xref: /qemu/hw/block/virtio-blk.c (revision f2ad72b3)
1 /*
2  * Virtio Block Device
3  *
4  * Copyright IBM, Corp. 2007
5  *
6  * Authors:
7  *  Anthony Liguori   <aliguori@us.ibm.com>
8  *
9  * This work is licensed under the terms of the GNU GPL, version 2.  See
10  * the COPYING file in the top-level directory.
11  *
12  */
13 
14 #include "qemu/osdep.h"
15 #include "qemu-common.h"
16 #include "qemu/iov.h"
17 #include "qemu/error-report.h"
18 #include "trace.h"
19 #include "hw/block/block.h"
20 #include "sysemu/block-backend.h"
21 #include "sysemu/blockdev.h"
22 #include "hw/virtio/virtio-blk.h"
23 #include "dataplane/virtio-blk.h"
24 #include "migration/migration.h"
25 #include "block/scsi.h"
26 #ifdef __linux__
27 # include <scsi/sg.h>
28 #endif
29 #include "hw/virtio/virtio-bus.h"
30 #include "hw/virtio/virtio-access.h"
31 
32 VirtIOBlockReq *virtio_blk_alloc_request(VirtIOBlock *s)
33 {
34     VirtIOBlockReq *req = g_new(VirtIOBlockReq, 1);
35     req->dev = s;
36     req->qiov.size = 0;
37     req->in_len = 0;
38     req->next = NULL;
39     req->mr_next = NULL;
40     return req;
41 }
42 
43 void virtio_blk_free_request(VirtIOBlockReq *req)
44 {
45     if (req) {
46         g_free(req);
47     }
48 }
49 
50 static void virtio_blk_complete_request(VirtIOBlockReq *req,
51                                         unsigned char status)
52 {
53     VirtIOBlock *s = req->dev;
54     VirtIODevice *vdev = VIRTIO_DEVICE(s);
55 
56     trace_virtio_blk_req_complete(req, status);
57 
58     stb_p(&req->in->status, status);
59     virtqueue_push(s->vq, &req->elem, req->in_len);
60     virtio_notify(vdev, s->vq);
61 }
62 
63 static void virtio_blk_req_complete(VirtIOBlockReq *req, unsigned char status)
64 {
65     req->dev->complete_request(req, status);
66 }
67 
68 static int virtio_blk_handle_rw_error(VirtIOBlockReq *req, int error,
69     bool is_read)
70 {
71     BlockErrorAction action = blk_get_error_action(req->dev->blk,
72                                                    is_read, error);
73     VirtIOBlock *s = req->dev;
74 
75     if (action == BLOCK_ERROR_ACTION_STOP) {
76         /* Break the link as the next request is going to be parsed from the
77          * ring again. Otherwise we may end up doing a double completion! */
78         req->mr_next = NULL;
79         req->next = s->rq;
80         s->rq = req;
81     } else if (action == BLOCK_ERROR_ACTION_REPORT) {
82         virtio_blk_req_complete(req, VIRTIO_BLK_S_IOERR);
83         block_acct_failed(blk_get_stats(s->blk), &req->acct);
84         virtio_blk_free_request(req);
85     }
86 
87     blk_error_action(s->blk, action, is_read, error);
88     return action != BLOCK_ERROR_ACTION_IGNORE;
89 }
90 
91 static void virtio_blk_rw_complete(void *opaque, int ret)
92 {
93     VirtIOBlockReq *next = opaque;
94 
95     while (next) {
96         VirtIOBlockReq *req = next;
97         next = req->mr_next;
98         trace_virtio_blk_rw_complete(req, ret);
99 
100         if (req->qiov.nalloc != -1) {
101             /* If nalloc is != 1 req->qiov is a local copy of the original
102              * external iovec. It was allocated in submit_merged_requests
103              * to be able to merge requests. */
104             qemu_iovec_destroy(&req->qiov);
105         }
106 
107         if (ret) {
108             int p = virtio_ldl_p(VIRTIO_DEVICE(req->dev), &req->out.type);
109             bool is_read = !(p & VIRTIO_BLK_T_OUT);
110             /* Note that memory may be dirtied on read failure.  If the
111              * virtio request is not completed here, as is the case for
112              * BLOCK_ERROR_ACTION_STOP, the memory may not be copied
113              * correctly during live migration.  While this is ugly,
114              * it is acceptable because the device is free to write to
115              * the memory until the request is completed (which will
116              * happen on the other side of the migration).
117              */
118             if (virtio_blk_handle_rw_error(req, -ret, is_read)) {
119                 continue;
120             }
121         }
122 
123         virtio_blk_req_complete(req, VIRTIO_BLK_S_OK);
124         block_acct_done(blk_get_stats(req->dev->blk), &req->acct);
125         virtio_blk_free_request(req);
126     }
127 }
128 
129 static void virtio_blk_flush_complete(void *opaque, int ret)
130 {
131     VirtIOBlockReq *req = opaque;
132 
133     if (ret) {
134         if (virtio_blk_handle_rw_error(req, -ret, 0)) {
135             return;
136         }
137     }
138 
139     virtio_blk_req_complete(req, VIRTIO_BLK_S_OK);
140     block_acct_done(blk_get_stats(req->dev->blk), &req->acct);
141     virtio_blk_free_request(req);
142 }
143 
144 #ifdef __linux__
145 
146 typedef struct {
147     VirtIOBlockReq *req;
148     struct sg_io_hdr hdr;
149 } VirtIOBlockIoctlReq;
150 
151 static void virtio_blk_ioctl_complete(void *opaque, int status)
152 {
153     VirtIOBlockIoctlReq *ioctl_req = opaque;
154     VirtIOBlockReq *req = ioctl_req->req;
155     VirtIODevice *vdev = VIRTIO_DEVICE(req->dev);
156     struct virtio_scsi_inhdr *scsi;
157     struct sg_io_hdr *hdr;
158 
159     scsi = (void *)req->elem.in_sg[req->elem.in_num - 2].iov_base;
160 
161     if (status) {
162         status = VIRTIO_BLK_S_UNSUPP;
163         virtio_stl_p(vdev, &scsi->errors, 255);
164         goto out;
165     }
166 
167     hdr = &ioctl_req->hdr;
168     /*
169      * From SCSI-Generic-HOWTO: "Some lower level drivers (e.g. ide-scsi)
170      * clear the masked_status field [hence status gets cleared too, see
171      * block/scsi_ioctl.c] even when a CHECK_CONDITION or COMMAND_TERMINATED
172      * status has occurred.  However they do set DRIVER_SENSE in driver_status
173      * field. Also a (sb_len_wr > 0) indicates there is a sense buffer.
174      */
175     if (hdr->status == 0 && hdr->sb_len_wr > 0) {
176         hdr->status = CHECK_CONDITION;
177     }
178 
179     virtio_stl_p(vdev, &scsi->errors,
180                  hdr->status | (hdr->msg_status << 8) |
181                  (hdr->host_status << 16) | (hdr->driver_status << 24));
182     virtio_stl_p(vdev, &scsi->residual, hdr->resid);
183     virtio_stl_p(vdev, &scsi->sense_len, hdr->sb_len_wr);
184     virtio_stl_p(vdev, &scsi->data_len, hdr->dxfer_len);
185 
186 out:
187     virtio_blk_req_complete(req, status);
188     virtio_blk_free_request(req);
189     g_free(ioctl_req);
190 }
191 
192 #endif
193 
194 static VirtIOBlockReq *virtio_blk_get_request(VirtIOBlock *s)
195 {
196     VirtIOBlockReq *req = virtio_blk_alloc_request(s);
197 
198     if (!virtqueue_pop(s->vq, &req->elem)) {
199         virtio_blk_free_request(req);
200         return NULL;
201     }
202 
203     return req;
204 }
205 
206 static int virtio_blk_handle_scsi_req(VirtIOBlockReq *req)
207 {
208     int status = VIRTIO_BLK_S_OK;
209     struct virtio_scsi_inhdr *scsi = NULL;
210     VirtIODevice *vdev = VIRTIO_DEVICE(req->dev);
211     VirtQueueElement *elem = &req->elem;
212     VirtIOBlock *blk = req->dev;
213 
214 #ifdef __linux__
215     int i;
216     VirtIOBlockIoctlReq *ioctl_req;
217     BlockAIOCB *acb;
218 #endif
219 
220     /*
221      * We require at least one output segment each for the virtio_blk_outhdr
222      * and the SCSI command block.
223      *
224      * We also at least require the virtio_blk_inhdr, the virtio_scsi_inhdr
225      * and the sense buffer pointer in the input segments.
226      */
227     if (elem->out_num < 2 || elem->in_num < 3) {
228         status = VIRTIO_BLK_S_IOERR;
229         goto fail;
230     }
231 
232     /*
233      * The scsi inhdr is placed in the second-to-last input segment, just
234      * before the regular inhdr.
235      */
236     scsi = (void *)elem->in_sg[elem->in_num - 2].iov_base;
237 
238     if (!blk->conf.scsi) {
239         status = VIRTIO_BLK_S_UNSUPP;
240         goto fail;
241     }
242 
243     /*
244      * No support for bidirection commands yet.
245      */
246     if (elem->out_num > 2 && elem->in_num > 3) {
247         status = VIRTIO_BLK_S_UNSUPP;
248         goto fail;
249     }
250 
251 #ifdef __linux__
252     ioctl_req = g_new0(VirtIOBlockIoctlReq, 1);
253     ioctl_req->req = req;
254     ioctl_req->hdr.interface_id = 'S';
255     ioctl_req->hdr.cmd_len = elem->out_sg[1].iov_len;
256     ioctl_req->hdr.cmdp = elem->out_sg[1].iov_base;
257     ioctl_req->hdr.dxfer_len = 0;
258 
259     if (elem->out_num > 2) {
260         /*
261          * If there are more than the minimally required 2 output segments
262          * there is write payload starting from the third iovec.
263          */
264         ioctl_req->hdr.dxfer_direction = SG_DXFER_TO_DEV;
265         ioctl_req->hdr.iovec_count = elem->out_num - 2;
266 
267         for (i = 0; i < ioctl_req->hdr.iovec_count; i++) {
268             ioctl_req->hdr.dxfer_len += elem->out_sg[i + 2].iov_len;
269         }
270 
271         ioctl_req->hdr.dxferp = elem->out_sg + 2;
272 
273     } else if (elem->in_num > 3) {
274         /*
275          * If we have more than 3 input segments the guest wants to actually
276          * read data.
277          */
278         ioctl_req->hdr.dxfer_direction = SG_DXFER_FROM_DEV;
279         ioctl_req->hdr.iovec_count = elem->in_num - 3;
280         for (i = 0; i < ioctl_req->hdr.iovec_count; i++) {
281             ioctl_req->hdr.dxfer_len += elem->in_sg[i].iov_len;
282         }
283 
284         ioctl_req->hdr.dxferp = elem->in_sg;
285     } else {
286         /*
287          * Some SCSI commands don't actually transfer any data.
288          */
289         ioctl_req->hdr.dxfer_direction = SG_DXFER_NONE;
290     }
291 
292     ioctl_req->hdr.sbp = elem->in_sg[elem->in_num - 3].iov_base;
293     ioctl_req->hdr.mx_sb_len = elem->in_sg[elem->in_num - 3].iov_len;
294 
295     acb = blk_aio_ioctl(blk->blk, SG_IO, &ioctl_req->hdr,
296                         virtio_blk_ioctl_complete, ioctl_req);
297     if (!acb) {
298         g_free(ioctl_req);
299         status = VIRTIO_BLK_S_UNSUPP;
300         goto fail;
301     }
302     return -EINPROGRESS;
303 #else
304     abort();
305 #endif
306 
307 fail:
308     /* Just put anything nonzero so that the ioctl fails in the guest.  */
309     if (scsi) {
310         virtio_stl_p(vdev, &scsi->errors, 255);
311     }
312     return status;
313 }
314 
315 static void virtio_blk_handle_scsi(VirtIOBlockReq *req)
316 {
317     int status;
318 
319     status = virtio_blk_handle_scsi_req(req);
320     if (status != -EINPROGRESS) {
321         virtio_blk_req_complete(req, status);
322         virtio_blk_free_request(req);
323     }
324 }
325 
326 static inline void submit_requests(BlockBackend *blk, MultiReqBuffer *mrb,
327                                    int start, int num_reqs, int niov)
328 {
329     QEMUIOVector *qiov = &mrb->reqs[start]->qiov;
330     int64_t sector_num = mrb->reqs[start]->sector_num;
331     int nb_sectors = mrb->reqs[start]->qiov.size / BDRV_SECTOR_SIZE;
332     bool is_write = mrb->is_write;
333 
334     if (num_reqs > 1) {
335         int i;
336         struct iovec *tmp_iov = qiov->iov;
337         int tmp_niov = qiov->niov;
338 
339         /* mrb->reqs[start]->qiov was initialized from external so we can't
340          * modifiy it here. We need to initialize it locally and then add the
341          * external iovecs. */
342         qemu_iovec_init(qiov, niov);
343 
344         for (i = 0; i < tmp_niov; i++) {
345             qemu_iovec_add(qiov, tmp_iov[i].iov_base, tmp_iov[i].iov_len);
346         }
347 
348         for (i = start + 1; i < start + num_reqs; i++) {
349             qemu_iovec_concat(qiov, &mrb->reqs[i]->qiov, 0,
350                               mrb->reqs[i]->qiov.size);
351             mrb->reqs[i - 1]->mr_next = mrb->reqs[i];
352             nb_sectors += mrb->reqs[i]->qiov.size / BDRV_SECTOR_SIZE;
353         }
354         assert(nb_sectors == qiov->size / BDRV_SECTOR_SIZE);
355 
356         trace_virtio_blk_submit_multireq(mrb, start, num_reqs, sector_num,
357                                          nb_sectors, is_write);
358         block_acct_merge_done(blk_get_stats(blk),
359                               is_write ? BLOCK_ACCT_WRITE : BLOCK_ACCT_READ,
360                               num_reqs - 1);
361     }
362 
363     if (is_write) {
364         blk_aio_writev(blk, sector_num, qiov, nb_sectors,
365                        virtio_blk_rw_complete, mrb->reqs[start]);
366     } else {
367         blk_aio_readv(blk, sector_num, qiov, nb_sectors,
368                       virtio_blk_rw_complete, mrb->reqs[start]);
369     }
370 }
371 
372 static int multireq_compare(const void *a, const void *b)
373 {
374     const VirtIOBlockReq *req1 = *(VirtIOBlockReq **)a,
375                          *req2 = *(VirtIOBlockReq **)b;
376 
377     /*
378      * Note that we can't simply subtract sector_num1 from sector_num2
379      * here as that could overflow the return value.
380      */
381     if (req1->sector_num > req2->sector_num) {
382         return 1;
383     } else if (req1->sector_num < req2->sector_num) {
384         return -1;
385     } else {
386         return 0;
387     }
388 }
389 
390 void virtio_blk_submit_multireq(BlockBackend *blk, MultiReqBuffer *mrb)
391 {
392     int i = 0, start = 0, num_reqs = 0, niov = 0, nb_sectors = 0;
393     int max_xfer_len = 0;
394     int64_t sector_num = 0;
395 
396     if (mrb->num_reqs == 1) {
397         submit_requests(blk, mrb, 0, 1, -1);
398         mrb->num_reqs = 0;
399         return;
400     }
401 
402     max_xfer_len = blk_get_max_transfer_length(mrb->reqs[0]->dev->blk);
403     max_xfer_len = MIN_NON_ZERO(max_xfer_len, BDRV_REQUEST_MAX_SECTORS);
404 
405     qsort(mrb->reqs, mrb->num_reqs, sizeof(*mrb->reqs),
406           &multireq_compare);
407 
408     for (i = 0; i < mrb->num_reqs; i++) {
409         VirtIOBlockReq *req = mrb->reqs[i];
410         if (num_reqs > 0) {
411             /*
412              * NOTE: We cannot merge the requests in below situations:
413              * 1. requests are not sequential
414              * 2. merge would exceed maximum number of IOVs
415              * 3. merge would exceed maximum transfer length of backend device
416              */
417             if (sector_num + nb_sectors != req->sector_num ||
418                 niov > blk_get_max_iov(blk) - req->qiov.niov ||
419                 req->qiov.size / BDRV_SECTOR_SIZE > max_xfer_len ||
420                 nb_sectors > max_xfer_len - req->qiov.size / BDRV_SECTOR_SIZE) {
421                 submit_requests(blk, mrb, start, num_reqs, niov);
422                 num_reqs = 0;
423             }
424         }
425 
426         if (num_reqs == 0) {
427             sector_num = req->sector_num;
428             nb_sectors = niov = 0;
429             start = i;
430         }
431 
432         nb_sectors += req->qiov.size / BDRV_SECTOR_SIZE;
433         niov += req->qiov.niov;
434         num_reqs++;
435     }
436 
437     submit_requests(blk, mrb, start, num_reqs, niov);
438     mrb->num_reqs = 0;
439 }
440 
441 static void virtio_blk_handle_flush(VirtIOBlockReq *req, MultiReqBuffer *mrb)
442 {
443     block_acct_start(blk_get_stats(req->dev->blk), &req->acct, 0,
444                      BLOCK_ACCT_FLUSH);
445 
446     /*
447      * Make sure all outstanding writes are posted to the backing device.
448      */
449     if (mrb->is_write && mrb->num_reqs > 0) {
450         virtio_blk_submit_multireq(req->dev->blk, mrb);
451     }
452     blk_aio_flush(req->dev->blk, virtio_blk_flush_complete, req);
453 }
454 
455 static bool virtio_blk_sect_range_ok(VirtIOBlock *dev,
456                                      uint64_t sector, size_t size)
457 {
458     uint64_t nb_sectors = size >> BDRV_SECTOR_BITS;
459     uint64_t total_sectors;
460 
461     if (nb_sectors > BDRV_REQUEST_MAX_SECTORS) {
462         return false;
463     }
464     if (sector & dev->sector_mask) {
465         return false;
466     }
467     if (size % dev->conf.conf.logical_block_size) {
468         return false;
469     }
470     blk_get_geometry(dev->blk, &total_sectors);
471     if (sector > total_sectors || nb_sectors > total_sectors - sector) {
472         return false;
473     }
474     return true;
475 }
476 
477 void virtio_blk_handle_request(VirtIOBlockReq *req, MultiReqBuffer *mrb)
478 {
479     uint32_t type;
480     struct iovec *in_iov = req->elem.in_sg;
481     struct iovec *iov = req->elem.out_sg;
482     unsigned in_num = req->elem.in_num;
483     unsigned out_num = req->elem.out_num;
484 
485     if (req->elem.out_num < 1 || req->elem.in_num < 1) {
486         error_report("virtio-blk missing headers");
487         exit(1);
488     }
489 
490     if (unlikely(iov_to_buf(iov, out_num, 0, &req->out,
491                             sizeof(req->out)) != sizeof(req->out))) {
492         error_report("virtio-blk request outhdr too short");
493         exit(1);
494     }
495 
496     iov_discard_front(&iov, &out_num, sizeof(req->out));
497 
498     if (in_iov[in_num - 1].iov_len < sizeof(struct virtio_blk_inhdr)) {
499         error_report("virtio-blk request inhdr too short");
500         exit(1);
501     }
502 
503     /* We always touch the last byte, so just see how big in_iov is.  */
504     req->in_len = iov_size(in_iov, in_num);
505     req->in = (void *)in_iov[in_num - 1].iov_base
506               + in_iov[in_num - 1].iov_len
507               - sizeof(struct virtio_blk_inhdr);
508     iov_discard_back(in_iov, &in_num, sizeof(struct virtio_blk_inhdr));
509 
510     type = virtio_ldl_p(VIRTIO_DEVICE(req->dev), &req->out.type);
511 
512     /* VIRTIO_BLK_T_OUT defines the command direction. VIRTIO_BLK_T_BARRIER
513      * is an optional flag. Although a guest should not send this flag if
514      * not negotiated we ignored it in the past. So keep ignoring it. */
515     switch (type & ~(VIRTIO_BLK_T_OUT | VIRTIO_BLK_T_BARRIER)) {
516     case VIRTIO_BLK_T_IN:
517     {
518         bool is_write = type & VIRTIO_BLK_T_OUT;
519         req->sector_num = virtio_ldq_p(VIRTIO_DEVICE(req->dev),
520                                        &req->out.sector);
521 
522         if (is_write) {
523             qemu_iovec_init_external(&req->qiov, iov, out_num);
524             trace_virtio_blk_handle_write(req, req->sector_num,
525                                           req->qiov.size / BDRV_SECTOR_SIZE);
526         } else {
527             qemu_iovec_init_external(&req->qiov, in_iov, in_num);
528             trace_virtio_blk_handle_read(req, req->sector_num,
529                                          req->qiov.size / BDRV_SECTOR_SIZE);
530         }
531 
532         if (!virtio_blk_sect_range_ok(req->dev, req->sector_num,
533                                       req->qiov.size)) {
534             virtio_blk_req_complete(req, VIRTIO_BLK_S_IOERR);
535             block_acct_invalid(blk_get_stats(req->dev->blk),
536                                is_write ? BLOCK_ACCT_WRITE : BLOCK_ACCT_READ);
537             virtio_blk_free_request(req);
538             return;
539         }
540 
541         block_acct_start(blk_get_stats(req->dev->blk),
542                          &req->acct, req->qiov.size,
543                          is_write ? BLOCK_ACCT_WRITE : BLOCK_ACCT_READ);
544 
545         /* merge would exceed maximum number of requests or IO direction
546          * changes */
547         if (mrb->num_reqs > 0 && (mrb->num_reqs == VIRTIO_BLK_MAX_MERGE_REQS ||
548                                   is_write != mrb->is_write ||
549                                   !req->dev->conf.request_merging)) {
550             virtio_blk_submit_multireq(req->dev->blk, mrb);
551         }
552 
553         assert(mrb->num_reqs < VIRTIO_BLK_MAX_MERGE_REQS);
554         mrb->reqs[mrb->num_reqs++] = req;
555         mrb->is_write = is_write;
556         break;
557     }
558     case VIRTIO_BLK_T_FLUSH:
559         virtio_blk_handle_flush(req, mrb);
560         break;
561     case VIRTIO_BLK_T_SCSI_CMD:
562         virtio_blk_handle_scsi(req);
563         break;
564     case VIRTIO_BLK_T_GET_ID:
565     {
566         VirtIOBlock *s = req->dev;
567 
568         /*
569          * NB: per existing s/n string convention the string is
570          * terminated by '\0' only when shorter than buffer.
571          */
572         const char *serial = s->conf.serial ? s->conf.serial : "";
573         size_t size = MIN(strlen(serial) + 1,
574                           MIN(iov_size(in_iov, in_num),
575                               VIRTIO_BLK_ID_BYTES));
576         iov_from_buf(in_iov, in_num, 0, serial, size);
577         virtio_blk_req_complete(req, VIRTIO_BLK_S_OK);
578         virtio_blk_free_request(req);
579         break;
580     }
581     default:
582         virtio_blk_req_complete(req, VIRTIO_BLK_S_UNSUPP);
583         virtio_blk_free_request(req);
584     }
585 }
586 
587 static void virtio_blk_handle_output(VirtIODevice *vdev, VirtQueue *vq)
588 {
589     VirtIOBlock *s = VIRTIO_BLK(vdev);
590     VirtIOBlockReq *req;
591     MultiReqBuffer mrb = {};
592 
593     /* Some guests kick before setting VIRTIO_CONFIG_S_DRIVER_OK so start
594      * dataplane here instead of waiting for .set_status().
595      */
596     if (s->dataplane) {
597         virtio_blk_data_plane_start(s->dataplane);
598         return;
599     }
600 
601     blk_io_plug(s->blk);
602 
603     while ((req = virtio_blk_get_request(s))) {
604         virtio_blk_handle_request(req, &mrb);
605     }
606 
607     if (mrb.num_reqs) {
608         virtio_blk_submit_multireq(s->blk, &mrb);
609     }
610 
611     blk_io_unplug(s->blk);
612 }
613 
614 static void virtio_blk_dma_restart_bh(void *opaque)
615 {
616     VirtIOBlock *s = opaque;
617     VirtIOBlockReq *req = s->rq;
618     MultiReqBuffer mrb = {};
619 
620     qemu_bh_delete(s->bh);
621     s->bh = NULL;
622 
623     s->rq = NULL;
624 
625     while (req) {
626         VirtIOBlockReq *next = req->next;
627         virtio_blk_handle_request(req, &mrb);
628         req = next;
629     }
630 
631     if (mrb.num_reqs) {
632         virtio_blk_submit_multireq(s->blk, &mrb);
633     }
634 }
635 
636 static void virtio_blk_dma_restart_cb(void *opaque, int running,
637                                       RunState state)
638 {
639     VirtIOBlock *s = opaque;
640 
641     if (!running) {
642         return;
643     }
644 
645     if (!s->bh) {
646         s->bh = aio_bh_new(blk_get_aio_context(s->conf.conf.blk),
647                            virtio_blk_dma_restart_bh, s);
648         qemu_bh_schedule(s->bh);
649     }
650 }
651 
652 static void virtio_blk_reset(VirtIODevice *vdev)
653 {
654     VirtIOBlock *s = VIRTIO_BLK(vdev);
655     AioContext *ctx;
656 
657     /*
658      * This should cancel pending requests, but can't do nicely until there
659      * are per-device request lists.
660      */
661     ctx = blk_get_aio_context(s->blk);
662     aio_context_acquire(ctx);
663     blk_drain(s->blk);
664 
665     if (s->dataplane) {
666         virtio_blk_data_plane_stop(s->dataplane);
667     }
668     aio_context_release(ctx);
669 
670     blk_set_enable_write_cache(s->blk, s->original_wce);
671 }
672 
673 /* coalesce internal state, copy to pci i/o region 0
674  */
675 static void virtio_blk_update_config(VirtIODevice *vdev, uint8_t *config)
676 {
677     VirtIOBlock *s = VIRTIO_BLK(vdev);
678     BlockConf *conf = &s->conf.conf;
679     struct virtio_blk_config blkcfg;
680     uint64_t capacity;
681     int blk_size = conf->logical_block_size;
682 
683     blk_get_geometry(s->blk, &capacity);
684     memset(&blkcfg, 0, sizeof(blkcfg));
685     virtio_stq_p(vdev, &blkcfg.capacity, capacity);
686     virtio_stl_p(vdev, &blkcfg.seg_max, 128 - 2);
687     virtio_stw_p(vdev, &blkcfg.geometry.cylinders, conf->cyls);
688     virtio_stl_p(vdev, &blkcfg.blk_size, blk_size);
689     virtio_stw_p(vdev, &blkcfg.min_io_size, conf->min_io_size / blk_size);
690     virtio_stw_p(vdev, &blkcfg.opt_io_size, conf->opt_io_size / blk_size);
691     blkcfg.geometry.heads = conf->heads;
692     /*
693      * We must ensure that the block device capacity is a multiple of
694      * the logical block size. If that is not the case, let's use
695      * sector_mask to adopt the geometry to have a correct picture.
696      * For those devices where the capacity is ok for the given geometry
697      * we don't touch the sector value of the geometry, since some devices
698      * (like s390 dasd) need a specific value. Here the capacity is already
699      * cyls*heads*secs*blk_size and the sector value is not block size
700      * divided by 512 - instead it is the amount of blk_size blocks
701      * per track (cylinder).
702      */
703     if (blk_getlength(s->blk) /  conf->heads / conf->secs % blk_size) {
704         blkcfg.geometry.sectors = conf->secs & ~s->sector_mask;
705     } else {
706         blkcfg.geometry.sectors = conf->secs;
707     }
708     blkcfg.size_max = 0;
709     blkcfg.physical_block_exp = get_physical_block_exp(conf);
710     blkcfg.alignment_offset = 0;
711     blkcfg.wce = blk_enable_write_cache(s->blk);
712     memcpy(config, &blkcfg, sizeof(struct virtio_blk_config));
713 }
714 
715 static void virtio_blk_set_config(VirtIODevice *vdev, const uint8_t *config)
716 {
717     VirtIOBlock *s = VIRTIO_BLK(vdev);
718     struct virtio_blk_config blkcfg;
719 
720     memcpy(&blkcfg, config, sizeof(blkcfg));
721 
722     aio_context_acquire(blk_get_aio_context(s->blk));
723     blk_set_enable_write_cache(s->blk, blkcfg.wce != 0);
724     aio_context_release(blk_get_aio_context(s->blk));
725 }
726 
727 static uint64_t virtio_blk_get_features(VirtIODevice *vdev, uint64_t features,
728                                         Error **errp)
729 {
730     VirtIOBlock *s = VIRTIO_BLK(vdev);
731 
732     virtio_add_feature(&features, VIRTIO_BLK_F_SEG_MAX);
733     virtio_add_feature(&features, VIRTIO_BLK_F_GEOMETRY);
734     virtio_add_feature(&features, VIRTIO_BLK_F_TOPOLOGY);
735     virtio_add_feature(&features, VIRTIO_BLK_F_BLK_SIZE);
736     if (virtio_has_feature(features, VIRTIO_F_VERSION_1)) {
737         if (s->conf.scsi) {
738             error_setg(errp, "Please set scsi=off for virtio-blk devices in order to use virtio 1.0");
739             return 0;
740         }
741     } else {
742         virtio_clear_feature(&features, VIRTIO_F_ANY_LAYOUT);
743         virtio_add_feature(&features, VIRTIO_BLK_F_SCSI);
744     }
745 
746     if (s->conf.config_wce) {
747         virtio_add_feature(&features, VIRTIO_BLK_F_CONFIG_WCE);
748     }
749     if (blk_enable_write_cache(s->blk)) {
750         virtio_add_feature(&features, VIRTIO_BLK_F_WCE);
751     }
752     if (blk_is_read_only(s->blk)) {
753         virtio_add_feature(&features, VIRTIO_BLK_F_RO);
754     }
755 
756     return features;
757 }
758 
759 static void virtio_blk_set_status(VirtIODevice *vdev, uint8_t status)
760 {
761     VirtIOBlock *s = VIRTIO_BLK(vdev);
762 
763     if (s->dataplane && !(status & (VIRTIO_CONFIG_S_DRIVER |
764                                     VIRTIO_CONFIG_S_DRIVER_OK))) {
765         virtio_blk_data_plane_stop(s->dataplane);
766     }
767 
768     if (!(status & VIRTIO_CONFIG_S_DRIVER_OK)) {
769         return;
770     }
771 
772     /* A guest that supports VIRTIO_BLK_F_CONFIG_WCE must be able to send
773      * cache flushes.  Thus, the "auto writethrough" behavior is never
774      * necessary for guests that support the VIRTIO_BLK_F_CONFIG_WCE feature.
775      * Leaving it enabled would break the following sequence:
776      *
777      *     Guest started with "-drive cache=writethrough"
778      *     Guest sets status to 0
779      *     Guest sets DRIVER bit in status field
780      *     Guest reads host features (WCE=0, CONFIG_WCE=1)
781      *     Guest writes guest features (WCE=0, CONFIG_WCE=1)
782      *     Guest writes 1 to the WCE configuration field (writeback mode)
783      *     Guest sets DRIVER_OK bit in status field
784      *
785      * s->blk would erroneously be placed in writethrough mode.
786      */
787     if (!virtio_vdev_has_feature(vdev, VIRTIO_BLK_F_CONFIG_WCE)) {
788         aio_context_acquire(blk_get_aio_context(s->blk));
789         blk_set_enable_write_cache(s->blk,
790                                    virtio_vdev_has_feature(vdev,
791                                                            VIRTIO_BLK_F_WCE));
792         aio_context_release(blk_get_aio_context(s->blk));
793     }
794 }
795 
796 static void virtio_blk_save(QEMUFile *f, void *opaque)
797 {
798     VirtIODevice *vdev = VIRTIO_DEVICE(opaque);
799     VirtIOBlock *s = VIRTIO_BLK(vdev);
800 
801     if (s->dataplane) {
802         virtio_blk_data_plane_stop(s->dataplane);
803     }
804 
805     virtio_save(vdev, f);
806 }
807 
808 static void virtio_blk_save_device(VirtIODevice *vdev, QEMUFile *f)
809 {
810     VirtIOBlock *s = VIRTIO_BLK(vdev);
811     VirtIOBlockReq *req = s->rq;
812 
813     while (req) {
814         qemu_put_sbyte(f, 1);
815         qemu_put_buffer(f, (unsigned char *)&req->elem,
816                         sizeof(VirtQueueElement));
817         req = req->next;
818     }
819     qemu_put_sbyte(f, 0);
820 }
821 
822 static int virtio_blk_load(QEMUFile *f, void *opaque, int version_id)
823 {
824     VirtIOBlock *s = opaque;
825     VirtIODevice *vdev = VIRTIO_DEVICE(s);
826 
827     if (version_id != 2)
828         return -EINVAL;
829 
830     return virtio_load(vdev, f, version_id);
831 }
832 
833 static int virtio_blk_load_device(VirtIODevice *vdev, QEMUFile *f,
834                                   int version_id)
835 {
836     VirtIOBlock *s = VIRTIO_BLK(vdev);
837 
838     while (qemu_get_sbyte(f)) {
839         VirtIOBlockReq *req = virtio_blk_alloc_request(s);
840         qemu_get_buffer(f, (unsigned char *)&req->elem,
841                         sizeof(VirtQueueElement));
842         req->next = s->rq;
843         s->rq = req;
844 
845         virtqueue_map(&req->elem);
846     }
847 
848     return 0;
849 }
850 
851 static void virtio_blk_resize(void *opaque)
852 {
853     VirtIODevice *vdev = VIRTIO_DEVICE(opaque);
854 
855     virtio_notify_config(vdev);
856 }
857 
858 static const BlockDevOps virtio_block_ops = {
859     .resize_cb = virtio_blk_resize,
860 };
861 
862 /* Disable dataplane thread during live migration since it does not
863  * update the dirty memory bitmap yet.
864  */
865 static void virtio_blk_migration_state_changed(Notifier *notifier, void *data)
866 {
867     VirtIOBlock *s = container_of(notifier, VirtIOBlock,
868                                   migration_state_notifier);
869     MigrationState *mig = data;
870     Error *err = NULL;
871 
872     if (migration_in_setup(mig)) {
873         if (!s->dataplane) {
874             return;
875         }
876         virtio_blk_data_plane_destroy(s->dataplane);
877         s->dataplane = NULL;
878     } else if (migration_has_finished(mig) ||
879                migration_has_failed(mig)) {
880         if (s->dataplane) {
881             return;
882         }
883         blk_drain_all(); /* complete in-flight non-dataplane requests */
884         virtio_blk_data_plane_create(VIRTIO_DEVICE(s), &s->conf,
885                                      &s->dataplane, &err);
886         if (err != NULL) {
887             error_report_err(err);
888         }
889     }
890 }
891 
892 static void virtio_blk_device_realize(DeviceState *dev, Error **errp)
893 {
894     VirtIODevice *vdev = VIRTIO_DEVICE(dev);
895     VirtIOBlock *s = VIRTIO_BLK(dev);
896     VirtIOBlkConf *conf = &s->conf;
897     Error *err = NULL;
898     static int virtio_blk_id;
899 
900     if (!conf->conf.blk) {
901         error_setg(errp, "drive property not set");
902         return;
903     }
904     if (!blk_is_inserted(conf->conf.blk)) {
905         error_setg(errp, "Device needs media, but drive is empty");
906         return;
907     }
908 
909     blkconf_serial(&conf->conf, &conf->serial);
910     s->original_wce = blk_enable_write_cache(conf->conf.blk);
911     blkconf_geometry(&conf->conf, NULL, 65535, 255, 255, &err);
912     if (err) {
913         error_propagate(errp, err);
914         return;
915     }
916     blkconf_blocksizes(&conf->conf);
917 
918     virtio_init(vdev, "virtio-blk", VIRTIO_ID_BLOCK,
919                 sizeof(struct virtio_blk_config));
920 
921     s->blk = conf->conf.blk;
922     s->rq = NULL;
923     s->sector_mask = (s->conf.conf.logical_block_size / BDRV_SECTOR_SIZE) - 1;
924 
925     s->vq = virtio_add_queue(vdev, 128, virtio_blk_handle_output);
926     s->complete_request = virtio_blk_complete_request;
927     virtio_blk_data_plane_create(vdev, conf, &s->dataplane, &err);
928     if (err != NULL) {
929         error_propagate(errp, err);
930         virtio_cleanup(vdev);
931         return;
932     }
933     s->migration_state_notifier.notify = virtio_blk_migration_state_changed;
934     add_migration_state_change_notifier(&s->migration_state_notifier);
935 
936     s->change = qemu_add_vm_change_state_handler(virtio_blk_dma_restart_cb, s);
937     register_savevm(dev, "virtio-blk", virtio_blk_id++, 2,
938                     virtio_blk_save, virtio_blk_load, s);
939     blk_set_dev_ops(s->blk, &virtio_block_ops, s);
940     blk_set_guest_block_size(s->blk, s->conf.conf.logical_block_size);
941 
942     blk_iostatus_enable(s->blk);
943 }
944 
945 static void virtio_blk_device_unrealize(DeviceState *dev, Error **errp)
946 {
947     VirtIODevice *vdev = VIRTIO_DEVICE(dev);
948     VirtIOBlock *s = VIRTIO_BLK(dev);
949 
950     remove_migration_state_change_notifier(&s->migration_state_notifier);
951     virtio_blk_data_plane_destroy(s->dataplane);
952     s->dataplane = NULL;
953     qemu_del_vm_change_state_handler(s->change);
954     unregister_savevm(dev, "virtio-blk", s);
955     blockdev_mark_auto_del(s->blk);
956     virtio_cleanup(vdev);
957 }
958 
959 static void virtio_blk_instance_init(Object *obj)
960 {
961     VirtIOBlock *s = VIRTIO_BLK(obj);
962 
963     object_property_add_link(obj, "iothread", TYPE_IOTHREAD,
964                              (Object **)&s->conf.iothread,
965                              qdev_prop_allow_set_link_before_realize,
966                              OBJ_PROP_LINK_UNREF_ON_RELEASE, NULL);
967     device_add_bootindex_property(obj, &s->conf.conf.bootindex,
968                                   "bootindex", "/disk@0,0",
969                                   DEVICE(obj), NULL);
970 }
971 
972 static Property virtio_blk_properties[] = {
973     DEFINE_BLOCK_PROPERTIES(VirtIOBlock, conf.conf),
974     DEFINE_BLOCK_CHS_PROPERTIES(VirtIOBlock, conf.conf),
975     DEFINE_PROP_STRING("serial", VirtIOBlock, conf.serial),
976     DEFINE_PROP_BIT("config-wce", VirtIOBlock, conf.config_wce, 0, true),
977 #ifdef __linux__
978     DEFINE_PROP_BIT("scsi", VirtIOBlock, conf.scsi, 0, false),
979 #endif
980     DEFINE_PROP_BIT("request-merging", VirtIOBlock, conf.request_merging, 0,
981                     true),
982     DEFINE_PROP_END_OF_LIST(),
983 };
984 
985 static void virtio_blk_class_init(ObjectClass *klass, void *data)
986 {
987     DeviceClass *dc = DEVICE_CLASS(klass);
988     VirtioDeviceClass *vdc = VIRTIO_DEVICE_CLASS(klass);
989 
990     dc->props = virtio_blk_properties;
991     set_bit(DEVICE_CATEGORY_STORAGE, dc->categories);
992     vdc->realize = virtio_blk_device_realize;
993     vdc->unrealize = virtio_blk_device_unrealize;
994     vdc->get_config = virtio_blk_update_config;
995     vdc->set_config = virtio_blk_set_config;
996     vdc->get_features = virtio_blk_get_features;
997     vdc->set_status = virtio_blk_set_status;
998     vdc->reset = virtio_blk_reset;
999     vdc->save = virtio_blk_save_device;
1000     vdc->load = virtio_blk_load_device;
1001 }
1002 
1003 static const TypeInfo virtio_device_info = {
1004     .name = TYPE_VIRTIO_BLK,
1005     .parent = TYPE_VIRTIO_DEVICE,
1006     .instance_size = sizeof(VirtIOBlock),
1007     .instance_init = virtio_blk_instance_init,
1008     .class_init = virtio_blk_class_init,
1009 };
1010 
1011 static void virtio_register_types(void)
1012 {
1013     type_register_static(&virtio_device_info);
1014 }
1015 
1016 type_init(virtio_register_types)
1017