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9f27ee59
JF
1/*
2 * blkfront.c
3 *
4 * XenLinux virtual block device driver.
5 *
6 * Copyright (c) 2003-2004, Keir Fraser & Steve Hand
7 * Modifications by Mark A. Williamson are (c) Intel Research Cambridge
8 * Copyright (c) 2004, Christian Limpach
9 * Copyright (c) 2004, Andrew Warfield
10 * Copyright (c) 2005, Christopher Clark
11 * Copyright (c) 2005, XenSource Ltd
12 *
13 * This program is free software; you can redistribute it and/or
14 * modify it under the terms of the GNU General Public License version 2
15 * as published by the Free Software Foundation; or, when distributed
16 * separately from the Linux kernel or incorporated into other
17 * software packages, subject to the following license:
18 *
19 * Permission is hereby granted, free of charge, to any person obtaining a copy
20 * of this source file (the "Software"), to deal in the Software without
21 * restriction, including without limitation the rights to use, copy, modify,
22 * merge, publish, distribute, sublicense, and/or sell copies of the Software,
23 * and to permit persons to whom the Software is furnished to do so, subject to
24 * the following conditions:
25 *
26 * The above copyright notice and this permission notice shall be included in
27 * all copies or substantial portions of the Software.
28 *
29 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
30 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
31 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
32 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
33 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
34 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
35 * IN THE SOFTWARE.
36 */
37
38#include <linux/interrupt.h>
39#include <linux/blkdev.h>
597592d9 40#include <linux/hdreg.h>
440a01a7 41#include <linux/cdrom.h>
9f27ee59 42#include <linux/module.h>
5a0e3ad6 43#include <linux/slab.h>
2a48fc0a 44#include <linux/mutex.h>
9e973e64 45#include <linux/scatterlist.h>
34ae2e47 46#include <linux/bitmap.h>
155b7edb 47#include <linux/list.h>
9f27ee59 48
1ccbf534 49#include <xen/xen.h>
9f27ee59
JF
50#include <xen/xenbus.h>
51#include <xen/grant_table.h>
52#include <xen/events.h>
53#include <xen/page.h>
c1c5413a 54#include <xen/platform_pci.h>
9f27ee59
JF
55
56#include <xen/interface/grant_table.h>
57#include <xen/interface/io/blkif.h>
3e334239 58#include <xen/interface/io/protocols.h>
9f27ee59
JF
59
60#include <asm/xen/hypervisor.h>
61
62enum blkif_state {
63 BLKIF_STATE_DISCONNECTED,
64 BLKIF_STATE_CONNECTED,
65 BLKIF_STATE_SUSPENDED,
66};
67
0a8704a5
RPM
68struct grant {
69 grant_ref_t gref;
70 unsigned long pfn;
155b7edb 71 struct list_head node;
0a8704a5
RPM
72};
73
9f27ee59
JF
74struct blk_shadow {
75 struct blkif_request req;
a945b980 76 struct request *request;
402b27f9
RPM
77 struct grant **grants_used;
78 struct grant **indirect_grants;
b7649158 79 struct scatterlist *sg;
402b27f9
RPM
80};
81
82struct split_bio {
83 struct bio *bio;
84 atomic_t pending;
85 int err;
9f27ee59
JF
86};
87
2a48fc0a 88static DEFINE_MUTEX(blkfront_mutex);
83d5cde4 89static const struct block_device_operations xlvbd_block_fops;
9f27ee59 90
402b27f9
RPM
91/*
92 * Maximum number of segments in indirect requests, the actual value used by
93 * the frontend driver is the minimum of this value and the value provided
94 * by the backend driver.
95 */
96
97static unsigned int xen_blkif_max_segments = 32;
2d5dc3ba
KRW
98module_param_named(max, xen_blkif_max_segments, int, S_IRUGO);
99MODULE_PARM_DESC(max, "Maximum amount of segments in indirect requests (default is 32)");
402b27f9 100
667c78af 101#define BLK_RING_SIZE __CONST_RING_SIZE(blkif, PAGE_SIZE)
9f27ee59
JF
102
103/*
104 * We have one of these per vbd, whether ide, scsi or 'other'. They
105 * hang in private_data off the gendisk structure. We may end up
106 * putting all kinds of interesting stuff here :-)
107 */
108struct blkfront_info
109{
3467811e 110 spinlock_t io_lock;
b70f5fa0 111 struct mutex mutex;
9f27ee59 112 struct xenbus_device *xbdev;
9f27ee59
JF
113 struct gendisk *gd;
114 int vdevice;
115 blkif_vdev_t handle;
116 enum blkif_state connected;
117 int ring_ref;
118 struct blkif_front_ring ring;
119 unsigned int evtchn, irq;
120 struct request_queue *rq;
121 struct work_struct work;
122 struct gnttab_free_callback callback;
123 struct blk_shadow shadow[BLK_RING_SIZE];
bfe11d6d
RPM
124 struct list_head grants;
125 struct list_head indirect_pages;
0a8704a5 126 unsigned int persistent_gnts_c;
9f27ee59 127 unsigned long shadow_free;
4913efe4 128 unsigned int feature_flush;
edf6ef59 129 unsigned int flush_op;
5ea42986
KRW
130 unsigned int feature_discard:1;
131 unsigned int feature_secdiscard:1;
ed30bf31
LD
132 unsigned int discard_granularity;
133 unsigned int discard_alignment;
0a8704a5 134 unsigned int feature_persistent:1;
402b27f9 135 unsigned int max_indirect_segments;
1d78d705 136 int is_ready;
9f27ee59
JF
137};
138
0e345826
JB
139static unsigned int nr_minors;
140static unsigned long *minors;
141static DEFINE_SPINLOCK(minor_lock);
142
9f27ee59
JF
143#define MAXIMUM_OUTSTANDING_BLOCK_REQS \
144 (BLKIF_MAX_SEGMENTS_PER_REQUEST * BLK_RING_SIZE)
145#define GRANT_INVALID_REF 0
146
147#define PARTS_PER_DISK 16
9246b5f0 148#define PARTS_PER_EXT_DISK 256
9f27ee59
JF
149
150#define BLKIF_MAJOR(dev) ((dev)>>8)
151#define BLKIF_MINOR(dev) ((dev) & 0xff)
152
9246b5f0
CL
153#define EXT_SHIFT 28
154#define EXTENDED (1<<EXT_SHIFT)
155#define VDEV_IS_EXTENDED(dev) ((dev)&(EXTENDED))
156#define BLKIF_MINOR_EXT(dev) ((dev)&(~EXTENDED))
c80a4209
SS
157#define EMULATED_HD_DISK_MINOR_OFFSET (0)
158#define EMULATED_HD_DISK_NAME_OFFSET (EMULATED_HD_DISK_MINOR_OFFSET / 256)
196cfe2a
SB
159#define EMULATED_SD_DISK_MINOR_OFFSET (0)
160#define EMULATED_SD_DISK_NAME_OFFSET (EMULATED_SD_DISK_MINOR_OFFSET / 256)
9f27ee59 161
9246b5f0 162#define DEV_NAME "xvd" /* name in /dev */
9f27ee59 163
402b27f9 164#define SEGS_PER_INDIRECT_FRAME \
80bfa2f6 165 (PAGE_SIZE/sizeof(struct blkif_request_segment))
402b27f9
RPM
166#define INDIRECT_GREFS(_segs) \
167 ((_segs + SEGS_PER_INDIRECT_FRAME - 1)/SEGS_PER_INDIRECT_FRAME)
168
169static int blkfront_setup_indirect(struct blkfront_info *info);
170
9f27ee59
JF
171static int get_id_from_freelist(struct blkfront_info *info)
172{
173 unsigned long free = info->shadow_free;
b9ed7252 174 BUG_ON(free >= BLK_RING_SIZE);
97e36834
KRW
175 info->shadow_free = info->shadow[free].req.u.rw.id;
176 info->shadow[free].req.u.rw.id = 0x0fffffee; /* debug */
9f27ee59
JF
177 return free;
178}
179
6878c32e 180static int add_id_to_freelist(struct blkfront_info *info,
9f27ee59
JF
181 unsigned long id)
182{
6878c32e
KRW
183 if (info->shadow[id].req.u.rw.id != id)
184 return -EINVAL;
185 if (info->shadow[id].request == NULL)
186 return -EINVAL;
97e36834 187 info->shadow[id].req.u.rw.id = info->shadow_free;
a945b980 188 info->shadow[id].request = NULL;
9f27ee59 189 info->shadow_free = id;
6878c32e 190 return 0;
9f27ee59
JF
191}
192
9c1e050c
RPM
193static int fill_grant_buffer(struct blkfront_info *info, int num)
194{
195 struct page *granted_page;
196 struct grant *gnt_list_entry, *n;
197 int i = 0;
198
199 while(i < num) {
200 gnt_list_entry = kzalloc(sizeof(struct grant), GFP_NOIO);
201 if (!gnt_list_entry)
202 goto out_of_memory;
203
bfe11d6d
RPM
204 if (info->feature_persistent) {
205 granted_page = alloc_page(GFP_NOIO);
206 if (!granted_page) {
207 kfree(gnt_list_entry);
208 goto out_of_memory;
209 }
210 gnt_list_entry->pfn = page_to_pfn(granted_page);
9c1e050c
RPM
211 }
212
9c1e050c 213 gnt_list_entry->gref = GRANT_INVALID_REF;
bfe11d6d 214 list_add(&gnt_list_entry->node, &info->grants);
9c1e050c
RPM
215 i++;
216 }
217
218 return 0;
219
220out_of_memory:
221 list_for_each_entry_safe(gnt_list_entry, n,
bfe11d6d 222 &info->grants, node) {
9c1e050c 223 list_del(&gnt_list_entry->node);
bfe11d6d
RPM
224 if (info->feature_persistent)
225 __free_page(pfn_to_page(gnt_list_entry->pfn));
9c1e050c
RPM
226 kfree(gnt_list_entry);
227 i--;
228 }
229 BUG_ON(i != 0);
230 return -ENOMEM;
231}
232
233static struct grant *get_grant(grant_ref_t *gref_head,
bfe11d6d 234 unsigned long pfn,
9c1e050c
RPM
235 struct blkfront_info *info)
236{
237 struct grant *gnt_list_entry;
238 unsigned long buffer_mfn;
239
bfe11d6d
RPM
240 BUG_ON(list_empty(&info->grants));
241 gnt_list_entry = list_first_entry(&info->grants, struct grant,
9c1e050c
RPM
242 node);
243 list_del(&gnt_list_entry->node);
244
245 if (gnt_list_entry->gref != GRANT_INVALID_REF) {
246 info->persistent_gnts_c--;
247 return gnt_list_entry;
248 }
249
250 /* Assign a gref to this page */
251 gnt_list_entry->gref = gnttab_claim_grant_reference(gref_head);
252 BUG_ON(gnt_list_entry->gref == -ENOSPC);
bfe11d6d
RPM
253 if (!info->feature_persistent) {
254 BUG_ON(!pfn);
255 gnt_list_entry->pfn = pfn;
256 }
9c1e050c
RPM
257 buffer_mfn = pfn_to_mfn(gnt_list_entry->pfn);
258 gnttab_grant_foreign_access_ref(gnt_list_entry->gref,
259 info->xbdev->otherend_id,
260 buffer_mfn, 0);
261 return gnt_list_entry;
262}
263
6878c32e
KRW
264static const char *op_name(int op)
265{
266 static const char *const names[] = {
267 [BLKIF_OP_READ] = "read",
268 [BLKIF_OP_WRITE] = "write",
269 [BLKIF_OP_WRITE_BARRIER] = "barrier",
270 [BLKIF_OP_FLUSH_DISKCACHE] = "flush",
271 [BLKIF_OP_DISCARD] = "discard" };
272
273 if (op < 0 || op >= ARRAY_SIZE(names))
274 return "unknown";
275
276 if (!names[op])
277 return "reserved";
278
279 return names[op];
280}
0e345826
JB
281static int xlbd_reserve_minors(unsigned int minor, unsigned int nr)
282{
283 unsigned int end = minor + nr;
284 int rc;
285
286 if (end > nr_minors) {
287 unsigned long *bitmap, *old;
288
f094148a 289 bitmap = kcalloc(BITS_TO_LONGS(end), sizeof(*bitmap),
0e345826
JB
290 GFP_KERNEL);
291 if (bitmap == NULL)
292 return -ENOMEM;
293
294 spin_lock(&minor_lock);
295 if (end > nr_minors) {
296 old = minors;
297 memcpy(bitmap, minors,
298 BITS_TO_LONGS(nr_minors) * sizeof(*bitmap));
299 minors = bitmap;
300 nr_minors = BITS_TO_LONGS(end) * BITS_PER_LONG;
301 } else
302 old = bitmap;
303 spin_unlock(&minor_lock);
304 kfree(old);
305 }
306
307 spin_lock(&minor_lock);
308 if (find_next_bit(minors, end, minor) >= end) {
34ae2e47 309 bitmap_set(minors, minor, nr);
0e345826
JB
310 rc = 0;
311 } else
312 rc = -EBUSY;
313 spin_unlock(&minor_lock);
314
315 return rc;
316}
317
318static void xlbd_release_minors(unsigned int minor, unsigned int nr)
319{
320 unsigned int end = minor + nr;
321
322 BUG_ON(end > nr_minors);
323 spin_lock(&minor_lock);
34ae2e47 324 bitmap_clear(minors, minor, nr);
0e345826
JB
325 spin_unlock(&minor_lock);
326}
327
9f27ee59
JF
328static void blkif_restart_queue_callback(void *arg)
329{
330 struct blkfront_info *info = (struct blkfront_info *)arg;
331 schedule_work(&info->work);
332}
333
afe42d7d 334static int blkif_getgeo(struct block_device *bd, struct hd_geometry *hg)
597592d9
IC
335{
336 /* We don't have real geometry info, but let's at least return
337 values consistent with the size of the device */
338 sector_t nsect = get_capacity(bd->bd_disk);
339 sector_t cylinders = nsect;
340
341 hg->heads = 0xff;
342 hg->sectors = 0x3f;
343 sector_div(cylinders, hg->heads * hg->sectors);
344 hg->cylinders = cylinders;
345 if ((sector_t)(hg->cylinders + 1) * hg->heads * hg->sectors < nsect)
346 hg->cylinders = 0xffff;
347 return 0;
348}
349
a63c848b 350static int blkif_ioctl(struct block_device *bdev, fmode_t mode,
62aa0054 351 unsigned command, unsigned long argument)
440a01a7 352{
a63c848b 353 struct blkfront_info *info = bdev->bd_disk->private_data;
440a01a7
CL
354 int i;
355
356 dev_dbg(&info->xbdev->dev, "command: 0x%x, argument: 0x%lx\n",
357 command, (long)argument);
358
359 switch (command) {
360 case CDROMMULTISESSION:
361 dev_dbg(&info->xbdev->dev, "FIXME: support multisession CDs later\n");
362 for (i = 0; i < sizeof(struct cdrom_multisession); i++)
363 if (put_user(0, (char __user *)(argument + i)))
364 return -EFAULT;
365 return 0;
366
367 case CDROM_GET_CAPABILITY: {
368 struct gendisk *gd = info->gd;
369 if (gd->flags & GENHD_FL_CD)
370 return 0;
371 return -EINVAL;
372 }
373
374 default:
375 /*printk(KERN_ALERT "ioctl %08x not supported by Xen blkdev\n",
376 command);*/
377 return -EINVAL; /* same return as native Linux */
378 }
379
380 return 0;
381}
382
9f27ee59 383/*
c64e38ea 384 * Generate a Xen blkfront IO request from a blk layer request. Reads
edf6ef59 385 * and writes are handled as expected.
9f27ee59 386 *
c64e38ea 387 * @req: a request struct
9f27ee59
JF
388 */
389static int blkif_queue_request(struct request *req)
390{
391 struct blkfront_info *info = req->rq_disk->private_data;
9f27ee59 392 struct blkif_request *ring_req;
9f27ee59
JF
393 unsigned long id;
394 unsigned int fsect, lsect;
402b27f9 395 int i, ref, n;
80bfa2f6 396 struct blkif_request_segment *segments = NULL;
0a8704a5
RPM
397
398 /*
399 * Used to store if we are able to queue the request by just using
400 * existing persistent grants, or if we have to get new grants,
401 * as there are not sufficiently many free.
402 */
403 bool new_persistent_gnts;
9f27ee59 404 grant_ref_t gref_head;
0a8704a5 405 struct grant *gnt_list_entry = NULL;
9e973e64 406 struct scatterlist *sg;
402b27f9 407 int nseg, max_grefs;
9f27ee59
JF
408
409 if (unlikely(info->connected != BLKIF_STATE_CONNECTED))
410 return 1;
411
c47206e2
RPM
412 max_grefs = req->nr_phys_segments;
413 if (max_grefs > BLKIF_MAX_SEGMENTS_PER_REQUEST)
414 /*
415 * If we are using indirect segments we need to account
416 * for the indirect grefs used in the request.
417 */
418 max_grefs += INDIRECT_GREFS(req->nr_phys_segments);
402b27f9
RPM
419
420 /* Check if we have enough grants to allocate a requests */
421 if (info->persistent_gnts_c < max_grefs) {
0a8704a5
RPM
422 new_persistent_gnts = 1;
423 if (gnttab_alloc_grant_references(
402b27f9 424 max_grefs - info->persistent_gnts_c,
0a8704a5
RPM
425 &gref_head) < 0) {
426 gnttab_request_free_callback(
427 &info->callback,
428 blkif_restart_queue_callback,
429 info,
402b27f9 430 max_grefs);
0a8704a5
RPM
431 return 1;
432 }
433 } else
434 new_persistent_gnts = 0;
9f27ee59
JF
435
436 /* Fill out a communications ring structure. */
437 ring_req = RING_GET_REQUEST(&info->ring, info->ring.req_prod_pvt);
438 id = get_id_from_freelist(info);
a945b980 439 info->shadow[id].request = req;
9f27ee59 440
5ea42986 441 if (unlikely(req->cmd_flags & (REQ_DISCARD | REQ_SECURE))) {
ed30bf31 442 ring_req->operation = BLKIF_OP_DISCARD;
ed30bf31 443 ring_req->u.discard.nr_sectors = blk_rq_sectors(req);
402b27f9
RPM
444 ring_req->u.discard.id = id;
445 ring_req->u.discard.sector_number = (blkif_sector_t)blk_rq_pos(req);
5ea42986
KRW
446 if ((req->cmd_flags & REQ_SECURE) && info->feature_secdiscard)
447 ring_req->u.discard.flag = BLKIF_DISCARD_SECURE;
448 else
449 ring_req->u.discard.flag = 0;
ed30bf31 450 } else {
402b27f9
RPM
451 BUG_ON(info->max_indirect_segments == 0 &&
452 req->nr_phys_segments > BLKIF_MAX_SEGMENTS_PER_REQUEST);
453 BUG_ON(info->max_indirect_segments &&
454 req->nr_phys_segments > info->max_indirect_segments);
b7649158 455 nseg = blk_rq_map_sg(req->q, req, info->shadow[id].sg);
402b27f9
RPM
456 ring_req->u.rw.id = id;
457 if (nseg > BLKIF_MAX_SEGMENTS_PER_REQUEST) {
458 /*
459 * The indirect operation can only be a BLKIF_OP_READ or
460 * BLKIF_OP_WRITE
461 */
462 BUG_ON(req->cmd_flags & (REQ_FLUSH | REQ_FUA));
463 ring_req->operation = BLKIF_OP_INDIRECT;
464 ring_req->u.indirect.indirect_op = rq_data_dir(req) ?
465 BLKIF_OP_WRITE : BLKIF_OP_READ;
466 ring_req->u.indirect.sector_number = (blkif_sector_t)blk_rq_pos(req);
467 ring_req->u.indirect.handle = info->handle;
468 ring_req->u.indirect.nr_segments = nseg;
469 } else {
470 ring_req->u.rw.sector_number = (blkif_sector_t)blk_rq_pos(req);
471 ring_req->u.rw.handle = info->handle;
472 ring_req->operation = rq_data_dir(req) ?
473 BLKIF_OP_WRITE : BLKIF_OP_READ;
474 if (req->cmd_flags & (REQ_FLUSH | REQ_FUA)) {
475 /*
476 * Ideally we can do an unordered flush-to-disk. In case the
477 * backend onlysupports barriers, use that. A barrier request
478 * a superset of FUA, so we can implement it the same
479 * way. (It's also a FLUSH+FUA, since it is
480 * guaranteed ordered WRT previous writes.)
481 */
482 ring_req->operation = info->flush_op;
483 }
484 ring_req->u.rw.nr_segments = nseg;
485 }
b7649158 486 for_each_sg(info->shadow[id].sg, sg, nseg, i) {
ed30bf31
LD
487 fsect = sg->offset >> 9;
488 lsect = fsect + (sg->length >> 9) - 1;
6c92e699 489
402b27f9
RPM
490 if ((ring_req->operation == BLKIF_OP_INDIRECT) &&
491 (i % SEGS_PER_INDIRECT_FRAME == 0)) {
427bfe07 492 unsigned long uninitialized_var(pfn);
bfe11d6d 493
402b27f9
RPM
494 if (segments)
495 kunmap_atomic(segments);
496
497 n = i / SEGS_PER_INDIRECT_FRAME;
bfe11d6d
RPM
498 if (!info->feature_persistent) {
499 struct page *indirect_page;
500
501 /* Fetch a pre-allocated page to use for indirect grefs */
502 BUG_ON(list_empty(&info->indirect_pages));
503 indirect_page = list_first_entry(&info->indirect_pages,
504 struct page, lru);
505 list_del(&indirect_page->lru);
506 pfn = page_to_pfn(indirect_page);
507 }
508 gnt_list_entry = get_grant(&gref_head, pfn, info);
402b27f9
RPM
509 info->shadow[id].indirect_grants[n] = gnt_list_entry;
510 segments = kmap_atomic(pfn_to_page(gnt_list_entry->pfn));
511 ring_req->u.indirect.indirect_grefs[n] = gnt_list_entry->gref;
512 }
513
bfe11d6d 514 gnt_list_entry = get_grant(&gref_head, page_to_pfn(sg_page(sg)), info);
9c1e050c 515 ref = gnt_list_entry->gref;
0a8704a5
RPM
516
517 info->shadow[id].grants_used[i] = gnt_list_entry;
518
bfe11d6d 519 if (rq_data_dir(req) && info->feature_persistent) {
0a8704a5
RPM
520 char *bvec_data;
521 void *shared_data;
522
523 BUG_ON(sg->offset + sg->length > PAGE_SIZE);
524
402b27f9 525 shared_data = kmap_atomic(pfn_to_page(gnt_list_entry->pfn));
0a8704a5
RPM
526 bvec_data = kmap_atomic(sg_page(sg));
527
528 /*
529 * this does not wipe data stored outside the
530 * range sg->offset..sg->offset+sg->length.
531 * Therefore, blkback *could* see data from
532 * previous requests. This is OK as long as
533 * persistent grants are shared with just one
534 * domain. It may need refactoring if this
535 * changes
536 */
537 memcpy(shared_data + sg->offset,
538 bvec_data + sg->offset,
539 sg->length);
540
541 kunmap_atomic(bvec_data);
542 kunmap_atomic(shared_data);
543 }
402b27f9
RPM
544 if (ring_req->operation != BLKIF_OP_INDIRECT) {
545 ring_req->u.rw.seg[i] =
546 (struct blkif_request_segment) {
547 .gref = ref,
548 .first_sect = fsect,
549 .last_sect = lsect };
550 } else {
551 n = i % SEGS_PER_INDIRECT_FRAME;
552 segments[n] =
80bfa2f6 553 (struct blkif_request_segment) {
402b27f9
RPM
554 .gref = ref,
555 .first_sect = fsect,
556 .last_sect = lsect };
557 }
ed30bf31 558 }
402b27f9
RPM
559 if (segments)
560 kunmap_atomic(segments);
9f27ee59
JF
561 }
562
563 info->ring.req_prod_pvt++;
564
565 /* Keep a private copy so we can reissue requests when recovering. */
566 info->shadow[id].req = *ring_req;
567
0a8704a5
RPM
568 if (new_persistent_gnts)
569 gnttab_free_grant_references(gref_head);
9f27ee59
JF
570
571 return 0;
572}
573
574
575static inline void flush_requests(struct blkfront_info *info)
576{
577 int notify;
578
579 RING_PUSH_REQUESTS_AND_CHECK_NOTIFY(&info->ring, notify);
580
581 if (notify)
582 notify_remote_via_irq(info->irq);
583}
584
0f1ca65e
AA
585static inline bool blkif_request_flush_valid(struct request *req,
586 struct blkfront_info *info)
587{
588 return ((req->cmd_type != REQ_TYPE_FS) ||
589 ((req->cmd_flags & (REQ_FLUSH | REQ_FUA)) &&
590 !info->flush_op));
591}
592
9f27ee59
JF
593/*
594 * do_blkif_request
595 * read a block; request is in a request queue
596 */
165125e1 597static void do_blkif_request(struct request_queue *rq)
9f27ee59
JF
598{
599 struct blkfront_info *info = NULL;
600 struct request *req;
601 int queued;
602
603 pr_debug("Entered do_blkif_request\n");
604
605 queued = 0;
606
9934c8c0 607 while ((req = blk_peek_request(rq)) != NULL) {
9f27ee59 608 info = req->rq_disk->private_data;
9f27ee59
JF
609
610 if (RING_FULL(&info->ring))
611 goto wait;
612
9934c8c0 613 blk_start_request(req);
296b2f6a 614
0f1ca65e 615 if (blkif_request_flush_valid(req, info)) {
296b2f6a
TH
616 __blk_end_request_all(req, -EIO);
617 continue;
618 }
619
9f27ee59 620 pr_debug("do_blk_req %p: cmd %p, sec %lx, "
b4f42e28 621 "(%u/%u) [%s]\n",
83096ebf
TH
622 req, req->cmd, (unsigned long)blk_rq_pos(req),
623 blk_rq_cur_sectors(req), blk_rq_sectors(req),
b4f42e28 624 rq_data_dir(req) ? "write" : "read");
9f27ee59 625
9f27ee59
JF
626 if (blkif_queue_request(req)) {
627 blk_requeue_request(rq, req);
628wait:
629 /* Avoid pointless unplugs. */
630 blk_stop_queue(rq);
631 break;
632 }
633
634 queued++;
635 }
636
637 if (queued != 0)
638 flush_requests(info);
639}
640
402b27f9 641static int xlvbd_init_blk_queue(struct gendisk *gd, u16 sector_size,
7c4d7d71 642 unsigned int physical_sector_size,
402b27f9 643 unsigned int segments)
9f27ee59 644{
165125e1 645 struct request_queue *rq;
ed30bf31 646 struct blkfront_info *info = gd->private_data;
9f27ee59 647
3467811e 648 rq = blk_init_queue(do_blkif_request, &info->io_lock);
9f27ee59
JF
649 if (rq == NULL)
650 return -1;
651
66d352e1 652 queue_flag_set_unlocked(QUEUE_FLAG_VIRT, rq);
9f27ee59 653
ed30bf31
LD
654 if (info->feature_discard) {
655 queue_flag_set_unlocked(QUEUE_FLAG_DISCARD, rq);
656 blk_queue_max_discard_sectors(rq, get_capacity(gd));
657 rq->limits.discard_granularity = info->discard_granularity;
658 rq->limits.discard_alignment = info->discard_alignment;
5ea42986
KRW
659 if (info->feature_secdiscard)
660 queue_flag_set_unlocked(QUEUE_FLAG_SECDISCARD, rq);
ed30bf31
LD
661 }
662
9f27ee59 663 /* Hard sector size and max sectors impersonate the equiv. hardware. */
e1defc4f 664 blk_queue_logical_block_size(rq, sector_size);
7c4d7d71 665 blk_queue_physical_block_size(rq, physical_sector_size);
294caaf2 666 blk_queue_max_hw_sectors(rq, (segments * PAGE_SIZE) / 512);
9f27ee59
JF
667
668 /* Each segment in a request is up to an aligned page in size. */
669 blk_queue_segment_boundary(rq, PAGE_SIZE - 1);
670 blk_queue_max_segment_size(rq, PAGE_SIZE);
671
672 /* Ensure a merged request will fit in a single I/O ring slot. */
402b27f9 673 blk_queue_max_segments(rq, segments);
9f27ee59
JF
674
675 /* Make sure buffer addresses are sector-aligned. */
676 blk_queue_dma_alignment(rq, 511);
677
1c91fe1a
IC
678 /* Make sure we don't use bounce buffers. */
679 blk_queue_bounce_limit(rq, BLK_BOUNCE_ANY);
680
9f27ee59
JF
681 gd->queue = rq;
682
683 return 0;
684}
685
686
4913efe4 687static void xlvbd_flush(struct blkfront_info *info)
9f27ee59 688{
4913efe4 689 blk_queue_flush(info->rq, info->feature_flush);
402b27f9 690 printk(KERN_INFO "blkfront: %s: %s: %s %s %s %s %s\n",
4913efe4 691 info->gd->disk_name,
edf6ef59
KRW
692 info->flush_op == BLKIF_OP_WRITE_BARRIER ?
693 "barrier" : (info->flush_op == BLKIF_OP_FLUSH_DISKCACHE ?
694 "flush diskcache" : "barrier or flush"),
402b27f9
RPM
695 info->feature_flush ? "enabled;" : "disabled;",
696 "persistent grants:",
697 info->feature_persistent ? "enabled;" : "disabled;",
698 "indirect descriptors:",
699 info->max_indirect_segments ? "enabled;" : "disabled;");
9f27ee59
JF
700}
701
c80a4209
SS
702static int xen_translate_vdev(int vdevice, int *minor, unsigned int *offset)
703{
704 int major;
705 major = BLKIF_MAJOR(vdevice);
706 *minor = BLKIF_MINOR(vdevice);
707 switch (major) {
708 case XEN_IDE0_MAJOR:
709 *offset = (*minor / 64) + EMULATED_HD_DISK_NAME_OFFSET;
710 *minor = ((*minor / 64) * PARTS_PER_DISK) +
711 EMULATED_HD_DISK_MINOR_OFFSET;
712 break;
713 case XEN_IDE1_MAJOR:
714 *offset = (*minor / 64) + 2 + EMULATED_HD_DISK_NAME_OFFSET;
715 *minor = (((*minor / 64) + 2) * PARTS_PER_DISK) +
716 EMULATED_HD_DISK_MINOR_OFFSET;
717 break;
718 case XEN_SCSI_DISK0_MAJOR:
719 *offset = (*minor / PARTS_PER_DISK) + EMULATED_SD_DISK_NAME_OFFSET;
720 *minor = *minor + EMULATED_SD_DISK_MINOR_OFFSET;
721 break;
722 case XEN_SCSI_DISK1_MAJOR:
723 case XEN_SCSI_DISK2_MAJOR:
724 case XEN_SCSI_DISK3_MAJOR:
725 case XEN_SCSI_DISK4_MAJOR:
726 case XEN_SCSI_DISK5_MAJOR:
727 case XEN_SCSI_DISK6_MAJOR:
728 case XEN_SCSI_DISK7_MAJOR:
729 *offset = (*minor / PARTS_PER_DISK) +
730 ((major - XEN_SCSI_DISK1_MAJOR + 1) * 16) +
731 EMULATED_SD_DISK_NAME_OFFSET;
732 *minor = *minor +
733 ((major - XEN_SCSI_DISK1_MAJOR + 1) * 16 * PARTS_PER_DISK) +
734 EMULATED_SD_DISK_MINOR_OFFSET;
735 break;
736 case XEN_SCSI_DISK8_MAJOR:
737 case XEN_SCSI_DISK9_MAJOR:
738 case XEN_SCSI_DISK10_MAJOR:
739 case XEN_SCSI_DISK11_MAJOR:
740 case XEN_SCSI_DISK12_MAJOR:
741 case XEN_SCSI_DISK13_MAJOR:
742 case XEN_SCSI_DISK14_MAJOR:
743 case XEN_SCSI_DISK15_MAJOR:
744 *offset = (*minor / PARTS_PER_DISK) +
745 ((major - XEN_SCSI_DISK8_MAJOR + 8) * 16) +
746 EMULATED_SD_DISK_NAME_OFFSET;
747 *minor = *minor +
748 ((major - XEN_SCSI_DISK8_MAJOR + 8) * 16 * PARTS_PER_DISK) +
749 EMULATED_SD_DISK_MINOR_OFFSET;
750 break;
751 case XENVBD_MAJOR:
752 *offset = *minor / PARTS_PER_DISK;
753 break;
754 default:
755 printk(KERN_WARNING "blkfront: your disk configuration is "
756 "incorrect, please use an xvd device instead\n");
757 return -ENODEV;
758 }
759 return 0;
760}
9f27ee59 761
e77c78c0
JB
762static char *encode_disk_name(char *ptr, unsigned int n)
763{
764 if (n >= 26)
765 ptr = encode_disk_name(ptr, n / 26 - 1);
766 *ptr = 'a' + n % 26;
767 return ptr + 1;
768}
769
9246b5f0
CL
770static int xlvbd_alloc_gendisk(blkif_sector_t capacity,
771 struct blkfront_info *info,
7c4d7d71
SB
772 u16 vdisk_info, u16 sector_size,
773 unsigned int physical_sector_size)
9f27ee59
JF
774{
775 struct gendisk *gd;
776 int nr_minors = 1;
c80a4209 777 int err;
9246b5f0
CL
778 unsigned int offset;
779 int minor;
780 int nr_parts;
e77c78c0 781 char *ptr;
9f27ee59
JF
782
783 BUG_ON(info->gd != NULL);
784 BUG_ON(info->rq != NULL);
785
9246b5f0
CL
786 if ((info->vdevice>>EXT_SHIFT) > 1) {
787 /* this is above the extended range; something is wrong */
788 printk(KERN_WARNING "blkfront: vdevice 0x%x is above the extended range; ignoring\n", info->vdevice);
789 return -ENODEV;
790 }
791
792 if (!VDEV_IS_EXTENDED(info->vdevice)) {
c80a4209
SS
793 err = xen_translate_vdev(info->vdevice, &minor, &offset);
794 if (err)
795 return err;
796 nr_parts = PARTS_PER_DISK;
9246b5f0
CL
797 } else {
798 minor = BLKIF_MINOR_EXT(info->vdevice);
799 nr_parts = PARTS_PER_EXT_DISK;
c80a4209 800 offset = minor / nr_parts;
89153b5c 801 if (xen_hvm_domain() && offset < EMULATED_HD_DISK_NAME_OFFSET + 4)
c80a4209
SS
802 printk(KERN_WARNING "blkfront: vdevice 0x%x might conflict with "
803 "emulated IDE disks,\n\t choose an xvd device name"
804 "from xvde on\n", info->vdevice);
9246b5f0 805 }
e77c78c0
JB
806 if (minor >> MINORBITS) {
807 pr_warn("blkfront: %#x's minor (%#x) out of range; ignoring\n",
808 info->vdevice, minor);
809 return -ENODEV;
810 }
9246b5f0
CL
811
812 if ((minor % nr_parts) == 0)
813 nr_minors = nr_parts;
9f27ee59 814
0e345826
JB
815 err = xlbd_reserve_minors(minor, nr_minors);
816 if (err)
817 goto out;
818 err = -ENODEV;
819
9f27ee59
JF
820 gd = alloc_disk(nr_minors);
821 if (gd == NULL)
0e345826 822 goto release;
9f27ee59 823
e77c78c0
JB
824 strcpy(gd->disk_name, DEV_NAME);
825 ptr = encode_disk_name(gd->disk_name + sizeof(DEV_NAME) - 1, offset);
826 BUG_ON(ptr >= gd->disk_name + DISK_NAME_LEN);
827 if (nr_minors > 1)
828 *ptr = 0;
829 else
830 snprintf(ptr, gd->disk_name + DISK_NAME_LEN - ptr,
831 "%d", minor & (nr_parts - 1));
9f27ee59
JF
832
833 gd->major = XENVBD_MAJOR;
834 gd->first_minor = minor;
835 gd->fops = &xlvbd_block_fops;
836 gd->private_data = info;
837 gd->driverfs_dev = &(info->xbdev->dev);
838 set_capacity(gd, capacity);
839
7c4d7d71 840 if (xlvbd_init_blk_queue(gd, sector_size, physical_sector_size,
402b27f9
RPM
841 info->max_indirect_segments ? :
842 BLKIF_MAX_SEGMENTS_PER_REQUEST)) {
9f27ee59 843 del_gendisk(gd);
0e345826 844 goto release;
9f27ee59
JF
845 }
846
847 info->rq = gd->queue;
848 info->gd = gd;
849
4913efe4 850 xlvbd_flush(info);
9f27ee59
JF
851
852 if (vdisk_info & VDISK_READONLY)
853 set_disk_ro(gd, 1);
854
855 if (vdisk_info & VDISK_REMOVABLE)
856 gd->flags |= GENHD_FL_REMOVABLE;
857
858 if (vdisk_info & VDISK_CDROM)
859 gd->flags |= GENHD_FL_CD;
860
861 return 0;
862
0e345826
JB
863 release:
864 xlbd_release_minors(minor, nr_minors);
9f27ee59
JF
865 out:
866 return err;
867}
868
a66b5aeb
DS
869static void xlvbd_release_gendisk(struct blkfront_info *info)
870{
871 unsigned int minor, nr_minors;
872 unsigned long flags;
873
874 if (info->rq == NULL)
875 return;
876
3467811e 877 spin_lock_irqsave(&info->io_lock, flags);
a66b5aeb
DS
878
879 /* No more blkif_request(). */
880 blk_stop_queue(info->rq);
881
882 /* No more gnttab callback work. */
883 gnttab_cancel_free_callback(&info->callback);
3467811e 884 spin_unlock_irqrestore(&info->io_lock, flags);
a66b5aeb
DS
885
886 /* Flush gnttab callback work. Must be done with no locks held. */
43829731 887 flush_work(&info->work);
a66b5aeb
DS
888
889 del_gendisk(info->gd);
890
891 minor = info->gd->first_minor;
892 nr_minors = info->gd->minors;
893 xlbd_release_minors(minor, nr_minors);
894
895 blk_cleanup_queue(info->rq);
896 info->rq = NULL;
897
898 put_disk(info->gd);
899 info->gd = NULL;
900}
901
9f27ee59
JF
902static void kick_pending_request_queues(struct blkfront_info *info)
903{
904 if (!RING_FULL(&info->ring)) {
905 /* Re-enable calldowns. */
906 blk_start_queue(info->rq);
907 /* Kick things off immediately. */
908 do_blkif_request(info->rq);
909 }
910}
911
912static void blkif_restart_queue(struct work_struct *work)
913{
914 struct blkfront_info *info = container_of(work, struct blkfront_info, work);
915
3467811e 916 spin_lock_irq(&info->io_lock);
9f27ee59
JF
917 if (info->connected == BLKIF_STATE_CONNECTED)
918 kick_pending_request_queues(info);
3467811e 919 spin_unlock_irq(&info->io_lock);
9f27ee59
JF
920}
921
922static void blkif_free(struct blkfront_info *info, int suspend)
923{
155b7edb
RPM
924 struct grant *persistent_gnt;
925 struct grant *n;
402b27f9 926 int i, j, segs;
0a8704a5 927
9f27ee59 928 /* Prevent new requests being issued until we fix things up. */
3467811e 929 spin_lock_irq(&info->io_lock);
9f27ee59
JF
930 info->connected = suspend ?
931 BLKIF_STATE_SUSPENDED : BLKIF_STATE_DISCONNECTED;
932 /* No more blkif_request(). */
933 if (info->rq)
934 blk_stop_queue(info->rq);
0a8704a5
RPM
935
936 /* Remove all persistent grants */
bfe11d6d 937 if (!list_empty(&info->grants)) {
155b7edb 938 list_for_each_entry_safe(persistent_gnt, n,
bfe11d6d 939 &info->grants, node) {
155b7edb 940 list_del(&persistent_gnt->node);
9c1e050c
RPM
941 if (persistent_gnt->gref != GRANT_INVALID_REF) {
942 gnttab_end_foreign_access(persistent_gnt->gref,
943 0, 0UL);
944 info->persistent_gnts_c--;
945 }
bfe11d6d
RPM
946 if (info->feature_persistent)
947 __free_page(pfn_to_page(persistent_gnt->pfn));
155b7edb 948 kfree(persistent_gnt);
0a8704a5 949 }
0a8704a5 950 }
9c1e050c 951 BUG_ON(info->persistent_gnts_c != 0);
0a8704a5 952
bfe11d6d
RPM
953 /*
954 * Remove indirect pages, this only happens when using indirect
955 * descriptors but not persistent grants
956 */
957 if (!list_empty(&info->indirect_pages)) {
958 struct page *indirect_page, *n;
959
960 BUG_ON(info->feature_persistent);
961 list_for_each_entry_safe(indirect_page, n, &info->indirect_pages, lru) {
962 list_del(&indirect_page->lru);
963 __free_page(indirect_page);
964 }
965 }
966
402b27f9
RPM
967 for (i = 0; i < BLK_RING_SIZE; i++) {
968 /*
969 * Clear persistent grants present in requests already
970 * on the shared ring
971 */
972 if (!info->shadow[i].request)
973 goto free_shadow;
974
975 segs = info->shadow[i].req.operation == BLKIF_OP_INDIRECT ?
976 info->shadow[i].req.u.indirect.nr_segments :
977 info->shadow[i].req.u.rw.nr_segments;
978 for (j = 0; j < segs; j++) {
979 persistent_gnt = info->shadow[i].grants_used[j];
980 gnttab_end_foreign_access(persistent_gnt->gref, 0, 0UL);
bfe11d6d
RPM
981 if (info->feature_persistent)
982 __free_page(pfn_to_page(persistent_gnt->pfn));
402b27f9
RPM
983 kfree(persistent_gnt);
984 }
985
986 if (info->shadow[i].req.operation != BLKIF_OP_INDIRECT)
987 /*
988 * If this is not an indirect operation don't try to
989 * free indirect segments
990 */
991 goto free_shadow;
992
993 for (j = 0; j < INDIRECT_GREFS(segs); j++) {
994 persistent_gnt = info->shadow[i].indirect_grants[j];
995 gnttab_end_foreign_access(persistent_gnt->gref, 0, 0UL);
996 __free_page(pfn_to_page(persistent_gnt->pfn));
997 kfree(persistent_gnt);
998 }
999
1000free_shadow:
1001 kfree(info->shadow[i].grants_used);
1002 info->shadow[i].grants_used = NULL;
1003 kfree(info->shadow[i].indirect_grants);
1004 info->shadow[i].indirect_grants = NULL;
b7649158
RPM
1005 kfree(info->shadow[i].sg);
1006 info->shadow[i].sg = NULL;
402b27f9
RPM
1007 }
1008
9f27ee59
JF
1009 /* No more gnttab callback work. */
1010 gnttab_cancel_free_callback(&info->callback);
3467811e 1011 spin_unlock_irq(&info->io_lock);
9f27ee59
JF
1012
1013 /* Flush gnttab callback work. Must be done with no locks held. */
43829731 1014 flush_work(&info->work);
9f27ee59
JF
1015
1016 /* Free resources associated with old device channel. */
1017 if (info->ring_ref != GRANT_INVALID_REF) {
1018 gnttab_end_foreign_access(info->ring_ref, 0,
1019 (unsigned long)info->ring.sring);
1020 info->ring_ref = GRANT_INVALID_REF;
1021 info->ring.sring = NULL;
1022 }
1023 if (info->irq)
1024 unbind_from_irqhandler(info->irq, info);
1025 info->evtchn = info->irq = 0;
1026
1027}
1028
0a8704a5
RPM
1029static void blkif_completion(struct blk_shadow *s, struct blkfront_info *info,
1030 struct blkif_response *bret)
9f27ee59 1031{
d62f6918 1032 int i = 0;
b7649158 1033 struct scatterlist *sg;
0a8704a5
RPM
1034 char *bvec_data;
1035 void *shared_data;
402b27f9
RPM
1036 int nseg;
1037
1038 nseg = s->req.operation == BLKIF_OP_INDIRECT ?
1039 s->req.u.indirect.nr_segments : s->req.u.rw.nr_segments;
0a8704a5 1040
bfe11d6d 1041 if (bret->operation == BLKIF_OP_READ && info->feature_persistent) {
0a8704a5
RPM
1042 /*
1043 * Copy the data received from the backend into the bvec.
1044 * Since bv_offset can be different than 0, and bv_len different
1045 * than PAGE_SIZE, we have to keep track of the current offset,
1046 * to be sure we are copying the data from the right shared page.
1047 */
b7649158
RPM
1048 for_each_sg(s->sg, sg, nseg, i) {
1049 BUG_ON(sg->offset + sg->length > PAGE_SIZE);
0a8704a5
RPM
1050 shared_data = kmap_atomic(
1051 pfn_to_page(s->grants_used[i]->pfn));
b7649158
RPM
1052 bvec_data = kmap_atomic(sg_page(sg));
1053 memcpy(bvec_data + sg->offset,
1054 shared_data + sg->offset,
1055 sg->length);
1056 kunmap_atomic(bvec_data);
0a8704a5 1057 kunmap_atomic(shared_data);
0a8704a5
RPM
1058 }
1059 }
1060 /* Add the persistent grant into the list of free grants */
402b27f9 1061 for (i = 0; i < nseg; i++) {
fbe363c4
RPM
1062 if (gnttab_query_foreign_access(s->grants_used[i]->gref)) {
1063 /*
1064 * If the grant is still mapped by the backend (the
1065 * backend has chosen to make this grant persistent)
1066 * we add it at the head of the list, so it will be
1067 * reused first.
1068 */
bfe11d6d
RPM
1069 if (!info->feature_persistent)
1070 pr_alert_ratelimited("backed has not unmapped grant: %u\n",
1071 s->grants_used[i]->gref);
1072 list_add(&s->grants_used[i]->node, &info->grants);
fbe363c4
RPM
1073 info->persistent_gnts_c++;
1074 } else {
1075 /*
1076 * If the grant is not mapped by the backend we end the
1077 * foreign access and add it to the tail of the list,
1078 * so it will not be picked again unless we run out of
1079 * persistent grants.
1080 */
1081 gnttab_end_foreign_access(s->grants_used[i]->gref, 0, 0UL);
1082 s->grants_used[i]->gref = GRANT_INVALID_REF;
bfe11d6d 1083 list_add_tail(&s->grants_used[i]->node, &info->grants);
fbe363c4 1084 }
0a8704a5 1085 }
402b27f9
RPM
1086 if (s->req.operation == BLKIF_OP_INDIRECT) {
1087 for (i = 0; i < INDIRECT_GREFS(nseg); i++) {
fbe363c4 1088 if (gnttab_query_foreign_access(s->indirect_grants[i]->gref)) {
bfe11d6d
RPM
1089 if (!info->feature_persistent)
1090 pr_alert_ratelimited("backed has not unmapped grant: %u\n",
1091 s->indirect_grants[i]->gref);
1092 list_add(&s->indirect_grants[i]->node, &info->grants);
fbe363c4
RPM
1093 info->persistent_gnts_c++;
1094 } else {
bfe11d6d
RPM
1095 struct page *indirect_page;
1096
fbe363c4 1097 gnttab_end_foreign_access(s->indirect_grants[i]->gref, 0, 0UL);
bfe11d6d
RPM
1098 /*
1099 * Add the used indirect page back to the list of
1100 * available pages for indirect grefs.
1101 */
1102 indirect_page = pfn_to_page(s->indirect_grants[i]->pfn);
1103 list_add(&indirect_page->lru, &info->indirect_pages);
fbe363c4 1104 s->indirect_grants[i]->gref = GRANT_INVALID_REF;
bfe11d6d 1105 list_add_tail(&s->indirect_grants[i]->node, &info->grants);
fbe363c4 1106 }
402b27f9
RPM
1107 }
1108 }
9f27ee59
JF
1109}
1110
1111static irqreturn_t blkif_interrupt(int irq, void *dev_id)
1112{
1113 struct request *req;
1114 struct blkif_response *bret;
1115 RING_IDX i, rp;
1116 unsigned long flags;
1117 struct blkfront_info *info = (struct blkfront_info *)dev_id;
f530f036 1118 int error;
9f27ee59 1119
3467811e 1120 spin_lock_irqsave(&info->io_lock, flags);
9f27ee59
JF
1121
1122 if (unlikely(info->connected != BLKIF_STATE_CONNECTED)) {
3467811e 1123 spin_unlock_irqrestore(&info->io_lock, flags);
9f27ee59
JF
1124 return IRQ_HANDLED;
1125 }
1126
1127 again:
1128 rp = info->ring.sring->rsp_prod;
1129 rmb(); /* Ensure we see queued responses up to 'rp'. */
1130
1131 for (i = info->ring.rsp_cons; i != rp; i++) {
1132 unsigned long id;
9f27ee59
JF
1133
1134 bret = RING_GET_RESPONSE(&info->ring, i);
1135 id = bret->id;
6878c32e
KRW
1136 /*
1137 * The backend has messed up and given us an id that we would
1138 * never have given to it (we stamp it up to BLK_RING_SIZE -
1139 * look in get_id_from_freelist.
1140 */
1141 if (id >= BLK_RING_SIZE) {
1142 WARN(1, "%s: response to %s has incorrect id (%ld)\n",
1143 info->gd->disk_name, op_name(bret->operation), id);
1144 /* We can't safely get the 'struct request' as
1145 * the id is busted. */
1146 continue;
1147 }
a945b980 1148 req = info->shadow[id].request;
9f27ee59 1149
5ea42986 1150 if (bret->operation != BLKIF_OP_DISCARD)
0a8704a5 1151 blkif_completion(&info->shadow[id], info, bret);
9f27ee59 1152
6878c32e
KRW
1153 if (add_id_to_freelist(info, id)) {
1154 WARN(1, "%s: response to %s (id %ld) couldn't be recycled!\n",
1155 info->gd->disk_name, op_name(bret->operation), id);
1156 continue;
1157 }
9f27ee59 1158
f530f036 1159 error = (bret->status == BLKIF_RSP_OKAY) ? 0 : -EIO;
9f27ee59 1160 switch (bret->operation) {
ed30bf31
LD
1161 case BLKIF_OP_DISCARD:
1162 if (unlikely(bret->status == BLKIF_RSP_EOPNOTSUPP)) {
1163 struct request_queue *rq = info->rq;
6878c32e
KRW
1164 printk(KERN_WARNING "blkfront: %s: %s op failed\n",
1165 info->gd->disk_name, op_name(bret->operation));
ed30bf31
LD
1166 error = -EOPNOTSUPP;
1167 info->feature_discard = 0;
5ea42986 1168 info->feature_secdiscard = 0;
ed30bf31 1169 queue_flag_clear(QUEUE_FLAG_DISCARD, rq);
5ea42986 1170 queue_flag_clear(QUEUE_FLAG_SECDISCARD, rq);
ed30bf31
LD
1171 }
1172 __blk_end_request_all(req, error);
1173 break;
edf6ef59 1174 case BLKIF_OP_FLUSH_DISKCACHE:
9f27ee59
JF
1175 case BLKIF_OP_WRITE_BARRIER:
1176 if (unlikely(bret->status == BLKIF_RSP_EOPNOTSUPP)) {
6878c32e
KRW
1177 printk(KERN_WARNING "blkfront: %s: %s op failed\n",
1178 info->gd->disk_name, op_name(bret->operation));
f530f036 1179 error = -EOPNOTSUPP;
dcb8baec
JF
1180 }
1181 if (unlikely(bret->status == BLKIF_RSP_ERROR &&
97e36834 1182 info->shadow[id].req.u.rw.nr_segments == 0)) {
6878c32e
KRW
1183 printk(KERN_WARNING "blkfront: %s: empty %s op failed\n",
1184 info->gd->disk_name, op_name(bret->operation));
dcb8baec
JF
1185 error = -EOPNOTSUPP;
1186 }
1187 if (unlikely(error)) {
1188 if (error == -EOPNOTSUPP)
1189 error = 0;
4913efe4 1190 info->feature_flush = 0;
edf6ef59 1191 info->flush_op = 0;
4913efe4 1192 xlvbd_flush(info);
9f27ee59
JF
1193 }
1194 /* fall through */
1195 case BLKIF_OP_READ:
1196 case BLKIF_OP_WRITE:
1197 if (unlikely(bret->status != BLKIF_RSP_OKAY))
1198 dev_dbg(&info->xbdev->dev, "Bad return from blkdev data "
1199 "request: %x\n", bret->status);
1200
40cbbb78 1201 __blk_end_request_all(req, error);
9f27ee59
JF
1202 break;
1203 default:
1204 BUG();
1205 }
1206 }
1207
1208 info->ring.rsp_cons = i;
1209
1210 if (i != info->ring.req_prod_pvt) {
1211 int more_to_do;
1212 RING_FINAL_CHECK_FOR_RESPONSES(&info->ring, more_to_do);
1213 if (more_to_do)
1214 goto again;
1215 } else
1216 info->ring.sring->rsp_event = i + 1;
1217
1218 kick_pending_request_queues(info);
1219
3467811e 1220 spin_unlock_irqrestore(&info->io_lock, flags);
9f27ee59
JF
1221
1222 return IRQ_HANDLED;
1223}
1224
1225
1226static int setup_blkring(struct xenbus_device *dev,
1227 struct blkfront_info *info)
1228{
1229 struct blkif_sring *sring;
1230 int err;
1231
1232 info->ring_ref = GRANT_INVALID_REF;
1233
a144ff09 1234 sring = (struct blkif_sring *)__get_free_page(GFP_NOIO | __GFP_HIGH);
9f27ee59
JF
1235 if (!sring) {
1236 xenbus_dev_fatal(dev, -ENOMEM, "allocating shared ring");
1237 return -ENOMEM;
1238 }
1239 SHARED_RING_INIT(sring);
1240 FRONT_RING_INIT(&info->ring, sring, PAGE_SIZE);
9e973e64 1241
9f27ee59
JF
1242 err = xenbus_grant_ring(dev, virt_to_mfn(info->ring.sring));
1243 if (err < 0) {
1244 free_page((unsigned long)sring);
1245 info->ring.sring = NULL;
1246 goto fail;
1247 }
1248 info->ring_ref = err;
1249
1250 err = xenbus_alloc_evtchn(dev, &info->evtchn);
1251 if (err)
1252 goto fail;
1253
89c30f16
TT
1254 err = bind_evtchn_to_irqhandler(info->evtchn, blkif_interrupt, 0,
1255 "blkif", info);
9f27ee59
JF
1256 if (err <= 0) {
1257 xenbus_dev_fatal(dev, err,
1258 "bind_evtchn_to_irqhandler failed");
1259 goto fail;
1260 }
1261 info->irq = err;
1262
1263 return 0;
1264fail:
1265 blkif_free(info, 0);
1266 return err;
1267}
1268
1269
1270/* Common code used when first setting up, and when resuming. */
203fd61f 1271static int talk_to_blkback(struct xenbus_device *dev,
9f27ee59
JF
1272 struct blkfront_info *info)
1273{
1274 const char *message = NULL;
1275 struct xenbus_transaction xbt;
1276 int err;
1277
1278 /* Create shared ring, alloc event channel. */
1279 err = setup_blkring(dev, info);
1280 if (err)
1281 goto out;
1282
1283again:
1284 err = xenbus_transaction_start(&xbt);
1285 if (err) {
1286 xenbus_dev_fatal(dev, err, "starting transaction");
1287 goto destroy_blkring;
1288 }
1289
1290 err = xenbus_printf(xbt, dev->nodename,
1291 "ring-ref", "%u", info->ring_ref);
1292 if (err) {
1293 message = "writing ring-ref";
1294 goto abort_transaction;
1295 }
1296 err = xenbus_printf(xbt, dev->nodename,
1297 "event-channel", "%u", info->evtchn);
1298 if (err) {
1299 message = "writing event-channel";
1300 goto abort_transaction;
1301 }
3e334239
MA
1302 err = xenbus_printf(xbt, dev->nodename, "protocol", "%s",
1303 XEN_IO_PROTO_ABI_NATIVE);
1304 if (err) {
1305 message = "writing protocol";
1306 goto abort_transaction;
1307 }
0a8704a5 1308 err = xenbus_printf(xbt, dev->nodename,
cb5bd4d1 1309 "feature-persistent", "%u", 1);
0a8704a5
RPM
1310 if (err)
1311 dev_warn(&dev->dev,
1312 "writing persistent grants feature to xenbus");
9f27ee59
JF
1313
1314 err = xenbus_transaction_end(xbt, 0);
1315 if (err) {
1316 if (err == -EAGAIN)
1317 goto again;
1318 xenbus_dev_fatal(dev, err, "completing transaction");
1319 goto destroy_blkring;
1320 }
1321
1322 xenbus_switch_state(dev, XenbusStateInitialised);
1323
1324 return 0;
1325
1326 abort_transaction:
1327 xenbus_transaction_end(xbt, 1);
1328 if (message)
1329 xenbus_dev_fatal(dev, err, "%s", message);
1330 destroy_blkring:
1331 blkif_free(info, 0);
1332 out:
1333 return err;
1334}
1335
9f27ee59
JF
1336/**
1337 * Entry point to this code when a new device is created. Allocate the basic
1338 * structures and the ring buffer for communication with the backend, and
1339 * inform the backend of the appropriate details for those. Switch to
1340 * Initialised state.
1341 */
1342static int blkfront_probe(struct xenbus_device *dev,
1343 const struct xenbus_device_id *id)
1344{
1345 int err, vdevice, i;
1346 struct blkfront_info *info;
1347
1348 /* FIXME: Use dynamic device id if this is not set. */
1349 err = xenbus_scanf(XBT_NIL, dev->nodename,
1350 "virtual-device", "%i", &vdevice);
1351 if (err != 1) {
9246b5f0
CL
1352 /* go looking in the extended area instead */
1353 err = xenbus_scanf(XBT_NIL, dev->nodename, "virtual-device-ext",
1354 "%i", &vdevice);
1355 if (err != 1) {
1356 xenbus_dev_fatal(dev, err, "reading virtual-device");
1357 return err;
1358 }
9f27ee59
JF
1359 }
1360
b98a409b
SS
1361 if (xen_hvm_domain()) {
1362 char *type;
1363 int len;
1364 /* no unplug has been done: do not hook devices != xen vbds */
51c71a3b 1365 if (xen_has_pv_and_legacy_disk_devices()) {
b98a409b
SS
1366 int major;
1367
1368 if (!VDEV_IS_EXTENDED(vdevice))
1369 major = BLKIF_MAJOR(vdevice);
1370 else
1371 major = XENVBD_MAJOR;
1372
1373 if (major != XENVBD_MAJOR) {
1374 printk(KERN_INFO
1375 "%s: HVM does not support vbd %d as xen block device\n",
1376 __FUNCTION__, vdevice);
1377 return -ENODEV;
1378 }
1379 }
1380 /* do not create a PV cdrom device if we are an HVM guest */
1381 type = xenbus_read(XBT_NIL, dev->nodename, "device-type", &len);
1382 if (IS_ERR(type))
1383 return -ENODEV;
1384 if (strncmp(type, "cdrom", 5) == 0) {
1385 kfree(type);
c1c5413a
SS
1386 return -ENODEV;
1387 }
b98a409b 1388 kfree(type);
c1c5413a 1389 }
9f27ee59
JF
1390 info = kzalloc(sizeof(*info), GFP_KERNEL);
1391 if (!info) {
1392 xenbus_dev_fatal(dev, -ENOMEM, "allocating info structure");
1393 return -ENOMEM;
1394 }
1395
b70f5fa0 1396 mutex_init(&info->mutex);
3467811e 1397 spin_lock_init(&info->io_lock);
9f27ee59
JF
1398 info->xbdev = dev;
1399 info->vdevice = vdevice;
bfe11d6d
RPM
1400 INIT_LIST_HEAD(&info->grants);
1401 INIT_LIST_HEAD(&info->indirect_pages);
0a8704a5 1402 info->persistent_gnts_c = 0;
9f27ee59
JF
1403 info->connected = BLKIF_STATE_DISCONNECTED;
1404 INIT_WORK(&info->work, blkif_restart_queue);
1405
1406 for (i = 0; i < BLK_RING_SIZE; i++)
97e36834
KRW
1407 info->shadow[i].req.u.rw.id = i+1;
1408 info->shadow[BLK_RING_SIZE-1].req.u.rw.id = 0x0fffffff;
9f27ee59
JF
1409
1410 /* Front end dir is a number, which is used as the id. */
1411 info->handle = simple_strtoul(strrchr(dev->nodename, '/')+1, NULL, 0);
a1b4b12b 1412 dev_set_drvdata(&dev->dev, info);
9f27ee59 1413
203fd61f 1414 err = talk_to_blkback(dev, info);
9f27ee59
JF
1415 if (err) {
1416 kfree(info);
a1b4b12b 1417 dev_set_drvdata(&dev->dev, NULL);
9f27ee59
JF
1418 return err;
1419 }
1420
1421 return 0;
1422}
1423
402b27f9
RPM
1424static void split_bio_end(struct bio *bio, int error)
1425{
1426 struct split_bio *split_bio = bio->bi_private;
1427
1428 if (error)
1429 split_bio->err = error;
1430
1431 if (atomic_dec_and_test(&split_bio->pending)) {
1432 split_bio->bio->bi_phys_segments = 0;
1433 bio_endio(split_bio->bio, split_bio->err);
1434 kfree(split_bio);
1435 }
1436 bio_put(bio);
1437}
9f27ee59
JF
1438
1439static int blkif_recover(struct blkfront_info *info)
1440{
1441 int i;
402b27f9 1442 struct request *req, *n;
9f27ee59 1443 struct blk_shadow *copy;
402b27f9
RPM
1444 int rc;
1445 struct bio *bio, *cloned_bio;
1446 struct bio_list bio_list, merge_bio;
1447 unsigned int segs, offset;
1448 int pending, size;
1449 struct split_bio *split_bio;
1450 struct list_head requests;
9f27ee59
JF
1451
1452 /* Stage 1: Make a safe copy of the shadow state. */
29d0b218 1453 copy = kmemdup(info->shadow, sizeof(info->shadow),
a144ff09 1454 GFP_NOIO | __GFP_REPEAT | __GFP_HIGH);
9f27ee59
JF
1455 if (!copy)
1456 return -ENOMEM;
9f27ee59
JF
1457
1458 /* Stage 2: Set up free list. */
1459 memset(&info->shadow, 0, sizeof(info->shadow));
1460 for (i = 0; i < BLK_RING_SIZE; i++)
97e36834 1461 info->shadow[i].req.u.rw.id = i+1;
9f27ee59 1462 info->shadow_free = info->ring.req_prod_pvt;
97e36834 1463 info->shadow[BLK_RING_SIZE-1].req.u.rw.id = 0x0fffffff;
9f27ee59 1464
402b27f9
RPM
1465 rc = blkfront_setup_indirect(info);
1466 if (rc) {
1467 kfree(copy);
1468 return rc;
1469 }
1470
1471 segs = info->max_indirect_segments ? : BLKIF_MAX_SEGMENTS_PER_REQUEST;
1472 blk_queue_max_segments(info->rq, segs);
1473 bio_list_init(&bio_list);
1474 INIT_LIST_HEAD(&requests);
9f27ee59
JF
1475 for (i = 0; i < BLK_RING_SIZE; i++) {
1476 /* Not in use? */
a945b980 1477 if (!copy[i].request)
9f27ee59
JF
1478 continue;
1479
402b27f9
RPM
1480 /*
1481 * Get the bios in the request so we can re-queue them.
1482 */
1483 if (copy[i].request->cmd_flags &
1484 (REQ_FLUSH | REQ_FUA | REQ_DISCARD | REQ_SECURE)) {
1485 /*
1486 * Flush operations don't contain bios, so
1487 * we need to requeue the whole request
1488 */
1489 list_add(&copy[i].request->queuelist, &requests);
1490 continue;
5ea42986 1491 }
402b27f9
RPM
1492 merge_bio.head = copy[i].request->bio;
1493 merge_bio.tail = copy[i].request->biotail;
1494 bio_list_merge(&bio_list, &merge_bio);
1495 copy[i].request->bio = NULL;
1496 blk_put_request(copy[i].request);
9f27ee59
JF
1497 }
1498
1499 kfree(copy);
1500
402b27f9
RPM
1501 /*
1502 * Empty the queue, this is important because we might have
1503 * requests in the queue with more segments than what we
1504 * can handle now.
1505 */
1506 spin_lock_irq(&info->io_lock);
1507 while ((req = blk_fetch_request(info->rq)) != NULL) {
1508 if (req->cmd_flags &
1509 (REQ_FLUSH | REQ_FUA | REQ_DISCARD | REQ_SECURE)) {
1510 list_add(&req->queuelist, &requests);
1511 continue;
1512 }
1513 merge_bio.head = req->bio;
1514 merge_bio.tail = req->biotail;
1515 bio_list_merge(&bio_list, &merge_bio);
1516 req->bio = NULL;
1517 if (req->cmd_flags & (REQ_FLUSH | REQ_FUA))
1518 pr_alert("diskcache flush request found!\n");
1519 __blk_put_request(info->rq, req);
1520 }
1521 spin_unlock_irq(&info->io_lock);
1522
9f27ee59
JF
1523 xenbus_switch_state(info->xbdev, XenbusStateConnected);
1524
3467811e 1525 spin_lock_irq(&info->io_lock);
9f27ee59
JF
1526
1527 /* Now safe for us to use the shared ring */
1528 info->connected = BLKIF_STATE_CONNECTED;
1529
9f27ee59
JF
1530 /* Kick any other new requests queued since we resumed */
1531 kick_pending_request_queues(info);
1532
402b27f9
RPM
1533 list_for_each_entry_safe(req, n, &requests, queuelist) {
1534 /* Requeue pending requests (flush or discard) */
1535 list_del_init(&req->queuelist);
1536 BUG_ON(req->nr_phys_segments > segs);
1537 blk_requeue_request(info->rq, req);
1538 }
3467811e 1539 spin_unlock_irq(&info->io_lock);
9f27ee59 1540
402b27f9
RPM
1541 while ((bio = bio_list_pop(&bio_list)) != NULL) {
1542 /* Traverse the list of pending bios and re-queue them */
1543 if (bio_segments(bio) > segs) {
1544 /*
1545 * This bio has more segments than what we can
1546 * handle, we have to split it.
1547 */
1548 pending = (bio_segments(bio) + segs - 1) / segs;
1549 split_bio = kzalloc(sizeof(*split_bio), GFP_NOIO);
1550 BUG_ON(split_bio == NULL);
1551 atomic_set(&split_bio->pending, pending);
1552 split_bio->bio = bio;
1553 for (i = 0; i < pending; i++) {
1554 offset = (i * segs * PAGE_SIZE) >> 9;
1555 size = min((unsigned int)(segs * PAGE_SIZE) >> 9,
4f024f37 1556 (unsigned int)bio_sectors(bio) - offset);
402b27f9
RPM
1557 cloned_bio = bio_clone(bio, GFP_NOIO);
1558 BUG_ON(cloned_bio == NULL);
6678d83f 1559 bio_trim(cloned_bio, offset, size);
402b27f9
RPM
1560 cloned_bio->bi_private = split_bio;
1561 cloned_bio->bi_end_io = split_bio_end;
1562 submit_bio(cloned_bio->bi_rw, cloned_bio);
1563 }
1564 /*
1565 * Now we have to wait for all those smaller bios to
1566 * end, so we can also end the "parent" bio.
1567 */
1568 continue;
1569 }
1570 /* We don't need to split this bio */
1571 submit_bio(bio->bi_rw, bio);
1572 }
1573
9f27ee59
JF
1574 return 0;
1575}
1576
1577/**
1578 * We are reconnecting to the backend, due to a suspend/resume, or a backend
1579 * driver restart. We tear down our blkif structure and recreate it, but
1580 * leave the device-layer structures intact so that this is transparent to the
1581 * rest of the kernel.
1582 */
1583static int blkfront_resume(struct xenbus_device *dev)
1584{
a1b4b12b 1585 struct blkfront_info *info = dev_get_drvdata(&dev->dev);
9f27ee59
JF
1586 int err;
1587
1588 dev_dbg(&dev->dev, "blkfront_resume: %s\n", dev->nodename);
1589
1590 blkif_free(info, info->connected == BLKIF_STATE_CONNECTED);
1591
203fd61f 1592 err = talk_to_blkback(dev, info);
402b27f9
RPM
1593
1594 /*
1595 * We have to wait for the backend to switch to
1596 * connected state, since we want to read which
1597 * features it supports.
1598 */
9f27ee59
JF
1599
1600 return err;
1601}
1602
b70f5fa0
DS
1603static void
1604blkfront_closing(struct blkfront_info *info)
1605{
1606 struct xenbus_device *xbdev = info->xbdev;
1607 struct block_device *bdev = NULL;
1608
1609 mutex_lock(&info->mutex);
1610
1611 if (xbdev->state == XenbusStateClosing) {
1612 mutex_unlock(&info->mutex);
1613 return;
1614 }
1615
1616 if (info->gd)
1617 bdev = bdget_disk(info->gd, 0);
1618
1619 mutex_unlock(&info->mutex);
1620
1621 if (!bdev) {
1622 xenbus_frontend_closed(xbdev);
1623 return;
1624 }
1625
1626 mutex_lock(&bdev->bd_mutex);
1627
7b32d104 1628 if (bdev->bd_openers) {
b70f5fa0
DS
1629 xenbus_dev_error(xbdev, -EBUSY,
1630 "Device in use; refusing to close");
1631 xenbus_switch_state(xbdev, XenbusStateClosing);
1632 } else {
1633 xlvbd_release_gendisk(info);
1634 xenbus_frontend_closed(xbdev);
1635 }
1636
1637 mutex_unlock(&bdev->bd_mutex);
1638 bdput(bdev);
1639}
9f27ee59 1640
ed30bf31
LD
1641static void blkfront_setup_discard(struct blkfront_info *info)
1642{
1643 int err;
ed30bf31
LD
1644 unsigned int discard_granularity;
1645 unsigned int discard_alignment;
5ea42986 1646 unsigned int discard_secure;
ed30bf31 1647
1c8cad6c
OH
1648 info->feature_discard = 1;
1649 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
1650 "discard-granularity", "%u", &discard_granularity,
1651 "discard-alignment", "%u", &discard_alignment,
1652 NULL);
1653 if (!err) {
1654 info->discard_granularity = discard_granularity;
1655 info->discard_alignment = discard_alignment;
1656 }
1657 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
1658 "discard-secure", "%d", &discard_secure,
1659 NULL);
1660 if (!err)
1661 info->feature_secdiscard = !!discard_secure;
ed30bf31
LD
1662}
1663
402b27f9
RPM
1664static int blkfront_setup_indirect(struct blkfront_info *info)
1665{
1666 unsigned int indirect_segments, segs;
1667 int err, i;
1668
1669 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
1670 "feature-max-indirect-segments", "%u", &indirect_segments,
1671 NULL);
1672 if (err) {
1673 info->max_indirect_segments = 0;
1674 segs = BLKIF_MAX_SEGMENTS_PER_REQUEST;
1675 } else {
1676 info->max_indirect_segments = min(indirect_segments,
1677 xen_blkif_max_segments);
1678 segs = info->max_indirect_segments;
1679 }
402b27f9
RPM
1680
1681 err = fill_grant_buffer(info, (segs + INDIRECT_GREFS(segs)) * BLK_RING_SIZE);
1682 if (err)
1683 goto out_of_memory;
1684
bfe11d6d
RPM
1685 if (!info->feature_persistent && info->max_indirect_segments) {
1686 /*
1687 * We are using indirect descriptors but not persistent
1688 * grants, we need to allocate a set of pages that can be
1689 * used for mapping indirect grefs
1690 */
1691 int num = INDIRECT_GREFS(segs) * BLK_RING_SIZE;
1692
1693 BUG_ON(!list_empty(&info->indirect_pages));
1694 for (i = 0; i < num; i++) {
1695 struct page *indirect_page = alloc_page(GFP_NOIO);
1696 if (!indirect_page)
1697 goto out_of_memory;
1698 list_add(&indirect_page->lru, &info->indirect_pages);
1699 }
1700 }
1701
402b27f9
RPM
1702 for (i = 0; i < BLK_RING_SIZE; i++) {
1703 info->shadow[i].grants_used = kzalloc(
1704 sizeof(info->shadow[i].grants_used[0]) * segs,
1705 GFP_NOIO);
b7649158 1706 info->shadow[i].sg = kzalloc(sizeof(info->shadow[i].sg[0]) * segs, GFP_NOIO);
402b27f9
RPM
1707 if (info->max_indirect_segments)
1708 info->shadow[i].indirect_grants = kzalloc(
1709 sizeof(info->shadow[i].indirect_grants[0]) *
1710 INDIRECT_GREFS(segs),
1711 GFP_NOIO);
1712 if ((info->shadow[i].grants_used == NULL) ||
b7649158 1713 (info->shadow[i].sg == NULL) ||
402b27f9
RPM
1714 (info->max_indirect_segments &&
1715 (info->shadow[i].indirect_grants == NULL)))
1716 goto out_of_memory;
b7649158 1717 sg_init_table(info->shadow[i].sg, segs);
402b27f9
RPM
1718 }
1719
1720
1721 return 0;
1722
1723out_of_memory:
402b27f9
RPM
1724 for (i = 0; i < BLK_RING_SIZE; i++) {
1725 kfree(info->shadow[i].grants_used);
1726 info->shadow[i].grants_used = NULL;
b7649158
RPM
1727 kfree(info->shadow[i].sg);
1728 info->shadow[i].sg = NULL;
402b27f9
RPM
1729 kfree(info->shadow[i].indirect_grants);
1730 info->shadow[i].indirect_grants = NULL;
1731 }
bfe11d6d
RPM
1732 if (!list_empty(&info->indirect_pages)) {
1733 struct page *indirect_page, *n;
1734 list_for_each_entry_safe(indirect_page, n, &info->indirect_pages, lru) {
1735 list_del(&indirect_page->lru);
1736 __free_page(indirect_page);
1737 }
1738 }
402b27f9
RPM
1739 return -ENOMEM;
1740}
1741
9f27ee59
JF
1742/*
1743 * Invoked when the backend is finally 'ready' (and has told produced
1744 * the details about the physical device - #sectors, size, etc).
1745 */
1746static void blkfront_connect(struct blkfront_info *info)
1747{
1748 unsigned long long sectors;
1749 unsigned long sector_size;
7c4d7d71 1750 unsigned int physical_sector_size;
9f27ee59
JF
1751 unsigned int binfo;
1752 int err;
0a8704a5 1753 int barrier, flush, discard, persistent;
9f27ee59 1754
1fa73be6
S
1755 switch (info->connected) {
1756 case BLKIF_STATE_CONNECTED:
1757 /*
1758 * Potentially, the back-end may be signalling
1759 * a capacity change; update the capacity.
1760 */
1761 err = xenbus_scanf(XBT_NIL, info->xbdev->otherend,
1762 "sectors", "%Lu", &sectors);
1763 if (XENBUS_EXIST_ERR(err))
1764 return;
1765 printk(KERN_INFO "Setting capacity to %Lu\n",
1766 sectors);
1767 set_capacity(info->gd, sectors);
2def141e 1768 revalidate_disk(info->gd);
1fa73be6 1769
402b27f9 1770 return;
1fa73be6 1771 case BLKIF_STATE_SUSPENDED:
402b27f9
RPM
1772 /*
1773 * If we are recovering from suspension, we need to wait
1774 * for the backend to announce it's features before
1775 * reconnecting, at least we need to know if the backend
1776 * supports indirect descriptors, and how many.
1777 */
1778 blkif_recover(info);
9f27ee59
JF
1779 return;
1780
b4dddb49
JF
1781 default:
1782 break;
1fa73be6 1783 }
9f27ee59
JF
1784
1785 dev_dbg(&info->xbdev->dev, "%s:%s.\n",
1786 __func__, info->xbdev->otherend);
1787
1788 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
1789 "sectors", "%llu", &sectors,
1790 "info", "%u", &binfo,
1791 "sector-size", "%lu", &sector_size,
1792 NULL);
1793 if (err) {
1794 xenbus_dev_fatal(info->xbdev, err,
1795 "reading backend fields at %s",
1796 info->xbdev->otherend);
1797 return;
1798 }
1799
7c4d7d71
SB
1800 /*
1801 * physcial-sector-size is a newer field, so old backends may not
1802 * provide this. Assume physical sector size to be the same as
1803 * sector_size in that case.
1804 */
1805 err = xenbus_scanf(XBT_NIL, info->xbdev->otherend,
1806 "physical-sector-size", "%u", &physical_sector_size);
1807 if (err != 1)
1808 physical_sector_size = sector_size;
1809
edf6ef59
KRW
1810 info->feature_flush = 0;
1811 info->flush_op = 0;
1812
9f27ee59 1813 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
4352b47a 1814 "feature-barrier", "%d", &barrier,
9f27ee59 1815 NULL);
7901d141
JF
1816
1817 /*
1818 * If there's no "feature-barrier" defined, then it means
1819 * we're dealing with a very old backend which writes
4913efe4 1820 * synchronously; nothing to do.
7901d141 1821 *
6958f145 1822 * If there are barriers, then we use flush.
7901d141 1823 */
edf6ef59 1824 if (!err && barrier) {
be2f8373 1825 info->feature_flush = REQ_FLUSH | REQ_FUA;
edf6ef59
KRW
1826 info->flush_op = BLKIF_OP_WRITE_BARRIER;
1827 }
1828 /*
1829 * And if there is "feature-flush-cache" use that above
1830 * barriers.
1831 */
1832 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
1833 "feature-flush-cache", "%d", &flush,
1834 NULL);
9f27ee59 1835
edf6ef59
KRW
1836 if (!err && flush) {
1837 info->feature_flush = REQ_FLUSH;
1838 info->flush_op = BLKIF_OP_FLUSH_DISKCACHE;
1839 }
ed30bf31
LD
1840
1841 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
1842 "feature-discard", "%d", &discard,
1843 NULL);
1844
1845 if (!err && discard)
1846 blkfront_setup_discard(info);
1847
0a8704a5
RPM
1848 err = xenbus_gather(XBT_NIL, info->xbdev->otherend,
1849 "feature-persistent", "%u", &persistent,
1850 NULL);
1851 if (err)
1852 info->feature_persistent = 0;
1853 else
1854 info->feature_persistent = persistent;
1855
402b27f9
RPM
1856 err = blkfront_setup_indirect(info);
1857 if (err) {
1858 xenbus_dev_fatal(info->xbdev, err, "setup_indirect at %s",
1859 info->xbdev->otherend);
1860 return;
1861 }
1862
7c4d7d71
SB
1863 err = xlvbd_alloc_gendisk(sectors, info, binfo, sector_size,
1864 physical_sector_size);
9f27ee59
JF
1865 if (err) {
1866 xenbus_dev_fatal(info->xbdev, err, "xlvbd_add at %s",
1867 info->xbdev->otherend);
1868 return;
1869 }
1870
1871 xenbus_switch_state(info->xbdev, XenbusStateConnected);
1872
1873 /* Kick pending requests. */
3467811e 1874 spin_lock_irq(&info->io_lock);
9f27ee59
JF
1875 info->connected = BLKIF_STATE_CONNECTED;
1876 kick_pending_request_queues(info);
3467811e 1877 spin_unlock_irq(&info->io_lock);
9f27ee59
JF
1878
1879 add_disk(info->gd);
1d78d705
CL
1880
1881 info->is_ready = 1;
9f27ee59
JF
1882}
1883
9f27ee59
JF
1884/**
1885 * Callback received when the backend's state changes.
1886 */
203fd61f 1887static void blkback_changed(struct xenbus_device *dev,
9f27ee59
JF
1888 enum xenbus_state backend_state)
1889{
a1b4b12b 1890 struct blkfront_info *info = dev_get_drvdata(&dev->dev);
9f27ee59 1891
203fd61f 1892 dev_dbg(&dev->dev, "blkfront:blkback_changed to state %d.\n", backend_state);
9f27ee59
JF
1893
1894 switch (backend_state) {
1895 case XenbusStateInitialising:
1896 case XenbusStateInitWait:
1897 case XenbusStateInitialised:
b78c9512
NI
1898 case XenbusStateReconfiguring:
1899 case XenbusStateReconfigured:
9f27ee59 1900 case XenbusStateUnknown:
9f27ee59
JF
1901 break;
1902
1903 case XenbusStateConnected:
1904 blkfront_connect(info);
1905 break;
1906
36613717
DV
1907 case XenbusStateClosed:
1908 if (dev->state == XenbusStateClosed)
1909 break;
1910 /* Missed the backend's Closing state -- fallthrough */
9f27ee59 1911 case XenbusStateClosing:
b70f5fa0 1912 blkfront_closing(info);
9f27ee59
JF
1913 break;
1914 }
1915}
1916
fa1bd359 1917static int blkfront_remove(struct xenbus_device *xbdev)
9f27ee59 1918{
fa1bd359
DS
1919 struct blkfront_info *info = dev_get_drvdata(&xbdev->dev);
1920 struct block_device *bdev = NULL;
1921 struct gendisk *disk;
9f27ee59 1922
fa1bd359 1923 dev_dbg(&xbdev->dev, "%s removed", xbdev->nodename);
9f27ee59
JF
1924
1925 blkif_free(info, 0);
1926
fa1bd359
DS
1927 mutex_lock(&info->mutex);
1928
1929 disk = info->gd;
1930 if (disk)
1931 bdev = bdget_disk(disk, 0);
1932
1933 info->xbdev = NULL;
1934 mutex_unlock(&info->mutex);
1935
1936 if (!bdev) {
1937 kfree(info);
1938 return 0;
1939 }
1940
1941 /*
1942 * The xbdev was removed before we reached the Closed
1943 * state. See if it's safe to remove the disk. If the bdev
1944 * isn't closed yet, we let release take care of it.
1945 */
1946
1947 mutex_lock(&bdev->bd_mutex);
1948 info = disk->private_data;
1949
d54142c7
DS
1950 dev_warn(disk_to_dev(disk),
1951 "%s was hot-unplugged, %d stale handles\n",
1952 xbdev->nodename, bdev->bd_openers);
1953
7b32d104 1954 if (info && !bdev->bd_openers) {
fa1bd359
DS
1955 xlvbd_release_gendisk(info);
1956 disk->private_data = NULL;
0e345826 1957 kfree(info);
fa1bd359
DS
1958 }
1959
1960 mutex_unlock(&bdev->bd_mutex);
1961 bdput(bdev);
9f27ee59
JF
1962
1963 return 0;
1964}
1965
1d78d705
CL
1966static int blkfront_is_ready(struct xenbus_device *dev)
1967{
a1b4b12b 1968 struct blkfront_info *info = dev_get_drvdata(&dev->dev);
1d78d705 1969
5d7ed20e 1970 return info->is_ready && info->xbdev;
1d78d705
CL
1971}
1972
a63c848b 1973static int blkif_open(struct block_device *bdev, fmode_t mode)
9f27ee59 1974{
13961743
DS
1975 struct gendisk *disk = bdev->bd_disk;
1976 struct blkfront_info *info;
1977 int err = 0;
6e9624b8 1978
2a48fc0a 1979 mutex_lock(&blkfront_mutex);
6e9624b8 1980
13961743
DS
1981 info = disk->private_data;
1982 if (!info) {
1983 /* xbdev gone */
1984 err = -ERESTARTSYS;
1985 goto out;
1986 }
1987
1988 mutex_lock(&info->mutex);
1989
1990 if (!info->gd)
1991 /* xbdev is closed */
1992 err = -ERESTARTSYS;
1993
1994 mutex_unlock(&info->mutex);
1995
13961743 1996out:
2a48fc0a 1997 mutex_unlock(&blkfront_mutex);
13961743 1998 return err;
9f27ee59
JF
1999}
2000
db2a144b 2001static void blkif_release(struct gendisk *disk, fmode_t mode)
9f27ee59 2002{
a63c848b 2003 struct blkfront_info *info = disk->private_data;
7fd152f4
DS
2004 struct block_device *bdev;
2005 struct xenbus_device *xbdev;
2006
2a48fc0a 2007 mutex_lock(&blkfront_mutex);
7fd152f4
DS
2008
2009 bdev = bdget_disk(disk, 0);
7fd152f4 2010
2f089cb8
FP
2011 if (!bdev) {
2012 WARN(1, "Block device %s yanked out from us!\n", disk->disk_name);
2013 goto out_mutex;
2014 }
acfca3c6
DS
2015 if (bdev->bd_openers)
2016 goto out;
2017
7fd152f4
DS
2018 /*
2019 * Check if we have been instructed to close. We will have
2020 * deferred this request, because the bdev was still open.
2021 */
2022
2023 mutex_lock(&info->mutex);
2024 xbdev = info->xbdev;
2025
2026 if (xbdev && xbdev->state == XenbusStateClosing) {
2027 /* pending switch to state closed */
d54142c7 2028 dev_info(disk_to_dev(bdev->bd_disk), "releasing disk\n");
7fd152f4
DS
2029 xlvbd_release_gendisk(info);
2030 xenbus_frontend_closed(info->xbdev);
2031 }
2032
2033 mutex_unlock(&info->mutex);
2034
2035 if (!xbdev) {
2036 /* sudden device removal */
d54142c7 2037 dev_info(disk_to_dev(bdev->bd_disk), "releasing disk\n");
7fd152f4
DS
2038 xlvbd_release_gendisk(info);
2039 disk->private_data = NULL;
2040 kfree(info);
9f27ee59 2041 }
7fd152f4 2042
a4cc14ec 2043out:
dad5cf65 2044 bdput(bdev);
2f089cb8 2045out_mutex:
2a48fc0a 2046 mutex_unlock(&blkfront_mutex);
9f27ee59
JF
2047}
2048
83d5cde4 2049static const struct block_device_operations xlvbd_block_fops =
9f27ee59
JF
2050{
2051 .owner = THIS_MODULE,
a63c848b
AV
2052 .open = blkif_open,
2053 .release = blkif_release,
597592d9 2054 .getgeo = blkif_getgeo,
8a6cfeb6 2055 .ioctl = blkif_ioctl,
9f27ee59
JF
2056};
2057
2058
ec9c42ec 2059static const struct xenbus_device_id blkfront_ids[] = {
9f27ee59
JF
2060 { "vbd" },
2061 { "" }
2062};
2063
95afae48
DV
2064static struct xenbus_driver blkfront_driver = {
2065 .ids = blkfront_ids,
9f27ee59
JF
2066 .probe = blkfront_probe,
2067 .remove = blkfront_remove,
2068 .resume = blkfront_resume,
203fd61f 2069 .otherend_changed = blkback_changed,
1d78d705 2070 .is_ready = blkfront_is_ready,
95afae48 2071};
9f27ee59
JF
2072
2073static int __init xlblk_init(void)
2074{
469738e6
LE
2075 int ret;
2076
6e833587 2077 if (!xen_domain())
9f27ee59
JF
2078 return -ENODEV;
2079
51c71a3b 2080 if (!xen_has_pv_disk_devices())
b9136d20
IM
2081 return -ENODEV;
2082
9f27ee59
JF
2083 if (register_blkdev(XENVBD_MAJOR, DEV_NAME)) {
2084 printk(KERN_WARNING "xen_blk: can't get major %d with name %s\n",
2085 XENVBD_MAJOR, DEV_NAME);
2086 return -ENODEV;
2087 }
2088
73db144b 2089 ret = xenbus_register_frontend(&blkfront_driver);
469738e6
LE
2090 if (ret) {
2091 unregister_blkdev(XENVBD_MAJOR, DEV_NAME);
2092 return ret;
2093 }
2094
2095 return 0;
9f27ee59
JF
2096}
2097module_init(xlblk_init);
2098
2099
5a60d0cd 2100static void __exit xlblk_exit(void)
9f27ee59 2101{
8605067f
JB
2102 xenbus_unregister_driver(&blkfront_driver);
2103 unregister_blkdev(XENVBD_MAJOR, DEV_NAME);
2104 kfree(minors);
9f27ee59
JF
2105}
2106module_exit(xlblk_exit);
2107
2108MODULE_DESCRIPTION("Xen virtual block device frontend");
2109MODULE_LICENSE("GPL");
2110MODULE_ALIAS_BLOCKDEV_MAJOR(XENVBD_MAJOR);
d2f0c52b 2111MODULE_ALIAS("xen:vbd");
4f93f09b 2112MODULE_ALIAS("xenblk");