4 * Copyright (C) 1994-1996 Scott Snyder <snyder@fnald0.fnal.gov>
5 * Copyright (C) 1996-1998 Erik Andersen <andersee@debian.org>
6 * Copyright (C) 1998-2000 Jens Axboe <axboe@suse.de>
7 * Copyright (C) 2005, 2007 Bartlomiej Zolnierkiewicz
9 * May be copied or modified under the terms of the GNU General Public
10 * License. See linux/COPYING for more information.
12 * See Documentation/cdrom/ide-cd for usage information.
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
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
22 * For historical changelog please see:
23 * Documentation/ide/ChangeLog.ide-cd.1994-2004
26 #define IDECD_VERSION "5.00"
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>
39 #include <linux/mutex.h>
40 #include <linux/bcd.h>
42 /* For SCSI -> ATAPI command conversion */
43 #include <scsi/scsi.h>
45 #include <linux/irq.h>
47 #include <asm/byteorder.h>
48 #include <linux/uaccess.h>
49 #include <asm/unaligned.h>
53 static DEFINE_MUTEX(idecd_ref_mutex);
55 #define to_ide_cd(obj) container_of(obj, struct cdrom_info, kref)
57 #define ide_cd_g(disk) \
58 container_of((disk)->private_data, struct cdrom_info, driver)
60 static struct cdrom_info *ide_cd_get(struct gendisk *disk)
62 struct cdrom_info *cd = NULL;
64 mutex_lock(&idecd_ref_mutex);
68 mutex_unlock(&idecd_ref_mutex);
72 static void ide_cd_release(struct kref *);
74 static void ide_cd_put(struct cdrom_info *cd)
76 mutex_lock(&idecd_ref_mutex);
77 kref_put(&cd->kref, ide_cd_release);
78 mutex_unlock(&idecd_ref_mutex);
82 * Generic packet command support and error handling routines.
85 /* Mark that we've seen a media change and invalidate our internal buffers. */
86 static void cdrom_saw_media_change(ide_drive_t *drive)
88 drive->atapi_flags |= IDE_AFLAG_MEDIA_CHANGED;
89 drive->atapi_flags &= ~IDE_AFLAG_TOC_VALID;
92 static int cdrom_log_sense(ide_drive_t *drive, struct request *rq,
93 struct request_sense *sense)
97 if (!sense || !rq || (rq->cmd_flags & REQ_QUIET))
100 switch (sense->sense_key) {
102 case RECOVERED_ERROR:
106 * don't care about tray state messages for e.g. capacity
107 * commands or in-progress or becoming ready
109 if (sense->asc == 0x3a || sense->asc == 0x04)
113 case ILLEGAL_REQUEST:
115 * don't log START_STOP unit with LoEj set, since we cannot
116 * reliably check if drive can auto-close
118 if (rq->cmd[0] == GPCMD_START_STOP_UNIT && sense->asc == 0x24)
124 * Make good and sure we've seen this potential media change.
125 * Some drives (i.e. Creative) fail to present the correct sense
126 * key in the error register.
128 cdrom_saw_media_change(drive);
137 static void cdrom_analyze_sense_data(ide_drive_t *drive,
138 struct request *failed_command,
139 struct request_sense *sense)
141 unsigned long sector;
142 unsigned long bio_sectors;
143 struct cdrom_info *info = drive->driver_data;
145 if (!cdrom_log_sense(drive, failed_command, sense))
149 * If a read toc is executed for a CD-R or CD-RW medium where the first
150 * toc has not been recorded yet, it will fail with 05/24/00 (which is a
153 if (failed_command && failed_command->cmd[0] == GPCMD_READ_TOC_PMA_ATIP)
154 if (sense->sense_key == 0x05 && sense->asc == 0x24)
158 if (sense->error_code == 0x70) {
159 switch (sense->sense_key) {
161 case VOLUME_OVERFLOW:
162 case ILLEGAL_REQUEST:
165 if (failed_command == NULL ||
166 !blk_fs_request(failed_command))
168 sector = (sense->information[0] << 24) |
169 (sense->information[1] << 16) |
170 (sense->information[2] << 8) |
171 (sense->information[3]);
173 if (drive->queue->hardsect_size == 2048)
174 /* device sector size is 2K */
177 bio_sectors = max(bio_sectors(failed_command->bio), 4U);
178 sector &= ~(bio_sectors - 1);
180 if (sector < get_capacity(info->disk) &&
181 drive->probed_capacity - sector < 4 * 75)
182 set_capacity(info->disk, sector);
186 ide_cd_log_error(drive->name, failed_command, sense);
189 static void cdrom_queue_request_sense(ide_drive_t *drive, void *sense,
190 struct request *failed_command)
192 struct cdrom_info *info = drive->driver_data;
193 struct request *rq = &info->request_sense_request;
196 sense = &info->sense_data;
198 /* stuff the sense request in front of our current request */
199 blk_rq_init(NULL, rq);
200 rq->cmd_type = REQ_TYPE_ATA_PC;
201 rq->rq_disk = info->disk;
204 rq->cmd[0] = GPCMD_REQUEST_SENSE;
208 rq->cmd_type = REQ_TYPE_SENSE;
209 rq->cmd_flags |= REQ_PREEMPT;
211 /* NOTE! Save the failed command in "rq->buffer" */
212 rq->buffer = (void *) failed_command;
214 ide_do_drive_cmd(drive, rq);
217 static void cdrom_end_request(ide_drive_t *drive, int uptodate)
219 struct request *rq = HWGROUP(drive)->rq;
220 int nsectors = rq->hard_cur_sectors;
222 if (blk_sense_request(rq) && uptodate) {
224 * For REQ_TYPE_SENSE, "rq->buffer" points to the original
227 struct request *failed = (struct request *) rq->buffer;
228 struct cdrom_info *info = drive->driver_data;
229 void *sense = &info->sense_data;
234 sense = failed->sense;
235 failed->sense_len = rq->sense_len;
237 cdrom_analyze_sense_data(drive, failed, sense);
239 * now end the failed request
241 if (blk_fs_request(failed)) {
242 if (ide_end_dequeued_request(drive, failed, 0,
243 failed->hard_nr_sectors))
246 spin_lock_irqsave(&ide_lock, flags);
247 if (__blk_end_request(failed, -EIO,
250 spin_unlock_irqrestore(&ide_lock, flags);
253 cdrom_analyze_sense_data(drive, NULL, sense);
256 if (!rq->current_nr_sectors && blk_fs_request(rq))
258 /* make sure it's fully ended */
259 if (blk_pc_request(rq))
260 nsectors = (rq->data_len + 511) >> 9;
264 ide_end_request(drive, uptodate, nsectors);
267 static void ide_dump_status_no_sense(ide_drive_t *drive, const char *msg, u8 st)
271 ide_dump_status(drive, msg, st);
276 * 0: if the request should be continued.
277 * 1: if the request was ended.
279 static int cdrom_decode_status(ide_drive_t *drive, int good_stat, int *stat_ret)
281 ide_hwif_t *hwif = drive->hwif;
282 struct request *rq = hwif->hwgroup->rq;
283 int stat, err, sense_key;
285 /* check for errors */
286 stat = hwif->tp_ops->read_status(hwif);
291 if (OK_STAT(stat, good_stat, BAD_R_STAT))
294 /* get the IDE error register */
295 err = ide_read_error(drive);
296 sense_key = err >> 4;
299 printk(KERN_ERR "%s: missing rq in %s\n",
300 drive->name, __func__);
304 if (blk_sense_request(rq)) {
306 * We got an error trying to get sense info from the drive
307 * (probably while trying to recover from a former error).
310 rq->cmd_flags |= REQ_FAILED;
311 cdrom_end_request(drive, 0);
312 ide_error(drive, "request sense failure", stat);
315 } else if (blk_pc_request(rq) || rq->cmd_type == REQ_TYPE_ATA_PC) {
316 /* All other functions, except for READ. */
319 * if we have an error, pass back CHECK_CONDITION as the
322 if (blk_pc_request(rq) && !rq->errors)
323 rq->errors = SAM_STAT_CHECK_CONDITION;
325 /* check for tray open */
326 if (sense_key == NOT_READY) {
327 cdrom_saw_media_change(drive);
328 } else if (sense_key == UNIT_ATTENTION) {
329 /* check for media change */
330 cdrom_saw_media_change(drive);
332 } else if (sense_key == ILLEGAL_REQUEST &&
333 rq->cmd[0] == GPCMD_START_STOP_UNIT) {
335 * Don't print error message for this condition--
336 * SFF8090i indicates that 5/24/00 is the correct
337 * response to a request to close the tray if the
338 * drive doesn't have that capability.
339 * cdrom_log_sense() knows this!
341 } else if (!(rq->cmd_flags & REQ_QUIET)) {
342 /* otherwise, print an error */
343 ide_dump_status(drive, "packet command error", stat);
346 rq->cmd_flags |= REQ_FAILED;
349 * instead of playing games with moving completions around,
350 * remove failed request completely and end it when the
351 * request sense has completed
355 } else if (blk_fs_request(rq)) {
356 int do_end_request = 0;
358 /* handle errors from READ and WRITE requests */
360 if (blk_noretry_request(rq))
363 if (sense_key == NOT_READY) {
365 if (rq_data_dir(rq) == READ) {
366 cdrom_saw_media_change(drive);
368 /* fail the request */
369 printk(KERN_ERR "%s: tray open\n", drive->name);
372 struct cdrom_info *info = drive->driver_data;
375 * Allow the drive 5 seconds to recover, some
376 * devices will return this error while flushing
380 info->write_timeout = jiffies +
381 ATAPI_WAIT_WRITE_BUSY;
383 if (time_after(jiffies, info->write_timeout))
389 * take a breather relying on the unplug
390 * timer to kick us again
392 spin_lock_irqsave(&ide_lock, flags);
393 blk_plug_device(drive->queue);
394 spin_unlock_irqrestore(&ide_lock,
399 } else if (sense_key == UNIT_ATTENTION) {
401 cdrom_saw_media_change(drive);
404 * Arrange to retry the request but be sure to give up
405 * if we've retried too many times.
407 if (++rq->errors > ERROR_MAX)
409 } else if (sense_key == ILLEGAL_REQUEST ||
410 sense_key == DATA_PROTECT) {
412 * No point in retrying after an illegal request or data
415 ide_dump_status_no_sense(drive, "command error", stat);
417 } else if (sense_key == MEDIUM_ERROR) {
419 * No point in re-trying a zillion times on a bad
420 * sector. If we got here the error is not correctable.
422 ide_dump_status_no_sense(drive,
423 "media error (bad sector)",
426 } else if (sense_key == BLANK_CHECK) {
427 /* disk appears blank ?? */
428 ide_dump_status_no_sense(drive, "media error (blank)",
431 } else if ((err & ~ABRT_ERR) != 0) {
432 /* go to the default handler for other errors */
433 ide_error(drive, "cdrom_decode_status", stat);
435 } else if ((++rq->errors > ERROR_MAX)) {
436 /* we've racked up too many retries, abort */
441 * End a request through request sense analysis when we have
442 * sense data. We need this in order to perform end of media
449 * If we got a CHECK_CONDITION status, queue
450 * a request sense command.
453 cdrom_queue_request_sense(drive, NULL, NULL);
455 blk_dump_rq_flags(rq, "ide-cd: bad rq");
456 cdrom_end_request(drive, 0);
459 /* retry, or handle the next request */
463 if (stat & ERR_STAT) {
466 spin_lock_irqsave(&ide_lock, flags);
467 blkdev_dequeue_request(rq);
468 HWGROUP(drive)->rq = NULL;
469 spin_unlock_irqrestore(&ide_lock, flags);
471 cdrom_queue_request_sense(drive, rq->sense, rq);
473 cdrom_end_request(drive, 0);
478 static int cdrom_timer_expiry(ide_drive_t *drive)
480 struct request *rq = HWGROUP(drive)->rq;
481 unsigned long wait = 0;
484 * Some commands are *slow* and normally take a long time to complete.
485 * Usually we can use the ATAPI "disconnect" to bypass this, but not all
486 * commands/drives support that. Let ide_timer_expiry keep polling us
489 switch (rq->cmd[0]) {
491 case GPCMD_FORMAT_UNIT:
492 case GPCMD_RESERVE_RZONE_TRACK:
493 case GPCMD_CLOSE_TRACK:
494 case GPCMD_FLUSH_CACHE:
495 wait = ATAPI_WAIT_PC;
498 if (!(rq->cmd_flags & REQ_QUIET))
499 printk(KERN_INFO "ide-cd: cmd 0x%x timed out\n",
508 * Set up the device registers for transferring a packet command on DEV,
509 * expecting to later transfer XFERLEN bytes. HANDLER is the routine
510 * which actually transfers the command to the drive. If this is a
511 * drq_interrupt device, this routine will arrange for HANDLER to be
512 * called when the interrupt from the drive arrives. Otherwise, HANDLER
513 * will be called immediately after the drive is prepared for the transfer.
515 static ide_startstop_t cdrom_start_packet_command(ide_drive_t *drive,
517 ide_handler_t *handler)
519 struct cdrom_info *info = drive->driver_data;
520 ide_hwif_t *hwif = drive->hwif;
522 /* FIXME: for Virtual DMA we must check harder */
524 info->dma = !hwif->dma_ops->dma_setup(drive);
526 /* set up the controller registers */
527 ide_pktcmd_tf_load(drive, IDE_TFLAG_OUT_NSECT | IDE_TFLAG_OUT_LBAL,
530 if (drive->atapi_flags & IDE_AFLAG_DRQ_INTERRUPT) {
531 /* waiting for CDB interrupt, not DMA yet. */
533 drive->waiting_for_dma = 0;
536 ide_execute_command(drive, WIN_PACKETCMD, handler,
537 ATAPI_WAIT_PC, cdrom_timer_expiry);
540 ide_execute_pkt_cmd(drive);
542 return (*handler) (drive);
547 * Send a packet command to DRIVE described by CMD_BUF and CMD_LEN. The device
548 * registers must have already been prepared by cdrom_start_packet_command.
549 * HANDLER is the interrupt handler to call when the command completes or
550 * there's data ready.
552 #define ATAPI_MIN_CDB_BYTES 12
553 static ide_startstop_t cdrom_transfer_packet_command(ide_drive_t *drive,
555 ide_handler_t *handler)
557 ide_hwif_t *hwif = drive->hwif;
559 struct cdrom_info *info = drive->driver_data;
560 ide_startstop_t startstop;
562 if (drive->atapi_flags & IDE_AFLAG_DRQ_INTERRUPT) {
564 * Here we should have been called after receiving an interrupt
565 * from the device. DRQ should how be set.
568 /* check for errors */
569 if (cdrom_decode_status(drive, DRQ_STAT, NULL))
572 /* ok, next interrupt will be DMA interrupt */
574 drive->waiting_for_dma = 1;
576 /* otherwise, we must wait for DRQ to get set */
577 if (ide_wait_stat(&startstop, drive, DRQ_STAT,
578 BUSY_STAT, WAIT_READY))
582 /* arm the interrupt handler */
583 ide_set_handler(drive, handler, rq->timeout, cdrom_timer_expiry);
585 /* ATAPI commands get padded out to 12 bytes minimum */
586 cmd_len = COMMAND_SIZE(rq->cmd[0]);
587 if (cmd_len < ATAPI_MIN_CDB_BYTES)
588 cmd_len = ATAPI_MIN_CDB_BYTES;
590 /* send the command to the device */
591 hwif->tp_ops->output_data(drive, NULL, rq->cmd, cmd_len);
593 /* start the DMA if need be */
595 hwif->dma_ops->dma_start(drive);
601 * Check the contents of the interrupt reason register from the cdrom
602 * and attempt to recover if there are problems. Returns 0 if everything's
603 * ok; nonzero if the request has been terminated.
605 static int ide_cd_check_ireason(ide_drive_t *drive, struct request *rq,
606 int len, int ireason, int rw)
608 ide_hwif_t *hwif = drive->hwif;
611 * ireason == 0: the drive wants to receive data from us
612 * ireason == 2: the drive is expecting to transfer data to us
614 if (ireason == (!rw << 1))
616 else if (ireason == (rw << 1)) {
619 printk(KERN_ERR "%s: %s: wrong transfer direction!\n",
620 drive->name, __func__);
622 ide_pad_transfer(drive, rw, len);
623 } else if (rw == 0 && ireason == 1) {
625 * Some drives (ASUS) seem to tell us that status info is
626 * available. Just get it and ignore.
628 (void)hwif->tp_ops->read_status(hwif);
631 /* drive wants a command packet, or invalid ireason... */
632 printk(KERN_ERR "%s: %s: bad interrupt reason 0x%02x\n",
633 drive->name, __func__, ireason);
636 if (rq->cmd_type == REQ_TYPE_ATA_PC)
637 rq->cmd_flags |= REQ_FAILED;
639 cdrom_end_request(drive, 0);
644 * Assume that the drive will always provide data in multiples of at least
645 * SECTOR_SIZE, as it gets hairy to keep track of the transfers otherwise.
647 static int ide_cd_check_transfer_size(ide_drive_t *drive, int len)
649 if ((len % SECTOR_SIZE) == 0)
652 printk(KERN_ERR "%s: %s: Bad transfer size %d\n",
653 drive->name, __func__, len);
655 if (drive->atapi_flags & IDE_AFLAG_LIMIT_NFRAMES)
656 printk(KERN_ERR " This drive is not supported by "
657 "this version of the driver\n");
659 printk(KERN_ERR " Trying to limit transfer sizes\n");
660 drive->atapi_flags |= IDE_AFLAG_LIMIT_NFRAMES;
666 static ide_startstop_t cdrom_newpc_intr(ide_drive_t *);
668 static ide_startstop_t ide_cd_prepare_rw_request(ide_drive_t *drive,
671 if (rq_data_dir(rq) == READ) {
672 unsigned short sectors_per_frame =
673 queue_hardsect_size(drive->queue) >> SECTOR_BITS;
674 int nskip = rq->sector & (sectors_per_frame - 1);
677 * If the requested sector doesn't start on a frame boundary,
678 * we must adjust the start of the transfer so that it does,
679 * and remember to skip the first few sectors.
681 * If the rq->current_nr_sectors field is larger than the size
682 * of the buffer, it will mean that we're to skip a number of
683 * sectors equal to the amount by which rq->current_nr_sectors
684 * is larger than the buffer size.
687 /* sanity check... */
688 if (rq->current_nr_sectors !=
689 bio_cur_sectors(rq->bio)) {
690 printk(KERN_ERR "%s: %s: buffer botch (%u)\n",
691 drive->name, __func__,
692 rq->current_nr_sectors);
693 cdrom_end_request(drive, 0);
696 rq->current_nr_sectors += nskip;
701 /* the immediate bit */
704 /* set up the command */
705 rq->timeout = ATAPI_WAIT_PC;
711 * Routine to send a read/write packet command to the drive. This is usually
712 * called directly from cdrom_start_{read,write}(). However, for drq_interrupt
713 * devices, it is called from an interrupt when the drive is ready to accept
716 static ide_startstop_t cdrom_start_rw_cont(ide_drive_t *drive)
718 struct request *rq = drive->hwif->hwgroup->rq;
720 /* send the command to the drive and return */
721 return cdrom_transfer_packet_command(drive, rq, cdrom_newpc_intr);
724 #define IDECD_SEEK_THRESHOLD (1000) /* 1000 blocks */
725 #define IDECD_SEEK_TIMER (5 * WAIT_MIN_SLEEP) /* 100 ms */
726 #define IDECD_SEEK_TIMEOUT (2 * WAIT_CMD) /* 20 sec */
728 static ide_startstop_t cdrom_seek_intr(ide_drive_t *drive)
730 struct cdrom_info *info = drive->driver_data;
732 static int retry = 10;
734 if (cdrom_decode_status(drive, 0, &stat))
737 drive->atapi_flags |= IDE_AFLAG_SEEKING;
739 if (retry && time_after(jiffies, info->start_seek + IDECD_SEEK_TIMER)) {
741 drive->dsc_overlap = 0;
746 static void ide_cd_prepare_seek_request(ide_drive_t *drive, struct request *rq)
748 sector_t frame = rq->sector;
750 sector_div(frame, queue_hardsect_size(drive->queue) >> SECTOR_BITS);
752 memset(rq->cmd, 0, BLK_MAX_CDB);
753 rq->cmd[0] = GPCMD_SEEK;
754 put_unaligned(cpu_to_be32(frame), (unsigned int *) &rq->cmd[2]);
756 rq->timeout = ATAPI_WAIT_PC;
759 static ide_startstop_t cdrom_start_seek_continuation(ide_drive_t *drive)
761 struct request *rq = drive->hwif->hwgroup->rq;
763 return cdrom_transfer_packet_command(drive, rq, &cdrom_seek_intr);
767 * Fix up a possibly partially-processed request so that we can start it over
768 * entirely, or even put it back on the request queue.
770 static void restore_request(struct request *rq)
772 if (rq->buffer != bio_data(rq->bio)) {
774 (rq->buffer - (char *)bio_data(rq->bio)) / SECTOR_SIZE;
776 rq->buffer = bio_data(rq->bio);
780 rq->current_nr_sectors = bio_cur_sectors(rq->bio);
781 rq->hard_cur_sectors = rq->current_nr_sectors;
782 rq->hard_nr_sectors = rq->nr_sectors;
783 rq->hard_sector = rq->sector;
784 rq->q->prep_rq_fn(rq->q, rq);
788 * All other packet commands.
790 static void ide_cd_request_sense_fixup(struct request *rq)
793 * Some of the trailing request sense fields are optional,
794 * and some drives don't send them. Sigh.
796 if (rq->cmd[0] == GPCMD_REQUEST_SENSE &&
797 rq->data_len > 0 && rq->data_len <= 5)
798 while (rq->data_len > 0) {
799 *(u8 *)rq->data++ = 0;
804 int ide_cd_queue_pc(ide_drive_t *drive, const unsigned char *cmd,
805 int write, void *buffer, unsigned *bufflen,
806 struct request_sense *sense, int timeout,
807 unsigned int cmd_flags)
809 struct cdrom_info *info = drive->driver_data;
810 struct request_sense local_sense;
812 unsigned int flags = 0;
815 sense = &local_sense;
817 /* start of retry loop */
822 rq = blk_get_request(drive->queue, write, __GFP_WAIT);
824 memcpy(rq->cmd, cmd, BLK_MAX_CDB);
825 rq->cmd_type = REQ_TYPE_ATA_PC;
827 rq->cmd_flags |= cmd_flags;
828 rq->timeout = timeout;
831 rq->data_len = *bufflen;
834 error = blk_execute_rq(drive->queue, info->disk, rq, 0);
837 *bufflen = rq->data_len;
839 flags = rq->cmd_flags;
843 * FIXME: we should probably abort/retry or something in case of
846 if (flags & REQ_FAILED) {
848 * The request failed. Retry if it was due to a unit
849 * attention status (usually means media was changed).
851 struct request_sense *reqbuf = sense;
853 if (reqbuf->sense_key == UNIT_ATTENTION)
854 cdrom_saw_media_change(drive);
855 else if (reqbuf->sense_key == NOT_READY &&
856 reqbuf->asc == 4 && reqbuf->ascq != 4) {
858 * The drive is in the process of loading
859 * a disk. Retry, but wait a little to give
860 * the drive time to complete the load.
864 /* otherwise, don't retry */
870 /* end of retry loop */
871 } while ((flags & REQ_FAILED) && retries >= 0);
873 /* return an error if the command failed */
874 return (flags & REQ_FAILED) ? -EIO : 0;
878 * Called from blk_end_request_callback() after the data of the request is
879 * completed and before the request itself is completed. By returning value '1',
880 * blk_end_request_callback() returns immediately without completing it.
882 static int cdrom_newpc_intr_dummy_cb(struct request *rq)
887 static ide_startstop_t cdrom_newpc_intr(ide_drive_t *drive)
889 ide_hwif_t *hwif = drive->hwif;
890 struct cdrom_info *info = drive->driver_data;
891 struct request *rq = HWGROUP(drive)->rq;
892 xfer_func_t *xferfunc;
893 ide_expiry_t *expiry = NULL;
894 int dma_error = 0, dma, stat, thislen, uptodate = 0;
895 int write = (rq_data_dir(rq) == WRITE) ? 1 : 0;
896 unsigned int timeout;
900 /* check for errors */
904 dma_error = hwif->dma_ops->dma_end(drive);
906 printk(KERN_ERR "%s: DMA %s error\n", drive->name,
907 write ? "write" : "read");
912 if (cdrom_decode_status(drive, 0, &stat))
915 /* using dma, transfer is complete now */
918 return ide_error(drive, "dma error", stat);
919 if (blk_fs_request(rq)) {
920 ide_end_request(drive, 1, rq->nr_sectors);
926 ide_read_bcount_and_ireason(drive, &len, &ireason);
928 thislen = blk_fs_request(rq) ? len : rq->data_len;
932 /* If DRQ is clear, the command has completed. */
933 if ((stat & DRQ_STAT) == 0) {
934 if (blk_fs_request(rq)) {
936 * If we're not done reading/writing, complain.
937 * Otherwise, complete the command normally.
940 if (rq->current_nr_sectors > 0) {
941 printk(KERN_ERR "%s: %s: data underrun "
943 drive->name, __func__,
944 rq->current_nr_sectors);
946 rq->cmd_flags |= REQ_FAILED;
949 cdrom_end_request(drive, uptodate);
951 } else if (!blk_pc_request(rq)) {
952 ide_cd_request_sense_fixup(rq);
953 /* complain if we still have data left to transfer */
954 uptodate = rq->data_len ? 0 : 1;
959 /* check which way to transfer data */
960 if (ide_cd_check_ireason(drive, rq, len, ireason, write))
963 if (blk_fs_request(rq)) {
967 if (ide_cd_check_transfer_size(drive, len)) {
968 cdrom_end_request(drive, 0);
973 * First, figure out if we need to bit-bucket
974 * any of the leading sectors.
976 nskip = min_t(int, rq->current_nr_sectors
977 - bio_cur_sectors(rq->bio),
980 ide_pad_transfer(drive, write, nskip << 9);
981 rq->current_nr_sectors -= nskip;
982 thislen -= (nskip << 9);
989 xferfunc = hwif->tp_ops->output_data;
992 xferfunc = hwif->tp_ops->input_data;
996 while (thislen > 0) {
997 u8 *ptr = blk_fs_request(rq) ? NULL : rq->data;
998 int blen = rq->data_len;
1002 if (blk_fs_request(rq)) {
1004 blen = rq->current_nr_sectors << 9;
1006 ptr = bio_data(rq->bio);
1007 blen = bio_iovec(rq->bio)->bv_len;
1012 if (blk_fs_request(rq) && !write)
1014 * If the buffers are full, pipe the rest into
1017 ide_pad_transfer(drive, 0, thislen);
1019 printk(KERN_ERR "%s: confused, missing data\n",
1021 blk_dump_rq_flags(rq, rq_data_dir(rq)
1022 ? "cdrom_newpc_intr, write"
1023 : "cdrom_newpc_intr, read");
1031 xferfunc(drive, NULL, ptr, blen);
1036 if (blk_fs_request(rq)) {
1038 rq->nr_sectors -= (blen >> 9);
1039 rq->current_nr_sectors -= (blen >> 9);
1040 rq->sector += (blen >> 9);
1042 if (rq->current_nr_sectors == 0 && rq->nr_sectors)
1043 cdrom_end_request(drive, 1);
1045 rq->data_len -= blen;
1048 * The request can't be completed until DRQ is cleared.
1049 * So complete the data, but don't complete the request
1050 * using the dummy function for the callback feature
1051 * of blk_end_request_callback().
1054 blk_end_request_callback(rq, 0, blen,
1055 cdrom_newpc_intr_dummy_cb);
1059 if (!write && blk_sense_request(rq))
1060 rq->sense_len += blen;
1063 /* pad, if necessary */
1064 if (!blk_fs_request(rq) && len > 0)
1065 ide_pad_transfer(drive, write, len);
1067 if (blk_pc_request(rq)) {
1068 timeout = rq->timeout;
1070 timeout = ATAPI_WAIT_PC;
1071 if (!blk_fs_request(rq))
1072 expiry = cdrom_timer_expiry;
1075 ide_set_handler(drive, cdrom_newpc_intr, timeout, expiry);
1079 if (blk_pc_request(rq)) {
1080 unsigned long flags;
1081 unsigned int dlen = rq->data_len;
1086 spin_lock_irqsave(&ide_lock, flags);
1087 if (__blk_end_request(rq, 0, dlen))
1089 HWGROUP(drive)->rq = NULL;
1090 spin_unlock_irqrestore(&ide_lock, flags);
1093 rq->cmd_flags |= REQ_FAILED;
1094 cdrom_end_request(drive, uptodate);
1099 static ide_startstop_t cdrom_start_rw(ide_drive_t *drive, struct request *rq)
1101 struct cdrom_info *cd = drive->driver_data;
1102 int write = rq_data_dir(rq) == WRITE;
1103 unsigned short sectors_per_frame =
1104 queue_hardsect_size(drive->queue) >> SECTOR_BITS;
1107 /* disk has become write protected */
1108 if (cd->disk->policy) {
1109 cdrom_end_request(drive, 0);
1114 * We may be retrying this request after an error. Fix up any
1115 * weirdness which might be present in the request packet.
1117 restore_request(rq);
1120 /* use DMA, if possible / writes *must* be hardware frame aligned */
1121 if ((rq->nr_sectors & (sectors_per_frame - 1)) ||
1122 (rq->sector & (sectors_per_frame - 1))) {
1124 cdrom_end_request(drive, 0);
1129 cd->dma = drive->using_dma;
1132 cd->devinfo.media_written = 1;
1137 static ide_startstop_t cdrom_do_newpc_cont(ide_drive_t *drive)
1139 struct request *rq = HWGROUP(drive)->rq;
1141 return cdrom_transfer_packet_command(drive, rq, cdrom_newpc_intr);
1144 static void cdrom_do_block_pc(ide_drive_t *drive, struct request *rq)
1146 struct cdrom_info *info = drive->driver_data;
1148 if (blk_pc_request(rq))
1149 rq->cmd_flags |= REQ_QUIET;
1151 rq->cmd_flags &= ~REQ_FAILED;
1156 if (rq->bio || ((rq->cmd_type == REQ_TYPE_ATA_PC) && rq->data_len)) {
1157 struct request_queue *q = drive->queue;
1158 unsigned int alignment;
1160 unsigned long stack_mask = ~(THREAD_SIZE - 1);
1163 addr = (unsigned long)bio_data(rq->bio);
1165 addr = (unsigned long)rq->data;
1167 info->dma = drive->using_dma;
1170 * check if dma is safe
1172 * NOTE! The "len" and "addr" checks should possibly have
1175 alignment = queue_dma_alignment(q) | q->dma_pad_mask;
1176 if (addr & alignment || rq->data_len & alignment)
1179 if (!((addr & stack_mask) ^
1180 ((unsigned long)current->stack & stack_mask)))
1186 * cdrom driver request routine.
1188 static ide_startstop_t ide_cd_do_request(ide_drive_t *drive, struct request *rq,
1191 struct cdrom_info *info = drive->driver_data;
1195 if (blk_fs_request(rq)) {
1196 if (drive->atapi_flags & IDE_AFLAG_SEEKING) {
1197 ide_hwif_t *hwif = drive->hwif;
1198 unsigned long elapsed = jiffies - info->start_seek;
1199 int stat = hwif->tp_ops->read_status(hwif);
1201 if ((stat & SEEK_STAT) != SEEK_STAT) {
1202 if (elapsed < IDECD_SEEK_TIMEOUT) {
1203 ide_stall_queue(drive,
1207 printk(KERN_ERR "%s: DSC timeout\n",
1210 drive->atapi_flags &= ~IDE_AFLAG_SEEKING;
1212 if (rq_data_dir(rq) == READ &&
1213 IDE_LARGE_SEEK(info->last_block, block,
1214 IDECD_SEEK_THRESHOLD) &&
1215 drive->dsc_overlap) {
1217 fn = cdrom_start_seek_continuation;
1220 info->start_seek = jiffies;
1222 ide_cd_prepare_seek_request(drive, rq);
1225 fn = cdrom_start_rw_cont;
1227 if (cdrom_start_rw(drive, rq) == ide_stopped)
1230 if (ide_cd_prepare_rw_request(drive, rq) == ide_stopped)
1233 info->last_block = block;
1234 } else if (blk_sense_request(rq) || blk_pc_request(rq) ||
1235 rq->cmd_type == REQ_TYPE_ATA_PC) {
1236 xferlen = rq->data_len;
1237 fn = cdrom_do_newpc_cont;
1240 rq->timeout = ATAPI_WAIT_PC;
1242 cdrom_do_block_pc(drive, rq);
1243 } else if (blk_special_request(rq)) {
1244 /* right now this can only be a reset... */
1245 cdrom_end_request(drive, 1);
1248 blk_dump_rq_flags(rq, "ide-cd bad flags");
1249 cdrom_end_request(drive, 0);
1253 return cdrom_start_packet_command(drive, xferlen, fn);
1259 * Routines which queue packet commands take as a final argument a pointer to a
1260 * request_sense struct. If execution of the command results in an error with a
1261 * CHECK CONDITION status, this structure will be filled with the results of the
1262 * subsequent request sense command. The pointer can also be NULL, in which case
1263 * no sense information is returned.
1265 static void msf_from_bcd(struct atapi_msf *msf)
1267 msf->minute = BCD2BIN(msf->minute);
1268 msf->second = BCD2BIN(msf->second);
1269 msf->frame = BCD2BIN(msf->frame);
1272 int cdrom_check_status(ide_drive_t *drive, struct request_sense *sense)
1274 struct cdrom_info *info = drive->driver_data;
1275 struct cdrom_device_info *cdi = &info->devinfo;
1276 unsigned char cmd[BLK_MAX_CDB];
1278 memset(cmd, 0, BLK_MAX_CDB);
1279 cmd[0] = GPCMD_TEST_UNIT_READY;
1282 * Sanyo 3 CD changer uses byte 7 of TEST_UNIT_READY to switch CDs
1283 * instead of supporting the LOAD_UNLOAD opcode.
1285 cmd[7] = cdi->sanyo_slot % 3;
1287 return ide_cd_queue_pc(drive, cmd, 0, NULL, NULL, sense, 0, REQ_QUIET);
1290 static int cdrom_read_capacity(ide_drive_t *drive, unsigned long *capacity,
1291 unsigned long *sectors_per_frame,
1292 struct request_sense *sense)
1300 unsigned char cmd[BLK_MAX_CDB];
1301 unsigned len = sizeof(capbuf);
1303 memset(cmd, 0, BLK_MAX_CDB);
1304 cmd[0] = GPCMD_READ_CDVD_CAPACITY;
1306 stat = ide_cd_queue_pc(drive, cmd, 0, &capbuf, &len, sense, 0,
1309 *capacity = 1 + be32_to_cpu(capbuf.lba);
1310 *sectors_per_frame =
1311 be32_to_cpu(capbuf.blocklen) >> SECTOR_BITS;
1317 static int cdrom_read_tocentry(ide_drive_t *drive, int trackno, int msf_flag,
1318 int format, char *buf, int buflen,
1319 struct request_sense *sense)
1321 unsigned char cmd[BLK_MAX_CDB];
1323 memset(cmd, 0, BLK_MAX_CDB);
1325 cmd[0] = GPCMD_READ_TOC_PMA_ATIP;
1327 cmd[7] = (buflen >> 8);
1328 cmd[8] = (buflen & 0xff);
1329 cmd[9] = (format << 6);
1334 return ide_cd_queue_pc(drive, cmd, 0, buf, &buflen, sense, 0, REQ_QUIET);
1337 /* Try to read the entire TOC for the disk into our internal buffer. */
1338 int ide_cd_read_toc(ide_drive_t *drive, struct request_sense *sense)
1340 int stat, ntracks, i;
1341 struct cdrom_info *info = drive->driver_data;
1342 struct cdrom_device_info *cdi = &info->devinfo;
1343 struct atapi_toc *toc = info->toc;
1345 struct atapi_toc_header hdr;
1346 struct atapi_toc_entry ent;
1349 unsigned long sectors_per_frame = SECTORS_PER_FRAME;
1352 /* try to allocate space */
1353 toc = kmalloc(sizeof(struct atapi_toc), GFP_KERNEL);
1355 printk(KERN_ERR "%s: No cdrom TOC buffer!\n",
1363 * Check to see if the existing data is still valid. If it is,
1366 (void) cdrom_check_status(drive, sense);
1368 if (drive->atapi_flags & IDE_AFLAG_TOC_VALID)
1371 /* try to get the total cdrom capacity and sector size */
1372 stat = cdrom_read_capacity(drive, &toc->capacity, §ors_per_frame,
1375 toc->capacity = 0x1fffff;
1377 set_capacity(info->disk, toc->capacity * sectors_per_frame);
1378 /* save a private copy of the TOC capacity for error handling */
1379 drive->probed_capacity = toc->capacity * sectors_per_frame;
1381 blk_queue_hardsect_size(drive->queue,
1382 sectors_per_frame << SECTOR_BITS);
1384 /* first read just the header, so we know how long the TOC is */
1385 stat = cdrom_read_tocentry(drive, 0, 1, 0, (char *) &toc->hdr,
1386 sizeof(struct atapi_toc_header), sense);
1390 if (drive->atapi_flags & IDE_AFLAG_TOCTRACKS_AS_BCD) {
1391 toc->hdr.first_track = BCD2BIN(toc->hdr.first_track);
1392 toc->hdr.last_track = BCD2BIN(toc->hdr.last_track);
1395 ntracks = toc->hdr.last_track - toc->hdr.first_track + 1;
1398 if (ntracks > MAX_TRACKS)
1399 ntracks = MAX_TRACKS;
1401 /* now read the whole schmeer */
1402 stat = cdrom_read_tocentry(drive, toc->hdr.first_track, 1, 0,
1404 sizeof(struct atapi_toc_header) +
1406 sizeof(struct atapi_toc_entry), sense);
1408 if (stat && toc->hdr.first_track > 1) {
1410 * Cds with CDI tracks only don't have any TOC entries, despite
1411 * of this the returned values are
1412 * first_track == last_track = number of CDI tracks + 1,
1413 * so that this case is indistinguishable from the same layout
1414 * plus an additional audio track. If we get an error for the
1415 * regular case, we assume a CDI without additional audio
1416 * tracks. In this case the readable TOC is empty (CDI tracks
1417 * are not included) and only holds the Leadout entry.
1422 stat = cdrom_read_tocentry(drive, CDROM_LEADOUT, 1, 0,
1424 sizeof(struct atapi_toc_header) +
1426 sizeof(struct atapi_toc_entry),
1431 if (drive->atapi_flags & IDE_AFLAG_TOCTRACKS_AS_BCD) {
1432 toc->hdr.first_track = (u8)BIN2BCD(CDROM_LEADOUT);
1433 toc->hdr.last_track = (u8)BIN2BCD(CDROM_LEADOUT);
1435 toc->hdr.first_track = CDROM_LEADOUT;
1436 toc->hdr.last_track = CDROM_LEADOUT;
1443 toc->hdr.toc_length = be16_to_cpu(toc->hdr.toc_length);
1445 if (drive->atapi_flags & IDE_AFLAG_TOCTRACKS_AS_BCD) {
1446 toc->hdr.first_track = BCD2BIN(toc->hdr.first_track);
1447 toc->hdr.last_track = BCD2BIN(toc->hdr.last_track);
1450 for (i = 0; i <= ntracks; i++) {
1451 if (drive->atapi_flags & IDE_AFLAG_TOCADDR_AS_BCD) {
1452 if (drive->atapi_flags & IDE_AFLAG_TOCTRACKS_AS_BCD)
1453 toc->ent[i].track = BCD2BIN(toc->ent[i].track);
1454 msf_from_bcd(&toc->ent[i].addr.msf);
1456 toc->ent[i].addr.lba = msf_to_lba(toc->ent[i].addr.msf.minute,
1457 toc->ent[i].addr.msf.second,
1458 toc->ent[i].addr.msf.frame);
1461 if (toc->hdr.first_track != CDROM_LEADOUT) {
1462 /* read the multisession information */
1463 stat = cdrom_read_tocentry(drive, 0, 0, 1, (char *)&ms_tmp,
1464 sizeof(ms_tmp), sense);
1468 toc->last_session_lba = be32_to_cpu(ms_tmp.ent.addr.lba);
1470 ms_tmp.hdr.last_track = CDROM_LEADOUT;
1471 ms_tmp.hdr.first_track = ms_tmp.hdr.last_track;
1472 toc->last_session_lba = msf_to_lba(0, 2, 0); /* 0m 2s 0f */
1475 if (drive->atapi_flags & IDE_AFLAG_TOCADDR_AS_BCD) {
1476 /* re-read multisession information using MSF format */
1477 stat = cdrom_read_tocentry(drive, 0, 1, 1, (char *)&ms_tmp,
1478 sizeof(ms_tmp), sense);
1482 msf_from_bcd(&ms_tmp.ent.addr.msf);
1483 toc->last_session_lba = msf_to_lba(ms_tmp.ent.addr.msf.minute,
1484 ms_tmp.ent.addr.msf.second,
1485 ms_tmp.ent.addr.msf.frame);
1488 toc->xa_flag = (ms_tmp.hdr.first_track != ms_tmp.hdr.last_track);
1490 /* now try to get the total cdrom capacity */
1491 stat = cdrom_get_last_written(cdi, &last_written);
1492 if (!stat && (last_written > toc->capacity)) {
1493 toc->capacity = last_written;
1494 set_capacity(info->disk, toc->capacity * sectors_per_frame);
1495 drive->probed_capacity = toc->capacity * sectors_per_frame;
1498 /* Remember that we've read this stuff. */
1499 drive->atapi_flags |= IDE_AFLAG_TOC_VALID;
1504 int ide_cdrom_get_capabilities(ide_drive_t *drive, u8 *buf)
1506 struct cdrom_info *info = drive->driver_data;
1507 struct cdrom_device_info *cdi = &info->devinfo;
1508 struct packet_command cgc;
1509 int stat, attempts = 3, size = ATAPI_CAPABILITIES_PAGE_SIZE;
1511 if ((drive->atapi_flags & IDE_AFLAG_FULL_CAPS_PAGE) == 0)
1512 size -= ATAPI_CAPABILITIES_PAGE_PAD_SIZE;
1514 init_cdrom_command(&cgc, buf, size, CGC_DATA_UNKNOWN);
1516 /* we seem to get stat=0x01,err=0x00 the first time (??) */
1517 stat = cdrom_mode_sense(cdi, &cgc, GPMODE_CAPABILITIES_PAGE, 0);
1520 } while (--attempts);
1524 void ide_cdrom_update_speed(ide_drive_t *drive, u8 *buf)
1526 struct cdrom_info *cd = drive->driver_data;
1527 u16 curspeed, maxspeed;
1529 if (drive->atapi_flags & IDE_AFLAG_LE_SPEED_FIELDS) {
1530 curspeed = le16_to_cpup((__le16 *)&buf[8 + 14]);
1531 maxspeed = le16_to_cpup((__le16 *)&buf[8 + 8]);
1533 curspeed = be16_to_cpup((__be16 *)&buf[8 + 14]);
1534 maxspeed = be16_to_cpup((__be16 *)&buf[8 + 8]);
1537 cd->current_speed = (curspeed + (176/2)) / 176;
1538 cd->max_speed = (maxspeed + (176/2)) / 176;
1541 #define IDE_CD_CAPABILITIES \
1542 (CDC_CLOSE_TRAY | CDC_OPEN_TRAY | CDC_LOCK | CDC_SELECT_SPEED | \
1543 CDC_SELECT_DISC | CDC_MULTI_SESSION | CDC_MCN | CDC_MEDIA_CHANGED | \
1544 CDC_PLAY_AUDIO | CDC_RESET | CDC_DRIVE_STATUS | CDC_CD_R | \
1545 CDC_CD_RW | CDC_DVD | CDC_DVD_R | CDC_DVD_RAM | CDC_GENERIC_PACKET | \
1546 CDC_MO_DRIVE | CDC_MRW | CDC_MRW_W | CDC_RAM)
1548 static struct cdrom_device_ops ide_cdrom_dops = {
1549 .open = ide_cdrom_open_real,
1550 .release = ide_cdrom_release_real,
1551 .drive_status = ide_cdrom_drive_status,
1552 .media_changed = ide_cdrom_check_media_change_real,
1553 .tray_move = ide_cdrom_tray_move,
1554 .lock_door = ide_cdrom_lock_door,
1555 .select_speed = ide_cdrom_select_speed,
1556 .get_last_session = ide_cdrom_get_last_session,
1557 .get_mcn = ide_cdrom_get_mcn,
1558 .reset = ide_cdrom_reset,
1559 .audio_ioctl = ide_cdrom_audio_ioctl,
1560 .capability = IDE_CD_CAPABILITIES,
1561 .generic_packet = ide_cdrom_packet,
1564 static int ide_cdrom_register(ide_drive_t *drive, int nslots)
1566 struct cdrom_info *info = drive->driver_data;
1567 struct cdrom_device_info *devinfo = &info->devinfo;
1569 devinfo->ops = &ide_cdrom_dops;
1570 devinfo->speed = info->current_speed;
1571 devinfo->capacity = nslots;
1572 devinfo->handle = drive;
1573 strcpy(devinfo->name, drive->name);
1575 if (drive->atapi_flags & IDE_AFLAG_NO_SPEED_SELECT)
1576 devinfo->mask |= CDC_SELECT_SPEED;
1578 devinfo->disk = info->disk;
1579 return register_cdrom(devinfo);
1582 static int ide_cdrom_probe_capabilities(ide_drive_t *drive)
1584 struct cdrom_info *cd = drive->driver_data;
1585 struct cdrom_device_info *cdi = &cd->devinfo;
1586 u8 buf[ATAPI_CAPABILITIES_PAGE_SIZE];
1587 mechtype_t mechtype;
1590 cdi->mask = (CDC_CD_R | CDC_CD_RW | CDC_DVD | CDC_DVD_R |
1591 CDC_DVD_RAM | CDC_SELECT_DISC | CDC_PLAY_AUDIO |
1592 CDC_MO_DRIVE | CDC_RAM);
1594 if (drive->media == ide_optical) {
1595 cdi->mask &= ~(CDC_MO_DRIVE | CDC_RAM);
1596 printk(KERN_ERR "%s: ATAPI magneto-optical drive\n",
1601 if (drive->atapi_flags & IDE_AFLAG_PRE_ATAPI12) {
1602 drive->atapi_flags &= ~IDE_AFLAG_NO_EJECT;
1603 cdi->mask &= ~CDC_PLAY_AUDIO;
1608 * We have to cheat a little here. the packet will eventually be queued
1609 * with ide_cdrom_packet(), which extracts the drive from cdi->handle.
1610 * Since this device hasn't been registered with the Uniform layer yet,
1611 * it can't do this. Same goes for cdi->ops.
1613 cdi->handle = drive;
1614 cdi->ops = &ide_cdrom_dops;
1616 if (ide_cdrom_get_capabilities(drive, buf))
1619 if ((buf[8 + 6] & 0x01) == 0)
1620 drive->atapi_flags |= IDE_AFLAG_NO_DOORLOCK;
1621 if (buf[8 + 6] & 0x08)
1622 drive->atapi_flags &= ~IDE_AFLAG_NO_EJECT;
1623 if (buf[8 + 3] & 0x01)
1624 cdi->mask &= ~CDC_CD_R;
1625 if (buf[8 + 3] & 0x02)
1626 cdi->mask &= ~(CDC_CD_RW | CDC_RAM);
1627 if (buf[8 + 2] & 0x38)
1628 cdi->mask &= ~CDC_DVD;
1629 if (buf[8 + 3] & 0x20)
1630 cdi->mask &= ~(CDC_DVD_RAM | CDC_RAM);
1631 if (buf[8 + 3] & 0x10)
1632 cdi->mask &= ~CDC_DVD_R;
1633 if ((buf[8 + 4] & 0x01) || (drive->atapi_flags & IDE_AFLAG_PLAY_AUDIO_OK))
1634 cdi->mask &= ~CDC_PLAY_AUDIO;
1636 mechtype = buf[8 + 6] >> 5;
1637 if (mechtype == mechtype_caddy || mechtype == mechtype_popup)
1638 cdi->mask |= CDC_CLOSE_TRAY;
1640 if (cdi->sanyo_slot > 0) {
1641 cdi->mask &= ~CDC_SELECT_DISC;
1643 } else if (mechtype == mechtype_individual_changer ||
1644 mechtype == mechtype_cartridge_changer) {
1645 nslots = cdrom_number_of_slots(cdi);
1647 cdi->mask &= ~CDC_SELECT_DISC;
1650 ide_cdrom_update_speed(drive, buf);
1652 printk(KERN_INFO "%s: ATAPI", drive->name);
1654 /* don't print speed if the drive reported 0 */
1656 printk(KERN_CONT " %dX", cd->max_speed);
1658 printk(KERN_CONT " %s", (cdi->mask & CDC_DVD) ? "CD-ROM" : "DVD-ROM");
1660 if ((cdi->mask & CDC_DVD_R) == 0 || (cdi->mask & CDC_DVD_RAM) == 0)
1661 printk(KERN_CONT " DVD%s%s",
1662 (cdi->mask & CDC_DVD_R) ? "" : "-R",
1663 (cdi->mask & CDC_DVD_RAM) ? "" : "-RAM");
1665 if ((cdi->mask & CDC_CD_R) == 0 || (cdi->mask & CDC_CD_RW) == 0)
1666 printk(KERN_CONT " CD%s%s",
1667 (cdi->mask & CDC_CD_R) ? "" : "-R",
1668 (cdi->mask & CDC_CD_RW) ? "" : "/RW");
1670 if ((cdi->mask & CDC_SELECT_DISC) == 0)
1671 printk(KERN_CONT " changer w/%d slots", nslots);
1673 printk(KERN_CONT " drive");
1675 printk(KERN_CONT ", %dkB Cache\n", be16_to_cpup((__be16 *)&buf[8 + 12]));
1680 /* standard prep_rq_fn that builds 10 byte cmds */
1681 static int ide_cdrom_prep_fs(struct request_queue *q, struct request *rq)
1683 int hard_sect = queue_hardsect_size(q);
1684 long block = (long)rq->hard_sector / (hard_sect >> 9);
1685 unsigned long blocks = rq->hard_nr_sectors / (hard_sect >> 9);
1687 memset(rq->cmd, 0, BLK_MAX_CDB);
1689 if (rq_data_dir(rq) == READ)
1690 rq->cmd[0] = GPCMD_READ_10;
1692 rq->cmd[0] = GPCMD_WRITE_10;
1697 rq->cmd[2] = (block >> 24) & 0xff;
1698 rq->cmd[3] = (block >> 16) & 0xff;
1699 rq->cmd[4] = (block >> 8) & 0xff;
1700 rq->cmd[5] = block & 0xff;
1703 * and transfer length
1705 rq->cmd[7] = (blocks >> 8) & 0xff;
1706 rq->cmd[8] = blocks & 0xff;
1712 * Most of the SCSI commands are supported directly by ATAPI devices.
1713 * This transform handles the few exceptions.
1715 static int ide_cdrom_prep_pc(struct request *rq)
1719 /* transform 6-byte read/write commands to the 10-byte version */
1720 if (c[0] == READ_6 || c[0] == WRITE_6) {
1727 c[0] += (READ_10 - READ_6);
1733 * it's silly to pretend we understand 6-byte sense commands, just
1734 * reject with ILLEGAL_REQUEST and the caller should take the
1735 * appropriate action
1737 if (c[0] == MODE_SENSE || c[0] == MODE_SELECT) {
1738 rq->errors = ILLEGAL_REQUEST;
1739 return BLKPREP_KILL;
1745 static int ide_cdrom_prep_fn(struct request_queue *q, struct request *rq)
1747 if (blk_fs_request(rq))
1748 return ide_cdrom_prep_fs(q, rq);
1749 else if (blk_pc_request(rq))
1750 return ide_cdrom_prep_pc(rq);
1755 struct cd_list_entry {
1756 const char *id_model;
1757 const char *id_firmware;
1758 unsigned int cd_flags;
1761 #ifdef CONFIG_IDE_PROC_FS
1762 static sector_t ide_cdrom_capacity(ide_drive_t *drive)
1764 unsigned long capacity, sectors_per_frame;
1766 if (cdrom_read_capacity(drive, &capacity, §ors_per_frame, NULL))
1769 return capacity * sectors_per_frame;
1772 static int proc_idecd_read_capacity(char *page, char **start, off_t off,
1773 int count, int *eof, void *data)
1775 ide_drive_t *drive = data;
1778 len = sprintf(page, "%llu\n", (long long)ide_cdrom_capacity(drive));
1779 PROC_IDE_READ_RETURN(page, start, off, count, eof, len);
1782 static ide_proc_entry_t idecd_proc[] = {
1783 { "capacity", S_IFREG|S_IRUGO, proc_idecd_read_capacity, NULL },
1784 { NULL, 0, NULL, NULL }
1787 static void ide_cdrom_add_settings(ide_drive_t *drive)
1789 ide_add_setting(drive, "dsc_overlap", SETTING_RW, TYPE_BYTE, 0, 1, 1, 1,
1790 &drive->dsc_overlap, NULL);
1793 static inline void ide_cdrom_add_settings(ide_drive_t *drive) { ; }
1796 static const struct cd_list_entry ide_cd_quirks_list[] = {
1797 /* Limit transfer size per interrupt. */
1798 { "SAMSUNG CD-ROM SCR-2430", NULL, IDE_AFLAG_LIMIT_NFRAMES },
1799 { "SAMSUNG CD-ROM SCR-2432", NULL, IDE_AFLAG_LIMIT_NFRAMES },
1800 /* SCR-3231 doesn't support the SET_CD_SPEED command. */
1801 { "SAMSUNG CD-ROM SCR-3231", NULL, IDE_AFLAG_NO_SPEED_SELECT },
1802 /* Old NEC260 (not R) was released before ATAPI 1.2 spec. */
1803 { "NEC CD-ROM DRIVE:260", "1.01", IDE_AFLAG_TOCADDR_AS_BCD |
1804 IDE_AFLAG_PRE_ATAPI12, },
1805 /* Vertos 300, some versions of this drive like to talk BCD. */
1806 { "V003S0DS", NULL, IDE_AFLAG_VERTOS_300_SSD, },
1807 /* Vertos 600 ESD. */
1808 { "V006E0DS", NULL, IDE_AFLAG_VERTOS_600_ESD, },
1810 * Sanyo 3 CD changer uses a non-standard command for CD changing
1811 * (by default standard ATAPI support for CD changers is used).
1813 { "CD-ROM CDR-C3 G", NULL, IDE_AFLAG_SANYO_3CD },
1814 { "CD-ROM CDR-C3G", NULL, IDE_AFLAG_SANYO_3CD },
1815 { "CD-ROM CDR_C36", NULL, IDE_AFLAG_SANYO_3CD },
1816 /* Stingray 8X CD-ROM. */
1817 { "STINGRAY 8422 IDE 8X CD-ROM 7-27-95", NULL, IDE_AFLAG_PRE_ATAPI12 },
1819 * ACER 50X CD-ROM and WPI 32X CD-ROM require the full spec length
1820 * mode sense page capabilities size, but older drives break.
1822 { "ATAPI CD ROM DRIVE 50X MAX", NULL, IDE_AFLAG_FULL_CAPS_PAGE },
1823 { "WPI CDS-32X", NULL, IDE_AFLAG_FULL_CAPS_PAGE },
1824 /* ACER/AOpen 24X CD-ROM has the speed fields byte-swapped. */
1825 { "", "241N", IDE_AFLAG_LE_SPEED_FIELDS },
1827 * Some drives used by Apple don't advertise audio play
1828 * but they do support reading TOC & audio datas.
1830 { "MATSHITADVD-ROM SR-8187", NULL, IDE_AFLAG_PLAY_AUDIO_OK },
1831 { "MATSHITADVD-ROM SR-8186", NULL, IDE_AFLAG_PLAY_AUDIO_OK },
1832 { "MATSHITADVD-ROM SR-8176", NULL, IDE_AFLAG_PLAY_AUDIO_OK },
1833 { "MATSHITADVD-ROM SR-8174", NULL, IDE_AFLAG_PLAY_AUDIO_OK },
1834 { "Optiarc DVD RW AD-5200A", NULL, IDE_AFLAG_PLAY_AUDIO_OK },
1838 static unsigned int ide_cd_flags(struct hd_driveid *id)
1840 const struct cd_list_entry *cle = ide_cd_quirks_list;
1842 while (cle->id_model) {
1843 if (strcmp(cle->id_model, id->model) == 0 &&
1844 (cle->id_firmware == NULL ||
1845 strstr(id->fw_rev, cle->id_firmware)))
1846 return cle->cd_flags;
1853 static int ide_cdrom_setup(ide_drive_t *drive)
1855 struct cdrom_info *cd = drive->driver_data;
1856 struct cdrom_device_info *cdi = &cd->devinfo;
1857 struct hd_driveid *id = drive->id;
1860 blk_queue_prep_rq(drive->queue, ide_cdrom_prep_fn);
1861 blk_queue_dma_alignment(drive->queue, 31);
1862 blk_queue_update_dma_pad(drive->queue, 15);
1863 drive->queue->unplug_delay = (1 * HZ) / 1000;
1864 if (!drive->queue->unplug_delay)
1865 drive->queue->unplug_delay = 1;
1867 drive->special.all = 0;
1869 drive->atapi_flags = IDE_AFLAG_MEDIA_CHANGED | IDE_AFLAG_NO_EJECT |
1872 if ((id->config & 0x0060) == 0x20)
1873 drive->atapi_flags |= IDE_AFLAG_DRQ_INTERRUPT;
1875 if ((drive->atapi_flags & IDE_AFLAG_VERTOS_300_SSD) &&
1876 id->fw_rev[4] == '1' && id->fw_rev[6] <= '2')
1877 drive->atapi_flags |= (IDE_AFLAG_TOCTRACKS_AS_BCD |
1878 IDE_AFLAG_TOCADDR_AS_BCD);
1879 else if ((drive->atapi_flags & IDE_AFLAG_VERTOS_600_ESD) &&
1880 id->fw_rev[4] == '1' && id->fw_rev[6] <= '2')
1881 drive->atapi_flags |= IDE_AFLAG_TOCTRACKS_AS_BCD;
1882 else if (drive->atapi_flags & IDE_AFLAG_SANYO_3CD)
1883 /* 3 => use CD in slot 0 */
1884 cdi->sanyo_slot = 3;
1886 nslots = ide_cdrom_probe_capabilities(drive);
1888 /* set correct block size */
1889 blk_queue_hardsect_size(drive->queue, CD_FRAMESIZE);
1891 drive->dsc_overlap = (drive->next != drive);
1893 if (ide_cdrom_register(drive, nslots)) {
1894 printk(KERN_ERR "%s: %s failed to register device with the"
1895 " cdrom driver.\n", drive->name, __func__);
1896 cd->devinfo.handle = NULL;
1899 ide_cdrom_add_settings(drive);
1903 static void ide_cd_remove(ide_drive_t *drive)
1905 struct cdrom_info *info = drive->driver_data;
1907 ide_proc_unregister_driver(drive, info->driver);
1909 del_gendisk(info->disk);
1914 static void ide_cd_release(struct kref *kref)
1916 struct cdrom_info *info = to_ide_cd(kref);
1917 struct cdrom_device_info *devinfo = &info->devinfo;
1918 ide_drive_t *drive = info->drive;
1919 struct gendisk *g = info->disk;
1922 if (devinfo->handle == drive)
1923 unregister_cdrom(devinfo);
1924 drive->dsc_overlap = 0;
1925 drive->driver_data = NULL;
1926 blk_queue_prep_rq(drive->queue, NULL);
1927 g->private_data = NULL;
1932 static int ide_cd_probe(ide_drive_t *);
1934 static ide_driver_t ide_cdrom_driver = {
1936 .owner = THIS_MODULE,
1937 .name = "ide-cdrom",
1938 .bus = &ide_bus_type,
1940 .probe = ide_cd_probe,
1941 .remove = ide_cd_remove,
1942 .version = IDECD_VERSION,
1944 .supports_dsc_overlap = 1,
1945 .do_request = ide_cd_do_request,
1946 .end_request = ide_end_request,
1947 .error = __ide_error,
1948 #ifdef CONFIG_IDE_PROC_FS
1953 static int idecd_open(struct inode *inode, struct file *file)
1955 struct gendisk *disk = inode->i_bdev->bd_disk;
1956 struct cdrom_info *info;
1959 info = ide_cd_get(disk);
1963 rc = cdrom_open(&info->devinfo, inode, file);
1971 static int idecd_release(struct inode *inode, struct file *file)
1973 struct gendisk *disk = inode->i_bdev->bd_disk;
1974 struct cdrom_info *info = ide_cd_g(disk);
1976 cdrom_release(&info->devinfo, file);
1983 static int idecd_set_spindown(struct cdrom_device_info *cdi, unsigned long arg)
1985 struct packet_command cgc;
1990 if (copy_from_user(&spindown, (void __user *)arg, sizeof(char)))
1993 init_cdrom_command(&cgc, buffer, sizeof(buffer), CGC_DATA_UNKNOWN);
1995 stat = cdrom_mode_sense(cdi, &cgc, GPMODE_CDROM_PAGE, 0);
1999 buffer[11] = (buffer[11] & 0xf0) | (spindown & 0x0f);
2000 return cdrom_mode_select(cdi, &cgc);
2003 static int idecd_get_spindown(struct cdrom_device_info *cdi, unsigned long arg)
2005 struct packet_command cgc;
2010 init_cdrom_command(&cgc, buffer, sizeof(buffer), CGC_DATA_UNKNOWN);
2012 stat = cdrom_mode_sense(cdi, &cgc, GPMODE_CDROM_PAGE, 0);
2016 spindown = buffer[11] & 0x0f;
2017 if (copy_to_user((void __user *)arg, &spindown, sizeof(char)))
2022 static int idecd_ioctl(struct inode *inode, struct file *file,
2023 unsigned int cmd, unsigned long arg)
2025 struct block_device *bdev = inode->i_bdev;
2026 struct cdrom_info *info = ide_cd_g(bdev->bd_disk);
2030 case CDROMSETSPINDOWN:
2031 return idecd_set_spindown(&info->devinfo, arg);
2032 case CDROMGETSPINDOWN:
2033 return idecd_get_spindown(&info->devinfo, arg);
2038 err = generic_ide_ioctl(info->drive, file, bdev, cmd, arg);
2040 err = cdrom_ioctl(file, &info->devinfo, inode, cmd, arg);
2045 static int idecd_media_changed(struct gendisk *disk)
2047 struct cdrom_info *info = ide_cd_g(disk);
2048 return cdrom_media_changed(&info->devinfo);
2051 static int idecd_revalidate_disk(struct gendisk *disk)
2053 struct cdrom_info *info = ide_cd_g(disk);
2054 struct request_sense sense;
2056 ide_cd_read_toc(info->drive, &sense);
2061 static struct block_device_operations idecd_ops = {
2062 .owner = THIS_MODULE,
2064 .release = idecd_release,
2065 .ioctl = idecd_ioctl,
2066 .media_changed = idecd_media_changed,
2067 .revalidate_disk = idecd_revalidate_disk
2070 /* module options */
2071 static char *ignore;
2073 module_param(ignore, charp, 0400);
2074 MODULE_DESCRIPTION("ATAPI CD-ROM Driver");
2076 static int ide_cd_probe(ide_drive_t *drive)
2078 struct cdrom_info *info;
2080 struct request_sense sense;
2082 if (!strstr("ide-cdrom", drive->driver_req))
2084 if (!drive->present)
2086 if (drive->media != ide_cdrom && drive->media != ide_optical)
2088 /* skip drives that we were told to ignore */
2089 if (ignore != NULL) {
2090 if (strstr(ignore, drive->name)) {
2091 printk(KERN_INFO "ide-cd: ignoring drive %s\n",
2096 info = kzalloc(sizeof(struct cdrom_info), GFP_KERNEL);
2098 printk(KERN_ERR "%s: Can't allocate a cdrom structure\n",
2103 g = alloc_disk(1 << PARTN_BITS);
2107 ide_init_disk(g, drive);
2109 ide_proc_register_driver(drive, &ide_cdrom_driver);
2111 kref_init(&info->kref);
2113 info->drive = drive;
2114 info->driver = &ide_cdrom_driver;
2117 g->private_data = &info->driver;
2119 drive->driver_data = info;
2122 g->driverfs_dev = &drive->gendev;
2123 g->flags = GENHD_FL_CD | GENHD_FL_REMOVABLE;
2124 if (ide_cdrom_setup(drive)) {
2125 ide_proc_unregister_driver(drive, &ide_cdrom_driver);
2126 ide_cd_release(&info->kref);
2130 ide_cd_read_toc(drive, &sense);
2131 g->fops = &idecd_ops;
2132 g->flags |= GENHD_FL_REMOVABLE;
2142 static void __exit ide_cdrom_exit(void)
2144 driver_unregister(&ide_cdrom_driver.gen_driver);
2147 static int __init ide_cdrom_init(void)
2149 return driver_register(&ide_cdrom_driver.gen_driver);
2152 MODULE_ALIAS("ide:*m-cdrom*");
2153 MODULE_ALIAS("ide-cd");
2154 module_init(ide_cdrom_init);
2155 module_exit(ide_cdrom_exit);
2156 MODULE_LICENSE("GPL");