ide-atapi.c 15 KB

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  1. /*
  2. * ATAPI support.
  3. */
  4. #include <linux/kernel.h>
  5. #include <linux/cdrom.h>
  6. #include <linux/delay.h>
  7. #include <linux/ide.h>
  8. #include <scsi/scsi.h>
  9. #ifdef DEBUG
  10. #define debug_log(fmt, args...) \
  11. printk(KERN_INFO "ide: " fmt, ## args)
  12. #else
  13. #define debug_log(fmt, args...) do {} while (0)
  14. #endif
  15. static inline int dev_is_idecd(ide_drive_t *drive)
  16. {
  17. return drive->media == ide_cdrom || drive->media == ide_optical;
  18. }
  19. /*
  20. * Check whether we can support a device,
  21. * based on the ATAPI IDENTIFY command results.
  22. */
  23. int ide_check_atapi_device(ide_drive_t *drive, const char *s)
  24. {
  25. u16 *id = drive->id;
  26. u8 gcw[2], protocol, device_type, removable, drq_type, packet_size;
  27. *((u16 *)&gcw) = id[ATA_ID_CONFIG];
  28. protocol = (gcw[1] & 0xC0) >> 6;
  29. device_type = gcw[1] & 0x1F;
  30. removable = (gcw[0] & 0x80) >> 7;
  31. drq_type = (gcw[0] & 0x60) >> 5;
  32. packet_size = gcw[0] & 0x03;
  33. #ifdef CONFIG_PPC
  34. /* kludge for Apple PowerBook internal zip */
  35. if (drive->media == ide_floppy && device_type == 5 &&
  36. !strstr((char *)&id[ATA_ID_PROD], "CD-ROM") &&
  37. strstr((char *)&id[ATA_ID_PROD], "ZIP"))
  38. device_type = 0;
  39. #endif
  40. if (protocol != 2)
  41. printk(KERN_ERR "%s: %s: protocol (0x%02x) is not ATAPI\n",
  42. s, drive->name, protocol);
  43. else if ((drive->media == ide_floppy && device_type != 0) ||
  44. (drive->media == ide_tape && device_type != 1))
  45. printk(KERN_ERR "%s: %s: invalid device type (0x%02x)\n",
  46. s, drive->name, device_type);
  47. else if (removable == 0)
  48. printk(KERN_ERR "%s: %s: the removable flag is not set\n",
  49. s, drive->name);
  50. else if (drive->media == ide_floppy && drq_type == 3)
  51. printk(KERN_ERR "%s: %s: sorry, DRQ type (0x%02x) not "
  52. "supported\n", s, drive->name, drq_type);
  53. else if (packet_size != 0)
  54. printk(KERN_ERR "%s: %s: packet size (0x%02x) is not 12 "
  55. "bytes\n", s, drive->name, packet_size);
  56. else
  57. return 1;
  58. return 0;
  59. }
  60. EXPORT_SYMBOL_GPL(ide_check_atapi_device);
  61. /* PIO data transfer routine using the scatter gather table. */
  62. int ide_io_buffers(ide_drive_t *drive, struct ide_atapi_pc *pc,
  63. unsigned int bcount, int write)
  64. {
  65. ide_hwif_t *hwif = drive->hwif;
  66. const struct ide_tp_ops *tp_ops = hwif->tp_ops;
  67. xfer_func_t *xf = write ? tp_ops->output_data : tp_ops->input_data;
  68. struct scatterlist *sg = pc->sg;
  69. char *buf;
  70. int count, done = 0;
  71. while (bcount) {
  72. count = min(sg->length - pc->b_count, bcount);
  73. if (PageHighMem(sg_page(sg))) {
  74. unsigned long flags;
  75. local_irq_save(flags);
  76. buf = kmap_atomic(sg_page(sg), KM_IRQ0) + sg->offset;
  77. xf(drive, NULL, buf + pc->b_count, count);
  78. kunmap_atomic(buf - sg->offset, KM_IRQ0);
  79. local_irq_restore(flags);
  80. } else {
  81. buf = sg_virt(sg);
  82. xf(drive, NULL, buf + pc->b_count, count);
  83. }
  84. bcount -= count;
  85. pc->b_count += count;
  86. done += count;
  87. if (pc->b_count == sg->length) {
  88. if (!--pc->sg_cnt)
  89. break;
  90. pc->sg = sg = sg_next(sg);
  91. pc->b_count = 0;
  92. }
  93. }
  94. if (bcount) {
  95. printk(KERN_ERR "%s: %d leftover bytes, %s\n", drive->name,
  96. bcount, write ? "padding with zeros"
  97. : "discarding data");
  98. ide_pad_transfer(drive, write, bcount);
  99. }
  100. return done;
  101. }
  102. EXPORT_SYMBOL_GPL(ide_io_buffers);
  103. void ide_init_pc(struct ide_atapi_pc *pc)
  104. {
  105. memset(pc, 0, sizeof(*pc));
  106. pc->buf = pc->pc_buf;
  107. pc->buf_size = IDE_PC_BUFFER_SIZE;
  108. }
  109. EXPORT_SYMBOL_GPL(ide_init_pc);
  110. /*
  111. * Generate a new packet command request in front of the request queue, before
  112. * the current request, so that it will be processed immediately, on the next
  113. * pass through the driver.
  114. */
  115. static void ide_queue_pc_head(ide_drive_t *drive, struct gendisk *disk,
  116. struct ide_atapi_pc *pc, struct request *rq)
  117. {
  118. blk_rq_init(NULL, rq);
  119. rq->cmd_type = REQ_TYPE_SPECIAL;
  120. rq->cmd_flags |= REQ_PREEMPT;
  121. rq->buffer = (char *)pc;
  122. rq->rq_disk = disk;
  123. memcpy(rq->cmd, pc->c, 12);
  124. if (drive->media == ide_tape)
  125. rq->cmd[13] = REQ_IDETAPE_PC1;
  126. ide_do_drive_cmd(drive, rq);
  127. }
  128. /*
  129. * Add a special packet command request to the tail of the request queue,
  130. * and wait for it to be serviced.
  131. */
  132. int ide_queue_pc_tail(ide_drive_t *drive, struct gendisk *disk,
  133. struct ide_atapi_pc *pc)
  134. {
  135. struct request *rq;
  136. int error;
  137. rq = blk_get_request(drive->queue, READ, __GFP_WAIT);
  138. rq->cmd_type = REQ_TYPE_SPECIAL;
  139. rq->buffer = (char *)pc;
  140. memcpy(rq->cmd, pc->c, 12);
  141. if (drive->media == ide_tape)
  142. rq->cmd[13] = REQ_IDETAPE_PC1;
  143. error = blk_execute_rq(drive->queue, disk, rq, 0);
  144. blk_put_request(rq);
  145. return error;
  146. }
  147. EXPORT_SYMBOL_GPL(ide_queue_pc_tail);
  148. int ide_do_test_unit_ready(ide_drive_t *drive, struct gendisk *disk)
  149. {
  150. struct ide_atapi_pc pc;
  151. ide_init_pc(&pc);
  152. pc.c[0] = TEST_UNIT_READY;
  153. return ide_queue_pc_tail(drive, disk, &pc);
  154. }
  155. EXPORT_SYMBOL_GPL(ide_do_test_unit_ready);
  156. int ide_do_start_stop(ide_drive_t *drive, struct gendisk *disk, int start)
  157. {
  158. struct ide_atapi_pc pc;
  159. ide_init_pc(&pc);
  160. pc.c[0] = START_STOP;
  161. pc.c[4] = start;
  162. if (drive->media == ide_tape)
  163. pc.flags |= PC_FLAG_WAIT_FOR_DSC;
  164. return ide_queue_pc_tail(drive, disk, &pc);
  165. }
  166. EXPORT_SYMBOL_GPL(ide_do_start_stop);
  167. int ide_set_media_lock(ide_drive_t *drive, struct gendisk *disk, int on)
  168. {
  169. struct ide_atapi_pc pc;
  170. if ((drive->dev_flags & IDE_DFLAG_DOORLOCKING) == 0)
  171. return 0;
  172. ide_init_pc(&pc);
  173. pc.c[0] = ALLOW_MEDIUM_REMOVAL;
  174. pc.c[4] = on;
  175. return ide_queue_pc_tail(drive, disk, &pc);
  176. }
  177. EXPORT_SYMBOL_GPL(ide_set_media_lock);
  178. void ide_create_request_sense_cmd(ide_drive_t *drive, struct ide_atapi_pc *pc)
  179. {
  180. ide_init_pc(pc);
  181. pc->c[0] = REQUEST_SENSE;
  182. if (drive->media == ide_floppy) {
  183. pc->c[4] = 255;
  184. pc->req_xfer = 18;
  185. } else {
  186. pc->c[4] = 20;
  187. pc->req_xfer = 20;
  188. }
  189. }
  190. EXPORT_SYMBOL_GPL(ide_create_request_sense_cmd);
  191. /*
  192. * Called when an error was detected during the last packet command.
  193. * We queue a request sense packet command in the head of the request list.
  194. */
  195. void ide_retry_pc(ide_drive_t *drive, struct gendisk *disk)
  196. {
  197. struct request *rq = &drive->request_sense_rq;
  198. struct ide_atapi_pc *pc = &drive->request_sense_pc;
  199. (void)ide_read_error(drive);
  200. ide_create_request_sense_cmd(drive, pc);
  201. if (drive->media == ide_tape)
  202. set_bit(IDE_AFLAG_IGNORE_DSC, &drive->atapi_flags);
  203. ide_queue_pc_head(drive, disk, pc, rq);
  204. }
  205. EXPORT_SYMBOL_GPL(ide_retry_pc);
  206. int ide_cd_expiry(ide_drive_t *drive)
  207. {
  208. struct request *rq = HWGROUP(drive)->rq;
  209. unsigned long wait = 0;
  210. debug_log("%s: rq->cmd[0]: 0x%x\n", __func__, rq->cmd[0]);
  211. /*
  212. * Some commands are *slow* and normally take a long time to complete.
  213. * Usually we can use the ATAPI "disconnect" to bypass this, but not all
  214. * commands/drives support that. Let ide_timer_expiry keep polling us
  215. * for these.
  216. */
  217. switch (rq->cmd[0]) {
  218. case GPCMD_BLANK:
  219. case GPCMD_FORMAT_UNIT:
  220. case GPCMD_RESERVE_RZONE_TRACK:
  221. case GPCMD_CLOSE_TRACK:
  222. case GPCMD_FLUSH_CACHE:
  223. wait = ATAPI_WAIT_PC;
  224. break;
  225. default:
  226. if (!(rq->cmd_flags & REQ_QUIET))
  227. printk(KERN_INFO "cmd 0x%x timed out\n",
  228. rq->cmd[0]);
  229. wait = 0;
  230. break;
  231. }
  232. return wait;
  233. }
  234. EXPORT_SYMBOL_GPL(ide_cd_expiry);
  235. int ide_cd_get_xferlen(struct request *rq)
  236. {
  237. if (blk_fs_request(rq))
  238. return 32768;
  239. else if (blk_sense_request(rq) || blk_pc_request(rq) ||
  240. rq->cmd_type == REQ_TYPE_ATA_PC)
  241. return rq->data_len;
  242. else
  243. return 0;
  244. }
  245. EXPORT_SYMBOL_GPL(ide_cd_get_xferlen);
  246. /*
  247. * This is the usual interrupt handler which will be called during a packet
  248. * command. We will transfer some of the data (as requested by the drive)
  249. * and will re-point interrupt handler to us.
  250. */
  251. static ide_startstop_t ide_pc_intr(ide_drive_t *drive)
  252. {
  253. struct ide_atapi_pc *pc = drive->pc;
  254. ide_hwif_t *hwif = drive->hwif;
  255. struct request *rq = hwif->hwgroup->rq;
  256. const struct ide_tp_ops *tp_ops = hwif->tp_ops;
  257. xfer_func_t *xferfunc;
  258. unsigned int timeout, temp;
  259. u16 bcount;
  260. u8 stat, ireason, dsc = 0;
  261. debug_log("Enter %s - interrupt handler\n", __func__);
  262. timeout = (drive->media == ide_floppy) ? WAIT_FLOPPY_CMD
  263. : WAIT_TAPE_CMD;
  264. if (pc->flags & PC_FLAG_TIMEDOUT) {
  265. drive->pc_callback(drive, 0);
  266. return ide_stopped;
  267. }
  268. /* Clear the interrupt */
  269. stat = tp_ops->read_status(hwif);
  270. if (pc->flags & PC_FLAG_DMA_IN_PROGRESS) {
  271. if (hwif->dma_ops->dma_end(drive) ||
  272. (drive->media == ide_tape && (stat & ATA_ERR))) {
  273. if (drive->media == ide_floppy)
  274. printk(KERN_ERR "%s: DMA %s error\n",
  275. drive->name, rq_data_dir(pc->rq)
  276. ? "write" : "read");
  277. pc->flags |= PC_FLAG_DMA_ERROR;
  278. } else {
  279. pc->xferred = pc->req_xfer;
  280. if (drive->pc_update_buffers)
  281. drive->pc_update_buffers(drive, pc);
  282. }
  283. debug_log("%s: DMA finished\n", drive->name);
  284. }
  285. /* No more interrupts */
  286. if ((stat & ATA_DRQ) == 0) {
  287. debug_log("Packet command completed, %d bytes transferred\n",
  288. pc->xferred);
  289. pc->flags &= ~PC_FLAG_DMA_IN_PROGRESS;
  290. local_irq_enable_in_hardirq();
  291. if (drive->media == ide_tape &&
  292. (stat & ATA_ERR) && rq->cmd[0] == REQUEST_SENSE)
  293. stat &= ~ATA_ERR;
  294. if ((stat & ATA_ERR) || (pc->flags & PC_FLAG_DMA_ERROR)) {
  295. /* Error detected */
  296. debug_log("%s: I/O error\n", drive->name);
  297. if (drive->media != ide_tape)
  298. pc->rq->errors++;
  299. if (rq->cmd[0] == REQUEST_SENSE) {
  300. printk(KERN_ERR "%s: I/O error in request sense"
  301. " command\n", drive->name);
  302. return ide_do_reset(drive);
  303. }
  304. debug_log("[cmd %x]: check condition\n", rq->cmd[0]);
  305. /* Retry operation */
  306. ide_retry_pc(drive, rq->rq_disk);
  307. /* queued, but not started */
  308. return ide_stopped;
  309. }
  310. pc->error = 0;
  311. if ((pc->flags & PC_FLAG_WAIT_FOR_DSC) && (stat & ATA_DSC) == 0)
  312. dsc = 1;
  313. /* Command finished - Call the callback function */
  314. drive->pc_callback(drive, dsc);
  315. return ide_stopped;
  316. }
  317. if (pc->flags & PC_FLAG_DMA_IN_PROGRESS) {
  318. pc->flags &= ~PC_FLAG_DMA_IN_PROGRESS;
  319. printk(KERN_ERR "%s: The device wants to issue more interrupts "
  320. "in DMA mode\n", drive->name);
  321. ide_dma_off(drive);
  322. return ide_do_reset(drive);
  323. }
  324. /* Get the number of bytes to transfer on this interrupt. */
  325. ide_read_bcount_and_ireason(drive, &bcount, &ireason);
  326. if (ireason & ATAPI_COD) {
  327. printk(KERN_ERR "%s: CoD != 0 in %s\n", drive->name, __func__);
  328. return ide_do_reset(drive);
  329. }
  330. if (((ireason & ATAPI_IO) == ATAPI_IO) ==
  331. !!(pc->flags & PC_FLAG_WRITING)) {
  332. /* Hopefully, we will never get here */
  333. printk(KERN_ERR "%s: We wanted to %s, but the device wants us "
  334. "to %s!\n", drive->name,
  335. (ireason & ATAPI_IO) ? "Write" : "Read",
  336. (ireason & ATAPI_IO) ? "Read" : "Write");
  337. return ide_do_reset(drive);
  338. }
  339. if (!(pc->flags & PC_FLAG_WRITING)) {
  340. /* Reading - Check that we have enough space */
  341. temp = pc->xferred + bcount;
  342. if (temp > pc->req_xfer) {
  343. if (temp > pc->buf_size) {
  344. printk(KERN_ERR "%s: The device wants to send "
  345. "us more data than expected - "
  346. "discarding data\n",
  347. drive->name);
  348. ide_pad_transfer(drive, 0, bcount);
  349. goto next_irq;
  350. }
  351. debug_log("The device wants to send us more data than "
  352. "expected - allowing transfer\n");
  353. }
  354. xferfunc = tp_ops->input_data;
  355. } else
  356. xferfunc = tp_ops->output_data;
  357. if ((drive->media == ide_floppy && !pc->buf) ||
  358. (drive->media == ide_tape && pc->bh)) {
  359. int done = drive->pc_io_buffers(drive, pc, bcount,
  360. !!(pc->flags & PC_FLAG_WRITING));
  361. /* FIXME: don't do partial completions */
  362. if (drive->media == ide_floppy)
  363. ide_end_request(drive, 1, done >> 9);
  364. } else
  365. xferfunc(drive, NULL, pc->cur_pos, bcount);
  366. /* Update the current position */
  367. pc->xferred += bcount;
  368. pc->cur_pos += bcount;
  369. debug_log("[cmd %x] transferred %d bytes on that intr.\n",
  370. rq->cmd[0], bcount);
  371. next_irq:
  372. /* And set the interrupt handler again */
  373. ide_set_handler(drive, ide_pc_intr, timeout, NULL);
  374. return ide_started;
  375. }
  376. static u8 ide_read_ireason(ide_drive_t *drive)
  377. {
  378. ide_task_t task;
  379. memset(&task, 0, sizeof(task));
  380. task.tf_flags = IDE_TFLAG_IN_NSECT;
  381. drive->hwif->tp_ops->tf_read(drive, &task);
  382. return task.tf.nsect & 3;
  383. }
  384. static u8 ide_wait_ireason(ide_drive_t *drive, u8 ireason)
  385. {
  386. int retries = 100;
  387. while (retries-- && ((ireason & ATAPI_COD) == 0 ||
  388. (ireason & ATAPI_IO))) {
  389. printk(KERN_ERR "%s: (IO,CoD != (0,1) while issuing "
  390. "a packet command, retrying\n", drive->name);
  391. udelay(100);
  392. ireason = ide_read_ireason(drive);
  393. if (retries == 0) {
  394. printk(KERN_ERR "%s: (IO,CoD != (0,1) while issuing "
  395. "a packet command, ignoring\n",
  396. drive->name);
  397. ireason |= ATAPI_COD;
  398. ireason &= ~ATAPI_IO;
  399. }
  400. }
  401. return ireason;
  402. }
  403. static int ide_delayed_transfer_pc(ide_drive_t *drive)
  404. {
  405. /* Send the actual packet */
  406. drive->hwif->tp_ops->output_data(drive, NULL, drive->pc->c, 12);
  407. /* Timeout for the packet command */
  408. return WAIT_FLOPPY_CMD;
  409. }
  410. static ide_startstop_t ide_transfer_pc(ide_drive_t *drive)
  411. {
  412. struct ide_atapi_pc *pc = drive->pc;
  413. ide_hwif_t *hwif = drive->hwif;
  414. struct request *rq = hwif->hwgroup->rq;
  415. ide_expiry_t *expiry;
  416. unsigned int timeout;
  417. ide_startstop_t startstop;
  418. u8 ireason;
  419. if (ide_wait_stat(&startstop, drive, ATA_DRQ, ATA_BUSY, WAIT_READY)) {
  420. printk(KERN_ERR "%s: Strange, packet command initiated yet "
  421. "DRQ isn't asserted\n", drive->name);
  422. return startstop;
  423. }
  424. if (drive->atapi_flags & IDE_AFLAG_DRQ_INTERRUPT) {
  425. if (drive->dma)
  426. drive->waiting_for_dma = 1;
  427. }
  428. ireason = ide_read_ireason(drive);
  429. if (drive->media == ide_tape)
  430. ireason = ide_wait_ireason(drive, ireason);
  431. if ((ireason & ATAPI_COD) == 0 || (ireason & ATAPI_IO)) {
  432. printk(KERN_ERR "%s: (IO,CoD) != (0,1) while issuing "
  433. "a packet command\n", drive->name);
  434. return ide_do_reset(drive);
  435. }
  436. /*
  437. * If necessary schedule the packet transfer to occur 'timeout'
  438. * miliseconds later in ide_delayed_transfer_pc() after the device
  439. * says it's ready for a packet.
  440. */
  441. if (drive->atapi_flags & IDE_AFLAG_ZIP_DRIVE) {
  442. timeout = drive->pc_delay;
  443. expiry = &ide_delayed_transfer_pc;
  444. } else {
  445. timeout = (drive->media == ide_floppy) ? WAIT_FLOPPY_CMD
  446. : WAIT_TAPE_CMD;
  447. expiry = NULL;
  448. }
  449. /* Set the interrupt routine */
  450. ide_set_handler(drive, ide_pc_intr, timeout, expiry);
  451. /* Begin DMA, if necessary */
  452. if (pc->flags & PC_FLAG_DMA_OK) {
  453. pc->flags |= PC_FLAG_DMA_IN_PROGRESS;
  454. hwif->dma_ops->dma_start(drive);
  455. }
  456. /* Send the actual packet */
  457. if ((drive->atapi_flags & IDE_AFLAG_ZIP_DRIVE) == 0)
  458. hwif->tp_ops->output_data(drive, NULL, rq->cmd, 12);
  459. return ide_started;
  460. }
  461. ide_startstop_t ide_issue_pc(ide_drive_t *drive, unsigned int timeout)
  462. {
  463. struct ide_atapi_pc *pc = drive->pc;
  464. ide_hwif_t *hwif = drive->hwif;
  465. ide_expiry_t *expiry = NULL;
  466. u32 tf_flags;
  467. u16 bcount;
  468. /* We haven't transferred any data yet */
  469. pc->xferred = 0;
  470. pc->cur_pos = pc->buf;
  471. if (dev_is_idecd(drive)) {
  472. tf_flags = IDE_TFLAG_OUT_NSECT | IDE_TFLAG_OUT_LBAL;
  473. bcount = ide_cd_get_xferlen(hwif->hwgroup->rq);
  474. expiry = ide_cd_expiry;
  475. } else {
  476. tf_flags = IDE_TFLAG_OUT_DEVICE;
  477. bcount = ((drive->media == ide_tape) ?
  478. pc->req_xfer :
  479. min(pc->req_xfer, 63 * 1024));
  480. }
  481. if (pc->flags & PC_FLAG_DMA_ERROR) {
  482. pc->flags &= ~PC_FLAG_DMA_ERROR;
  483. ide_dma_off(drive);
  484. }
  485. if (((pc->flags & PC_FLAG_DMA_OK) &&
  486. (drive->dev_flags & IDE_DFLAG_USING_DMA)) ||
  487. drive->dma)
  488. drive->dma = !hwif->dma_ops->dma_setup(drive);
  489. if (!drive->dma)
  490. pc->flags &= ~PC_FLAG_DMA_OK;
  491. ide_pktcmd_tf_load(drive, tf_flags, bcount, drive->dma);
  492. /* Issue the packet command */
  493. if (drive->atapi_flags & IDE_AFLAG_DRQ_INTERRUPT) {
  494. if (drive->dma)
  495. drive->waiting_for_dma = 0;
  496. ide_execute_command(drive, ATA_CMD_PACKET, ide_transfer_pc,
  497. timeout, expiry);
  498. return ide_started;
  499. } else {
  500. ide_execute_pkt_cmd(drive);
  501. return ide_transfer_pc(drive);
  502. }
  503. }
  504. EXPORT_SYMBOL_GPL(ide_issue_pc);