libnvdimm/namespace: Differentiate between probe mapping and runtime mapping
[linux-2.6-block.git] / drivers / nvdimm / namespace_devs.c
CommitLineData
5b497af4 1// SPDX-License-Identifier: GPL-2.0-only
3d88002e
DW
2/*
3 * Copyright(c) 2013-2015 Intel Corporation. All rights reserved.
3d88002e
DW
4 */
5#include <linux/module.h>
6#include <linux/device.h>
6ff3e912 7#include <linux/sort.h>
3d88002e 8#include <linux/slab.h>
ae8219f1 9#include <linux/list.h>
3d88002e 10#include <linux/nd.h>
bf9bccc1 11#include "nd-core.h"
ca6a4657 12#include "pmem.h"
3d88002e
DW
13#include "nd.h"
14
15static void namespace_io_release(struct device *dev)
16{
17 struct nd_namespace_io *nsio = to_nd_namespace_io(dev);
18
19 kfree(nsio);
20}
21
bf9bccc1
DW
22static void namespace_pmem_release(struct device *dev)
23{
24 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
0e3b0d12 25 struct nd_region *nd_region = to_nd_region(dev->parent);
bf9bccc1 26
0e3b0d12
DW
27 if (nspm->id >= 0)
28 ida_simple_remove(&nd_region->ns_ida, nspm->id);
bf9bccc1
DW
29 kfree(nspm->alt_name);
30 kfree(nspm->uuid);
31 kfree(nspm);
32}
33
34static void namespace_blk_release(struct device *dev)
35{
1b40e09a
DW
36 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
37 struct nd_region *nd_region = to_nd_region(dev->parent);
38
39 if (nsblk->id >= 0)
40 ida_simple_remove(&nd_region->ns_ida, nsblk->id);
41 kfree(nsblk->alt_name);
42 kfree(nsblk->uuid);
43 kfree(nsblk->res);
44 kfree(nsblk);
bf9bccc1
DW
45}
46
970d14e3 47static const struct device_type namespace_io_device_type = {
3d88002e
DW
48 .name = "nd_namespace_io",
49 .release = namespace_io_release,
50};
51
970d14e3 52static const struct device_type namespace_pmem_device_type = {
bf9bccc1
DW
53 .name = "nd_namespace_pmem",
54 .release = namespace_pmem_release,
55};
56
970d14e3 57static const struct device_type namespace_blk_device_type = {
bf9bccc1
DW
58 .name = "nd_namespace_blk",
59 .release = namespace_blk_release,
60};
61
6ff3e912 62static bool is_namespace_pmem(const struct device *dev)
bf9bccc1
DW
63{
64 return dev ? dev->type == &namespace_pmem_device_type : false;
65}
66
6ff3e912 67static bool is_namespace_blk(const struct device *dev)
bf9bccc1
DW
68{
69 return dev ? dev->type == &namespace_blk_device_type : false;
70}
71
6ff3e912 72static bool is_namespace_io(const struct device *dev)
bf9bccc1
DW
73{
74 return dev ? dev->type == &namespace_io_device_type : false;
75}
76
e07ecd76
DW
77static int is_uuid_busy(struct device *dev, void *data)
78{
79 u8 *uuid1 = data, *uuid2 = NULL;
80
81 if (is_namespace_pmem(dev)) {
82 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
83
84 uuid2 = nspm->uuid;
85 } else if (is_namespace_blk(dev)) {
86 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
87
88 uuid2 = nsblk->uuid;
89 } else if (is_nd_btt(dev)) {
90 struct nd_btt *nd_btt = to_nd_btt(dev);
91
92 uuid2 = nd_btt->uuid;
93 } else if (is_nd_pfn(dev)) {
94 struct nd_pfn *nd_pfn = to_nd_pfn(dev);
95
96 uuid2 = nd_pfn->uuid;
97 }
98
99 if (uuid2 && memcmp(uuid1, uuid2, NSLABEL_UUID_LEN) == 0)
100 return -EBUSY;
101
102 return 0;
103}
104
105static int is_namespace_uuid_busy(struct device *dev, void *data)
106{
c9e582aa 107 if (is_nd_region(dev))
e07ecd76
DW
108 return device_for_each_child(dev, data, is_uuid_busy);
109 return 0;
110}
111
112/**
113 * nd_is_uuid_unique - verify that no other namespace has @uuid
114 * @dev: any device on a nvdimm_bus
115 * @uuid: uuid to check
116 */
117bool nd_is_uuid_unique(struct device *dev, u8 *uuid)
118{
119 struct nvdimm_bus *nvdimm_bus = walk_to_nvdimm_bus(dev);
120
121 if (!nvdimm_bus)
122 return false;
123 WARN_ON_ONCE(!is_nvdimm_bus_locked(&nvdimm_bus->dev));
124 if (device_for_each_child(&nvdimm_bus->dev, uuid,
125 is_namespace_uuid_busy) != 0)
126 return false;
127 return true;
128}
129
004f1afb
DW
130bool pmem_should_map_pages(struct device *dev)
131{
132 struct nd_region *nd_region = to_nd_region(dev->parent);
fa7d2e63 133 struct nd_namespace_common *ndns = to_ndns(dev);
cfe30b87 134 struct nd_namespace_io *nsio;
004f1afb
DW
135
136 if (!IS_ENABLED(CONFIG_ZONE_DEVICE))
137 return false;
138
139 if (!test_bit(ND_REGION_PAGEMAP, &nd_region->flags))
140 return false;
141
142 if (is_nd_pfn(dev) || is_nd_btt(dev))
143 return false;
144
fa7d2e63
DW
145 if (ndns->force_raw)
146 return false;
147
cfe30b87
DW
148 nsio = to_nd_namespace_io(dev);
149 if (region_intersects(nsio->res.start, resource_size(&nsio->res),
150 IORESOURCE_SYSTEM_RAM,
151 IORES_DESC_NONE) == REGION_MIXED)
152 return false;
153
004f1afb 154 return ARCH_MEMREMAP_PMEM == MEMREMAP_WB;
004f1afb
DW
155}
156EXPORT_SYMBOL(pmem_should_map_pages);
157
f979b13c
DW
158unsigned int pmem_sector_size(struct nd_namespace_common *ndns)
159{
160 if (is_namespace_pmem(&ndns->dev)) {
161 struct nd_namespace_pmem *nspm;
162
163 nspm = to_nd_namespace_pmem(&ndns->dev);
164 if (nspm->lbasize == 0 || nspm->lbasize == 512)
165 /* default */;
166 else if (nspm->lbasize == 4096)
167 return 4096;
168 else
169 dev_WARN(&ndns->dev, "unsupported sector size: %ld\n",
170 nspm->lbasize);
171 }
172
173 /*
174 * There is no namespace label (is_namespace_io()), or the label
175 * indicates the default sector size.
176 */
177 return 512;
178}
179EXPORT_SYMBOL(pmem_sector_size);
180
5212e11f
VV
181const char *nvdimm_namespace_disk_name(struct nd_namespace_common *ndns,
182 char *name)
183{
184 struct nd_region *nd_region = to_nd_region(ndns->dev.parent);
004f1afb 185 const char *suffix = NULL;
5212e11f 186
0731de0d
DW
187 if (ndns->claim && is_nd_btt(ndns->claim))
188 suffix = "s";
5212e11f 189
004f1afb 190 if (is_namespace_pmem(&ndns->dev) || is_namespace_io(&ndns->dev)) {
01220733
DW
191 int nsidx = 0;
192
193 if (is_namespace_pmem(&ndns->dev)) {
194 struct nd_namespace_pmem *nspm;
195
196 nspm = to_nd_namespace_pmem(&ndns->dev);
197 nsidx = nspm->id;
198 }
199
200 if (nsidx)
201 sprintf(name, "pmem%d.%d%s", nd_region->id, nsidx,
202 suffix ? suffix : "");
203 else
204 sprintf(name, "pmem%d%s", nd_region->id,
205 suffix ? suffix : "");
004f1afb 206 } else if (is_namespace_blk(&ndns->dev)) {
5212e11f
VV
207 struct nd_namespace_blk *nsblk;
208
209 nsblk = to_nd_namespace_blk(&ndns->dev);
004f1afb
DW
210 sprintf(name, "ndblk%d.%d%s", nd_region->id, nsblk->id,
211 suffix ? suffix : "");
5212e11f
VV
212 } else {
213 return NULL;
214 }
215
216 return name;
217}
218EXPORT_SYMBOL(nvdimm_namespace_disk_name);
219
6ec68954
VV
220const u8 *nd_dev_to_uuid(struct device *dev)
221{
222 static const u8 null_uuid[16];
223
224 if (!dev)
225 return null_uuid;
226
227 if (is_namespace_pmem(dev)) {
228 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
229
230 return nspm->uuid;
231 } else if (is_namespace_blk(dev)) {
232 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
233
234 return nsblk->uuid;
235 } else
236 return null_uuid;
237}
238EXPORT_SYMBOL(nd_dev_to_uuid);
239
3d88002e
DW
240static ssize_t nstype_show(struct device *dev,
241 struct device_attribute *attr, char *buf)
242{
243 struct nd_region *nd_region = to_nd_region(dev->parent);
244
245 return sprintf(buf, "%d\n", nd_region_to_nstype(nd_region));
246}
247static DEVICE_ATTR_RO(nstype);
248
bf9bccc1
DW
249static ssize_t __alt_name_store(struct device *dev, const char *buf,
250 const size_t len)
251{
252 char *input, *pos, *alt_name, **ns_altname;
253 ssize_t rc;
254
255 if (is_namespace_pmem(dev)) {
256 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
257
258 ns_altname = &nspm->alt_name;
259 } else if (is_namespace_blk(dev)) {
1b40e09a
DW
260 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
261
262 ns_altname = &nsblk->alt_name;
bf9bccc1
DW
263 } else
264 return -ENXIO;
265
8c2f7e86 266 if (dev->driver || to_ndns(dev)->claim)
bf9bccc1
DW
267 return -EBUSY;
268
3d9cbe37 269 input = kstrndup(buf, len, GFP_KERNEL);
bf9bccc1
DW
270 if (!input)
271 return -ENOMEM;
272
bf9bccc1
DW
273 pos = strim(input);
274 if (strlen(pos) + 1 > NSLABEL_NAME_LEN) {
275 rc = -EINVAL;
276 goto out;
277 }
278
279 alt_name = kzalloc(NSLABEL_NAME_LEN, GFP_KERNEL);
280 if (!alt_name) {
281 rc = -ENOMEM;
282 goto out;
283 }
284 kfree(*ns_altname);
285 *ns_altname = alt_name;
286 sprintf(*ns_altname, "%s", pos);
287 rc = len;
288
289out:
290 kfree(input);
291 return rc;
292}
293
1b40e09a
DW
294static resource_size_t nd_namespace_blk_size(struct nd_namespace_blk *nsblk)
295{
8c2f7e86 296 struct nd_region *nd_region = to_nd_region(nsblk->common.dev.parent);
1b40e09a
DW
297 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
298 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
299 struct nd_label_id label_id;
300 resource_size_t size = 0;
301 struct resource *res;
302
303 if (!nsblk->uuid)
304 return 0;
305 nd_label_gen_id(&label_id, nsblk->uuid, NSLABEL_FLAG_LOCAL);
306 for_each_dpa_resource(ndd, res)
307 if (strcmp(res->name, label_id.id) == 0)
308 size += resource_size(res);
309 return size;
310}
311
047fc8a1
RZ
312static bool __nd_namespace_blk_validate(struct nd_namespace_blk *nsblk)
313{
314 struct nd_region *nd_region = to_nd_region(nsblk->common.dev.parent);
315 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
316 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
317 struct nd_label_id label_id;
318 struct resource *res;
319 int count, i;
320
321 if (!nsblk->uuid || !nsblk->lbasize || !ndd)
322 return false;
323
324 count = 0;
325 nd_label_gen_id(&label_id, nsblk->uuid, NSLABEL_FLAG_LOCAL);
326 for_each_dpa_resource(ndd, res) {
327 if (strcmp(res->name, label_id.id) != 0)
328 continue;
329 /*
ae551e9c 330 * Resources with unacknowledged adjustments indicate a
047fc8a1
RZ
331 * failure to update labels
332 */
333 if (res->flags & DPA_RESOURCE_ADJUSTED)
334 return false;
335 count++;
336 }
337
338 /* These values match after a successful label update */
339 if (count != nsblk->num_resources)
340 return false;
341
342 for (i = 0; i < nsblk->num_resources; i++) {
343 struct resource *found = NULL;
344
345 for_each_dpa_resource(ndd, res)
346 if (res == nsblk->res[i]) {
347 found = res;
348 break;
349 }
350 /* stale resource */
351 if (!found)
352 return false;
353 }
354
355 return true;
356}
357
358resource_size_t nd_namespace_blk_validate(struct nd_namespace_blk *nsblk)
359{
360 resource_size_t size;
361
362 nvdimm_bus_lock(&nsblk->common.dev);
363 size = __nd_namespace_blk_validate(nsblk);
364 nvdimm_bus_unlock(&nsblk->common.dev);
365
366 return size;
367}
368EXPORT_SYMBOL(nd_namespace_blk_validate);
369
370
f524bf27
DW
371static int nd_namespace_label_update(struct nd_region *nd_region,
372 struct device *dev)
373{
8c2f7e86 374 dev_WARN_ONCE(dev, dev->driver || to_ndns(dev)->claim,
f524bf27 375 "namespace must be idle during label update\n");
8c2f7e86 376 if (dev->driver || to_ndns(dev)->claim)
f524bf27
DW
377 return 0;
378
379 /*
380 * Only allow label writes that will result in a valid namespace
381 * or deletion of an existing namespace.
382 */
383 if (is_namespace_pmem(dev)) {
384 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
0ba1c634 385 resource_size_t size = resource_size(&nspm->nsio.res);
f524bf27
DW
386
387 if (size == 0 && nspm->uuid)
388 /* delete allocation */;
389 else if (!nspm->uuid)
390 return 0;
391
392 return nd_pmem_namespace_label_update(nd_region, nspm, size);
393 } else if (is_namespace_blk(dev)) {
0ba1c634
DW
394 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
395 resource_size_t size = nd_namespace_blk_size(nsblk);
396
397 if (size == 0 && nsblk->uuid)
398 /* delete allocation */;
399 else if (!nsblk->uuid || !nsblk->lbasize)
400 return 0;
401
402 return nd_blk_namespace_label_update(nd_region, nsblk, size);
f524bf27
DW
403 } else
404 return -ENXIO;
405}
406
bf9bccc1
DW
407static ssize_t alt_name_store(struct device *dev,
408 struct device_attribute *attr, const char *buf, size_t len)
409{
f524bf27 410 struct nd_region *nd_region = to_nd_region(dev->parent);
bf9bccc1
DW
411 ssize_t rc;
412
87a30e1f 413 nd_device_lock(dev);
bf9bccc1
DW
414 nvdimm_bus_lock(dev);
415 wait_nvdimm_bus_probe_idle(dev);
416 rc = __alt_name_store(dev, buf, len);
f524bf27
DW
417 if (rc >= 0)
418 rc = nd_namespace_label_update(nd_region, dev);
426824d6 419 dev_dbg(dev, "%s(%zd)\n", rc < 0 ? "fail " : "", rc);
bf9bccc1 420 nvdimm_bus_unlock(dev);
87a30e1f 421 nd_device_unlock(dev);
bf9bccc1 422
f524bf27 423 return rc < 0 ? rc : len;
bf9bccc1
DW
424}
425
426static ssize_t alt_name_show(struct device *dev,
427 struct device_attribute *attr, char *buf)
428{
429 char *ns_altname;
430
431 if (is_namespace_pmem(dev)) {
432 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
433
434 ns_altname = nspm->alt_name;
435 } else if (is_namespace_blk(dev)) {
1b40e09a
DW
436 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
437
438 ns_altname = nsblk->alt_name;
bf9bccc1
DW
439 } else
440 return -ENXIO;
441
442 return sprintf(buf, "%s\n", ns_altname ? ns_altname : "");
443}
444static DEVICE_ATTR_RW(alt_name);
445
446static int scan_free(struct nd_region *nd_region,
447 struct nd_mapping *nd_mapping, struct nd_label_id *label_id,
448 resource_size_t n)
449{
450 bool is_blk = strncmp(label_id->id, "blk", 3) == 0;
451 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
452 int rc = 0;
453
454 while (n) {
455 struct resource *res, *last;
456 resource_size_t new_start;
457
458 last = NULL;
459 for_each_dpa_resource(ndd, res)
460 if (strcmp(res->name, label_id->id) == 0)
461 last = res;
462 res = last;
463 if (!res)
464 return 0;
465
466 if (n >= resource_size(res)) {
467 n -= resource_size(res);
468 nd_dbg_dpa(nd_region, ndd, res, "delete %d\n", rc);
469 nvdimm_free_dpa(ndd, res);
470 /* retry with last resource deleted */
471 continue;
472 }
473
474 /*
475 * Keep BLK allocations relegated to high DPA as much as
476 * possible
477 */
478 if (is_blk)
479 new_start = res->start + n;
480 else
481 new_start = res->start;
482
483 rc = adjust_resource(res, new_start, resource_size(res) - n);
1b40e09a
DW
484 if (rc == 0)
485 res->flags |= DPA_RESOURCE_ADJUSTED;
bf9bccc1
DW
486 nd_dbg_dpa(nd_region, ndd, res, "shrink %d\n", rc);
487 break;
488 }
489
490 return rc;
491}
492
493/**
494 * shrink_dpa_allocation - for each dimm in region free n bytes for label_id
495 * @nd_region: the set of dimms to reclaim @n bytes from
496 * @label_id: unique identifier for the namespace consuming this dpa range
497 * @n: number of bytes per-dimm to release
498 *
499 * Assumes resources are ordered. Starting from the end try to
500 * adjust_resource() the allocation to @n, but if @n is larger than the
501 * allocation delete it and find the 'new' last allocation in the label
502 * set.
503 */
504static int shrink_dpa_allocation(struct nd_region *nd_region,
505 struct nd_label_id *label_id, resource_size_t n)
506{
507 int i;
508
509 for (i = 0; i < nd_region->ndr_mappings; i++) {
510 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
511 int rc;
512
513 rc = scan_free(nd_region, nd_mapping, label_id, n);
514 if (rc)
515 return rc;
516 }
517
518 return 0;
519}
520
521static resource_size_t init_dpa_allocation(struct nd_label_id *label_id,
522 struct nd_region *nd_region, struct nd_mapping *nd_mapping,
523 resource_size_t n)
524{
525 bool is_blk = strncmp(label_id->id, "blk", 3) == 0;
526 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
527 resource_size_t first_dpa;
528 struct resource *res;
529 int rc = 0;
530
531 /* allocate blk from highest dpa first */
532 if (is_blk)
533 first_dpa = nd_mapping->start + nd_mapping->size - n;
534 else
535 first_dpa = nd_mapping->start;
536
537 /* first resource allocation for this label-id or dimm */
538 res = nvdimm_allocate_dpa(ndd, label_id, first_dpa, n);
539 if (!res)
540 rc = -EBUSY;
541
542 nd_dbg_dpa(nd_region, ndd, res, "init %d\n", rc);
543 return rc ? n : 0;
544}
545
762d067d
DW
546
547/**
548 * space_valid() - validate free dpa space against constraints
549 * @nd_region: hosting region of the free space
550 * @ndd: dimm device data for debug
551 * @label_id: namespace id to allocate space
552 * @prev: potential allocation that precedes free space
553 * @next: allocation that follows the given free space range
554 * @exist: first allocation with same id in the mapping
555 * @n: range that must satisfied for pmem allocations
556 * @valid: free space range to validate
557 *
558 * BLK-space is valid as long as it does not precede a PMEM
559 * allocation in a given region. PMEM-space must be contiguous
560 * and adjacent to an existing existing allocation (if one
561 * exists). If reserving PMEM any space is valid.
562 */
563static void space_valid(struct nd_region *nd_region, struct nvdimm_drvdata *ndd,
564 struct nd_label_id *label_id, struct resource *prev,
565 struct resource *next, struct resource *exist,
566 resource_size_t n, struct resource *valid)
bf9bccc1 567{
762d067d
DW
568 bool is_reserve = strcmp(label_id->id, "pmem-reserve") == 0;
569 bool is_pmem = strncmp(label_id->id, "pmem", 4) == 0;
570
571 if (valid->start >= valid->end)
572 goto invalid;
573
574 if (is_reserve)
575 return;
576
577 if (!is_pmem) {
578 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
579 struct nvdimm_bus *nvdimm_bus;
580 struct blk_alloc_info info = {
581 .nd_mapping = nd_mapping,
582 .available = nd_mapping->size,
583 .res = valid,
584 };
585
586 WARN_ON(!is_nd_blk(&nd_region->dev));
587 nvdimm_bus = walk_to_nvdimm_bus(&nd_region->dev);
588 device_for_each_child(&nvdimm_bus->dev, &info, alias_dpa_busy);
589 return;
590 }
591
592 /* allocation needs to be contiguous, so this is all or nothing */
593 if (resource_size(valid) < n)
594 goto invalid;
595
596 /* we've got all the space we need and no existing allocation */
597 if (!exist)
598 return;
599
600 /* allocation needs to be contiguous with the existing namespace */
601 if (valid->start == exist->end + 1
602 || valid->end == exist->start - 1)
603 return;
604
605 invalid:
606 /* truncate @valid size to 0 */
607 valid->end = valid->start - 1;
bf9bccc1
DW
608}
609
610enum alloc_loc {
611 ALLOC_ERR = 0, ALLOC_BEFORE, ALLOC_MID, ALLOC_AFTER,
612};
613
614static resource_size_t scan_allocate(struct nd_region *nd_region,
615 struct nd_mapping *nd_mapping, struct nd_label_id *label_id,
616 resource_size_t n)
617{
618 resource_size_t mapping_end = nd_mapping->start + nd_mapping->size - 1;
619 bool is_pmem = strncmp(label_id->id, "pmem", 4) == 0;
620 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
762d067d 621 struct resource *res, *exist = NULL, valid;
bf9bccc1 622 const resource_size_t to_allocate = n;
bf9bccc1
DW
623 int first;
624
762d067d
DW
625 for_each_dpa_resource(ndd, res)
626 if (strcmp(label_id->id, res->name) == 0)
627 exist = res;
628
629 valid.start = nd_mapping->start;
630 valid.end = mapping_end;
631 valid.name = "free space";
bf9bccc1
DW
632 retry:
633 first = 0;
634 for_each_dpa_resource(ndd, res) {
bf9bccc1 635 struct resource *next = res->sibling, *new_res = NULL;
762d067d 636 resource_size_t allocate, available = 0;
bf9bccc1
DW
637 enum alloc_loc loc = ALLOC_ERR;
638 const char *action;
639 int rc = 0;
640
641 /* ignore resources outside this nd_mapping */
642 if (res->start > mapping_end)
643 continue;
644 if (res->end < nd_mapping->start)
645 continue;
646
647 /* space at the beginning of the mapping */
648 if (!first++ && res->start > nd_mapping->start) {
762d067d
DW
649 valid.start = nd_mapping->start;
650 valid.end = res->start - 1;
651 space_valid(nd_region, ndd, label_id, NULL, next, exist,
652 to_allocate, &valid);
653 available = resource_size(&valid);
654 if (available)
bf9bccc1
DW
655 loc = ALLOC_BEFORE;
656 }
657
658 /* space between allocations */
659 if (!loc && next) {
762d067d
DW
660 valid.start = res->start + resource_size(res);
661 valid.end = min(mapping_end, next->start - 1);
662 space_valid(nd_region, ndd, label_id, res, next, exist,
663 to_allocate, &valid);
664 available = resource_size(&valid);
665 if (available)
bf9bccc1 666 loc = ALLOC_MID;
bf9bccc1
DW
667 }
668
669 /* space at the end of the mapping */
670 if (!loc && !next) {
762d067d
DW
671 valid.start = res->start + resource_size(res);
672 valid.end = mapping_end;
673 space_valid(nd_region, ndd, label_id, res, next, exist,
674 to_allocate, &valid);
675 available = resource_size(&valid);
676 if (available)
bf9bccc1 677 loc = ALLOC_AFTER;
bf9bccc1
DW
678 }
679
680 if (!loc || !available)
681 continue;
682 allocate = min(available, n);
683 switch (loc) {
684 case ALLOC_BEFORE:
685 if (strcmp(res->name, label_id->id) == 0) {
686 /* adjust current resource up */
bf9bccc1
DW
687 rc = adjust_resource(res, res->start - allocate,
688 resource_size(res) + allocate);
689 action = "cur grow up";
690 } else
691 action = "allocate";
692 break;
693 case ALLOC_MID:
694 if (strcmp(next->name, label_id->id) == 0) {
695 /* adjust next resource up */
bf9bccc1
DW
696 rc = adjust_resource(next, next->start
697 - allocate, resource_size(next)
698 + allocate);
699 new_res = next;
700 action = "next grow up";
701 } else if (strcmp(res->name, label_id->id) == 0) {
702 action = "grow down";
703 } else
704 action = "allocate";
705 break;
706 case ALLOC_AFTER:
707 if (strcmp(res->name, label_id->id) == 0)
708 action = "grow down";
709 else
710 action = "allocate";
711 break;
712 default:
713 return n;
714 }
715
716 if (strcmp(action, "allocate") == 0) {
717 /* BLK allocate bottom up */
718 if (!is_pmem)
762d067d 719 valid.start += available - allocate;
bf9bccc1
DW
720
721 new_res = nvdimm_allocate_dpa(ndd, label_id,
762d067d 722 valid.start, allocate);
bf9bccc1
DW
723 if (!new_res)
724 rc = -EBUSY;
725 } else if (strcmp(action, "grow down") == 0) {
726 /* adjust current resource down */
727 rc = adjust_resource(res, res->start, resource_size(res)
728 + allocate);
1b40e09a
DW
729 if (rc == 0)
730 res->flags |= DPA_RESOURCE_ADJUSTED;
bf9bccc1
DW
731 }
732
733 if (!new_res)
734 new_res = res;
735
736 nd_dbg_dpa(nd_region, ndd, new_res, "%s(%d) %d\n",
737 action, loc, rc);
738
739 if (rc)
740 return n;
741
742 n -= allocate;
743 if (n) {
744 /*
745 * Retry scan with newly inserted resources.
746 * For example, if we did an ALLOC_BEFORE
747 * insertion there may also have been space
748 * available for an ALLOC_AFTER insertion, so we
749 * need to check this same resource again
750 */
751 goto retry;
752 } else
753 return 0;
754 }
755
1b40e09a
DW
756 /*
757 * If we allocated nothing in the BLK case it may be because we are in
758 * an initial "pmem-reserve pass". Only do an initial BLK allocation
759 * when none of the DPA space is reserved.
760 */
761 if ((is_pmem || !ndd->dpa.child) && n == to_allocate)
bf9bccc1
DW
762 return init_dpa_allocation(label_id, nd_region, nd_mapping, n);
763 return n;
764}
765
1b40e09a
DW
766static int merge_dpa(struct nd_region *nd_region,
767 struct nd_mapping *nd_mapping, struct nd_label_id *label_id)
768{
769 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
770 struct resource *res;
771
772 if (strncmp("pmem", label_id->id, 4) == 0)
773 return 0;
774 retry:
775 for_each_dpa_resource(ndd, res) {
776 int rc;
777 struct resource *next = res->sibling;
778 resource_size_t end = res->start + resource_size(res);
779
780 if (!next || strcmp(res->name, label_id->id) != 0
781 || strcmp(next->name, label_id->id) != 0
782 || end != next->start)
783 continue;
784 end += resource_size(next);
785 nvdimm_free_dpa(ndd, next);
786 rc = adjust_resource(res, res->start, end - res->start);
787 nd_dbg_dpa(nd_region, ndd, res, "merge %d\n", rc);
788 if (rc)
789 return rc;
790 res->flags |= DPA_RESOURCE_ADJUSTED;
791 goto retry;
792 }
793
794 return 0;
795}
796
12e3129e 797int __reserve_free_pmem(struct device *dev, void *data)
1b40e09a
DW
798{
799 struct nvdimm *nvdimm = data;
800 struct nd_region *nd_region;
801 struct nd_label_id label_id;
802 int i;
803
c9e582aa 804 if (!is_memory(dev))
1b40e09a
DW
805 return 0;
806
807 nd_region = to_nd_region(dev);
808 if (nd_region->ndr_mappings == 0)
809 return 0;
810
811 memset(&label_id, 0, sizeof(label_id));
812 strcat(label_id.id, "pmem-reserve");
813 for (i = 0; i < nd_region->ndr_mappings; i++) {
814 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
815 resource_size_t n, rem = 0;
816
817 if (nd_mapping->nvdimm != nvdimm)
818 continue;
819
820 n = nd_pmem_available_dpa(nd_region, nd_mapping, &rem);
821 if (n == 0)
822 return 0;
823 rem = scan_allocate(nd_region, nd_mapping, &label_id, n);
824 dev_WARN_ONCE(&nd_region->dev, rem,
825 "pmem reserve underrun: %#llx of %#llx bytes\n",
826 (unsigned long long) n - rem,
827 (unsigned long long) n);
828 return rem ? -ENXIO : 0;
829 }
830
831 return 0;
832}
833
12e3129e 834void release_free_pmem(struct nvdimm_bus *nvdimm_bus,
1b40e09a
DW
835 struct nd_mapping *nd_mapping)
836{
837 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
838 struct resource *res, *_res;
839
840 for_each_dpa_resource_safe(ndd, res, _res)
841 if (strcmp(res->name, "pmem-reserve") == 0)
842 nvdimm_free_dpa(ndd, res);
843}
844
845static int reserve_free_pmem(struct nvdimm_bus *nvdimm_bus,
846 struct nd_mapping *nd_mapping)
847{
848 struct nvdimm *nvdimm = nd_mapping->nvdimm;
849 int rc;
850
851 rc = device_for_each_child(&nvdimm_bus->dev, nvdimm,
852 __reserve_free_pmem);
853 if (rc)
854 release_free_pmem(nvdimm_bus, nd_mapping);
855 return rc;
856}
857
bf9bccc1
DW
858/**
859 * grow_dpa_allocation - for each dimm allocate n bytes for @label_id
860 * @nd_region: the set of dimms to allocate @n more bytes from
861 * @label_id: unique identifier for the namespace consuming this dpa range
862 * @n: number of bytes per-dimm to add to the existing allocation
863 *
864 * Assumes resources are ordered. For BLK regions, first consume
865 * BLK-only available DPA free space, then consume PMEM-aliased DPA
866 * space starting at the highest DPA. For PMEM regions start
867 * allocations from the start of an interleave set and end at the first
868 * BLK allocation or the end of the interleave set, whichever comes
869 * first.
870 */
871static int grow_dpa_allocation(struct nd_region *nd_region,
872 struct nd_label_id *label_id, resource_size_t n)
873{
1b40e09a
DW
874 struct nvdimm_bus *nvdimm_bus = walk_to_nvdimm_bus(&nd_region->dev);
875 bool is_pmem = strncmp(label_id->id, "pmem", 4) == 0;
bf9bccc1
DW
876 int i;
877
878 for (i = 0; i < nd_region->ndr_mappings; i++) {
879 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
1b40e09a
DW
880 resource_size_t rem = n;
881 int rc, j;
882
883 /*
884 * In the BLK case try once with all unallocated PMEM
885 * reserved, and once without
886 */
887 for (j = is_pmem; j < 2; j++) {
888 bool blk_only = j == 0;
889
890 if (blk_only) {
891 rc = reserve_free_pmem(nvdimm_bus, nd_mapping);
892 if (rc)
893 return rc;
894 }
895 rem = scan_allocate(nd_region, nd_mapping,
896 label_id, rem);
897 if (blk_only)
898 release_free_pmem(nvdimm_bus, nd_mapping);
bf9bccc1 899
1b40e09a
DW
900 /* try again and allow encroachments into PMEM */
901 if (rem == 0)
902 break;
903 }
904
905 dev_WARN_ONCE(&nd_region->dev, rem,
906 "allocation underrun: %#llx of %#llx bytes\n",
907 (unsigned long long) n - rem,
908 (unsigned long long) n);
909 if (rem)
910 return -ENXIO;
911
912 rc = merge_dpa(nd_region, nd_mapping, label_id);
bf9bccc1
DW
913 if (rc)
914 return rc;
915 }
916
917 return 0;
918}
919
0e3b0d12 920static void nd_namespace_pmem_set_resource(struct nd_region *nd_region,
bf9bccc1
DW
921 struct nd_namespace_pmem *nspm, resource_size_t size)
922{
923 struct resource *res = &nspm->nsio.res;
0e3b0d12 924 resource_size_t offset = 0;
bf9bccc1 925
0e3b0d12
DW
926 if (size && !nspm->uuid) {
927 WARN_ON_ONCE(1);
928 size = 0;
929 }
930
931 if (size && nspm->uuid) {
932 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
933 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
934 struct nd_label_id label_id;
935 struct resource *res;
936
937 if (!ndd) {
938 size = 0;
939 goto out;
940 }
941
942 nd_label_gen_id(&label_id, nspm->uuid, 0);
943
944 /* calculate a spa offset from the dpa allocation offset */
945 for_each_dpa_resource(ndd, res)
946 if (strcmp(res->name, label_id.id) == 0) {
947 offset = (res->start - nd_mapping->start)
948 * nd_region->ndr_mappings;
949 goto out;
950 }
951
952 WARN_ON_ONCE(1);
953 size = 0;
954 }
955
956 out:
957 res->start = nd_region->ndr_start + offset;
958 res->end = res->start + size - 1;
bf9bccc1
DW
959}
960
bd26d0d0
DK
961static bool uuid_not_set(const u8 *uuid, struct device *dev, const char *where)
962{
963 if (!uuid) {
964 dev_dbg(dev, "%s: uuid not set\n", where);
965 return true;
966 }
967 return false;
968}
969
bf9bccc1
DW
970static ssize_t __size_store(struct device *dev, unsigned long long val)
971{
972 resource_size_t allocated = 0, available = 0;
973 struct nd_region *nd_region = to_nd_region(dev->parent);
1f19b983 974 struct nd_namespace_common *ndns = to_ndns(dev);
bf9bccc1
DW
975 struct nd_mapping *nd_mapping;
976 struct nvdimm_drvdata *ndd;
977 struct nd_label_id label_id;
978 u32 flags = 0, remainder;
9d032f42 979 int rc, i, id = -1;
bf9bccc1 980 u8 *uuid = NULL;
bf9bccc1 981
1f19b983 982 if (dev->driver || ndns->claim)
bf9bccc1
DW
983 return -EBUSY;
984
985 if (is_namespace_pmem(dev)) {
986 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
987
988 uuid = nspm->uuid;
9d032f42 989 id = nspm->id;
bf9bccc1 990 } else if (is_namespace_blk(dev)) {
1b40e09a
DW
991 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
992
993 uuid = nsblk->uuid;
994 flags = NSLABEL_FLAG_LOCAL;
9d032f42 995 id = nsblk->id;
bf9bccc1
DW
996 }
997
998 /*
999 * We need a uuid for the allocation-label and dimm(s) on which
1000 * to store the label.
1001 */
bd26d0d0 1002 if (uuid_not_set(uuid, dev, __func__))
bf9bccc1 1003 return -ENXIO;
bd26d0d0 1004 if (nd_region->ndr_mappings == 0) {
426824d6 1005 dev_dbg(dev, "not associated with dimm(s)\n");
bd26d0d0
DK
1006 return -ENXIO;
1007 }
bf9bccc1 1008
5b26db95 1009 div_u64_rem(val, PAGE_SIZE * nd_region->ndr_mappings, &remainder);
bf9bccc1 1010 if (remainder) {
5b26db95
AK
1011 dev_dbg(dev, "%llu is not %ldK aligned\n", val,
1012 (PAGE_SIZE * nd_region->ndr_mappings) / SZ_1K);
bf9bccc1
DW
1013 return -EINVAL;
1014 }
1015
1016 nd_label_gen_id(&label_id, uuid, flags);
1017 for (i = 0; i < nd_region->ndr_mappings; i++) {
1018 nd_mapping = &nd_region->mapping[i];
1019 ndd = to_ndd(nd_mapping);
1020
1021 /*
1022 * All dimms in an interleave set, or the base dimm for a blk
1023 * region, need to be enabled for the size to be changed.
1024 */
1025 if (!ndd)
1026 return -ENXIO;
1027
1028 allocated += nvdimm_allocated_dpa(ndd, &label_id);
1029 }
12e3129e 1030 available = nd_region_allocatable_dpa(nd_region);
bf9bccc1
DW
1031
1032 if (val > available + allocated)
1033 return -ENOSPC;
1034
1035 if (val == allocated)
1036 return 0;
1037
1038 val = div_u64(val, nd_region->ndr_mappings);
1039 allocated = div_u64(allocated, nd_region->ndr_mappings);
1040 if (val < allocated)
1041 rc = shrink_dpa_allocation(nd_region, &label_id,
1042 allocated - val);
1043 else
1044 rc = grow_dpa_allocation(nd_region, &label_id, val - allocated);
1045
1046 if (rc)
1047 return rc;
1048
1049 if (is_namespace_pmem(dev)) {
1050 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1051
0e3b0d12 1052 nd_namespace_pmem_set_resource(nd_region, nspm,
bf9bccc1
DW
1053 val * nd_region->ndr_mappings);
1054 }
1055
1f19b983
DW
1056 /*
1057 * Try to delete the namespace if we deleted all of its
9d032f42
DW
1058 * allocation, this is not the seed or 0th device for the
1059 * region, and it is not actively claimed by a btt, pfn, or dax
1060 * instance.
1f19b983 1061 */
9d032f42 1062 if (val == 0 && id != 0 && nd_region->ns_seed != dev && !ndns->claim)
1f19b983
DW
1063 nd_device_unregister(dev, ND_ASYNC);
1064
bf9bccc1
DW
1065 return rc;
1066}
1067
1068static ssize_t size_store(struct device *dev,
1069 struct device_attribute *attr, const char *buf, size_t len)
1070{
f524bf27 1071 struct nd_region *nd_region = to_nd_region(dev->parent);
bf9bccc1
DW
1072 unsigned long long val;
1073 u8 **uuid = NULL;
1074 int rc;
1075
1076 rc = kstrtoull(buf, 0, &val);
1077 if (rc)
1078 return rc;
1079
87a30e1f 1080 nd_device_lock(dev);
bf9bccc1
DW
1081 nvdimm_bus_lock(dev);
1082 wait_nvdimm_bus_probe_idle(dev);
1083 rc = __size_store(dev, val);
f524bf27
DW
1084 if (rc >= 0)
1085 rc = nd_namespace_label_update(nd_region, dev);
bf9bccc1
DW
1086
1087 if (is_namespace_pmem(dev)) {
1088 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1089
1090 uuid = &nspm->uuid;
1091 } else if (is_namespace_blk(dev)) {
1b40e09a
DW
1092 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
1093
1094 uuid = &nsblk->uuid;
bf9bccc1
DW
1095 }
1096
1097 if (rc == 0 && val == 0 && uuid) {
1098 /* setting size zero == 'delete namespace' */
1099 kfree(*uuid);
1100 *uuid = NULL;
1101 }
1102
426824d6 1103 dev_dbg(dev, "%llx %s (%d)\n", val, rc < 0 ? "fail" : "success", rc);
bf9bccc1
DW
1104
1105 nvdimm_bus_unlock(dev);
87a30e1f 1106 nd_device_unlock(dev);
bf9bccc1 1107
f524bf27 1108 return rc < 0 ? rc : len;
bf9bccc1
DW
1109}
1110
8c2f7e86 1111resource_size_t __nvdimm_namespace_capacity(struct nd_namespace_common *ndns)
bf9bccc1 1112{
8c2f7e86 1113 struct device *dev = &ndns->dev;
1b40e09a 1114
bf9bccc1
DW
1115 if (is_namespace_pmem(dev)) {
1116 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1117
8c2f7e86 1118 return resource_size(&nspm->nsio.res);
bf9bccc1 1119 } else if (is_namespace_blk(dev)) {
8c2f7e86 1120 return nd_namespace_blk_size(to_nd_namespace_blk(dev));
bf9bccc1
DW
1121 } else if (is_namespace_io(dev)) {
1122 struct nd_namespace_io *nsio = to_nd_namespace_io(dev);
1123
8c2f7e86
DW
1124 return resource_size(&nsio->res);
1125 } else
1126 WARN_ONCE(1, "unknown namespace type\n");
1127 return 0;
1128}
1129
1130resource_size_t nvdimm_namespace_capacity(struct nd_namespace_common *ndns)
1131{
1132 resource_size_t size;
1b40e09a 1133
8c2f7e86
DW
1134 nvdimm_bus_lock(&ndns->dev);
1135 size = __nvdimm_namespace_capacity(ndns);
1136 nvdimm_bus_unlock(&ndns->dev);
1137
1138 return size;
1139}
1140EXPORT_SYMBOL(nvdimm_namespace_capacity);
1141
08e6b3c6
DW
1142bool nvdimm_namespace_locked(struct nd_namespace_common *ndns)
1143{
1144 int i;
1145 bool locked = false;
1146 struct device *dev = &ndns->dev;
1147 struct nd_region *nd_region = to_nd_region(dev->parent);
1148
1149 for (i = 0; i < nd_region->ndr_mappings; i++) {
1150 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
1151 struct nvdimm *nvdimm = nd_mapping->nvdimm;
1152
1153 if (test_bit(NDD_LOCKED, &nvdimm->flags)) {
1154 dev_dbg(dev, "%s locked\n", nvdimm_name(nvdimm));
1155 locked = true;
1156 }
1157 }
1158 return locked;
1159}
1160EXPORT_SYMBOL(nvdimm_namespace_locked);
1161
8c2f7e86
DW
1162static ssize_t size_show(struct device *dev,
1163 struct device_attribute *attr, char *buf)
1164{
1165 return sprintf(buf, "%llu\n", (unsigned long long)
1166 nvdimm_namespace_capacity(to_ndns(dev)));
bf9bccc1 1167}
b44fe760 1168static DEVICE_ATTR(size, 0444, size_show, size_store);
bf9bccc1 1169
f95b4bca 1170static u8 *namespace_to_uuid(struct device *dev)
bf9bccc1 1171{
bf9bccc1
DW
1172 if (is_namespace_pmem(dev)) {
1173 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1174
f95b4bca 1175 return nspm->uuid;
bf9bccc1 1176 } else if (is_namespace_blk(dev)) {
1b40e09a
DW
1177 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
1178
f95b4bca 1179 return nsblk->uuid;
bf9bccc1 1180 } else
f95b4bca
DW
1181 return ERR_PTR(-ENXIO);
1182}
1183
1184static ssize_t uuid_show(struct device *dev,
1185 struct device_attribute *attr, char *buf)
1186{
1187 u8 *uuid = namespace_to_uuid(dev);
bf9bccc1 1188
f95b4bca
DW
1189 if (IS_ERR(uuid))
1190 return PTR_ERR(uuid);
bf9bccc1
DW
1191 if (uuid)
1192 return sprintf(buf, "%pUb\n", uuid);
1193 return sprintf(buf, "\n");
1194}
1195
1196/**
1197 * namespace_update_uuid - check for a unique uuid and whether we're "renaming"
1198 * @nd_region: parent region so we can updates all dimms in the set
1199 * @dev: namespace type for generating label_id
1200 * @new_uuid: incoming uuid
1201 * @old_uuid: reference to the uuid storage location in the namespace object
1202 */
1203static int namespace_update_uuid(struct nd_region *nd_region,
1204 struct device *dev, u8 *new_uuid, u8 **old_uuid)
1205{
1206 u32 flags = is_namespace_blk(dev) ? NSLABEL_FLAG_LOCAL : 0;
1207 struct nd_label_id old_label_id;
1208 struct nd_label_id new_label_id;
f524bf27 1209 int i;
bf9bccc1 1210
f524bf27
DW
1211 if (!nd_is_uuid_unique(dev, new_uuid))
1212 return -EINVAL;
bf9bccc1
DW
1213
1214 if (*old_uuid == NULL)
1215 goto out;
1216
f524bf27
DW
1217 /*
1218 * If we've already written a label with this uuid, then it's
1219 * too late to rename because we can't reliably update the uuid
1220 * without losing the old namespace. Userspace must delete this
1221 * namespace to abandon the old uuid.
1222 */
1223 for (i = 0; i < nd_region->ndr_mappings; i++) {
1224 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
1225
1226 /*
1227 * This check by itself is sufficient because old_uuid
1228 * would be NULL above if this uuid did not exist in the
1229 * currently written set.
1230 *
1231 * FIXME: can we delete uuid with zero dpa allocated?
1232 */
ae8219f1 1233 if (list_empty(&nd_mapping->labels))
f524bf27
DW
1234 return -EBUSY;
1235 }
1236
bf9bccc1
DW
1237 nd_label_gen_id(&old_label_id, *old_uuid, flags);
1238 nd_label_gen_id(&new_label_id, new_uuid, flags);
1239 for (i = 0; i < nd_region->ndr_mappings; i++) {
1240 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
1241 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
c4703ce1 1242 struct nd_label_ent *label_ent;
bf9bccc1
DW
1243 struct resource *res;
1244
1245 for_each_dpa_resource(ndd, res)
1246 if (strcmp(res->name, old_label_id.id) == 0)
1247 sprintf((void *) res->name, "%s",
1248 new_label_id.id);
c4703ce1
DW
1249
1250 mutex_lock(&nd_mapping->lock);
1251 list_for_each_entry(label_ent, &nd_mapping->labels, list) {
1252 struct nd_namespace_label *nd_label = label_ent->label;
1253 struct nd_label_id label_id;
1254
1255 if (!nd_label)
1256 continue;
1257 nd_label_gen_id(&label_id, nd_label->uuid,
1258 __le32_to_cpu(nd_label->flags));
1259 if (strcmp(old_label_id.id, label_id.id) == 0)
1260 set_bit(ND_LABEL_REAP, &label_ent->flags);
1261 }
1262 mutex_unlock(&nd_mapping->lock);
bf9bccc1
DW
1263 }
1264 kfree(*old_uuid);
1265 out:
1266 *old_uuid = new_uuid;
1267 return 0;
1268}
1269
1270static ssize_t uuid_store(struct device *dev,
1271 struct device_attribute *attr, const char *buf, size_t len)
1272{
1273 struct nd_region *nd_region = to_nd_region(dev->parent);
1274 u8 *uuid = NULL;
8c2f7e86 1275 ssize_t rc = 0;
bf9bccc1 1276 u8 **ns_uuid;
bf9bccc1
DW
1277
1278 if (is_namespace_pmem(dev)) {
1279 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1280
1281 ns_uuid = &nspm->uuid;
1282 } else if (is_namespace_blk(dev)) {
1b40e09a
DW
1283 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
1284
1285 ns_uuid = &nsblk->uuid;
bf9bccc1
DW
1286 } else
1287 return -ENXIO;
1288
87a30e1f 1289 nd_device_lock(dev);
bf9bccc1
DW
1290 nvdimm_bus_lock(dev);
1291 wait_nvdimm_bus_probe_idle(dev);
8c2f7e86
DW
1292 if (to_ndns(dev)->claim)
1293 rc = -EBUSY;
1294 if (rc >= 0)
1295 rc = nd_uuid_store(dev, &uuid, buf, len);
bf9bccc1
DW
1296 if (rc >= 0)
1297 rc = namespace_update_uuid(nd_region, dev, uuid, ns_uuid);
f524bf27
DW
1298 if (rc >= 0)
1299 rc = nd_namespace_label_update(nd_region, dev);
1300 else
1301 kfree(uuid);
426824d6
DW
1302 dev_dbg(dev, "result: %zd wrote: %s%s", rc, buf,
1303 buf[len - 1] == '\n' ? "" : "\n");
bf9bccc1 1304 nvdimm_bus_unlock(dev);
87a30e1f 1305 nd_device_unlock(dev);
bf9bccc1 1306
f524bf27 1307 return rc < 0 ? rc : len;
bf9bccc1
DW
1308}
1309static DEVICE_ATTR_RW(uuid);
1310
1311static ssize_t resource_show(struct device *dev,
1312 struct device_attribute *attr, char *buf)
1313{
1314 struct resource *res;
1315
1316 if (is_namespace_pmem(dev)) {
1317 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1318
1319 res = &nspm->nsio.res;
1320 } else if (is_namespace_io(dev)) {
1321 struct nd_namespace_io *nsio = to_nd_namespace_io(dev);
1322
1323 res = &nsio->res;
1324 } else
1325 return -ENXIO;
1326
1327 /* no address to convey if the namespace has no allocation */
1328 if (resource_size(res) == 0)
1329 return -ENXIO;
1330 return sprintf(buf, "%#llx\n", (unsigned long long) res->start);
1331}
1332static DEVICE_ATTR_RO(resource);
1333
f979b13c 1334static const unsigned long blk_lbasize_supported[] = { 512, 520, 528,
fcae6957 1335 4096, 4104, 4160, 4224, 0 };
1b40e09a 1336
f979b13c
DW
1337static const unsigned long pmem_lbasize_supported[] = { 512, 4096, 0 };
1338
1b40e09a
DW
1339static ssize_t sector_size_show(struct device *dev,
1340 struct device_attribute *attr, char *buf)
1341{
f979b13c
DW
1342 if (is_namespace_blk(dev)) {
1343 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
1b40e09a 1344
b2c48f9f 1345 return nd_size_select_show(nsblk->lbasize,
f979b13c
DW
1346 blk_lbasize_supported, buf);
1347 }
1b40e09a 1348
f979b13c
DW
1349 if (is_namespace_pmem(dev)) {
1350 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1351
b2c48f9f 1352 return nd_size_select_show(nspm->lbasize,
f979b13c
DW
1353 pmem_lbasize_supported, buf);
1354 }
1355 return -ENXIO;
1b40e09a
DW
1356}
1357
1358static ssize_t sector_size_store(struct device *dev,
1359 struct device_attribute *attr, const char *buf, size_t len)
1360{
f524bf27 1361 struct nd_region *nd_region = to_nd_region(dev->parent);
f979b13c
DW
1362 const unsigned long *supported;
1363 unsigned long *lbasize;
8c2f7e86 1364 ssize_t rc = 0;
1b40e09a 1365
f979b13c
DW
1366 if (is_namespace_blk(dev)) {
1367 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
1368
1369 lbasize = &nsblk->lbasize;
1370 supported = blk_lbasize_supported;
1371 } else if (is_namespace_pmem(dev)) {
1372 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1373
1374 lbasize = &nspm->lbasize;
1375 supported = pmem_lbasize_supported;
1376 } else
1b40e09a
DW
1377 return -ENXIO;
1378
87a30e1f 1379 nd_device_lock(dev);
1b40e09a 1380 nvdimm_bus_lock(dev);
8c2f7e86
DW
1381 if (to_ndns(dev)->claim)
1382 rc = -EBUSY;
1383 if (rc >= 0)
b2c48f9f 1384 rc = nd_size_select_store(dev, buf, lbasize, supported);
f524bf27
DW
1385 if (rc >= 0)
1386 rc = nd_namespace_label_update(nd_region, dev);
426824d6
DW
1387 dev_dbg(dev, "result: %zd %s: %s%s", rc, rc < 0 ? "tried" : "wrote",
1388 buf, buf[len - 1] == '\n' ? "" : "\n");
1b40e09a 1389 nvdimm_bus_unlock(dev);
87a30e1f 1390 nd_device_unlock(dev);
1b40e09a
DW
1391
1392 return rc ? rc : len;
1393}
1394static DEVICE_ATTR_RW(sector_size);
1395
0ba1c634
DW
1396static ssize_t dpa_extents_show(struct device *dev,
1397 struct device_attribute *attr, char *buf)
1398{
1399 struct nd_region *nd_region = to_nd_region(dev->parent);
1400 struct nd_label_id label_id;
1401 int count = 0, i;
1402 u8 *uuid = NULL;
1403 u32 flags = 0;
1404
1405 nvdimm_bus_lock(dev);
1406 if (is_namespace_pmem(dev)) {
1407 struct nd_namespace_pmem *nspm = to_nd_namespace_pmem(dev);
1408
1409 uuid = nspm->uuid;
1410 flags = 0;
1411 } else if (is_namespace_blk(dev)) {
1412 struct nd_namespace_blk *nsblk = to_nd_namespace_blk(dev);
1413
1414 uuid = nsblk->uuid;
1415 flags = NSLABEL_FLAG_LOCAL;
1416 }
1417
1418 if (!uuid)
1419 goto out;
1420
1421 nd_label_gen_id(&label_id, uuid, flags);
1422 for (i = 0; i < nd_region->ndr_mappings; i++) {
1423 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
1424 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
1425 struct resource *res;
1426
1427 for_each_dpa_resource(ndd, res)
1428 if (strcmp(res->name, label_id.id) == 0)
1429 count++;
1430 }
1431 out:
1432 nvdimm_bus_unlock(dev);
1433
1434 return sprintf(buf, "%d\n", count);
1435}
1436static DEVICE_ATTR_RO(dpa_extents);
1437
14e49454
VV
1438static int btt_claim_class(struct device *dev)
1439{
1440 struct nd_region *nd_region = to_nd_region(dev->parent);
1441 int i, loop_bitmask = 0;
1442
1443 for (i = 0; i < nd_region->ndr_mappings; i++) {
1444 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
1445 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
1446 struct nd_namespace_index *nsindex;
1447
33a56086
DW
1448 /*
1449 * If any of the DIMMs do not support labels the only
1450 * possible BTT format is v1.
1451 */
1452 if (!ndd) {
1453 loop_bitmask = 0;
1454 break;
1455 }
1456
14e49454
VV
1457 nsindex = to_namespace_index(ndd, ndd->ns_current);
1458 if (nsindex == NULL)
1459 loop_bitmask |= 1;
1460 else {
1461 /* check whether existing labels are v1.1 or v1.2 */
1462 if (__le16_to_cpu(nsindex->major) == 1
1463 && __le16_to_cpu(nsindex->minor) == 1)
1464 loop_bitmask |= 2;
1465 else
1466 loop_bitmask |= 4;
1467 }
1468 }
1469 /*
1470 * If nsindex is null loop_bitmask's bit 0 will be set, and if an index
1471 * block is found, a v1.1 label for any mapping will set bit 1, and a
1472 * v1.2 label will set bit 2.
1473 *
1474 * At the end of the loop, at most one of the three bits must be set.
1475 * If multiple bits were set, it means the different mappings disagree
1476 * about their labels, and this must be cleaned up first.
1477 *
1478 * If all the label index blocks are found to agree, nsindex of NULL
1479 * implies labels haven't been initialized yet, and when they will,
1480 * they will be of the 1.2 format, so we can assume BTT2.0
1481 *
1482 * If 1.1 labels are found, we enforce BTT1.1, and if 1.2 labels are
1483 * found, we enforce BTT2.0
1484 *
1485 * If the loop was never entered, default to BTT1.1 (legacy namespaces)
1486 */
1487 switch (loop_bitmask) {
1488 case 0:
1489 case 2:
1490 return NVDIMM_CCLASS_BTT;
1491 case 1:
1492 case 4:
1493 return NVDIMM_CCLASS_BTT2;
1494 default:
1495 return -ENXIO;
1496 }
1497}
1498
8c2f7e86
DW
1499static ssize_t holder_show(struct device *dev,
1500 struct device_attribute *attr, char *buf)
1501{
1502 struct nd_namespace_common *ndns = to_ndns(dev);
1503 ssize_t rc;
1504
87a30e1f 1505 nd_device_lock(dev);
8c2f7e86 1506 rc = sprintf(buf, "%s\n", ndns->claim ? dev_name(ndns->claim) : "");
87a30e1f 1507 nd_device_unlock(dev);
8c2f7e86
DW
1508
1509 return rc;
1510}
1511static DEVICE_ATTR_RO(holder);
1512
ab84b77a 1513static int __holder_class_store(struct device *dev, const char *buf)
b3fde74e
DW
1514{
1515 struct nd_namespace_common *ndns = to_ndns(dev);
1516
1517 if (dev->driver || ndns->claim)
1518 return -EBUSY;
1519
ab84b77a
IW
1520 if (sysfs_streq(buf, "btt")) {
1521 int rc = btt_claim_class(dev);
1522
1523 if (rc < NVDIMM_CCLASS_NONE)
1524 return rc;
1525 ndns->claim_class = rc;
1526 } else if (sysfs_streq(buf, "pfn"))
b3fde74e 1527 ndns->claim_class = NVDIMM_CCLASS_PFN;
075c3fdd 1528 else if (sysfs_streq(buf, "dax"))
b3fde74e 1529 ndns->claim_class = NVDIMM_CCLASS_DAX;
075c3fdd 1530 else if (sysfs_streq(buf, ""))
b3fde74e
DW
1531 ndns->claim_class = NVDIMM_CCLASS_NONE;
1532 else
1533 return -EINVAL;
1534
1535 return 0;
1536}
1537
1538static ssize_t holder_class_store(struct device *dev,
1539 struct device_attribute *attr, const char *buf, size_t len)
1540{
1541 struct nd_region *nd_region = to_nd_region(dev->parent);
ab84b77a 1542 int rc;
b3fde74e 1543
87a30e1f 1544 nd_device_lock(dev);
b3fde74e
DW
1545 nvdimm_bus_lock(dev);
1546 wait_nvdimm_bus_probe_idle(dev);
1547 rc = __holder_class_store(dev, buf);
1548 if (rc >= 0)
1549 rc = nd_namespace_label_update(nd_region, dev);
ab84b77a 1550 dev_dbg(dev, "%s(%d)\n", rc < 0 ? "fail " : "", rc);
b3fde74e 1551 nvdimm_bus_unlock(dev);
87a30e1f 1552 nd_device_unlock(dev);
b3fde74e
DW
1553
1554 return rc < 0 ? rc : len;
1555}
1556
1557static ssize_t holder_class_show(struct device *dev,
1558 struct device_attribute *attr, char *buf)
1559{
1560 struct nd_namespace_common *ndns = to_ndns(dev);
1561 ssize_t rc;
1562
87a30e1f 1563 nd_device_lock(dev);
b3fde74e
DW
1564 if (ndns->claim_class == NVDIMM_CCLASS_NONE)
1565 rc = sprintf(buf, "\n");
14e49454
VV
1566 else if ((ndns->claim_class == NVDIMM_CCLASS_BTT) ||
1567 (ndns->claim_class == NVDIMM_CCLASS_BTT2))
b3fde74e
DW
1568 rc = sprintf(buf, "btt\n");
1569 else if (ndns->claim_class == NVDIMM_CCLASS_PFN)
1570 rc = sprintf(buf, "pfn\n");
1571 else if (ndns->claim_class == NVDIMM_CCLASS_DAX)
1572 rc = sprintf(buf, "dax\n");
1573 else
1574 rc = sprintf(buf, "<unknown>\n");
87a30e1f 1575 nd_device_unlock(dev);
b3fde74e
DW
1576
1577 return rc;
1578}
1579static DEVICE_ATTR_RW(holder_class);
1580
0731de0d
DW
1581static ssize_t mode_show(struct device *dev,
1582 struct device_attribute *attr, char *buf)
1583{
1584 struct nd_namespace_common *ndns = to_ndns(dev);
1585 struct device *claim;
1586 char *mode;
1587 ssize_t rc;
1588
87a30e1f 1589 nd_device_lock(dev);
0731de0d 1590 claim = ndns->claim;
9c412428 1591 if (claim && is_nd_btt(claim))
0731de0d 1592 mode = "safe";
9c412428
DW
1593 else if (claim && is_nd_pfn(claim))
1594 mode = "memory";
cd03412a
DW
1595 else if (claim && is_nd_dax(claim))
1596 mode = "dax";
9c412428
DW
1597 else if (!claim && pmem_should_map_pages(dev))
1598 mode = "memory";
0731de0d
DW
1599 else
1600 mode = "raw";
1601 rc = sprintf(buf, "%s\n", mode);
87a30e1f 1602 nd_device_unlock(dev);
0731de0d
DW
1603
1604 return rc;
1605}
1606static DEVICE_ATTR_RO(mode);
1607
8c2f7e86
DW
1608static ssize_t force_raw_store(struct device *dev,
1609 struct device_attribute *attr, const char *buf, size_t len)
1610{
1611 bool force_raw;
1612 int rc = strtobool(buf, &force_raw);
1613
1614 if (rc)
1615 return rc;
1616
1617 to_ndns(dev)->force_raw = force_raw;
1618 return len;
1619}
1620
1621static ssize_t force_raw_show(struct device *dev,
1622 struct device_attribute *attr, char *buf)
1623{
1624 return sprintf(buf, "%d\n", to_ndns(dev)->force_raw);
1625}
1626static DEVICE_ATTR_RW(force_raw);
1627
3d88002e
DW
1628static struct attribute *nd_namespace_attributes[] = {
1629 &dev_attr_nstype.attr,
bf9bccc1 1630 &dev_attr_size.attr,
0731de0d 1631 &dev_attr_mode.attr,
bf9bccc1 1632 &dev_attr_uuid.attr,
8c2f7e86 1633 &dev_attr_holder.attr,
bf9bccc1
DW
1634 &dev_attr_resource.attr,
1635 &dev_attr_alt_name.attr,
8c2f7e86 1636 &dev_attr_force_raw.attr,
1b40e09a 1637 &dev_attr_sector_size.attr,
0ba1c634 1638 &dev_attr_dpa_extents.attr,
b3fde74e 1639 &dev_attr_holder_class.attr,
3d88002e
DW
1640 NULL,
1641};
1642
bf9bccc1
DW
1643static umode_t namespace_visible(struct kobject *kobj,
1644 struct attribute *a, int n)
1645{
1646 struct device *dev = container_of(kobj, struct device, kobj);
1647
1648 if (a == &dev_attr_resource.attr) {
1649 if (is_namespace_blk(dev))
1650 return 0;
c1fb3542 1651 return 0400;
bf9bccc1
DW
1652 }
1653
1654 if (is_namespace_pmem(dev) || is_namespace_blk(dev)) {
1655 if (a == &dev_attr_size.attr)
b44fe760 1656 return 0644;
1b40e09a 1657
bf9bccc1
DW
1658 return a->mode;
1659 }
1660
8c2f7e86
DW
1661 if (a == &dev_attr_nstype.attr || a == &dev_attr_size.attr
1662 || a == &dev_attr_holder.attr
b3fde74e 1663 || a == &dev_attr_holder_class.attr
0731de0d
DW
1664 || a == &dev_attr_force_raw.attr
1665 || a == &dev_attr_mode.attr)
bf9bccc1
DW
1666 return a->mode;
1667
1668 return 0;
1669}
1670
3d88002e
DW
1671static struct attribute_group nd_namespace_attribute_group = {
1672 .attrs = nd_namespace_attributes,
bf9bccc1 1673 .is_visible = namespace_visible,
3d88002e
DW
1674};
1675
1676static const struct attribute_group *nd_namespace_attribute_groups[] = {
1677 &nd_device_attribute_group,
1678 &nd_namespace_attribute_group,
74ae66c3 1679 &nd_numa_attribute_group,
3d88002e
DW
1680 NULL,
1681};
1682
8c2f7e86
DW
1683struct nd_namespace_common *nvdimm_namespace_common_probe(struct device *dev)
1684{
1685 struct nd_btt *nd_btt = is_nd_btt(dev) ? to_nd_btt(dev) : NULL;
e1455744 1686 struct nd_pfn *nd_pfn = is_nd_pfn(dev) ? to_nd_pfn(dev) : NULL;
cd03412a 1687 struct nd_dax *nd_dax = is_nd_dax(dev) ? to_nd_dax(dev) : NULL;
0bfb8dd3 1688 struct nd_namespace_common *ndns = NULL;
8c2f7e86
DW
1689 resource_size_t size;
1690
cd03412a 1691 if (nd_btt || nd_pfn || nd_dax) {
0bfb8dd3 1692 if (nd_btt)
e1455744 1693 ndns = nd_btt->ndns;
0bfb8dd3 1694 else if (nd_pfn)
e1455744 1695 ndns = nd_pfn->ndns;
cd03412a
DW
1696 else if (nd_dax)
1697 ndns = nd_dax->nd_pfn.ndns;
e1455744 1698
0bfb8dd3 1699 if (!ndns)
8c2f7e86
DW
1700 return ERR_PTR(-ENODEV);
1701
1702 /*
1703 * Flush any in-progess probes / removals in the driver
1704 * for the raw personality of this namespace.
1705 */
87a30e1f
DW
1706 nd_device_lock(&ndns->dev);
1707 nd_device_unlock(&ndns->dev);
8c2f7e86
DW
1708 if (ndns->dev.driver) {
1709 dev_dbg(&ndns->dev, "is active, can't bind %s\n",
0bfb8dd3 1710 dev_name(dev));
8c2f7e86
DW
1711 return ERR_PTR(-EBUSY);
1712 }
0bfb8dd3 1713 if (dev_WARN_ONCE(&ndns->dev, ndns->claim != dev,
8c2f7e86 1714 "host (%s) vs claim (%s) mismatch\n",
0bfb8dd3 1715 dev_name(dev),
8c2f7e86
DW
1716 dev_name(ndns->claim)))
1717 return ERR_PTR(-ENXIO);
1718 } else {
1719 ndns = to_ndns(dev);
1720 if (ndns->claim) {
1721 dev_dbg(dev, "claimed by %s, failing probe\n",
1722 dev_name(ndns->claim));
1723
1724 return ERR_PTR(-ENXIO);
1725 }
1726 }
1727
08e6b3c6
DW
1728 if (nvdimm_namespace_locked(ndns))
1729 return ERR_PTR(-EACCES);
1730
8c2f7e86
DW
1731 size = nvdimm_namespace_capacity(ndns);
1732 if (size < ND_MIN_NAMESPACE_SIZE) {
1733 dev_dbg(&ndns->dev, "%pa, too small must be at least %#x\n",
1734 &size, ND_MIN_NAMESPACE_SIZE);
1735 return ERR_PTR(-ENODEV);
1736 }
1737
1738 if (is_namespace_pmem(&ndns->dev)) {
1739 struct nd_namespace_pmem *nspm;
1740
1741 nspm = to_nd_namespace_pmem(&ndns->dev);
bd26d0d0 1742 if (uuid_not_set(nspm->uuid, &ndns->dev, __func__))
8c2f7e86 1743 return ERR_PTR(-ENODEV);
8c2f7e86 1744 } else if (is_namespace_blk(&ndns->dev)) {
047fc8a1
RZ
1745 struct nd_namespace_blk *nsblk;
1746
1747 nsblk = to_nd_namespace_blk(&ndns->dev);
bd26d0d0
DK
1748 if (uuid_not_set(nsblk->uuid, &ndns->dev, __func__))
1749 return ERR_PTR(-ENODEV);
1750 if (!nsblk->lbasize) {
426824d6 1751 dev_dbg(&ndns->dev, "sector size not set\n");
bd26d0d0
DK
1752 return ERR_PTR(-ENODEV);
1753 }
047fc8a1
RZ
1754 if (!nd_namespace_blk_validate(nsblk))
1755 return ERR_PTR(-ENODEV);
8c2f7e86
DW
1756 }
1757
1758 return ndns;
1759}
1760EXPORT_SYMBOL(nvdimm_namespace_common_probe);
1761
8f4b01fc
AK
1762int devm_namespace_enable(struct device *dev, struct nd_namespace_common *ndns,
1763 resource_size_t size)
1764{
1765 if (is_namespace_blk(&ndns->dev))
1766 return 0;
1767 return devm_nsio_enable(dev, to_nd_namespace_io(&ndns->dev), size);
1768}
1769EXPORT_SYMBOL_GPL(devm_namespace_enable);
1770
1771void devm_namespace_disable(struct device *dev, struct nd_namespace_common *ndns)
1772{
1773 if (is_namespace_blk(&ndns->dev))
1774 return;
1775 devm_nsio_disable(dev, to_nd_namespace_io(&ndns->dev));
1776}
1777EXPORT_SYMBOL_GPL(devm_namespace_disable);
1778
3d88002e
DW
1779static struct device **create_namespace_io(struct nd_region *nd_region)
1780{
1781 struct nd_namespace_io *nsio;
1782 struct device *dev, **devs;
1783 struct resource *res;
1784
1785 nsio = kzalloc(sizeof(*nsio), GFP_KERNEL);
1786 if (!nsio)
1787 return NULL;
1788
1789 devs = kcalloc(2, sizeof(struct device *), GFP_KERNEL);
1790 if (!devs) {
1791 kfree(nsio);
1792 return NULL;
1793 }
1794
8c2f7e86 1795 dev = &nsio->common.dev;
3d88002e
DW
1796 dev->type = &namespace_io_device_type;
1797 dev->parent = &nd_region->dev;
1798 res = &nsio->res;
1799 res->name = dev_name(&nd_region->dev);
1800 res->flags = IORESOURCE_MEM;
1801 res->start = nd_region->ndr_start;
1802 res->end = res->start + nd_region->ndr_size - 1;
1803
1804 devs[0] = dev;
1805 return devs;
1806}
1807
bf9bccc1
DW
1808static bool has_uuid_at_pos(struct nd_region *nd_region, u8 *uuid,
1809 u64 cookie, u16 pos)
1810{
1811 struct nd_namespace_label *found = NULL;
1812 int i;
1813
1814 for (i = 0; i < nd_region->ndr_mappings; i++) {
1815 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
faec6f8a
DW
1816 struct nd_interleave_set *nd_set = nd_region->nd_set;
1817 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
ae8219f1 1818 struct nd_label_ent *label_ent;
bf9bccc1 1819 bool found_uuid = false;
bf9bccc1 1820
ae8219f1
DW
1821 list_for_each_entry(label_ent, &nd_mapping->labels, list) {
1822 struct nd_namespace_label *nd_label = label_ent->label;
1823 u16 position, nlabel;
1824 u64 isetcookie;
1825
1826 if (!nd_label)
1827 continue;
1828 isetcookie = __le64_to_cpu(nd_label->isetcookie);
1829 position = __le16_to_cpu(nd_label->position);
1830 nlabel = __le16_to_cpu(nd_label->nlabel);
bf9bccc1
DW
1831
1832 if (isetcookie != cookie)
1833 continue;
1834
1835 if (memcmp(nd_label->uuid, uuid, NSLABEL_UUID_LEN) != 0)
1836 continue;
1837
faec6f8a
DW
1838 if (namespace_label_has(ndd, type_guid)
1839 && !guid_equal(&nd_set->type_guid,
1840 &nd_label->type_guid)) {
1841 dev_dbg(ndd->dev, "expect type_guid %pUb got %pUb\n",
db5d00c9
AS
1842 &nd_set->type_guid,
1843 &nd_label->type_guid);
faec6f8a
DW
1844 continue;
1845 }
1846
bf9bccc1 1847 if (found_uuid) {
426824d6 1848 dev_dbg(ndd->dev, "duplicate entry for uuid\n");
bf9bccc1
DW
1849 return false;
1850 }
1851 found_uuid = true;
1852 if (nlabel != nd_region->ndr_mappings)
1853 continue;
1854 if (position != pos)
1855 continue;
1856 found = nd_label;
1857 break;
1858 }
1859 if (found)
1860 break;
1861 }
1862 return found != NULL;
1863}
1864
1865static int select_pmem_id(struct nd_region *nd_region, u8 *pmem_id)
1866{
bf9bccc1
DW
1867 int i;
1868
1869 if (!pmem_id)
1870 return -ENODEV;
1871
1872 for (i = 0; i < nd_region->ndr_mappings; i++) {
1873 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
0e3b0d12 1874 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
ae8219f1 1875 struct nd_namespace_label *nd_label = NULL;
bf9bccc1 1876 u64 hw_start, hw_end, pmem_start, pmem_end;
ae8219f1 1877 struct nd_label_ent *label_ent;
bf9bccc1 1878
9cf8bd52 1879 lockdep_assert_held(&nd_mapping->lock);
ae8219f1
DW
1880 list_for_each_entry(label_ent, &nd_mapping->labels, list) {
1881 nd_label = label_ent->label;
1882 if (!nd_label)
1883 continue;
bf9bccc1
DW
1884 if (memcmp(nd_label->uuid, pmem_id, NSLABEL_UUID_LEN) == 0)
1885 break;
ae8219f1
DW
1886 nd_label = NULL;
1887 }
bf9bccc1
DW
1888
1889 if (!nd_label) {
1890 WARN_ON(1);
1891 return -EINVAL;
1892 }
1893
bf9bccc1
DW
1894 /*
1895 * Check that this label is compliant with the dpa
1896 * range published in NFIT
1897 */
1898 hw_start = nd_mapping->start;
1899 hw_end = hw_start + nd_mapping->size;
ae8219f1
DW
1900 pmem_start = __le64_to_cpu(nd_label->dpa);
1901 pmem_end = pmem_start + __le64_to_cpu(nd_label->rawsize);
0e3b0d12
DW
1902 if (pmem_start >= hw_start && pmem_start < hw_end
1903 && pmem_end <= hw_end && pmem_end > hw_start)
bf9bccc1 1904 /* pass */;
0e3b0d12
DW
1905 else {
1906 dev_dbg(&nd_region->dev, "%s invalid label for %pUb\n",
1907 dev_name(ndd->dev), nd_label->uuid);
bf9bccc1 1908 return -EINVAL;
0e3b0d12 1909 }
bf9bccc1 1910
8a5f50d3
DW
1911 /* move recently validated label to the front of the list */
1912 list_move(&label_ent->list, &nd_mapping->labels);
bf9bccc1
DW
1913 }
1914 return 0;
1915}
1916
1917/**
8a5f50d3 1918 * create_namespace_pmem - validate interleave set labelling, retrieve label0
bf9bccc1 1919 * @nd_region: region with mappings to validate
8a5f50d3
DW
1920 * @nspm: target namespace to create
1921 * @nd_label: target pmem namespace label to evaluate
bf9bccc1 1922 */
65853a1d 1923static struct device *create_namespace_pmem(struct nd_region *nd_region,
c12c48ce 1924 struct nd_namespace_index *nsindex,
8a5f50d3 1925 struct nd_namespace_label *nd_label)
bf9bccc1 1926{
c12c48ce 1927 u64 cookie = nd_region_interleave_set_cookie(nd_region, nsindex);
86ef58a4 1928 u64 altcookie = nd_region_interleave_set_altcookie(nd_region);
ae8219f1 1929 struct nd_label_ent *label_ent;
8a5f50d3 1930 struct nd_namespace_pmem *nspm;
ae8219f1 1931 struct nd_mapping *nd_mapping;
bf9bccc1 1932 resource_size_t size = 0;
8a5f50d3
DW
1933 struct resource *res;
1934 struct device *dev;
ae8219f1 1935 int rc = 0;
bf9bccc1
DW
1936 u16 i;
1937
4765218d
DW
1938 if (cookie == 0) {
1939 dev_dbg(&nd_region->dev, "invalid interleave-set-cookie\n");
8a5f50d3 1940 return ERR_PTR(-ENXIO);
4765218d 1941 }
bf9bccc1 1942
8a5f50d3
DW
1943 if (__le64_to_cpu(nd_label->isetcookie) != cookie) {
1944 dev_dbg(&nd_region->dev, "invalid cookie in label: %pUb\n",
1945 nd_label->uuid);
86ef58a4
DW
1946 if (__le64_to_cpu(nd_label->isetcookie) != altcookie)
1947 return ERR_PTR(-EAGAIN);
1948
1949 dev_dbg(&nd_region->dev, "valid altcookie in label: %pUb\n",
1950 nd_label->uuid);
ae8219f1 1951 }
bf9bccc1 1952
8a5f50d3
DW
1953 nspm = kzalloc(sizeof(*nspm), GFP_KERNEL);
1954 if (!nspm)
1955 return ERR_PTR(-ENOMEM);
ae8219f1 1956
0e3b0d12 1957 nspm->id = -1;
8a5f50d3
DW
1958 dev = &nspm->nsio.common.dev;
1959 dev->type = &namespace_pmem_device_type;
1960 dev->parent = &nd_region->dev;
1961 res = &nspm->nsio.res;
1962 res->name = dev_name(&nd_region->dev);
1963 res->flags = IORESOURCE_MEM;
ae8219f1 1964
86ef58a4
DW
1965 for (i = 0; i < nd_region->ndr_mappings; i++) {
1966 if (has_uuid_at_pos(nd_region, nd_label->uuid, cookie, i))
1967 continue;
1968 if (has_uuid_at_pos(nd_region, nd_label->uuid, altcookie, i))
1969 continue;
1970 break;
1971 }
1972
8a5f50d3 1973 if (i < nd_region->ndr_mappings) {
4f867220 1974 struct nvdimm *nvdimm = nd_region->mapping[i].nvdimm;
0e3b0d12 1975
8a5f50d3
DW
1976 /*
1977 * Give up if we don't find an instance of a uuid at each
1978 * position (from 0 to nd_region->ndr_mappings - 1), or if we
1979 * find a dimm with two instances of the same uuid.
1980 */
0e3b0d12 1981 dev_err(&nd_region->dev, "%s missing label for %pUb\n",
4f867220 1982 nvdimm_name(nvdimm), nd_label->uuid);
8a5f50d3 1983 rc = -EINVAL;
ae8219f1 1984 goto err;
8a5f50d3 1985 }
bf9bccc1
DW
1986
1987 /*
1988 * Fix up each mapping's 'labels' to have the validated pmem label for
1989 * that position at labels[0], and NULL at labels[1]. In the process,
1990 * check that the namespace aligns with interleave-set. We know
1991 * that it does not overlap with any blk namespaces by virtue of
1992 * the dimm being enabled (i.e. nd_label_reserve_dpa()
1993 * succeeded).
1994 */
8a5f50d3 1995 rc = select_pmem_id(nd_region, nd_label->uuid);
bf9bccc1
DW
1996 if (rc)
1997 goto err;
1998
1999 /* Calculate total size and populate namespace properties from label0 */
2000 for (i = 0; i < nd_region->ndr_mappings; i++) {
ae8219f1 2001 struct nd_namespace_label *label0;
b3fde74e 2002 struct nvdimm_drvdata *ndd;
ae8219f1
DW
2003
2004 nd_mapping = &nd_region->mapping[i];
ae8219f1
DW
2005 label_ent = list_first_entry_or_null(&nd_mapping->labels,
2006 typeof(*label_ent), list);
86aa6668 2007 label0 = label_ent ? label_ent->label : NULL;
ae8219f1
DW
2008
2009 if (!label0) {
2010 WARN_ON(1);
2011 continue;
2012 }
bf9bccc1
DW
2013
2014 size += __le64_to_cpu(label0->rawsize);
2015 if (__le16_to_cpu(label0->position) != 0)
2016 continue;
2017 WARN_ON(nspm->alt_name || nspm->uuid);
2018 nspm->alt_name = kmemdup((void __force *) label0->name,
2019 NSLABEL_NAME_LEN, GFP_KERNEL);
2020 nspm->uuid = kmemdup((void __force *) label0->uuid,
2021 NSLABEL_UUID_LEN, GFP_KERNEL);
f979b13c 2022 nspm->lbasize = __le64_to_cpu(label0->lbasize);
b3fde74e
DW
2023 ndd = to_ndd(nd_mapping);
2024 if (namespace_label_has(ndd, abstraction_guid))
2025 nspm->nsio.common.claim_class
2026 = to_nvdimm_cclass(&label0->abstraction_guid);
2027
bf9bccc1
DW
2028 }
2029
2030 if (!nspm->alt_name || !nspm->uuid) {
2031 rc = -ENOMEM;
2032 goto err;
2033 }
2034
0e3b0d12 2035 nd_namespace_pmem_set_resource(nd_region, nspm, size);
bf9bccc1 2036
8a5f50d3 2037 return dev;
bf9bccc1 2038 err:
8a5f50d3 2039 namespace_pmem_release(dev);
bf9bccc1
DW
2040 switch (rc) {
2041 case -EINVAL:
426824d6 2042 dev_dbg(&nd_region->dev, "invalid label(s)\n");
bf9bccc1
DW
2043 break;
2044 case -ENODEV:
426824d6 2045 dev_dbg(&nd_region->dev, "label not found\n");
bf9bccc1
DW
2046 break;
2047 default:
426824d6 2048 dev_dbg(&nd_region->dev, "unexpected err: %d\n", rc);
bf9bccc1
DW
2049 break;
2050 }
8a5f50d3 2051 return ERR_PTR(rc);
bf9bccc1
DW
2052}
2053
1b40e09a
DW
2054struct resource *nsblk_add_resource(struct nd_region *nd_region,
2055 struct nvdimm_drvdata *ndd, struct nd_namespace_blk *nsblk,
2056 resource_size_t start)
2057{
2058 struct nd_label_id label_id;
2059 struct resource *res;
2060
2061 nd_label_gen_id(&label_id, nsblk->uuid, NSLABEL_FLAG_LOCAL);
2062 res = krealloc(nsblk->res,
2063 sizeof(void *) * (nsblk->num_resources + 1),
2064 GFP_KERNEL);
2065 if (!res)
2066 return NULL;
2067 nsblk->res = (struct resource **) res;
2068 for_each_dpa_resource(ndd, res)
2069 if (strcmp(res->name, label_id.id) == 0
2070 && res->start == start) {
2071 nsblk->res[nsblk->num_resources++] = res;
2072 return res;
2073 }
2074 return NULL;
2075}
2076
2077static struct device *nd_namespace_blk_create(struct nd_region *nd_region)
2078{
2079 struct nd_namespace_blk *nsblk;
2080 struct device *dev;
2081
2082 if (!is_nd_blk(&nd_region->dev))
2083 return NULL;
2084
2085 nsblk = kzalloc(sizeof(*nsblk), GFP_KERNEL);
2086 if (!nsblk)
2087 return NULL;
2088
8c2f7e86 2089 dev = &nsblk->common.dev;
1b40e09a
DW
2090 dev->type = &namespace_blk_device_type;
2091 nsblk->id = ida_simple_get(&nd_region->ns_ida, 0, 0, GFP_KERNEL);
2092 if (nsblk->id < 0) {
2093 kfree(nsblk);
2094 return NULL;
2095 }
2096 dev_set_name(dev, "namespace%d.%d", nd_region->id, nsblk->id);
2097 dev->parent = &nd_region->dev;
2098 dev->groups = nd_namespace_attribute_groups;
2099
8c2f7e86 2100 return &nsblk->common.dev;
1b40e09a
DW
2101}
2102
98a29c39
DW
2103static struct device *nd_namespace_pmem_create(struct nd_region *nd_region)
2104{
2105 struct nd_namespace_pmem *nspm;
2106 struct resource *res;
2107 struct device *dev;
2108
c9e582aa 2109 if (!is_memory(&nd_region->dev))
98a29c39
DW
2110 return NULL;
2111
2112 nspm = kzalloc(sizeof(*nspm), GFP_KERNEL);
2113 if (!nspm)
2114 return NULL;
2115
2116 dev = &nspm->nsio.common.dev;
2117 dev->type = &namespace_pmem_device_type;
2118 dev->parent = &nd_region->dev;
2119 res = &nspm->nsio.res;
2120 res->name = dev_name(&nd_region->dev);
2121 res->flags = IORESOURCE_MEM;
2122
2123 nspm->id = ida_simple_get(&nd_region->ns_ida, 0, 0, GFP_KERNEL);
2124 if (nspm->id < 0) {
2125 kfree(nspm);
2126 return NULL;
2127 }
2128 dev_set_name(dev, "namespace%d.%d", nd_region->id, nspm->id);
98a29c39
DW
2129 dev->groups = nd_namespace_attribute_groups;
2130 nd_namespace_pmem_set_resource(nd_region, nspm, 0);
2131
2132 return dev;
2133}
2134
2135void nd_region_create_ns_seed(struct nd_region *nd_region)
1b40e09a
DW
2136{
2137 WARN_ON(!is_nvdimm_bus_locked(&nd_region->dev));
98a29c39
DW
2138
2139 if (nd_region_to_nstype(nd_region) == ND_DEVICE_NAMESPACE_IO)
2140 return;
2141
2142 if (is_nd_blk(&nd_region->dev))
2143 nd_region->ns_seed = nd_namespace_blk_create(nd_region);
2144 else
2145 nd_region->ns_seed = nd_namespace_pmem_create(nd_region);
2146
1b40e09a
DW
2147 /*
2148 * Seed creation failures are not fatal, provisioning is simply
2149 * disabled until memory becomes available
2150 */
2151 if (!nd_region->ns_seed)
98a29c39
DW
2152 dev_err(&nd_region->dev, "failed to create %s namespace\n",
2153 is_nd_blk(&nd_region->dev) ? "blk" : "pmem");
1b40e09a
DW
2154 else
2155 nd_device_register(nd_region->ns_seed);
2156}
2157
cd03412a
DW
2158void nd_region_create_dax_seed(struct nd_region *nd_region)
2159{
2160 WARN_ON(!is_nvdimm_bus_locked(&nd_region->dev));
2161 nd_region->dax_seed = nd_dax_create(nd_region);
2162 /*
2163 * Seed creation failures are not fatal, provisioning is simply
2164 * disabled until memory becomes available
2165 */
2166 if (!nd_region->dax_seed)
2167 dev_err(&nd_region->dev, "failed to create dax namespace\n");
2168}
2169
2dc43331
DW
2170void nd_region_create_pfn_seed(struct nd_region *nd_region)
2171{
2172 WARN_ON(!is_nvdimm_bus_locked(&nd_region->dev));
2173 nd_region->pfn_seed = nd_pfn_create(nd_region);
2174 /*
2175 * Seed creation failures are not fatal, provisioning is simply
2176 * disabled until memory becomes available
2177 */
2178 if (!nd_region->pfn_seed)
2179 dev_err(&nd_region->dev, "failed to create pfn namespace\n");
2180}
2181
8c2f7e86
DW
2182void nd_region_create_btt_seed(struct nd_region *nd_region)
2183{
2184 WARN_ON(!is_nvdimm_bus_locked(&nd_region->dev));
2185 nd_region->btt_seed = nd_btt_create(nd_region);
2186 /*
2187 * Seed creation failures are not fatal, provisioning is simply
2188 * disabled until memory becomes available
2189 */
2190 if (!nd_region->btt_seed)
2191 dev_err(&nd_region->dev, "failed to create btt namespace\n");
2192}
2193
8a5f50d3
DW
2194static int add_namespace_resource(struct nd_region *nd_region,
2195 struct nd_namespace_label *nd_label, struct device **devs,
2196 int count)
1b40e09a 2197{
8a5f50d3
DW
2198 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
2199 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
2200 int i;
2201
2202 for (i = 0; i < count; i++) {
2203 u8 *uuid = namespace_to_uuid(devs[i]);
2204 struct resource *res;
2205
2206 if (IS_ERR_OR_NULL(uuid)) {
2207 WARN_ON(1);
2208 continue;
2209 }
2210
2211 if (memcmp(uuid, nd_label->uuid, NSLABEL_UUID_LEN) != 0)
2212 continue;
2213 if (is_namespace_blk(devs[i])) {
2214 res = nsblk_add_resource(nd_region, ndd,
2215 to_nd_namespace_blk(devs[i]),
2216 __le64_to_cpu(nd_label->dpa));
2217 if (!res)
2218 return -ENXIO;
2219 nd_dbg_dpa(nd_region, ndd, res, "%d assign\n", count);
2220 } else {
2221 dev_err(&nd_region->dev,
2222 "error: conflicting extents for uuid: %pUb\n",
2223 nd_label->uuid);
2224 return -ENXIO;
2225 }
2226 break;
2227 }
2228
2229 return i;
2230}
2231
65853a1d 2232static struct device *create_namespace_blk(struct nd_region *nd_region,
8a5f50d3
DW
2233 struct nd_namespace_label *nd_label, int count)
2234{
2235
2236 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
faec6f8a 2237 struct nd_interleave_set *nd_set = nd_region->nd_set;
ae8219f1 2238 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
1b40e09a 2239 struct nd_namespace_blk *nsblk;
238b323a 2240 char name[NSLABEL_NAME_LEN];
8a5f50d3
DW
2241 struct device *dev = NULL;
2242 struct resource *res;
2243
8f2bc243
DW
2244 if (namespace_label_has(ndd, type_guid)) {
2245 if (!guid_equal(&nd_set->type_guid, &nd_label->type_guid)) {
2246 dev_dbg(ndd->dev, "expect type_guid %pUb got %pUb\n",
db5d00c9
AS
2247 &nd_set->type_guid,
2248 &nd_label->type_guid);
8f2bc243
DW
2249 return ERR_PTR(-EAGAIN);
2250 }
2251
2252 if (nd_label->isetcookie != __cpu_to_le64(nd_set->cookie2)) {
2253 dev_dbg(ndd->dev, "expect cookie %#llx got %#llx\n",
2254 nd_set->cookie2,
2255 __le64_to_cpu(nd_label->isetcookie));
2256 return ERR_PTR(-EAGAIN);
2257 }
faec6f8a
DW
2258 }
2259
8a5f50d3
DW
2260 nsblk = kzalloc(sizeof(*nsblk), GFP_KERNEL);
2261 if (!nsblk)
2262 return ERR_PTR(-ENOMEM);
2263 dev = &nsblk->common.dev;
2264 dev->type = &namespace_blk_device_type;
2265 dev->parent = &nd_region->dev;
2266 nsblk->id = -1;
2267 nsblk->lbasize = __le64_to_cpu(nd_label->lbasize);
2268 nsblk->uuid = kmemdup(nd_label->uuid, NSLABEL_UUID_LEN,
2269 GFP_KERNEL);
b3fde74e
DW
2270 if (namespace_label_has(ndd, abstraction_guid))
2271 nsblk->common.claim_class
2272 = to_nvdimm_cclass(&nd_label->abstraction_guid);
8a5f50d3
DW
2273 if (!nsblk->uuid)
2274 goto blk_err;
2275 memcpy(name, nd_label->name, NSLABEL_NAME_LEN);
55c1fc0a 2276 if (name[0]) {
8a5f50d3
DW
2277 nsblk->alt_name = kmemdup(name, NSLABEL_NAME_LEN,
2278 GFP_KERNEL);
55c1fc0a
KL
2279 if (!nsblk->alt_name)
2280 goto blk_err;
2281 }
8a5f50d3
DW
2282 res = nsblk_add_resource(nd_region, ndd, nsblk,
2283 __le64_to_cpu(nd_label->dpa));
2284 if (!res)
2285 goto blk_err;
2286 nd_dbg_dpa(nd_region, ndd, res, "%d: assign\n", count);
2287 return dev;
2288 blk_err:
2289 namespace_blk_release(dev);
2290 return ERR_PTR(-ENXIO);
2291}
2292
6ff3e912
DW
2293static int cmp_dpa(const void *a, const void *b)
2294{
2295 const struct device *dev_a = *(const struct device **) a;
2296 const struct device *dev_b = *(const struct device **) b;
2297 struct nd_namespace_blk *nsblk_a, *nsblk_b;
2298 struct nd_namespace_pmem *nspm_a, *nspm_b;
2299
2300 if (is_namespace_io(dev_a))
2301 return 0;
2302
2303 if (is_namespace_blk(dev_a)) {
2304 nsblk_a = to_nd_namespace_blk(dev_a);
2305 nsblk_b = to_nd_namespace_blk(dev_b);
2306
2307 return memcmp(&nsblk_a->res[0]->start, &nsblk_b->res[0]->start,
2308 sizeof(resource_size_t));
2309 }
2310
2311 nspm_a = to_nd_namespace_pmem(dev_a);
2312 nspm_b = to_nd_namespace_pmem(dev_b);
2313
2314 return memcmp(&nspm_a->nsio.res.start, &nspm_b->nsio.res.start,
2315 sizeof(resource_size_t));
2316}
2317
8a5f50d3
DW
2318static struct device **scan_labels(struct nd_region *nd_region)
2319{
c969e24c 2320 int i, count = 0;
8a5f50d3
DW
2321 struct device *dev, **devs = NULL;
2322 struct nd_label_ent *label_ent, *e;
c969e24c
DW
2323 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
2324 resource_size_t map_end = nd_mapping->start + nd_mapping->size - 1;
1b40e09a 2325
8a5f50d3
DW
2326 /* "safe" because create_namespace_pmem() might list_move() label_ent */
2327 list_for_each_entry_safe(label_ent, e, &nd_mapping->labels, list) {
ae8219f1 2328 struct nd_namespace_label *nd_label = label_ent->label;
1b40e09a 2329 struct device **__devs;
ae8219f1 2330 u32 flags;
1b40e09a 2331
ae8219f1
DW
2332 if (!nd_label)
2333 continue;
2334 flags = __le32_to_cpu(nd_label->flags);
8a5f50d3
DW
2335 if (is_nd_blk(&nd_region->dev)
2336 == !!(flags & NSLABEL_FLAG_LOCAL))
2337 /* pass, region matches label type */;
1b40e09a
DW
2338 else
2339 continue;
2340
c969e24c 2341 /* skip labels that describe extents outside of the region */
86aa6668
AK
2342 if (__le64_to_cpu(nd_label->dpa) < nd_mapping->start ||
2343 __le64_to_cpu(nd_label->dpa) > map_end)
2344 continue;
c969e24c 2345
8a5f50d3
DW
2346 i = add_namespace_resource(nd_region, nd_label, devs, count);
2347 if (i < 0)
2348 goto err;
1b40e09a
DW
2349 if (i < count)
2350 continue;
2351 __devs = kcalloc(count + 2, sizeof(dev), GFP_KERNEL);
2352 if (!__devs)
2353 goto err;
2354 memcpy(__devs, devs, sizeof(dev) * count);
2355 kfree(devs);
2356 devs = __devs;
2357
faec6f8a 2358 if (is_nd_blk(&nd_region->dev))
8a5f50d3 2359 dev = create_namespace_blk(nd_region, nd_label, count);
faec6f8a 2360 else {
c12c48ce
DW
2361 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
2362 struct nd_namespace_index *nsindex;
2363
2364 nsindex = to_namespace_index(ndd, ndd->ns_current);
2365 dev = create_namespace_pmem(nd_region, nsindex, nd_label);
8a5f50d3 2366 }
faec6f8a
DW
2367
2368 if (IS_ERR(dev)) {
2369 switch (PTR_ERR(dev)) {
2370 case -EAGAIN:
2371 /* skip invalid labels */
2372 continue;
2373 case -ENODEV:
2374 /* fallthrough to seed creation */
2375 break;
2376 default:
2377 goto err;
2378 }
2379 } else
2380 devs[count++] = dev;
2381
1b40e09a
DW
2382 }
2383
426824d6
DW
2384 dev_dbg(&nd_region->dev, "discovered %d %s namespace%s\n",
2385 count, is_nd_blk(&nd_region->dev)
8a5f50d3 2386 ? "blk" : "pmem", count == 1 ? "" : "s");
1b40e09a
DW
2387
2388 if (count == 0) {
2389 /* Publish a zero-sized namespace for userspace to configure. */
ae8219f1 2390 nd_mapping_free_labels(nd_mapping);
1b40e09a
DW
2391
2392 devs = kcalloc(2, sizeof(dev), GFP_KERNEL);
2393 if (!devs)
2394 goto err;
8a5f50d3
DW
2395 if (is_nd_blk(&nd_region->dev)) {
2396 struct nd_namespace_blk *nsblk;
2397
2398 nsblk = kzalloc(sizeof(*nsblk), GFP_KERNEL);
2399 if (!nsblk)
2400 goto err;
2401 dev = &nsblk->common.dev;
2402 dev->type = &namespace_blk_device_type;
2403 } else {
2404 struct nd_namespace_pmem *nspm;
2405
2406 nspm = kzalloc(sizeof(*nspm), GFP_KERNEL);
2407 if (!nspm)
2408 goto err;
2409 dev = &nspm->nsio.common.dev;
2410 dev->type = &namespace_pmem_device_type;
0e3b0d12 2411 nd_namespace_pmem_set_resource(nd_region, nspm, 0);
8a5f50d3 2412 }
1b40e09a
DW
2413 dev->parent = &nd_region->dev;
2414 devs[count++] = dev;
c9e582aa 2415 } else if (is_memory(&nd_region->dev)) {
8a5f50d3
DW
2416 /* clean unselected labels */
2417 for (i = 0; i < nd_region->ndr_mappings; i++) {
0e3b0d12
DW
2418 struct list_head *l, *e;
2419 LIST_HEAD(list);
2420 int j;
2421
8a5f50d3
DW
2422 nd_mapping = &nd_region->mapping[i];
2423 if (list_empty(&nd_mapping->labels)) {
2424 WARN_ON(1);
2425 continue;
2426 }
0e3b0d12
DW
2427
2428 j = count;
2429 list_for_each_safe(l, e, &nd_mapping->labels) {
2430 if (!j--)
2431 break;
2432 list_move_tail(l, &list);
2433 }
8a5f50d3 2434 nd_mapping_free_labels(nd_mapping);
0e3b0d12 2435 list_splice_init(&list, &nd_mapping->labels);
8a5f50d3 2436 }
1b40e09a
DW
2437 }
2438
6ff3e912
DW
2439 if (count > 1)
2440 sort(devs, count, sizeof(struct device *), cmp_dpa, NULL);
2441
1b40e09a
DW
2442 return devs;
2443
ae8219f1 2444 err:
75d29713
DC
2445 if (devs) {
2446 for (i = 0; devs[i]; i++)
2447 if (is_nd_blk(&nd_region->dev))
2448 namespace_blk_release(devs[i]);
2449 else
2450 namespace_pmem_release(devs[i]);
2451 kfree(devs);
2452 }
1b40e09a
DW
2453 return NULL;
2454}
2455
8a5f50d3 2456static struct device **create_namespaces(struct nd_region *nd_region)
ae8219f1 2457{
59858d3d 2458 struct nd_mapping *nd_mapping;
ae8219f1 2459 struct device **devs;
8a5f50d3 2460 int i;
ae8219f1
DW
2461
2462 if (nd_region->ndr_mappings == 0)
2463 return NULL;
2464
8a5f50d3
DW
2465 /* lock down all mappings while we scan labels */
2466 for (i = 0; i < nd_region->ndr_mappings; i++) {
2467 nd_mapping = &nd_region->mapping[i];
2468 mutex_lock_nested(&nd_mapping->lock, i);
2469 }
2470
2471 devs = scan_labels(nd_region);
2472
2473 for (i = 0; i < nd_region->ndr_mappings; i++) {
2474 int reverse = nd_region->ndr_mappings - 1 - i;
2475
2476 nd_mapping = &nd_region->mapping[reverse];
2477 mutex_unlock(&nd_mapping->lock);
2478 }
ae8219f1
DW
2479
2480 return devs;
2481}
2482
a2d1c7a6
DW
2483static void deactivate_labels(void *region)
2484{
2485 struct nd_region *nd_region = region;
2486 int i;
2487
2488 for (i = 0; i < nd_region->ndr_mappings; i++) {
2489 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
2490 struct nvdimm_drvdata *ndd = nd_mapping->ndd;
2491 struct nvdimm *nvdimm = nd_mapping->nvdimm;
2492
2493 mutex_lock(&nd_mapping->lock);
2494 nd_mapping_free_labels(nd_mapping);
2495 mutex_unlock(&nd_mapping->lock);
2496
2497 put_ndd(ndd);
2498 nd_mapping->ndd = NULL;
2499 if (ndd)
2500 atomic_dec(&nvdimm->busy);
2501 }
2502}
2503
bf9bccc1
DW
2504static int init_active_labels(struct nd_region *nd_region)
2505{
2506 int i;
2507
2508 for (i = 0; i < nd_region->ndr_mappings; i++) {
2509 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
2510 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
2511 struct nvdimm *nvdimm = nd_mapping->nvdimm;
ae8219f1 2512 struct nd_label_ent *label_ent;
bf9bccc1
DW
2513 int count, j;
2514
2515 /*
9d62ed96
DW
2516 * If the dimm is disabled then we may need to prevent
2517 * the region from being activated.
bf9bccc1
DW
2518 */
2519 if (!ndd) {
9d62ed96
DW
2520 if (test_bit(NDD_LOCKED, &nvdimm->flags))
2521 /* fail, label data may be unreadable */;
2522 else if (test_bit(NDD_ALIASING, &nvdimm->flags))
2523 /* fail, labels needed to disambiguate dpa */;
2524 else
bf9bccc1 2525 return 0;
9d62ed96
DW
2526
2527 dev_err(&nd_region->dev, "%s: is %s, failing probe\n",
2528 dev_name(&nd_mapping->nvdimm->dev),
2529 test_bit(NDD_LOCKED, &nvdimm->flags)
2530 ? "locked" : "disabled");
bf9bccc1
DW
2531 return -ENXIO;
2532 }
2533 nd_mapping->ndd = ndd;
2534 atomic_inc(&nvdimm->busy);
2535 get_ndd(ndd);
2536
2537 count = nd_label_active_count(ndd);
426824d6 2538 dev_dbg(ndd->dev, "count: %d\n", count);
bf9bccc1
DW
2539 if (!count)
2540 continue;
bf9bccc1
DW
2541 for (j = 0; j < count; j++) {
2542 struct nd_namespace_label *label;
2543
ae8219f1
DW
2544 label_ent = kzalloc(sizeof(*label_ent), GFP_KERNEL);
2545 if (!label_ent)
2546 break;
bf9bccc1 2547 label = nd_label_active(ndd, j);
d5d30d5a
DW
2548 if (test_bit(NDD_NOBLK, &nvdimm->flags)) {
2549 u32 flags = __le32_to_cpu(label->flags);
2550
2551 flags &= ~NSLABEL_FLAG_LOCAL;
2552 label->flags = __cpu_to_le32(flags);
2553 }
ae8219f1
DW
2554 label_ent->label = label;
2555
2556 mutex_lock(&nd_mapping->lock);
2557 list_add_tail(&label_ent->list, &nd_mapping->labels);
2558 mutex_unlock(&nd_mapping->lock);
bf9bccc1 2559 }
ae8219f1 2560
a2d1c7a6
DW
2561 if (j < count)
2562 break;
2563 }
ae8219f1 2564
a2d1c7a6
DW
2565 if (i < nd_region->ndr_mappings) {
2566 deactivate_labels(nd_region);
ae8219f1 2567 return -ENOMEM;
bf9bccc1
DW
2568 }
2569
a2d1c7a6
DW
2570 return devm_add_action_or_reset(&nd_region->dev, deactivate_labels,
2571 nd_region);
bf9bccc1
DW
2572}
2573
3d88002e
DW
2574int nd_region_register_namespaces(struct nd_region *nd_region, int *err)
2575{
2576 struct device **devs = NULL;
bf9bccc1 2577 int i, rc = 0, type;
3d88002e
DW
2578
2579 *err = 0;
bf9bccc1
DW
2580 nvdimm_bus_lock(&nd_region->dev);
2581 rc = init_active_labels(nd_region);
2582 if (rc) {
2583 nvdimm_bus_unlock(&nd_region->dev);
2584 return rc;
2585 }
2586
2587 type = nd_region_to_nstype(nd_region);
2588 switch (type) {
3d88002e
DW
2589 case ND_DEVICE_NAMESPACE_IO:
2590 devs = create_namespace_io(nd_region);
2591 break;
bf9bccc1 2592 case ND_DEVICE_NAMESPACE_PMEM:
1b40e09a 2593 case ND_DEVICE_NAMESPACE_BLK:
8a5f50d3 2594 devs = create_namespaces(nd_region);
1b40e09a 2595 break;
3d88002e
DW
2596 default:
2597 break;
2598 }
bf9bccc1 2599 nvdimm_bus_unlock(&nd_region->dev);
3d88002e
DW
2600
2601 if (!devs)
2602 return -ENODEV;
2603
2604 for (i = 0; devs[i]; i++) {
2605 struct device *dev = devs[i];
1b40e09a 2606 int id;
3d88002e 2607
1b40e09a
DW
2608 if (type == ND_DEVICE_NAMESPACE_BLK) {
2609 struct nd_namespace_blk *nsblk;
2610
2611 nsblk = to_nd_namespace_blk(dev);
2612 id = ida_simple_get(&nd_region->ns_ida, 0, 0,
2613 GFP_KERNEL);
2614 nsblk->id = id;
0e3b0d12
DW
2615 } else if (type == ND_DEVICE_NAMESPACE_PMEM) {
2616 struct nd_namespace_pmem *nspm;
2617
2618 nspm = to_nd_namespace_pmem(dev);
2619 id = ida_simple_get(&nd_region->ns_ida, 0, 0,
2620 GFP_KERNEL);
2621 nspm->id = id;
1b40e09a
DW
2622 } else
2623 id = i;
2624
2625 if (id < 0)
2626 break;
2627 dev_set_name(dev, "namespace%d.%d", nd_region->id, id);
3d88002e
DW
2628 dev->groups = nd_namespace_attribute_groups;
2629 nd_device_register(dev);
2630 }
1b40e09a
DW
2631 if (i)
2632 nd_region->ns_seed = devs[0];
2633
2634 if (devs[i]) {
2635 int j;
2636
2637 for (j = i; devs[j]; j++) {
2638 struct device *dev = devs[j];
2639
2640 device_initialize(dev);
2641 put_device(dev);
2642 }
2643 *err = j - i;
2644 /*
2645 * All of the namespaces we tried to register failed, so
2646 * fail region activation.
2647 */
2648 if (*err == 0)
2649 rc = -ENODEV;
2650 }
3d88002e
DW
2651 kfree(devs);
2652
1b40e09a
DW
2653 if (rc == -ENODEV)
2654 return rc;
2655
3d88002e
DW
2656 return i;
2657}