1 /* GD ROM driver for the SEGA Dreamcast
2 * copyright Adrian McMenamin, 2007
3 * With thanks to Marcus Comstedt and Nathan Keynes
4 * for work in reversing PIO and DMA
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License along
17 * with this program; if not, write to the Free Software Foundation, Inc.,
18 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
22 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
24 #include <linux/init.h>
25 #include <linux/module.h>
27 #include <linux/kernel.h>
28 #include <linux/list.h>
29 #include <linux/slab.h>
30 #include <linux/dma-mapping.h>
31 #include <linux/cdrom.h>
32 #include <linux/genhd.h>
33 #include <linux/bio.h>
34 #include <linux/blk-mq.h>
35 #include <linux/interrupt.h>
36 #include <linux/device.h>
37 #include <linux/mutex.h>
38 #include <linux/wait.h>
39 #include <linux/platform_device.h>
40 #include <scsi/scsi.h>
43 #include <asm/delay.h>
45 #include <mach/sysasic.h>
47 #define GDROM_DEV_NAME "gdrom"
48 #define GD_SESSION_OFFSET 150
51 #define GDROM_COM_SOFTRESET 0x08
52 #define GDROM_COM_EXECDIAG 0x90
53 #define GDROM_COM_PACKET 0xA0
54 #define GDROM_COM_IDDEV 0xA1
56 /* GD Rom registers */
57 #define GDROM_BASE_REG 0xA05F7000
58 #define GDROM_ALTSTATUS_REG (GDROM_BASE_REG + 0x18)
59 #define GDROM_DATA_REG (GDROM_BASE_REG + 0x80)
60 #define GDROM_ERROR_REG (GDROM_BASE_REG + 0x84)
61 #define GDROM_INTSEC_REG (GDROM_BASE_REG + 0x88)
62 #define GDROM_SECNUM_REG (GDROM_BASE_REG + 0x8C)
63 #define GDROM_BCL_REG (GDROM_BASE_REG + 0x90)
64 #define GDROM_BCH_REG (GDROM_BASE_REG + 0x94)
65 #define GDROM_DSEL_REG (GDROM_BASE_REG + 0x98)
66 #define GDROM_STATUSCOMMAND_REG (GDROM_BASE_REG + 0x9C)
67 #define GDROM_RESET_REG (GDROM_BASE_REG + 0x4E4)
69 #define GDROM_DMA_STARTADDR_REG (GDROM_BASE_REG + 0x404)
70 #define GDROM_DMA_LENGTH_REG (GDROM_BASE_REG + 0x408)
71 #define GDROM_DMA_DIRECTION_REG (GDROM_BASE_REG + 0x40C)
72 #define GDROM_DMA_ENABLE_REG (GDROM_BASE_REG + 0x414)
73 #define GDROM_DMA_STATUS_REG (GDROM_BASE_REG + 0x418)
74 #define GDROM_DMA_WAIT_REG (GDROM_BASE_REG + 0x4A0)
75 #define GDROM_DMA_ACCESS_CTRL_REG (GDROM_BASE_REG + 0x4B8)
77 #define GDROM_HARD_SECTOR 2048
78 #define BLOCK_LAYER_SECTOR 512
81 #define GDROM_DEFAULT_TIMEOUT (HZ * 7)
83 static DEFINE_MUTEX(gdrom_mutex);
86 const char * const text;
89 {RECOVERED_ERROR, "Recovered from error"},
90 {NOT_READY, "Device not ready"},
91 {MEDIUM_ERROR, "Disk not ready"},
92 {HARDWARE_ERROR, "Hardware error"},
93 {ILLEGAL_REQUEST, "Command has failed"},
94 {UNIT_ATTENTION, "Device needs attention - disk may have been changed"},
95 {DATA_PROTECT, "Data protection error"},
96 {ABORTED_COMMAND, "Command aborted"},
99 static struct platform_device *pd;
100 static int gdrom_major;
101 static DECLARE_WAIT_QUEUE_HEAD(command_queue);
102 static DECLARE_WAIT_QUEUE_HEAD(request_queue);
105 unsigned int entry[99];
106 unsigned int first, last;
107 unsigned int leadout;
110 static struct gdrom_unit {
111 struct gendisk *disk;
112 struct cdrom_device_info *cd_info;
117 struct gdromtoc *toc;
118 struct request_queue *gdrom_rq;
119 struct blk_mq_tag_set tag_set;
133 static int gdrom_getsense(short *bufstring);
134 static int gdrom_packetcommand(struct cdrom_device_info *cd_info,
135 struct packet_command *command);
136 static int gdrom_hardreset(struct cdrom_device_info *cd_info);
138 static bool gdrom_is_busy(void)
140 return (__raw_readb(GDROM_ALTSTATUS_REG) & 0x80) != 0;
143 static bool gdrom_data_request(void)
145 return (__raw_readb(GDROM_ALTSTATUS_REG) & 0x88) == 8;
148 static bool gdrom_wait_clrbusy(void)
150 unsigned long timeout = jiffies + GDROM_DEFAULT_TIMEOUT;
151 while ((__raw_readb(GDROM_ALTSTATUS_REG) & 0x80) &&
152 (time_before(jiffies, timeout)))
154 return time_before(jiffies, timeout + 1);
157 static bool gdrom_wait_busy_sleeps(void)
159 unsigned long timeout;
160 /* Wait to get busy first */
161 timeout = jiffies + GDROM_DEFAULT_TIMEOUT;
162 while (!gdrom_is_busy() && time_before(jiffies, timeout))
164 /* Now wait for busy to clear */
165 return gdrom_wait_clrbusy();
168 static void gdrom_identifydevice(void *buf)
172 /* If the device won't clear it has probably
173 * been hit by a serious failure - but we'll
174 * try to return a sense key even so */
175 if (!gdrom_wait_clrbusy()) {
176 gdrom_getsense(NULL);
179 __raw_writeb(GDROM_COM_IDDEV, GDROM_STATUSCOMMAND_REG);
180 if (!gdrom_wait_busy_sleeps()) {
181 gdrom_getsense(NULL);
184 /* now read in the data */
185 for (c = 0; c < 40; c++)
186 data[c] = __raw_readw(GDROM_DATA_REG);
189 static void gdrom_spicommand(void *spi_string, int buflen)
191 short *cmd = spi_string;
192 unsigned long timeout;
194 /* ensure IRQ_WAIT is set */
195 __raw_writeb(0x08, GDROM_ALTSTATUS_REG);
196 /* specify how many bytes we expect back */
197 __raw_writeb(buflen & 0xFF, GDROM_BCL_REG);
198 __raw_writeb((buflen >> 8) & 0xFF, GDROM_BCH_REG);
199 /* other parameters */
200 __raw_writeb(0, GDROM_INTSEC_REG);
201 __raw_writeb(0, GDROM_SECNUM_REG);
202 __raw_writeb(0, GDROM_ERROR_REG);
203 /* Wait until we can go */
204 if (!gdrom_wait_clrbusy()) {
205 gdrom_getsense(NULL);
208 timeout = jiffies + GDROM_DEFAULT_TIMEOUT;
209 __raw_writeb(GDROM_COM_PACKET, GDROM_STATUSCOMMAND_REG);
210 while (!gdrom_data_request() && time_before(jiffies, timeout))
212 if (!time_before(jiffies, timeout + 1)) {
213 gdrom_getsense(NULL);
216 outsw(GDROM_DATA_REG, cmd, 6);
220 /* gdrom_command_executediagnostic:
221 * Used to probe for presence of working GDROM
222 * Restarts GDROM device and then applies standard ATA 3
223 * Execute Diagnostic Command: a return of '1' indicates device 0
224 * present and device 1 absent
226 static char gdrom_execute_diagnostic(void)
228 gdrom_hardreset(gd.cd_info);
229 if (!gdrom_wait_clrbusy())
231 __raw_writeb(GDROM_COM_EXECDIAG, GDROM_STATUSCOMMAND_REG);
232 if (!gdrom_wait_busy_sleeps())
234 return __raw_readb(GDROM_ERROR_REG);
238 * Prepare disk command
242 static int gdrom_preparedisk_cmd(void)
244 struct packet_command *spin_command;
245 spin_command = kzalloc(sizeof(struct packet_command), GFP_KERNEL);
248 spin_command->cmd[0] = 0x70;
249 spin_command->cmd[2] = 0x1f;
250 spin_command->buflen = 0;
252 gdrom_packetcommand(gd.cd_info, spin_command);
253 /* 60 second timeout */
254 wait_event_interruptible_timeout(command_queue, gd.pending == 0,
255 GDROM_DEFAULT_TIMEOUT);
258 if (gd.status & 0x01) {
260 gdrom_getsense(NULL);
270 * byte 3 = sizeof TOC >> 8 ie upper byte
271 * byte 4 = sizeof TOC & 0xff ie lower byte
273 static int gdrom_readtoc_cmd(struct gdromtoc *toc, int session)
276 struct packet_command *toc_command;
279 toc_command = kzalloc(sizeof(struct packet_command), GFP_KERNEL);
282 tocsize = sizeof(struct gdromtoc);
283 toc_command->cmd[0] = 0x14;
284 toc_command->cmd[1] = session;
285 toc_command->cmd[3] = tocsize >> 8;
286 toc_command->cmd[4] = tocsize & 0xff;
287 toc_command->buflen = tocsize;
290 goto cleanup_readtoc_final;
293 gdrom_packetcommand(gd.cd_info, toc_command);
294 wait_event_interruptible_timeout(command_queue, gd.pending == 0,
295 GDROM_DEFAULT_TIMEOUT);
298 goto cleanup_readtoc;
300 insw(GDROM_DATA_REG, toc, tocsize/2);
301 if (gd.status & 0x01)
306 cleanup_readtoc_final:
312 static int get_entry_lba(int track)
314 return (cpu_to_be32(track & 0xffffff00) - GD_SESSION_OFFSET);
317 static int get_entry_q_ctrl(int track)
319 return (track & 0x000000f0) >> 4;
322 static int get_entry_track(int track)
324 return (track & 0x0000ff00) >> 8;
327 static int gdrom_get_last_session(struct cdrom_device_info *cd_info,
328 struct cdrom_multisession *ms_info)
330 int fentry, lentry, track, data, err;
335 /* Check if GD-ROM */
336 err = gdrom_readtoc_cmd(gd.toc, 1);
337 /* Not a GD-ROM so check if standard CD-ROM */
339 err = gdrom_readtoc_cmd(gd.toc, 0);
341 pr_info("Could not get CD table of contents\n");
346 fentry = get_entry_track(gd.toc->first);
347 lentry = get_entry_track(gd.toc->last);
348 /* Find the first data track */
349 track = get_entry_track(gd.toc->last);
351 data = gd.toc->entry[track - 1];
352 if (get_entry_q_ctrl(data))
353 break; /* ie a real data track */
355 } while (track >= fentry);
357 if ((track > 100) || (track < get_entry_track(gd.toc->first))) {
358 pr_info("No data on the last session of the CD\n");
359 gdrom_getsense(NULL);
363 ms_info->addr_format = CDROM_LBA;
364 ms_info->addr.lba = get_entry_lba(data);
365 ms_info->xa_flag = 1;
369 static int gdrom_open(struct cdrom_device_info *cd_info, int purpose)
371 /* spin up the disk */
372 return gdrom_preparedisk_cmd();
375 /* this function is required even if empty */
376 static void gdrom_release(struct cdrom_device_info *cd_info)
380 static int gdrom_drivestatus(struct cdrom_device_info *cd_info, int ignore)
382 /* read the sense key */
383 char sense = __raw_readb(GDROM_ERROR_REG);
388 return CDS_DRIVE_NOT_READY;
393 static unsigned int gdrom_check_events(struct cdrom_device_info *cd_info,
394 unsigned int clearing, int ignore)
396 /* check the sense key */
397 return (__raw_readb(GDROM_ERROR_REG) & 0xF0) == 0x60 ?
398 DISK_EVENT_MEDIA_CHANGE : 0;
401 /* reset the G1 bus */
402 static int gdrom_hardreset(struct cdrom_device_info *cd_info)
405 __raw_writel(0x1fffff, GDROM_RESET_REG);
406 for (count = 0xa0000000; count < 0xa0200000; count += 4)
411 /* keep the function looking like the universal
412 * CD Rom specification - returning int */
413 static int gdrom_packetcommand(struct cdrom_device_info *cd_info,
414 struct packet_command *command)
416 gdrom_spicommand(&command->cmd, command->buflen);
420 /* Get Sense SPI command
421 * From Marcus Comstedt
423 * cmd + 4 = length of returned buffer
424 * Returns 5 16 bit words
426 static int gdrom_getsense(short *bufstring)
428 struct packet_command *sense_command;
433 sense_command = kzalloc(sizeof(struct packet_command), GFP_KERNEL);
436 sense_command->cmd[0] = 0x13;
437 sense_command->cmd[4] = 10;
438 sense_command->buflen = 10;
439 /* even if something is pending try to get
440 * the sense key if possible */
441 if (gd.pending && !gdrom_wait_clrbusy()) {
443 goto cleanup_sense_final;
446 gdrom_packetcommand(gd.cd_info, sense_command);
447 wait_event_interruptible_timeout(command_queue, gd.pending == 0,
448 GDROM_DEFAULT_TIMEOUT);
451 insw(GDROM_DATA_REG, &sense, sense_command->buflen/2);
453 pr_info("Drive not ready - command aborted\n");
456 sense_key = sense[1] & 0x0F;
457 if (sense_key < ARRAY_SIZE(sense_texts))
458 pr_info("%s\n", sense_texts[sense_key].text);
460 pr_err("Unknown sense key: %d\n", sense_key);
461 if (bufstring) /* return addional sense data */
462 memcpy(bufstring, &sense[4], 2);
469 kfree(sense_command);
473 static int gdrom_audio_ioctl(struct cdrom_device_info *cdi, unsigned int cmd,
479 static const struct cdrom_device_ops gdrom_ops = {
481 .release = gdrom_release,
482 .drive_status = gdrom_drivestatus,
483 .check_events = gdrom_check_events,
484 .get_last_session = gdrom_get_last_session,
485 .reset = gdrom_hardreset,
486 .audio_ioctl = gdrom_audio_ioctl,
487 .generic_packet = cdrom_dummy_generic_packet,
488 .capability = CDC_MULTI_SESSION | CDC_MEDIA_CHANGED |
489 CDC_RESET | CDC_DRIVE_STATUS | CDC_CD_R,
492 static int gdrom_bdops_open(struct block_device *bdev, fmode_t mode)
496 check_disk_change(bdev);
498 mutex_lock(&gdrom_mutex);
499 ret = cdrom_open(gd.cd_info, bdev, mode);
500 mutex_unlock(&gdrom_mutex);
504 static void gdrom_bdops_release(struct gendisk *disk, fmode_t mode)
506 mutex_lock(&gdrom_mutex);
507 cdrom_release(gd.cd_info, mode);
508 mutex_unlock(&gdrom_mutex);
511 static unsigned int gdrom_bdops_check_events(struct gendisk *disk,
512 unsigned int clearing)
514 return cdrom_check_events(gd.cd_info, clearing);
517 static int gdrom_bdops_ioctl(struct block_device *bdev, fmode_t mode,
518 unsigned cmd, unsigned long arg)
522 mutex_lock(&gdrom_mutex);
523 ret = cdrom_ioctl(gd.cd_info, bdev, mode, cmd, arg);
524 mutex_unlock(&gdrom_mutex);
529 static const struct block_device_operations gdrom_bdops = {
530 .owner = THIS_MODULE,
531 .open = gdrom_bdops_open,
532 .release = gdrom_bdops_release,
533 .check_events = gdrom_bdops_check_events,
534 .ioctl = gdrom_bdops_ioctl,
537 static irqreturn_t gdrom_command_interrupt(int irq, void *dev_id)
539 gd.status = __raw_readb(GDROM_STATUSCOMMAND_REG);
543 wake_up_interruptible(&command_queue);
547 static irqreturn_t gdrom_dma_interrupt(int irq, void *dev_id)
549 gd.status = __raw_readb(GDROM_STATUSCOMMAND_REG);
550 if (gd.transfer != 1)
553 wake_up_interruptible(&request_queue);
557 static int gdrom_set_interrupt_handlers(void)
561 err = request_irq(HW_EVENT_GDROM_CMD, gdrom_command_interrupt,
562 0, "gdrom_command", &gd);
565 err = request_irq(HW_EVENT_GDROM_DMA, gdrom_dma_interrupt,
566 0, "gdrom_dma", &gd);
568 free_irq(HW_EVENT_GDROM_CMD, &gd);
572 /* Implement DMA read using SPI command
582 static blk_status_t gdrom_readdisk_dma(struct request *req)
584 int block, block_cnt;
586 struct packet_command *read_command;
587 unsigned long timeout;
589 read_command = kzalloc(sizeof(struct packet_command), GFP_KERNEL);
591 return BLK_STS_RESOURCE;
593 read_command->cmd[0] = 0x30;
594 read_command->cmd[1] = 0x20;
595 block = blk_rq_pos(req)/GD_TO_BLK + GD_SESSION_OFFSET;
596 block_cnt = blk_rq_sectors(req)/GD_TO_BLK;
597 __raw_writel(virt_to_phys(bio_data(req->bio)), GDROM_DMA_STARTADDR_REG);
598 __raw_writel(block_cnt * GDROM_HARD_SECTOR, GDROM_DMA_LENGTH_REG);
599 __raw_writel(1, GDROM_DMA_DIRECTION_REG);
600 __raw_writel(1, GDROM_DMA_ENABLE_REG);
601 read_command->cmd[2] = (block >> 16) & 0xFF;
602 read_command->cmd[3] = (block >> 8) & 0xFF;
603 read_command->cmd[4] = block & 0xFF;
604 read_command->cmd[8] = (block_cnt >> 16) & 0xFF;
605 read_command->cmd[9] = (block_cnt >> 8) & 0xFF;
606 read_command->cmd[10] = block_cnt & 0xFF;
608 __raw_writeb(1, GDROM_ERROR_REG);
609 /* other registers */
610 __raw_writeb(0, GDROM_SECNUM_REG);
611 __raw_writeb(0, GDROM_BCL_REG);
612 __raw_writeb(0, GDROM_BCH_REG);
613 __raw_writeb(0, GDROM_DSEL_REG);
614 __raw_writeb(0, GDROM_INTSEC_REG);
615 /* Wait for registers to reset after any previous activity */
616 timeout = jiffies + HZ / 2;
617 while (gdrom_is_busy() && time_before(jiffies, timeout))
619 __raw_writeb(GDROM_COM_PACKET, GDROM_STATUSCOMMAND_REG);
620 timeout = jiffies + HZ / 2;
621 /* Wait for packet command to finish */
622 while (gdrom_is_busy() && time_before(jiffies, timeout))
626 outsw(GDROM_DATA_REG, &read_command->cmd, 6);
627 timeout = jiffies + HZ / 2;
628 /* Wait for any pending DMA to finish */
629 while (__raw_readb(GDROM_DMA_STATUS_REG) &&
630 time_before(jiffies, timeout))
633 __raw_writeb(1, GDROM_DMA_STATUS_REG);
634 wait_event_interruptible_timeout(request_queue,
635 gd.transfer == 0, GDROM_DEFAULT_TIMEOUT);
636 err = gd.transfer ? BLK_STS_IOERR : BLK_STS_OK;
640 blk_mq_end_request(req, err);
645 static blk_status_t gdrom_queue_rq(struct blk_mq_hw_ctx *hctx,
646 const struct blk_mq_queue_data *bd)
648 blk_mq_start_request(bd->rq);
650 switch (req_op(bd->rq)) {
652 return gdrom_readdisk_dma(bd->rq);
654 pr_notice("Read only device - write request ignored\n");
655 return BLK_STS_IOERR;
657 printk(KERN_DEBUG "gdrom: Non-fs request ignored\n");
658 return BLK_STS_IOERR;
662 /* Print string identifying GD ROM device */
663 static int gdrom_outputversion(void)
666 char *model_name, *manuf_name, *firmw_ver;
669 /* query device ID */
670 id = kzalloc(sizeof(struct gdrom_id), GFP_KERNEL);
673 gdrom_identifydevice(id);
674 model_name = kstrndup(id->modname, 16, GFP_KERNEL);
677 manuf_name = kstrndup(id->mname, 16, GFP_KERNEL);
679 goto free_model_name;
680 firmw_ver = kstrndup(id->firmver, 16, GFP_KERNEL);
682 goto free_manuf_name;
683 pr_info("%s from %s with firmware %s\n",
684 model_name, manuf_name, firmw_ver);
696 /* set the default mode for DMA transfer */
697 static int gdrom_init_dma_mode(void)
699 __raw_writeb(0x13, GDROM_ERROR_REG);
700 __raw_writeb(0x22, GDROM_INTSEC_REG);
701 if (!gdrom_wait_clrbusy())
703 __raw_writeb(0xEF, GDROM_STATUSCOMMAND_REG);
704 if (!gdrom_wait_busy_sleeps())
706 /* Memory protection setting for GDROM DMA
707 * Bits 31 - 16 security: 0x8843
708 * Bits 15 and 7 reserved (0)
709 * Bits 14 - 8 start of transfer range in 1 MB blocks OR'ed with 0x80
710 * Bits 6 - 0 end of transfer range in 1 MB blocks OR'ed with 0x80
711 * (0x40 | 0x80) = start range at 0x0C000000
712 * (0x7F | 0x80) = end range at 0x0FFFFFFF */
713 __raw_writel(0x8843407F, GDROM_DMA_ACCESS_CTRL_REG);
714 __raw_writel(9, GDROM_DMA_WAIT_REG); /* DMA word setting */
718 static void probe_gdrom_setupcd(void)
720 gd.cd_info->ops = &gdrom_ops;
721 gd.cd_info->capacity = 1;
722 strcpy(gd.cd_info->name, GDROM_DEV_NAME);
723 gd.cd_info->mask = CDC_CLOSE_TRAY|CDC_OPEN_TRAY|CDC_LOCK|
727 static void probe_gdrom_setupdisk(void)
729 gd.disk->major = gdrom_major;
730 gd.disk->first_minor = 1;
732 strcpy(gd.disk->disk_name, GDROM_DEV_NAME);
735 static int probe_gdrom_setupqueue(void)
737 blk_queue_logical_block_size(gd.gdrom_rq, GDROM_HARD_SECTOR);
738 /* using DMA so memory will need to be contiguous */
739 blk_queue_max_segments(gd.gdrom_rq, 1);
740 /* set a large max size to get most from DMA */
741 blk_queue_max_segment_size(gd.gdrom_rq, 0x40000);
742 gd.disk->queue = gd.gdrom_rq;
743 return gdrom_init_dma_mode();
746 static const struct blk_mq_ops gdrom_mq_ops = {
747 .queue_rq = gdrom_queue_rq,
751 * register this as a block device and as compliant with the
752 * universal CD Rom driver interface
754 static int probe_gdrom(struct platform_device *devptr)
757 /* Start the device */
758 if (gdrom_execute_diagnostic() != 1) {
759 pr_warning("ATA Probe for GDROM failed\n");
762 /* Print out firmware ID */
763 if (gdrom_outputversion())
766 gdrom_major = register_blkdev(0, GDROM_DEV_NAME);
767 if (gdrom_major <= 0)
769 pr_info("Registered with major number %d\n",
771 /* Specify basic properties of drive */
772 gd.cd_info = kzalloc(sizeof(struct cdrom_device_info), GFP_KERNEL);
775 goto probe_fail_no_mem;
777 probe_gdrom_setupcd();
778 gd.disk = alloc_disk(1);
781 goto probe_fail_no_disk;
783 probe_gdrom_setupdisk();
784 if (register_cdrom(gd.cd_info)) {
786 goto probe_fail_cdrom_register;
788 gd.disk->fops = &gdrom_bdops;
789 /* latch on to the interrupt */
790 err = gdrom_set_interrupt_handlers();
792 goto probe_fail_cmdirq_register;
794 gd.gdrom_rq = blk_mq_init_sq_queue(&gd.tag_set, &gdrom_mq_ops, 1,
795 BLK_MQ_F_SHOULD_MERGE | BLK_MQ_F_BLOCKING);
796 if (IS_ERR(gd.gdrom_rq)) {
797 err = PTR_ERR(gd.gdrom_rq);
799 goto probe_fail_requestq;
802 blk_queue_bounce_limit(gd.gdrom_rq, BLK_BOUNCE_HIGH);
804 err = probe_gdrom_setupqueue();
808 gd.toc = kzalloc(sizeof(struct gdromtoc), GFP_KERNEL);
817 blk_cleanup_queue(gd.gdrom_rq);
818 blk_mq_free_tag_set(&gd.tag_set);
820 free_irq(HW_EVENT_GDROM_DMA, &gd);
821 free_irq(HW_EVENT_GDROM_CMD, &gd);
822 probe_fail_cmdirq_register:
823 probe_fail_cdrom_register:
824 del_gendisk(gd.disk);
828 unregister_blkdev(gdrom_major, GDROM_DEV_NAME);
830 pr_warning("Probe failed - error is 0x%X\n", err);
834 static int remove_gdrom(struct platform_device *devptr)
836 blk_cleanup_queue(gd.gdrom_rq);
837 blk_mq_free_tag_set(&gd.tag_set);
838 free_irq(HW_EVENT_GDROM_CMD, &gd);
839 free_irq(HW_EVENT_GDROM_DMA, &gd);
840 del_gendisk(gd.disk);
842 unregister_blkdev(gdrom_major, GDROM_DEV_NAME);
843 unregister_cdrom(gd.cd_info);
848 static struct platform_driver gdrom_driver = {
849 .probe = probe_gdrom,
850 .remove = remove_gdrom,
852 .name = GDROM_DEV_NAME,
856 static int __init init_gdrom(void)
860 rc = platform_driver_register(&gdrom_driver);
863 pd = platform_device_register_simple(GDROM_DEV_NAME, -1, NULL, 0);
865 platform_driver_unregister(&gdrom_driver);
871 static void __exit exit_gdrom(void)
873 platform_device_unregister(pd);
874 platform_driver_unregister(&gdrom_driver);
878 module_init(init_gdrom);
879 module_exit(exit_gdrom);
881 MODULE_DESCRIPTION("SEGA Dreamcast GD-ROM Driver");
882 MODULE_LICENSE("GPL");