blob: 4f74e009b135cbd537b819b55674b53381348d58 [file] [log] [blame]
Dan Williams1f7df6f2015-06-09 20:13:14 -04001/*
2 * Copyright(c) 2013-2015 Intel Corporation. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of version 2 of the GNU General Public License as
6 * published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful, but
9 * WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * General Public License for more details.
12 */
Dan Williamseaf96152015-05-01 13:11:27 -040013#include <linux/scatterlist.h>
Ross Zwisler047fc8a2015-06-25 04:21:02 -040014#include <linux/highmem.h>
Dan Williamseaf96152015-05-01 13:11:27 -040015#include <linux/sched.h>
Dan Williams1f7df6f2015-06-09 20:13:14 -040016#include <linux/slab.h>
Dan Williams0c27af62016-05-27 09:23:01 -070017#include <linux/hash.h>
Dan Williamsf284a4f2016-07-07 19:44:50 -070018#include <linux/pmem.h>
Dan Williamseaf96152015-05-01 13:11:27 -040019#include <linux/sort.h>
Dan Williams1f7df6f2015-06-09 20:13:14 -040020#include <linux/io.h>
Dan Williamsbf9bccc2015-06-17 17:14:46 -040021#include <linux/nd.h>
Dan Williams1f7df6f2015-06-09 20:13:14 -040022#include "nd-core.h"
23#include "nd.h"
24
Dan Williamsf284a4f2016-07-07 19:44:50 -070025/*
26 * For readq() and writeq() on 32-bit builds, the hi-lo, lo-hi order is
27 * irrelevant.
28 */
29#include <linux/io-64-nonatomic-hi-lo.h>
30
Dan Williams1f7df6f2015-06-09 20:13:14 -040031static DEFINE_IDA(region_ida);
Dan Williams0c27af62016-05-27 09:23:01 -070032static DEFINE_PER_CPU(int, flush_idx);
Dan Williams1f7df6f2015-06-09 20:13:14 -040033
Dan Williamse5ae3b22016-06-07 17:00:04 -070034static int nvdimm_map_flush(struct device *dev, struct nvdimm *nvdimm, int dimm,
35 struct nd_region_data *ndrd)
36{
37 int i, j;
38
39 dev_dbg(dev, "%s: map %d flush address%s\n", nvdimm_name(nvdimm),
40 nvdimm->num_flush, nvdimm->num_flush == 1 ? "" : "es");
41 for (i = 0; i < nvdimm->num_flush; i++) {
42 struct resource *res = &nvdimm->flush_wpq[i];
43 unsigned long pfn = PHYS_PFN(res->start);
44 void __iomem *flush_page;
45
46 /* check if flush hints share a page */
47 for (j = 0; j < i; j++) {
48 struct resource *res_j = &nvdimm->flush_wpq[j];
49 unsigned long pfn_j = PHYS_PFN(res_j->start);
50
51 if (pfn == pfn_j)
52 break;
53 }
54
55 if (j < i)
56 flush_page = (void __iomem *) ((unsigned long)
57 ndrd->flush_wpq[dimm][j] & PAGE_MASK);
58 else
59 flush_page = devm_nvdimm_ioremap(dev,
60 PHYS_PFN(pfn), PAGE_SIZE);
61 if (!flush_page)
62 return -ENXIO;
63 ndrd->flush_wpq[dimm][i] = flush_page
64 + (res->start & ~PAGE_MASK);
65 }
66
67 return 0;
68}
69
70int nd_region_activate(struct nd_region *nd_region)
71{
Dan Williams0c27af62016-05-27 09:23:01 -070072 int i, num_flush = 0;
Dan Williamse5ae3b22016-06-07 17:00:04 -070073 struct nd_region_data *ndrd;
74 struct device *dev = &nd_region->dev;
75 size_t flush_data_size = sizeof(void *);
76
77 nvdimm_bus_lock(&nd_region->dev);
78 for (i = 0; i < nd_region->ndr_mappings; i++) {
79 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
80 struct nvdimm *nvdimm = nd_mapping->nvdimm;
81
82 /* at least one null hint slot per-dimm for the "no-hint" case */
83 flush_data_size += sizeof(void *);
Dan Williams0c27af62016-05-27 09:23:01 -070084 num_flush = min_not_zero(num_flush, nvdimm->num_flush);
Dan Williamse5ae3b22016-06-07 17:00:04 -070085 if (!nvdimm->num_flush)
86 continue;
87 flush_data_size += nvdimm->num_flush * sizeof(void *);
88 }
89 nvdimm_bus_unlock(&nd_region->dev);
90
91 ndrd = devm_kzalloc(dev, sizeof(*ndrd) + flush_data_size, GFP_KERNEL);
92 if (!ndrd)
93 return -ENOMEM;
94 dev_set_drvdata(dev, ndrd);
95
Dan Williams0c27af62016-05-27 09:23:01 -070096 ndrd->flush_mask = (1 << ilog2(num_flush)) - 1;
Dan Williamse5ae3b22016-06-07 17:00:04 -070097 for (i = 0; i < nd_region->ndr_mappings; i++) {
98 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
99 struct nvdimm *nvdimm = nd_mapping->nvdimm;
100 int rc = nvdimm_map_flush(&nd_region->dev, nvdimm, i, ndrd);
101
102 if (rc)
103 return rc;
104 }
105
106 return 0;
107}
108
Dan Williams1f7df6f2015-06-09 20:13:14 -0400109static void nd_region_release(struct device *dev)
110{
111 struct nd_region *nd_region = to_nd_region(dev);
112 u16 i;
113
114 for (i = 0; i < nd_region->ndr_mappings; i++) {
115 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
116 struct nvdimm *nvdimm = nd_mapping->nvdimm;
117
118 put_device(&nvdimm->dev);
119 }
Vishal Verma5212e112015-06-25 04:20:32 -0400120 free_percpu(nd_region->lane);
Dan Williams1f7df6f2015-06-09 20:13:14 -0400121 ida_simple_remove(&region_ida, nd_region->id);
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400122 if (is_nd_blk(dev))
123 kfree(to_nd_blk_region(dev));
124 else
125 kfree(nd_region);
Dan Williams1f7df6f2015-06-09 20:13:14 -0400126}
127
128static struct device_type nd_blk_device_type = {
129 .name = "nd_blk",
130 .release = nd_region_release,
131};
132
133static struct device_type nd_pmem_device_type = {
134 .name = "nd_pmem",
135 .release = nd_region_release,
136};
137
138static struct device_type nd_volatile_device_type = {
139 .name = "nd_volatile",
140 .release = nd_region_release,
141};
142
Dan Williams3d880022015-05-31 15:02:11 -0400143bool is_nd_pmem(struct device *dev)
Dan Williams1f7df6f2015-06-09 20:13:14 -0400144{
145 return dev ? dev->type == &nd_pmem_device_type : false;
146}
147
Dan Williams3d880022015-05-31 15:02:11 -0400148bool is_nd_blk(struct device *dev)
149{
150 return dev ? dev->type == &nd_blk_device_type : false;
151}
152
Dan Williams1f7df6f2015-06-09 20:13:14 -0400153struct nd_region *to_nd_region(struct device *dev)
154{
155 struct nd_region *nd_region = container_of(dev, struct nd_region, dev);
156
157 WARN_ON(dev->type->release != nd_region_release);
158 return nd_region;
159}
160EXPORT_SYMBOL_GPL(to_nd_region);
161
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400162struct nd_blk_region *to_nd_blk_region(struct device *dev)
163{
164 struct nd_region *nd_region = to_nd_region(dev);
165
166 WARN_ON(!is_nd_blk(dev));
167 return container_of(nd_region, struct nd_blk_region, nd_region);
168}
169EXPORT_SYMBOL_GPL(to_nd_blk_region);
170
171void *nd_region_provider_data(struct nd_region *nd_region)
172{
173 return nd_region->provider_data;
174}
175EXPORT_SYMBOL_GPL(nd_region_provider_data);
176
177void *nd_blk_region_provider_data(struct nd_blk_region *ndbr)
178{
179 return ndbr->blk_provider_data;
180}
181EXPORT_SYMBOL_GPL(nd_blk_region_provider_data);
182
183void nd_blk_region_set_provider_data(struct nd_blk_region *ndbr, void *data)
184{
185 ndbr->blk_provider_data = data;
186}
187EXPORT_SYMBOL_GPL(nd_blk_region_set_provider_data);
188
Dan Williams3d880022015-05-31 15:02:11 -0400189/**
190 * nd_region_to_nstype() - region to an integer namespace type
191 * @nd_region: region-device to interrogate
192 *
193 * This is the 'nstype' attribute of a region as well, an input to the
194 * MODALIAS for namespace devices, and bit number for a nvdimm_bus to match
195 * namespace devices with namespace drivers.
196 */
197int nd_region_to_nstype(struct nd_region *nd_region)
198{
199 if (is_nd_pmem(&nd_region->dev)) {
200 u16 i, alias;
201
202 for (i = 0, alias = 0; i < nd_region->ndr_mappings; i++) {
203 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
204 struct nvdimm *nvdimm = nd_mapping->nvdimm;
205
206 if (nvdimm->flags & NDD_ALIASING)
207 alias++;
208 }
209 if (alias)
210 return ND_DEVICE_NAMESPACE_PMEM;
211 else
212 return ND_DEVICE_NAMESPACE_IO;
213 } else if (is_nd_blk(&nd_region->dev)) {
214 return ND_DEVICE_NAMESPACE_BLK;
215 }
216
217 return 0;
218}
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400219EXPORT_SYMBOL(nd_region_to_nstype);
220
Dan Williams1f7df6f2015-06-09 20:13:14 -0400221static ssize_t size_show(struct device *dev,
222 struct device_attribute *attr, char *buf)
223{
224 struct nd_region *nd_region = to_nd_region(dev);
225 unsigned long long size = 0;
226
227 if (is_nd_pmem(dev)) {
228 size = nd_region->ndr_size;
229 } else if (nd_region->ndr_mappings == 1) {
230 struct nd_mapping *nd_mapping = &nd_region->mapping[0];
231
232 size = nd_mapping->size;
233 }
234
235 return sprintf(buf, "%llu\n", size);
236}
237static DEVICE_ATTR_RO(size);
238
239static ssize_t mappings_show(struct device *dev,
240 struct device_attribute *attr, char *buf)
241{
242 struct nd_region *nd_region = to_nd_region(dev);
243
244 return sprintf(buf, "%d\n", nd_region->ndr_mappings);
245}
246static DEVICE_ATTR_RO(mappings);
247
Dan Williams3d880022015-05-31 15:02:11 -0400248static ssize_t nstype_show(struct device *dev,
249 struct device_attribute *attr, char *buf)
250{
251 struct nd_region *nd_region = to_nd_region(dev);
252
253 return sprintf(buf, "%d\n", nd_region_to_nstype(nd_region));
254}
255static DEVICE_ATTR_RO(nstype);
256
Dan Williamseaf96152015-05-01 13:11:27 -0400257static ssize_t set_cookie_show(struct device *dev,
258 struct device_attribute *attr, char *buf)
259{
260 struct nd_region *nd_region = to_nd_region(dev);
261 struct nd_interleave_set *nd_set = nd_region->nd_set;
262
263 if (is_nd_pmem(dev) && nd_set)
264 /* pass, should be precluded by region_visible */;
265 else
266 return -ENXIO;
267
268 return sprintf(buf, "%#llx\n", nd_set->cookie);
269}
270static DEVICE_ATTR_RO(set_cookie);
271
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400272resource_size_t nd_region_available_dpa(struct nd_region *nd_region)
273{
274 resource_size_t blk_max_overlap = 0, available, overlap;
275 int i;
276
277 WARN_ON(!is_nvdimm_bus_locked(&nd_region->dev));
278
279 retry:
280 available = 0;
281 overlap = blk_max_overlap;
282 for (i = 0; i < nd_region->ndr_mappings; i++) {
283 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
284 struct nvdimm_drvdata *ndd = to_ndd(nd_mapping);
285
286 /* if a dimm is disabled the available capacity is zero */
287 if (!ndd)
288 return 0;
289
290 if (is_nd_pmem(&nd_region->dev)) {
291 available += nd_pmem_available_dpa(nd_region,
292 nd_mapping, &overlap);
293 if (overlap > blk_max_overlap) {
294 blk_max_overlap = overlap;
295 goto retry;
296 }
Dan Williamsa1f3e4d2016-09-30 17:28:58 -0700297 } else if (is_nd_blk(&nd_region->dev))
298 available += nd_blk_available_dpa(nd_region);
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400299 }
300
301 return available;
302}
303
304static ssize_t available_size_show(struct device *dev,
305 struct device_attribute *attr, char *buf)
306{
307 struct nd_region *nd_region = to_nd_region(dev);
308 unsigned long long available = 0;
309
310 /*
311 * Flush in-flight updates and grab a snapshot of the available
312 * size. Of course, this value is potentially invalidated the
313 * memory nvdimm_bus_lock() is dropped, but that's userspace's
314 * problem to not race itself.
315 */
316 nvdimm_bus_lock(dev);
317 wait_nvdimm_bus_probe_idle(dev);
318 available = nd_region_available_dpa(nd_region);
319 nvdimm_bus_unlock(dev);
320
321 return sprintf(buf, "%llu\n", available);
322}
323static DEVICE_ATTR_RO(available_size);
324
Dan Williams3d880022015-05-31 15:02:11 -0400325static ssize_t init_namespaces_show(struct device *dev,
326 struct device_attribute *attr, char *buf)
327{
Dan Williamse5ae3b22016-06-07 17:00:04 -0700328 struct nd_region_data *ndrd = dev_get_drvdata(dev);
Dan Williams3d880022015-05-31 15:02:11 -0400329 ssize_t rc;
330
331 nvdimm_bus_lock(dev);
Dan Williamse5ae3b22016-06-07 17:00:04 -0700332 if (ndrd)
333 rc = sprintf(buf, "%d/%d\n", ndrd->ns_active, ndrd->ns_count);
Dan Williams3d880022015-05-31 15:02:11 -0400334 else
335 rc = -ENXIO;
336 nvdimm_bus_unlock(dev);
337
338 return rc;
339}
340static DEVICE_ATTR_RO(init_namespaces);
341
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400342static ssize_t namespace_seed_show(struct device *dev,
343 struct device_attribute *attr, char *buf)
344{
345 struct nd_region *nd_region = to_nd_region(dev);
346 ssize_t rc;
347
348 nvdimm_bus_lock(dev);
349 if (nd_region->ns_seed)
350 rc = sprintf(buf, "%s\n", dev_name(nd_region->ns_seed));
351 else
352 rc = sprintf(buf, "\n");
353 nvdimm_bus_unlock(dev);
354 return rc;
355}
356static DEVICE_ATTR_RO(namespace_seed);
357
Dan Williams8c2f7e82015-06-25 04:20:04 -0400358static ssize_t btt_seed_show(struct device *dev,
359 struct device_attribute *attr, char *buf)
360{
361 struct nd_region *nd_region = to_nd_region(dev);
362 ssize_t rc;
363
364 nvdimm_bus_lock(dev);
365 if (nd_region->btt_seed)
366 rc = sprintf(buf, "%s\n", dev_name(nd_region->btt_seed));
367 else
368 rc = sprintf(buf, "\n");
369 nvdimm_bus_unlock(dev);
370
371 return rc;
372}
373static DEVICE_ATTR_RO(btt_seed);
374
Dan Williamse1455742015-07-30 17:57:47 -0400375static ssize_t pfn_seed_show(struct device *dev,
376 struct device_attribute *attr, char *buf)
377{
378 struct nd_region *nd_region = to_nd_region(dev);
379 ssize_t rc;
380
381 nvdimm_bus_lock(dev);
382 if (nd_region->pfn_seed)
383 rc = sprintf(buf, "%s\n", dev_name(nd_region->pfn_seed));
384 else
385 rc = sprintf(buf, "\n");
386 nvdimm_bus_unlock(dev);
387
388 return rc;
389}
390static DEVICE_ATTR_RO(pfn_seed);
391
Dan Williamscd034122016-03-11 10:15:36 -0800392static ssize_t dax_seed_show(struct device *dev,
393 struct device_attribute *attr, char *buf)
394{
395 struct nd_region *nd_region = to_nd_region(dev);
396 ssize_t rc;
397
398 nvdimm_bus_lock(dev);
399 if (nd_region->dax_seed)
400 rc = sprintf(buf, "%s\n", dev_name(nd_region->dax_seed));
401 else
402 rc = sprintf(buf, "\n");
403 nvdimm_bus_unlock(dev);
404
405 return rc;
406}
407static DEVICE_ATTR_RO(dax_seed);
408
Dan Williams58138822015-06-23 20:08:34 -0400409static ssize_t read_only_show(struct device *dev,
410 struct device_attribute *attr, char *buf)
411{
412 struct nd_region *nd_region = to_nd_region(dev);
413
414 return sprintf(buf, "%d\n", nd_region->ro);
415}
416
417static ssize_t read_only_store(struct device *dev,
418 struct device_attribute *attr, const char *buf, size_t len)
419{
420 bool ro;
421 int rc = strtobool(buf, &ro);
422 struct nd_region *nd_region = to_nd_region(dev);
423
424 if (rc)
425 return rc;
426
427 nd_region->ro = ro;
428 return len;
429}
430static DEVICE_ATTR_RW(read_only);
431
Dan Williams1f7df6f2015-06-09 20:13:14 -0400432static struct attribute *nd_region_attributes[] = {
433 &dev_attr_size.attr,
Dan Williams3d880022015-05-31 15:02:11 -0400434 &dev_attr_nstype.attr,
Dan Williams1f7df6f2015-06-09 20:13:14 -0400435 &dev_attr_mappings.attr,
Dan Williams8c2f7e82015-06-25 04:20:04 -0400436 &dev_attr_btt_seed.attr,
Dan Williamse1455742015-07-30 17:57:47 -0400437 &dev_attr_pfn_seed.attr,
Dan Williamscd034122016-03-11 10:15:36 -0800438 &dev_attr_dax_seed.attr,
Dan Williams58138822015-06-23 20:08:34 -0400439 &dev_attr_read_only.attr,
Dan Williamseaf96152015-05-01 13:11:27 -0400440 &dev_attr_set_cookie.attr,
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400441 &dev_attr_available_size.attr,
442 &dev_attr_namespace_seed.attr,
Dan Williams3d880022015-05-31 15:02:11 -0400443 &dev_attr_init_namespaces.attr,
Dan Williams1f7df6f2015-06-09 20:13:14 -0400444 NULL,
445};
446
Dan Williamseaf96152015-05-01 13:11:27 -0400447static umode_t region_visible(struct kobject *kobj, struct attribute *a, int n)
448{
449 struct device *dev = container_of(kobj, typeof(*dev), kobj);
450 struct nd_region *nd_region = to_nd_region(dev);
451 struct nd_interleave_set *nd_set = nd_region->nd_set;
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400452 int type = nd_region_to_nstype(nd_region);
Dan Williamseaf96152015-05-01 13:11:27 -0400453
Dmitry Krivenok6bb691a2015-12-02 09:39:29 +0300454 if (!is_nd_pmem(dev) && a == &dev_attr_pfn_seed.attr)
455 return 0;
456
Dan Williamscd034122016-03-11 10:15:36 -0800457 if (!is_nd_pmem(dev) && a == &dev_attr_dax_seed.attr)
458 return 0;
459
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400460 if (a != &dev_attr_set_cookie.attr
461 && a != &dev_attr_available_size.attr)
Dan Williamseaf96152015-05-01 13:11:27 -0400462 return a->mode;
463
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400464 if ((type == ND_DEVICE_NAMESPACE_PMEM
465 || type == ND_DEVICE_NAMESPACE_BLK)
466 && a == &dev_attr_available_size.attr)
467 return a->mode;
468 else if (is_nd_pmem(dev) && nd_set)
469 return a->mode;
Dan Williamseaf96152015-05-01 13:11:27 -0400470
471 return 0;
472}
473
Dan Williams1f7df6f2015-06-09 20:13:14 -0400474struct attribute_group nd_region_attribute_group = {
475 .attrs = nd_region_attributes,
Dan Williamseaf96152015-05-01 13:11:27 -0400476 .is_visible = region_visible,
Dan Williams1f7df6f2015-06-09 20:13:14 -0400477};
478EXPORT_SYMBOL_GPL(nd_region_attribute_group);
479
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400480u64 nd_region_interleave_set_cookie(struct nd_region *nd_region)
481{
482 struct nd_interleave_set *nd_set = nd_region->nd_set;
483
484 if (nd_set)
485 return nd_set->cookie;
486 return 0;
487}
488
Dan Williamsae8219f2016-09-19 16:04:21 -0700489void nd_mapping_free_labels(struct nd_mapping *nd_mapping)
490{
491 struct nd_label_ent *label_ent, *e;
492
493 WARN_ON(!mutex_is_locked(&nd_mapping->lock));
494 list_for_each_entry_safe(label_ent, e, &nd_mapping->labels, list) {
495 list_del(&label_ent->list);
496 kfree(label_ent);
497 }
498}
499
Dan Williamseaf96152015-05-01 13:11:27 -0400500/*
501 * Upon successful probe/remove, take/release a reference on the
Dan Williams8c2f7e82015-06-25 04:20:04 -0400502 * associated interleave set (if present), and plant new btt + namespace
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400503 * seeds. Also, on the removal of a BLK region, notify the provider to
504 * disable the region.
Dan Williamseaf96152015-05-01 13:11:27 -0400505 */
506static void nd_region_notify_driver_action(struct nvdimm_bus *nvdimm_bus,
507 struct device *dev, bool probe)
508{
Dan Williams8c2f7e82015-06-25 04:20:04 -0400509 struct nd_region *nd_region;
510
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400511 if (!probe && (is_nd_pmem(dev) || is_nd_blk(dev))) {
Dan Williamseaf96152015-05-01 13:11:27 -0400512 int i;
513
Dan Williams8c2f7e82015-06-25 04:20:04 -0400514 nd_region = to_nd_region(dev);
Dan Williamseaf96152015-05-01 13:11:27 -0400515 for (i = 0; i < nd_region->ndr_mappings; i++) {
516 struct nd_mapping *nd_mapping = &nd_region->mapping[i];
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400517 struct nvdimm_drvdata *ndd = nd_mapping->ndd;
Dan Williamseaf96152015-05-01 13:11:27 -0400518 struct nvdimm *nvdimm = nd_mapping->nvdimm;
519
Dan Williamsae8219f2016-09-19 16:04:21 -0700520 mutex_lock(&nd_mapping->lock);
521 nd_mapping_free_labels(nd_mapping);
522 mutex_unlock(&nd_mapping->lock);
523
Dan Williamsbf9bccc2015-06-17 17:14:46 -0400524 put_ndd(ndd);
525 nd_mapping->ndd = NULL;
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400526 if (ndd)
527 atomic_dec(&nvdimm->busy);
Dan Williamseaf96152015-05-01 13:11:27 -0400528 }
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400529
530 if (is_nd_pmem(dev))
531 return;
Dan Williams8c2f7e82015-06-25 04:20:04 -0400532 }
Dan Williams98a29c32016-09-30 15:28:27 -0700533 if (dev->parent && (is_nd_blk(dev->parent) || is_nd_pmem(dev->parent))
534 && probe) {
Dan Williams8c2f7e82015-06-25 04:20:04 -0400535 nd_region = to_nd_region(dev->parent);
Dan Williams1b40e092015-05-01 13:34:01 -0400536 nvdimm_bus_lock(dev);
537 if (nd_region->ns_seed == dev)
Dan Williams98a29c32016-09-30 15:28:27 -0700538 nd_region_create_ns_seed(nd_region);
Dan Williams1b40e092015-05-01 13:34:01 -0400539 nvdimm_bus_unlock(dev);
Dan Williamseaf96152015-05-01 13:11:27 -0400540 }
Dan Williams8c2f7e82015-06-25 04:20:04 -0400541 if (is_nd_btt(dev) && probe) {
Dan Williams8ca24352015-07-24 23:42:34 -0400542 struct nd_btt *nd_btt = to_nd_btt(dev);
543
Dan Williams8c2f7e82015-06-25 04:20:04 -0400544 nd_region = to_nd_region(dev->parent);
545 nvdimm_bus_lock(dev);
546 if (nd_region->btt_seed == dev)
547 nd_region_create_btt_seed(nd_region);
Dan Williams98a29c32016-09-30 15:28:27 -0700548 if (nd_region->ns_seed == &nd_btt->ndns->dev)
549 nd_region_create_ns_seed(nd_region);
Dan Williams8c2f7e82015-06-25 04:20:04 -0400550 nvdimm_bus_unlock(dev);
551 }
Dan Williams2dc43332015-12-13 11:41:36 -0800552 if (is_nd_pfn(dev) && probe) {
Dan Williams98a29c32016-09-30 15:28:27 -0700553 struct nd_pfn *nd_pfn = to_nd_pfn(dev);
554
Dan Williams2dc43332015-12-13 11:41:36 -0800555 nd_region = to_nd_region(dev->parent);
556 nvdimm_bus_lock(dev);
557 if (nd_region->pfn_seed == dev)
558 nd_region_create_pfn_seed(nd_region);
Dan Williams98a29c32016-09-30 15:28:27 -0700559 if (nd_region->ns_seed == &nd_pfn->ndns->dev)
560 nd_region_create_ns_seed(nd_region);
Dan Williams2dc43332015-12-13 11:41:36 -0800561 nvdimm_bus_unlock(dev);
562 }
Dan Williamscd034122016-03-11 10:15:36 -0800563 if (is_nd_dax(dev) && probe) {
Dan Williams98a29c32016-09-30 15:28:27 -0700564 struct nd_dax *nd_dax = to_nd_dax(dev);
565
Dan Williamscd034122016-03-11 10:15:36 -0800566 nd_region = to_nd_region(dev->parent);
567 nvdimm_bus_lock(dev);
568 if (nd_region->dax_seed == dev)
569 nd_region_create_dax_seed(nd_region);
Dan Williams98a29c32016-09-30 15:28:27 -0700570 if (nd_region->ns_seed == &nd_dax->nd_pfn.ndns->dev)
571 nd_region_create_ns_seed(nd_region);
Dan Williamscd034122016-03-11 10:15:36 -0800572 nvdimm_bus_unlock(dev);
573 }
Dan Williamseaf96152015-05-01 13:11:27 -0400574}
575
576void nd_region_probe_success(struct nvdimm_bus *nvdimm_bus, struct device *dev)
577{
578 nd_region_notify_driver_action(nvdimm_bus, dev, true);
579}
580
581void nd_region_disable(struct nvdimm_bus *nvdimm_bus, struct device *dev)
582{
583 nd_region_notify_driver_action(nvdimm_bus, dev, false);
584}
585
Dan Williams1f7df6f2015-06-09 20:13:14 -0400586static ssize_t mappingN(struct device *dev, char *buf, int n)
587{
588 struct nd_region *nd_region = to_nd_region(dev);
589 struct nd_mapping *nd_mapping;
590 struct nvdimm *nvdimm;
591
592 if (n >= nd_region->ndr_mappings)
593 return -ENXIO;
594 nd_mapping = &nd_region->mapping[n];
595 nvdimm = nd_mapping->nvdimm;
596
597 return sprintf(buf, "%s,%llu,%llu\n", dev_name(&nvdimm->dev),
598 nd_mapping->start, nd_mapping->size);
599}
600
601#define REGION_MAPPING(idx) \
602static ssize_t mapping##idx##_show(struct device *dev, \
603 struct device_attribute *attr, char *buf) \
604{ \
605 return mappingN(dev, buf, idx); \
606} \
607static DEVICE_ATTR_RO(mapping##idx)
608
609/*
610 * 32 should be enough for a while, even in the presence of socket
611 * interleave a 32-way interleave set is a degenerate case.
612 */
613REGION_MAPPING(0);
614REGION_MAPPING(1);
615REGION_MAPPING(2);
616REGION_MAPPING(3);
617REGION_MAPPING(4);
618REGION_MAPPING(5);
619REGION_MAPPING(6);
620REGION_MAPPING(7);
621REGION_MAPPING(8);
622REGION_MAPPING(9);
623REGION_MAPPING(10);
624REGION_MAPPING(11);
625REGION_MAPPING(12);
626REGION_MAPPING(13);
627REGION_MAPPING(14);
628REGION_MAPPING(15);
629REGION_MAPPING(16);
630REGION_MAPPING(17);
631REGION_MAPPING(18);
632REGION_MAPPING(19);
633REGION_MAPPING(20);
634REGION_MAPPING(21);
635REGION_MAPPING(22);
636REGION_MAPPING(23);
637REGION_MAPPING(24);
638REGION_MAPPING(25);
639REGION_MAPPING(26);
640REGION_MAPPING(27);
641REGION_MAPPING(28);
642REGION_MAPPING(29);
643REGION_MAPPING(30);
644REGION_MAPPING(31);
645
646static umode_t mapping_visible(struct kobject *kobj, struct attribute *a, int n)
647{
648 struct device *dev = container_of(kobj, struct device, kobj);
649 struct nd_region *nd_region = to_nd_region(dev);
650
651 if (n < nd_region->ndr_mappings)
652 return a->mode;
653 return 0;
654}
655
656static struct attribute *mapping_attributes[] = {
657 &dev_attr_mapping0.attr,
658 &dev_attr_mapping1.attr,
659 &dev_attr_mapping2.attr,
660 &dev_attr_mapping3.attr,
661 &dev_attr_mapping4.attr,
662 &dev_attr_mapping5.attr,
663 &dev_attr_mapping6.attr,
664 &dev_attr_mapping7.attr,
665 &dev_attr_mapping8.attr,
666 &dev_attr_mapping9.attr,
667 &dev_attr_mapping10.attr,
668 &dev_attr_mapping11.attr,
669 &dev_attr_mapping12.attr,
670 &dev_attr_mapping13.attr,
671 &dev_attr_mapping14.attr,
672 &dev_attr_mapping15.attr,
673 &dev_attr_mapping16.attr,
674 &dev_attr_mapping17.attr,
675 &dev_attr_mapping18.attr,
676 &dev_attr_mapping19.attr,
677 &dev_attr_mapping20.attr,
678 &dev_attr_mapping21.attr,
679 &dev_attr_mapping22.attr,
680 &dev_attr_mapping23.attr,
681 &dev_attr_mapping24.attr,
682 &dev_attr_mapping25.attr,
683 &dev_attr_mapping26.attr,
684 &dev_attr_mapping27.attr,
685 &dev_attr_mapping28.attr,
686 &dev_attr_mapping29.attr,
687 &dev_attr_mapping30.attr,
688 &dev_attr_mapping31.attr,
689 NULL,
690};
691
692struct attribute_group nd_mapping_attribute_group = {
693 .is_visible = mapping_visible,
694 .attrs = mapping_attributes,
695};
696EXPORT_SYMBOL_GPL(nd_mapping_attribute_group);
697
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400698int nd_blk_region_init(struct nd_region *nd_region)
Dan Williams1f7df6f2015-06-09 20:13:14 -0400699{
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400700 struct device *dev = &nd_region->dev;
701 struct nvdimm_bus *nvdimm_bus = walk_to_nvdimm_bus(dev);
702
703 if (!is_nd_blk(dev))
704 return 0;
705
706 if (nd_region->ndr_mappings < 1) {
707 dev_err(dev, "invalid BLK region\n");
708 return -ENXIO;
709 }
710
711 return to_nd_blk_region(dev)->enable(nvdimm_bus, dev);
Dan Williams1f7df6f2015-06-09 20:13:14 -0400712}
Dan Williams1f7df6f2015-06-09 20:13:14 -0400713
Vishal Verma5212e112015-06-25 04:20:32 -0400714/**
715 * nd_region_acquire_lane - allocate and lock a lane
716 * @nd_region: region id and number of lanes possible
717 *
718 * A lane correlates to a BLK-data-window and/or a log slot in the BTT.
719 * We optimize for the common case where there are 256 lanes, one
720 * per-cpu. For larger systems we need to lock to share lanes. For now
721 * this implementation assumes the cost of maintaining an allocator for
722 * free lanes is on the order of the lock hold time, so it implements a
723 * static lane = cpu % num_lanes mapping.
724 *
725 * In the case of a BTT instance on top of a BLK namespace a lane may be
726 * acquired recursively. We lock on the first instance.
727 *
728 * In the case of a BTT instance on top of PMEM, we only acquire a lane
729 * for the BTT metadata updates.
730 */
731unsigned int nd_region_acquire_lane(struct nd_region *nd_region)
732{
733 unsigned int cpu, lane;
734
735 cpu = get_cpu();
736 if (nd_region->num_lanes < nr_cpu_ids) {
737 struct nd_percpu_lane *ndl_lock, *ndl_count;
738
739 lane = cpu % nd_region->num_lanes;
740 ndl_count = per_cpu_ptr(nd_region->lane, cpu);
741 ndl_lock = per_cpu_ptr(nd_region->lane, lane);
742 if (ndl_count->count++ == 0)
743 spin_lock(&ndl_lock->lock);
744 } else
745 lane = cpu;
746
747 return lane;
748}
749EXPORT_SYMBOL(nd_region_acquire_lane);
750
751void nd_region_release_lane(struct nd_region *nd_region, unsigned int lane)
752{
753 if (nd_region->num_lanes < nr_cpu_ids) {
754 unsigned int cpu = get_cpu();
755 struct nd_percpu_lane *ndl_lock, *ndl_count;
756
757 ndl_count = per_cpu_ptr(nd_region->lane, cpu);
758 ndl_lock = per_cpu_ptr(nd_region->lane, lane);
759 if (--ndl_count->count == 0)
760 spin_unlock(&ndl_lock->lock);
761 put_cpu();
762 }
763 put_cpu();
764}
765EXPORT_SYMBOL(nd_region_release_lane);
766
Dan Williams1f7df6f2015-06-09 20:13:14 -0400767static struct nd_region *nd_region_create(struct nvdimm_bus *nvdimm_bus,
768 struct nd_region_desc *ndr_desc, struct device_type *dev_type,
769 const char *caller)
770{
771 struct nd_region *nd_region;
772 struct device *dev;
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400773 void *region_buf;
Vishal Verma5212e112015-06-25 04:20:32 -0400774 unsigned int i;
Dan Williams58138822015-06-23 20:08:34 -0400775 int ro = 0;
Dan Williams1f7df6f2015-06-09 20:13:14 -0400776
777 for (i = 0; i < ndr_desc->num_mappings; i++) {
Dan Williams44c462e2016-09-19 16:38:50 -0700778 struct nd_mapping_desc *mapping = &ndr_desc->mapping[i];
779 struct nvdimm *nvdimm = mapping->nvdimm;
Dan Williams1f7df6f2015-06-09 20:13:14 -0400780
Dan Williams44c462e2016-09-19 16:38:50 -0700781 if ((mapping->start | mapping->size) % SZ_4K) {
Dan Williams1f7df6f2015-06-09 20:13:14 -0400782 dev_err(&nvdimm_bus->dev, "%s: %s mapping%d is not 4K aligned\n",
783 caller, dev_name(&nvdimm->dev), i);
784
785 return NULL;
786 }
Dan Williams58138822015-06-23 20:08:34 -0400787
788 if (nvdimm->flags & NDD_UNARMED)
789 ro = 1;
Dan Williams1f7df6f2015-06-09 20:13:14 -0400790 }
791
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400792 if (dev_type == &nd_blk_device_type) {
793 struct nd_blk_region_desc *ndbr_desc;
794 struct nd_blk_region *ndbr;
795
796 ndbr_desc = to_blk_region_desc(ndr_desc);
797 ndbr = kzalloc(sizeof(*ndbr) + sizeof(struct nd_mapping)
798 * ndr_desc->num_mappings,
799 GFP_KERNEL);
800 if (ndbr) {
801 nd_region = &ndbr->nd_region;
802 ndbr->enable = ndbr_desc->enable;
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400803 ndbr->do_io = ndbr_desc->do_io;
804 }
805 region_buf = ndbr;
806 } else {
807 nd_region = kzalloc(sizeof(struct nd_region)
808 + sizeof(struct nd_mapping)
809 * ndr_desc->num_mappings,
810 GFP_KERNEL);
811 region_buf = nd_region;
812 }
813
814 if (!region_buf)
Dan Williams1f7df6f2015-06-09 20:13:14 -0400815 return NULL;
816 nd_region->id = ida_simple_get(&region_ida, 0, 0, GFP_KERNEL);
Vishal Verma5212e112015-06-25 04:20:32 -0400817 if (nd_region->id < 0)
818 goto err_id;
819
820 nd_region->lane = alloc_percpu(struct nd_percpu_lane);
821 if (!nd_region->lane)
822 goto err_percpu;
823
824 for (i = 0; i < nr_cpu_ids; i++) {
825 struct nd_percpu_lane *ndl;
826
827 ndl = per_cpu_ptr(nd_region->lane, i);
828 spin_lock_init(&ndl->lock);
829 ndl->count = 0;
Dan Williams1f7df6f2015-06-09 20:13:14 -0400830 }
831
Dan Williams1f7df6f2015-06-09 20:13:14 -0400832 for (i = 0; i < ndr_desc->num_mappings; i++) {
Dan Williams44c462e2016-09-19 16:38:50 -0700833 struct nd_mapping_desc *mapping = &ndr_desc->mapping[i];
834 struct nvdimm *nvdimm = mapping->nvdimm;
835
836 nd_region->mapping[i].nvdimm = nvdimm;
837 nd_region->mapping[i].start = mapping->start;
838 nd_region->mapping[i].size = mapping->size;
Dan Williamsae8219f2016-09-19 16:04:21 -0700839 INIT_LIST_HEAD(&nd_region->mapping[i].labels);
840 mutex_init(&nd_region->mapping[i].lock);
Dan Williams1f7df6f2015-06-09 20:13:14 -0400841
842 get_device(&nvdimm->dev);
843 }
844 nd_region->ndr_mappings = ndr_desc->num_mappings;
845 nd_region->provider_data = ndr_desc->provider_data;
Dan Williamseaf96152015-05-01 13:11:27 -0400846 nd_region->nd_set = ndr_desc->nd_set;
Vishal Verma5212e112015-06-25 04:20:32 -0400847 nd_region->num_lanes = ndr_desc->num_lanes;
Dan Williams004f1af2015-08-24 19:20:23 -0400848 nd_region->flags = ndr_desc->flags;
Dan Williams58138822015-06-23 20:08:34 -0400849 nd_region->ro = ro;
Toshi Kani41d7a6d2015-06-19 12:18:33 -0600850 nd_region->numa_node = ndr_desc->numa_node;
Dan Williams1b40e092015-05-01 13:34:01 -0400851 ida_init(&nd_region->ns_ida);
Dan Williams8c2f7e82015-06-25 04:20:04 -0400852 ida_init(&nd_region->btt_ida);
Dan Williamse1455742015-07-30 17:57:47 -0400853 ida_init(&nd_region->pfn_ida);
Dan Williamscd034122016-03-11 10:15:36 -0800854 ida_init(&nd_region->dax_ida);
Dan Williams1f7df6f2015-06-09 20:13:14 -0400855 dev = &nd_region->dev;
856 dev_set_name(dev, "region%d", nd_region->id);
857 dev->parent = &nvdimm_bus->dev;
858 dev->type = dev_type;
859 dev->groups = ndr_desc->attr_groups;
860 nd_region->ndr_size = resource_size(ndr_desc->res);
861 nd_region->ndr_start = ndr_desc->res->start;
862 nd_device_register(dev);
863
864 return nd_region;
Vishal Verma5212e112015-06-25 04:20:32 -0400865
866 err_percpu:
867 ida_simple_remove(&region_ida, nd_region->id);
868 err_id:
Ross Zwisler047fc8a2015-06-25 04:21:02 -0400869 kfree(region_buf);
Vishal Verma5212e112015-06-25 04:20:32 -0400870 return NULL;
Dan Williams1f7df6f2015-06-09 20:13:14 -0400871}
872
873struct nd_region *nvdimm_pmem_region_create(struct nvdimm_bus *nvdimm_bus,
874 struct nd_region_desc *ndr_desc)
875{
Vishal Verma5212e112015-06-25 04:20:32 -0400876 ndr_desc->num_lanes = ND_MAX_LANES;
Dan Williams1f7df6f2015-06-09 20:13:14 -0400877 return nd_region_create(nvdimm_bus, ndr_desc, &nd_pmem_device_type,
878 __func__);
879}
880EXPORT_SYMBOL_GPL(nvdimm_pmem_region_create);
881
882struct nd_region *nvdimm_blk_region_create(struct nvdimm_bus *nvdimm_bus,
883 struct nd_region_desc *ndr_desc)
884{
885 if (ndr_desc->num_mappings > 1)
886 return NULL;
Vishal Verma5212e112015-06-25 04:20:32 -0400887 ndr_desc->num_lanes = min(ndr_desc->num_lanes, ND_MAX_LANES);
Dan Williams1f7df6f2015-06-09 20:13:14 -0400888 return nd_region_create(nvdimm_bus, ndr_desc, &nd_blk_device_type,
889 __func__);
890}
891EXPORT_SYMBOL_GPL(nvdimm_blk_region_create);
892
893struct nd_region *nvdimm_volatile_region_create(struct nvdimm_bus *nvdimm_bus,
894 struct nd_region_desc *ndr_desc)
895{
Vishal Verma5212e112015-06-25 04:20:32 -0400896 ndr_desc->num_lanes = ND_MAX_LANES;
Dan Williams1f7df6f2015-06-09 20:13:14 -0400897 return nd_region_create(nvdimm_bus, ndr_desc, &nd_volatile_device_type,
898 __func__);
899}
900EXPORT_SYMBOL_GPL(nvdimm_volatile_region_create);
Dan Williamsb354aba2016-05-17 20:24:16 -0700901
Dan Williamsf284a4f2016-07-07 19:44:50 -0700902/**
903 * nvdimm_flush - flush any posted write queues between the cpu and pmem media
904 * @nd_region: blk or interleaved pmem region
905 */
906void nvdimm_flush(struct nd_region *nd_region)
907{
908 struct nd_region_data *ndrd = dev_get_drvdata(&nd_region->dev);
Dan Williams0c27af62016-05-27 09:23:01 -0700909 int i, idx;
910
911 /*
912 * Try to encourage some diversity in flush hint addresses
913 * across cpus assuming a limited number of flush hints.
914 */
915 idx = this_cpu_read(flush_idx);
916 idx = this_cpu_add_return(flush_idx, hash_32(current->pid + idx, 8));
Dan Williamsf284a4f2016-07-07 19:44:50 -0700917
918 /*
919 * The first wmb() is needed to 'sfence' all previous writes
920 * such that they are architecturally visible for the platform
921 * buffer flush. Note that we've already arranged for pmem
922 * writes to avoid the cache via arch_memcpy_to_pmem(). The
923 * final wmb() ensures ordering for the NVDIMM flush write.
924 */
925 wmb();
926 for (i = 0; i < nd_region->ndr_mappings; i++)
927 if (ndrd->flush_wpq[i][0])
Dan Williams0c27af62016-05-27 09:23:01 -0700928 writeq(1, ndrd->flush_wpq[i][idx & ndrd->flush_mask]);
Dan Williamsf284a4f2016-07-07 19:44:50 -0700929 wmb();
930}
931EXPORT_SYMBOL_GPL(nvdimm_flush);
932
933/**
934 * nvdimm_has_flush - determine write flushing requirements
935 * @nd_region: blk or interleaved pmem region
936 *
937 * Returns 1 if writes require flushing
938 * Returns 0 if writes do not require flushing
939 * Returns -ENXIO if flushing capability can not be determined
940 */
941int nvdimm_has_flush(struct nd_region *nd_region)
942{
943 struct nd_region_data *ndrd = dev_get_drvdata(&nd_region->dev);
944 int i;
945
946 /* no nvdimm == flushing capability unknown */
947 if (nd_region->ndr_mappings == 0)
948 return -ENXIO;
949
950 for (i = 0; i < nd_region->ndr_mappings; i++)
951 /* flush hints present, flushing required */
952 if (ndrd->flush_wpq[i][0])
953 return 1;
954
955 /*
956 * The platform defines dimm devices without hints, assume
957 * platform persistence mechanism like ADR
958 */
959 return 0;
960}
961EXPORT_SYMBOL_GPL(nvdimm_has_flush);
962
Dan Williamsb354aba2016-05-17 20:24:16 -0700963void __exit nd_region_devs_exit(void)
964{
965 ida_destroy(&region_ida);
966}