memory-hotplug: use zone_can_shift() for sysfs valid_zones attribute
[deliverable/linux.git] / drivers / base / memory.c
CommitLineData
3947be19 1/*
10fbcf4c 2 * Memory subsystem support
3947be19
DH
3 *
4 * Written by Matt Tolentino <matthew.e.tolentino@intel.com>
5 * Dave Hansen <haveblue@us.ibm.com>
6 *
7 * This file provides the necessary infrastructure to represent
8 * a SPARSEMEM-memory-model system's physical memory in /sysfs.
9 * All arch-independent code that assumes MEMORY_HOTPLUG requires
10 * SPARSEMEM should be contained here, or in mm/memory_hotplug.c.
11 */
12
3947be19
DH
13#include <linux/module.h>
14#include <linux/init.h>
3947be19 15#include <linux/topology.h>
c59ede7b 16#include <linux/capability.h>
3947be19
DH
17#include <linux/device.h>
18#include <linux/memory.h>
3947be19
DH
19#include <linux/memory_hotplug.h>
20#include <linux/mm.h>
da19cbcf 21#include <linux/mutex.h>
9f1b16a5 22#include <linux/stat.h>
5a0e3ad6 23#include <linux/slab.h>
9f1b16a5 24
60063497 25#include <linux/atomic.h>
3947be19
DH
26#include <asm/uaccess.h>
27
2938ffbd
NF
28static DEFINE_MUTEX(mem_sysfs_mutex);
29
3947be19 30#define MEMORY_CLASS_NAME "memory"
0c2c99b1 31
7315f0cc
GZ
32#define to_memory_block(dev) container_of(dev, struct memory_block, dev)
33
0c2c99b1
NF
34static int sections_per_block;
35
36static inline int base_memory_block_id(int section_nr)
37{
38 return section_nr / sections_per_block;
39}
3947be19 40
4960e05e
RW
41static int memory_subsys_online(struct device *dev);
42static int memory_subsys_offline(struct device *dev);
43
10fbcf4c 44static struct bus_type memory_subsys = {
af5ca3f4 45 .name = MEMORY_CLASS_NAME,
10fbcf4c 46 .dev_name = MEMORY_CLASS_NAME,
4960e05e
RW
47 .online = memory_subsys_online,
48 .offline = memory_subsys_offline,
3947be19
DH
49};
50
e041c683 51static BLOCKING_NOTIFIER_HEAD(memory_chain);
3947be19 52
98a38ebd 53int register_memory_notifier(struct notifier_block *nb)
3947be19 54{
2aeebca2 55 return blocking_notifier_chain_register(&memory_chain, nb);
3947be19 56}
3c82c30c 57EXPORT_SYMBOL(register_memory_notifier);
3947be19 58
98a38ebd 59void unregister_memory_notifier(struct notifier_block *nb)
3947be19 60{
2aeebca2 61 blocking_notifier_chain_unregister(&memory_chain, nb);
3947be19 62}
3c82c30c 63EXPORT_SYMBOL(unregister_memory_notifier);
3947be19 64
925cc71e
RJ
65static ATOMIC_NOTIFIER_HEAD(memory_isolate_chain);
66
67int register_memory_isolate_notifier(struct notifier_block *nb)
68{
69 return atomic_notifier_chain_register(&memory_isolate_chain, nb);
70}
71EXPORT_SYMBOL(register_memory_isolate_notifier);
72
73void unregister_memory_isolate_notifier(struct notifier_block *nb)
74{
75 atomic_notifier_chain_unregister(&memory_isolate_chain, nb);
76}
77EXPORT_SYMBOL(unregister_memory_isolate_notifier);
78
fa7194eb
YI
79static void memory_block_release(struct device *dev)
80{
7315f0cc 81 struct memory_block *mem = to_memory_block(dev);
fa7194eb
YI
82
83 kfree(mem);
84}
85
0c2c99b1
NF
86unsigned long __weak memory_block_size_bytes(void)
87{
88 return MIN_MEMORY_BLOCK_SIZE;
89}
90
91static unsigned long get_memory_block_size(void)
92{
93 unsigned long block_sz;
94
95 block_sz = memory_block_size_bytes();
96
97 /* Validate blk_sz is a power of 2 and not less than section size */
98 if ((block_sz & (block_sz - 1)) || (block_sz < MIN_MEMORY_BLOCK_SIZE)) {
99 WARN_ON(1);
100 block_sz = MIN_MEMORY_BLOCK_SIZE;
101 }
102
103 return block_sz;
104}
105
3947be19
DH
106/*
107 * use this as the physical section index that this memsection
108 * uses.
109 */
110
10fbcf4c
KS
111static ssize_t show_mem_start_phys_index(struct device *dev,
112 struct device_attribute *attr, char *buf)
3947be19 113{
7315f0cc 114 struct memory_block *mem = to_memory_block(dev);
d3360164
NF
115 unsigned long phys_index;
116
117 phys_index = mem->start_section_nr / sections_per_block;
118 return sprintf(buf, "%08lx\n", phys_index);
119}
120
5c755e9f
BP
121/*
122 * Show whether the section of memory is likely to be hot-removable
123 */
10fbcf4c
KS
124static ssize_t show_mem_removable(struct device *dev,
125 struct device_attribute *attr, char *buf)
5c755e9f 126{
0c2c99b1
NF
127 unsigned long i, pfn;
128 int ret = 1;
7315f0cc 129 struct memory_block *mem = to_memory_block(dev);
5c755e9f 130
0c2c99b1 131 for (i = 0; i < sections_per_block; i++) {
21ea9f5a
RA
132 if (!present_section_nr(mem->start_section_nr + i))
133 continue;
d3360164 134 pfn = section_nr_to_pfn(mem->start_section_nr + i);
0c2c99b1
NF
135 ret &= is_mem_section_removable(pfn, PAGES_PER_SECTION);
136 }
137
5c755e9f
BP
138 return sprintf(buf, "%d\n", ret);
139}
140
3947be19
DH
141/*
142 * online, offline, going offline, etc.
143 */
10fbcf4c
KS
144static ssize_t show_mem_state(struct device *dev,
145 struct device_attribute *attr, char *buf)
3947be19 146{
7315f0cc 147 struct memory_block *mem = to_memory_block(dev);
3947be19
DH
148 ssize_t len = 0;
149
150 /*
151 * We can probably put these states in a nice little array
152 * so that they're not open-coded
153 */
154 switch (mem->state) {
3d3af6af
IC
155 case MEM_ONLINE:
156 len = sprintf(buf, "online\n");
157 break;
158 case MEM_OFFLINE:
159 len = sprintf(buf, "offline\n");
160 break;
161 case MEM_GOING_OFFLINE:
162 len = sprintf(buf, "going-offline\n");
163 break;
164 default:
165 len = sprintf(buf, "ERROR-UNKNOWN-%ld\n",
166 mem->state);
167 WARN_ON(1);
168 break;
3947be19
DH
169 }
170
171 return len;
172}
173
7b78d335 174int memory_notify(unsigned long val, void *v)
3947be19 175{
e041c683 176 return blocking_notifier_call_chain(&memory_chain, val, v);
3947be19
DH
177}
178
925cc71e
RJ
179int memory_isolate_notify(unsigned long val, void *v)
180{
181 return atomic_notifier_call_chain(&memory_isolate_chain, val, v);
182}
183
2bbcb878
MG
184/*
185 * The probe routines leave the pages reserved, just as the bootmem code does.
186 * Make sure they're still that way.
187 */
6056d619 188static bool pages_correctly_reserved(unsigned long start_pfn)
2bbcb878
MG
189{
190 int i, j;
191 struct page *page;
192 unsigned long pfn = start_pfn;
193
194 /*
195 * memmap between sections is not contiguous except with
196 * SPARSEMEM_VMEMMAP. We lookup the page once per section
197 * and assume memmap is contiguous within each section
198 */
199 for (i = 0; i < sections_per_block; i++, pfn += PAGES_PER_SECTION) {
200 if (WARN_ON_ONCE(!pfn_valid(pfn)))
201 return false;
202 page = pfn_to_page(pfn);
203
204 for (j = 0; j < PAGES_PER_SECTION; j++) {
205 if (PageReserved(page + j))
206 continue;
207
208 printk(KERN_WARNING "section number %ld page number %d "
209 "not reserved, was it already online?\n",
210 pfn_to_section_nr(pfn), j);
211
212 return false;
213 }
214 }
215
216 return true;
217}
218
3947be19
DH
219/*
220 * MEMORY_HOTPLUG depends on SPARSEMEM in mm/Kconfig, so it is
221 * OK to have direct references to sparsemem variables in here.
30467e0b 222 * Must already be protected by mem_hotplug_begin().
3947be19
DH
223 */
224static int
511c2aba 225memory_block_action(unsigned long phys_index, unsigned long action, int online_type)
3947be19 226{
a16cee10 227 unsigned long start_pfn;
5409d2cd 228 unsigned long nr_pages = PAGES_PER_SECTION * sections_per_block;
de0ed36a 229 struct page *first_page;
3947be19 230 int ret;
3947be19 231
19c07d5e 232 start_pfn = section_nr_to_pfn(phys_index);
71fbd556 233 first_page = pfn_to_page(start_pfn);
de0ed36a 234
3947be19 235 switch (action) {
3d3af6af
IC
236 case MEM_ONLINE:
237 if (!pages_correctly_reserved(start_pfn))
238 return -EBUSY;
239
240 ret = online_pages(start_pfn, nr_pages, online_type);
241 break;
242 case MEM_OFFLINE:
243 ret = offline_pages(start_pfn, nr_pages);
244 break;
245 default:
246 WARN(1, KERN_WARNING "%s(%ld, %ld) unknown action: "
247 "%ld\n", __func__, phys_index, action, action);
248 ret = -EINVAL;
3947be19 249 }
3947be19
DH
250
251 return ret;
252}
253
31bc3858 254int memory_block_change_state(struct memory_block *mem,
fa2be40f 255 unsigned long to_state, unsigned long from_state_req)
3947be19 256{
de0ed36a 257 int ret = 0;
0c2c99b1 258
4960e05e
RW
259 if (mem->state != from_state_req)
260 return -EINVAL;
3947be19 261
0c2c99b1
NF
262 if (to_state == MEM_OFFLINE)
263 mem->state = MEM_GOING_OFFLINE;
264
fa2be40f
SJ
265 ret = memory_block_action(mem->start_section_nr, to_state,
266 mem->online_type);
267
b2c064b2 268 mem->state = ret ? from_state_req : to_state;
fa2be40f 269
4960e05e
RW
270 return ret;
271}
0c2c99b1 272
fa2be40f 273/* The device lock serializes operations on memory_subsys_[online|offline] */
4960e05e
RW
274static int memory_subsys_online(struct device *dev)
275{
7315f0cc 276 struct memory_block *mem = to_memory_block(dev);
4960e05e 277 int ret;
3947be19 278
fa2be40f
SJ
279 if (mem->state == MEM_ONLINE)
280 return 0;
4960e05e 281
fa2be40f
SJ
282 /*
283 * If we are called from store_mem_state(), online_type will be
284 * set >= 0 Otherwise we were called from the device online
285 * attribute and need to set the online_type.
286 */
287 if (mem->online_type < 0)
4f7c6b49 288 mem->online_type = MMOP_ONLINE_KEEP;
4960e05e 289
30467e0b 290 /* Already under protection of mem_hotplug_begin() */
fa2be40f 291 ret = memory_block_change_state(mem, MEM_ONLINE, MEM_OFFLINE);
4960e05e 292
fa2be40f
SJ
293 /* clear online_type */
294 mem->online_type = -1;
4960e05e 295
4960e05e
RW
296 return ret;
297}
298
4960e05e 299static int memory_subsys_offline(struct device *dev)
e90bdb7f 300{
7315f0cc 301 struct memory_block *mem = to_memory_block(dev);
e90bdb7f 302
fa2be40f
SJ
303 if (mem->state == MEM_OFFLINE)
304 return 0;
e90bdb7f 305
26bbe7ef
SJ
306 /* Can't offline block with non-present sections */
307 if (mem->section_count != sections_per_block)
308 return -EINVAL;
309
fa2be40f 310 return memory_block_change_state(mem, MEM_OFFLINE, MEM_ONLINE);
e90bdb7f 311}
4960e05e 312
3947be19 313static ssize_t
10fbcf4c
KS
314store_mem_state(struct device *dev,
315 struct device_attribute *attr, const char *buf, size_t count)
3947be19 316{
7315f0cc 317 struct memory_block *mem = to_memory_block(dev);
fa2be40f 318 int ret, online_type;
3947be19 319
5e33bc41
RW
320 ret = lock_device_hotplug_sysfs();
321 if (ret)
322 return ret;
4960e05e 323
1f6a6cc8 324 if (sysfs_streq(buf, "online_kernel"))
4f7c6b49 325 online_type = MMOP_ONLINE_KERNEL;
1f6a6cc8 326 else if (sysfs_streq(buf, "online_movable"))
4f7c6b49 327 online_type = MMOP_ONLINE_MOVABLE;
1f6a6cc8 328 else if (sysfs_streq(buf, "online"))
4f7c6b49 329 online_type = MMOP_ONLINE_KEEP;
1f6a6cc8 330 else if (sysfs_streq(buf, "offline"))
4f7c6b49 331 online_type = MMOP_OFFLINE;
a37f8630
YI
332 else {
333 ret = -EINVAL;
334 goto err;
335 }
fa2be40f 336
30467e0b
DR
337 /*
338 * Memory hotplug needs to hold mem_hotplug_begin() for probe to find
339 * the correct memory block to online before doing device_online(dev),
340 * which will take dev->mutex. Take the lock early to prevent an
341 * inversion, memory_subsys_online() callbacks will be implemented by
342 * assuming it's already protected.
343 */
344 mem_hotplug_begin();
345
fa2be40f 346 switch (online_type) {
4f7c6b49
TC
347 case MMOP_ONLINE_KERNEL:
348 case MMOP_ONLINE_MOVABLE:
349 case MMOP_ONLINE_KEEP:
fa2be40f
SJ
350 mem->online_type = online_type;
351 ret = device_online(&mem->dev);
352 break;
4f7c6b49 353 case MMOP_OFFLINE:
fa2be40f
SJ
354 ret = device_offline(&mem->dev);
355 break;
356 default:
357 ret = -EINVAL; /* should never happen */
4960e05e 358 }
4960e05e 359
30467e0b 360 mem_hotplug_done();
a37f8630 361err:
4960e05e 362 unlock_device_hotplug();
0c2c99b1 363
3947be19
DH
364 if (ret)
365 return ret;
366 return count;
367}
368
369/*
370 * phys_device is a bad name for this. What I really want
371 * is a way to differentiate between memory ranges that
372 * are part of physical devices that constitute
373 * a complete removable unit or fru.
374 * i.e. do these ranges belong to the same physical device,
375 * s.t. if I offline all of these sections I can then
376 * remove the physical device?
377 */
10fbcf4c
KS
378static ssize_t show_phys_device(struct device *dev,
379 struct device_attribute *attr, char *buf)
3947be19 380{
7315f0cc 381 struct memory_block *mem = to_memory_block(dev);
3947be19
DH
382 return sprintf(buf, "%d\n", mem->phys_device);
383}
384
ed2f2400
ZZ
385#ifdef CONFIG_MEMORY_HOTREMOVE
386static ssize_t show_valid_zones(struct device *dev,
387 struct device_attribute *attr, char *buf)
388{
389 struct memory_block *mem = to_memory_block(dev);
390 unsigned long start_pfn, end_pfn;
391 unsigned long nr_pages = PAGES_PER_SECTION * sections_per_block;
392 struct page *first_page;
393 struct zone *zone;
a371d9f1 394 int zone_shift = 0;
ed2f2400
ZZ
395
396 start_pfn = section_nr_to_pfn(mem->start_section_nr);
397 end_pfn = start_pfn + nr_pages;
398 first_page = pfn_to_page(start_pfn);
399
400 /* The block contains more than one zone can not be offlined. */
401 if (!test_pages_in_a_zone(start_pfn, end_pfn))
402 return sprintf(buf, "none\n");
403
404 zone = page_zone(first_page);
405
a371d9f1
RA
406 /* MMOP_ONLINE_KEEP */
407 sprintf(buf, "%s", zone->name);
408
409 /* MMOP_ONLINE_KERNEL */
410 zone_shift = zone_can_shift(start_pfn, nr_pages, ZONE_NORMAL);
411 if (zone_shift) {
412 strcat(buf, " ");
413 strcat(buf, (zone + zone_shift)->name);
ed2f2400
ZZ
414 }
415
a371d9f1
RA
416 /* MMOP_ONLINE_MOVABLE */
417 zone_shift = zone_can_shift(start_pfn, nr_pages, ZONE_MOVABLE);
418 if (zone_shift) {
419 strcat(buf, " ");
420 strcat(buf, (zone + zone_shift)->name);
ed2f2400
ZZ
421 }
422
a371d9f1
RA
423 strcat(buf, "\n");
424
425 return strlen(buf);
ed2f2400
ZZ
426}
427static DEVICE_ATTR(valid_zones, 0444, show_valid_zones, NULL);
428#endif
429
10fbcf4c 430static DEVICE_ATTR(phys_index, 0444, show_mem_start_phys_index, NULL);
10fbcf4c
KS
431static DEVICE_ATTR(state, 0644, show_mem_state, store_mem_state);
432static DEVICE_ATTR(phys_device, 0444, show_phys_device, NULL);
433static DEVICE_ATTR(removable, 0444, show_mem_removable, NULL);
3947be19 434
3947be19
DH
435/*
436 * Block size attribute stuff
437 */
438static ssize_t
10fbcf4c 439print_block_size(struct device *dev, struct device_attribute *attr,
8564a6c1 440 char *buf)
3947be19 441{
0c2c99b1 442 return sprintf(buf, "%lx\n", get_memory_block_size());
3947be19
DH
443}
444
10fbcf4c 445static DEVICE_ATTR(block_size_bytes, 0444, print_block_size, NULL);
3947be19 446
31bc3858
VK
447/*
448 * Memory auto online policy.
449 */
450
451static ssize_t
452show_auto_online_blocks(struct device *dev, struct device_attribute *attr,
453 char *buf)
454{
455 if (memhp_auto_online)
456 return sprintf(buf, "online\n");
457 else
458 return sprintf(buf, "offline\n");
459}
460
461static ssize_t
462store_auto_online_blocks(struct device *dev, struct device_attribute *attr,
463 const char *buf, size_t count)
464{
465 if (sysfs_streq(buf, "online"))
466 memhp_auto_online = true;
467 else if (sysfs_streq(buf, "offline"))
468 memhp_auto_online = false;
469 else
470 return -EINVAL;
471
472 return count;
473}
474
475static DEVICE_ATTR(auto_online_blocks, 0644, show_auto_online_blocks,
476 store_auto_online_blocks);
477
3947be19
DH
478/*
479 * Some architectures will have custom drivers to do this, and
480 * will not need to do it from userspace. The fake hot-add code
481 * as well as ppc64 will do all of their discovery in userspace
482 * and will require this interface.
483 */
484#ifdef CONFIG_ARCH_MEMORY_PROBE
485static ssize_t
10fbcf4c 486memory_probe_store(struct device *dev, struct device_attribute *attr,
28812fe1 487 const char *buf, size_t count)
3947be19
DH
488{
489 u64 phys_addr;
cb5490a5 490 int nid, ret;
61b94fea 491 unsigned long pages_per_block = PAGES_PER_SECTION * sections_per_block;
3947be19 492
b69deb2b
ZZ
493 ret = kstrtoull(buf, 0, &phys_addr);
494 if (ret)
495 return ret;
3947be19 496
61b94fea
AB
497 if (phys_addr & ((pages_per_block << PAGE_SHIFT) - 1))
498 return -EINVAL;
499
cb5490a5
JA
500 nid = memory_add_physaddr_to_nid(phys_addr);
501 ret = add_memory(nid, phys_addr,
502 MIN_MEMORY_BLOCK_SIZE * sections_per_block);
6add7cd6 503
cb5490a5
JA
504 if (ret)
505 goto out;
3947be19 506
9f0af69b
NK
507 ret = count;
508out:
509 return ret;
3947be19 510}
3947be19 511
96b2c0fc 512static DEVICE_ATTR(probe, S_IWUSR, NULL, memory_probe_store);
3947be19
DH
513#endif
514
facb6011
AK
515#ifdef CONFIG_MEMORY_FAILURE
516/*
517 * Support for offlining pages of memory
518 */
519
520/* Soft offline a page */
521static ssize_t
10fbcf4c
KS
522store_soft_offline_page(struct device *dev,
523 struct device_attribute *attr,
28812fe1 524 const char *buf, size_t count)
facb6011
AK
525{
526 int ret;
527 u64 pfn;
528 if (!capable(CAP_SYS_ADMIN))
529 return -EPERM;
34da5e67 530 if (kstrtoull(buf, 0, &pfn) < 0)
facb6011
AK
531 return -EINVAL;
532 pfn >>= PAGE_SHIFT;
533 if (!pfn_valid(pfn))
534 return -ENXIO;
535 ret = soft_offline_page(pfn_to_page(pfn), 0);
536 return ret == 0 ? count : ret;
537}
538
539/* Forcibly offline a page, including killing processes. */
540static ssize_t
10fbcf4c
KS
541store_hard_offline_page(struct device *dev,
542 struct device_attribute *attr,
28812fe1 543 const char *buf, size_t count)
facb6011
AK
544{
545 int ret;
546 u64 pfn;
547 if (!capable(CAP_SYS_ADMIN))
548 return -EPERM;
34da5e67 549 if (kstrtoull(buf, 0, &pfn) < 0)
facb6011
AK
550 return -EINVAL;
551 pfn >>= PAGE_SHIFT;
cd42f4a3 552 ret = memory_failure(pfn, 0, 0);
facb6011
AK
553 return ret ? ret : count;
554}
555
74fef7a8
FB
556static DEVICE_ATTR(soft_offline_page, S_IWUSR, NULL, store_soft_offline_page);
557static DEVICE_ATTR(hard_offline_page, S_IWUSR, NULL, store_hard_offline_page);
facb6011
AK
558#endif
559
3947be19
DH
560/*
561 * Note that phys_device is optional. It is here to allow for
562 * differentiation between which *physical* devices each
563 * section belongs to...
564 */
bc32df00
HC
565int __weak arch_get_memory_phys_device(unsigned long start_pfn)
566{
567 return 0;
568}
3947be19 569
10fbcf4c
KS
570/*
571 * A reference for the returned object is held and the reference for the
572 * hinted object is released.
573 */
98383031
RH
574struct memory_block *find_memory_block_hinted(struct mem_section *section,
575 struct memory_block *hint)
3947be19 576{
0c2c99b1 577 int block_id = base_memory_block_id(__section_nr(section));
10fbcf4c
KS
578 struct device *hintdev = hint ? &hint->dev : NULL;
579 struct device *dev;
3947be19 580
10fbcf4c
KS
581 dev = subsys_find_device_by_id(&memory_subsys, block_id, hintdev);
582 if (hint)
583 put_device(&hint->dev);
584 if (!dev)
3947be19 585 return NULL;
7315f0cc 586 return to_memory_block(dev);
3947be19
DH
587}
588
98383031
RH
589/*
590 * For now, we have a linear search to go find the appropriate
591 * memory_block corresponding to a particular phys_index. If
592 * this gets to be a real problem, we can always use a radix
593 * tree or something here.
594 *
10fbcf4c 595 * This could be made generic for all device subsystems.
98383031
RH
596 */
597struct memory_block *find_memory_block(struct mem_section *section)
598{
599 return find_memory_block_hinted(section, NULL);
600}
601
96b2c0fc
NF
602static struct attribute *memory_memblk_attrs[] = {
603 &dev_attr_phys_index.attr,
96b2c0fc
NF
604 &dev_attr_state.attr,
605 &dev_attr_phys_device.attr,
606 &dev_attr_removable.attr,
ed2f2400
ZZ
607#ifdef CONFIG_MEMORY_HOTREMOVE
608 &dev_attr_valid_zones.attr,
609#endif
96b2c0fc
NF
610 NULL
611};
612
613static struct attribute_group memory_memblk_attr_group = {
614 .attrs = memory_memblk_attrs,
615};
616
617static const struct attribute_group *memory_memblk_attr_groups[] = {
618 &memory_memblk_attr_group,
619 NULL,
620};
621
622/*
623 * register_memory - Setup a sysfs device for a memory block
624 */
625static
626int register_memory(struct memory_block *memory)
627{
96b2c0fc
NF
628 memory->dev.bus = &memory_subsys;
629 memory->dev.id = memory->start_section_nr / sections_per_block;
630 memory->dev.release = memory_block_release;
631 memory->dev.groups = memory_memblk_attr_groups;
f991fae5 632 memory->dev.offline = memory->state == MEM_OFFLINE;
96b2c0fc 633
879f1bec 634 return device_register(&memory->dev);
96b2c0fc
NF
635}
636
0c2c99b1
NF
637static int init_memory_block(struct memory_block **memory,
638 struct mem_section *section, unsigned long state)
e4619c85 639{
0c2c99b1 640 struct memory_block *mem;
e4619c85 641 unsigned long start_pfn;
0c2c99b1 642 int scn_nr;
e4619c85
NF
643 int ret = 0;
644
0c2c99b1 645 mem = kzalloc(sizeof(*mem), GFP_KERNEL);
e4619c85
NF
646 if (!mem)
647 return -ENOMEM;
648
0c2c99b1 649 scn_nr = __section_nr(section);
d3360164
NF
650 mem->start_section_nr =
651 base_memory_block_id(scn_nr) * sections_per_block;
652 mem->end_section_nr = mem->start_section_nr + sections_per_block - 1;
e4619c85 653 mem->state = state;
d3360164 654 start_pfn = section_nr_to_pfn(mem->start_section_nr);
e4619c85
NF
655 mem->phys_device = arch_get_memory_phys_device(start_pfn);
656
0c2c99b1 657 ret = register_memory(mem);
0c2c99b1
NF
658
659 *memory = mem;
660 return ret;
661}
662
cb5e39b8 663static int add_memory_block(int base_section_nr)
0c2c99b1 664{
cb5e39b8
SJ
665 struct memory_block *mem;
666 int i, ret, section_count = 0, section_nr;
0c2c99b1 667
cb5e39b8
SJ
668 for (i = base_section_nr;
669 (i < base_section_nr + sections_per_block) && i < NR_MEM_SECTIONS;
670 i++) {
671 if (!present_section_nr(i))
672 continue;
673 if (section_count == 0)
674 section_nr = i;
675 section_count++;
e4619c85
NF
676 }
677
cb5e39b8
SJ
678 if (section_count == 0)
679 return 0;
680 ret = init_memory_block(&mem, __nr_to_section(section_nr), MEM_ONLINE);
681 if (ret)
682 return ret;
683 mem->section_count = section_count;
684 return 0;
e4619c85
NF
685}
686
260ae3f7
DW
687static bool is_zone_device_section(struct mem_section *ms)
688{
689 struct page *page;
690
691 page = sparse_decode_mem_map(ms->section_mem_map, __section_nr(ms));
692 return is_zone_device_page(page);
693}
cb5e39b8 694
4edd7cef
DR
695/*
696 * need an interface for the VM to add new memory regions,
697 * but without onlining it.
698 */
699int register_new_memory(int nid, struct mem_section *section)
700{
d7f80530
SJ
701 int ret = 0;
702 struct memory_block *mem;
b1eaef3d 703
260ae3f7
DW
704 if (is_zone_device_section(section))
705 return 0;
706
b1eaef3d 707 mutex_lock(&mem_sysfs_mutex);
b1eaef3d 708
d7f80530
SJ
709 mem = find_memory_block(section);
710 if (mem) {
711 mem->section_count++;
712 put_device(&mem->dev);
713 } else {
714 ret = init_memory_block(&mem, section, MEM_OFFLINE);
715 if (ret)
716 goto out;
56c6b5d3 717 mem->section_count++;
d7f80530
SJ
718 }
719
720 if (mem->section_count == sections_per_block)
721 ret = register_mem_sect_under_node(mem, nid);
722out:
723 mutex_unlock(&mem_sysfs_mutex);
b1eaef3d 724 return ret;
4edd7cef
DR
725}
726
727#ifdef CONFIG_MEMORY_HOTREMOVE
728static void
729unregister_memory(struct memory_block *memory)
730{
731 BUG_ON(memory->dev.bus != &memory_subsys);
732
733 /* drop the ref. we got in remove_memory_block() */
df2b717c 734 put_device(&memory->dev);
4edd7cef
DR
735 device_unregister(&memory->dev);
736}
737
cc292b0b 738static int remove_memory_section(unsigned long node_id,
4edd7cef 739 struct mem_section *section, int phys_device)
3947be19
DH
740{
741 struct memory_block *mem;
742
260ae3f7
DW
743 if (is_zone_device_section(section))
744 return 0;
745
2938ffbd 746 mutex_lock(&mem_sysfs_mutex);
3947be19 747 mem = find_memory_block(section);
d3360164 748 unregister_mem_sect_under_nodes(mem, __section_nr(section));
07681215
NF
749
750 mem->section_count--;
96b2c0fc 751 if (mem->section_count == 0)
0c2c99b1 752 unregister_memory(mem);
96b2c0fc 753 else
df2b717c 754 put_device(&mem->dev);
3947be19 755
2938ffbd 756 mutex_unlock(&mem_sysfs_mutex);
3947be19
DH
757 return 0;
758}
759
3947be19
DH
760int unregister_memory_section(struct mem_section *section)
761{
540557b9 762 if (!present_section(section))
3947be19
DH
763 return -EINVAL;
764
cc292b0b 765 return remove_memory_section(0, section, 0);
3947be19 766}
4edd7cef 767#endif /* CONFIG_MEMORY_HOTREMOVE */
3947be19 768
6677e3ea
YI
769/* return true if the memory block is offlined, otherwise, return false */
770bool is_memblock_offlined(struct memory_block *mem)
771{
772 return mem->state == MEM_OFFLINE;
773}
774
96b2c0fc
NF
775static struct attribute *memory_root_attrs[] = {
776#ifdef CONFIG_ARCH_MEMORY_PROBE
777 &dev_attr_probe.attr,
778#endif
779
780#ifdef CONFIG_MEMORY_FAILURE
781 &dev_attr_soft_offline_page.attr,
782 &dev_attr_hard_offline_page.attr,
783#endif
784
785 &dev_attr_block_size_bytes.attr,
31bc3858 786 &dev_attr_auto_online_blocks.attr,
96b2c0fc
NF
787 NULL
788};
789
790static struct attribute_group memory_root_attr_group = {
791 .attrs = memory_root_attrs,
792};
793
794static const struct attribute_group *memory_root_attr_groups[] = {
795 &memory_root_attr_group,
796 NULL,
797};
798
3947be19
DH
799/*
800 * Initialize the sysfs support for memory devices...
801 */
802int __init memory_dev_init(void)
803{
804 unsigned int i;
805 int ret;
28ec24e2 806 int err;
0c2c99b1 807 unsigned long block_sz;
3947be19 808
96b2c0fc 809 ret = subsys_system_register(&memory_subsys, memory_root_attr_groups);
28ec24e2
AM
810 if (ret)
811 goto out;
3947be19 812
0c2c99b1
NF
813 block_sz = get_memory_block_size();
814 sections_per_block = block_sz / MIN_MEMORY_BLOCK_SIZE;
815
3947be19
DH
816 /*
817 * Create entries for memory sections that were found
818 * during boot and have been initialized
819 */
b1eaef3d 820 mutex_lock(&mem_sysfs_mutex);
cb5e39b8
SJ
821 for (i = 0; i < NR_MEM_SECTIONS; i += sections_per_block) {
822 err = add_memory_block(i);
28ec24e2
AM
823 if (!ret)
824 ret = err;
3947be19 825 }
b1eaef3d 826 mutex_unlock(&mem_sysfs_mutex);
3947be19 827
28ec24e2
AM
828out:
829 if (ret)
2b3a302a 830 printk(KERN_ERR "%s() failed: %d\n", __func__, ret);
3947be19
DH
831 return ret;
832}
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