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ide-{floppy,tape}: remove debug code for dumping identify data
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1da177e4 1/*
3bb4663b 2 * ATAPI CD-ROM driver.
1da177e4 3 *
3bb4663b 4 * Copyright (C) 1994-1996 Scott Snyder <snyder@fnald0.fnal.gov>
1da177e4
LT
5 * Copyright (C) 1996-1998 Erik Andersen <andersee@debian.org>
6 * Copyright (C) 1998-2000 Jens Axboe <axboe@suse.de>
3bb4663b 7 * Copyright (C) 2007 Bartlomiej Zolnierkiewicz
1da177e4
LT
8 *
9 * May be copied or modified under the terms of the GNU General Public
10 * License. See linux/COPYING for more information.
11 *
1da177e4
LT
12 * See Documentation/cdrom/ide-cd for usage information.
13 *
14 * Suggestions are welcome. Patches that work are more welcome though. ;-)
15 * For those wishing to work on this driver, please be sure you download
16 * and comply with the latest Mt. Fuji (SFF8090 version 4) and ATAPI
17 * (SFF-8020i rev 2.6) standards. These documents can be obtained by
18 * anonymous ftp from:
19 * ftp://fission.dt.wdc.com/pub/standards/SFF_atapi/spec/SFF8020-r2.6/PS/8020r26.ps
20 * ftp://ftp.avc-pioneer.com/Mtfuji4/Spec/Fuji4r10.pdf
21 *
03553353
BZ
22 * For historical changelog please see:
23 * Documentation/ide/ChangeLog.ide-cd.1994-2004
24 */
25
3bb4663b 26#define IDECD_VERSION "5.00"
1da177e4 27
1da177e4
LT
28#include <linux/module.h>
29#include <linux/types.h>
30#include <linux/kernel.h>
31#include <linux/delay.h>
32#include <linux/timer.h>
33#include <linux/slab.h>
34#include <linux/interrupt.h>
35#include <linux/errno.h>
36#include <linux/cdrom.h>
37#include <linux/ide.h>
38#include <linux/completion.h>
cf8b8975 39#include <linux/mutex.h>
9a6dc668 40#include <linux/bcd.h>
1da177e4
LT
41
42#include <scsi/scsi.h> /* For SCSI -> ATAPI command conversion */
43
44#include <asm/irq.h>
45#include <asm/io.h>
46#include <asm/byteorder.h>
47#include <asm/uaccess.h>
48#include <asm/unaligned.h>
49
50#include "ide-cd.h"
51
cf8b8975 52static DEFINE_MUTEX(idecd_ref_mutex);
1da177e4
LT
53
54#define to_ide_cd(obj) container_of(obj, struct cdrom_info, kref)
55
56#define ide_cd_g(disk) \
57 container_of((disk)->private_data, struct cdrom_info, driver)
58
59static struct cdrom_info *ide_cd_get(struct gendisk *disk)
60{
61 struct cdrom_info *cd = NULL;
62
cf8b8975 63 mutex_lock(&idecd_ref_mutex);
1da177e4
LT
64 cd = ide_cd_g(disk);
65 if (cd)
66 kref_get(&cd->kref);
cf8b8975 67 mutex_unlock(&idecd_ref_mutex);
1da177e4
LT
68 return cd;
69}
70
71static void ide_cd_release(struct kref *);
72
73static void ide_cd_put(struct cdrom_info *cd)
74{
cf8b8975 75 mutex_lock(&idecd_ref_mutex);
1da177e4 76 kref_put(&cd->kref, ide_cd_release);
cf8b8975 77 mutex_unlock(&idecd_ref_mutex);
1da177e4
LT
78}
79
80/****************************************************************************
81 * Generic packet command support and error handling routines.
82 */
83
84/* Mark that we've seen a media change, and invalidate our internal
85 buffers. */
86static void cdrom_saw_media_change (ide_drive_t *drive)
87{
0ba11211
BZ
88 struct cdrom_info *cd = drive->driver_data;
89
2bc4cf2d
BZ
90 cd->cd_flags |= IDE_CD_FLAG_MEDIA_CHANGED;
91 cd->cd_flags &= ~IDE_CD_FLAG_TOC_VALID;
0ba11211 92 cd->nsectors_buffered = 0;
1da177e4
LT
93}
94
95static int cdrom_log_sense(ide_drive_t *drive, struct request *rq,
96 struct request_sense *sense)
97{
98 int log = 0;
99
4aff5e23 100 if (!sense || !rq || (rq->cmd_flags & REQ_QUIET))
1da177e4
LT
101 return 0;
102
103 switch (sense->sense_key) {
104 case NO_SENSE: case RECOVERED_ERROR:
105 break;
106 case NOT_READY:
107 /*
108 * don't care about tray state messages for
109 * e.g. capacity commands or in-progress or
110 * becoming ready
111 */
112 if (sense->asc == 0x3a || sense->asc == 0x04)
113 break;
114 log = 1;
115 break;
116 case ILLEGAL_REQUEST:
117 /*
118 * don't log START_STOP unit with LoEj set, since
119 * we cannot reliably check if drive can auto-close
120 */
121 if (rq->cmd[0] == GPCMD_START_STOP_UNIT && sense->asc == 0x24)
dbe217af
AC
122 break;
123 log = 1;
1da177e4
LT
124 break;
125 case UNIT_ATTENTION:
126 /*
127 * Make good and sure we've seen this potential media
128 * change. Some drives (i.e. Creative) fail to present
129 * the correct sense key in the error register.
130 */
131 cdrom_saw_media_change(drive);
132 break;
133 default:
134 log = 1;
135 break;
136 }
137 return log;
138}
139
140static
141void cdrom_analyze_sense_data(ide_drive_t *drive,
142 struct request *failed_command,
143 struct request_sense *sense)
144{
dbe217af
AC
145 unsigned long sector;
146 unsigned long bio_sectors;
147 unsigned long valid;
148 struct cdrom_info *info = drive->driver_data;
149
1da177e4
LT
150 if (!cdrom_log_sense(drive, failed_command, sense))
151 return;
152
153 /*
154 * If a read toc is executed for a CD-R or CD-RW medium where
155 * the first toc has not been recorded yet, it will fail with
156 * 05/24/00 (which is a confusing error)
157 */
158 if (failed_command && failed_command->cmd[0] == GPCMD_READ_TOC_PMA_ATIP)
159 if (sense->sense_key == 0x05 && sense->asc == 0x24)
160 return;
161
dbe217af
AC
162 if (sense->error_code == 0x70) { /* Current Error */
163 switch(sense->sense_key) {
164 case MEDIUM_ERROR:
165 case VOLUME_OVERFLOW:
166 case ILLEGAL_REQUEST:
167 if (!sense->valid)
168 break;
169 if (failed_command == NULL ||
170 !blk_fs_request(failed_command))
171 break;
172 sector = (sense->information[0] << 24) |
173 (sense->information[1] << 16) |
174 (sense->information[2] << 8) |
175 (sense->information[3]);
176
177 bio_sectors = bio_sectors(failed_command->bio);
178 if (bio_sectors < 4)
179 bio_sectors = 4;
180 if (drive->queue->hardsect_size == 2048)
181 sector <<= 2; /* Device sector size is 2K */
182 sector &= ~(bio_sectors -1);
183 valid = (sector - failed_command->sector) << 9;
184
185 if (valid < 0)
186 valid = 0;
187 if (sector < get_capacity(info->disk) &&
188 drive->probed_capacity - sector < 4 * 75) {
189 set_capacity(info->disk, sector);
190 }
191 }
192 }
1da177e4 193
972560fb 194 ide_cd_log_error(drive->name, failed_command, sense);
1da177e4
LT
195}
196
197/*
198 * Initialize a ide-cd packet command request
199 */
17802998 200void ide_cd_init_rq(ide_drive_t *drive, struct request *rq)
1da177e4
LT
201{
202 struct cdrom_info *cd = drive->driver_data;
203
204 ide_init_drive_cmd(rq);
cea2885a 205 rq->cmd_type = REQ_TYPE_ATA_PC;
1da177e4
LT
206 rq->rq_disk = cd->disk;
207}
208
209static void cdrom_queue_request_sense(ide_drive_t *drive, void *sense,
210 struct request *failed_command)
211{
212 struct cdrom_info *info = drive->driver_data;
213 struct request *rq = &info->request_sense_request;
214
215 if (sense == NULL)
216 sense = &info->sense_data;
217
218 /* stuff the sense request in front of our current request */
139c829d 219 ide_cd_init_rq(drive, rq);
1da177e4
LT
220
221 rq->data = sense;
222 rq->cmd[0] = GPCMD_REQUEST_SENSE;
223 rq->cmd[4] = rq->data_len = 18;
224
4aff5e23 225 rq->cmd_type = REQ_TYPE_SENSE;
1da177e4
LT
226
227 /* NOTE! Save the failed command in "rq->buffer" */
228 rq->buffer = (void *) failed_command;
229
230 (void) ide_do_drive_cmd(drive, rq, ide_preempt);
231}
232
233static void cdrom_end_request (ide_drive_t *drive, int uptodate)
234{
235 struct request *rq = HWGROUP(drive)->rq;
236 int nsectors = rq->hard_cur_sectors;
237
4aff5e23 238 if (blk_sense_request(rq) && uptodate) {
1da177e4 239 /*
4aff5e23
JA
240 * For REQ_TYPE_SENSE, "rq->buffer" points to the original
241 * failed request
1da177e4
LT
242 */
243 struct request *failed = (struct request *) rq->buffer;
244 struct cdrom_info *info = drive->driver_data;
245 void *sense = &info->sense_data;
246 unsigned long flags;
247
248 if (failed) {
249 if (failed->sense) {
250 sense = failed->sense;
251 failed->sense_len = rq->sense_len;
252 }
dbe217af 253 cdrom_analyze_sense_data(drive, failed, sense);
1da177e4
LT
254 /*
255 * now end failed request
256 */
dbe217af
AC
257 if (blk_fs_request(failed)) {
258 if (ide_end_dequeued_request(drive, failed, 0,
259 failed->hard_nr_sectors))
260 BUG();
261 } else {
262 spin_lock_irqsave(&ide_lock, flags);
5e36bb6e
KU
263 if (__blk_end_request(failed, -EIO,
264 failed->data_len))
265 BUG();
dbe217af
AC
266 spin_unlock_irqrestore(&ide_lock, flags);
267 }
268 } else
269 cdrom_analyze_sense_data(drive, NULL, sense);
1da177e4
LT
270 }
271
272 if (!rq->current_nr_sectors && blk_fs_request(rq))
273 uptodate = 1;
274 /* make sure it's fully ended */
275 if (blk_pc_request(rq))
276 nsectors = (rq->data_len + 511) >> 9;
277 if (!nsectors)
278 nsectors = 1;
279
280 ide_end_request(drive, uptodate, nsectors);
281}
282
dbe217af
AC
283static void ide_dump_status_no_sense(ide_drive_t *drive, const char *msg, u8 stat)
284{
285 if (stat & 0x80)
286 return;
287 ide_dump_status(drive, msg, stat);
288}
289
1da177e4
LT
290/* Returns 0 if the request should be continued.
291 Returns 1 if the request was ended. */
292static int cdrom_decode_status(ide_drive_t *drive, int good_stat, int *stat_ret)
293{
294 struct request *rq = HWGROUP(drive)->rq;
295 int stat, err, sense_key;
296
297 /* Check for errors. */
298 stat = HWIF(drive)->INB(IDE_STATUS_REG);
299 if (stat_ret)
300 *stat_ret = stat;
301
302 if (OK_STAT(stat, good_stat, BAD_R_STAT))
303 return 0;
304
305 /* Get the IDE error register. */
306 err = HWIF(drive)->INB(IDE_ERROR_REG);
307 sense_key = err >> 4;
308
309 if (rq == NULL) {
310 printk("%s: missing rq in cdrom_decode_status\n", drive->name);
311 return 1;
312 }
313
4aff5e23 314 if (blk_sense_request(rq)) {
1da177e4
LT
315 /* We got an error trying to get sense info
316 from the drive (probably while trying
317 to recover from a former error). Just give up. */
318
4aff5e23 319 rq->cmd_flags |= REQ_FAILED;
1da177e4
LT
320 cdrom_end_request(drive, 0);
321 ide_error(drive, "request sense failure", stat);
322 return 1;
323
8770c018 324 } else if (blk_pc_request(rq) || rq->cmd_type == REQ_TYPE_ATA_PC) {
1da177e4 325 /* All other functions, except for READ. */
1da177e4
LT
326
327 /*
328 * if we have an error, pass back CHECK_CONDITION as the
329 * scsi status byte
330 */
b7156731 331 if (blk_pc_request(rq) && !rq->errors)
1da177e4
LT
332 rq->errors = SAM_STAT_CHECK_CONDITION;
333
334 /* Check for tray open. */
335 if (sense_key == NOT_READY) {
336 cdrom_saw_media_change (drive);
337 } else if (sense_key == UNIT_ATTENTION) {
338 /* Check for media change. */
339 cdrom_saw_media_change (drive);
340 /*printk("%s: media changed\n",drive->name);*/
341 return 0;
76ca1af1
SH
342 } else if ((sense_key == ILLEGAL_REQUEST) &&
343 (rq->cmd[0] == GPCMD_START_STOP_UNIT)) {
344 /*
345 * Don't print error message for this condition--
346 * SFF8090i indicates that 5/24/00 is the correct
347 * response to a request to close the tray if the
348 * drive doesn't have that capability.
349 * cdrom_log_sense() knows this!
350 */
4aff5e23 351 } else if (!(rq->cmd_flags & REQ_QUIET)) {
1da177e4
LT
352 /* Otherwise, print an error. */
353 ide_dump_status(drive, "packet command error", stat);
354 }
355
4aff5e23 356 rq->cmd_flags |= REQ_FAILED;
1da177e4
LT
357
358 /*
359 * instead of playing games with moving completions around,
360 * remove failed request completely and end it when the
361 * request sense has completed
362 */
bbb89e3d 363 goto end_request;
1da177e4
LT
364
365 } else if (blk_fs_request(rq)) {
366 int do_end_request = 0;
367
368 /* Handle errors from READ and WRITE requests. */
369
370 if (blk_noretry_request(rq))
371 do_end_request = 1;
372
373 if (sense_key == NOT_READY) {
374 /* Tray open. */
375 if (rq_data_dir(rq) == READ) {
376 cdrom_saw_media_change (drive);
377
378 /* Fail the request. */
379 printk ("%s: tray open\n", drive->name);
380 do_end_request = 1;
381 } else {
382 struct cdrom_info *info = drive->driver_data;
383
384 /* allow the drive 5 seconds to recover, some
385 * devices will return this error while flushing
386 * data from cache */
387 if (!rq->errors)
388 info->write_timeout = jiffies + ATAPI_WAIT_WRITE_BUSY;
389 rq->errors = 1;
390 if (time_after(jiffies, info->write_timeout))
391 do_end_request = 1;
392 else {
393 unsigned long flags;
394
395 /*
396 * take a breather relying on the
397 * unplug timer to kick us again
398 */
399 spin_lock_irqsave(&ide_lock, flags);
400 blk_plug_device(drive->queue);
401 spin_unlock_irqrestore(&ide_lock,flags);
402 return 1;
403 }
404 }
405 } else if (sense_key == UNIT_ATTENTION) {
406 /* Media change. */
407 cdrom_saw_media_change (drive);
408
409 /* Arrange to retry the request.
410 But be sure to give up if we've retried
411 too many times. */
412 if (++rq->errors > ERROR_MAX)
413 do_end_request = 1;
414 } else if (sense_key == ILLEGAL_REQUEST ||
415 sense_key == DATA_PROTECT) {
416 /* No point in retrying after an illegal
417 request or data protect error.*/
dbe217af 418 ide_dump_status_no_sense (drive, "command error", stat);
1da177e4
LT
419 do_end_request = 1;
420 } else if (sense_key == MEDIUM_ERROR) {
421 /* No point in re-trying a zillion times on a bad
422 * sector... If we got here the error is not correctable */
dbe217af 423 ide_dump_status_no_sense (drive, "media error (bad sector)", stat);
1da177e4
LT
424 do_end_request = 1;
425 } else if (sense_key == BLANK_CHECK) {
426 /* Disk appears blank ?? */
dbe217af 427 ide_dump_status_no_sense (drive, "media error (blank)", stat);
1da177e4
LT
428 do_end_request = 1;
429 } else if ((err & ~ABRT_ERR) != 0) {
430 /* Go to the default handler
431 for other errors. */
432 ide_error(drive, "cdrom_decode_status", stat);
433 return 1;
434 } else if ((++rq->errors > ERROR_MAX)) {
435 /* We've racked up too many retries. Abort. */
436 do_end_request = 1;
437 }
438
dbe217af
AC
439 /* End a request through request sense analysis when we have
440 sense data. We need this in order to perform end of media
441 processing */
442
bbb89e3d
BZ
443 if (do_end_request)
444 goto end_request;
dbe217af 445
bbb89e3d
BZ
446 /*
447 * If we got a CHECK_CONDITION status,
448 * queue a request sense command.
449 */
450 if (stat & ERR_STAT)
451 cdrom_queue_request_sense(drive, NULL, NULL);
1da177e4
LT
452 } else {
453 blk_dump_rq_flags(rq, "ide-cd: bad rq");
454 cdrom_end_request(drive, 0);
455 }
456
457 /* Retry, or handle the next request. */
458 return 1;
bbb89e3d
BZ
459
460end_request:
461 if (stat & ERR_STAT) {
462 unsigned long flags;
463
464 spin_lock_irqsave(&ide_lock, flags);
465 blkdev_dequeue_request(rq);
466 HWGROUP(drive)->rq = NULL;
467 spin_unlock_irqrestore(&ide_lock, flags);
468
469 cdrom_queue_request_sense(drive, rq->sense, rq);
470 } else
471 cdrom_end_request(drive, 0);
472
473 return 1;
1da177e4
LT
474}
475
476static int cdrom_timer_expiry(ide_drive_t *drive)
477{
478 struct request *rq = HWGROUP(drive)->rq;
479 unsigned long wait = 0;
480
481 /*
482 * Some commands are *slow* and normally take a long time to
483 * complete. Usually we can use the ATAPI "disconnect" to bypass
484 * this, but not all commands/drives support that. Let
485 * ide_timer_expiry keep polling us for these.
486 */
487 switch (rq->cmd[0]) {
488 case GPCMD_BLANK:
489 case GPCMD_FORMAT_UNIT:
490 case GPCMD_RESERVE_RZONE_TRACK:
491 case GPCMD_CLOSE_TRACK:
492 case GPCMD_FLUSH_CACHE:
493 wait = ATAPI_WAIT_PC;
494 break;
495 default:
4aff5e23 496 if (!(rq->cmd_flags & REQ_QUIET))
1da177e4
LT
497 printk(KERN_INFO "ide-cd: cmd 0x%x timed out\n", rq->cmd[0]);
498 wait = 0;
499 break;
500 }
501 return wait;
502}
503
504/* Set up the device registers for transferring a packet command on DEV,
505 expecting to later transfer XFERLEN bytes. HANDLER is the routine
506 which actually transfers the command to the drive. If this is a
507 drq_interrupt device, this routine will arrange for HANDLER to be
508 called when the interrupt from the drive arrives. Otherwise, HANDLER
509 will be called immediately after the drive is prepared for the transfer. */
510
511static ide_startstop_t cdrom_start_packet_command(ide_drive_t *drive,
512 int xferlen,
513 ide_handler_t *handler)
514{
515 ide_startstop_t startstop;
516 struct cdrom_info *info = drive->driver_data;
517 ide_hwif_t *hwif = drive->hwif;
518
519 /* Wait for the controller to be idle. */
520 if (ide_wait_stat(&startstop, drive, 0, BUSY_STAT, WAIT_READY))
521 return startstop;
522
3a6a3549 523 /* FIXME: for Virtual DMA we must check harder */
1da177e4
LT
524 if (info->dma)
525 info->dma = !hwif->dma_setup(drive);
526
527 /* Set up the controller registers. */
2fc57388
BZ
528 ide_pktcmd_tf_load(drive, IDE_TFLAG_OUT_NSECT | IDE_TFLAG_OUT_LBAL |
529 IDE_TFLAG_NO_SELECT_MASK, xferlen, info->dma);
4fe67178 530
2bc4cf2d 531 if (info->cd_flags & IDE_CD_FLAG_DRQ_INTERRUPT) {
f0dd8712
AL
532 /* waiting for CDB interrupt, not DMA yet. */
533 if (info->dma)
534 drive->waiting_for_dma = 0;
535
1da177e4
LT
536 /* packet command */
537 ide_execute_command(drive, WIN_PACKETCMD, handler, ATAPI_WAIT_PC, cdrom_timer_expiry);
538 return ide_started;
539 } else {
540 unsigned long flags;
541
542 /* packet command */
543 spin_lock_irqsave(&ide_lock, flags);
544 hwif->OUTBSYNC(drive, WIN_PACKETCMD, IDE_COMMAND_REG);
545 ndelay(400);
546 spin_unlock_irqrestore(&ide_lock, flags);
547
548 return (*handler) (drive);
549 }
550}
551
552/* Send a packet command to DRIVE described by CMD_BUF and CMD_LEN.
553 The device registers must have already been prepared
554 by cdrom_start_packet_command.
555 HANDLER is the interrupt handler to call when the command completes
556 or there's data ready. */
1da177e4
LT
557#define ATAPI_MIN_CDB_BYTES 12
558static ide_startstop_t cdrom_transfer_packet_command (ide_drive_t *drive,
559 struct request *rq,
560 ide_handler_t *handler)
561{
562 ide_hwif_t *hwif = drive->hwif;
563 int cmd_len;
564 struct cdrom_info *info = drive->driver_data;
565 ide_startstop_t startstop;
566
2bc4cf2d 567 if (info->cd_flags & IDE_CD_FLAG_DRQ_INTERRUPT) {
1da177e4
LT
568 /* Here we should have been called after receiving an interrupt
569 from the device. DRQ should how be set. */
570
571 /* Check for errors. */
572 if (cdrom_decode_status(drive, DRQ_STAT, NULL))
573 return ide_stopped;
f0dd8712
AL
574
575 /* Ok, next interrupt will be DMA interrupt. */
576 if (info->dma)
577 drive->waiting_for_dma = 1;
1da177e4
LT
578 } else {
579 /* Otherwise, we must wait for DRQ to get set. */
580 if (ide_wait_stat(&startstop, drive, DRQ_STAT,
581 BUSY_STAT, WAIT_READY))
582 return startstop;
583 }
584
585 /* Arm the interrupt handler. */
586 ide_set_handler(drive, handler, rq->timeout, cdrom_timer_expiry);
587
588 /* ATAPI commands get padded out to 12 bytes minimum */
589 cmd_len = COMMAND_SIZE(rq->cmd[0]);
590 if (cmd_len < ATAPI_MIN_CDB_BYTES)
591 cmd_len = ATAPI_MIN_CDB_BYTES;
592
593 /* Send the command to the device. */
594 HWIF(drive)->atapi_output_bytes(drive, rq->cmd, cmd_len);
595
596 /* Start the DMA if need be */
597 if (info->dma)
598 hwif->dma_start(drive);
599
600 return ide_started;
601}
602
603/****************************************************************************
604 * Block read functions.
605 */
606
68661c53
BZ
607typedef void (xfer_func_t)(ide_drive_t *, void *, u32);
608
5a5222d9
BZ
609static void ide_cd_pad_transfer(ide_drive_t *drive, xfer_func_t *xf, int len)
610{
611 while (len > 0) {
612 int dum = 0;
613 xf(drive, &dum, sizeof(dum));
614 len -= sizeof(dum);
615 }
616}
617
b4ab726c
BZ
618static void ide_cd_drain_data(ide_drive_t *drive, int nsects)
619{
620 while (nsects > 0) {
621 static char dum[SECTOR_SIZE];
622
623 drive->hwif->atapi_input_bytes(drive, dum, sizeof(dum));
624 nsects--;
625 }
626}
627
1da177e4
LT
628/*
629 * Buffer up to SECTORS_TO_TRANSFER sectors from the drive in our sector
630 * buffer. Once the first sector is added, any subsequent sectors are
631 * assumed to be continuous (until the buffer is cleared). For the first
632 * sector added, SECTOR is its sector number. (SECTOR is then ignored until
633 * the buffer is cleared.)
634 */
635static void cdrom_buffer_sectors (ide_drive_t *drive, unsigned long sector,
636 int sectors_to_transfer)
637{
638 struct cdrom_info *info = drive->driver_data;
639
640 /* Number of sectors to read into the buffer. */
641 int sectors_to_buffer = min_t(int, sectors_to_transfer,
642 (SECTOR_BUFFER_SIZE >> SECTOR_BITS) -
643 info->nsectors_buffered);
644
645 char *dest;
646
647 /* If we couldn't get a buffer, don't try to buffer anything... */
648 if (info->buffer == NULL)
649 sectors_to_buffer = 0;
650
651 /* If this is the first sector in the buffer, remember its number. */
652 if (info->nsectors_buffered == 0)
653 info->sector_buffered = sector;
654
655 /* Read the data into the buffer. */
656 dest = info->buffer + info->nsectors_buffered * SECTOR_SIZE;
657 while (sectors_to_buffer > 0) {
658 HWIF(drive)->atapi_input_bytes(drive, dest, SECTOR_SIZE);
659 --sectors_to_buffer;
660 --sectors_to_transfer;
661 ++info->nsectors_buffered;
662 dest += SECTOR_SIZE;
663 }
664
665 /* Throw away any remaining data. */
b4ab726c 666 ide_cd_drain_data(drive, sectors_to_transfer);
1da177e4
LT
667}
668
669/*
670 * Check the contents of the interrupt reason register from the cdrom
671 * and attempt to recover if there are problems. Returns 0 if everything's
672 * ok; nonzero if the request has been terminated.
673 */
858119e1 674static
0d6f7e3a 675int ide_cd_check_ireason(ide_drive_t *drive, int len, int ireason, int rw)
1da177e4 676{
0d6f7e3a
BZ
677 /*
678 * ireason == 0: the drive wants to receive data from us
679 * ireason == 2: the drive is expecting to transfer data to us
680 */
681 if (ireason == (!rw << 1))
1da177e4 682 return 0;
0d6f7e3a 683 else if (ireason == (rw << 1)) {
5a5222d9 684 ide_hwif_t *hwif = drive->hwif;
0d6f7e3a 685 xfer_func_t *xf;
5a5222d9 686
0d6f7e3a 687 /* Whoops... */
35379c07
BZ
688 printk(KERN_ERR "%s: %s: wrong transfer direction!\n",
689 drive->name, __FUNCTION__);
1da177e4 690
0d6f7e3a
BZ
691 xf = rw ? hwif->atapi_output_bytes : hwif->atapi_input_bytes;
692 ide_cd_pad_transfer(drive, xf, len);
693 } else if (rw == 0 && ireason == 1) {
1da177e4
LT
694 /* Some drives (ASUS) seem to tell us that status
695 * info is available. just get it and ignore.
696 */
697 (void) HWIF(drive)->INB(IDE_STATUS_REG);
698 return 0;
699 } else {
700 /* Drive wants a command packet, or invalid ireason... */
35379c07
BZ
701 printk(KERN_ERR "%s: %s: bad interrupt reason 0x%02x\n",
702 drive->name, __FUNCTION__, ireason);
1da177e4
LT
703 }
704
705 cdrom_end_request(drive, 0);
706 return -1;
707}
708
64814f23
BZ
709/*
710 * Assume that the drive will always provide data in multiples of at least
711 * SECTOR_SIZE, as it gets hairy to keep track of the transfers otherwise.
712 */
713static int ide_cd_check_transfer_size(ide_drive_t *drive, int len)
714{
715 struct cdrom_info *cd = drive->driver_data;
716
717 if ((len % SECTOR_SIZE) == 0)
718 return 0;
719
720 printk(KERN_ERR "%s: %s: Bad transfer size %d\n",
721 drive->name, __FUNCTION__, len);
722
723 if (cd->cd_flags & IDE_CD_FLAG_LIMIT_NFRAMES)
724 printk(KERN_ERR " This drive is not supported by "
725 "this version of the driver\n");
726 else {
727 printk(KERN_ERR " Trying to limit transfer sizes\n");
728 cd->cd_flags |= IDE_CD_FLAG_LIMIT_NFRAMES;
729 }
730
731 return 1;
732}
733
1da177e4
LT
734/*
735 * Try to satisfy some of the current read request from our cached data.
736 * Returns nonzero if the request has been completed, zero otherwise.
737 */
738static int cdrom_read_from_buffer (ide_drive_t *drive)
739{
740 struct cdrom_info *info = drive->driver_data;
741 struct request *rq = HWGROUP(drive)->rq;
742 unsigned short sectors_per_frame;
743
744 sectors_per_frame = queue_hardsect_size(drive->queue) >> SECTOR_BITS;
745
746 /* Can't do anything if there's no buffer. */
747 if (info->buffer == NULL) return 0;
748
749 /* Loop while this request needs data and the next block is present
750 in our cache. */
751 while (rq->nr_sectors > 0 &&
752 rq->sector >= info->sector_buffered &&
753 rq->sector < info->sector_buffered + info->nsectors_buffered) {
754 if (rq->current_nr_sectors == 0)
755 cdrom_end_request(drive, 1);
756
757 memcpy (rq->buffer,
758 info->buffer +
759 (rq->sector - info->sector_buffered) * SECTOR_SIZE,
760 SECTOR_SIZE);
761 rq->buffer += SECTOR_SIZE;
762 --rq->current_nr_sectors;
763 --rq->nr_sectors;
764 ++rq->sector;
765 }
766
767 /* If we've satisfied the current request,
768 terminate it successfully. */
769 if (rq->nr_sectors == 0) {
770 cdrom_end_request(drive, 1);
771 return -1;
772 }
773
774 /* Move on to the next buffer if needed. */
775 if (rq->current_nr_sectors == 0)
776 cdrom_end_request(drive, 1);
777
778 /* If this condition does not hold, then the kluge i use to
779 represent the number of sectors to skip at the start of a transfer
780 will fail. I think that this will never happen, but let's be
781 paranoid and check. */
782 if (rq->current_nr_sectors < bio_cur_sectors(rq->bio) &&
783 (rq->sector & (sectors_per_frame - 1))) {
784 printk(KERN_ERR "%s: cdrom_read_from_buffer: buffer botch (%ld)\n",
785 drive->name, (long)rq->sector);
786 cdrom_end_request(drive, 0);
787 return -1;
788 }
789
790 return 0;
791}
792
0041e7c6 793static ide_startstop_t cdrom_newpc_intr(ide_drive_t *);
94f5a86d 794
1da177e4 795/*
29f3aaca
BZ
796 * Routine to send a read/write packet command to the drive.
797 * This is usually called directly from cdrom_start_{read,write}().
1da177e4
LT
798 * However, for drq_interrupt devices, it is called from an interrupt
799 * when the drive is ready to accept the command.
800 */
29f3aaca 801static ide_startstop_t cdrom_start_rw_cont(ide_drive_t *drive)
1da177e4
LT
802{
803 struct request *rq = HWGROUP(drive)->rq;
1da177e4 804
29f3aaca
BZ
805 if (rq_data_dir(rq) == READ) {
806 unsigned short sectors_per_frame =
807 queue_hardsect_size(drive->queue) >> SECTOR_BITS;
808 int nskip = rq->sector & (sectors_per_frame - 1);
1da177e4 809
29f3aaca
BZ
810 /*
811 * If the requested sector doesn't start on a frame boundary,
812 * we must adjust the start of the transfer so that it does,
813 * and remember to skip the first few sectors.
814 *
815 * If the rq->current_nr_sectors field is larger than the size
816 * of the buffer, it will mean that we're to skip a number of
817 * sectors equal to the amount by which rq->current_nr_sectors
818 * is larger than the buffer size.
819 */
820 if (nskip > 0) {
821 /* Sanity check... */
822 if (rq->current_nr_sectors !=
823 bio_cur_sectors(rq->bio)) {
824 printk(KERN_ERR "%s: %s: buffer botch (%u)\n",
825 drive->name, __FUNCTION__,
826 rq->current_nr_sectors);
827 cdrom_end_request(drive, 0);
828 return ide_stopped;
829 }
830 rq->current_nr_sectors += nskip;
1da177e4 831 }
1da177e4 832 }
29f3aaca
BZ
833#if 0
834 else
835 /* the immediate bit */
836 rq->cmd[1] = 1 << 3;
837#endif
1da177e4
LT
838 /* Set up the command */
839 rq->timeout = ATAPI_WAIT_PC;
840
841 /* Send the command to the drive and return. */
0041e7c6 842 return cdrom_transfer_packet_command(drive, rq, cdrom_newpc_intr);
1da177e4
LT
843}
844
1da177e4
LT
845#define IDECD_SEEK_THRESHOLD (1000) /* 1000 blocks */
846#define IDECD_SEEK_TIMER (5 * WAIT_MIN_SLEEP) /* 100 ms */
847#define IDECD_SEEK_TIMEOUT (2 * WAIT_CMD) /* 20 sec */
848
849static ide_startstop_t cdrom_seek_intr (ide_drive_t *drive)
850{
851 struct cdrom_info *info = drive->driver_data;
852 int stat;
853 static int retry = 10;
854
855 if (cdrom_decode_status(drive, 0, &stat))
856 return ide_stopped;
4fe67178 857
2bc4cf2d 858 info->cd_flags |= IDE_CD_FLAG_SEEKING;
1da177e4
LT
859
860 if (retry && time_after(jiffies, info->start_seek + IDECD_SEEK_TIMER)) {
861 if (--retry == 0) {
862 /*
863 * this condition is far too common, to bother
864 * users about it
865 */
866 /* printk("%s: disabled DSC seek overlap\n", drive->name);*/
867 drive->dsc_overlap = 0;
868 }
869 }
870 return ide_stopped;
871}
872
873static ide_startstop_t cdrom_start_seek_continuation (ide_drive_t *drive)
874{
875 struct request *rq = HWGROUP(drive)->rq;
876 sector_t frame = rq->sector;
877
878 sector_div(frame, queue_hardsect_size(drive->queue) >> SECTOR_BITS);
879
880 memset(rq->cmd, 0, sizeof(rq->cmd));
881 rq->cmd[0] = GPCMD_SEEK;
882 put_unaligned(cpu_to_be32(frame), (unsigned int *) &rq->cmd[2]);
883
884 rq->timeout = ATAPI_WAIT_PC;
885 return cdrom_transfer_packet_command(drive, rq, &cdrom_seek_intr);
886}
887
888static ide_startstop_t cdrom_start_seek (ide_drive_t *drive, unsigned int block)
889{
890 struct cdrom_info *info = drive->driver_data;
891
892 info->dma = 0;
1da177e4
LT
893 info->start_seek = jiffies;
894 return cdrom_start_packet_command(drive, 0, cdrom_start_seek_continuation);
895}
896
897/* Fix up a possibly partially-processed request so that we can
898 start it over entirely, or even put it back on the request queue. */
899static void restore_request (struct request *rq)
900{
901 if (rq->buffer != bio_data(rq->bio)) {
902 sector_t n = (rq->buffer - (char *) bio_data(rq->bio)) / SECTOR_SIZE;
903
904 rq->buffer = bio_data(rq->bio);
905 rq->nr_sectors += n;
906 rq->sector -= n;
907 }
908 rq->hard_cur_sectors = rq->current_nr_sectors = bio_cur_sectors(rq->bio);
909 rq->hard_nr_sectors = rq->nr_sectors;
910 rq->hard_sector = rq->sector;
911 rq->q->prep_rq_fn(rq->q, rq);
912}
913
1da177e4
LT
914/****************************************************************************
915 * Execute all other packet commands.
916 */
917
8ee69f5a
BZ
918static void ide_cd_request_sense_fixup(struct request *rq)
919{
920 /*
921 * Some of the trailing request sense fields are optional,
922 * and some drives don't send them. Sigh.
923 */
924 if (rq->cmd[0] == GPCMD_REQUEST_SENSE &&
925 rq->data_len > 0 && rq->data_len <= 5)
926 while (rq->data_len > 0) {
927 *(u8 *)rq->data++ = 0;
928 --rq->data_len;
929 }
930}
931
17802998 932int ide_cd_queue_pc(ide_drive_t *drive, struct request *rq)
1da177e4
LT
933{
934 struct request_sense sense;
935 int retries = 10;
4aff5e23 936 unsigned int flags = rq->cmd_flags;
1da177e4
LT
937
938 if (rq->sense == NULL)
939 rq->sense = &sense;
940
941 /* Start of retry loop. */
942 do {
943 int error;
944 unsigned long time = jiffies;
4aff5e23 945 rq->cmd_flags = flags;
1da177e4
LT
946
947 error = ide_do_drive_cmd(drive, rq, ide_wait);
948 time = jiffies - time;
949
950 /* FIXME: we should probably abort/retry or something
951 * in case of failure */
4aff5e23 952 if (rq->cmd_flags & REQ_FAILED) {
1da177e4
LT
953 /* The request failed. Retry if it was due to a unit
954 attention status
955 (usually means media was changed). */
956 struct request_sense *reqbuf = rq->sense;
957
958 if (reqbuf->sense_key == UNIT_ATTENTION)
959 cdrom_saw_media_change(drive);
960 else if (reqbuf->sense_key == NOT_READY &&
961 reqbuf->asc == 4 && reqbuf->ascq != 4) {
962 /* The drive is in the process of loading
963 a disk. Retry, but wait a little to give
964 the drive time to complete the load. */
965 ssleep(2);
966 } else {
967 /* Otherwise, don't retry. */
968 retries = 0;
969 }
970 --retries;
971 }
972
973 /* End of retry loop. */
4aff5e23 974 } while ((rq->cmd_flags & REQ_FAILED) && retries >= 0);
1da177e4
LT
975
976 /* Return an error if the command failed. */
4aff5e23 977 return (rq->cmd_flags & REQ_FAILED) ? -EIO : 0;
1da177e4
LT
978}
979
aaa04c28
KU
980/*
981 * Called from blk_end_request_callback() after the data of the request
982 * is completed and before the request is completed.
983 * By returning value '1', blk_end_request_callback() returns immediately
984 * without completing the request.
985 */
986static int cdrom_newpc_intr_dummy_cb(struct request *rq)
987{
988 return 1;
989}
990
1da177e4
LT
991static ide_startstop_t cdrom_newpc_intr(ide_drive_t *drive)
992{
993 struct cdrom_info *info = drive->driver_data;
994 struct request *rq = HWGROUP(drive)->rq;
1da177e4 995 xfer_func_t *xferfunc;
0041e7c6 996 ide_expiry_t *expiry = NULL;
ff1bfbc1
BZ
997 int dma_error = 0, dma, stat, ireason, len, thislen, uptodate = 0;
998 int write = (rq_data_dir(rq) == WRITE) ? 1 : 0;
999 unsigned int timeout;
1000 u8 lowcyl, highcyl;
1da177e4
LT
1001
1002 /* Check for errors. */
1da177e4
LT
1003 dma = info->dma;
1004 if (dma) {
1005 info->dma = 0;
1006 dma_error = HWIF(drive)->ide_dma_end(drive);
eba15fba
BZ
1007 if (dma_error) {
1008 printk(KERN_ERR "%s: DMA %s error\n", drive->name,
ff1bfbc1 1009 write ? "write" : "read");
eba15fba
BZ
1010 ide_dma_off(drive);
1011 }
1da177e4
LT
1012 }
1013
1014 if (cdrom_decode_status(drive, 0, &stat))
1015 return ide_stopped;
1016
1017 /*
1018 * using dma, transfer is complete now
1019 */
1020 if (dma) {
eba15fba 1021 if (dma_error)
1da177e4 1022 return ide_error(drive, "dma error", stat);
0041e7c6
BZ
1023 if (blk_fs_request(rq)) {
1024 ide_end_request(drive, 1, rq->nr_sectors);
1025 return ide_stopped;
1026 }
ff1bfbc1 1027 goto end_request;
1da177e4
LT
1028 }
1029
1030 /*
1031 * ok we fall to pio :/
1032 */
1033 ireason = HWIF(drive)->INB(IDE_IREASON_REG) & 0x3;
1034 lowcyl = HWIF(drive)->INB(IDE_BCOUNTL_REG);
1035 highcyl = HWIF(drive)->INB(IDE_BCOUNTH_REG);
1036
1037 len = lowcyl + (256 * highcyl);
0041e7c6
BZ
1038
1039 thislen = blk_fs_request(rq) ? len : rq->data_len;
1da177e4
LT
1040 if (thislen > len)
1041 thislen = len;
1042
1043 /*
1044 * If DRQ is clear, the command has completed.
1045 */
aaa04c28 1046 if ((stat & DRQ_STAT) == 0) {
0041e7c6
BZ
1047 if (blk_fs_request(rq)) {
1048 /*
1049 * If we're not done reading/writing, complain.
1050 * Otherwise, complete the command normally.
1051 */
1052 uptodate = 1;
1053 if (rq->current_nr_sectors > 0) {
1054 printk(KERN_ERR "%s: %s: data underrun "
1055 "(%d blocks)\n",
1056 drive->name, __FUNCTION__,
1057 rq->current_nr_sectors);
1058 if (!write)
1059 rq->cmd_flags |= REQ_FAILED;
1060 uptodate = 0;
1061 }
1062 cdrom_end_request(drive, uptodate);
1063 return ide_stopped;
1064 } else if (!blk_pc_request(rq)) {
ff1bfbc1
BZ
1065 ide_cd_request_sense_fixup(rq);
1066 /* Complain if we still have data left to transfer. */
1067 uptodate = rq->data_len ? 0 : 1;
1068 }
1069 goto end_request;
aaa04c28 1070 }
1da177e4
LT
1071
1072 /*
1073 * check which way to transfer data
1074 */
0d6f7e3a
BZ
1075 if (blk_fs_request(rq) || blk_pc_request(rq)) {
1076 if (ide_cd_check_ireason(drive, len, ireason, write))
1da177e4 1077 return ide_stopped;
0041e7c6 1078
0d6f7e3a 1079 if (blk_fs_request(rq) && write == 0) {
0041e7c6
BZ
1080 int nskip;
1081
1082 if (ide_cd_check_transfer_size(drive, len)) {
1083 cdrom_end_request(drive, 0);
1084 return ide_stopped;
1085 }
1086
1087 /*
1088 * First, figure out if we need to bit-bucket
1089 * any of the leading sectors.
1090 */
1091 nskip = min_t(int, rq->current_nr_sectors
1092 - bio_cur_sectors(rq->bio),
1093 thislen >> 9);
1094 if (nskip > 0) {
1095 ide_cd_drain_data(drive, nskip);
1096 rq->current_nr_sectors -= nskip;
1097 thislen -= (nskip << 9);
1098 }
1099 }
ff1bfbc1 1100 }
1da177e4 1101
ff1bfbc1
BZ
1102 if (ireason == 0) {
1103 write = 1;
1104 xferfunc = HWIF(drive)->atapi_output_bytes;
0041e7c6
BZ
1105 } else if (ireason == 2 || (ireason == 1 &&
1106 (blk_fs_request(rq) || blk_pc_request(rq)))) {
ff1bfbc1 1107 write = 0;
1da177e4 1108 xferfunc = HWIF(drive)->atapi_input_bytes;
ff1bfbc1
BZ
1109 } else {
1110 printk(KERN_ERR "%s: %s: The drive "
1111 "appears confused (ireason = 0x%02x). "
1112 "Trying to recover by ending request.\n",
1113 drive->name, __FUNCTION__, ireason);
1114 goto end_request;
1da177e4
LT
1115 }
1116
1117 /*
1118 * transfer data
1119 */
1120 while (thislen > 0) {
0041e7c6 1121 u8 *ptr = blk_fs_request(rq) ? NULL : rq->data;
a11e77db 1122 int blen = rq->data_len;
1da177e4
LT
1123
1124 /*
1125 * bio backed?
1126 */
1127 if (rq->bio) {
0041e7c6
BZ
1128 if (blk_fs_request(rq)) {
1129 ptr = rq->buffer;
1130 blen = rq->current_nr_sectors << 9;
1131 } else {
1132 ptr = bio_data(rq->bio);
1133 blen = bio_iovec(rq->bio)->bv_len;
1134 }
1da177e4
LT
1135 }
1136
1137 if (!ptr) {
0041e7c6
BZ
1138 if (blk_fs_request(rq) && !write)
1139 /*
1140 * If the buffers are full, cache the rest
1141 * of the data in our internal buffer.
1142 */
1143 cdrom_buffer_sectors(drive, rq->sector,
1144 thislen >> 9);
1145 else {
1146 printk(KERN_ERR "%s: confused, missing data\n",
1147 drive->name);
1148 blk_dump_rq_flags(rq, rq_data_dir(rq)
1149 ? "cdrom_newpc_intr, write"
1150 : "cdrom_newpc_intr, read");
1151 }
1da177e4
LT
1152 break;
1153 }
1154
1155 if (blen > thislen)
1156 blen = thislen;
1157
1158 xferfunc(drive, ptr, blen);
1159
1160 thislen -= blen;
1161 len -= blen;
1da177e4 1162
0041e7c6
BZ
1163 if (blk_fs_request(rq)) {
1164 rq->buffer += blen;
1165 rq->nr_sectors -= (blen >> 9);
1166 rq->current_nr_sectors -= (blen >> 9);
1167 rq->sector += (blen >> 9);
1168
1169 if (rq->current_nr_sectors == 0 && rq->nr_sectors)
1170 cdrom_end_request(drive, 1);
1171 } else {
1172 rq->data_len -= blen;
1173
aaa04c28
KU
1174 /*
1175 * The request can't be completed until DRQ is cleared.
1176 * So complete the data, but don't complete the request
1177 * using the dummy function for the callback feature
1178 * of blk_end_request_callback().
1179 */
0041e7c6
BZ
1180 if (rq->bio)
1181 blk_end_request_callback(rq, 0, blen,
aaa04c28 1182 cdrom_newpc_intr_dummy_cb);
0041e7c6
BZ
1183 else
1184 rq->data += blen;
1185 }
1da177e4
LT
1186 }
1187
ff1bfbc1
BZ
1188 if (write && blk_sense_request(rq))
1189 rq->sense_len += thislen;
1190
1da177e4
LT
1191 /*
1192 * pad, if necessary
1193 */
0041e7c6 1194 if (!blk_fs_request(rq) && len > 0)
5a5222d9 1195 ide_cd_pad_transfer(drive, xferfunc, len);
1da177e4 1196
ff1bfbc1
BZ
1197 if (blk_pc_request(rq)) {
1198 timeout = rq->timeout;
ff1bfbc1
BZ
1199 } else {
1200 timeout = ATAPI_WAIT_PC;
0041e7c6
BZ
1201 if (!blk_fs_request(rq))
1202 expiry = cdrom_timer_expiry;
ff1bfbc1
BZ
1203 }
1204
1205 ide_set_handler(drive, cdrom_newpc_intr, timeout, expiry);
1da177e4 1206 return ide_started;
ff1bfbc1
BZ
1207
1208end_request:
1209 if (blk_pc_request(rq)) {
1210 unsigned long flags;
1211
1212 spin_lock_irqsave(&ide_lock, flags);
1213 if (__blk_end_request(rq, 0, rq->data_len))
1214 BUG();
1215 HWGROUP(drive)->rq = NULL;
1216 spin_unlock_irqrestore(&ide_lock, flags);
1217 } else {
1218 if (!uptodate)
1219 rq->cmd_flags |= REQ_FAILED;
1220 cdrom_end_request(drive, uptodate);
1221 }
1222 return ide_stopped;
1da177e4
LT
1223}
1224
21ea1f0f 1225static ide_startstop_t cdrom_start_rw(ide_drive_t *drive, struct request *rq)
1da177e4 1226{
21ea1f0f
BZ
1227 struct cdrom_info *cd = drive->driver_data;
1228 int write = rq_data_dir(rq) == WRITE;
1229 unsigned short sectors_per_frame =
1230 queue_hardsect_size(drive->queue) >> SECTOR_BITS;
1da177e4 1231
21ea1f0f
BZ
1232 if (write) {
1233 /*
1234 * disk has become write protected
1235 */
1236 if (cd->disk->policy) {
1237 cdrom_end_request(drive, 0);
1238 return ide_stopped;
1239 }
1240 } else {
1241 /*
1242 * We may be retrying this request after an error. Fix up any
1243 * weirdness which might be present in the request packet.
1244 */
1245 restore_request(rq);
1246
1247 /* Satisfy whatever we can of this request from our cache. */
1248 if (cdrom_read_from_buffer(drive))
1249 return ide_stopped;
1da177e4
LT
1250 }
1251
1252 /*
21ea1f0f 1253 * use DMA, if possible / writes *must* be hardware frame aligned
1da177e4 1254 */
21ea1f0f
BZ
1255 if ((rq->nr_sectors & (sectors_per_frame - 1)) ||
1256 (rq->sector & (sectors_per_frame - 1))) {
1257 if (write) {
1258 cdrom_end_request(drive, 0);
1259 return ide_stopped;
1260 }
1261 cd->dma = 0;
1262 } else
1263 cd->dma = drive->using_dma;
1da177e4 1264
21ea1f0f
BZ
1265 /* Clear the local sector buffer. */
1266 cd->nsectors_buffered = 0;
1da177e4 1267
21ea1f0f
BZ
1268 if (write)
1269 cd->devinfo.media_written = 1;
1da177e4 1270
21ea1f0f 1271 /* Start sending the read/write request to the drive. */
29f3aaca 1272 return cdrom_start_packet_command(drive, 32768, cdrom_start_rw_cont);
1da177e4
LT
1273}
1274
1275static ide_startstop_t cdrom_do_newpc_cont(ide_drive_t *drive)
1276{
1277 struct request *rq = HWGROUP(drive)->rq;
1278
1279 if (!rq->timeout)
1280 rq->timeout = ATAPI_WAIT_PC;
1281
1282 return cdrom_transfer_packet_command(drive, rq, cdrom_newpc_intr);
1283}
1284
1285static ide_startstop_t cdrom_do_block_pc(ide_drive_t *drive, struct request *rq)
1286{
1287 struct cdrom_info *info = drive->driver_data;
1288
c9f56a80
BZ
1289 if (blk_pc_request(rq))
1290 rq->cmd_flags |= REQ_QUIET;
1291 else
1292 rq->cmd_flags &= ~REQ_FAILED;
1da177e4
LT
1293
1294 info->dma = 0;
1da177e4
LT
1295
1296 /*
1297 * sg request
1298 */
1299 if (rq->bio) {
1300 int mask = drive->queue->dma_alignment;
1301 unsigned long addr = (unsigned long) page_address(bio_page(rq->bio));
1302
1da177e4
LT
1303 info->dma = drive->using_dma;
1304
1305 /*
1306 * check if dma is safe
5d9e4ea5
LT
1307 *
1308 * NOTE! The "len" and "addr" checks should possibly have
1309 * separate masks.
1da177e4 1310 */
4e7c6816 1311 if ((rq->data_len & 15) || (addr & mask))
1da177e4
LT
1312 info->dma = 0;
1313 }
1314
1315 /* Start sending the command to the drive. */
1316 return cdrom_start_packet_command(drive, rq->data_len, cdrom_do_newpc_cont);
1317}
1318
1319/****************************************************************************
1320 * cdrom driver request routine.
1321 */
1322static ide_startstop_t
1323ide_do_rw_cdrom (ide_drive_t *drive, struct request *rq, sector_t block)
1324{
1325 ide_startstop_t action;
1326 struct cdrom_info *info = drive->driver_data;
1327
1328 if (blk_fs_request(rq)) {
2bc4cf2d 1329 if (info->cd_flags & IDE_CD_FLAG_SEEKING) {
1da177e4
LT
1330 unsigned long elapsed = jiffies - info->start_seek;
1331 int stat = HWIF(drive)->INB(IDE_STATUS_REG);
1332
1333 if ((stat & SEEK_STAT) != SEEK_STAT) {
1334 if (elapsed < IDECD_SEEK_TIMEOUT) {
1335 ide_stall_queue(drive, IDECD_SEEK_TIMER);
1336 return ide_stopped;
1337 }
1338 printk (KERN_ERR "%s: DSC timeout\n", drive->name);
1339 }
2bc4cf2d 1340 info->cd_flags &= ~IDE_CD_FLAG_SEEKING;
1da177e4
LT
1341 }
1342 if ((rq_data_dir(rq) == READ) && IDE_LARGE_SEEK(info->last_block, block, IDECD_SEEK_THRESHOLD) && drive->dsc_overlap) {
1343 action = cdrom_start_seek(drive, block);
21ea1f0f
BZ
1344 } else
1345 action = cdrom_start_rw(drive, rq);
1da177e4
LT
1346 info->last_block = block;
1347 return action;
c9f56a80 1348 } else if (blk_sense_request(rq) || blk_pc_request(rq) ||
cea2885a 1349 rq->cmd_type == REQ_TYPE_ATA_PC) {
1da177e4 1350 return cdrom_do_block_pc(drive, rq);
4aff5e23 1351 } else if (blk_special_request(rq)) {
1da177e4
LT
1352 /*
1353 * right now this can only be a reset...
1354 */
1355 cdrom_end_request(drive, 1);
1356 return ide_stopped;
1357 }
1358
1359 blk_dump_rq_flags(rq, "ide-cd bad flags");
1360 cdrom_end_request(drive, 0);
1361 return ide_stopped;
1362}
1363
1364
1365
1366/****************************************************************************
1367 * Ioctl handling.
1368 *
1369 * Routines which queue packet commands take as a final argument a pointer
1370 * to a request_sense struct. If execution of the command results
1371 * in an error with a CHECK CONDITION status, this structure will be filled
1372 * with the results of the subsequent request sense command. The pointer
1373 * can also be NULL, in which case no sense information is returned.
1374 */
1375
1da177e4
LT
1376static
1377void msf_from_bcd (struct atapi_msf *msf)
1378{
9a6dc668
BZ
1379 msf->minute = BCD2BIN(msf->minute);
1380 msf->second = BCD2BIN(msf->second);
1381 msf->frame = BCD2BIN(msf->frame);
1da177e4
LT
1382}
1383
1da177e4
LT
1384static int cdrom_check_status(ide_drive_t *drive, struct request_sense *sense)
1385{
1386 struct request req;
1387 struct cdrom_info *info = drive->driver_data;
1388 struct cdrom_device_info *cdi = &info->devinfo;
1389
139c829d 1390 ide_cd_init_rq(drive, &req);
1da177e4
LT
1391
1392 req.sense = sense;
1393 req.cmd[0] = GPCMD_TEST_UNIT_READY;
4aff5e23 1394 req.cmd_flags |= REQ_QUIET;
1da177e4 1395
cdf6000d
BZ
1396 /*
1397 * Sanyo 3 CD changer uses byte 7 of TEST_UNIT_READY to
1398 * switch CDs instead of supporting the LOAD_UNLOAD opcode.
1399 */
1da177e4 1400 req.cmd[7] = cdi->sanyo_slot % 3;
1da177e4 1401
139c829d 1402 return ide_cd_queue_pc(drive, &req);
1da177e4
LT
1403}
1404
1da177e4 1405/* Lock the door if LOCKFLAG is nonzero; unlock it otherwise. */
17802998
BZ
1406int ide_cd_lockdoor(ide_drive_t *drive, int lockflag,
1407 struct request_sense *sense)
1da177e4 1408{
4fe67178 1409 struct cdrom_info *cd = drive->driver_data;
1da177e4
LT
1410 struct request_sense my_sense;
1411 struct request req;
1412 int stat;
1413
1414 if (sense == NULL)
1415 sense = &my_sense;
1416
1417 /* If the drive cannot lock the door, just pretend. */
2bc4cf2d 1418 if (cd->cd_flags & IDE_CD_FLAG_NO_DOORLOCK) {
1da177e4
LT
1419 stat = 0;
1420 } else {
139c829d 1421 ide_cd_init_rq(drive, &req);
1da177e4
LT
1422 req.sense = sense;
1423 req.cmd[0] = GPCMD_PREVENT_ALLOW_MEDIUM_REMOVAL;
1424 req.cmd[4] = lockflag ? 1 : 0;
139c829d 1425 stat = ide_cd_queue_pc(drive, &req);
1da177e4
LT
1426 }
1427
1428 /* If we got an illegal field error, the drive
1429 probably cannot lock the door. */
1430 if (stat != 0 &&
1431 sense->sense_key == ILLEGAL_REQUEST &&
1432 (sense->asc == 0x24 || sense->asc == 0x20)) {
1433 printk (KERN_ERR "%s: door locking not supported\n",
1434 drive->name);
2bc4cf2d 1435 cd->cd_flags |= IDE_CD_FLAG_NO_DOORLOCK;
1da177e4
LT
1436 stat = 0;
1437 }
1438
1439 /* no medium, that's alright. */
1440 if (stat != 0 && sense->sense_key == NOT_READY && sense->asc == 0x3a)
1441 stat = 0;
1442
2bc4cf2d
BZ
1443 if (stat == 0) {
1444 if (lockflag)
1445 cd->cd_flags |= IDE_CD_FLAG_DOOR_LOCKED;
1446 else
1447 cd->cd_flags &= ~IDE_CD_FLAG_DOOR_LOCKED;
1448 }
1da177e4
LT
1449
1450 return stat;
1451}
1452
1453
1454/* Eject the disk if EJECTFLAG is 0.
1455 If EJECTFLAG is 1, try to reload the disk. */
1456static int cdrom_eject(ide_drive_t *drive, int ejectflag,
1457 struct request_sense *sense)
1458{
3f1b86d8
BZ
1459 struct cdrom_info *cd = drive->driver_data;
1460 struct cdrom_device_info *cdi = &cd->devinfo;
1da177e4
LT
1461 struct request req;
1462 char loej = 0x02;
1463
2bc4cf2d 1464 if ((cd->cd_flags & IDE_CD_FLAG_NO_EJECT) && !ejectflag)
1da177e4 1465 return -EDRIVE_CANT_DO_THIS;
4fe67178 1466
1da177e4 1467 /* reload fails on some drives, if the tray is locked */
2bc4cf2d 1468 if ((cd->cd_flags & IDE_CD_FLAG_DOOR_LOCKED) && ejectflag)
1da177e4
LT
1469 return 0;
1470
139c829d 1471 ide_cd_init_rq(drive, &req);
1da177e4
LT
1472
1473 /* only tell drive to close tray if open, if it can do that */
3f1b86d8 1474 if (ejectflag && (cdi->mask & CDC_CLOSE_TRAY))
1da177e4
LT
1475 loej = 0;
1476
1477 req.sense = sense;
1478 req.cmd[0] = GPCMD_START_STOP_UNIT;
1479 req.cmd[4] = loej | (ejectflag != 0);
139c829d
BZ
1480
1481 return ide_cd_queue_pc(drive, &req);
1da177e4
LT
1482}
1483
1484static int cdrom_read_capacity(ide_drive_t *drive, unsigned long *capacity,
1485 unsigned long *sectors_per_frame,
1486 struct request_sense *sense)
1487{
1488 struct {
1489 __u32 lba;
1490 __u32 blocklen;
1491 } capbuf;
1492
1493 int stat;
1494 struct request req;
1495
139c829d 1496 ide_cd_init_rq(drive, &req);
1da177e4
LT
1497
1498 req.sense = sense;
1499 req.cmd[0] = GPCMD_READ_CDVD_CAPACITY;
1500 req.data = (char *)&capbuf;
1501 req.data_len = sizeof(capbuf);
4aff5e23 1502 req.cmd_flags |= REQ_QUIET;
1da177e4 1503
139c829d 1504 stat = ide_cd_queue_pc(drive, &req);
1da177e4
LT
1505 if (stat == 0) {
1506 *capacity = 1 + be32_to_cpu(capbuf.lba);
1507 *sectors_per_frame =
1508 be32_to_cpu(capbuf.blocklen) >> SECTOR_BITS;
1509 }
1510
1511 return stat;
1512}
1513
1514static int cdrom_read_tocentry(ide_drive_t *drive, int trackno, int msf_flag,
1515 int format, char *buf, int buflen,
1516 struct request_sense *sense)
1517{
1518 struct request req;
1519
139c829d 1520 ide_cd_init_rq(drive, &req);
1da177e4
LT
1521
1522 req.sense = sense;
1523 req.data = buf;
1524 req.data_len = buflen;
4aff5e23 1525 req.cmd_flags |= REQ_QUIET;
1da177e4
LT
1526 req.cmd[0] = GPCMD_READ_TOC_PMA_ATIP;
1527 req.cmd[6] = trackno;
1528 req.cmd[7] = (buflen >> 8);
1529 req.cmd[8] = (buflen & 0xff);
1530 req.cmd[9] = (format << 6);
1531
1532 if (msf_flag)
1533 req.cmd[1] = 2;
1534
139c829d 1535 return ide_cd_queue_pc(drive, &req);
1da177e4
LT
1536}
1537
1da177e4 1538/* Try to read the entire TOC for the disk into our internal buffer. */
17802998 1539int ide_cd_read_toc(ide_drive_t *drive, struct request_sense *sense)
1da177e4
LT
1540{
1541 int stat, ntracks, i;
1542 struct cdrom_info *info = drive->driver_data;
1543 struct cdrom_device_info *cdi = &info->devinfo;
1544 struct atapi_toc *toc = info->toc;
1545 struct {
1546 struct atapi_toc_header hdr;
1547 struct atapi_toc_entry ent;
1548 } ms_tmp;
1549 long last_written;
1550 unsigned long sectors_per_frame = SECTORS_PER_FRAME;
1551
1552 if (toc == NULL) {
1553 /* Try to allocate space. */
2a91f3e5 1554 toc = kmalloc(sizeof(struct atapi_toc), GFP_KERNEL);
1da177e4
LT
1555 if (toc == NULL) {
1556 printk (KERN_ERR "%s: No cdrom TOC buffer!\n", drive->name);
1557 return -ENOMEM;
1558 }
2a91f3e5 1559 info->toc = toc;
1da177e4
LT
1560 }
1561
1562 /* Check to see if the existing data is still valid.
1563 If it is, just return. */
1564 (void) cdrom_check_status(drive, sense);
1565
2bc4cf2d 1566 if (info->cd_flags & IDE_CD_FLAG_TOC_VALID)
1da177e4
LT
1567 return 0;
1568
1569 /* Try to get the total cdrom capacity and sector size. */
1570 stat = cdrom_read_capacity(drive, &toc->capacity, &sectors_per_frame,
1571 sense);
1572 if (stat)
1573 toc->capacity = 0x1fffff;
1574
1575 set_capacity(info->disk, toc->capacity * sectors_per_frame);
dbe217af
AC
1576 /* Save a private copy of te TOC capacity for error handling */
1577 drive->probed_capacity = toc->capacity * sectors_per_frame;
1578
1da177e4
LT
1579 blk_queue_hardsect_size(drive->queue,
1580 sectors_per_frame << SECTOR_BITS);
1581
1582 /* First read just the header, so we know how long the TOC is. */
1583 stat = cdrom_read_tocentry(drive, 0, 1, 0, (char *) &toc->hdr,
1584 sizeof(struct atapi_toc_header), sense);
2a91f3e5
JJ
1585 if (stat)
1586 return stat;
1da177e4 1587
2bc4cf2d 1588 if (info->cd_flags & IDE_CD_FLAG_TOCTRACKS_AS_BCD) {
9a6dc668
BZ
1589 toc->hdr.first_track = BCD2BIN(toc->hdr.first_track);
1590 toc->hdr.last_track = BCD2BIN(toc->hdr.last_track);
1da177e4 1591 }
1da177e4
LT
1592
1593 ntracks = toc->hdr.last_track - toc->hdr.first_track + 1;
1594 if (ntracks <= 0)
1595 return -EIO;
1596 if (ntracks > MAX_TRACKS)
1597 ntracks = MAX_TRACKS;
1598
1599 /* Now read the whole schmeer. */
1600 stat = cdrom_read_tocentry(drive, toc->hdr.first_track, 1, 0,
1601 (char *)&toc->hdr,
1602 sizeof(struct atapi_toc_header) +
1603 (ntracks + 1) *
1604 sizeof(struct atapi_toc_entry), sense);
1605
1606 if (stat && toc->hdr.first_track > 1) {
1607 /* Cds with CDI tracks only don't have any TOC entries,
1608 despite of this the returned values are
1609 first_track == last_track = number of CDI tracks + 1,
1610 so that this case is indistinguishable from the same
1611 layout plus an additional audio track.
1612 If we get an error for the regular case, we assume
1613 a CDI without additional audio tracks. In this case
1614 the readable TOC is empty (CDI tracks are not included)
96de0e25 1615 and only holds the Leadout entry. Heiko Eißfeldt */
1da177e4
LT
1616 ntracks = 0;
1617 stat = cdrom_read_tocentry(drive, CDROM_LEADOUT, 1, 0,
1618 (char *)&toc->hdr,
1619 sizeof(struct atapi_toc_header) +
1620 (ntracks + 1) *
1621 sizeof(struct atapi_toc_entry),
1622 sense);
cdf6000d 1623 if (stat)
1da177e4 1624 return stat;
cdf6000d 1625
2bc4cf2d 1626 if (info->cd_flags & IDE_CD_FLAG_TOCTRACKS_AS_BCD) {
9a6dc668
BZ
1627 toc->hdr.first_track = (u8)BIN2BCD(CDROM_LEADOUT);
1628 toc->hdr.last_track = (u8)BIN2BCD(CDROM_LEADOUT);
cdf6000d 1629 } else {
1da177e4
LT
1630 toc->hdr.first_track = CDROM_LEADOUT;
1631 toc->hdr.last_track = CDROM_LEADOUT;
1632 }
1633 }
1634
1635 if (stat)
1636 return stat;
1637
1638 toc->hdr.toc_length = ntohs (toc->hdr.toc_length);
1639
2bc4cf2d 1640 if (info->cd_flags & IDE_CD_FLAG_TOCTRACKS_AS_BCD) {
9a6dc668
BZ
1641 toc->hdr.first_track = BCD2BIN(toc->hdr.first_track);
1642 toc->hdr.last_track = BCD2BIN(toc->hdr.last_track);
1da177e4 1643 }
1da177e4 1644
cdf6000d 1645 for (i = 0; i <= ntracks; i++) {
2bc4cf2d
BZ
1646 if (info->cd_flags & IDE_CD_FLAG_TOCADDR_AS_BCD) {
1647 if (info->cd_flags & IDE_CD_FLAG_TOCTRACKS_AS_BCD)
9a6dc668 1648 toc->ent[i].track = BCD2BIN(toc->ent[i].track);
1da177e4
LT
1649 msf_from_bcd(&toc->ent[i].addr.msf);
1650 }
1da177e4
LT
1651 toc->ent[i].addr.lba = msf_to_lba (toc->ent[i].addr.msf.minute,
1652 toc->ent[i].addr.msf.second,
1653 toc->ent[i].addr.msf.frame);
1654 }
1655
1656 /* Read the multisession information. */
1657 if (toc->hdr.first_track != CDROM_LEADOUT) {
1658 /* Read the multisession information. */
1659 stat = cdrom_read_tocentry(drive, 0, 0, 1, (char *)&ms_tmp,
1660 sizeof(ms_tmp), sense);
2a91f3e5
JJ
1661 if (stat)
1662 return stat;
1da177e4
LT
1663
1664 toc->last_session_lba = be32_to_cpu(ms_tmp.ent.addr.lba);
1665 } else {
1666 ms_tmp.hdr.first_track = ms_tmp.hdr.last_track = CDROM_LEADOUT;
1667 toc->last_session_lba = msf_to_lba(0, 2, 0); /* 0m 2s 0f */
1668 }
1669
2bc4cf2d 1670 if (info->cd_flags & IDE_CD_FLAG_TOCADDR_AS_BCD) {
1da177e4
LT
1671 /* Re-read multisession information using MSF format */
1672 stat = cdrom_read_tocentry(drive, 0, 1, 1, (char *)&ms_tmp,
1673 sizeof(ms_tmp), sense);
1674 if (stat)
1675 return stat;
1676
1677 msf_from_bcd (&ms_tmp.ent.addr.msf);
1678 toc->last_session_lba = msf_to_lba(ms_tmp.ent.addr.msf.minute,
1679 ms_tmp.ent.addr.msf.second,
1680 ms_tmp.ent.addr.msf.frame);
1681 }
1da177e4
LT
1682
1683 toc->xa_flag = (ms_tmp.hdr.first_track != ms_tmp.hdr.last_track);
1684
1685 /* Now try to get the total cdrom capacity. */
1686 stat = cdrom_get_last_written(cdi, &last_written);
1687 if (!stat && (last_written > toc->capacity)) {
1688 toc->capacity = last_written;
1689 set_capacity(info->disk, toc->capacity * sectors_per_frame);
dbe217af 1690 drive->probed_capacity = toc->capacity * sectors_per_frame;
1da177e4
LT
1691 }
1692
1693 /* Remember that we've read this stuff. */
2bc4cf2d 1694 info->cd_flags |= IDE_CD_FLAG_TOC_VALID;
1da177e4
LT
1695
1696 return 0;
1697}
1698
1da177e4
LT
1699/* the generic packet interface to cdrom.c */
1700static int ide_cdrom_packet(struct cdrom_device_info *cdi,
1701 struct packet_command *cgc)
1702{
1703 struct request req;
2a91f3e5 1704 ide_drive_t *drive = cdi->handle;
1da177e4
LT
1705
1706 if (cgc->timeout <= 0)
1707 cgc->timeout = ATAPI_WAIT_PC;
1708
1709 /* here we queue the commands from the uniform CD-ROM
1710 layer. the packet must be complete, as we do not
1711 touch it at all. */
139c829d 1712 ide_cd_init_rq(drive, &req);
1da177e4
LT
1713 memcpy(req.cmd, cgc->cmd, CDROM_PACKET_SIZE);
1714 if (cgc->sense)
1715 memset(cgc->sense, 0, sizeof(struct request_sense));
1716 req.data = cgc->buffer;
1717 req.data_len = cgc->buflen;
1718 req.timeout = cgc->timeout;
1719
1720 if (cgc->quiet)
4aff5e23 1721 req.cmd_flags |= REQ_QUIET;
1da177e4
LT
1722
1723 req.sense = cgc->sense;
139c829d 1724 cgc->stat = ide_cd_queue_pc(drive, &req);
1da177e4
LT
1725 if (!cgc->stat)
1726 cgc->buflen -= req.data_len;
1727 return cgc->stat;
1728}
1729
1da177e4
LT
1730static
1731int ide_cdrom_tray_move (struct cdrom_device_info *cdi, int position)
1732{
2a91f3e5 1733 ide_drive_t *drive = cdi->handle;
1da177e4
LT
1734 struct request_sense sense;
1735
1736 if (position) {
139c829d
BZ
1737 int stat = ide_cd_lockdoor(drive, 0, &sense);
1738
2a91f3e5
JJ
1739 if (stat)
1740 return stat;
1da177e4
LT
1741 }
1742
1743 return cdrom_eject(drive, !position, &sense);
1744}
1745
17802998 1746int ide_cdrom_get_capabilities(ide_drive_t *drive, u8 *buf)
9235e68b
EP
1747{
1748 struct cdrom_info *info = drive->driver_data;
1749 struct cdrom_device_info *cdi = &info->devinfo;
1750 struct packet_command cgc;
455d80a9 1751 int stat, attempts = 3, size = ATAPI_CAPABILITIES_PAGE_SIZE;
9235e68b 1752
e59724c7 1753 if ((info->cd_flags & IDE_CD_FLAG_FULL_CAPS_PAGE) == 0)
455d80a9 1754 size -= ATAPI_CAPABILITIES_PAGE_PAD_SIZE;
9235e68b 1755
455d80a9 1756 init_cdrom_command(&cgc, buf, size, CGC_DATA_UNKNOWN);
9235e68b
EP
1757 do { /* we seem to get stat=0x01,err=0x00 the first time (??) */
1758 stat = cdrom_mode_sense(cdi, &cgc, GPMODE_CAPABILITIES_PAGE, 0);
1759 if (!stat)
1760 break;
1761 } while (--attempts);
1762 return stat;
1763}
1764
17802998 1765void ide_cdrom_update_speed(ide_drive_t *drive, u8 *buf)
9235e68b 1766{
4fe67178 1767 struct cdrom_info *cd = drive->driver_data;
481c8c64
BZ
1768 u16 curspeed, maxspeed;
1769
455d80a9
BZ
1770 curspeed = *(u16 *)&buf[8 + 14];
1771 maxspeed = *(u16 *)&buf[8 + 8];
1772
e59724c7 1773 if (cd->cd_flags & IDE_CD_FLAG_LE_SPEED_FIELDS) {
455d80a9
BZ
1774 curspeed = le16_to_cpu(curspeed);
1775 maxspeed = le16_to_cpu(maxspeed);
9235e68b 1776 } else {
455d80a9
BZ
1777 curspeed = be16_to_cpu(curspeed);
1778 maxspeed = be16_to_cpu(maxspeed);
9235e68b 1779 }
481c8c64 1780
2bc4cf2d
BZ
1781 cd->current_speed = (curspeed + (176/2)) / 176;
1782 cd->max_speed = (maxspeed + (176/2)) / 176;
9235e68b
EP
1783}
1784
1da177e4
LT
1785/*
1786 * add logic to try GET_EVENT command first to check for media and tray
1787 * status. this should be supported by newer cd-r/w and all DVD etc
1788 * drives
1789 */
1790static
1791int ide_cdrom_drive_status (struct cdrom_device_info *cdi, int slot_nr)
1792{
2a91f3e5 1793 ide_drive_t *drive = cdi->handle;
1da177e4
LT
1794 struct media_event_desc med;
1795 struct request_sense sense;
1796 int stat;
1797
1798 if (slot_nr != CDSL_CURRENT)
1799 return -EINVAL;
1800
1801 stat = cdrom_check_status(drive, &sense);
1802 if (!stat || sense.sense_key == UNIT_ATTENTION)
1803 return CDS_DISC_OK;
1804
1805 if (!cdrom_get_media_event(cdi, &med)) {
1806 if (med.media_present)
1807 return CDS_DISC_OK;
1808 else if (med.door_open)
1809 return CDS_TRAY_OPEN;
1810 else
1811 return CDS_NO_DISC;
1812 }
1813
1814 if (sense.sense_key == NOT_READY && sense.asc == 0x04 && sense.ascq == 0x04)
1815 return CDS_DISC_OK;
1816
1817 /*
1818 * If not using Mt Fuji extended media tray reports,
1819 * just return TRAY_OPEN since ATAPI doesn't provide
1820 * any other way to detect this...
1821 */
1822 if (sense.sense_key == NOT_READY) {
dbe217af
AC
1823 if (sense.asc == 0x3a && sense.ascq == 1)
1824 return CDS_NO_DISC;
1825 else
1826 return CDS_TRAY_OPEN;
1da177e4 1827 }
1da177e4
LT
1828 return CDS_DRIVE_NOT_READY;
1829}
1830
1da177e4
LT
1831/****************************************************************************
1832 * Other driver requests (open, close, check media change).
1833 */
1834
1835static
1836int ide_cdrom_check_media_change_real (struct cdrom_device_info *cdi,
1837 int slot_nr)
1838{
2a91f3e5 1839 ide_drive_t *drive = cdi->handle;
0ba11211 1840 struct cdrom_info *cd = drive->driver_data;
1da177e4 1841 int retval;
0ba11211 1842
1da177e4
LT
1843 if (slot_nr == CDSL_CURRENT) {
1844 (void) cdrom_check_status(drive, NULL);
2bc4cf2d
BZ
1845 retval = (cd->cd_flags & IDE_CD_FLAG_MEDIA_CHANGED) ? 1 : 0;
1846 cd->cd_flags &= ~IDE_CD_FLAG_MEDIA_CHANGED;
1da177e4
LT
1847 return retval;
1848 } else {
1849 return -EINVAL;
1850 }
1851}
1852
1853
1854static
1855int ide_cdrom_open_real (struct cdrom_device_info *cdi, int purpose)
1856{
1857 return 0;
1858}
1859
1860/*
1861 * Close down the device. Invalidate all cached blocks.
1862 */
1863
1864static
1865void ide_cdrom_release_real (struct cdrom_device_info *cdi)
1866{
1867 ide_drive_t *drive = cdi->handle;
0ba11211 1868 struct cdrom_info *cd = drive->driver_data;
1da177e4
LT
1869
1870 if (!cdi->use_count)
2bc4cf2d 1871 cd->cd_flags &= ~IDE_CD_FLAG_TOC_VALID;
1da177e4
LT
1872}
1873
20e7f7ef
BZ
1874#define IDE_CD_CAPABILITIES \
1875 (CDC_CLOSE_TRAY | CDC_OPEN_TRAY | CDC_LOCK | CDC_SELECT_SPEED | \
1876 CDC_SELECT_DISC | CDC_MULTI_SESSION | CDC_MCN | CDC_MEDIA_CHANGED | \
1877 CDC_PLAY_AUDIO | CDC_RESET | CDC_DRIVE_STATUS | CDC_CD_R | \
1878 CDC_CD_RW | CDC_DVD | CDC_DVD_R | CDC_DVD_RAM | CDC_GENERIC_PACKET | \
1879 CDC_MO_DRIVE | CDC_MRW | CDC_MRW_W | CDC_RAM)
1da177e4 1880
1da177e4
LT
1881static struct cdrom_device_ops ide_cdrom_dops = {
1882 .open = ide_cdrom_open_real,
1883 .release = ide_cdrom_release_real,
1884 .drive_status = ide_cdrom_drive_status,
1885 .media_changed = ide_cdrom_check_media_change_real,
1886 .tray_move = ide_cdrom_tray_move,
1887 .lock_door = ide_cdrom_lock_door,
1888 .select_speed = ide_cdrom_select_speed,
1889 .get_last_session = ide_cdrom_get_last_session,
1890 .get_mcn = ide_cdrom_get_mcn,
1891 .reset = ide_cdrom_reset,
1892 .audio_ioctl = ide_cdrom_audio_ioctl,
20e7f7ef 1893 .capability = IDE_CD_CAPABILITIES,
1da177e4
LT
1894 .generic_packet = ide_cdrom_packet,
1895};
1896
1897static int ide_cdrom_register (ide_drive_t *drive, int nslots)
1898{
1899 struct cdrom_info *info = drive->driver_data;
1900 struct cdrom_device_info *devinfo = &info->devinfo;
1901
1902 devinfo->ops = &ide_cdrom_dops;
2bc4cf2d 1903 devinfo->speed = info->current_speed;
1da177e4 1904 devinfo->capacity = nslots;
2a91f3e5 1905 devinfo->handle = drive;
1da177e4 1906 strcpy(devinfo->name, drive->name);
1da177e4 1907
2bc4cf2d 1908 if (info->cd_flags & IDE_CD_FLAG_NO_SPEED_SELECT)
3cbd814e
BZ
1909 devinfo->mask |= CDC_SELECT_SPEED;
1910
1da177e4
LT
1911 devinfo->disk = info->disk;
1912 return register_cdrom(devinfo);
1913}
1914
1da177e4
LT
1915static
1916int ide_cdrom_probe_capabilities (ide_drive_t *drive)
1917{
4fe67178
BZ
1918 struct cdrom_info *cd = drive->driver_data;
1919 struct cdrom_device_info *cdi = &cd->devinfo;
455d80a9
BZ
1920 u8 buf[ATAPI_CAPABILITIES_PAGE_SIZE];
1921 mechtype_t mechtype;
1da177e4
LT
1922 int nslots = 1;
1923
3f1b86d8
BZ
1924 cdi->mask = (CDC_CD_R | CDC_CD_RW | CDC_DVD | CDC_DVD_R |
1925 CDC_DVD_RAM | CDC_SELECT_DISC | CDC_PLAY_AUDIO |
1926 CDC_MO_DRIVE | CDC_RAM);
1927
1da177e4 1928 if (drive->media == ide_optical) {
3f1b86d8 1929 cdi->mask &= ~(CDC_MO_DRIVE | CDC_RAM);
1da177e4
LT
1930 printk(KERN_ERR "%s: ATAPI magneto-optical drive\n", drive->name);
1931 return nslots;
1932 }
1933
e59724c7 1934 if (cd->cd_flags & IDE_CD_FLAG_PRE_ATAPI12) {
2bc4cf2d 1935 cd->cd_flags &= ~IDE_CD_FLAG_NO_EJECT;
3f1b86d8 1936 cdi->mask &= ~CDC_PLAY_AUDIO;
1da177e4
LT
1937 return nslots;
1938 }
1939
1940 /*
1941 * we have to cheat a little here. the packet will eventually
1942 * be queued with ide_cdrom_packet(), which extracts the
1943 * drive from cdi->handle. Since this device hasn't been
1944 * registered with the Uniform layer yet, it can't do this.
1945 * Same goes for cdi->ops.
1946 */
2a91f3e5 1947 cdi->handle = drive;
1da177e4
LT
1948 cdi->ops = &ide_cdrom_dops;
1949
455d80a9 1950 if (ide_cdrom_get_capabilities(drive, buf))
1da177e4
LT
1951 return 0;
1952
455d80a9 1953 if ((buf[8 + 6] & 0x01) == 0)
2bc4cf2d 1954 cd->cd_flags |= IDE_CD_FLAG_NO_DOORLOCK;
455d80a9 1955 if (buf[8 + 6] & 0x08)
2bc4cf2d 1956 cd->cd_flags &= ~IDE_CD_FLAG_NO_EJECT;
455d80a9 1957 if (buf[8 + 3] & 0x01)
3f1b86d8 1958 cdi->mask &= ~CDC_CD_R;
455d80a9 1959 if (buf[8 + 3] & 0x02)
3f1b86d8 1960 cdi->mask &= ~(CDC_CD_RW | CDC_RAM);
455d80a9 1961 if (buf[8 + 2] & 0x38)
3f1b86d8 1962 cdi->mask &= ~CDC_DVD;
455d80a9 1963 if (buf[8 + 3] & 0x20)
3f1b86d8 1964 cdi->mask &= ~(CDC_DVD_RAM | CDC_RAM);
455d80a9 1965 if (buf[8 + 3] & 0x10)
3f1b86d8 1966 cdi->mask &= ~CDC_DVD_R;
e59724c7 1967 if ((buf[8 + 4] & 0x01) || (cd->cd_flags & IDE_CD_FLAG_PLAY_AUDIO_OK))
3f1b86d8 1968 cdi->mask &= ~CDC_PLAY_AUDIO;
455d80a9
BZ
1969
1970 mechtype = buf[8 + 6] >> 5;
1971 if (mechtype == mechtype_caddy || mechtype == mechtype_popup)
3f1b86d8 1972 cdi->mask |= CDC_CLOSE_TRAY;
1da177e4 1973
1da177e4 1974 if (cdi->sanyo_slot > 0) {
3f1b86d8 1975 cdi->mask &= ~CDC_SELECT_DISC;
1da177e4 1976 nslots = 3;
cdf6000d
BZ
1977 } else if (mechtype == mechtype_individual_changer ||
1978 mechtype == mechtype_cartridge_changer) {
2609d06d
BZ
1979 nslots = cdrom_number_of_slots(cdi);
1980 if (nslots > 1)
3f1b86d8 1981 cdi->mask &= ~CDC_SELECT_DISC;
1da177e4
LT
1982 }
1983
455d80a9 1984 ide_cdrom_update_speed(drive, buf);
4fe67178 1985
1da177e4 1986 printk(KERN_INFO "%s: ATAPI", drive->name);
4fe67178
BZ
1987
1988 /* don't print speed if the drive reported 0 */
2bc4cf2d
BZ
1989 if (cd->max_speed)
1990 printk(KERN_CONT " %dX", cd->max_speed);
4fe67178 1991
3f1b86d8 1992 printk(KERN_CONT " %s", (cdi->mask & CDC_DVD) ? "CD-ROM" : "DVD-ROM");
1da177e4 1993
3f1b86d8
BZ
1994 if ((cdi->mask & CDC_DVD_R) == 0 || (cdi->mask & CDC_DVD_RAM) == 0)
1995 printk(KERN_CONT " DVD%s%s",
1996 (cdi->mask & CDC_DVD_R) ? "" : "-R",
1997 (cdi->mask & CDC_DVD_RAM) ? "" : "-RAM");
1da177e4 1998
3f1b86d8
BZ
1999 if ((cdi->mask & CDC_CD_R) == 0 || (cdi->mask & CDC_CD_RW) == 0)
2000 printk(KERN_CONT " CD%s%s",
2001 (cdi->mask & CDC_CD_R) ? "" : "-R",
2002 (cdi->mask & CDC_CD_RW) ? "" : "/RW");
1da177e4 2003
3f1b86d8
BZ
2004 if ((cdi->mask & CDC_SELECT_DISC) == 0)
2005 printk(KERN_CONT " changer w/%d slots", nslots);
2006 else
2007 printk(KERN_CONT " drive");
1da177e4 2008
455d80a9 2009 printk(KERN_CONT ", %dkB Cache\n", be16_to_cpu(*(u16 *)&buf[8 + 12]));
1da177e4
LT
2010
2011 return nslots;
2012}
2013
7662d046 2014#ifdef CONFIG_IDE_PROC_FS
1da177e4
LT
2015static void ide_cdrom_add_settings(ide_drive_t *drive)
2016{
1497943e 2017 ide_add_setting(drive, "dsc_overlap", SETTING_RW, TYPE_BYTE, 0, 1, 1, 1, &drive->dsc_overlap, NULL);
1da177e4 2018}
7662d046
BZ
2019#else
2020static inline void ide_cdrom_add_settings(ide_drive_t *drive) { ; }
2021#endif
1da177e4
LT
2022
2023/*
2024 * standard prep_rq_fn that builds 10 byte cmds
2025 */
165125e1 2026static int ide_cdrom_prep_fs(struct request_queue *q, struct request *rq)
1da177e4
LT
2027{
2028 int hard_sect = queue_hardsect_size(q);
2029 long block = (long)rq->hard_sector / (hard_sect >> 9);
2030 unsigned long blocks = rq->hard_nr_sectors / (hard_sect >> 9);
2031
2032 memset(rq->cmd, 0, sizeof(rq->cmd));
2033
2034 if (rq_data_dir(rq) == READ)
2035 rq->cmd[0] = GPCMD_READ_10;
2036 else
2037 rq->cmd[0] = GPCMD_WRITE_10;
2038
2039 /*
2040 * fill in lba
2041 */
2042 rq->cmd[2] = (block >> 24) & 0xff;
2043 rq->cmd[3] = (block >> 16) & 0xff;
2044 rq->cmd[4] = (block >> 8) & 0xff;
2045 rq->cmd[5] = block & 0xff;
2046
2047 /*
2048 * and transfer length
2049 */
2050 rq->cmd[7] = (blocks >> 8) & 0xff;
2051 rq->cmd[8] = blocks & 0xff;
2052 rq->cmd_len = 10;
2053 return BLKPREP_OK;
2054}
2055
2056/*
2057 * Most of the SCSI commands are supported directly by ATAPI devices.
2058 * This transform handles the few exceptions.
2059 */
2060static int ide_cdrom_prep_pc(struct request *rq)
2061{
2062 u8 *c = rq->cmd;
2063
2064 /*
2065 * Transform 6-byte read/write commands to the 10-byte version
2066 */
2067 if (c[0] == READ_6 || c[0] == WRITE_6) {
2068 c[8] = c[4];
2069 c[5] = c[3];
2070 c[4] = c[2];
2071 c[3] = c[1] & 0x1f;
2072 c[2] = 0;
2073 c[1] &= 0xe0;
2074 c[0] += (READ_10 - READ_6);
2075 rq->cmd_len = 10;
2076 return BLKPREP_OK;
2077 }
2078
2079 /*
2080 * it's silly to pretend we understand 6-byte sense commands, just
2081 * reject with ILLEGAL_REQUEST and the caller should take the
2082 * appropriate action
2083 */
2084 if (c[0] == MODE_SENSE || c[0] == MODE_SELECT) {
2085 rq->errors = ILLEGAL_REQUEST;
2086 return BLKPREP_KILL;
2087 }
2088
2089 return BLKPREP_OK;
2090}
2091
165125e1 2092static int ide_cdrom_prep_fn(struct request_queue *q, struct request *rq)
1da177e4 2093{
4aff5e23 2094 if (blk_fs_request(rq))
1da177e4 2095 return ide_cdrom_prep_fs(q, rq);
4aff5e23 2096 else if (blk_pc_request(rq))
1da177e4
LT
2097 return ide_cdrom_prep_pc(rq);
2098
2099 return 0;
2100}
2101
e59724c7
BZ
2102struct cd_list_entry {
2103 const char *id_model;
2104 const char *id_firmware;
2105 unsigned int cd_flags;
2106};
2107
2108static const struct cd_list_entry ide_cd_quirks_list[] = {
2109 /* Limit transfer size per interrupt. */
2110 { "SAMSUNG CD-ROM SCR-2430", NULL, IDE_CD_FLAG_LIMIT_NFRAMES },
2111 { "SAMSUNG CD-ROM SCR-2432", NULL, IDE_CD_FLAG_LIMIT_NFRAMES },
2112 /* SCR-3231 doesn't support the SET_CD_SPEED command. */
2113 { "SAMSUNG CD-ROM SCR-3231", NULL, IDE_CD_FLAG_NO_SPEED_SELECT },
2114 /* Old NEC260 (not R) was released before ATAPI 1.2 spec. */
2115 { "NEC CD-ROM DRIVE:260", "1.01", IDE_CD_FLAG_TOCADDR_AS_BCD |
2116 IDE_CD_FLAG_PRE_ATAPI12, },
2117 /* Vertos 300, some versions of this drive like to talk BCD. */
2118 { "V003S0DS", NULL, IDE_CD_FLAG_VERTOS_300_SSD, },
2119 /* Vertos 600 ESD. */
2120 { "V006E0DS", NULL, IDE_CD_FLAG_VERTOS_600_ESD, },
2121 /*
2122 * Sanyo 3 CD changer uses a non-standard command for CD changing
2123 * (by default standard ATAPI support for CD changers is used).
2124 */
2125 { "CD-ROM CDR-C3 G", NULL, IDE_CD_FLAG_SANYO_3CD },
2126 { "CD-ROM CDR-C3G", NULL, IDE_CD_FLAG_SANYO_3CD },
2127 { "CD-ROM CDR_C36", NULL, IDE_CD_FLAG_SANYO_3CD },
2128 /* Stingray 8X CD-ROM. */
2129 { "STINGRAY 8422 IDE 8X CD-ROM 7-27-95", NULL, IDE_CD_FLAG_PRE_ATAPI12},
2130 /*
2131 * ACER 50X CD-ROM and WPI 32X CD-ROM require the full spec length
2132 * mode sense page capabilities size, but older drives break.
2133 */
2134 { "ATAPI CD ROM DRIVE 50X MAX", NULL, IDE_CD_FLAG_FULL_CAPS_PAGE },
2135 { "WPI CDS-32X", NULL, IDE_CD_FLAG_FULL_CAPS_PAGE },
2136 /* ACER/AOpen 24X CD-ROM has the speed fields byte-swapped. */
2137 { "", "241N", IDE_CD_FLAG_LE_SPEED_FIELDS },
2138 /*
2139 * Some drives used by Apple don't advertise audio play
2140 * but they do support reading TOC & audio datas.
2141 */
2142 { "MATSHITADVD-ROM SR-8187", NULL, IDE_CD_FLAG_PLAY_AUDIO_OK },
2143 { "MATSHITADVD-ROM SR-8186", NULL, IDE_CD_FLAG_PLAY_AUDIO_OK },
2144 { "MATSHITADVD-ROM SR-8176", NULL, IDE_CD_FLAG_PLAY_AUDIO_OK },
2145 { "MATSHITADVD-ROM SR-8174", NULL, IDE_CD_FLAG_PLAY_AUDIO_OK },
2146 { NULL, NULL, 0 }
2147};
2148
2149static unsigned int ide_cd_flags(struct hd_driveid *id)
2150{
2151 const struct cd_list_entry *cle = ide_cd_quirks_list;
2152
2153 while (cle->id_model) {
2154 if (strcmp(cle->id_model, id->model) == 0 &&
2155 (cle->id_firmware == NULL ||
2156 strstr(id->fw_rev, cle->id_firmware)))
2157 return cle->cd_flags;
2158 cle++;
2159 }
2160
2161 return 0;
2162}
2163
1da177e4
LT
2164static
2165int ide_cdrom_setup (ide_drive_t *drive)
2166{
4fe67178
BZ
2167 struct cdrom_info *cd = drive->driver_data;
2168 struct cdrom_device_info *cdi = &cd->devinfo;
e59724c7 2169 struct hd_driveid *id = drive->id;
1da177e4
LT
2170 int nslots;
2171
2172 blk_queue_prep_rq(drive->queue, ide_cdrom_prep_fn);
2173 blk_queue_dma_alignment(drive->queue, 31);
2174 drive->queue->unplug_delay = (1 * HZ) / 1000;
2175 if (!drive->queue->unplug_delay)
2176 drive->queue->unplug_delay = 1;
2177
2178 drive->special.all = 0;
2179
e59724c7
BZ
2180 cd->cd_flags = IDE_CD_FLAG_MEDIA_CHANGED | IDE_CD_FLAG_NO_EJECT |
2181 ide_cd_flags(id);
1da177e4 2182
e59724c7 2183 if ((id->config & 0x0060) == 0x20)
2bc4cf2d 2184 cd->cd_flags |= IDE_CD_FLAG_DRQ_INTERRUPT;
e59724c7
BZ
2185
2186 if ((cd->cd_flags & IDE_CD_FLAG_VERTOS_300_SSD) &&
2187 id->fw_rev[4] == '1' && id->fw_rev[6] <= '2')
2bc4cf2d
BZ
2188 cd->cd_flags |= (IDE_CD_FLAG_TOCTRACKS_AS_BCD |
2189 IDE_CD_FLAG_TOCADDR_AS_BCD);
e59724c7
BZ
2190 else if ((cd->cd_flags & IDE_CD_FLAG_VERTOS_600_ESD) &&
2191 id->fw_rev[4] == '1' && id->fw_rev[6] <= '2')
2bc4cf2d 2192 cd->cd_flags |= IDE_CD_FLAG_TOCTRACKS_AS_BCD;
e59724c7
BZ
2193 else if (cd->cd_flags & IDE_CD_FLAG_SANYO_3CD)
2194 cdi->sanyo_slot = 3; /* 3 => use CD in slot 0 */
1da177e4 2195
1da177e4
LT
2196 nslots = ide_cdrom_probe_capabilities (drive);
2197
2198 /*
2199 * set correct block size
2200 */
2201 blk_queue_hardsect_size(drive->queue, CD_FRAMESIZE);
2202
2203 if (drive->autotune == IDE_TUNE_DEFAULT ||
2204 drive->autotune == IDE_TUNE_AUTO)
2205 drive->dsc_overlap = (drive->next != drive);
1da177e4
LT
2206
2207 if (ide_cdrom_register(drive, nslots)) {
2208 printk (KERN_ERR "%s: ide_cdrom_setup failed to register device with the cdrom driver.\n", drive->name);
4fe67178 2209 cd->devinfo.handle = NULL;
1da177e4
LT
2210 return 1;
2211 }
2212 ide_cdrom_add_settings(drive);
2213 return 0;
2214}
2215
ecfd80e4 2216#ifdef CONFIG_IDE_PROC_FS
1da177e4
LT
2217static
2218sector_t ide_cdrom_capacity (ide_drive_t *drive)
2219{
2220 unsigned long capacity, sectors_per_frame;
2221
2222 if (cdrom_read_capacity(drive, &capacity, &sectors_per_frame, NULL))
2223 return 0;
2224
2225 return capacity * sectors_per_frame;
2226}
d97b3214 2227#endif
1da177e4 2228
4031bbe4 2229static void ide_cd_remove(ide_drive_t *drive)
1da177e4
LT
2230{
2231 struct cdrom_info *info = drive->driver_data;
2232
7662d046 2233 ide_proc_unregister_driver(drive, info->driver);
1da177e4
LT
2234
2235 del_gendisk(info->disk);
2236
2237 ide_cd_put(info);
1da177e4
LT
2238}
2239
2240static void ide_cd_release(struct kref *kref)
2241{
2242 struct cdrom_info *info = to_ide_cd(kref);
2243 struct cdrom_device_info *devinfo = &info->devinfo;
2244 ide_drive_t *drive = info->drive;
2245 struct gendisk *g = info->disk;
2246
6044ec88
JJ
2247 kfree(info->buffer);
2248 kfree(info->toc);
1da177e4
LT
2249 if (devinfo->handle == drive && unregister_cdrom(devinfo))
2250 printk(KERN_ERR "%s: %s failed to unregister device from the cdrom "
2251 "driver.\n", __FUNCTION__, drive->name);
2252 drive->dsc_overlap = 0;
2253 drive->driver_data = NULL;
2254 blk_queue_prep_rq(drive->queue, NULL);
2255 g->private_data = NULL;
2256 put_disk(g);
2257 kfree(info);
2258}
2259
4031bbe4 2260static int ide_cd_probe(ide_drive_t *);
1da177e4 2261
ecfd80e4 2262#ifdef CONFIG_IDE_PROC_FS
1da177e4
LT
2263static int proc_idecd_read_capacity
2264 (char *page, char **start, off_t off, int count, int *eof, void *data)
2265{
2a91f3e5 2266 ide_drive_t *drive = data;
1da177e4
LT
2267 int len;
2268
2269 len = sprintf(page,"%llu\n", (long long)ide_cdrom_capacity(drive));
2270 PROC_IDE_READ_RETURN(page,start,off,count,eof,len);
2271}
2272
2273static ide_proc_entry_t idecd_proc[] = {
2274 { "capacity", S_IFREG|S_IRUGO, proc_idecd_read_capacity, NULL },
2275 { NULL, 0, NULL, NULL }
2276};
1da177e4
LT
2277#endif
2278
2279static ide_driver_t ide_cdrom_driver = {
8604affd 2280 .gen_driver = {
4ef3b8f4 2281 .owner = THIS_MODULE,
8604affd
BZ
2282 .name = "ide-cdrom",
2283 .bus = &ide_bus_type,
8604affd 2284 },
4031bbe4
RK
2285 .probe = ide_cd_probe,
2286 .remove = ide_cd_remove,
1da177e4
LT
2287 .version = IDECD_VERSION,
2288 .media = ide_cdrom,
1da177e4 2289 .supports_dsc_overlap = 1,
1da177e4
LT
2290 .do_request = ide_do_rw_cdrom,
2291 .end_request = ide_end_request,
2292 .error = __ide_error,
2293 .abort = __ide_abort,
7662d046 2294#ifdef CONFIG_IDE_PROC_FS
1da177e4 2295 .proc = idecd_proc,
7662d046 2296#endif
1da177e4
LT
2297};
2298
2299static int idecd_open(struct inode * inode, struct file * file)
2300{
2301 struct gendisk *disk = inode->i_bdev->bd_disk;
2302 struct cdrom_info *info;
1da177e4
LT
2303 int rc = -ENOMEM;
2304
2305 if (!(info = ide_cd_get(disk)))
2306 return -ENXIO;
2307
1da177e4 2308 if (!info->buffer)
c94964a4
BZ
2309 info->buffer = kmalloc(SECTOR_BUFFER_SIZE, GFP_KERNEL|__GFP_REPEAT);
2310
2311 if (info->buffer)
2312 rc = cdrom_open(&info->devinfo, inode, file);
1da177e4
LT
2313
2314 if (rc < 0)
2315 ide_cd_put(info);
2316
2317 return rc;
2318}
2319
2320static int idecd_release(struct inode * inode, struct file * file)
2321{
2322 struct gendisk *disk = inode->i_bdev->bd_disk;
2323 struct cdrom_info *info = ide_cd_g(disk);
1da177e4
LT
2324
2325 cdrom_release (&info->devinfo, file);
1da177e4
LT
2326
2327 ide_cd_put(info);
2328
2329 return 0;
2330}
2331
6a2900b6
CH
2332static int idecd_set_spindown(struct cdrom_device_info *cdi, unsigned long arg)
2333{
2334 struct packet_command cgc;
2335 char buffer[16];
2336 int stat;
2337 char spindown;
2338
2339 if (copy_from_user(&spindown, (void __user *)arg, sizeof(char)))
2340 return -EFAULT;
2341
2342 init_cdrom_command(&cgc, buffer, sizeof(buffer), CGC_DATA_UNKNOWN);
2343
2344 stat = cdrom_mode_sense(cdi, &cgc, GPMODE_CDROM_PAGE, 0);
2345 if (stat)
2346 return stat;
2347
2348 buffer[11] = (buffer[11] & 0xf0) | (spindown & 0x0f);
2349 return cdrom_mode_select(cdi, &cgc);
2350}
2351
2352static int idecd_get_spindown(struct cdrom_device_info *cdi, unsigned long arg)
2353{
2354 struct packet_command cgc;
2355 char buffer[16];
2356 int stat;
2357 char spindown;
2358
2359 init_cdrom_command(&cgc, buffer, sizeof(buffer), CGC_DATA_UNKNOWN);
2360
2361 stat = cdrom_mode_sense(cdi, &cgc, GPMODE_CDROM_PAGE, 0);
2362 if (stat)
2363 return stat;
2364
2365 spindown = buffer[11] & 0x0f;
2366 if (copy_to_user((void __user *)arg, &spindown, sizeof (char)))
2367 return -EFAULT;
2368 return 0;
2369}
2370
1da177e4
LT
2371static int idecd_ioctl (struct inode *inode, struct file *file,
2372 unsigned int cmd, unsigned long arg)
2373{
2374 struct block_device *bdev = inode->i_bdev;
2375 struct cdrom_info *info = ide_cd_g(bdev->bd_disk);
2376 int err;
2377
6a2900b6
CH
2378 switch (cmd) {
2379 case CDROMSETSPINDOWN:
2380 return idecd_set_spindown(&info->devinfo, arg);
2381 case CDROMGETSPINDOWN:
2382 return idecd_get_spindown(&info->devinfo, arg);
2383 default:
2384 break;
2385 }
2386
2387 err = generic_ide_ioctl(info->drive, file, bdev, cmd, arg);
1da177e4
LT
2388 if (err == -EINVAL)
2389 err = cdrom_ioctl(file, &info->devinfo, inode, cmd, arg);
2390
2391 return err;
2392}
2393
2394static int idecd_media_changed(struct gendisk *disk)
2395{
2396 struct cdrom_info *info = ide_cd_g(disk);
2397 return cdrom_media_changed(&info->devinfo);
2398}
2399
2400static int idecd_revalidate_disk(struct gendisk *disk)
2401{
2402 struct cdrom_info *info = ide_cd_g(disk);
2403 struct request_sense sense;
139c829d
BZ
2404
2405 ide_cd_read_toc(info->drive, &sense);
2406
1da177e4
LT
2407 return 0;
2408}
2409
2410static struct block_device_operations idecd_ops = {
2411 .owner = THIS_MODULE,
2412 .open = idecd_open,
2413 .release = idecd_release,
2414 .ioctl = idecd_ioctl,
2415 .media_changed = idecd_media_changed,
2416 .revalidate_disk= idecd_revalidate_disk
2417};
2418
2419/* options */
2420static char *ignore = NULL;
2421
2422module_param(ignore, charp, 0400);
2423MODULE_DESCRIPTION("ATAPI CD-ROM Driver");
2424
4031bbe4 2425static int ide_cd_probe(ide_drive_t *drive)
1da177e4
LT
2426{
2427 struct cdrom_info *info;
2428 struct gendisk *g;
2429 struct request_sense sense;
2430
2431 if (!strstr("ide-cdrom", drive->driver_req))
2432 goto failed;
2433 if (!drive->present)
2434 goto failed;
2435 if (drive->media != ide_cdrom && drive->media != ide_optical)
2436 goto failed;
2437 /* skip drives that we were told to ignore */
2438 if (ignore != NULL) {
2439 if (strstr(ignore, drive->name)) {
2440 printk(KERN_INFO "ide-cd: ignoring drive %s\n", drive->name);
2441 goto failed;
2442 }
2443 }
2444 if (drive->scsi) {
2445 printk(KERN_INFO "ide-cd: passing drive %s to ide-scsi emulation.\n", drive->name);
2446 goto failed;
2447 }
f5e3c2fa 2448 info = kzalloc(sizeof(struct cdrom_info), GFP_KERNEL);
1da177e4
LT
2449 if (info == NULL) {
2450 printk(KERN_ERR "%s: Can't allocate a cdrom structure\n", drive->name);
2451 goto failed;
2452 }
2453
2454 g = alloc_disk(1 << PARTN_BITS);
2455 if (!g)
2456 goto out_free_cd;
2457
2458 ide_init_disk(g, drive);
2459
7662d046 2460 ide_proc_register_driver(drive, &ide_cdrom_driver);
8604affd 2461
1da177e4
LT
2462 kref_init(&info->kref);
2463
2464 info->drive = drive;
2465 info->driver = &ide_cdrom_driver;
2466 info->disk = g;
2467
2468 g->private_data = &info->driver;
2469
2470 drive->driver_data = info;
2471
1da177e4 2472 g->minors = 1;
1da177e4
LT
2473 g->driverfs_dev = &drive->gendev;
2474 g->flags = GENHD_FL_CD | GENHD_FL_REMOVABLE;
2475 if (ide_cdrom_setup(drive)) {
7662d046 2476 ide_proc_unregister_driver(drive, &ide_cdrom_driver);
05017db3 2477 ide_cd_release(&info->kref);
1da177e4
LT
2478 goto failed;
2479 }
1da177e4 2480
139c829d 2481 ide_cd_read_toc(drive, &sense);
1da177e4
LT
2482 g->fops = &idecd_ops;
2483 g->flags |= GENHD_FL_REMOVABLE;
2484 add_disk(g);
2485 return 0;
2486
1da177e4
LT
2487out_free_cd:
2488 kfree(info);
2489failed:
8604affd 2490 return -ENODEV;
1da177e4
LT
2491}
2492
2493static void __exit ide_cdrom_exit(void)
2494{
8604affd 2495 driver_unregister(&ide_cdrom_driver.gen_driver);
1da177e4 2496}
17514e8a
BZ
2497
2498static int __init ide_cdrom_init(void)
1da177e4 2499{
8604affd 2500 return driver_register(&ide_cdrom_driver.gen_driver);
1da177e4
LT
2501}
2502
263756ec 2503MODULE_ALIAS("ide:*m-cdrom*");
972560fb 2504MODULE_ALIAS("ide-cd");
1da177e4
LT
2505module_init(ide_cdrom_init);
2506module_exit(ide_cdrom_exit);
2507MODULE_LICENSE("GPL");