virtio_blk.c 43 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. //#define DEBUG
  3. #include <linux/spinlock.h>
  4. #include <linux/slab.h>
  5. #include <linux/blkdev.h>
  6. #include <linux/hdreg.h>
  7. #include <linux/module.h>
  8. #include <linux/mutex.h>
  9. #include <linux/interrupt.h>
  10. #include <linux/virtio.h>
  11. #include <linux/virtio_blk.h>
  12. #include <linux/scatterlist.h>
  13. #include <linux/string_helpers.h>
  14. #include <linux/idr.h>
  15. #include <linux/blk-mq.h>
  16. #include <linux/blk-mq-virtio.h>
  17. #include <linux/numa.h>
  18. #include <linux/vmalloc.h>
  19. #include <uapi/linux/virtio_ring.h>
  20. #define PART_BITS 4
  21. #define VQ_NAME_LEN 16
  22. #define MAX_DISCARD_SEGMENTS 256u
  23. /* The maximum number of sg elements that fit into a virtqueue */
  24. #define VIRTIO_BLK_MAX_SG_ELEMS 32768
  25. #ifdef CONFIG_ARCH_NO_SG_CHAIN
  26. #define VIRTIO_BLK_INLINE_SG_CNT 0
  27. #else
  28. #define VIRTIO_BLK_INLINE_SG_CNT 2
  29. #endif
  30. static unsigned int num_request_queues;
  31. module_param(num_request_queues, uint, 0644);
  32. MODULE_PARM_DESC(num_request_queues,
  33. "Limit the number of request queues to use for blk device. "
  34. "0 for no limit. "
  35. "Values > nr_cpu_ids truncated to nr_cpu_ids.");
  36. static unsigned int poll_queues;
  37. module_param(poll_queues, uint, 0644);
  38. MODULE_PARM_DESC(poll_queues, "The number of dedicated virtqueues for polling I/O");
  39. static int major;
  40. static DEFINE_IDA(vd_index_ida);
  41. static struct workqueue_struct *virtblk_wq;
  42. struct virtio_blk_vq {
  43. struct virtqueue *vq;
  44. spinlock_t lock;
  45. char name[VQ_NAME_LEN];
  46. } ____cacheline_aligned_in_smp;
  47. struct virtio_blk {
  48. /*
  49. * This mutex must be held by anything that may run after
  50. * virtblk_remove() sets vblk->vdev to NULL.
  51. *
  52. * blk-mq, virtqueue processing, and sysfs attribute code paths are
  53. * shut down before vblk->vdev is set to NULL and therefore do not need
  54. * to hold this mutex.
  55. */
  56. struct mutex vdev_mutex;
  57. struct virtio_device *vdev;
  58. /* The disk structure for the kernel. */
  59. struct gendisk *disk;
  60. /* Block layer tags. */
  61. struct blk_mq_tag_set tag_set;
  62. /* Process context for config space updates */
  63. struct work_struct config_work;
  64. /* Ida index - used to track minor number allocations. */
  65. int index;
  66. /* num of vqs */
  67. int num_vqs;
  68. int io_queues[HCTX_MAX_TYPES];
  69. struct virtio_blk_vq *vqs;
  70. /* For zoned device */
  71. unsigned int zone_sectors;
  72. };
  73. struct virtblk_req {
  74. /* Out header */
  75. struct virtio_blk_outhdr out_hdr;
  76. /* In header */
  77. union {
  78. u8 status;
  79. /*
  80. * The zone append command has an extended in header.
  81. * The status field in zone_append_in_hdr must always
  82. * be the last byte.
  83. */
  84. struct {
  85. __virtio64 sector;
  86. u8 status;
  87. } zone_append;
  88. } in_hdr;
  89. size_t in_hdr_len;
  90. struct sg_table sg_table;
  91. struct scatterlist sg[];
  92. };
  93. static inline blk_status_t virtblk_result(u8 status)
  94. {
  95. switch (status) {
  96. case VIRTIO_BLK_S_OK:
  97. return BLK_STS_OK;
  98. case VIRTIO_BLK_S_UNSUPP:
  99. return BLK_STS_NOTSUPP;
  100. case VIRTIO_BLK_S_ZONE_OPEN_RESOURCE:
  101. return BLK_STS_ZONE_OPEN_RESOURCE;
  102. case VIRTIO_BLK_S_ZONE_ACTIVE_RESOURCE:
  103. return BLK_STS_ZONE_ACTIVE_RESOURCE;
  104. case VIRTIO_BLK_S_IOERR:
  105. case VIRTIO_BLK_S_ZONE_UNALIGNED_WP:
  106. default:
  107. return BLK_STS_IOERR;
  108. }
  109. }
  110. static inline struct virtio_blk_vq *get_virtio_blk_vq(struct blk_mq_hw_ctx *hctx)
  111. {
  112. struct virtio_blk *vblk = hctx->queue->queuedata;
  113. struct virtio_blk_vq *vq = &vblk->vqs[hctx->queue_num];
  114. return vq;
  115. }
  116. static int virtblk_add_req(struct virtqueue *vq, struct virtblk_req *vbr)
  117. {
  118. struct scatterlist out_hdr, in_hdr, *sgs[3];
  119. unsigned int num_out = 0, num_in = 0;
  120. sg_init_one(&out_hdr, &vbr->out_hdr, sizeof(vbr->out_hdr));
  121. sgs[num_out++] = &out_hdr;
  122. if (vbr->sg_table.nents) {
  123. if (vbr->out_hdr.type & cpu_to_virtio32(vq->vdev, VIRTIO_BLK_T_OUT))
  124. sgs[num_out++] = vbr->sg_table.sgl;
  125. else
  126. sgs[num_out + num_in++] = vbr->sg_table.sgl;
  127. }
  128. sg_init_one(&in_hdr, &vbr->in_hdr.status, vbr->in_hdr_len);
  129. sgs[num_out + num_in++] = &in_hdr;
  130. return virtqueue_add_sgs(vq, sgs, num_out, num_in, vbr, GFP_ATOMIC);
  131. }
  132. static int virtblk_setup_discard_write_zeroes_erase(struct request *req, bool unmap)
  133. {
  134. unsigned short segments = blk_rq_nr_discard_segments(req);
  135. unsigned short n = 0;
  136. struct virtio_blk_discard_write_zeroes *range;
  137. struct bio *bio;
  138. u32 flags = 0;
  139. if (unmap)
  140. flags |= VIRTIO_BLK_WRITE_ZEROES_FLAG_UNMAP;
  141. range = kmalloc_array(segments, sizeof(*range), GFP_ATOMIC);
  142. if (!range)
  143. return -ENOMEM;
  144. /*
  145. * Single max discard segment means multi-range discard isn't
  146. * supported, and block layer only runs contiguity merge like
  147. * normal RW request. So we can't reply on bio for retrieving
  148. * each range info.
  149. */
  150. if (queue_max_discard_segments(req->q) == 1) {
  151. range[0].flags = cpu_to_le32(flags);
  152. range[0].num_sectors = cpu_to_le32(blk_rq_sectors(req));
  153. range[0].sector = cpu_to_le64(blk_rq_pos(req));
  154. n = 1;
  155. } else {
  156. __rq_for_each_bio(bio, req) {
  157. u64 sector = bio->bi_iter.bi_sector;
  158. u32 num_sectors = bio->bi_iter.bi_size >> SECTOR_SHIFT;
  159. range[n].flags = cpu_to_le32(flags);
  160. range[n].num_sectors = cpu_to_le32(num_sectors);
  161. range[n].sector = cpu_to_le64(sector);
  162. n++;
  163. }
  164. }
  165. WARN_ON_ONCE(n != segments);
  166. bvec_set_virt(&req->special_vec, range, sizeof(*range) * segments);
  167. req->rq_flags |= RQF_SPECIAL_PAYLOAD;
  168. return 0;
  169. }
  170. static void virtblk_unmap_data(struct request *req, struct virtblk_req *vbr)
  171. {
  172. if (blk_rq_nr_phys_segments(req))
  173. sg_free_table_chained(&vbr->sg_table,
  174. VIRTIO_BLK_INLINE_SG_CNT);
  175. }
  176. static int virtblk_map_data(struct blk_mq_hw_ctx *hctx, struct request *req,
  177. struct virtblk_req *vbr)
  178. {
  179. int err;
  180. if (!blk_rq_nr_phys_segments(req))
  181. return 0;
  182. vbr->sg_table.sgl = vbr->sg;
  183. err = sg_alloc_table_chained(&vbr->sg_table,
  184. blk_rq_nr_phys_segments(req),
  185. vbr->sg_table.sgl,
  186. VIRTIO_BLK_INLINE_SG_CNT);
  187. if (unlikely(err))
  188. return -ENOMEM;
  189. return blk_rq_map_sg(hctx->queue, req, vbr->sg_table.sgl);
  190. }
  191. static void virtblk_cleanup_cmd(struct request *req)
  192. {
  193. if (req->rq_flags & RQF_SPECIAL_PAYLOAD)
  194. kfree(bvec_virt(&req->special_vec));
  195. }
  196. static blk_status_t virtblk_setup_cmd(struct virtio_device *vdev,
  197. struct request *req,
  198. struct virtblk_req *vbr)
  199. {
  200. size_t in_hdr_len = sizeof(vbr->in_hdr.status);
  201. bool unmap = false;
  202. u32 type;
  203. u64 sector = 0;
  204. if (!IS_ENABLED(CONFIG_BLK_DEV_ZONED) && op_is_zone_mgmt(req_op(req)))
  205. return BLK_STS_NOTSUPP;
  206. /* Set fields for all request types */
  207. vbr->out_hdr.ioprio = cpu_to_virtio32(vdev, req_get_ioprio(req));
  208. switch (req_op(req)) {
  209. case REQ_OP_READ:
  210. type = VIRTIO_BLK_T_IN;
  211. sector = blk_rq_pos(req);
  212. break;
  213. case REQ_OP_WRITE:
  214. type = VIRTIO_BLK_T_OUT;
  215. sector = blk_rq_pos(req);
  216. break;
  217. case REQ_OP_FLUSH:
  218. type = VIRTIO_BLK_T_FLUSH;
  219. break;
  220. case REQ_OP_DISCARD:
  221. type = VIRTIO_BLK_T_DISCARD;
  222. break;
  223. case REQ_OP_WRITE_ZEROES:
  224. type = VIRTIO_BLK_T_WRITE_ZEROES;
  225. unmap = !(req->cmd_flags & REQ_NOUNMAP);
  226. break;
  227. case REQ_OP_SECURE_ERASE:
  228. type = VIRTIO_BLK_T_SECURE_ERASE;
  229. break;
  230. case REQ_OP_ZONE_OPEN:
  231. type = VIRTIO_BLK_T_ZONE_OPEN;
  232. sector = blk_rq_pos(req);
  233. break;
  234. case REQ_OP_ZONE_CLOSE:
  235. type = VIRTIO_BLK_T_ZONE_CLOSE;
  236. sector = blk_rq_pos(req);
  237. break;
  238. case REQ_OP_ZONE_FINISH:
  239. type = VIRTIO_BLK_T_ZONE_FINISH;
  240. sector = blk_rq_pos(req);
  241. break;
  242. case REQ_OP_ZONE_APPEND:
  243. type = VIRTIO_BLK_T_ZONE_APPEND;
  244. sector = blk_rq_pos(req);
  245. in_hdr_len = sizeof(vbr->in_hdr.zone_append);
  246. break;
  247. case REQ_OP_ZONE_RESET:
  248. type = VIRTIO_BLK_T_ZONE_RESET;
  249. sector = blk_rq_pos(req);
  250. break;
  251. case REQ_OP_ZONE_RESET_ALL:
  252. type = VIRTIO_BLK_T_ZONE_RESET_ALL;
  253. break;
  254. case REQ_OP_DRV_IN:
  255. /*
  256. * Out header has already been prepared by the caller (virtblk_get_id()
  257. * or virtblk_submit_zone_report()), nothing to do here.
  258. */
  259. return 0;
  260. default:
  261. WARN_ON_ONCE(1);
  262. return BLK_STS_IOERR;
  263. }
  264. /* Set fields for non-REQ_OP_DRV_IN request types */
  265. vbr->in_hdr_len = in_hdr_len;
  266. vbr->out_hdr.type = cpu_to_virtio32(vdev, type);
  267. vbr->out_hdr.sector = cpu_to_virtio64(vdev, sector);
  268. if (type == VIRTIO_BLK_T_DISCARD || type == VIRTIO_BLK_T_WRITE_ZEROES ||
  269. type == VIRTIO_BLK_T_SECURE_ERASE) {
  270. if (virtblk_setup_discard_write_zeroes_erase(req, unmap))
  271. return BLK_STS_RESOURCE;
  272. }
  273. return 0;
  274. }
  275. /*
  276. * The status byte is always the last byte of the virtblk request
  277. * in-header. This helper fetches its value for all in-header formats
  278. * that are currently defined.
  279. */
  280. static inline u8 virtblk_vbr_status(struct virtblk_req *vbr)
  281. {
  282. return *((u8 *)&vbr->in_hdr + vbr->in_hdr_len - 1);
  283. }
  284. static inline void virtblk_request_done(struct request *req)
  285. {
  286. struct virtblk_req *vbr = blk_mq_rq_to_pdu(req);
  287. blk_status_t status = virtblk_result(virtblk_vbr_status(vbr));
  288. struct virtio_blk *vblk = req->mq_hctx->queue->queuedata;
  289. virtblk_unmap_data(req, vbr);
  290. virtblk_cleanup_cmd(req);
  291. if (req_op(req) == REQ_OP_ZONE_APPEND)
  292. req->__sector = virtio64_to_cpu(vblk->vdev,
  293. vbr->in_hdr.zone_append.sector);
  294. blk_mq_end_request(req, status);
  295. }
  296. static void virtblk_done(struct virtqueue *vq)
  297. {
  298. struct virtio_blk *vblk = vq->vdev->priv;
  299. bool req_done = false;
  300. int qid = vq->index;
  301. struct virtblk_req *vbr;
  302. unsigned long flags;
  303. unsigned int len;
  304. spin_lock_irqsave(&vblk->vqs[qid].lock, flags);
  305. do {
  306. virtqueue_disable_cb(vq);
  307. while ((vbr = virtqueue_get_buf(vblk->vqs[qid].vq, &len)) != NULL) {
  308. struct request *req = blk_mq_rq_from_pdu(vbr);
  309. if (likely(!blk_should_fake_timeout(req->q)))
  310. blk_mq_complete_request(req);
  311. req_done = true;
  312. }
  313. } while (!virtqueue_enable_cb(vq));
  314. /* In case queue is stopped waiting for more buffers. */
  315. if (req_done)
  316. blk_mq_start_stopped_hw_queues(vblk->disk->queue, true);
  317. spin_unlock_irqrestore(&vblk->vqs[qid].lock, flags);
  318. }
  319. static void virtio_commit_rqs(struct blk_mq_hw_ctx *hctx)
  320. {
  321. struct virtio_blk *vblk = hctx->queue->queuedata;
  322. struct virtio_blk_vq *vq = &vblk->vqs[hctx->queue_num];
  323. bool kick;
  324. spin_lock_irq(&vq->lock);
  325. kick = virtqueue_kick_prepare(vq->vq);
  326. spin_unlock_irq(&vq->lock);
  327. if (kick)
  328. virtqueue_notify(vq->vq);
  329. }
  330. static blk_status_t virtblk_fail_to_queue(struct request *req, int rc)
  331. {
  332. virtblk_cleanup_cmd(req);
  333. switch (rc) {
  334. case -ENOSPC:
  335. return BLK_STS_DEV_RESOURCE;
  336. case -ENOMEM:
  337. return BLK_STS_RESOURCE;
  338. default:
  339. return BLK_STS_IOERR;
  340. }
  341. }
  342. static blk_status_t virtblk_prep_rq(struct blk_mq_hw_ctx *hctx,
  343. struct virtio_blk *vblk,
  344. struct request *req,
  345. struct virtblk_req *vbr)
  346. {
  347. blk_status_t status;
  348. int num;
  349. status = virtblk_setup_cmd(vblk->vdev, req, vbr);
  350. if (unlikely(status))
  351. return status;
  352. num = virtblk_map_data(hctx, req, vbr);
  353. if (unlikely(num < 0))
  354. return virtblk_fail_to_queue(req, -ENOMEM);
  355. vbr->sg_table.nents = num;
  356. blk_mq_start_request(req);
  357. return BLK_STS_OK;
  358. }
  359. static blk_status_t virtio_queue_rq(struct blk_mq_hw_ctx *hctx,
  360. const struct blk_mq_queue_data *bd)
  361. {
  362. struct virtio_blk *vblk = hctx->queue->queuedata;
  363. struct request *req = bd->rq;
  364. struct virtblk_req *vbr = blk_mq_rq_to_pdu(req);
  365. unsigned long flags;
  366. int qid = hctx->queue_num;
  367. bool notify = false;
  368. blk_status_t status;
  369. int err;
  370. status = virtblk_prep_rq(hctx, vblk, req, vbr);
  371. if (unlikely(status))
  372. return status;
  373. spin_lock_irqsave(&vblk->vqs[qid].lock, flags);
  374. err = virtblk_add_req(vblk->vqs[qid].vq, vbr);
  375. if (err) {
  376. virtqueue_kick(vblk->vqs[qid].vq);
  377. /* Don't stop the queue if -ENOMEM: we may have failed to
  378. * bounce the buffer due to global resource outage.
  379. */
  380. if (err == -ENOSPC)
  381. blk_mq_stop_hw_queue(hctx);
  382. spin_unlock_irqrestore(&vblk->vqs[qid].lock, flags);
  383. virtblk_unmap_data(req, vbr);
  384. return virtblk_fail_to_queue(req, err);
  385. }
  386. if (bd->last && virtqueue_kick_prepare(vblk->vqs[qid].vq))
  387. notify = true;
  388. spin_unlock_irqrestore(&vblk->vqs[qid].lock, flags);
  389. if (notify)
  390. virtqueue_notify(vblk->vqs[qid].vq);
  391. return BLK_STS_OK;
  392. }
  393. static bool virtblk_prep_rq_batch(struct request *req)
  394. {
  395. struct virtio_blk *vblk = req->mq_hctx->queue->queuedata;
  396. struct virtblk_req *vbr = blk_mq_rq_to_pdu(req);
  397. return virtblk_prep_rq(req->mq_hctx, vblk, req, vbr) == BLK_STS_OK;
  398. }
  399. static void virtblk_add_req_batch(struct virtio_blk_vq *vq,
  400. struct request **rqlist)
  401. {
  402. struct request *req;
  403. unsigned long flags;
  404. bool kick;
  405. spin_lock_irqsave(&vq->lock, flags);
  406. while ((req = rq_list_pop(rqlist))) {
  407. struct virtblk_req *vbr = blk_mq_rq_to_pdu(req);
  408. int err;
  409. err = virtblk_add_req(vq->vq, vbr);
  410. if (err) {
  411. virtblk_unmap_data(req, vbr);
  412. virtblk_cleanup_cmd(req);
  413. blk_mq_requeue_request(req, true);
  414. }
  415. }
  416. kick = virtqueue_kick_prepare(vq->vq);
  417. spin_unlock_irqrestore(&vq->lock, flags);
  418. if (kick)
  419. virtqueue_notify(vq->vq);
  420. }
  421. static void virtio_queue_rqs(struct request **rqlist)
  422. {
  423. struct request *submit_list = NULL;
  424. struct request *requeue_list = NULL;
  425. struct request **requeue_lastp = &requeue_list;
  426. struct virtio_blk_vq *vq = NULL;
  427. struct request *req;
  428. while ((req = rq_list_pop(rqlist))) {
  429. struct virtio_blk_vq *this_vq = get_virtio_blk_vq(req->mq_hctx);
  430. if (vq && vq != this_vq)
  431. virtblk_add_req_batch(vq, &submit_list);
  432. vq = this_vq;
  433. if (virtblk_prep_rq_batch(req))
  434. rq_list_add(&submit_list, req); /* reverse order */
  435. else
  436. rq_list_add_tail(&requeue_lastp, req);
  437. }
  438. if (vq)
  439. virtblk_add_req_batch(vq, &submit_list);
  440. *rqlist = requeue_list;
  441. }
  442. #ifdef CONFIG_BLK_DEV_ZONED
  443. static void *virtblk_alloc_report_buffer(struct virtio_blk *vblk,
  444. unsigned int nr_zones,
  445. size_t *buflen)
  446. {
  447. struct request_queue *q = vblk->disk->queue;
  448. size_t bufsize;
  449. void *buf;
  450. nr_zones = min_t(unsigned int, nr_zones,
  451. get_capacity(vblk->disk) >> ilog2(vblk->zone_sectors));
  452. bufsize = sizeof(struct virtio_blk_zone_report) +
  453. nr_zones * sizeof(struct virtio_blk_zone_descriptor);
  454. bufsize = min_t(size_t, bufsize,
  455. queue_max_hw_sectors(q) << SECTOR_SHIFT);
  456. bufsize = min_t(size_t, bufsize, queue_max_segments(q) << PAGE_SHIFT);
  457. while (bufsize >= sizeof(struct virtio_blk_zone_report)) {
  458. buf = __vmalloc(bufsize, GFP_KERNEL | __GFP_NORETRY);
  459. if (buf) {
  460. *buflen = bufsize;
  461. return buf;
  462. }
  463. bufsize >>= 1;
  464. }
  465. return NULL;
  466. }
  467. static int virtblk_submit_zone_report(struct virtio_blk *vblk,
  468. char *report_buf, size_t report_len,
  469. sector_t sector)
  470. {
  471. struct request_queue *q = vblk->disk->queue;
  472. struct request *req;
  473. struct virtblk_req *vbr;
  474. int err;
  475. req = blk_mq_alloc_request(q, REQ_OP_DRV_IN, 0);
  476. if (IS_ERR(req))
  477. return PTR_ERR(req);
  478. vbr = blk_mq_rq_to_pdu(req);
  479. vbr->in_hdr_len = sizeof(vbr->in_hdr.status);
  480. vbr->out_hdr.type = cpu_to_virtio32(vblk->vdev, VIRTIO_BLK_T_ZONE_REPORT);
  481. vbr->out_hdr.sector = cpu_to_virtio64(vblk->vdev, sector);
  482. err = blk_rq_map_kern(q, req, report_buf, report_len, GFP_KERNEL);
  483. if (err)
  484. goto out;
  485. blk_execute_rq(req, false);
  486. err = blk_status_to_errno(virtblk_result(vbr->in_hdr.status));
  487. out:
  488. blk_mq_free_request(req);
  489. return err;
  490. }
  491. static int virtblk_parse_zone(struct virtio_blk *vblk,
  492. struct virtio_blk_zone_descriptor *entry,
  493. unsigned int idx, report_zones_cb cb, void *data)
  494. {
  495. struct blk_zone zone = { };
  496. zone.start = virtio64_to_cpu(vblk->vdev, entry->z_start);
  497. if (zone.start + vblk->zone_sectors <= get_capacity(vblk->disk))
  498. zone.len = vblk->zone_sectors;
  499. else
  500. zone.len = get_capacity(vblk->disk) - zone.start;
  501. zone.capacity = virtio64_to_cpu(vblk->vdev, entry->z_cap);
  502. zone.wp = virtio64_to_cpu(vblk->vdev, entry->z_wp);
  503. switch (entry->z_type) {
  504. case VIRTIO_BLK_ZT_SWR:
  505. zone.type = BLK_ZONE_TYPE_SEQWRITE_REQ;
  506. break;
  507. case VIRTIO_BLK_ZT_SWP:
  508. zone.type = BLK_ZONE_TYPE_SEQWRITE_PREF;
  509. break;
  510. case VIRTIO_BLK_ZT_CONV:
  511. zone.type = BLK_ZONE_TYPE_CONVENTIONAL;
  512. break;
  513. default:
  514. dev_err(&vblk->vdev->dev, "zone %llu: invalid type %#x\n",
  515. zone.start, entry->z_type);
  516. return -EIO;
  517. }
  518. switch (entry->z_state) {
  519. case VIRTIO_BLK_ZS_EMPTY:
  520. zone.cond = BLK_ZONE_COND_EMPTY;
  521. break;
  522. case VIRTIO_BLK_ZS_CLOSED:
  523. zone.cond = BLK_ZONE_COND_CLOSED;
  524. break;
  525. case VIRTIO_BLK_ZS_FULL:
  526. zone.cond = BLK_ZONE_COND_FULL;
  527. zone.wp = zone.start + zone.len;
  528. break;
  529. case VIRTIO_BLK_ZS_EOPEN:
  530. zone.cond = BLK_ZONE_COND_EXP_OPEN;
  531. break;
  532. case VIRTIO_BLK_ZS_IOPEN:
  533. zone.cond = BLK_ZONE_COND_IMP_OPEN;
  534. break;
  535. case VIRTIO_BLK_ZS_NOT_WP:
  536. zone.cond = BLK_ZONE_COND_NOT_WP;
  537. break;
  538. case VIRTIO_BLK_ZS_RDONLY:
  539. zone.cond = BLK_ZONE_COND_READONLY;
  540. zone.wp = ULONG_MAX;
  541. break;
  542. case VIRTIO_BLK_ZS_OFFLINE:
  543. zone.cond = BLK_ZONE_COND_OFFLINE;
  544. zone.wp = ULONG_MAX;
  545. break;
  546. default:
  547. dev_err(&vblk->vdev->dev, "zone %llu: invalid condition %#x\n",
  548. zone.start, entry->z_state);
  549. return -EIO;
  550. }
  551. /*
  552. * The callback below checks the validity of the reported
  553. * entry data, no need to further validate it here.
  554. */
  555. return cb(&zone, idx, data);
  556. }
  557. static int virtblk_report_zones(struct gendisk *disk, sector_t sector,
  558. unsigned int nr_zones, report_zones_cb cb,
  559. void *data)
  560. {
  561. struct virtio_blk *vblk = disk->private_data;
  562. struct virtio_blk_zone_report *report;
  563. unsigned long long nz, i;
  564. size_t buflen;
  565. unsigned int zone_idx = 0;
  566. int ret;
  567. if (WARN_ON_ONCE(!vblk->zone_sectors))
  568. return -EOPNOTSUPP;
  569. report = virtblk_alloc_report_buffer(vblk, nr_zones, &buflen);
  570. if (!report)
  571. return -ENOMEM;
  572. mutex_lock(&vblk->vdev_mutex);
  573. if (!vblk->vdev) {
  574. ret = -ENXIO;
  575. goto fail_report;
  576. }
  577. while (zone_idx < nr_zones && sector < get_capacity(vblk->disk)) {
  578. memset(report, 0, buflen);
  579. ret = virtblk_submit_zone_report(vblk, (char *)report,
  580. buflen, sector);
  581. if (ret)
  582. goto fail_report;
  583. nz = min_t(u64, virtio64_to_cpu(vblk->vdev, report->nr_zones),
  584. nr_zones);
  585. if (!nz)
  586. break;
  587. for (i = 0; i < nz && zone_idx < nr_zones; i++) {
  588. ret = virtblk_parse_zone(vblk, &report->zones[i],
  589. zone_idx, cb, data);
  590. if (ret)
  591. goto fail_report;
  592. sector = virtio64_to_cpu(vblk->vdev,
  593. report->zones[i].z_start) +
  594. vblk->zone_sectors;
  595. zone_idx++;
  596. }
  597. }
  598. if (zone_idx > 0)
  599. ret = zone_idx;
  600. else
  601. ret = -EINVAL;
  602. fail_report:
  603. mutex_unlock(&vblk->vdev_mutex);
  604. kvfree(report);
  605. return ret;
  606. }
  607. static int virtblk_read_zoned_limits(struct virtio_blk *vblk,
  608. struct queue_limits *lim)
  609. {
  610. struct virtio_device *vdev = vblk->vdev;
  611. u32 v, wg;
  612. dev_dbg(&vdev->dev, "probing host-managed zoned device\n");
  613. lim->features |= BLK_FEAT_ZONED;
  614. virtio_cread(vdev, struct virtio_blk_config,
  615. zoned.max_open_zones, &v);
  616. lim->max_open_zones = v;
  617. dev_dbg(&vdev->dev, "max open zones = %u\n", v);
  618. virtio_cread(vdev, struct virtio_blk_config,
  619. zoned.max_active_zones, &v);
  620. lim->max_active_zones = v;
  621. dev_dbg(&vdev->dev, "max active zones = %u\n", v);
  622. virtio_cread(vdev, struct virtio_blk_config,
  623. zoned.write_granularity, &wg);
  624. if (!wg) {
  625. dev_warn(&vdev->dev, "zero write granularity reported\n");
  626. return -ENODEV;
  627. }
  628. lim->physical_block_size = wg;
  629. lim->io_min = wg;
  630. dev_dbg(&vdev->dev, "write granularity = %u\n", wg);
  631. /*
  632. * virtio ZBD specification doesn't require zones to be a power of
  633. * two sectors in size, but the code in this driver expects that.
  634. */
  635. virtio_cread(vdev, struct virtio_blk_config, zoned.zone_sectors,
  636. &vblk->zone_sectors);
  637. if (vblk->zone_sectors == 0 || !is_power_of_2(vblk->zone_sectors)) {
  638. dev_err(&vdev->dev,
  639. "zoned device with non power of two zone size %u\n",
  640. vblk->zone_sectors);
  641. return -ENODEV;
  642. }
  643. lim->chunk_sectors = vblk->zone_sectors;
  644. dev_dbg(&vdev->dev, "zone sectors = %u\n", vblk->zone_sectors);
  645. if (virtio_has_feature(vdev, VIRTIO_BLK_F_DISCARD)) {
  646. dev_warn(&vblk->vdev->dev,
  647. "ignoring negotiated F_DISCARD for zoned device\n");
  648. lim->max_hw_discard_sectors = 0;
  649. }
  650. virtio_cread(vdev, struct virtio_blk_config,
  651. zoned.max_append_sectors, &v);
  652. if (!v) {
  653. dev_warn(&vdev->dev, "zero max_append_sectors reported\n");
  654. return -ENODEV;
  655. }
  656. if ((v << SECTOR_SHIFT) < wg) {
  657. dev_err(&vdev->dev,
  658. "write granularity %u exceeds max_append_sectors %u limit\n",
  659. wg, v);
  660. return -ENODEV;
  661. }
  662. lim->max_zone_append_sectors = v;
  663. dev_dbg(&vdev->dev, "max append sectors = %u\n", v);
  664. return 0;
  665. }
  666. #else
  667. /*
  668. * Zoned block device support is not configured in this kernel, host-managed
  669. * zoned devices can't be supported.
  670. */
  671. #define virtblk_report_zones NULL
  672. static inline int virtblk_read_zoned_limits(struct virtio_blk *vblk,
  673. struct queue_limits *lim)
  674. {
  675. dev_err(&vblk->vdev->dev,
  676. "virtio_blk: zoned devices are not supported");
  677. return -EOPNOTSUPP;
  678. }
  679. #endif /* CONFIG_BLK_DEV_ZONED */
  680. /* return id (s/n) string for *disk to *id_str
  681. */
  682. static int virtblk_get_id(struct gendisk *disk, char *id_str)
  683. {
  684. struct virtio_blk *vblk = disk->private_data;
  685. struct request_queue *q = vblk->disk->queue;
  686. struct request *req;
  687. struct virtblk_req *vbr;
  688. int err;
  689. req = blk_mq_alloc_request(q, REQ_OP_DRV_IN, 0);
  690. if (IS_ERR(req))
  691. return PTR_ERR(req);
  692. vbr = blk_mq_rq_to_pdu(req);
  693. vbr->in_hdr_len = sizeof(vbr->in_hdr.status);
  694. vbr->out_hdr.type = cpu_to_virtio32(vblk->vdev, VIRTIO_BLK_T_GET_ID);
  695. vbr->out_hdr.sector = 0;
  696. err = blk_rq_map_kern(q, req, id_str, VIRTIO_BLK_ID_BYTES, GFP_KERNEL);
  697. if (err)
  698. goto out;
  699. blk_execute_rq(req, false);
  700. err = blk_status_to_errno(virtblk_result(vbr->in_hdr.status));
  701. out:
  702. blk_mq_free_request(req);
  703. return err;
  704. }
  705. /* We provide getgeo only to please some old bootloader/partitioning tools */
  706. static int virtblk_getgeo(struct block_device *bd, struct hd_geometry *geo)
  707. {
  708. struct virtio_blk *vblk = bd->bd_disk->private_data;
  709. int ret = 0;
  710. mutex_lock(&vblk->vdev_mutex);
  711. if (!vblk->vdev) {
  712. ret = -ENXIO;
  713. goto out;
  714. }
  715. /* see if the host passed in geometry config */
  716. if (virtio_has_feature(vblk->vdev, VIRTIO_BLK_F_GEOMETRY)) {
  717. virtio_cread(vblk->vdev, struct virtio_blk_config,
  718. geometry.cylinders, &geo->cylinders);
  719. virtio_cread(vblk->vdev, struct virtio_blk_config,
  720. geometry.heads, &geo->heads);
  721. virtio_cread(vblk->vdev, struct virtio_blk_config,
  722. geometry.sectors, &geo->sectors);
  723. } else {
  724. /* some standard values, similar to sd */
  725. geo->heads = 1 << 6;
  726. geo->sectors = 1 << 5;
  727. geo->cylinders = get_capacity(bd->bd_disk) >> 11;
  728. }
  729. out:
  730. mutex_unlock(&vblk->vdev_mutex);
  731. return ret;
  732. }
  733. static void virtblk_free_disk(struct gendisk *disk)
  734. {
  735. struct virtio_blk *vblk = disk->private_data;
  736. ida_free(&vd_index_ida, vblk->index);
  737. mutex_destroy(&vblk->vdev_mutex);
  738. kfree(vblk);
  739. }
  740. static const struct block_device_operations virtblk_fops = {
  741. .owner = THIS_MODULE,
  742. .getgeo = virtblk_getgeo,
  743. .free_disk = virtblk_free_disk,
  744. .report_zones = virtblk_report_zones,
  745. };
  746. static int index_to_minor(int index)
  747. {
  748. return index << PART_BITS;
  749. }
  750. static int minor_to_index(int minor)
  751. {
  752. return minor >> PART_BITS;
  753. }
  754. static ssize_t serial_show(struct device *dev,
  755. struct device_attribute *attr, char *buf)
  756. {
  757. struct gendisk *disk = dev_to_disk(dev);
  758. int err;
  759. /* sysfs gives us a PAGE_SIZE buffer */
  760. BUILD_BUG_ON(PAGE_SIZE < VIRTIO_BLK_ID_BYTES);
  761. buf[VIRTIO_BLK_ID_BYTES] = '\0';
  762. err = virtblk_get_id(disk, buf);
  763. if (!err)
  764. return strlen(buf);
  765. if (err == -EIO) /* Unsupported? Make it empty. */
  766. return 0;
  767. return err;
  768. }
  769. static DEVICE_ATTR_RO(serial);
  770. /* The queue's logical block size must be set before calling this */
  771. static void virtblk_update_capacity(struct virtio_blk *vblk, bool resize)
  772. {
  773. struct virtio_device *vdev = vblk->vdev;
  774. struct request_queue *q = vblk->disk->queue;
  775. char cap_str_2[10], cap_str_10[10];
  776. unsigned long long nblocks;
  777. u64 capacity;
  778. /* Host must always specify the capacity. */
  779. virtio_cread(vdev, struct virtio_blk_config, capacity, &capacity);
  780. nblocks = DIV_ROUND_UP_ULL(capacity, queue_logical_block_size(q) >> 9);
  781. string_get_size(nblocks, queue_logical_block_size(q),
  782. STRING_UNITS_2, cap_str_2, sizeof(cap_str_2));
  783. string_get_size(nblocks, queue_logical_block_size(q),
  784. STRING_UNITS_10, cap_str_10, sizeof(cap_str_10));
  785. dev_notice(&vdev->dev,
  786. "[%s] %s%llu %d-byte logical blocks (%s/%s)\n",
  787. vblk->disk->disk_name,
  788. resize ? "new size: " : "",
  789. nblocks,
  790. queue_logical_block_size(q),
  791. cap_str_10,
  792. cap_str_2);
  793. set_capacity_and_notify(vblk->disk, capacity);
  794. }
  795. static void virtblk_config_changed_work(struct work_struct *work)
  796. {
  797. struct virtio_blk *vblk =
  798. container_of(work, struct virtio_blk, config_work);
  799. virtblk_update_capacity(vblk, true);
  800. }
  801. static void virtblk_config_changed(struct virtio_device *vdev)
  802. {
  803. struct virtio_blk *vblk = vdev->priv;
  804. queue_work(virtblk_wq, &vblk->config_work);
  805. }
  806. static int init_vq(struct virtio_blk *vblk)
  807. {
  808. int err;
  809. unsigned short i;
  810. struct virtqueue_info *vqs_info;
  811. struct virtqueue **vqs;
  812. unsigned short num_vqs;
  813. unsigned short num_poll_vqs;
  814. struct virtio_device *vdev = vblk->vdev;
  815. struct irq_affinity desc = { 0, };
  816. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_MQ,
  817. struct virtio_blk_config, num_queues,
  818. &num_vqs);
  819. if (err)
  820. num_vqs = 1;
  821. if (!err && !num_vqs) {
  822. dev_err(&vdev->dev, "MQ advertised but zero queues reported\n");
  823. return -EINVAL;
  824. }
  825. num_vqs = min_t(unsigned int,
  826. min_not_zero(num_request_queues, nr_cpu_ids),
  827. num_vqs);
  828. num_poll_vqs = min_t(unsigned int, poll_queues, num_vqs - 1);
  829. vblk->io_queues[HCTX_TYPE_DEFAULT] = num_vqs - num_poll_vqs;
  830. vblk->io_queues[HCTX_TYPE_READ] = 0;
  831. vblk->io_queues[HCTX_TYPE_POLL] = num_poll_vqs;
  832. dev_info(&vdev->dev, "%d/%d/%d default/read/poll queues\n",
  833. vblk->io_queues[HCTX_TYPE_DEFAULT],
  834. vblk->io_queues[HCTX_TYPE_READ],
  835. vblk->io_queues[HCTX_TYPE_POLL]);
  836. vblk->vqs = kmalloc_array(num_vqs, sizeof(*vblk->vqs), GFP_KERNEL);
  837. if (!vblk->vqs)
  838. return -ENOMEM;
  839. vqs_info = kcalloc(num_vqs, sizeof(*vqs_info), GFP_KERNEL);
  840. vqs = kmalloc_array(num_vqs, sizeof(*vqs), GFP_KERNEL);
  841. if (!vqs_info || !vqs) {
  842. err = -ENOMEM;
  843. goto out;
  844. }
  845. for (i = 0; i < num_vqs - num_poll_vqs; i++) {
  846. vqs_info[i].callback = virtblk_done;
  847. snprintf(vblk->vqs[i].name, VQ_NAME_LEN, "req.%u", i);
  848. vqs_info[i].name = vblk->vqs[i].name;
  849. }
  850. for (; i < num_vqs; i++) {
  851. snprintf(vblk->vqs[i].name, VQ_NAME_LEN, "req_poll.%u", i);
  852. vqs_info[i].name = vblk->vqs[i].name;
  853. }
  854. /* Discover virtqueues and write information to configuration. */
  855. err = virtio_find_vqs(vdev, num_vqs, vqs, vqs_info, &desc);
  856. if (err)
  857. goto out;
  858. for (i = 0; i < num_vqs; i++) {
  859. spin_lock_init(&vblk->vqs[i].lock);
  860. vblk->vqs[i].vq = vqs[i];
  861. }
  862. vblk->num_vqs = num_vqs;
  863. out:
  864. kfree(vqs);
  865. kfree(vqs_info);
  866. if (err)
  867. kfree(vblk->vqs);
  868. return err;
  869. }
  870. /*
  871. * Legacy naming scheme used for virtio devices. We are stuck with it for
  872. * virtio blk but don't ever use it for any new driver.
  873. */
  874. static int virtblk_name_format(char *prefix, int index, char *buf, int buflen)
  875. {
  876. const int base = 'z' - 'a' + 1;
  877. char *begin = buf + strlen(prefix);
  878. char *end = buf + buflen;
  879. char *p;
  880. int unit;
  881. p = end - 1;
  882. *p = '\0';
  883. unit = base;
  884. do {
  885. if (p == begin)
  886. return -EINVAL;
  887. *--p = 'a' + (index % unit);
  888. index = (index / unit) - 1;
  889. } while (index >= 0);
  890. memmove(begin, p, end - p);
  891. memcpy(buf, prefix, strlen(prefix));
  892. return 0;
  893. }
  894. static int virtblk_get_cache_mode(struct virtio_device *vdev)
  895. {
  896. u8 writeback;
  897. int err;
  898. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_CONFIG_WCE,
  899. struct virtio_blk_config, wce,
  900. &writeback);
  901. /*
  902. * If WCE is not configurable and flush is not available,
  903. * assume no writeback cache is in use.
  904. */
  905. if (err)
  906. writeback = virtio_has_feature(vdev, VIRTIO_BLK_F_FLUSH);
  907. return writeback;
  908. }
  909. static const char *const virtblk_cache_types[] = {
  910. "write through", "write back"
  911. };
  912. static ssize_t
  913. cache_type_store(struct device *dev, struct device_attribute *attr,
  914. const char *buf, size_t count)
  915. {
  916. struct gendisk *disk = dev_to_disk(dev);
  917. struct virtio_blk *vblk = disk->private_data;
  918. struct virtio_device *vdev = vblk->vdev;
  919. struct queue_limits lim;
  920. int i;
  921. BUG_ON(!virtio_has_feature(vblk->vdev, VIRTIO_BLK_F_CONFIG_WCE));
  922. i = sysfs_match_string(virtblk_cache_types, buf);
  923. if (i < 0)
  924. return i;
  925. virtio_cwrite8(vdev, offsetof(struct virtio_blk_config, wce), i);
  926. lim = queue_limits_start_update(disk->queue);
  927. if (virtblk_get_cache_mode(vdev))
  928. lim.features |= BLK_FEAT_WRITE_CACHE;
  929. else
  930. lim.features &= ~BLK_FEAT_WRITE_CACHE;
  931. blk_mq_freeze_queue(disk->queue);
  932. i = queue_limits_commit_update(disk->queue, &lim);
  933. blk_mq_unfreeze_queue(disk->queue);
  934. if (i)
  935. return i;
  936. return count;
  937. }
  938. static ssize_t
  939. cache_type_show(struct device *dev, struct device_attribute *attr, char *buf)
  940. {
  941. struct gendisk *disk = dev_to_disk(dev);
  942. struct virtio_blk *vblk = disk->private_data;
  943. u8 writeback = virtblk_get_cache_mode(vblk->vdev);
  944. BUG_ON(writeback >= ARRAY_SIZE(virtblk_cache_types));
  945. return sysfs_emit(buf, "%s\n", virtblk_cache_types[writeback]);
  946. }
  947. static DEVICE_ATTR_RW(cache_type);
  948. static struct attribute *virtblk_attrs[] = {
  949. &dev_attr_serial.attr,
  950. &dev_attr_cache_type.attr,
  951. NULL,
  952. };
  953. static umode_t virtblk_attrs_are_visible(struct kobject *kobj,
  954. struct attribute *a, int n)
  955. {
  956. struct device *dev = kobj_to_dev(kobj);
  957. struct gendisk *disk = dev_to_disk(dev);
  958. struct virtio_blk *vblk = disk->private_data;
  959. struct virtio_device *vdev = vblk->vdev;
  960. if (a == &dev_attr_cache_type.attr &&
  961. !virtio_has_feature(vdev, VIRTIO_BLK_F_CONFIG_WCE))
  962. return S_IRUGO;
  963. return a->mode;
  964. }
  965. static const struct attribute_group virtblk_attr_group = {
  966. .attrs = virtblk_attrs,
  967. .is_visible = virtblk_attrs_are_visible,
  968. };
  969. static const struct attribute_group *virtblk_attr_groups[] = {
  970. &virtblk_attr_group,
  971. NULL,
  972. };
  973. static void virtblk_map_queues(struct blk_mq_tag_set *set)
  974. {
  975. struct virtio_blk *vblk = set->driver_data;
  976. int i, qoff;
  977. for (i = 0, qoff = 0; i < set->nr_maps; i++) {
  978. struct blk_mq_queue_map *map = &set->map[i];
  979. map->nr_queues = vblk->io_queues[i];
  980. map->queue_offset = qoff;
  981. qoff += map->nr_queues;
  982. if (map->nr_queues == 0)
  983. continue;
  984. /*
  985. * Regular queues have interrupts and hence CPU affinity is
  986. * defined by the core virtio code, but polling queues have
  987. * no interrupts so we let the block layer assign CPU affinity.
  988. */
  989. if (i == HCTX_TYPE_POLL)
  990. blk_mq_map_queues(&set->map[i]);
  991. else
  992. blk_mq_virtio_map_queues(&set->map[i], vblk->vdev, 0);
  993. }
  994. }
  995. static void virtblk_complete_batch(struct io_comp_batch *iob)
  996. {
  997. struct request *req;
  998. rq_list_for_each(&iob->req_list, req) {
  999. virtblk_unmap_data(req, blk_mq_rq_to_pdu(req));
  1000. virtblk_cleanup_cmd(req);
  1001. }
  1002. blk_mq_end_request_batch(iob);
  1003. }
  1004. static int virtblk_poll(struct blk_mq_hw_ctx *hctx, struct io_comp_batch *iob)
  1005. {
  1006. struct virtio_blk *vblk = hctx->queue->queuedata;
  1007. struct virtio_blk_vq *vq = get_virtio_blk_vq(hctx);
  1008. struct virtblk_req *vbr;
  1009. unsigned long flags;
  1010. unsigned int len;
  1011. int found = 0;
  1012. spin_lock_irqsave(&vq->lock, flags);
  1013. while ((vbr = virtqueue_get_buf(vq->vq, &len)) != NULL) {
  1014. struct request *req = blk_mq_rq_from_pdu(vbr);
  1015. found++;
  1016. if (!blk_mq_complete_request_remote(req) &&
  1017. !blk_mq_add_to_batch(req, iob, virtblk_vbr_status(vbr),
  1018. virtblk_complete_batch))
  1019. virtblk_request_done(req);
  1020. }
  1021. if (found)
  1022. blk_mq_start_stopped_hw_queues(vblk->disk->queue, true);
  1023. spin_unlock_irqrestore(&vq->lock, flags);
  1024. return found;
  1025. }
  1026. static const struct blk_mq_ops virtio_mq_ops = {
  1027. .queue_rq = virtio_queue_rq,
  1028. .queue_rqs = virtio_queue_rqs,
  1029. .commit_rqs = virtio_commit_rqs,
  1030. .complete = virtblk_request_done,
  1031. .map_queues = virtblk_map_queues,
  1032. .poll = virtblk_poll,
  1033. };
  1034. static unsigned int virtblk_queue_depth;
  1035. module_param_named(queue_depth, virtblk_queue_depth, uint, 0444);
  1036. static int virtblk_read_limits(struct virtio_blk *vblk,
  1037. struct queue_limits *lim)
  1038. {
  1039. struct virtio_device *vdev = vblk->vdev;
  1040. u32 v, max_size, sg_elems, opt_io_size;
  1041. u32 max_discard_segs = 0;
  1042. u32 discard_granularity = 0;
  1043. u16 min_io_size;
  1044. u8 physical_block_exp, alignment_offset;
  1045. size_t max_dma_size;
  1046. int err;
  1047. /* We need to know how many segments before we allocate. */
  1048. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_SEG_MAX,
  1049. struct virtio_blk_config, seg_max,
  1050. &sg_elems);
  1051. /* We need at least one SG element, whatever they say. */
  1052. if (err || !sg_elems)
  1053. sg_elems = 1;
  1054. /* Prevent integer overflows and honor max vq size */
  1055. sg_elems = min_t(u32, sg_elems, VIRTIO_BLK_MAX_SG_ELEMS - 2);
  1056. /* We can handle whatever the host told us to handle. */
  1057. lim->max_segments = sg_elems;
  1058. /* No real sector limit. */
  1059. lim->max_hw_sectors = UINT_MAX;
  1060. max_dma_size = virtio_max_dma_size(vdev);
  1061. max_size = max_dma_size > U32_MAX ? U32_MAX : max_dma_size;
  1062. /* Host can optionally specify maximum segment size and number of
  1063. * segments. */
  1064. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_SIZE_MAX,
  1065. struct virtio_blk_config, size_max, &v);
  1066. if (!err)
  1067. max_size = min(max_size, v);
  1068. lim->max_segment_size = max_size;
  1069. /* Host can optionally specify the block size of the device */
  1070. virtio_cread_feature(vdev, VIRTIO_BLK_F_BLK_SIZE,
  1071. struct virtio_blk_config, blk_size,
  1072. &lim->logical_block_size);
  1073. /* Use topology information if available */
  1074. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_TOPOLOGY,
  1075. struct virtio_blk_config, physical_block_exp,
  1076. &physical_block_exp);
  1077. if (!err && physical_block_exp)
  1078. lim->physical_block_size =
  1079. lim->logical_block_size * (1 << physical_block_exp);
  1080. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_TOPOLOGY,
  1081. struct virtio_blk_config, alignment_offset,
  1082. &alignment_offset);
  1083. if (!err && alignment_offset)
  1084. lim->alignment_offset =
  1085. lim->logical_block_size * alignment_offset;
  1086. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_TOPOLOGY,
  1087. struct virtio_blk_config, min_io_size,
  1088. &min_io_size);
  1089. if (!err && min_io_size)
  1090. lim->io_min = lim->logical_block_size * min_io_size;
  1091. err = virtio_cread_feature(vdev, VIRTIO_BLK_F_TOPOLOGY,
  1092. struct virtio_blk_config, opt_io_size,
  1093. &opt_io_size);
  1094. if (!err && opt_io_size)
  1095. lim->io_opt = lim->logical_block_size * opt_io_size;
  1096. if (virtio_has_feature(vdev, VIRTIO_BLK_F_DISCARD)) {
  1097. virtio_cread(vdev, struct virtio_blk_config,
  1098. discard_sector_alignment, &discard_granularity);
  1099. virtio_cread(vdev, struct virtio_blk_config,
  1100. max_discard_sectors, &v);
  1101. lim->max_hw_discard_sectors = v ? v : UINT_MAX;
  1102. virtio_cread(vdev, struct virtio_blk_config, max_discard_seg,
  1103. &max_discard_segs);
  1104. }
  1105. if (virtio_has_feature(vdev, VIRTIO_BLK_F_WRITE_ZEROES)) {
  1106. virtio_cread(vdev, struct virtio_blk_config,
  1107. max_write_zeroes_sectors, &v);
  1108. lim->max_write_zeroes_sectors = v ? v : UINT_MAX;
  1109. }
  1110. /* The discard and secure erase limits are combined since the Linux
  1111. * block layer uses the same limit for both commands.
  1112. *
  1113. * If both VIRTIO_BLK_F_SECURE_ERASE and VIRTIO_BLK_F_DISCARD features
  1114. * are negotiated, we will use the minimum between the limits.
  1115. *
  1116. * discard sector alignment is set to the minimum between discard_sector_alignment
  1117. * and secure_erase_sector_alignment.
  1118. *
  1119. * max discard sectors is set to the minimum between max_discard_seg and
  1120. * max_secure_erase_seg.
  1121. */
  1122. if (virtio_has_feature(vdev, VIRTIO_BLK_F_SECURE_ERASE)) {
  1123. virtio_cread(vdev, struct virtio_blk_config,
  1124. secure_erase_sector_alignment, &v);
  1125. /* secure_erase_sector_alignment should not be zero, the device should set a
  1126. * valid number of sectors.
  1127. */
  1128. if (!v) {
  1129. dev_err(&vdev->dev,
  1130. "virtio_blk: secure_erase_sector_alignment can't be 0\n");
  1131. return -EINVAL;
  1132. }
  1133. discard_granularity = min_not_zero(discard_granularity, v);
  1134. virtio_cread(vdev, struct virtio_blk_config,
  1135. max_secure_erase_sectors, &v);
  1136. /* max_secure_erase_sectors should not be zero, the device should set a
  1137. * valid number of sectors.
  1138. */
  1139. if (!v) {
  1140. dev_err(&vdev->dev,
  1141. "virtio_blk: max_secure_erase_sectors can't be 0\n");
  1142. return -EINVAL;
  1143. }
  1144. lim->max_secure_erase_sectors = v;
  1145. virtio_cread(vdev, struct virtio_blk_config,
  1146. max_secure_erase_seg, &v);
  1147. /* max_secure_erase_seg should not be zero, the device should set a
  1148. * valid number of segments
  1149. */
  1150. if (!v) {
  1151. dev_err(&vdev->dev,
  1152. "virtio_blk: max_secure_erase_seg can't be 0\n");
  1153. return -EINVAL;
  1154. }
  1155. max_discard_segs = min_not_zero(max_discard_segs, v);
  1156. }
  1157. if (virtio_has_feature(vdev, VIRTIO_BLK_F_DISCARD) ||
  1158. virtio_has_feature(vdev, VIRTIO_BLK_F_SECURE_ERASE)) {
  1159. /* max_discard_seg and discard_granularity will be 0 only
  1160. * if max_discard_seg and discard_sector_alignment fields in the virtio
  1161. * config are 0 and VIRTIO_BLK_F_SECURE_ERASE feature is not negotiated.
  1162. * In this case, we use default values.
  1163. */
  1164. if (!max_discard_segs)
  1165. max_discard_segs = sg_elems;
  1166. lim->max_discard_segments =
  1167. min(max_discard_segs, MAX_DISCARD_SEGMENTS);
  1168. if (discard_granularity)
  1169. lim->discard_granularity =
  1170. discard_granularity << SECTOR_SHIFT;
  1171. else
  1172. lim->discard_granularity = lim->logical_block_size;
  1173. }
  1174. if (virtio_has_feature(vdev, VIRTIO_BLK_F_ZONED)) {
  1175. u8 model;
  1176. virtio_cread(vdev, struct virtio_blk_config, zoned.model, &model);
  1177. switch (model) {
  1178. case VIRTIO_BLK_Z_NONE:
  1179. case VIRTIO_BLK_Z_HA:
  1180. /* treat host-aware devices as non-zoned */
  1181. return 0;
  1182. case VIRTIO_BLK_Z_HM:
  1183. err = virtblk_read_zoned_limits(vblk, lim);
  1184. if (err)
  1185. return err;
  1186. break;
  1187. default:
  1188. dev_err(&vdev->dev, "unsupported zone model %d\n", model);
  1189. return -EINVAL;
  1190. }
  1191. }
  1192. return 0;
  1193. }
  1194. static int virtblk_probe(struct virtio_device *vdev)
  1195. {
  1196. struct virtio_blk *vblk;
  1197. struct queue_limits lim = {
  1198. .features = BLK_FEAT_ROTATIONAL,
  1199. .logical_block_size = SECTOR_SIZE,
  1200. };
  1201. int err, index;
  1202. unsigned int queue_depth;
  1203. if (!vdev->config->get) {
  1204. dev_err(&vdev->dev, "%s failure: config access disabled\n",
  1205. __func__);
  1206. return -EINVAL;
  1207. }
  1208. err = ida_alloc_range(&vd_index_ida, 0,
  1209. minor_to_index(1 << MINORBITS) - 1, GFP_KERNEL);
  1210. if (err < 0)
  1211. goto out;
  1212. index = err;
  1213. vdev->priv = vblk = kmalloc(sizeof(*vblk), GFP_KERNEL);
  1214. if (!vblk) {
  1215. err = -ENOMEM;
  1216. goto out_free_index;
  1217. }
  1218. mutex_init(&vblk->vdev_mutex);
  1219. vblk->vdev = vdev;
  1220. INIT_WORK(&vblk->config_work, virtblk_config_changed_work);
  1221. err = init_vq(vblk);
  1222. if (err)
  1223. goto out_free_vblk;
  1224. /* Default queue sizing is to fill the ring. */
  1225. if (!virtblk_queue_depth) {
  1226. queue_depth = vblk->vqs[0].vq->num_free;
  1227. /* ... but without indirect descs, we use 2 descs per req */
  1228. if (!virtio_has_feature(vdev, VIRTIO_RING_F_INDIRECT_DESC))
  1229. queue_depth /= 2;
  1230. } else {
  1231. queue_depth = virtblk_queue_depth;
  1232. }
  1233. memset(&vblk->tag_set, 0, sizeof(vblk->tag_set));
  1234. vblk->tag_set.ops = &virtio_mq_ops;
  1235. vblk->tag_set.queue_depth = queue_depth;
  1236. vblk->tag_set.numa_node = NUMA_NO_NODE;
  1237. vblk->tag_set.flags = BLK_MQ_F_SHOULD_MERGE;
  1238. vblk->tag_set.cmd_size =
  1239. sizeof(struct virtblk_req) +
  1240. sizeof(struct scatterlist) * VIRTIO_BLK_INLINE_SG_CNT;
  1241. vblk->tag_set.driver_data = vblk;
  1242. vblk->tag_set.nr_hw_queues = vblk->num_vqs;
  1243. vblk->tag_set.nr_maps = 1;
  1244. if (vblk->io_queues[HCTX_TYPE_POLL])
  1245. vblk->tag_set.nr_maps = 3;
  1246. err = blk_mq_alloc_tag_set(&vblk->tag_set);
  1247. if (err)
  1248. goto out_free_vq;
  1249. err = virtblk_read_limits(vblk, &lim);
  1250. if (err)
  1251. goto out_free_tags;
  1252. if (virtblk_get_cache_mode(vdev))
  1253. lim.features |= BLK_FEAT_WRITE_CACHE;
  1254. vblk->disk = blk_mq_alloc_disk(&vblk->tag_set, &lim, vblk);
  1255. if (IS_ERR(vblk->disk)) {
  1256. err = PTR_ERR(vblk->disk);
  1257. goto out_free_tags;
  1258. }
  1259. virtblk_name_format("vd", index, vblk->disk->disk_name, DISK_NAME_LEN);
  1260. vblk->disk->major = major;
  1261. vblk->disk->first_minor = index_to_minor(index);
  1262. vblk->disk->minors = 1 << PART_BITS;
  1263. vblk->disk->private_data = vblk;
  1264. vblk->disk->fops = &virtblk_fops;
  1265. vblk->index = index;
  1266. /* If disk is read-only in the host, the guest should obey */
  1267. if (virtio_has_feature(vdev, VIRTIO_BLK_F_RO))
  1268. set_disk_ro(vblk->disk, 1);
  1269. virtblk_update_capacity(vblk, false);
  1270. virtio_device_ready(vdev);
  1271. /*
  1272. * All steps that follow use the VQs therefore they need to be
  1273. * placed after the virtio_device_ready() call above.
  1274. */
  1275. if (IS_ENABLED(CONFIG_BLK_DEV_ZONED) &&
  1276. (lim.features & BLK_FEAT_ZONED)) {
  1277. err = blk_revalidate_disk_zones(vblk->disk);
  1278. if (err)
  1279. goto out_cleanup_disk;
  1280. }
  1281. err = device_add_disk(&vdev->dev, vblk->disk, virtblk_attr_groups);
  1282. if (err)
  1283. goto out_cleanup_disk;
  1284. return 0;
  1285. out_cleanup_disk:
  1286. put_disk(vblk->disk);
  1287. out_free_tags:
  1288. blk_mq_free_tag_set(&vblk->tag_set);
  1289. out_free_vq:
  1290. vdev->config->del_vqs(vdev);
  1291. kfree(vblk->vqs);
  1292. out_free_vblk:
  1293. kfree(vblk);
  1294. out_free_index:
  1295. ida_free(&vd_index_ida, index);
  1296. out:
  1297. return err;
  1298. }
  1299. static void virtblk_remove(struct virtio_device *vdev)
  1300. {
  1301. struct virtio_blk *vblk = vdev->priv;
  1302. /* Make sure no work handler is accessing the device. */
  1303. flush_work(&vblk->config_work);
  1304. del_gendisk(vblk->disk);
  1305. blk_mq_free_tag_set(&vblk->tag_set);
  1306. mutex_lock(&vblk->vdev_mutex);
  1307. /* Stop all the virtqueues. */
  1308. virtio_reset_device(vdev);
  1309. /* Virtqueues are stopped, nothing can use vblk->vdev anymore. */
  1310. vblk->vdev = NULL;
  1311. vdev->config->del_vqs(vdev);
  1312. kfree(vblk->vqs);
  1313. mutex_unlock(&vblk->vdev_mutex);
  1314. put_disk(vblk->disk);
  1315. }
  1316. #ifdef CONFIG_PM_SLEEP
  1317. static int virtblk_freeze(struct virtio_device *vdev)
  1318. {
  1319. struct virtio_blk *vblk = vdev->priv;
  1320. struct request_queue *q = vblk->disk->queue;
  1321. /* Ensure no requests in virtqueues before deleting vqs. */
  1322. blk_mq_freeze_queue(q);
  1323. blk_mq_quiesce_queue_nowait(q);
  1324. blk_mq_unfreeze_queue(q);
  1325. /* Ensure we don't receive any more interrupts */
  1326. virtio_reset_device(vdev);
  1327. /* Make sure no work handler is accessing the device. */
  1328. flush_work(&vblk->config_work);
  1329. vdev->config->del_vqs(vdev);
  1330. kfree(vblk->vqs);
  1331. return 0;
  1332. }
  1333. static int virtblk_restore(struct virtio_device *vdev)
  1334. {
  1335. struct virtio_blk *vblk = vdev->priv;
  1336. int ret;
  1337. ret = init_vq(vdev->priv);
  1338. if (ret)
  1339. return ret;
  1340. virtio_device_ready(vdev);
  1341. blk_mq_unquiesce_queue(vblk->disk->queue);
  1342. return 0;
  1343. }
  1344. #endif
  1345. static const struct virtio_device_id id_table[] = {
  1346. { VIRTIO_ID_BLOCK, VIRTIO_DEV_ANY_ID },
  1347. { 0 },
  1348. };
  1349. static unsigned int features_legacy[] = {
  1350. VIRTIO_BLK_F_SEG_MAX, VIRTIO_BLK_F_SIZE_MAX, VIRTIO_BLK_F_GEOMETRY,
  1351. VIRTIO_BLK_F_RO, VIRTIO_BLK_F_BLK_SIZE,
  1352. VIRTIO_BLK_F_FLUSH, VIRTIO_BLK_F_TOPOLOGY, VIRTIO_BLK_F_CONFIG_WCE,
  1353. VIRTIO_BLK_F_MQ, VIRTIO_BLK_F_DISCARD, VIRTIO_BLK_F_WRITE_ZEROES,
  1354. VIRTIO_BLK_F_SECURE_ERASE,
  1355. }
  1356. ;
  1357. static unsigned int features[] = {
  1358. VIRTIO_BLK_F_SEG_MAX, VIRTIO_BLK_F_SIZE_MAX, VIRTIO_BLK_F_GEOMETRY,
  1359. VIRTIO_BLK_F_RO, VIRTIO_BLK_F_BLK_SIZE,
  1360. VIRTIO_BLK_F_FLUSH, VIRTIO_BLK_F_TOPOLOGY, VIRTIO_BLK_F_CONFIG_WCE,
  1361. VIRTIO_BLK_F_MQ, VIRTIO_BLK_F_DISCARD, VIRTIO_BLK_F_WRITE_ZEROES,
  1362. VIRTIO_BLK_F_SECURE_ERASE, VIRTIO_BLK_F_ZONED,
  1363. };
  1364. static struct virtio_driver virtio_blk = {
  1365. .feature_table = features,
  1366. .feature_table_size = ARRAY_SIZE(features),
  1367. .feature_table_legacy = features_legacy,
  1368. .feature_table_size_legacy = ARRAY_SIZE(features_legacy),
  1369. .driver.name = KBUILD_MODNAME,
  1370. .id_table = id_table,
  1371. .probe = virtblk_probe,
  1372. .remove = virtblk_remove,
  1373. .config_changed = virtblk_config_changed,
  1374. #ifdef CONFIG_PM_SLEEP
  1375. .freeze = virtblk_freeze,
  1376. .restore = virtblk_restore,
  1377. #endif
  1378. };
  1379. static int __init virtio_blk_init(void)
  1380. {
  1381. int error;
  1382. virtblk_wq = alloc_workqueue("virtio-blk", 0, 0);
  1383. if (!virtblk_wq)
  1384. return -ENOMEM;
  1385. major = register_blkdev(0, "virtblk");
  1386. if (major < 0) {
  1387. error = major;
  1388. goto out_destroy_workqueue;
  1389. }
  1390. error = register_virtio_driver(&virtio_blk);
  1391. if (error)
  1392. goto out_unregister_blkdev;
  1393. return 0;
  1394. out_unregister_blkdev:
  1395. unregister_blkdev(major, "virtblk");
  1396. out_destroy_workqueue:
  1397. destroy_workqueue(virtblk_wq);
  1398. return error;
  1399. }
  1400. static void __exit virtio_blk_fini(void)
  1401. {
  1402. unregister_virtio_driver(&virtio_blk);
  1403. unregister_blkdev(major, "virtblk");
  1404. destroy_workqueue(virtblk_wq);
  1405. }
  1406. module_init(virtio_blk_init);
  1407. module_exit(virtio_blk_fini);
  1408. MODULE_DEVICE_TABLE(virtio, id_table);
  1409. MODULE_DESCRIPTION("Virtio block driver");
  1410. MODULE_LICENSE("GPL");