1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright(c) 2013-2015 Intel Corporation. All rights reserved.
4 */
5 #include <linux/device.h>
6 #include <linux/sizes.h>
7 #include <linux/badblocks.h>
8 #include "nd-core.h"
9 #include "pmem.h"
10 #include "pfn.h"
11 #include "btt.h"
12 #include "nd.h"
13
__nd_detach_ndns(struct device * dev,struct nd_namespace_common ** _ndns)14 void __nd_detach_ndns(struct device *dev, struct nd_namespace_common **_ndns)
15 {
16 struct nd_namespace_common *ndns = *_ndns;
17 struct nvdimm_bus *nvdimm_bus;
18
19 if (!ndns)
20 return;
21
22 nvdimm_bus = walk_to_nvdimm_bus(&ndns->dev);
23 lockdep_assert_held(&nvdimm_bus->reconfig_mutex);
24 dev_WARN_ONCE(dev, ndns->claim != dev, "%s: invalid claim\n", __func__);
25 ndns->claim = NULL;
26 *_ndns = NULL;
27 put_device(&ndns->dev);
28 }
29
nd_detach_ndns(struct device * dev,struct nd_namespace_common ** _ndns)30 void nd_detach_ndns(struct device *dev,
31 struct nd_namespace_common **_ndns)
32 {
33 struct nd_namespace_common *ndns = *_ndns;
34
35 if (!ndns)
36 return;
37 get_device(&ndns->dev);
38 nvdimm_bus_lock(&ndns->dev);
39 __nd_detach_ndns(dev, _ndns);
40 nvdimm_bus_unlock(&ndns->dev);
41 put_device(&ndns->dev);
42 }
43
__nd_attach_ndns(struct device * dev,struct nd_namespace_common * attach,struct nd_namespace_common ** _ndns)44 bool __nd_attach_ndns(struct device *dev, struct nd_namespace_common *attach,
45 struct nd_namespace_common **_ndns)
46 {
47 struct nvdimm_bus *nvdimm_bus = walk_to_nvdimm_bus(&attach->dev);
48
49 if (attach->claim)
50 return false;
51 lockdep_assert_held(&nvdimm_bus->reconfig_mutex);
52 dev_WARN_ONCE(dev, *_ndns, "%s: invalid claim\n", __func__);
53 attach->claim = dev;
54 *_ndns = attach;
55 get_device(&attach->dev);
56 return true;
57 }
58
nd_attach_ndns(struct device * dev,struct nd_namespace_common * attach,struct nd_namespace_common ** _ndns)59 bool nd_attach_ndns(struct device *dev, struct nd_namespace_common *attach,
60 struct nd_namespace_common **_ndns)
61 {
62 bool claimed;
63
64 nvdimm_bus_lock(&attach->dev);
65 claimed = __nd_attach_ndns(dev, attach, _ndns);
66 nvdimm_bus_unlock(&attach->dev);
67 return claimed;
68 }
69
is_idle(struct device * dev,struct nd_namespace_common * ndns)70 static bool is_idle(struct device *dev, struct nd_namespace_common *ndns)
71 {
72 struct nd_region *nd_region = to_nd_region(dev->parent);
73 struct device *seed = NULL;
74
75 if (is_nd_btt(dev))
76 seed = nd_region->btt_seed;
77 else if (is_nd_pfn(dev))
78 seed = nd_region->pfn_seed;
79 else if (is_nd_dax(dev))
80 seed = nd_region->dax_seed;
81
82 if (seed == dev || ndns || dev->driver)
83 return false;
84 return true;
85 }
86
to_nd_pfn_safe(struct device * dev)87 struct nd_pfn *to_nd_pfn_safe(struct device *dev)
88 {
89 /*
90 * pfn device attributes are re-used by dax device instances, so we
91 * need to be careful to correct device-to-nd_pfn conversion.
92 */
93 if (is_nd_pfn(dev))
94 return to_nd_pfn(dev);
95
96 if (is_nd_dax(dev)) {
97 struct nd_dax *nd_dax = to_nd_dax(dev);
98
99 return &nd_dax->nd_pfn;
100 }
101
102 WARN_ON(1);
103 return NULL;
104 }
105
nd_detach_and_reset(struct device * dev,struct nd_namespace_common ** _ndns)106 static void nd_detach_and_reset(struct device *dev,
107 struct nd_namespace_common **_ndns)
108 {
109 /* detach the namespace and destroy / reset the device */
110 __nd_detach_ndns(dev, _ndns);
111 if (is_idle(dev, *_ndns)) {
112 nd_device_unregister(dev, ND_ASYNC);
113 } else if (is_nd_btt(dev)) {
114 struct nd_btt *nd_btt = to_nd_btt(dev);
115
116 nd_btt->lbasize = 0;
117 kfree(nd_btt->uuid);
118 nd_btt->uuid = NULL;
119 } else if (is_nd_pfn(dev) || is_nd_dax(dev)) {
120 struct nd_pfn *nd_pfn = to_nd_pfn_safe(dev);
121
122 kfree(nd_pfn->uuid);
123 nd_pfn->uuid = NULL;
124 nd_pfn->mode = PFN_MODE_NONE;
125 }
126 }
127
nd_namespace_store(struct device * dev,struct nd_namespace_common ** _ndns,const char * buf,size_t len)128 ssize_t nd_namespace_store(struct device *dev,
129 struct nd_namespace_common **_ndns, const char *buf,
130 size_t len)
131 {
132 struct nd_namespace_common *ndns;
133 struct device *found;
134 char *name;
135
136 if (dev->driver) {
137 dev_dbg(dev, "namespace already active\n");
138 return -EBUSY;
139 }
140
141 name = kstrndup(buf, len, GFP_KERNEL);
142 if (!name)
143 return -ENOMEM;
144 strim(name);
145
146 if (strncmp(name, "namespace", 9) == 0 || strcmp(name, "") == 0)
147 /* pass */;
148 else {
149 len = -EINVAL;
150 goto out;
151 }
152
153 ndns = *_ndns;
154 if (strcmp(name, "") == 0) {
155 nd_detach_and_reset(dev, _ndns);
156 goto out;
157 } else if (ndns) {
158 dev_dbg(dev, "namespace already set to: %s\n",
159 dev_name(&ndns->dev));
160 len = -EBUSY;
161 goto out;
162 }
163
164 found = device_find_child_by_name(dev->parent, name);
165 if (!found) {
166 dev_dbg(dev, "'%s' not found under %s\n", name,
167 dev_name(dev->parent));
168 len = -ENODEV;
169 goto out;
170 }
171
172 ndns = to_ndns(found);
173
174 switch (ndns->claim_class) {
175 case NVDIMM_CCLASS_NONE:
176 break;
177 case NVDIMM_CCLASS_BTT:
178 case NVDIMM_CCLASS_BTT2:
179 if (!is_nd_btt(dev)) {
180 len = -EBUSY;
181 goto out_attach;
182 }
183 break;
184 case NVDIMM_CCLASS_PFN:
185 if (!is_nd_pfn(dev)) {
186 len = -EBUSY;
187 goto out_attach;
188 }
189 break;
190 case NVDIMM_CCLASS_DAX:
191 if (!is_nd_dax(dev)) {
192 len = -EBUSY;
193 goto out_attach;
194 }
195 break;
196 default:
197 len = -EBUSY;
198 goto out_attach;
199 break;
200 }
201
202 if (__nvdimm_namespace_capacity(ndns) < SZ_16M) {
203 dev_dbg(dev, "%s too small to host\n", name);
204 len = -ENXIO;
205 goto out_attach;
206 }
207
208 WARN_ON_ONCE(!is_nvdimm_bus_locked(dev));
209 if (!__nd_attach_ndns(dev, ndns, _ndns)) {
210 dev_dbg(dev, "%s already claimed\n",
211 dev_name(&ndns->dev));
212 len = -EBUSY;
213 }
214
215 out_attach:
216 put_device(&ndns->dev); /* from device_find_child */
217 out:
218 kfree(name);
219 return len;
220 }
221
222 /*
223 * nd_sb_checksum: compute checksum for a generic info block
224 *
225 * Returns a fletcher64 checksum of everything in the given info block
226 * except the last field (since that's where the checksum lives).
227 */
nd_sb_checksum(struct nd_gen_sb * nd_gen_sb)228 u64 nd_sb_checksum(struct nd_gen_sb *nd_gen_sb)
229 {
230 u64 sum;
231 __le64 sum_save;
232
233 BUILD_BUG_ON(sizeof(struct btt_sb) != SZ_4K);
234 BUILD_BUG_ON(sizeof(struct nd_pfn_sb) != SZ_4K);
235 BUILD_BUG_ON(sizeof(struct nd_gen_sb) != SZ_4K);
236
237 sum_save = nd_gen_sb->checksum;
238 nd_gen_sb->checksum = 0;
239 sum = nd_fletcher64(nd_gen_sb, sizeof(*nd_gen_sb), 1);
240 nd_gen_sb->checksum = sum_save;
241 return sum;
242 }
243 EXPORT_SYMBOL(nd_sb_checksum);
244
nsio_rw_bytes(struct nd_namespace_common * ndns,resource_size_t offset,void * buf,size_t size,int rw,unsigned long flags)245 static int nsio_rw_bytes(struct nd_namespace_common *ndns,
246 resource_size_t offset, void *buf, size_t size, int rw,
247 unsigned long flags)
248 {
249 struct nd_namespace_io *nsio = to_nd_namespace_io(&ndns->dev);
250 unsigned int sz_align = ALIGN(size + (offset & (512 - 1)), 512);
251 sector_t sector = offset >> 9;
252 int rc = 0, ret = 0;
253
254 if (unlikely(!size))
255 return 0;
256
257 if (unlikely(offset + size > nsio->size)) {
258 dev_WARN_ONCE(&ndns->dev, 1, "request out of range\n");
259 return -EFAULT;
260 }
261
262 if (rw == READ) {
263 if (unlikely(is_bad_pmem(&nsio->bb, sector, sz_align)))
264 return -EIO;
265 if (copy_mc_to_kernel(buf, nsio->addr + offset, size) != 0)
266 return -EIO;
267 return 0;
268 }
269
270 if (unlikely(is_bad_pmem(&nsio->bb, sector, sz_align))) {
271 if (IS_ALIGNED(offset, 512) && IS_ALIGNED(size, 512)
272 && !(flags & NVDIMM_IO_ATOMIC)) {
273 long cleared;
274
275 might_sleep();
276 cleared = nvdimm_clear_poison(&ndns->dev,
277 nsio->res.start + offset, size);
278 if (cleared < size)
279 rc = -EIO;
280 if (cleared > 0 && cleared / 512) {
281 cleared /= 512;
282 badblocks_clear(&nsio->bb, sector, cleared);
283 }
284 arch_invalidate_pmem(nsio->addr + offset, size);
285 } else
286 rc = -EIO;
287 }
288
289 memcpy_flushcache(nsio->addr + offset, buf, size);
290 ret = nvdimm_flush(to_nd_region(ndns->dev.parent), NULL);
291 if (ret)
292 rc = ret;
293
294 return rc;
295 }
296
devm_nsio_enable(struct device * dev,struct nd_namespace_io * nsio,resource_size_t size)297 int devm_nsio_enable(struct device *dev, struct nd_namespace_io *nsio,
298 resource_size_t size)
299 {
300 struct nd_namespace_common *ndns = &nsio->common;
301 struct range range = {
302 .start = nsio->res.start,
303 .end = nsio->res.end,
304 };
305
306 nsio->size = size;
307 if (!devm_request_mem_region(dev, range.start, size,
308 dev_name(&ndns->dev))) {
309 dev_warn(dev, "could not reserve region %pR\n", &nsio->res);
310 return -EBUSY;
311 }
312
313 ndns->rw_bytes = nsio_rw_bytes;
314 if (devm_init_badblocks(dev, &nsio->bb))
315 return -ENOMEM;
316 nvdimm_badblocks_populate(to_nd_region(ndns->dev.parent), &nsio->bb,
317 &range);
318
319 nsio->addr = devm_memremap(dev, range.start, size, ARCH_MEMREMAP_PMEM);
320
321 return PTR_ERR_OR_ZERO(nsio->addr);
322 }
323
devm_nsio_disable(struct device * dev,struct nd_namespace_io * nsio)324 void devm_nsio_disable(struct device *dev, struct nd_namespace_io *nsio)
325 {
326 struct resource *res = &nsio->res;
327
328 devm_memunmap(dev, nsio->addr);
329 devm_exit_badblocks(dev, &nsio->bb);
330 devm_release_mem_region(dev, res->start, nsio->size);
331 }
332