0;
  136. }
  137. /* no medium, that's alright. */
  138. if (stat != 0 && sense->sense_key == NOT_READY && sense->asc == 0x3a)
  139. stat = 0;
  140. if (stat == 0) {
  141. if (lockflag)
  142. drive->atapi_flags |= IDE_AFLAG_DOOR_LOCKED;
  143. else
  144. drive->atapi_flags &= ~IDE_AFLAG_DOOR_LOCKED;
  145. }
  146. return stat;
  147. }
  148. int ide_cdrom_tray_move(struct cdrom_device_info *cdi, int position)
  149. {
  150. ide_drive_t *drive = cdi->handle;
  151. struct request_sense sense;
  152. if (position) {
  153. int stat = ide_cd_lockdoor(drive, 0, &sense);
  154. if (stat)
  155. return stat;
  156. }
  157. return cdrom_eject(drive, !position, &sense);
  158. }
  159. int ide_cdrom_lock_door(struct cdrom_device_info *cdi, int lock)
  160. {
  161. ide_drive_t *drive = cdi->handle;
  162. return ide_cd_lockdoor(drive, lock, NULL);
  163. }
  164. /*
  165. * ATAPI devices are free to select the speed you request or any slower
  166. * rate. :-( Requesting too fast a speed will _not_ produce an error.
  167. */
  168. int ide_cdrom_select_speed(struct cdrom_device_info *cdi, int speed)
  169. {
  170. ide_drive_t *drive = cdi->handle;
  171. struct cdrom_info *cd = drive->driver_data;
  172. struct request_sense sense;
  173. u8 buf[ATAPI_CAPABILITIES_PAGE_SIZE];
  174. int stat;
  175. unsigned char cmd[BLK_MAX_CDB];
  176. if (speed == 0)
  177. speed = 0xffff; /* set to max */
  178. else
  179. speed *= 177; /* Nx to kbytes/s */
  180. memset(cmd, 0, BLK_MAX_CDB);
  181. cmd[0] = GPCMD_SET_SPEED;
  182. /* Read Drive speed in kbytes/second MSB/LSB */
  183. cmd[2] = (speed >> 8) & 0xff;
  184. cmd[3] = speed & 0xff;
  185. if ((cdi->mask & (CDC_CD_R | CDC_CD_RW | CDC_DVD_R)) !=
  186. (CDC_CD_R | CDC_CD_RW | CDC_DVD_R)) {
  187. /* Write Drive speed in kbytes/second MSB/LSB */
  188. cmd[4] = (speed >> 8) & 0xff;
  189. cmd[5] = speed & 0xff;
  190. }
  191. stat = ide_cd_queue_pc(drive, cmd, 0, NULL, NULL, &sense, 0, 0);
  192. if (!ide_cdrom_get_capabilities(drive, buf)) {
  193. ide_cdrom_update_speed(drive, buf);
  194. cdi->speed = cd->current_speed;
  195. }
  196. return 0;
  197. }
  198. int ide_cdrom_get_last_session(struct cdrom_device_info *cdi,
  199. struct cdrom_multisession *ms_info)
  200. {
  201. struct atapi_toc *toc;
  202. ide_drive_t *drive = cdi->handle;
  203. struct cdrom_info *info = drive->driver_data;
  204. struct request_sense sense;
  205. int ret;
  206. if ((drive->atapi_flags & IDE_AFLAG_TOC_VALID) == 0 || !info->toc) {
  207. ret = ide_cd_read_toc(drive, &sense);
  208. if (ret)
  209. return ret;
  210. }
  211. toc = info->toc;
  212. ms_info->addr.lba = toc->last_session_lba;
  213. ms_info->xa_flag = toc->xa_flag;
  214. return 0;
  215. }
  216. int ide_cdrom_get_mcn(struct cdrom_device_info *cdi,
  217. struct cdrom_mcn *mcn_info)
  218. {
  219. ide_drive_t *drive = cdi->handle;
  220. int stat, mcnlen;
  221. char buf[24];
  222. unsigned char cmd[BLK_MAX_CDB];
  223. unsigned len = sizeof(buf);
  224. memset(cmd, 0, BLK_MAX_CDB);
  225. cmd[0] = GPCMD_READ_SUBCHANNEL;
  226. cmd[1] = 2; /* MSF addressing */
  227. cmd[2] = 0x40; /* request subQ data */
  228. cmd[3] = 2; /* format */
  229. cmd[8] = len;
  230. stat = ide_cd_queue_pc(drive, cmd, 0, buf, &len, NULL, 0, 0);
  231. if (stat)
  232. return stat;
  233. mcnlen = sizeof(mcn_info->medium_catalog_number) - 1;
  234. memcpy(mcn_info->medium_catalog_number, buf + 9, mcnlen);
  235. mcn_info->medium_catalog_number[mcnlen] = '\0';
  236. return 0;
  237. }
  238. int ide_cdrom_reset(struct cdrom_device_info *cdi)
  239. {
  240. ide_drive_t *drive = cdi->handle;
  241. struct cdrom_info *cd = drive->driver_data;
  242. struct request_sense sense;
  243. struct request *rq;
  244. int ret;
  245. rq = blk_get_request(drive->queue, READ, __GFP_WAIT);
  246. rq->cmd_type = REQ_TYPE_SPECIAL;
  247. rq->cmd_flags = REQ_QUIET;
  248. ret = blk_execute_rq(drive->queue, cd->disk, rq, 0);
  249. blk_put_request(rq);
  250. /*
  251. * A reset will unlock the door. If it was previously locked,
  252. * lock it again.
  253. */
  254. if (drive->atapi_flags & IDE_AFLAG_DOOR_LOCKED)
  255. (void)ide_cd_lockdoor(drive, 1, &sense);
  256. return ret;
  257. }
  258. static int ide_cd_get_toc_entry(ide_drive_t *drive, int track,
  259. struct atapi_toc_entry **ent)
  260. {
  261. struct cdrom_info *info = drive->driver_data;
  262. struct atapi_toc *toc = info->toc;
  263. int ntracks;
  264. /*
  265. * don't serve cached data, if the toc isn't valid
  266. */
  267. if ((drive->atapi_flags & IDE_AFLAG_TOC_VALID) == 0)
  268. return -EINVAL;
  269. /* Check validity of requested track number. */
  270. ntracks = toc->hdr.last_track - toc->hdr.first_track + 1;
  271. if (toc->hdr.first_track == CDROM_LEADOUT)
  272. ntracks = 0;
  273. if (track == CDROM_LEADOUT)
  274. *ent = &toc->ent[ntracks];
  275. else if (track < toc->hdr.first_track || track > toc->hdr.last_track)
  276. return -EINVAL;
  277. else
  278. *ent = &toc->ent[track - toc->hdr.first_track];
  279. return 0;
  280. }
  281. static int ide_cd_fake_play_trkind(ide_drive_t *drive, void *arg)
  282. {
  283. struct cdrom_ti *ti = arg;
  284. struct atapi_toc_entry *first_toc, *last_toc;
  285. unsigned long lba_start, lba_end;
  286. int stat;
  287. struct request_sense sense;
  288. unsigned char cmd[BLK_MAX_CDB];
  289. stat = ide_cd_get_toc_entry(drive, ti->cdti_trk0, &first_toc);
  290. if (stat)
  291. return stat;
  292. stat = ide_cd_get_toc_entry(drive, ti->cdti_trk1, &last_toc);
  293. if (stat)
  294. return stat;
  295. if (ti->cdti_trk1 != CDROM_LEADOUT)
  296. ++last_toc;
  297. lba_start = first_toc->addr.lba;
  298. lba_end = last_toc->addr.lba;
  299. if (lba_end <= lba_start)
  300. return -EINVAL;
  301. memset(cmd, 0, BLK_MAX_CDB);
  302. cmd[0] = GPCMD_PLAY_AUDIO_MSF;
  303. lba_to_msf(lba_start, &cmd[3], &cmd[4], &cmd[5]);
  304. lba_to_msf(lba_end - 1, &cmd[6], &cmd[7], &cmd[8]);
  305. return ide_cd_queue_pc(drive, cmd, 0, NULL, NULL, &sense, 0, 0);
  306. }
  307. static int ide_cd_read_tochdr(ide_drive_t *drive, void *arg)
  308. {
  309. struct cdrom_info *cd = drive->driver_data;
  310. struct cdrom_tochdr *tochdr = arg;
  311. struct atapi_toc *toc;
  312. int stat;
  313. /* Make sure our saved TOC is valid. */
  314. stat = ide_cd_read_toc(drive, NULL);
  315. if (stat)
  316. return stat;
  317. toc = cd->toc;
  318. tochdr->cdth_trk0 = toc->hdr.first_track;
  319. tochdr->cdth_trk1 = toc->hdr.last_track;
  320. return 0;
  321. }
  322. static int ide_cd_read_tocentry(ide_drive_t *drive, void *arg)
  323. {
  324. struct cdrom_tocentry *tocentry = arg;
  325. struct atapi_toc_entry *toce;
  326. int stat;
  327. stat = ide_cd_get_toc_entry(drive, tocentry->cdte_track, &toce);
  328. if (stat)
  329. return stat;
  330. tocentry->cdte_ctrl = toce->control;
  331. tocentry->cdte_adr = toce->adr;
  332. if (tocentry->cdte_format == CDROM_MSF) {
  333. lba_to_msf(toce->addr.lba,
  334. &tocentry->cdte_addr.msf.minute,
  335. &tocentry->cdte_addr.msf.second,
  336. &tocentry->cdte_addr.msf.frame);
  337. } else
  338. tocentry->cdte_addr.lba = toce->addr.lba;
  339. return 0;
  340. }
  341. int ide_cdrom_audio_ioctl(struct cdrom_device_info *cdi,
  342. unsigned int cmd, void *arg)
  343. {
  344. ide_drive_t *drive = cdi->handle;
  345. switch (cmd) {
  346. /*
  347. * emulate PLAY_AUDIO_TI command with PLAY_AUDIO_10, since
  348. * atapi doesn't support it
  349. */
  350. case CDROMPLAYTRKIND:
  351. return ide_cd_fake_play_trkind(drive, arg);
  352. case CDROMREADTOCHDR:
  353. return ide_cd_read_tochdr(drive, arg);
  354. case CDROMREADTOCENTRY:
  355. return ide_cd_read_tocentry(drive, arg);
  356. default:
  357. return -EINVAL;
  358. }
  359. }
  360. /* the generic packet interface to cdrom.c */
  361. int ide_cdrom_packet(struct cdrom_device_info *cdi,
  362. struct packet_command *cgc)
  363. {
  364. ide_drive_t *drive = cdi->handle;
  365. unsigned int flags = 0;
  366. unsigned len = cgc->buflen;
  367. if (cgc->timeout <= 0)
  368. cgc->timeout = ATAPI_WAIT_PC;
  369. /* here we queue the commands from the uniform CD-ROM
  370. layer. the packet must be complete, as we do not
  371. touch it at all. */
  372. if (cgc->data_direction == CGC_DATA_WRITE)
  373. flags |= REQ_WRITE;
  374. if (cgc->sense)
  375. memset(cgc->sense, 0, sizeof(struct request_sense));
  376. if (cgc->quiet)
  377. flags |= REQ_QUIET;
  378. cgc->stat = ide_cd_queue_pc(drive, cgc->cmd,
  379. cgc->data_direction == CGC_DATA_WRITE,
  380. cgc->buffer, &len,
  381. cgc->sense, cgc->timeout, flags);
  382. if (!cgc->stat)
  383. cgc->buflen -= len;
  384. return cgc->stat;
  385. }