]> git.proxmox.com Git - mirror_ubuntu-bionic-kernel.git/blame - fs/exofs/ore.c
ore: cleanup: Embed an ore_striping_info inside ore_io_state
[mirror_ubuntu-bionic-kernel.git] / fs / exofs / ore.c
CommitLineData
b14f8ab2
BH
1/*
2 * Copyright (C) 2005, 2006
27d2e149 3 * Avishay Traeger (avishay@gmail.com)
b14f8ab2
BH
4 * Copyright (C) 2008, 2009
5 * Boaz Harrosh <bharrosh@panasas.com>
6 *
7 * This file is part of exofs.
8 *
9 * exofs is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation. Since it is based on ext2, and the only
12 * valid version of GPL for the Linux kernel is version 2, the only valid
13 * version of GPL for exofs is version 2.
14 *
15 * exofs is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with exofs; if not, write to the Free Software
22 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
23 */
24
5a0e3ad6 25#include <linux/slab.h>
5d952b83 26#include <asm/div64.h>
b14f8ab2 27
8ff660ab 28#include <scsi/osd_ore.h>
b14f8ab2 29
8ff660ab 30#define ORE_ERR(fmt, a...) printk(KERN_ERR "ore: " fmt, ##a)
34ce4e7c 31
8ff660ab
BH
32#ifdef CONFIG_EXOFS_DEBUG
33#define ORE_DBGMSG(fmt, a...) \
34 printk(KERN_NOTICE "ore @%s:%d: " fmt, __func__, __LINE__, ##a)
35#else
36#define ORE_DBGMSG(fmt, a...) \
37 do { if (0) printk(fmt, ##a); } while (0)
38#endif
39
40/* u64 has problems with printk this will cast it to unsigned long long */
41#define _LLU(x) (unsigned long long)(x)
42
43#define ORE_DBGMSG2(M...) do {} while (0)
44/* #define ORE_DBGMSG2 ORE_DBGMSG */
45
cf283ade
BH
46MODULE_AUTHOR("Boaz Harrosh <bharrosh@panasas.com>");
47MODULE_DESCRIPTION("Objects Raid Engine ore.ko");
48MODULE_LICENSE("GPL");
49
b916c5cd
BH
50static void ore_calc_stripe_info(struct ore_layout *layout, u64 file_offset,
51 struct ore_striping_info *si);
52
8ff660ab 53static u8 *_ios_cred(struct ore_io_state *ios, unsigned index)
9e9db456 54{
5bf696da 55 return ios->oc->comps[index & ios->oc->single_comp].cred;
9e9db456
BH
56}
57
8ff660ab 58static struct osd_obj_id *_ios_obj(struct ore_io_state *ios, unsigned index)
9e9db456 59{
5bf696da 60 return &ios->oc->comps[index & ios->oc->single_comp].obj;
9e9db456
BH
61}
62
8ff660ab 63static struct osd_dev *_ios_od(struct ore_io_state *ios, unsigned index)
9e9db456 64{
d866d875 65 return ore_comp_dev(ios->oc, index);
9e9db456
BH
66}
67
b916c5cd
BH
68static int _get_io_state(struct ore_layout *layout,
69 struct ore_components *oc, unsigned numdevs,
70 struct ore_io_state **pios)
b14f8ab2 71{
8ff660ab 72 struct ore_io_state *ios;
06886a5a
BH
73
74 /*TODO: Maybe use kmem_cach per sbi of size
45d3abcb 75 * exofs_io_state_size(layout->s_numdevs)
06886a5a 76 */
b916c5cd 77 ios = kzalloc(ore_io_state_size(numdevs), GFP_KERNEL);
06886a5a 78 if (unlikely(!ios)) {
8ff660ab 79 ORE_DBGMSG("Failed kzalloc bytes=%d\n",
b916c5cd 80 ore_io_state_size(numdevs));
06886a5a
BH
81 *pios = NULL;
82 return -ENOMEM;
83 }
84
45d3abcb 85 ios->layout = layout;
5bf696da 86 ios->oc = oc;
b916c5cd
BH
87 *pios = ios;
88 return 0;
89}
90
91/* Allocate an io_state for only a single group of devices
92 *
93 * If a user needs to call ore_read/write() this version must be used becase it
94 * allocates extra stuff for striping and raid.
95 * The ore might decide to only IO less then @length bytes do to alignmets
96 * and constrains as follows:
97 * - The IO cannot cross group boundary.
98 * - In raid5/6 The end of the IO must align at end of a stripe eg.
99 * (@offset + @length) % strip_size == 0. Or the complete range is within a
100 * single stripe.
101 * - Memory condition only permitted a shorter IO. (A user can use @length=~0
102 * And check the returned ios->length for max_io_size.)
103 *
104 * The caller must check returned ios->length (and/or ios->nr_pages) and
105 * re-issue these pages that fall outside of ios->length
106 */
107int ore_get_rw_state(struct ore_layout *layout, struct ore_components *oc,
108 bool is_reading, u64 offset, u64 length,
109 struct ore_io_state **pios)
110{
111 struct ore_io_state *ios;
112 unsigned numdevs = layout->group_width * layout->mirrors_p1;
113 int ret;
114
115 ret = _get_io_state(layout, oc, numdevs, pios);
116 if (unlikely(ret))
117 return ret;
118
119 ios = *pios;
e1042ba0 120 ios->reading = is_reading;
b916c5cd
BH
121 ios->offset = offset;
122
123 if (length) {
98260754
BH
124 ore_calc_stripe_info(layout, offset, &ios->si);
125 ios->length = (length <= ios->si.group_length) ? length :
126 ios->si.group_length;
b916c5cd
BH
127 ios->nr_pages = (ios->length + PAGE_SIZE - 1) / PAGE_SIZE;
128 }
e1042ba0 129
06886a5a 130 return 0;
b14f8ab2 131}
cf283ade 132EXPORT_SYMBOL(ore_get_rw_state);
b14f8ab2 133
b916c5cd
BH
134/* Allocate an io_state for all the devices in the comps array
135 *
136 * This version of io_state allocation is used mostly by create/remove
137 * and trunc where we currently need all the devices. The only wastful
138 * bit is the read/write_attributes with no IO. Those sites should
139 * be converted to use ore_get_rw_state() with length=0
140 */
5bf696da 141int ore_get_io_state(struct ore_layout *layout, struct ore_components *oc,
b916c5cd 142 struct ore_io_state **pios)
e1042ba0 143{
b916c5cd 144 return _get_io_state(layout, oc, oc->numdevs, pios);
e1042ba0 145}
cf283ade 146EXPORT_SYMBOL(ore_get_io_state);
e1042ba0 147
8ff660ab 148void ore_put_io_state(struct ore_io_state *ios)
b14f8ab2 149{
06886a5a
BH
150 if (ios) {
151 unsigned i;
b14f8ab2 152
06886a5a 153 for (i = 0; i < ios->numdevs; i++) {
8ff660ab 154 struct ore_per_dev_state *per_dev = &ios->per_dev[i];
06886a5a
BH
155
156 if (per_dev->or)
157 osd_end_request(per_dev->or);
158 if (per_dev->bio)
159 bio_put(per_dev->bio);
160 }
161
162 kfree(ios);
b14f8ab2 163 }
06886a5a 164}
cf283ade 165EXPORT_SYMBOL(ore_put_io_state);
b14f8ab2 166
8ff660ab 167static void _sync_done(struct ore_io_state *ios, void *p)
06886a5a
BH
168{
169 struct completion *waiting = p;
b14f8ab2 170
06886a5a
BH
171 complete(waiting);
172}
173
174static void _last_io(struct kref *kref)
175{
8ff660ab
BH
176 struct ore_io_state *ios = container_of(
177 kref, struct ore_io_state, kref);
06886a5a
BH
178
179 ios->done(ios, ios->private);
180}
181
182static void _done_io(struct osd_request *or, void *p)
183{
8ff660ab 184 struct ore_io_state *ios = p;
06886a5a
BH
185
186 kref_put(&ios->kref, _last_io);
187}
188
8ff660ab 189static int ore_io_execute(struct ore_io_state *ios)
06886a5a
BH
190{
191 DECLARE_COMPLETION_ONSTACK(wait);
192 bool sync = (ios->done == NULL);
193 int i, ret;
194
195 if (sync) {
196 ios->done = _sync_done;
197 ios->private = &wait;
198 }
199
200 for (i = 0; i < ios->numdevs; i++) {
201 struct osd_request *or = ios->per_dev[i].or;
202 if (unlikely(!or))
203 continue;
204
9e9db456 205 ret = osd_finalize_request(or, 0, _ios_cred(ios, i), NULL);
06886a5a 206 if (unlikely(ret)) {
8ff660ab 207 ORE_DBGMSG("Failed to osd_finalize_request() => %d\n",
06886a5a
BH
208 ret);
209 return ret;
210 }
211 }
212
213 kref_init(&ios->kref);
214
215 for (i = 0; i < ios->numdevs; i++) {
216 struct osd_request *or = ios->per_dev[i].or;
217 if (unlikely(!or))
218 continue;
219
220 kref_get(&ios->kref);
221 osd_execute_request_async(or, _done_io, ios);
222 }
223
224 kref_put(&ios->kref, _last_io);
225 ret = 0;
226
227 if (sync) {
228 wait_for_completion(&wait);
8ff660ab 229 ret = ore_check_io(ios, NULL);
06886a5a 230 }
b14f8ab2
BH
231 return ret;
232}
233
22ddc556
BH
234static void _clear_bio(struct bio *bio)
235{
236 struct bio_vec *bv;
237 unsigned i;
238
239 __bio_for_each_segment(bv, bio, i, 0) {
240 unsigned this_count = bv->bv_len;
241
242 if (likely(PAGE_SIZE == this_count))
243 clear_highpage(bv->bv_page);
244 else
245 zero_user(bv->bv_page, bv->bv_offset, this_count);
246 }
247}
248
8ff660ab 249int ore_check_io(struct ore_io_state *ios, u64 *resid)
b14f8ab2 250{
06886a5a
BH
251 enum osd_err_priority acumulated_osd_err = 0;
252 int acumulated_lin_err = 0;
253 int i;
b14f8ab2 254
06886a5a
BH
255 for (i = 0; i < ios->numdevs; i++) {
256 struct osd_sense_info osi;
22ddc556
BH
257 struct osd_request *or = ios->per_dev[i].or;
258 int ret;
259
260 if (unlikely(!or))
261 continue;
06886a5a 262
22ddc556 263 ret = osd_req_decode_sense(or, &osi);
06886a5a
BH
264 if (likely(!ret))
265 continue;
266
22ddc556
BH
267 if (OSD_ERR_PRI_CLEAR_PAGES == osi.osd_err_pri) {
268 /* start read offset passed endof file */
269 _clear_bio(ios->per_dev[i].bio);
8ff660ab 270 ORE_DBGMSG("start read offset passed end of file "
22ddc556 271 "offset=0x%llx, length=0x%llx\n",
5d952b83
BH
272 _LLU(ios->per_dev[i].offset),
273 _LLU(ios->per_dev[i].length));
22ddc556
BH
274
275 continue; /* we recovered */
06886a5a
BH
276 }
277
278 if (osi.osd_err_pri >= acumulated_osd_err) {
279 acumulated_osd_err = osi.osd_err_pri;
280 acumulated_lin_err = ret;
281 }
282 }
283
284 /* TODO: raid specific residual calculations */
285 if (resid) {
286 if (likely(!acumulated_lin_err))
287 *resid = 0;
288 else
289 *resid = ios->length;
290 }
291
292 return acumulated_lin_err;
293}
cf283ade 294EXPORT_SYMBOL(ore_check_io);
06886a5a 295
b367e78b
BH
296/*
297 * L - logical offset into the file
298 *
50a76fd3 299 * U - The number of bytes in a stripe within a group
b367e78b
BH
300 *
301 * U = stripe_unit * group_width
302 *
50a76fd3
BH
303 * T - The number of bytes striped within a group of component objects
304 * (before advancing to the next group)
b367e78b 305 *
50a76fd3
BH
306 * T = stripe_unit * group_width * group_depth
307 *
308 * S - The number of bytes striped across all component objects
309 * before the pattern repeats
310 *
311 * S = stripe_unit * group_width * group_depth * group_count
312 *
313 * M - The "major" (i.e., across all components) stripe number
314 *
315 * M = L / S
316 *
317 * G - Counts the groups from the beginning of the major stripe
318 *
319 * G = (L - (M * S)) / T [or (L % S) / T]
320 *
321 * H - The byte offset within the group
322 *
323 * H = (L - (M * S)) % T [or (L % S) % T]
324 *
325 * N - The "minor" (i.e., across the group) stripe number
326 *
327 * N = H / U
b367e78b
BH
328 *
329 * C - The component index coresponding to L
330 *
50a76fd3
BH
331 * C = (H - (N * U)) / stripe_unit + G * group_width
332 * [or (L % U) / stripe_unit + G * group_width]
b367e78b
BH
333 *
334 * O - The component offset coresponding to L
335 *
50a76fd3 336 * O = L % stripe_unit + N * stripe_unit + M * group_depth * stripe_unit
b367e78b 337 */
eb507bc1
BH
338static void ore_calc_stripe_info(struct ore_layout *layout, u64 file_offset,
339 struct ore_striping_info *si)
5d952b83 340{
16f75bb3
BH
341 u32 stripe_unit = layout->stripe_unit;
342 u32 group_width = layout->group_width;
343 u64 group_depth = layout->group_depth;
50a76fd3 344
b367e78b 345 u32 U = stripe_unit * group_width;
50a76fd3 346 u64 T = U * group_depth;
16f75bb3 347 u64 S = T * layout->group_count;
50a76fd3
BH
348 u64 M = div64_u64(file_offset, S);
349
350 /*
351 G = (L - (M * S)) / T
352 H = (L - (M * S)) % T
353 */
354 u64 LmodS = file_offset - M * S;
355 u32 G = div64_u64(LmodS, T);
356 u64 H = LmodS - G * T;
357
358 u32 N = div_u64(H, U);
359
360 /* "H - (N * U)" is just "H % U" so it's bound to u32 */
361 si->dev = (u32)(H - (N * U)) / stripe_unit + G * group_width;
16f75bb3 362 si->dev *= layout->mirrors_p1;
b367e78b 363
50a76fd3 364 div_u64_rem(file_offset, stripe_unit, &si->unit_off);
5d952b83 365
50a76fd3
BH
366 si->obj_offset = si->unit_off + (N * stripe_unit) +
367 (M * group_depth * stripe_unit);
368
369 si->group_length = T - H;
16f75bb3 370 si->M = M;
5d952b83
BH
371}
372
8ff660ab
BH
373static int _add_stripe_unit(struct ore_io_state *ios, unsigned *cur_pg,
374 unsigned pgbase, struct ore_per_dev_state *per_dev,
86093aaf 375 int cur_len)
5d952b83 376{
86093aaf 377 unsigned pg = *cur_pg;
5d952b83 378 struct request_queue *q =
9e9db456 379 osd_request_queue(_ios_od(ios, per_dev->dev));
5d952b83
BH
380
381 per_dev->length += cur_len;
382
383 if (per_dev->bio == NULL) {
384 unsigned pages_in_stripe = ios->layout->group_width *
385 (ios->layout->stripe_unit / PAGE_SIZE);
86093aaf 386 unsigned bio_size = (ios->nr_pages + pages_in_stripe) /
5d952b83
BH
387 ios->layout->group_width;
388
389 per_dev->bio = bio_kmalloc(GFP_KERNEL, bio_size);
390 if (unlikely(!per_dev->bio)) {
8ff660ab 391 ORE_DBGMSG("Failed to allocate BIO size=%u\n",
5d952b83
BH
392 bio_size);
393 return -ENOMEM;
394 }
395 }
396
397 while (cur_len > 0) {
86093aaf
BH
398 unsigned pglen = min_t(unsigned, PAGE_SIZE - pgbase, cur_len);
399 unsigned added_len;
5d952b83 400
86093aaf
BH
401 BUG_ON(ios->nr_pages <= pg);
402 cur_len -= pglen;
5d952b83 403
86093aaf
BH
404 added_len = bio_add_pc_page(q, per_dev->bio, ios->pages[pg],
405 pglen, pgbase);
406 if (unlikely(pglen != added_len))
5d952b83 407 return -ENOMEM;
86093aaf
BH
408 pgbase = 0;
409 ++pg;
5d952b83
BH
410 }
411 BUG_ON(cur_len);
412
86093aaf 413 *cur_pg = pg;
5d952b83
BH
414 return 0;
415}
416
98260754 417static int _prepare_for_striping(struct ore_io_state *ios)
5d952b83 418{
98260754 419 struct ore_striping_info *si = &ios->si;
5d952b83 420 unsigned stripe_unit = ios->layout->stripe_unit;
b367e78b 421 unsigned mirrors_p1 = ios->layout->mirrors_p1;
50a76fd3 422 unsigned devs_in_group = ios->layout->group_width * mirrors_p1;
b367e78b 423 unsigned dev = si->dev;
50a76fd3 424 unsigned first_dev = dev - (dev % devs_in_group);
50a76fd3 425 unsigned cur_pg = ios->pages_consumed;
98260754 426 u64 length = ios->length;
86093aaf 427 int ret = 0;
5d952b83 428
98260754
BH
429 if (!ios->pages) {
430 if (ios->kern_buff) {
431 struct ore_per_dev_state *per_dev = &ios->per_dev[0];
432
433 per_dev->offset = si->obj_offset;
434 per_dev->dev = si->dev;
435
436 /* no cross device without page array */
437 BUG_ON((ios->layout->group_width > 1) &&
438 (si->unit_off + ios->length >
439 ios->layout->stripe_unit));
440 }
441 ios->numdevs = ios->layout->mirrors_p1;
442 return 0;
443 }
444
445 BUG_ON(length > si->group_length);
446
5d952b83 447 while (length) {
b916c5cd
BH
448 unsigned comp = dev - first_dev;
449 struct ore_per_dev_state *per_dev = &ios->per_dev[comp];
b367e78b 450 unsigned cur_len, page_off = 0;
5d952b83
BH
451
452 if (!per_dev->length) {
b367e78b
BH
453 per_dev->dev = dev;
454 if (dev < si->dev) {
455 per_dev->offset = si->obj_offset + stripe_unit -
456 si->unit_off;
457 cur_len = stripe_unit;
458 } else if (dev == si->dev) {
459 per_dev->offset = si->obj_offset;
460 cur_len = stripe_unit - si->unit_off;
461 page_off = si->unit_off & ~PAGE_MASK;
462 BUG_ON(page_off && (page_off != ios->pgbase));
463 } else { /* dev > si->dev */
464 per_dev->offset = si->obj_offset - si->unit_off;
465 cur_len = stripe_unit;
466 }
5d952b83 467 } else {
b367e78b 468 cur_len = stripe_unit;
5d952b83 469 }
b367e78b
BH
470 if (cur_len >= length)
471 cur_len = length;
5d952b83 472
86093aaf
BH
473 ret = _add_stripe_unit(ios, &cur_pg, page_off , per_dev,
474 cur_len);
5d952b83
BH
475 if (unlikely(ret))
476 goto out;
477
6e31609b
BH
478 dev += mirrors_p1;
479 dev = (dev % devs_in_group) + first_dev;
5d952b83
BH
480
481 length -= cur_len;
482 }
483out:
b916c5cd 484 ios->numdevs = devs_in_group;
50a76fd3 485 ios->pages_consumed = cur_pg;
5d952b83
BH
486 return ret;
487}
488
8ff660ab 489int ore_create(struct ore_io_state *ios)
06886a5a
BH
490{
491 int i, ret;
492
5bf696da 493 for (i = 0; i < ios->oc->numdevs; i++) {
06886a5a
BH
494 struct osd_request *or;
495
9e9db456 496 or = osd_start_request(_ios_od(ios, i), GFP_KERNEL);
06886a5a 497 if (unlikely(!or)) {
8ff660ab 498 ORE_ERR("%s: osd_start_request failed\n", __func__);
06886a5a
BH
499 ret = -ENOMEM;
500 goto out;
501 }
502 ios->per_dev[i].or = or;
503 ios->numdevs++;
504
9e9db456 505 osd_req_create_object(or, _ios_obj(ios, i));
06886a5a 506 }
8ff660ab 507 ret = ore_io_execute(ios);
06886a5a
BH
508
509out:
510 return ret;
511}
cf283ade 512EXPORT_SYMBOL(ore_create);
06886a5a 513
8ff660ab 514int ore_remove(struct ore_io_state *ios)
06886a5a
BH
515{
516 int i, ret;
517
5bf696da 518 for (i = 0; i < ios->oc->numdevs; i++) {
06886a5a
BH
519 struct osd_request *or;
520
9e9db456 521 or = osd_start_request(_ios_od(ios, i), GFP_KERNEL);
06886a5a 522 if (unlikely(!or)) {
8ff660ab 523 ORE_ERR("%s: osd_start_request failed\n", __func__);
06886a5a
BH
524 ret = -ENOMEM;
525 goto out;
526 }
527 ios->per_dev[i].or = or;
528 ios->numdevs++;
529
9e9db456 530 osd_req_remove_object(or, _ios_obj(ios, i));
06886a5a 531 }
8ff660ab 532 ret = ore_io_execute(ios);
06886a5a
BH
533
534out:
535 return ret;
536}
cf283ade 537EXPORT_SYMBOL(ore_remove);
06886a5a 538
8ff660ab 539static int _write_mirror(struct ore_io_state *ios, int cur_comp)
06886a5a 540{
8ff660ab 541 struct ore_per_dev_state *master_dev = &ios->per_dev[cur_comp];
5d952b83
BH
542 unsigned dev = ios->per_dev[cur_comp].dev;
543 unsigned last_comp = cur_comp + ios->layout->mirrors_p1;
544 int ret = 0;
06886a5a 545
50a76fd3
BH
546 if (ios->pages && !master_dev->length)
547 return 0; /* Just an empty slot */
548
5d952b83 549 for (; cur_comp < last_comp; ++cur_comp, ++dev) {
8ff660ab 550 struct ore_per_dev_state *per_dev = &ios->per_dev[cur_comp];
06886a5a
BH
551 struct osd_request *or;
552
9e9db456 553 or = osd_start_request(_ios_od(ios, dev), GFP_KERNEL);
06886a5a 554 if (unlikely(!or)) {
8ff660ab 555 ORE_ERR("%s: osd_start_request failed\n", __func__);
06886a5a
BH
556 ret = -ENOMEM;
557 goto out;
558 }
5d952b83
BH
559 per_dev->or = or;
560 per_dev->offset = master_dev->offset;
06886a5a 561
86093aaf 562 if (ios->pages) {
06886a5a
BH
563 struct bio *bio;
564
5d952b83 565 if (per_dev != master_dev) {
04dc1e88 566 bio = bio_kmalloc(GFP_KERNEL,
5d952b83 567 master_dev->bio->bi_max_vecs);
04dc1e88 568 if (unlikely(!bio)) {
8ff660ab 569 ORE_DBGMSG(
426d3107 570 "Failed to allocate BIO size=%u\n",
5d952b83 571 master_dev->bio->bi_max_vecs);
04dc1e88
BH
572 ret = -ENOMEM;
573 goto out;
574 }
575
5d952b83 576 __bio_clone(bio, master_dev->bio);
04dc1e88
BH
577 bio->bi_bdev = NULL;
578 bio->bi_next = NULL;
5d952b83
BH
579 per_dev->length = master_dev->length;
580 per_dev->bio = bio;
581 per_dev->dev = dev;
04dc1e88 582 } else {
5d952b83
BH
583 bio = master_dev->bio;
584 /* FIXME: bio_set_dir() */
7b6d91da 585 bio->bi_rw |= REQ_WRITE;
04dc1e88 586 }
06886a5a 587
9e9db456
BH
588 osd_req_write(or, _ios_obj(ios, dev), per_dev->offset,
589 bio, per_dev->length);
8ff660ab 590 ORE_DBGMSG("write(0x%llx) offset=0x%llx "
34ce4e7c 591 "length=0x%llx dev=%d\n",
9e9db456
BH
592 _LLU(_ios_obj(ios, dev)->id),
593 _LLU(per_dev->offset),
5d952b83 594 _LLU(per_dev->length), dev);
06886a5a 595 } else if (ios->kern_buff) {
9e9db456
BH
596 ret = osd_req_write_kern(or, _ios_obj(ios, dev),
597 per_dev->offset,
598 ios->kern_buff, ios->length);
5d952b83
BH
599 if (unlikely(ret))
600 goto out;
8ff660ab 601 ORE_DBGMSG2("write_kern(0x%llx) offset=0x%llx "
34ce4e7c 602 "length=0x%llx dev=%d\n",
9e9db456
BH
603 _LLU(_ios_obj(ios, dev)->id),
604 _LLU(per_dev->offset),
5d952b83 605 _LLU(ios->length), dev);
06886a5a 606 } else {
9e9db456 607 osd_req_set_attributes(or, _ios_obj(ios, dev));
8ff660ab 608 ORE_DBGMSG2("obj(0x%llx) set_attributes=%d dev=%d\n",
9e9db456
BH
609 _LLU(_ios_obj(ios, dev)->id),
610 ios->out_attr_len, dev);
06886a5a
BH
611 }
612
613 if (ios->out_attr)
614 osd_req_add_set_attr_list(or, ios->out_attr,
615 ios->out_attr_len);
616
617 if (ios->in_attr)
618 osd_req_add_get_attr_list(or, ios->in_attr,
619 ios->in_attr_len);
b14f8ab2 620 }
06886a5a
BH
621
622out:
623 return ret;
624}
625
8ff660ab 626int ore_write(struct ore_io_state *ios)
5d952b83
BH
627{
628 int i;
629 int ret;
630
631 ret = _prepare_for_striping(ios);
632 if (unlikely(ret))
633 return ret;
634
635 for (i = 0; i < ios->numdevs; i += ios->layout->mirrors_p1) {
8ff660ab 636 ret = _write_mirror(ios, i);
5d952b83
BH
637 if (unlikely(ret))
638 return ret;
639 }
640
8ff660ab 641 ret = ore_io_execute(ios);
5d952b83
BH
642 return ret;
643}
cf283ade 644EXPORT_SYMBOL(ore_write);
5d952b83 645
8ff660ab 646static int _read_mirror(struct ore_io_state *ios, unsigned cur_comp)
06886a5a 647{
46f4d973 648 struct osd_request *or;
8ff660ab 649 struct ore_per_dev_state *per_dev = &ios->per_dev[cur_comp];
9e9db456
BH
650 struct osd_obj_id *obj = _ios_obj(ios, cur_comp);
651 unsigned first_dev = (unsigned)obj->id;
06886a5a 652
50a76fd3
BH
653 if (ios->pages && !per_dev->length)
654 return 0; /* Just an empty slot */
655
5d952b83 656 first_dev = per_dev->dev + first_dev % ios->layout->mirrors_p1;
9e9db456 657 or = osd_start_request(_ios_od(ios, first_dev), GFP_KERNEL);
46f4d973 658 if (unlikely(!or)) {
8ff660ab 659 ORE_ERR("%s: osd_start_request failed\n", __func__);
46f4d973
BH
660 return -ENOMEM;
661 }
662 per_dev->or = or;
46f4d973 663
86093aaf 664 if (ios->pages) {
9e9db456 665 osd_req_read(or, obj, per_dev->offset,
5d952b83 666 per_dev->bio, per_dev->length);
8ff660ab 667 ORE_DBGMSG("read(0x%llx) offset=0x%llx length=0x%llx"
9e9db456 668 " dev=%d\n", _LLU(obj->id),
5d952b83 669 _LLU(per_dev->offset), _LLU(per_dev->length),
46f4d973
BH
670 first_dev);
671 } else if (ios->kern_buff) {
9e9db456 672 int ret = osd_req_read_kern(or, obj, per_dev->offset,
46f4d973 673 ios->kern_buff, ios->length);
8ff660ab 674 ORE_DBGMSG2("read_kern(0x%llx) offset=0x%llx "
46f4d973 675 "length=0x%llx dev=%d ret=>%d\n",
9e9db456 676 _LLU(obj->id), _LLU(per_dev->offset),
46f4d973
BH
677 _LLU(ios->length), first_dev, ret);
678 if (unlikely(ret))
679 return ret;
680 } else {
9e9db456 681 osd_req_get_attributes(or, obj);
8ff660ab 682 ORE_DBGMSG2("obj(0x%llx) get_attributes=%d dev=%d\n",
9e9db456
BH
683 _LLU(obj->id),
684 ios->in_attr_len, first_dev);
46f4d973 685 }
46f4d973
BH
686 if (ios->out_attr)
687 osd_req_add_set_attr_list(or, ios->out_attr, ios->out_attr_len);
b14f8ab2 688
46f4d973
BH
689 if (ios->in_attr)
690 osd_req_add_get_attr_list(or, ios->in_attr, ios->in_attr_len);
b14f8ab2 691
5d952b83
BH
692 return 0;
693}
694
8ff660ab 695int ore_read(struct ore_io_state *ios)
5d952b83
BH
696{
697 int i;
698 int ret;
699
700 ret = _prepare_for_striping(ios);
701 if (unlikely(ret))
702 return ret;
703
704 for (i = 0; i < ios->numdevs; i += ios->layout->mirrors_p1) {
8ff660ab 705 ret = _read_mirror(ios, i);
5d952b83
BH
706 if (unlikely(ret))
707 return ret;
708 }
709
8ff660ab 710 ret = ore_io_execute(ios);
5d952b83 711 return ret;
b14f8ab2 712}
cf283ade 713EXPORT_SYMBOL(ore_read);
b14f8ab2 714
8ff660ab 715int extract_attr_from_ios(struct ore_io_state *ios, struct osd_attr *attr)
b14f8ab2
BH
716{
717 struct osd_attr cur_attr = {.attr_page = 0}; /* start with zeros */
718 void *iter = NULL;
719 int nelem;
720
721 do {
722 nelem = 1;
06886a5a
BH
723 osd_req_decode_get_attr_list(ios->per_dev[0].or,
724 &cur_attr, &nelem, &iter);
b14f8ab2
BH
725 if ((cur_attr.attr_page == attr->attr_page) &&
726 (cur_attr.attr_id == attr->attr_id)) {
727 attr->len = cur_attr.len;
728 attr->val_ptr = cur_attr.val_ptr;
729 return 0;
730 }
731 } while (iter);
732
733 return -EIO;
734}
cf283ade 735EXPORT_SYMBOL(extract_attr_from_ios);
06886a5a 736
8ff660ab 737static int _truncate_mirrors(struct ore_io_state *ios, unsigned cur_comp,
5d952b83
BH
738 struct osd_attr *attr)
739{
740 int last_comp = cur_comp + ios->layout->mirrors_p1;
741
742 for (; cur_comp < last_comp; ++cur_comp) {
8ff660ab 743 struct ore_per_dev_state *per_dev = &ios->per_dev[cur_comp];
5d952b83
BH
744 struct osd_request *or;
745
9e9db456 746 or = osd_start_request(_ios_od(ios, cur_comp), GFP_KERNEL);
5d952b83 747 if (unlikely(!or)) {
8ff660ab 748 ORE_ERR("%s: osd_start_request failed\n", __func__);
5d952b83
BH
749 return -ENOMEM;
750 }
751 per_dev->or = or;
752
9e9db456 753 osd_req_set_attributes(or, _ios_obj(ios, cur_comp));
5d952b83
BH
754 osd_req_add_set_attr_list(or, attr, 1);
755 }
756
757 return 0;
758}
759
16f75bb3 760struct _trunc_info {
eb507bc1 761 struct ore_striping_info si;
16f75bb3
BH
762 u64 prev_group_obj_off;
763 u64 next_group_obj_off;
764
765 unsigned first_group_dev;
766 unsigned nex_group_dev;
16f75bb3
BH
767};
768
1958c7c2
HS
769static void _calc_trunk_info(struct ore_layout *layout, u64 file_offset,
770 struct _trunc_info *ti)
16f75bb3
BH
771{
772 unsigned stripe_unit = layout->stripe_unit;
773
eb507bc1 774 ore_calc_stripe_info(layout, file_offset, &ti->si);
16f75bb3
BH
775
776 ti->prev_group_obj_off = ti->si.M * stripe_unit;
777 ti->next_group_obj_off = ti->si.M ? (ti->si.M - 1) * stripe_unit : 0;
778
779 ti->first_group_dev = ti->si.dev - (ti->si.dev % layout->group_width);
780 ti->nex_group_dev = ti->first_group_dev + layout->group_width;
16f75bb3
BH
781}
782
5bf696da 783int ore_truncate(struct ore_layout *layout, struct ore_components *oc,
9e9db456 784 u64 size)
06886a5a 785{
8ff660ab 786 struct ore_io_state *ios;
5d952b83
BH
787 struct exofs_trunc_attr {
788 struct osd_attr attr;
789 __be64 newsize;
790 } *size_attrs;
16f75bb3 791 struct _trunc_info ti;
06886a5a
BH
792 int i, ret;
793
5bf696da 794 ret = ore_get_io_state(layout, oc, &ios);
5d952b83
BH
795 if (unlikely(ret))
796 return ret;
797
16f75bb3
BH
798 _calc_trunk_info(ios->layout, size, &ti);
799
b916c5cd 800 size_attrs = kcalloc(ios->oc->numdevs, sizeof(*size_attrs),
5d952b83
BH
801 GFP_KERNEL);
802 if (unlikely(!size_attrs)) {
803 ret = -ENOMEM;
804 goto out;
805 }
06886a5a 806
5bf696da 807 ios->numdevs = ios->oc->numdevs;
06886a5a 808
b916c5cd 809 for (i = 0; i < ios->numdevs; ++i) {
5d952b83
BH
810 struct exofs_trunc_attr *size_attr = &size_attrs[i];
811 u64 obj_size;
06886a5a 812
16f75bb3
BH
813 if (i < ti.first_group_dev)
814 obj_size = ti.prev_group_obj_off;
815 else if (i >= ti.nex_group_dev)
816 obj_size = ti.next_group_obj_off;
817 else if (i < ti.si.dev) /* dev within this group */
818 obj_size = ti.si.obj_offset +
819 ios->layout->stripe_unit - ti.si.unit_off;
820 else if (i == ti.si.dev)
821 obj_size = ti.si.obj_offset;
822 else /* i > ti.dev */
823 obj_size = ti.si.obj_offset - ti.si.unit_off;
06886a5a 824
5d952b83
BH
825 size_attr->newsize = cpu_to_be64(obj_size);
826 size_attr->attr = g_attr_logical_length;
827 size_attr->attr.val_ptr = &size_attr->newsize;
828
8ff660ab 829 ORE_DBGMSG("trunc(0x%llx) obj_offset=0x%llx dev=%d\n",
5bf696da 830 _LLU(oc->comps->obj.id), _LLU(obj_size), i);
5d952b83
BH
831 ret = _truncate_mirrors(ios, i * ios->layout->mirrors_p1,
832 &size_attr->attr);
833 if (unlikely(ret))
834 goto out;
06886a5a 835 }
8ff660ab 836 ret = ore_io_execute(ios);
06886a5a
BH
837
838out:
5d952b83 839 kfree(size_attrs);
8ff660ab 840 ore_put_io_state(ios);
06886a5a
BH
841 return ret;
842}
cf283ade 843EXPORT_SYMBOL(ore_truncate);
85e44df4
BH
844
845const struct osd_attr g_attr_logical_length = ATTR_DEF(
846 OSD_APAGE_OBJECT_INFORMATION, OSD_ATTR_OI_LOGICAL_LENGTH, 8);
cf283ade 847EXPORT_SYMBOL(g_attr_logical_length);