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