firmware, memmap: fix firmware_map_entry leak
[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>
19#include <linux/kobject.h>
20#include <linux/memory_hotplug.h>
21#include <linux/mm.h>
da19cbcf 22#include <linux/mutex.h>
9f1b16a5 23#include <linux/stat.h>
5a0e3ad6 24#include <linux/slab.h>
9f1b16a5 25
60063497 26#include <linux/atomic.h>
3947be19
DH
27#include <asm/uaccess.h>
28
2938ffbd
NF
29static DEFINE_MUTEX(mem_sysfs_mutex);
30
3947be19 31#define MEMORY_CLASS_NAME "memory"
0c2c99b1
NF
32
33static int sections_per_block;
34
35static inline int base_memory_block_id(int section_nr)
36{
37 return section_nr / sections_per_block;
38}
3947be19 39
10fbcf4c 40static struct bus_type memory_subsys = {
af5ca3f4 41 .name = MEMORY_CLASS_NAME,
10fbcf4c 42 .dev_name = MEMORY_CLASS_NAME,
3947be19
DH
43};
44
e041c683 45static BLOCKING_NOTIFIER_HEAD(memory_chain);
3947be19 46
98a38ebd 47int register_memory_notifier(struct notifier_block *nb)
3947be19 48{
e041c683 49 return blocking_notifier_chain_register(&memory_chain, nb);
3947be19 50}
3c82c30c 51EXPORT_SYMBOL(register_memory_notifier);
3947be19 52
98a38ebd 53void unregister_memory_notifier(struct notifier_block *nb)
3947be19 54{
e041c683 55 blocking_notifier_chain_unregister(&memory_chain, nb);
3947be19 56}
3c82c30c 57EXPORT_SYMBOL(unregister_memory_notifier);
3947be19 58
925cc71e
RJ
59static ATOMIC_NOTIFIER_HEAD(memory_isolate_chain);
60
61int register_memory_isolate_notifier(struct notifier_block *nb)
62{
63 return atomic_notifier_chain_register(&memory_isolate_chain, nb);
64}
65EXPORT_SYMBOL(register_memory_isolate_notifier);
66
67void unregister_memory_isolate_notifier(struct notifier_block *nb)
68{
69 atomic_notifier_chain_unregister(&memory_isolate_chain, nb);
70}
71EXPORT_SYMBOL(unregister_memory_isolate_notifier);
72
fa7194eb
YI
73static void memory_block_release(struct device *dev)
74{
75 struct memory_block *mem = container_of(dev, struct memory_block, dev);
76
77 kfree(mem);
78}
79
3947be19
DH
80/*
81 * register_memory - Setup a sysfs device for a memory block
82 */
00a41db5 83static
0c2c99b1 84int register_memory(struct memory_block *memory)
3947be19
DH
85{
86 int error;
87
10fbcf4c
KS
88 memory->dev.bus = &memory_subsys;
89 memory->dev.id = memory->start_section_nr / sections_per_block;
fa7194eb 90 memory->dev.release = memory_block_release;
3947be19 91
10fbcf4c 92 error = device_register(&memory->dev);
3947be19
DH
93 return error;
94}
95
0c2c99b1
NF
96unsigned long __weak memory_block_size_bytes(void)
97{
98 return MIN_MEMORY_BLOCK_SIZE;
99}
100
101static unsigned long get_memory_block_size(void)
102{
103 unsigned long block_sz;
104
105 block_sz = memory_block_size_bytes();
106
107 /* Validate blk_sz is a power of 2 and not less than section size */
108 if ((block_sz & (block_sz - 1)) || (block_sz < MIN_MEMORY_BLOCK_SIZE)) {
109 WARN_ON(1);
110 block_sz = MIN_MEMORY_BLOCK_SIZE;
111 }
112
113 return block_sz;
114}
115
3947be19
DH
116/*
117 * use this as the physical section index that this memsection
118 * uses.
119 */
120
10fbcf4c
KS
121static ssize_t show_mem_start_phys_index(struct device *dev,
122 struct device_attribute *attr, char *buf)
3947be19
DH
123{
124 struct memory_block *mem =
10fbcf4c 125 container_of(dev, struct memory_block, dev);
d3360164
NF
126 unsigned long phys_index;
127
128 phys_index = mem->start_section_nr / sections_per_block;
129 return sprintf(buf, "%08lx\n", phys_index);
130}
131
10fbcf4c
KS
132static ssize_t show_mem_end_phys_index(struct device *dev,
133 struct device_attribute *attr, char *buf)
d3360164
NF
134{
135 struct memory_block *mem =
10fbcf4c 136 container_of(dev, struct memory_block, dev);
d3360164
NF
137 unsigned long phys_index;
138
139 phys_index = mem->end_section_nr / sections_per_block;
140 return sprintf(buf, "%08lx\n", phys_index);
3947be19
DH
141}
142
5c755e9f
BP
143/*
144 * Show whether the section of memory is likely to be hot-removable
145 */
10fbcf4c
KS
146static ssize_t show_mem_removable(struct device *dev,
147 struct device_attribute *attr, char *buf)
5c755e9f 148{
0c2c99b1
NF
149 unsigned long i, pfn;
150 int ret = 1;
5c755e9f 151 struct memory_block *mem =
10fbcf4c 152 container_of(dev, struct memory_block, dev);
5c755e9f 153
0c2c99b1 154 for (i = 0; i < sections_per_block; i++) {
d3360164 155 pfn = section_nr_to_pfn(mem->start_section_nr + i);
0c2c99b1
NF
156 ret &= is_mem_section_removable(pfn, PAGES_PER_SECTION);
157 }
158
5c755e9f
BP
159 return sprintf(buf, "%d\n", ret);
160}
161
3947be19
DH
162/*
163 * online, offline, going offline, etc.
164 */
10fbcf4c
KS
165static ssize_t show_mem_state(struct device *dev,
166 struct device_attribute *attr, char *buf)
3947be19
DH
167{
168 struct memory_block *mem =
10fbcf4c 169 container_of(dev, struct memory_block, dev);
3947be19
DH
170 ssize_t len = 0;
171
172 /*
173 * We can probably put these states in a nice little array
174 * so that they're not open-coded
175 */
176 switch (mem->state) {
177 case MEM_ONLINE:
178 len = sprintf(buf, "online\n");
179 break;
180 case MEM_OFFLINE:
181 len = sprintf(buf, "offline\n");
182 break;
183 case MEM_GOING_OFFLINE:
184 len = sprintf(buf, "going-offline\n");
185 break;
186 default:
187 len = sprintf(buf, "ERROR-UNKNOWN-%ld\n",
188 mem->state);
189 WARN_ON(1);
190 break;
191 }
192
193 return len;
194}
195
7b78d335 196int memory_notify(unsigned long val, void *v)
3947be19 197{
e041c683 198 return blocking_notifier_call_chain(&memory_chain, val, v);
3947be19
DH
199}
200
925cc71e
RJ
201int memory_isolate_notify(unsigned long val, void *v)
202{
203 return atomic_notifier_call_chain(&memory_isolate_chain, val, v);
204}
205
2bbcb878
MG
206/*
207 * The probe routines leave the pages reserved, just as the bootmem code does.
208 * Make sure they're still that way.
209 */
210static bool pages_correctly_reserved(unsigned long start_pfn,
211 unsigned long nr_pages)
212{
213 int i, j;
214 struct page *page;
215 unsigned long pfn = start_pfn;
216
217 /*
218 * memmap between sections is not contiguous except with
219 * SPARSEMEM_VMEMMAP. We lookup the page once per section
220 * and assume memmap is contiguous within each section
221 */
222 for (i = 0; i < sections_per_block; i++, pfn += PAGES_PER_SECTION) {
223 if (WARN_ON_ONCE(!pfn_valid(pfn)))
224 return false;
225 page = pfn_to_page(pfn);
226
227 for (j = 0; j < PAGES_PER_SECTION; j++) {
228 if (PageReserved(page + j))
229 continue;
230
231 printk(KERN_WARNING "section number %ld page number %d "
232 "not reserved, was it already online?\n",
233 pfn_to_section_nr(pfn), j);
234
235 return false;
236 }
237 }
238
239 return true;
240}
241
3947be19
DH
242/*
243 * MEMORY_HOTPLUG depends on SPARSEMEM in mm/Kconfig, so it is
244 * OK to have direct references to sparsemem variables in here.
245 */
246static int
511c2aba 247memory_block_action(unsigned long phys_index, unsigned long action, int online_type)
3947be19 248{
a16cee10 249 unsigned long start_pfn;
5409d2cd 250 unsigned long nr_pages = PAGES_PER_SECTION * sections_per_block;
de0ed36a 251 struct page *first_page;
3947be19 252 int ret;
3947be19 253
de0ed36a 254 first_page = pfn_to_page(phys_index << PFN_SECTION_SHIFT);
a16cee10 255 start_pfn = page_to_pfn(first_page);
de0ed36a 256
3947be19
DH
257 switch (action) {
258 case MEM_ONLINE:
2bbcb878
MG
259 if (!pages_correctly_reserved(start_pfn, nr_pages))
260 return -EBUSY;
261
511c2aba 262 ret = online_pages(start_pfn, nr_pages, online_type);
3947be19
DH
263 break;
264 case MEM_OFFLINE:
a16cee10 265 ret = offline_pages(start_pfn, nr_pages);
3947be19
DH
266 break;
267 default:
0c2c99b1
NF
268 WARN(1, KERN_WARNING "%s(%ld, %ld) unknown action: "
269 "%ld\n", __func__, phys_index, action, action);
3947be19
DH
270 ret = -EINVAL;
271 }
3947be19
DH
272
273 return ret;
274}
275
e90bdb7f 276static int __memory_block_change_state(struct memory_block *mem,
511c2aba
LJ
277 unsigned long to_state, unsigned long from_state_req,
278 int online_type)
3947be19 279{
de0ed36a 280 int ret = 0;
0c2c99b1 281
3947be19
DH
282 if (mem->state != from_state_req) {
283 ret = -EINVAL;
284 goto out;
285 }
286
0c2c99b1
NF
287 if (to_state == MEM_OFFLINE)
288 mem->state = MEM_GOING_OFFLINE;
289
511c2aba 290 ret = memory_block_action(mem->start_section_nr, to_state, online_type);
0c2c99b1 291
f5138e42 292 if (ret) {
0c2c99b1 293 mem->state = from_state_req;
f5138e42
MH
294 goto out;
295 }
3947be19 296
f5138e42
MH
297 mem->state = to_state;
298 switch (mem->state) {
299 case MEM_OFFLINE:
300 kobject_uevent(&mem->dev.kobj, KOBJ_OFFLINE);
301 break;
302 case MEM_ONLINE:
303 kobject_uevent(&mem->dev.kobj, KOBJ_ONLINE);
304 break;
305 default:
306 break;
307 }
3947be19 308out:
3947be19
DH
309 return ret;
310}
311
e90bdb7f 312static int memory_block_change_state(struct memory_block *mem,
511c2aba
LJ
313 unsigned long to_state, unsigned long from_state_req,
314 int online_type)
e90bdb7f
WC
315{
316 int ret;
317
318 mutex_lock(&mem->state_mutex);
511c2aba
LJ
319 ret = __memory_block_change_state(mem, to_state, from_state_req,
320 online_type);
e90bdb7f
WC
321 mutex_unlock(&mem->state_mutex);
322
323 return ret;
324}
3947be19 325static ssize_t
10fbcf4c
KS
326store_mem_state(struct device *dev,
327 struct device_attribute *attr, const char *buf, size_t count)
3947be19
DH
328{
329 struct memory_block *mem;
3947be19
DH
330 int ret = -EINVAL;
331
10fbcf4c 332 mem = container_of(dev, struct memory_block, dev);
3947be19 333
511c2aba
LJ
334 if (!strncmp(buf, "online_kernel", min_t(int, count, 13)))
335 ret = memory_block_change_state(mem, MEM_ONLINE,
336 MEM_OFFLINE, ONLINE_KERNEL);
337 else if (!strncmp(buf, "online_movable", min_t(int, count, 14)))
338 ret = memory_block_change_state(mem, MEM_ONLINE,
339 MEM_OFFLINE, ONLINE_MOVABLE);
340 else if (!strncmp(buf, "online", min_t(int, count, 6)))
341 ret = memory_block_change_state(mem, MEM_ONLINE,
342 MEM_OFFLINE, ONLINE_KEEP);
343 else if(!strncmp(buf, "offline", min_t(int, count, 7)))
344 ret = memory_block_change_state(mem, MEM_OFFLINE,
345 MEM_ONLINE, -1);
0c2c99b1 346
3947be19
DH
347 if (ret)
348 return ret;
349 return count;
350}
351
352/*
353 * phys_device is a bad name for this. What I really want
354 * is a way to differentiate between memory ranges that
355 * are part of physical devices that constitute
356 * a complete removable unit or fru.
357 * i.e. do these ranges belong to the same physical device,
358 * s.t. if I offline all of these sections I can then
359 * remove the physical device?
360 */
10fbcf4c
KS
361static ssize_t show_phys_device(struct device *dev,
362 struct device_attribute *attr, char *buf)
3947be19
DH
363{
364 struct memory_block *mem =
10fbcf4c 365 container_of(dev, struct memory_block, dev);
3947be19
DH
366 return sprintf(buf, "%d\n", mem->phys_device);
367}
368
10fbcf4c
KS
369static DEVICE_ATTR(phys_index, 0444, show_mem_start_phys_index, NULL);
370static DEVICE_ATTR(end_phys_index, 0444, show_mem_end_phys_index, NULL);
371static DEVICE_ATTR(state, 0644, show_mem_state, store_mem_state);
372static DEVICE_ATTR(phys_device, 0444, show_phys_device, NULL);
373static DEVICE_ATTR(removable, 0444, show_mem_removable, NULL);
3947be19
DH
374
375#define mem_create_simple_file(mem, attr_name) \
10fbcf4c 376 device_create_file(&mem->dev, &dev_attr_##attr_name)
3947be19 377#define mem_remove_simple_file(mem, attr_name) \
10fbcf4c 378 device_remove_file(&mem->dev, &dev_attr_##attr_name)
3947be19
DH
379
380/*
381 * Block size attribute stuff
382 */
383static ssize_t
10fbcf4c 384print_block_size(struct device *dev, struct device_attribute *attr,
8564a6c1 385 char *buf)
3947be19 386{
0c2c99b1 387 return sprintf(buf, "%lx\n", get_memory_block_size());
3947be19
DH
388}
389
10fbcf4c 390static DEVICE_ATTR(block_size_bytes, 0444, print_block_size, NULL);
3947be19
DH
391
392static int block_size_init(void)
393{
10fbcf4c
KS
394 return device_create_file(memory_subsys.dev_root,
395 &dev_attr_block_size_bytes);
3947be19
DH
396}
397
398/*
399 * Some architectures will have custom drivers to do this, and
400 * will not need to do it from userspace. The fake hot-add code
401 * as well as ppc64 will do all of their discovery in userspace
402 * and will require this interface.
403 */
404#ifdef CONFIG_ARCH_MEMORY_PROBE
405static ssize_t
10fbcf4c 406memory_probe_store(struct device *dev, struct device_attribute *attr,
28812fe1 407 const char *buf, size_t count)
3947be19
DH
408{
409 u64 phys_addr;
bc02af93 410 int nid;
6add7cd6 411 int i, ret;
61b94fea 412 unsigned long pages_per_block = PAGES_PER_SECTION * sections_per_block;
3947be19
DH
413
414 phys_addr = simple_strtoull(buf, NULL, 0);
415
61b94fea
AB
416 if (phys_addr & ((pages_per_block << PAGE_SHIFT) - 1))
417 return -EINVAL;
418
6add7cd6
NF
419 for (i = 0; i < sections_per_block; i++) {
420 nid = memory_add_physaddr_to_nid(phys_addr);
421 ret = add_memory(nid, phys_addr,
422 PAGES_PER_SECTION << PAGE_SHIFT);
423 if (ret)
9f0af69b 424 goto out;
6add7cd6
NF
425
426 phys_addr += MIN_MEMORY_BLOCK_SIZE;
427 }
3947be19 428
9f0af69b
NK
429 ret = count;
430out:
431 return ret;
3947be19 432}
10fbcf4c 433static DEVICE_ATTR(probe, S_IWUSR, NULL, memory_probe_store);
3947be19
DH
434
435static int memory_probe_init(void)
436{
10fbcf4c 437 return device_create_file(memory_subsys.dev_root, &dev_attr_probe);
3947be19
DH
438}
439#else
28ec24e2
AM
440static inline int memory_probe_init(void)
441{
442 return 0;
443}
3947be19
DH
444#endif
445
facb6011
AK
446#ifdef CONFIG_MEMORY_FAILURE
447/*
448 * Support for offlining pages of memory
449 */
450
451/* Soft offline a page */
452static ssize_t
10fbcf4c
KS
453store_soft_offline_page(struct device *dev,
454 struct device_attribute *attr,
28812fe1 455 const char *buf, size_t count)
facb6011
AK
456{
457 int ret;
458 u64 pfn;
459 if (!capable(CAP_SYS_ADMIN))
460 return -EPERM;
461 if (strict_strtoull(buf, 0, &pfn) < 0)
462 return -EINVAL;
463 pfn >>= PAGE_SHIFT;
464 if (!pfn_valid(pfn))
465 return -ENXIO;
466 ret = soft_offline_page(pfn_to_page(pfn), 0);
467 return ret == 0 ? count : ret;
468}
469
470/* Forcibly offline a page, including killing processes. */
471static ssize_t
10fbcf4c
KS
472store_hard_offline_page(struct device *dev,
473 struct device_attribute *attr,
28812fe1 474 const char *buf, size_t count)
facb6011
AK
475{
476 int ret;
477 u64 pfn;
478 if (!capable(CAP_SYS_ADMIN))
479 return -EPERM;
480 if (strict_strtoull(buf, 0, &pfn) < 0)
481 return -EINVAL;
482 pfn >>= PAGE_SHIFT;
cd42f4a3 483 ret = memory_failure(pfn, 0, 0);
facb6011
AK
484 return ret ? ret : count;
485}
486
74fef7a8
FB
487static DEVICE_ATTR(soft_offline_page, S_IWUSR, NULL, store_soft_offline_page);
488static DEVICE_ATTR(hard_offline_page, S_IWUSR, NULL, store_hard_offline_page);
facb6011
AK
489
490static __init int memory_fail_init(void)
491{
492 int err;
493
10fbcf4c
KS
494 err = device_create_file(memory_subsys.dev_root,
495 &dev_attr_soft_offline_page);
facb6011 496 if (!err)
10fbcf4c
KS
497 err = device_create_file(memory_subsys.dev_root,
498 &dev_attr_hard_offline_page);
facb6011
AK
499 return err;
500}
501#else
502static inline int memory_fail_init(void)
503{
504 return 0;
505}
506#endif
507
3947be19
DH
508/*
509 * Note that phys_device is optional. It is here to allow for
510 * differentiation between which *physical* devices each
511 * section belongs to...
512 */
bc32df00
HC
513int __weak arch_get_memory_phys_device(unsigned long start_pfn)
514{
515 return 0;
516}
3947be19 517
10fbcf4c
KS
518/*
519 * A reference for the returned object is held and the reference for the
520 * hinted object is released.
521 */
98383031
RH
522struct memory_block *find_memory_block_hinted(struct mem_section *section,
523 struct memory_block *hint)
3947be19 524{
0c2c99b1 525 int block_id = base_memory_block_id(__section_nr(section));
10fbcf4c
KS
526 struct device *hintdev = hint ? &hint->dev : NULL;
527 struct device *dev;
3947be19 528
10fbcf4c
KS
529 dev = subsys_find_device_by_id(&memory_subsys, block_id, hintdev);
530 if (hint)
531 put_device(&hint->dev);
532 if (!dev)
3947be19 533 return NULL;
10fbcf4c 534 return container_of(dev, struct memory_block, dev);
3947be19
DH
535}
536
98383031
RH
537/*
538 * For now, we have a linear search to go find the appropriate
539 * memory_block corresponding to a particular phys_index. If
540 * this gets to be a real problem, we can always use a radix
541 * tree or something here.
542 *
10fbcf4c 543 * This could be made generic for all device subsystems.
98383031
RH
544 */
545struct memory_block *find_memory_block(struct mem_section *section)
546{
547 return find_memory_block_hinted(section, NULL);
548}
549
0c2c99b1
NF
550static int init_memory_block(struct memory_block **memory,
551 struct mem_section *section, unsigned long state)
e4619c85 552{
0c2c99b1 553 struct memory_block *mem;
e4619c85 554 unsigned long start_pfn;
0c2c99b1 555 int scn_nr;
e4619c85
NF
556 int ret = 0;
557
0c2c99b1 558 mem = kzalloc(sizeof(*mem), GFP_KERNEL);
e4619c85
NF
559 if (!mem)
560 return -ENOMEM;
561
0c2c99b1 562 scn_nr = __section_nr(section);
d3360164
NF
563 mem->start_section_nr =
564 base_memory_block_id(scn_nr) * sections_per_block;
565 mem->end_section_nr = mem->start_section_nr + sections_per_block - 1;
e4619c85 566 mem->state = state;
07681215 567 mem->section_count++;
e4619c85 568 mutex_init(&mem->state_mutex);
d3360164 569 start_pfn = section_nr_to_pfn(mem->start_section_nr);
e4619c85
NF
570 mem->phys_device = arch_get_memory_phys_device(start_pfn);
571
0c2c99b1 572 ret = register_memory(mem);
e4619c85
NF
573 if (!ret)
574 ret = mem_create_simple_file(mem, phys_index);
d3360164
NF
575 if (!ret)
576 ret = mem_create_simple_file(mem, end_phys_index);
e4619c85
NF
577 if (!ret)
578 ret = mem_create_simple_file(mem, state);
579 if (!ret)
580 ret = mem_create_simple_file(mem, phys_device);
581 if (!ret)
582 ret = mem_create_simple_file(mem, removable);
0c2c99b1
NF
583
584 *memory = mem;
585 return ret;
586}
587
588static int add_memory_section(int nid, struct mem_section *section,
321bf4ed 589 struct memory_block **mem_p,
0c2c99b1
NF
590 unsigned long state, enum mem_add_context context)
591{
321bf4ed
YL
592 struct memory_block *mem = NULL;
593 int scn_nr = __section_nr(section);
0c2c99b1
NF
594 int ret = 0;
595
596 mutex_lock(&mem_sysfs_mutex);
597
321bf4ed
YL
598 if (context == BOOT) {
599 /* same memory block ? */
600 if (mem_p && *mem_p)
601 if (scn_nr >= (*mem_p)->start_section_nr &&
602 scn_nr <= (*mem_p)->end_section_nr) {
603 mem = *mem_p;
604 kobject_get(&mem->dev.kobj);
605 }
606 } else
607 mem = find_memory_block(section);
608
0c2c99b1
NF
609 if (mem) {
610 mem->section_count++;
10fbcf4c 611 kobject_put(&mem->dev.kobj);
321bf4ed 612 } else {
0c2c99b1 613 ret = init_memory_block(&mem, section, state);
321bf4ed
YL
614 /* store memory_block pointer for next loop */
615 if (!ret && context == BOOT)
616 if (mem_p)
617 *mem_p = mem;
618 }
0c2c99b1 619
e4619c85 620 if (!ret) {
0c2c99b1
NF
621 if (context == HOTPLUG &&
622 mem->section_count == sections_per_block)
e4619c85
NF
623 ret = register_mem_sect_under_node(mem, nid);
624 }
625
2938ffbd 626 mutex_unlock(&mem_sysfs_mutex);
e4619c85
NF
627 return ret;
628}
629
4edd7cef
DR
630/*
631 * need an interface for the VM to add new memory regions,
632 * but without onlining it.
633 */
634int register_new_memory(int nid, struct mem_section *section)
635{
636 return add_memory_section(nid, section, NULL, MEM_OFFLINE, HOTPLUG);
637}
638
639#ifdef CONFIG_MEMORY_HOTREMOVE
640static void
641unregister_memory(struct memory_block *memory)
642{
643 BUG_ON(memory->dev.bus != &memory_subsys);
644
645 /* drop the ref. we got in remove_memory_block() */
646 kobject_put(&memory->dev.kobj);
647 device_unregister(&memory->dev);
648}
649
650static int remove_memory_block(unsigned long node_id,
651 struct mem_section *section, int phys_device)
3947be19
DH
652{
653 struct memory_block *mem;
654
2938ffbd 655 mutex_lock(&mem_sysfs_mutex);
3947be19 656 mem = find_memory_block(section);
d3360164 657 unregister_mem_sect_under_nodes(mem, __section_nr(section));
07681215
NF
658
659 mem->section_count--;
660 if (mem->section_count == 0) {
07681215 661 mem_remove_simple_file(mem, phys_index);
d3360164 662 mem_remove_simple_file(mem, end_phys_index);
07681215
NF
663 mem_remove_simple_file(mem, state);
664 mem_remove_simple_file(mem, phys_device);
665 mem_remove_simple_file(mem, removable);
0c2c99b1 666 unregister_memory(mem);
0c2c99b1 667 } else
10fbcf4c 668 kobject_put(&mem->dev.kobj);
3947be19 669
2938ffbd 670 mutex_unlock(&mem_sysfs_mutex);
3947be19
DH
671 return 0;
672}
673
3947be19
DH
674int unregister_memory_section(struct mem_section *section)
675{
540557b9 676 if (!present_section(section))
3947be19
DH
677 return -EINVAL;
678
679 return remove_memory_block(0, section, 0);
680}
4edd7cef 681#endif /* CONFIG_MEMORY_HOTREMOVE */
3947be19 682
e90bdb7f
WC
683/*
684 * offline one memory block. If the memory block has been offlined, do nothing.
685 */
686int offline_memory_block(struct memory_block *mem)
687{
688 int ret = 0;
689
690 mutex_lock(&mem->state_mutex);
691 if (mem->state != MEM_OFFLINE)
511c2aba 692 ret = __memory_block_change_state(mem, MEM_OFFLINE, MEM_ONLINE, -1);
e90bdb7f
WC
693 mutex_unlock(&mem->state_mutex);
694
695 return ret;
696}
697
6677e3ea
YI
698/* return true if the memory block is offlined, otherwise, return false */
699bool is_memblock_offlined(struct memory_block *mem)
700{
701 return mem->state == MEM_OFFLINE;
702}
703
3947be19
DH
704/*
705 * Initialize the sysfs support for memory devices...
706 */
707int __init memory_dev_init(void)
708{
709 unsigned int i;
710 int ret;
28ec24e2 711 int err;
0c2c99b1 712 unsigned long block_sz;
321bf4ed 713 struct memory_block *mem = NULL;
3947be19 714
10fbcf4c 715 ret = subsys_system_register(&memory_subsys, NULL);
28ec24e2
AM
716 if (ret)
717 goto out;
3947be19 718
0c2c99b1
NF
719 block_sz = get_memory_block_size();
720 sections_per_block = block_sz / MIN_MEMORY_BLOCK_SIZE;
721
3947be19
DH
722 /*
723 * Create entries for memory sections that were found
724 * during boot and have been initialized
725 */
726 for (i = 0; i < NR_MEM_SECTIONS; i++) {
540557b9 727 if (!present_section_nr(i))
3947be19 728 continue;
321bf4ed
YL
729 /* don't need to reuse memory_block if only one per block */
730 err = add_memory_section(0, __nr_to_section(i),
731 (sections_per_block == 1) ? NULL : &mem,
732 MEM_ONLINE,
0c2c99b1 733 BOOT);
28ec24e2
AM
734 if (!ret)
735 ret = err;
3947be19
DH
736 }
737
28ec24e2 738 err = memory_probe_init();
facb6011
AK
739 if (!ret)
740 ret = err;
741 err = memory_fail_init();
28ec24e2
AM
742 if (!ret)
743 ret = err;
744 err = block_size_init();
745 if (!ret)
746 ret = err;
747out:
748 if (ret)
2b3a302a 749 printk(KERN_ERR "%s() failed: %d\n", __func__, ret);
3947be19
DH
750 return ret;
751}
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