2 * SCSI Device emulation
4 * Copyright (c) 2006 CodeSourcery.
5 * Based on code by Fabrice Bellard
7 * Written by Paul Brook
9 * 2009-Dec-12 Artyom Tarasenko : implemented stamdard inquiry for the case
10 * when the allocation length of CDB is smaller
12 * 2009-Oct-13 Artyom Tarasenko : implemented the block descriptor in the
13 * MODE SENSE response.
15 * This code is licenced under the LGPL.
17 * Note that this file only handles the SCSI architecture model and device
18 * commands. Emulation of interface/link layer protocols is handled by
19 * the host adapter emulator.
25 #define DPRINTF(fmt, ...) \
26 do { printf("scsi-disk: " fmt , ## __VA_ARGS__); } while (0)
28 #define DPRINTF(fmt, ...) do {} while(0)
31 #define BADF(fmt, ...) \
32 do { fprintf(stderr, "scsi-disk: " fmt , ## __VA_ARGS__); } while (0)
34 #include "qemu-common.h"
35 #include "qemu-error.h"
37 #include "scsi-defs.h"
41 #define SCSI_DMA_BUF_SIZE 131072
42 #define SCSI_MAX_INQUIRY_LEN 256
44 #define SCSI_REQ_STATUS_RETRY 0x01
45 #define SCSI_REQ_STATUS_RETRY_TYPE_MASK 0x06
46 #define SCSI_REQ_STATUS_RETRY_READ 0x00
47 #define SCSI_REQ_STATUS_RETRY_WRITE 0x02
48 #define SCSI_REQ_STATUS_RETRY_FLUSH 0x04
50 typedef struct SCSIDiskState SCSIDiskState
;
52 typedef struct SCSISense
{
56 typedef struct SCSIDiskReq
{
58 /* ??? We should probably keep track of whether the data transfer is
59 a read or a write. Currently we rely on the host getting it right. */
60 /* Both sector and sector_count are in terms of qemu 512 byte blocks. */
62 uint32_t sector_count
;
72 /* The qemu block layer uses a fixed 512 byte sector size.
73 This is the number of 512 byte blocks in a single scsi sector. */
82 static int scsi_handle_rw_error(SCSIDiskReq
*r
, int error
, int type
);
83 static int scsi_disk_emulate_command(SCSIDiskReq
*r
, uint8_t *outbuf
);
85 static SCSIDiskReq
*scsi_new_request(SCSIDiskState
*s
, uint32_t tag
,
91 req
= scsi_req_alloc(sizeof(SCSIDiskReq
), &s
->qdev
, tag
, lun
);
92 r
= DO_UPCAST(SCSIDiskReq
, req
, req
);
93 r
->iov
.iov_base
= qemu_blockalign(s
->bs
, SCSI_DMA_BUF_SIZE
);
97 static void scsi_remove_request(SCSIDiskReq
*r
)
99 qemu_vfree(r
->iov
.iov_base
);
100 scsi_req_free(&r
->req
);
103 static SCSIDiskReq
*scsi_find_request(SCSIDiskState
*s
, uint32_t tag
)
105 return DO_UPCAST(SCSIDiskReq
, req
, scsi_req_find(&s
->qdev
, tag
));
108 static void scsi_disk_clear_sense(SCSIDiskState
*s
)
110 memset(&s
->sense
, 0, sizeof(s
->sense
));
113 static void scsi_disk_set_sense(SCSIDiskState
*s
, uint8_t key
)
118 static void scsi_req_set_status(SCSIDiskReq
*r
, int status
, int sense_code
)
120 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, r
->req
.dev
);
122 r
->req
.status
= status
;
123 scsi_disk_set_sense(s
, sense_code
);
126 /* Helper function for command completion. */
127 static void scsi_command_complete(SCSIDiskReq
*r
, int status
, int sense
)
129 DPRINTF("Command complete tag=0x%x status=%d sense=%d\n",
130 r
->req
.tag
, status
, sense
);
131 scsi_req_set_status(r
, status
, sense
);
132 scsi_req_complete(&r
->req
);
133 scsi_remove_request(r
);
136 /* Cancel a pending data transfer. */
137 static void scsi_cancel_io(SCSIDevice
*d
, uint32_t tag
)
139 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, d
);
141 DPRINTF("Cancel tag=0x%x\n", tag
);
142 r
= scsi_find_request(s
, tag
);
145 bdrv_aio_cancel(r
->req
.aiocb
);
147 scsi_remove_request(r
);
151 static void scsi_read_complete(void * opaque
, int ret
)
153 SCSIDiskReq
*r
= (SCSIDiskReq
*)opaque
;
159 if (scsi_handle_rw_error(r
, -ret
, SCSI_REQ_STATUS_RETRY_READ
)) {
164 DPRINTF("Data ready tag=0x%x len=%zd\n", r
->req
.tag
, r
->iov
.iov_len
);
166 n
= r
->iov
.iov_len
/ 512;
168 r
->sector_count
-= n
;
169 r
->req
.bus
->complete(r
->req
.bus
, SCSI_REASON_DATA
, r
->req
.tag
, r
->iov
.iov_len
);
173 static void scsi_read_request(SCSIDiskReq
*r
)
175 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, r
->req
.dev
);
178 if (r
->sector_count
== (uint32_t)-1) {
179 DPRINTF("Read buf_len=%zd\n", r
->iov
.iov_len
);
181 r
->req
.bus
->complete(r
->req
.bus
, SCSI_REASON_DATA
, r
->req
.tag
, r
->iov
.iov_len
);
184 DPRINTF("Read sector_count=%d\n", r
->sector_count
);
185 if (r
->sector_count
== 0) {
186 scsi_command_complete(r
, GOOD
, NO_SENSE
);
190 /* No data transfer may already be in progress */
191 assert(r
->req
.aiocb
== NULL
);
194 if (n
> SCSI_DMA_BUF_SIZE
/ 512)
195 n
= SCSI_DMA_BUF_SIZE
/ 512;
197 r
->iov
.iov_len
= n
* 512;
198 qemu_iovec_init_external(&r
->qiov
, &r
->iov
, 1);
199 r
->req
.aiocb
= bdrv_aio_readv(s
->bs
, r
->sector
, &r
->qiov
, n
,
200 scsi_read_complete
, r
);
201 if (r
->req
.aiocb
== NULL
) {
202 scsi_read_complete(r
, -EIO
);
206 /* Read more data from scsi device into buffer. */
207 static void scsi_read_data(SCSIDevice
*d
, uint32_t tag
)
209 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, d
);
212 r
= scsi_find_request(s
, tag
);
214 BADF("Bad read tag 0x%x\n", tag
);
215 /* ??? This is the wrong error. */
216 scsi_command_complete(r
, CHECK_CONDITION
, HARDWARE_ERROR
);
220 scsi_read_request(r
);
223 static int scsi_handle_rw_error(SCSIDiskReq
*r
, int error
, int type
)
225 int is_read
= (type
== SCSI_REQ_STATUS_RETRY_READ
);
226 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, r
->req
.dev
);
227 BlockErrorAction action
= bdrv_get_on_error(s
->bs
, is_read
);
229 if (action
== BLOCK_ERR_IGNORE
) {
230 bdrv_mon_event(s
->bs
, BDRV_ACTION_IGNORE
, is_read
);
234 if ((error
== ENOSPC
&& action
== BLOCK_ERR_STOP_ENOSPC
)
235 || action
== BLOCK_ERR_STOP_ANY
) {
237 type
&= SCSI_REQ_STATUS_RETRY_TYPE_MASK
;
238 r
->status
|= SCSI_REQ_STATUS_RETRY
| type
;
240 bdrv_mon_event(s
->bs
, BDRV_ACTION_STOP
, is_read
);
243 if (type
== SCSI_REQ_STATUS_RETRY_READ
) {
244 r
->req
.bus
->complete(r
->req
.bus
, SCSI_REASON_DATA
, r
->req
.tag
, 0);
246 scsi_command_complete(r
, CHECK_CONDITION
,
248 bdrv_mon_event(s
->bs
, BDRV_ACTION_REPORT
, is_read
);
254 static void scsi_write_complete(void * opaque
, int ret
)
256 SCSIDiskReq
*r
= (SCSIDiskReq
*)opaque
;
263 if (scsi_handle_rw_error(r
, -ret
, SCSI_REQ_STATUS_RETRY_WRITE
)) {
268 n
= r
->iov
.iov_len
/ 512;
270 r
->sector_count
-= n
;
271 if (r
->sector_count
== 0) {
272 scsi_command_complete(r
, GOOD
, NO_SENSE
);
274 len
= r
->sector_count
* 512;
275 if (len
> SCSI_DMA_BUF_SIZE
) {
276 len
= SCSI_DMA_BUF_SIZE
;
278 r
->iov
.iov_len
= len
;
279 DPRINTF("Write complete tag=0x%x more=%d\n", r
->req
.tag
, len
);
280 r
->req
.bus
->complete(r
->req
.bus
, SCSI_REASON_DATA
, r
->req
.tag
, len
);
284 static void scsi_write_request(SCSIDiskReq
*r
)
286 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, r
->req
.dev
);
289 /* No data transfer may already be in progress */
290 assert(r
->req
.aiocb
== NULL
);
292 n
= r
->iov
.iov_len
/ 512;
294 qemu_iovec_init_external(&r
->qiov
, &r
->iov
, 1);
295 r
->req
.aiocb
= bdrv_aio_writev(s
->bs
, r
->sector
, &r
->qiov
, n
,
296 scsi_write_complete
, r
);
297 if (r
->req
.aiocb
== NULL
) {
298 scsi_write_complete(r
, -EIO
);
301 /* Invoke completion routine to fetch data from host. */
302 scsi_write_complete(r
, 0);
306 /* Write data to a scsi device. Returns nonzero on failure.
307 The transfer may complete asynchronously. */
308 static int scsi_write_data(SCSIDevice
*d
, uint32_t tag
)
310 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, d
);
313 DPRINTF("Write data tag=0x%x\n", tag
);
314 r
= scsi_find_request(s
, tag
);
316 BADF("Bad write tag 0x%x\n", tag
);
317 scsi_command_complete(r
, CHECK_CONDITION
, HARDWARE_ERROR
);
321 scsi_write_request(r
);
326 static void scsi_dma_restart_bh(void *opaque
)
328 SCSIDiskState
*s
= opaque
;
332 qemu_bh_delete(s
->bh
);
335 QTAILQ_FOREACH(req
, &s
->qdev
.requests
, next
) {
336 r
= DO_UPCAST(SCSIDiskReq
, req
, req
);
337 if (r
->status
& SCSI_REQ_STATUS_RETRY
) {
338 int status
= r
->status
;
342 ~(SCSI_REQ_STATUS_RETRY
| SCSI_REQ_STATUS_RETRY_TYPE_MASK
);
344 switch (status
& SCSI_REQ_STATUS_RETRY_TYPE_MASK
) {
345 case SCSI_REQ_STATUS_RETRY_READ
:
346 scsi_read_request(r
);
348 case SCSI_REQ_STATUS_RETRY_WRITE
:
349 scsi_write_request(r
);
351 case SCSI_REQ_STATUS_RETRY_FLUSH
:
352 ret
= scsi_disk_emulate_command(r
, r
->iov
.iov_base
);
354 scsi_command_complete(r
, GOOD
, NO_SENSE
);
361 static void scsi_dma_restart_cb(void *opaque
, int running
, int reason
)
363 SCSIDiskState
*s
= opaque
;
369 s
->bh
= qemu_bh_new(scsi_dma_restart_bh
, s
);
370 qemu_bh_schedule(s
->bh
);
374 /* Return a pointer to the data buffer. */
375 static uint8_t *scsi_get_buf(SCSIDevice
*d
, uint32_t tag
)
377 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, d
);
380 r
= scsi_find_request(s
, tag
);
382 BADF("Bad buffer tag 0x%x\n", tag
);
385 return (uint8_t *)r
->iov
.iov_base
;
388 static int scsi_disk_emulate_inquiry(SCSIRequest
*req
, uint8_t *outbuf
)
390 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, req
->dev
);
393 if (req
->cmd
.buf
[1] & 0x2) {
394 /* Command support data - optional, not implemented */
395 BADF("optional INQUIRY command support request not implemented\n");
399 if (req
->cmd
.buf
[1] & 0x1) {
400 /* Vital product data */
401 uint8_t page_code
= req
->cmd
.buf
[2];
402 if (req
->cmd
.xfer
< 4) {
403 BADF("Error: Inquiry (EVPD[%02X]) buffer size %zd is "
404 "less than 4\n", page_code
, req
->cmd
.xfer
);
408 if (bdrv_get_type_hint(s
->bs
) == BDRV_TYPE_CDROM
) {
409 outbuf
[buflen
++] = 5;
411 outbuf
[buflen
++] = 0;
413 outbuf
[buflen
++] = page_code
; // this page
414 outbuf
[buflen
++] = 0x00;
417 case 0x00: /* Supported page codes, mandatory */
420 DPRINTF("Inquiry EVPD[Supported pages] "
421 "buffer size %zd\n", req
->cmd
.xfer
);
423 outbuf
[buflen
++] = 0x00; // list of supported pages (this page)
424 outbuf
[buflen
++] = 0x80; // unit serial number
425 outbuf
[buflen
++] = 0x83; // device identification
426 if (bdrv_get_type_hint(s
->bs
) != BDRV_TYPE_CDROM
) {
427 outbuf
[buflen
++] = 0xb0; // block limits
428 outbuf
[buflen
++] = 0xb2; // thin provisioning
430 outbuf
[pages
] = buflen
- pages
- 1; // number of pages
433 case 0x80: /* Device serial number, optional */
435 int l
= strlen(s
->serial
);
437 if (l
> req
->cmd
.xfer
)
442 DPRINTF("Inquiry EVPD[Serial number] "
443 "buffer size %zd\n", req
->cmd
.xfer
);
444 outbuf
[buflen
++] = l
;
445 memcpy(outbuf
+buflen
, s
->serial
, l
);
450 case 0x83: /* Device identification page, mandatory */
452 int max_len
= 255 - 8;
453 int id_len
= strlen(bdrv_get_device_name(s
->bs
));
455 if (id_len
> max_len
)
457 DPRINTF("Inquiry EVPD[Device identification] "
458 "buffer size %zd\n", req
->cmd
.xfer
);
460 outbuf
[buflen
++] = 4 + id_len
;
461 outbuf
[buflen
++] = 0x2; // ASCII
462 outbuf
[buflen
++] = 0; // not officially assigned
463 outbuf
[buflen
++] = 0; // reserved
464 outbuf
[buflen
++] = id_len
; // length of data following
466 memcpy(outbuf
+buflen
, bdrv_get_device_name(s
->bs
), id_len
);
470 case 0xb0: /* block limits */
472 unsigned int unmap_sectors
=
473 s
->qdev
.conf
.discard_granularity
/ s
->qdev
.blocksize
;
474 unsigned int min_io_size
=
475 s
->qdev
.conf
.min_io_size
/ s
->qdev
.blocksize
;
476 unsigned int opt_io_size
=
477 s
->qdev
.conf
.opt_io_size
/ s
->qdev
.blocksize
;
479 if (bdrv_get_type_hint(s
->bs
) == BDRV_TYPE_CDROM
) {
480 DPRINTF("Inquiry (EVPD[%02X] not supported for CDROM\n",
484 /* required VPD size with unmap support */
485 outbuf
[3] = buflen
= 0x3c;
487 memset(outbuf
+ 4, 0, buflen
- 4);
489 /* optimal transfer length granularity */
490 outbuf
[6] = (min_io_size
>> 8) & 0xff;
491 outbuf
[7] = min_io_size
& 0xff;
493 /* optimal transfer length */
494 outbuf
[12] = (opt_io_size
>> 24) & 0xff;
495 outbuf
[13] = (opt_io_size
>> 16) & 0xff;
496 outbuf
[14] = (opt_io_size
>> 8) & 0xff;
497 outbuf
[15] = opt_io_size
& 0xff;
499 /* optimal unmap granularity */
500 outbuf
[28] = (unmap_sectors
>> 24) & 0xff;
501 outbuf
[29] = (unmap_sectors
>> 16) & 0xff;
502 outbuf
[30] = (unmap_sectors
>> 8) & 0xff;
503 outbuf
[31] = unmap_sectors
& 0xff;
506 case 0xb2: /* thin provisioning */
508 outbuf
[3] = buflen
= 8;
510 outbuf
[5] = 0x40; /* write same with unmap supported */
516 BADF("Error: unsupported Inquiry (EVPD[%02X]) "
517 "buffer size %zd\n", page_code
, req
->cmd
.xfer
);
524 /* Standard INQUIRY data */
525 if (req
->cmd
.buf
[2] != 0) {
526 BADF("Error: Inquiry (STANDARD) page or code "
527 "is non-zero [%02X]\n", req
->cmd
.buf
[2]);
532 if (req
->cmd
.xfer
< 5) {
533 BADF("Error: Inquiry (STANDARD) buffer size %zd "
534 "is less than 5\n", req
->cmd
.xfer
);
538 buflen
= req
->cmd
.xfer
;
539 if (buflen
> SCSI_MAX_INQUIRY_LEN
)
540 buflen
= SCSI_MAX_INQUIRY_LEN
;
542 memset(outbuf
, 0, buflen
);
544 if (req
->lun
|| req
->cmd
.buf
[1] >> 5) {
545 outbuf
[0] = 0x7f; /* LUN not supported */
549 if (bdrv_get_type_hint(s
->bs
) == BDRV_TYPE_CDROM
) {
552 memcpy(&outbuf
[16], "QEMU CD-ROM ", 16);
555 memcpy(&outbuf
[16], "QEMU HARDDISK ", 16);
557 memcpy(&outbuf
[8], "QEMU ", 8);
558 memset(&outbuf
[32], 0, 4);
559 memcpy(&outbuf
[32], s
->version
, MIN(4, strlen(s
->version
)));
561 * We claim conformance to SPC-3, which is required for guests
562 * to ask for modern features like READ CAPACITY(16) or the
563 * block characteristics VPD page by default. Not all of SPC-3
564 * is actually implemented, but we're good enough.
567 outbuf
[3] = 2; /* Format 2 */
570 outbuf
[4] = buflen
- 5; /* Additional Length = (Len - 1) - 4 */
572 /* If the allocation length of CDB is too small,
573 the additional length is not adjusted */
577 /* Sync data transfer and TCQ. */
578 outbuf
[7] = 0x10 | (req
->bus
->tcq
? 0x02 : 0);
582 static int mode_sense_page(SCSIRequest
*req
, int page
, uint8_t *p
,
585 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, req
->dev
);
586 BlockDriverState
*bdrv
= s
->bs
;
587 int cylinders
, heads
, secs
;
590 * If Changeable Values are requested, a mask denoting those mode parameters
591 * that are changeable shall be returned. As we currently don't support
592 * parameter changes via MODE_SELECT all bits are returned set to zero.
593 * The buffer was already menset to zero by the caller of this function.
596 case 4: /* Rigid disk device geometry page. */
599 if (page_control
== 1) { /* Changeable Values */
602 /* if a geometry hint is available, use it */
603 bdrv_get_geometry_hint(bdrv
, &cylinders
, &heads
, &secs
);
604 p
[2] = (cylinders
>> 16) & 0xff;
605 p
[3] = (cylinders
>> 8) & 0xff;
606 p
[4] = cylinders
& 0xff;
608 /* Write precomp start cylinder, disabled */
609 p
[6] = (cylinders
>> 16) & 0xff;
610 p
[7] = (cylinders
>> 8) & 0xff;
611 p
[8] = cylinders
& 0xff;
612 /* Reduced current start cylinder, disabled */
613 p
[9] = (cylinders
>> 16) & 0xff;
614 p
[10] = (cylinders
>> 8) & 0xff;
615 p
[11] = cylinders
& 0xff;
616 /* Device step rate [ns], 200ns */
619 /* Landing zone cylinder */
623 /* Medium rotation rate [rpm], 5400 rpm */
624 p
[20] = (5400 >> 8) & 0xff;
628 case 5: /* Flexible disk device geometry page. */
631 if (page_control
== 1) { /* Changeable Values */
634 /* Transfer rate [kbit/s], 5Mbit/s */
637 /* if a geometry hint is available, use it */
638 bdrv_get_geometry_hint(bdrv
, &cylinders
, &heads
, &secs
);
641 p
[6] = s
->cluster_size
* 2;
642 p
[8] = (cylinders
>> 8) & 0xff;
643 p
[9] = cylinders
& 0xff;
644 /* Write precomp start cylinder, disabled */
645 p
[10] = (cylinders
>> 8) & 0xff;
646 p
[11] = cylinders
& 0xff;
647 /* Reduced current start cylinder, disabled */
648 p
[12] = (cylinders
>> 8) & 0xff;
649 p
[13] = cylinders
& 0xff;
650 /* Device step rate [100us], 100us */
653 /* Device step pulse width [us], 1us */
655 /* Device head settle delay [100us], 100us */
658 /* Motor on delay [0.1s], 0.1s */
660 /* Motor off delay [0.1s], 0.1s */
662 /* Medium rotation rate [rpm], 5400 rpm */
663 p
[28] = (5400 >> 8) & 0xff;
667 case 8: /* Caching page. */
670 if (page_control
== 1) { /* Changeable Values */
673 if (bdrv_enable_write_cache(s
->bs
)) {
678 case 0x2a: /* CD Capabilities and Mechanical Status page. */
679 if (bdrv_get_type_hint(bdrv
) != BDRV_TYPE_CDROM
)
683 if (page_control
== 1) { /* Changeable Values */
686 p
[2] = 3; // CD-R & CD-RW read
687 p
[3] = 0; // Writing not supported
688 p
[4] = 0x7f; /* Audio, composite, digital out,
689 mode 2 form 1&2, multi session */
690 p
[5] = 0xff; /* CD DA, DA accurate, RW supported,
691 RW corrected, C2 errors, ISRC,
693 p
[6] = 0x2d | (bdrv_is_locked(s
->bs
)? 2 : 0);
694 /* Locking supported, jumper present, eject, tray */
695 p
[7] = 0; /* no volume & mute control, no
697 p
[8] = (50 * 176) >> 8; // 50x read speed
698 p
[9] = (50 * 176) & 0xff;
699 p
[10] = 0 >> 8; // No volume
701 p
[12] = 2048 >> 8; // 2M buffer
703 p
[14] = (16 * 176) >> 8; // 16x read speed current
704 p
[15] = (16 * 176) & 0xff;
705 p
[18] = (16 * 176) >> 8; // 16x write speed
706 p
[19] = (16 * 176) & 0xff;
707 p
[20] = (16 * 176) >> 8; // 16x write speed current
708 p
[21] = (16 * 176) & 0xff;
716 static int scsi_disk_emulate_mode_sense(SCSIRequest
*req
, uint8_t *outbuf
)
718 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, req
->dev
);
720 int page
, dbd
, buflen
, page_control
;
722 uint8_t dev_specific_param
;
724 dbd
= req
->cmd
.buf
[1] & 0x8;
725 page
= req
->cmd
.buf
[2] & 0x3f;
726 page_control
= (req
->cmd
.buf
[2] & 0xc0) >> 6;
727 DPRINTF("Mode Sense(%d) (page %d, xfer %zd, page_control %d)\n",
728 (req
->cmd
.buf
[0] == MODE_SENSE
) ? 6 : 10, page
, req
->cmd
.xfer
, page_control
);
729 memset(outbuf
, 0, req
->cmd
.xfer
);
732 if (bdrv_is_read_only(s
->bs
)) {
733 dev_specific_param
= 0x80; /* Readonly. */
735 dev_specific_param
= 0x00;
738 if (req
->cmd
.buf
[0] == MODE_SENSE
) {
739 p
[1] = 0; /* Default media type. */
740 p
[2] = dev_specific_param
;
741 p
[3] = 0; /* Block descriptor length. */
743 } else { /* MODE_SENSE_10 */
744 p
[2] = 0; /* Default media type. */
745 p
[3] = dev_specific_param
;
746 p
[6] = p
[7] = 0; /* Block descriptor length. */
750 bdrv_get_geometry(s
->bs
, &nb_sectors
);
751 if (!dbd
&& nb_sectors
) {
752 if (req
->cmd
.buf
[0] == MODE_SENSE
) {
753 outbuf
[3] = 8; /* Block descriptor length */
754 } else { /* MODE_SENSE_10 */
755 outbuf
[7] = 8; /* Block descriptor length */
757 nb_sectors
/= s
->cluster_size
;
758 if (nb_sectors
> 0xffffff)
760 p
[0] = 0; /* media density code */
761 p
[1] = (nb_sectors
>> 16) & 0xff;
762 p
[2] = (nb_sectors
>> 8) & 0xff;
763 p
[3] = nb_sectors
& 0xff;
764 p
[4] = 0; /* reserved */
765 p
[5] = 0; /* bytes 5-7 are the sector size in bytes */
766 p
[6] = s
->cluster_size
* 2;
771 if (page_control
== 3) { /* Saved Values */
772 return -1; /* ILLEGAL_REQUEST */
780 p
+= mode_sense_page(req
, page
, p
, page_control
);
783 p
+= mode_sense_page(req
, 0x08, p
, page_control
);
784 p
+= mode_sense_page(req
, 0x2a, p
, page_control
);
787 return -1; /* ILLEGAL_REQUEST */
792 * The mode data length field specifies the length in bytes of the
793 * following data that is available to be transferred. The mode data
794 * length does not include itself.
796 if (req
->cmd
.buf
[0] == MODE_SENSE
) {
797 outbuf
[0] = buflen
- 1;
798 } else { /* MODE_SENSE_10 */
799 outbuf
[0] = ((buflen
- 2) >> 8) & 0xff;
800 outbuf
[1] = (buflen
- 2) & 0xff;
802 if (buflen
> req
->cmd
.xfer
)
803 buflen
= req
->cmd
.xfer
;
807 static int scsi_disk_emulate_read_toc(SCSIRequest
*req
, uint8_t *outbuf
)
809 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, req
->dev
);
810 int start_track
, format
, msf
, toclen
;
813 msf
= req
->cmd
.buf
[1] & 2;
814 format
= req
->cmd
.buf
[2] & 0xf;
815 start_track
= req
->cmd
.buf
[6];
816 bdrv_get_geometry(s
->bs
, &nb_sectors
);
817 DPRINTF("Read TOC (track %d format %d msf %d)\n", start_track
, format
, msf
>> 1);
818 nb_sectors
/= s
->cluster_size
;
821 toclen
= cdrom_read_toc(nb_sectors
, outbuf
, msf
, start_track
);
824 /* multi session : only a single session defined */
826 memset(outbuf
, 0, 12);
832 toclen
= cdrom_read_toc_raw(nb_sectors
, outbuf
, msf
, start_track
);
837 if (toclen
> req
->cmd
.xfer
)
838 toclen
= req
->cmd
.xfer
;
842 static int scsi_disk_emulate_command(SCSIDiskReq
*r
, uint8_t *outbuf
)
844 SCSIRequest
*req
= &r
->req
;
845 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, req
->dev
);
850 switch (req
->cmd
.buf
[0]) {
851 case TEST_UNIT_READY
:
852 if (!bdrv_is_inserted(s
->bs
))
856 if (req
->cmd
.xfer
< 4)
857 goto illegal_request
;
858 memset(outbuf
, 0, 4);
860 if (s
->sense
.key
== NOT_READY
&& req
->cmd
.xfer
>= 18) {
861 memset(outbuf
, 0, 18);
864 /* asc 0x3a, ascq 0: Medium not present */
870 outbuf
[2] = s
->sense
.key
;
871 scsi_disk_clear_sense(s
);
874 buflen
= scsi_disk_emulate_inquiry(req
, outbuf
);
876 goto illegal_request
;
880 buflen
= scsi_disk_emulate_mode_sense(req
, outbuf
);
882 goto illegal_request
;
885 buflen
= scsi_disk_emulate_read_toc(req
, outbuf
);
887 goto illegal_request
;
890 if (req
->cmd
.buf
[1] & 1)
891 goto illegal_request
;
894 if (req
->cmd
.buf
[1] & 3)
895 goto illegal_request
;
898 if (req
->cmd
.buf
[1] & 1)
899 goto illegal_request
;
902 if (req
->cmd
.buf
[1] & 3)
903 goto illegal_request
;
906 if (bdrv_get_type_hint(s
->bs
) == BDRV_TYPE_CDROM
&& (req
->cmd
.buf
[4] & 2)) {
907 /* load/eject medium */
908 bdrv_eject(s
->bs
, !(req
->cmd
.buf
[4] & 1));
911 case ALLOW_MEDIUM_REMOVAL
:
912 bdrv_set_locked(s
->bs
, req
->cmd
.buf
[4] & 1);
915 /* The normal LEN field for this command is zero. */
916 memset(outbuf
, 0, 8);
917 bdrv_get_geometry(s
->bs
, &nb_sectors
);
920 nb_sectors
/= s
->cluster_size
;
921 /* Returned value is the address of the last sector. */
923 /* Remember the new size for read/write sanity checking. */
924 s
->max_lba
= nb_sectors
;
925 /* Clip to 2TB, instead of returning capacity modulo 2TB. */
926 if (nb_sectors
> UINT32_MAX
)
927 nb_sectors
= UINT32_MAX
;
928 outbuf
[0] = (nb_sectors
>> 24) & 0xff;
929 outbuf
[1] = (nb_sectors
>> 16) & 0xff;
930 outbuf
[2] = (nb_sectors
>> 8) & 0xff;
931 outbuf
[3] = nb_sectors
& 0xff;
934 outbuf
[6] = s
->cluster_size
* 2;
938 case SYNCHRONIZE_CACHE
:
939 ret
= bdrv_flush(s
->bs
);
941 if (scsi_handle_rw_error(r
, -ret
, SCSI_REQ_STATUS_RETRY_FLUSH
)) {
946 case GET_CONFIGURATION
:
947 memset(outbuf
, 0, 8);
948 /* ??? This should probably return much more information. For now
949 just return the basic header indicating the CD-ROM profile. */
950 outbuf
[7] = 8; // CD-ROM
953 case SERVICE_ACTION_IN
:
954 /* Service Action In subcommands. */
955 if ((req
->cmd
.buf
[1] & 31) == 0x10) {
956 DPRINTF("SAI READ CAPACITY(16)\n");
957 memset(outbuf
, 0, req
->cmd
.xfer
);
958 bdrv_get_geometry(s
->bs
, &nb_sectors
);
961 nb_sectors
/= s
->cluster_size
;
962 /* Returned value is the address of the last sector. */
964 /* Remember the new size for read/write sanity checking. */
965 s
->max_lba
= nb_sectors
;
966 outbuf
[0] = (nb_sectors
>> 56) & 0xff;
967 outbuf
[1] = (nb_sectors
>> 48) & 0xff;
968 outbuf
[2] = (nb_sectors
>> 40) & 0xff;
969 outbuf
[3] = (nb_sectors
>> 32) & 0xff;
970 outbuf
[4] = (nb_sectors
>> 24) & 0xff;
971 outbuf
[5] = (nb_sectors
>> 16) & 0xff;
972 outbuf
[6] = (nb_sectors
>> 8) & 0xff;
973 outbuf
[7] = nb_sectors
& 0xff;
976 outbuf
[10] = s
->cluster_size
* 2;
979 outbuf
[13] = get_physical_block_exp(&s
->qdev
.conf
);
981 /* set TPE bit if the format supports discard */
982 if (s
->qdev
.conf
.discard_granularity
) {
986 /* Protection, exponent and lowest lba field left blank. */
987 buflen
= req
->cmd
.xfer
;
990 DPRINTF("Unsupported Service Action In\n");
991 goto illegal_request
;
993 if (req
->cmd
.xfer
< 16)
994 goto illegal_request
;
995 memset(outbuf
, 0, 16);
1002 DPRINTF("Rezero Unit\n");
1003 if (!bdrv_is_inserted(s
->bs
)) {
1008 goto illegal_request
;
1010 scsi_req_set_status(r
, GOOD
, NO_SENSE
);
1014 scsi_command_complete(r
, CHECK_CONDITION
, NOT_READY
);
1018 scsi_command_complete(r
, CHECK_CONDITION
, ILLEGAL_REQUEST
);
1022 /* Execute a scsi command. Returns the length of the data expected by the
1023 command. This will be Positive for data transfers from the device
1024 (eg. disk reads), negative for transfers to the device (eg. disk writes),
1025 and zero if the command does not transfer any data. */
1027 static int32_t scsi_send_command(SCSIDevice
*d
, uint32_t tag
,
1028 uint8_t *buf
, int lun
)
1030 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, d
);
1039 r
= scsi_find_request(s
, tag
);
1041 BADF("Tag 0x%x already in use\n", tag
);
1042 scsi_cancel_io(d
, tag
);
1044 /* ??? Tags are not unique for different luns. We only implement a
1045 single lun, so this should not matter. */
1046 r
= scsi_new_request(s
, tag
, lun
);
1047 outbuf
= (uint8_t *)r
->iov
.iov_base
;
1049 DPRINTF("Command: lun=%d tag=0x%x data=0x%02x", lun
, tag
, buf
[0]);
1051 if (scsi_req_parse(&r
->req
, buf
) != 0) {
1052 BADF("Unsupported command length, command %x\n", command
);
1058 for (i
= 1; i
< r
->req
.cmd
.len
; i
++) {
1059 printf(" 0x%02x", buf
[i
]);
1065 if (lun
|| buf
[1] >> 5) {
1066 /* Only LUN 0 supported. */
1067 DPRINTF("Unimplemented LUN %d\n", lun
? lun
: buf
[1] >> 5);
1068 if (command
!= REQUEST_SENSE
&& command
!= INQUIRY
)
1072 case TEST_UNIT_READY
:
1082 case ALLOW_MEDIUM_REMOVAL
:
1084 case SYNCHRONIZE_CACHE
:
1086 case GET_CONFIGURATION
:
1087 case SERVICE_ACTION_IN
:
1091 rc
= scsi_disk_emulate_command(r
, outbuf
);
1096 r
->iov
.iov_len
= rc
;
1102 len
= r
->req
.cmd
.xfer
/ d
->blocksize
;
1103 DPRINTF("Read (sector %" PRId64
", count %d)\n", r
->req
.cmd
.lba
, len
);
1104 if (r
->req
.cmd
.lba
> s
->max_lba
)
1106 r
->sector
= r
->req
.cmd
.lba
* s
->cluster_size
;
1107 r
->sector_count
= len
* s
->cluster_size
;
1114 case WRITE_VERIFY_12
:
1115 case WRITE_VERIFY_16
:
1116 len
= r
->req
.cmd
.xfer
/ d
->blocksize
;
1117 DPRINTF("Write %s(sector %" PRId64
", count %d)\n",
1118 (command
& 0xe) == 0xe ? "And Verify " : "",
1119 r
->req
.cmd
.lba
, len
);
1120 if (r
->req
.cmd
.lba
> s
->max_lba
)
1122 r
->sector
= r
->req
.cmd
.lba
* s
->cluster_size
;
1123 r
->sector_count
= len
* s
->cluster_size
;
1127 DPRINTF("Mode Select(6) (len %lu)\n", (long)r
->req
.cmd
.xfer
);
1128 /* We don't support mode parameter changes.
1129 Allow the mode parameter header + block descriptors only. */
1130 if (r
->req
.cmd
.xfer
> 12) {
1134 case MODE_SELECT_10
:
1135 DPRINTF("Mode Select(10) (len %lu)\n", (long)r
->req
.cmd
.xfer
);
1136 /* We don't support mode parameter changes.
1137 Allow the mode parameter header + block descriptors only. */
1138 if (r
->req
.cmd
.xfer
> 16) {
1144 DPRINTF("Seek(%d) (sector %" PRId64
")\n", command
== SEEK_6
? 6 : 10,
1146 if (r
->req
.cmd
.lba
> s
->max_lba
) {
1151 len
= r
->req
.cmd
.xfer
/ d
->blocksize
;
1153 DPRINTF("WRITE SAME(16) (sector %" PRId64
", count %d)\n",
1154 r
->req
.cmd
.lba
, len
);
1156 if (r
->req
.cmd
.lba
> s
->max_lba
) {
1161 * We only support WRITE SAME with the unmap bit set for now.
1163 if (!(buf
[1] & 0x8)) {
1167 rc
= bdrv_discard(s
->bs
, r
->req
.cmd
.lba
* s
->cluster_size
,
1168 len
* s
->cluster_size
);
1170 /* XXX: better error code ?*/
1176 DPRINTF("Unknown SCSI command (%2.2x)\n", buf
[0]);
1178 scsi_command_complete(r
, CHECK_CONDITION
, ILLEGAL_REQUEST
);
1181 scsi_command_complete(r
, CHECK_CONDITION
, HARDWARE_ERROR
);
1184 if (r
->sector_count
== 0 && r
->iov
.iov_len
== 0) {
1185 scsi_command_complete(r
, GOOD
, NO_SENSE
);
1187 len
= r
->sector_count
* 512 + r
->iov
.iov_len
;
1191 if (!r
->sector_count
)
1192 r
->sector_count
= -1;
1197 static void scsi_disk_purge_requests(SCSIDiskState
*s
)
1201 while (!QTAILQ_EMPTY(&s
->qdev
.requests
)) {
1202 r
= DO_UPCAST(SCSIDiskReq
, req
, QTAILQ_FIRST(&s
->qdev
.requests
));
1204 bdrv_aio_cancel(r
->req
.aiocb
);
1206 scsi_remove_request(r
);
1210 static void scsi_disk_reset(DeviceState
*dev
)
1212 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
.qdev
, dev
);
1213 uint64_t nb_sectors
;
1215 scsi_disk_purge_requests(s
);
1217 bdrv_get_geometry(s
->bs
, &nb_sectors
);
1218 nb_sectors
/= s
->cluster_size
;
1222 s
->max_lba
= nb_sectors
;
1225 static void scsi_destroy(SCSIDevice
*dev
)
1227 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, dev
);
1229 scsi_disk_purge_requests(s
);
1230 blockdev_mark_auto_del(s
->qdev
.conf
.bs
);
1233 static int scsi_disk_initfn(SCSIDevice
*dev
)
1235 SCSIDiskState
*s
= DO_UPCAST(SCSIDiskState
, qdev
, dev
);
1239 if (!s
->qdev
.conf
.bs
) {
1240 error_report("scsi-disk: drive property not set");
1243 s
->bs
= s
->qdev
.conf
.bs
;
1244 is_cd
= bdrv_get_type_hint(s
->bs
) == BDRV_TYPE_CDROM
;
1246 if (!is_cd
&& !bdrv_is_inserted(s
->bs
)) {
1247 error_report("Device needs media, but drive is empty");
1252 /* try to fall back to value set with legacy -drive serial=... */
1253 dinfo
= drive_get_by_blockdev(s
->bs
);
1254 s
->serial
= qemu_strdup(*dinfo
->serial
? dinfo
->serial
: "0");
1258 s
->version
= qemu_strdup(QEMU_VERSION
);
1261 if (bdrv_is_sg(s
->bs
)) {
1262 error_report("scsi-disk: unwanted /dev/sg*");
1267 s
->qdev
.blocksize
= 2048;
1269 s
->qdev
.blocksize
= s
->qdev
.conf
.logical_block_size
;
1271 s
->cluster_size
= s
->qdev
.blocksize
/ 512;
1272 s
->bs
->buffer_alignment
= s
->qdev
.blocksize
;
1274 s
->qdev
.type
= TYPE_DISK
;
1275 qemu_add_vm_change_state_handler(scsi_dma_restart_cb
, s
);
1276 bdrv_set_removable(s
->bs
, is_cd
);
1277 add_boot_device_path(s
->qdev
.conf
.bootindex
, &dev
->qdev
, ",0");
1281 static SCSIDeviceInfo scsi_disk_info
= {
1282 .qdev
.name
= "scsi-disk",
1283 .qdev
.fw_name
= "disk",
1284 .qdev
.desc
= "virtual scsi disk or cdrom",
1285 .qdev
.size
= sizeof(SCSIDiskState
),
1286 .qdev
.reset
= scsi_disk_reset
,
1287 .init
= scsi_disk_initfn
,
1288 .destroy
= scsi_destroy
,
1289 .send_command
= scsi_send_command
,
1290 .read_data
= scsi_read_data
,
1291 .write_data
= scsi_write_data
,
1292 .cancel_io
= scsi_cancel_io
,
1293 .get_buf
= scsi_get_buf
,
1294 .qdev
.props
= (Property
[]) {
1295 DEFINE_BLOCK_PROPERTIES(SCSIDiskState
, qdev
.conf
),
1296 DEFINE_PROP_STRING("ver", SCSIDiskState
, version
),
1297 DEFINE_PROP_STRING("serial", SCSIDiskState
, serial
),
1298 DEFINE_PROP_END_OF_LIST(),
1302 static void scsi_disk_register_devices(void)
1304 scsi_qdev_register(&scsi_disk_info
);
1306 device_init(scsi_disk_register_devices
)