mm/memory_hotplug: use "unsigned long" for PFN in zone_for_pfn_range()
[linux-block.git] / mm / memory_hotplug.c
CommitLineData
457c8996 1// SPDX-License-Identifier: GPL-2.0-only
3947be19
DH
2/*
3 * linux/mm/memory_hotplug.c
4 *
5 * Copyright (C)
6 */
7
3947be19
DH
8#include <linux/stddef.h>
9#include <linux/mm.h>
174cd4b1 10#include <linux/sched/signal.h>
3947be19
DH
11#include <linux/swap.h>
12#include <linux/interrupt.h>
13#include <linux/pagemap.h>
3947be19 14#include <linux/compiler.h>
b95f1b31 15#include <linux/export.h>
3947be19 16#include <linux/pagevec.h>
2d1d43f6 17#include <linux/writeback.h>
3947be19
DH
18#include <linux/slab.h>
19#include <linux/sysctl.h>
20#include <linux/cpu.h>
21#include <linux/memory.h>
4b94ffdc 22#include <linux/memremap.h>
3947be19
DH
23#include <linux/memory_hotplug.h>
24#include <linux/highmem.h>
25#include <linux/vmalloc.h>
0a547039 26#include <linux/ioport.h>
0c0e6195
KH
27#include <linux/delay.h>
28#include <linux/migrate.h>
29#include <linux/page-isolation.h>
71088785 30#include <linux/pfn.h>
6ad696d2 31#include <linux/suspend.h>
6d9c285a 32#include <linux/mm_inline.h>
d96ae530 33#include <linux/firmware-map.h>
60a5a19e 34#include <linux/stop_machine.h>
c8721bbb 35#include <linux/hugetlb.h>
c5320926 36#include <linux/memblock.h>
698b1b30 37#include <linux/compaction.h>
b15c8726 38#include <linux/rmap.h>
3947be19
DH
39
40#include <asm/tlbflush.h>
41
1e5ad9a3 42#include "internal.h"
e900a918 43#include "shuffle.h"
1e5ad9a3 44
e3a9d9fc
OS
45
46/*
47 * memory_hotplug.memmap_on_memory parameter
48 */
49static bool memmap_on_memory __ro_after_init;
50#ifdef CONFIG_MHP_MEMMAP_ON_MEMORY
51module_param(memmap_on_memory, bool, 0444);
52MODULE_PARM_DESC(memmap_on_memory, "Enable memmap on memory for memory hotplug");
53#endif
a08a2ae3 54
9d0ad8ca
DK
55/*
56 * online_page_callback contains pointer to current page onlining function.
57 * Initially it is generic_online_page(). If it is required it could be
58 * changed by calling set_online_page_callback() for callback registration
59 * and restore_online_page_callback() for generic callback restore.
60 */
61
9d0ad8ca 62static online_page_callback_t online_page_callback = generic_online_page;
bfc8c901 63static DEFINE_MUTEX(online_page_callback_lock);
9d0ad8ca 64
3f906ba2 65DEFINE_STATIC_PERCPU_RWSEM(mem_hotplug_lock);
bfc8c901 66
3f906ba2
TG
67void get_online_mems(void)
68{
69 percpu_down_read(&mem_hotplug_lock);
70}
bfc8c901 71
3f906ba2
TG
72void put_online_mems(void)
73{
74 percpu_up_read(&mem_hotplug_lock);
75}
bfc8c901 76
4932381e
MH
77bool movable_node_enabled = false;
78
8604d9e5 79#ifndef CONFIG_MEMORY_HOTPLUG_DEFAULT_ONLINE
1adf8b46 80int mhp_default_online_type = MMOP_OFFLINE;
8604d9e5 81#else
1adf8b46 82int mhp_default_online_type = MMOP_ONLINE;
8604d9e5 83#endif
31bc3858 84
86dd995d
VK
85static int __init setup_memhp_default_state(char *str)
86{
1adf8b46 87 const int online_type = mhp_online_type_from_str(str);
5f47adf7
DH
88
89 if (online_type >= 0)
1adf8b46 90 mhp_default_online_type = online_type;
86dd995d
VK
91
92 return 1;
93}
94__setup("memhp_default_state=", setup_memhp_default_state);
95
30467e0b 96void mem_hotplug_begin(void)
20d6c96b 97{
3f906ba2
TG
98 cpus_read_lock();
99 percpu_down_write(&mem_hotplug_lock);
20d6c96b
KM
100}
101
30467e0b 102void mem_hotplug_done(void)
bfc8c901 103{
3f906ba2
TG
104 percpu_up_write(&mem_hotplug_lock);
105 cpus_read_unlock();
bfc8c901 106}
20d6c96b 107
357b4da5
JG
108u64 max_mem_size = U64_MAX;
109
45e0b78b 110/* add this memory to iomem resource */
7b7b2721
DH
111static struct resource *register_memory_resource(u64 start, u64 size,
112 const char *resource_name)
45e0b78b 113{
2794129e
DH
114 struct resource *res;
115 unsigned long flags = IORESOURCE_SYSTEM_RAM | IORESOURCE_BUSY;
7b7b2721
DH
116
117 if (strcmp(resource_name, "System RAM"))
7cf603d1 118 flags |= IORESOURCE_SYSRAM_DRIVER_MANAGED;
357b4da5 119
bca3feaa
AK
120 if (!mhp_range_allowed(start, size, true))
121 return ERR_PTR(-E2BIG);
122
f3cd4c86
BH
123 /*
124 * Make sure value parsed from 'mem=' only restricts memory adding
125 * while booting, so that memory hotplug won't be impacted. Please
126 * refer to document of 'mem=' in kernel-parameters.txt for more
127 * details.
128 */
129 if (start + size > max_mem_size && system_state < SYSTEM_RUNNING)
357b4da5
JG
130 return ERR_PTR(-E2BIG);
131
2794129e
DH
132 /*
133 * Request ownership of the new memory range. This might be
134 * a child of an existing resource that was present but
135 * not marked as busy.
136 */
137 res = __request_region(&iomem_resource, start, size,
138 resource_name, flags);
139
140 if (!res) {
141 pr_debug("Unable to reserve System RAM region: %016llx->%016llx\n",
142 start, start + size);
6f754ba4 143 return ERR_PTR(-EEXIST);
45e0b78b
KM
144 }
145 return res;
146}
147
148static void release_memory_resource(struct resource *res)
149{
150 if (!res)
151 return;
152 release_resource(res);
153 kfree(res);
45e0b78b
KM
154}
155
53947027 156#ifdef CONFIG_MEMORY_HOTPLUG_SPARSE
7ea62160
DW
157static int check_pfn_span(unsigned long pfn, unsigned long nr_pages,
158 const char *reason)
159{
160 /*
161 * Disallow all operations smaller than a sub-section and only
162 * allow operations smaller than a section for
163 * SPARSEMEM_VMEMMAP. Note that check_hotplug_memory_range()
164 * enforces a larger memory_block_size_bytes() granularity for
165 * memory that will be marked online, so this check should only
166 * fire for direct arch_{add,remove}_memory() users outside of
167 * add_memory_resource().
168 */
169 unsigned long min_align;
170
171 if (IS_ENABLED(CONFIG_SPARSEMEM_VMEMMAP))
172 min_align = PAGES_PER_SUBSECTION;
173 else
174 min_align = PAGES_PER_SECTION;
175 if (!IS_ALIGNED(pfn, min_align)
176 || !IS_ALIGNED(nr_pages, min_align)) {
177 WARN(1, "Misaligned __%s_pages start: %#lx end: #%lx\n",
178 reason, pfn, pfn + nr_pages - 1);
179 return -EINVAL;
180 }
181 return 0;
182}
183
9f605f26
DW
184/*
185 * Return page for the valid pfn only if the page is online. All pfn
186 * walkers which rely on the fully initialized page->flags and others
187 * should use this rather than pfn_valid && pfn_to_page
188 */
189struct page *pfn_to_online_page(unsigned long pfn)
190{
191 unsigned long nr = pfn_to_section_nr(pfn);
1f90a347 192 struct dev_pagemap *pgmap;
9f9b02e5
DW
193 struct mem_section *ms;
194
195 if (nr >= NR_MEM_SECTIONS)
196 return NULL;
197
198 ms = __nr_to_section(nr);
199 if (!online_section(ms))
200 return NULL;
201
202 /*
203 * Save some code text when online_section() +
204 * pfn_section_valid() are sufficient.
205 */
206 if (IS_ENABLED(CONFIG_HAVE_ARCH_PFN_VALID) && !pfn_valid(pfn))
207 return NULL;
208
209 if (!pfn_section_valid(ms, pfn))
210 return NULL;
9f605f26 211
1f90a347
DW
212 if (!online_device_section(ms))
213 return pfn_to_page(pfn);
214
215 /*
216 * Slowpath: when ZONE_DEVICE collides with
217 * ZONE_{NORMAL,MOVABLE} within the same section some pfns in
218 * the section may be 'offline' but 'valid'. Only
219 * get_dev_pagemap() can determine sub-section online status.
220 */
221 pgmap = get_dev_pagemap(pfn, NULL);
222 put_dev_pagemap(pgmap);
223
224 /* The presence of a pgmap indicates ZONE_DEVICE offline pfn */
225 if (pgmap)
226 return NULL;
227
9f9b02e5 228 return pfn_to_page(pfn);
9f605f26
DW
229}
230EXPORT_SYMBOL_GPL(pfn_to_online_page);
231
4edd7cef
DR
232/*
233 * Reasonably generic function for adding memory. It is
234 * expected that archs that support memory hotplug will
235 * call this function after deciding the zone to which to
236 * add the new pages.
237 */
7ea62160 238int __ref __add_pages(int nid, unsigned long pfn, unsigned long nr_pages,
f5637d3b 239 struct mhp_params *params)
4edd7cef 240{
6cdd0b30
DH
241 const unsigned long end_pfn = pfn + nr_pages;
242 unsigned long cur_nr_pages;
9a845030 243 int err;
f5637d3b 244 struct vmem_altmap *altmap = params->altmap;
4b94ffdc 245
bfeb022f
LG
246 if (WARN_ON_ONCE(!params->pgprot.pgprot))
247 return -EINVAL;
248
bca3feaa 249 VM_BUG_ON(!mhp_range_allowed(PFN_PHYS(pfn), nr_pages * PAGE_SIZE, false));
dca4436d 250
4b94ffdc
DW
251 if (altmap) {
252 /*
253 * Validate altmap is within bounds of the total request
254 */
7ea62160 255 if (altmap->base_pfn != pfn
4b94ffdc
DW
256 || vmem_altmap_offset(altmap) > nr_pages) {
257 pr_warn_once("memory add fail, invalid altmap\n");
7ea62160 258 return -EINVAL;
4b94ffdc
DW
259 }
260 altmap->alloc = 0;
261 }
262
7ea62160
DW
263 err = check_pfn_span(pfn, nr_pages, "add");
264 if (err)
265 return err;
266
6cdd0b30
DH
267 for (; pfn < end_pfn; pfn += cur_nr_pages) {
268 /* Select all remaining pages up to the next section boundary */
269 cur_nr_pages = min(end_pfn - pfn,
270 SECTION_ALIGN_UP(pfn + 1) - pfn);
271 err = sparse_add_section(nid, pfn, cur_nr_pages, altmap);
ba72b4c8
DW
272 if (err)
273 break;
f64ac5e6 274 cond_resched();
4edd7cef 275 }
c435a390 276 vmemmap_populate_print_last();
4edd7cef
DR
277 return err;
278}
4edd7cef 279
815121d2 280/* find the smallest valid pfn in the range [start_pfn, end_pfn) */
d09b0137 281static unsigned long find_smallest_section_pfn(int nid, struct zone *zone,
815121d2
YI
282 unsigned long start_pfn,
283 unsigned long end_pfn)
284{
49ba3c6b 285 for (; start_pfn < end_pfn; start_pfn += PAGES_PER_SUBSECTION) {
7ce700bf 286 if (unlikely(!pfn_to_online_page(start_pfn)))
815121d2
YI
287 continue;
288
289 if (unlikely(pfn_to_nid(start_pfn) != nid))
290 continue;
291
9b05158f 292 if (zone != page_zone(pfn_to_page(start_pfn)))
815121d2
YI
293 continue;
294
295 return start_pfn;
296 }
297
298 return 0;
299}
300
301/* find the biggest valid pfn in the range [start_pfn, end_pfn). */
d09b0137 302static unsigned long find_biggest_section_pfn(int nid, struct zone *zone,
815121d2
YI
303 unsigned long start_pfn,
304 unsigned long end_pfn)
305{
815121d2
YI
306 unsigned long pfn;
307
308 /* pfn is the end pfn of a memory section. */
309 pfn = end_pfn - 1;
49ba3c6b 310 for (; pfn >= start_pfn; pfn -= PAGES_PER_SUBSECTION) {
7ce700bf 311 if (unlikely(!pfn_to_online_page(pfn)))
815121d2
YI
312 continue;
313
314 if (unlikely(pfn_to_nid(pfn) != nid))
315 continue;
316
9b05158f 317 if (zone != page_zone(pfn_to_page(pfn)))
815121d2
YI
318 continue;
319
320 return pfn;
321 }
322
323 return 0;
324}
325
326static void shrink_zone_span(struct zone *zone, unsigned long start_pfn,
327 unsigned long end_pfn)
328{
815121d2 329 unsigned long pfn;
815121d2
YI
330 int nid = zone_to_nid(zone);
331
5d12071c 332 if (zone->zone_start_pfn == start_pfn) {
815121d2
YI
333 /*
334 * If the section is smallest section in the zone, it need
335 * shrink zone->zone_start_pfn and zone->zone_spanned_pages.
336 * In this case, we find second smallest valid mem_section
337 * for shrinking zone.
338 */
339 pfn = find_smallest_section_pfn(nid, zone, end_pfn,
5d12071c 340 zone_end_pfn(zone));
815121d2 341 if (pfn) {
5d12071c 342 zone->spanned_pages = zone_end_pfn(zone) - pfn;
815121d2 343 zone->zone_start_pfn = pfn;
950b68d9
DH
344 } else {
345 zone->zone_start_pfn = 0;
346 zone->spanned_pages = 0;
815121d2 347 }
5d12071c 348 } else if (zone_end_pfn(zone) == end_pfn) {
815121d2
YI
349 /*
350 * If the section is biggest section in the zone, it need
351 * shrink zone->spanned_pages.
352 * In this case, we find second biggest valid mem_section for
353 * shrinking zone.
354 */
5d12071c 355 pfn = find_biggest_section_pfn(nid, zone, zone->zone_start_pfn,
815121d2
YI
356 start_pfn);
357 if (pfn)
5d12071c 358 zone->spanned_pages = pfn - zone->zone_start_pfn + 1;
950b68d9
DH
359 else {
360 zone->zone_start_pfn = 0;
361 zone->spanned_pages = 0;
362 }
815121d2 363 }
815121d2
YI
364}
365
00d6c019 366static void update_pgdat_span(struct pglist_data *pgdat)
815121d2 367{
00d6c019
DH
368 unsigned long node_start_pfn = 0, node_end_pfn = 0;
369 struct zone *zone;
370
371 for (zone = pgdat->node_zones;
372 zone < pgdat->node_zones + MAX_NR_ZONES; zone++) {
6c922cf7 373 unsigned long end_pfn = zone_end_pfn(zone);
00d6c019
DH
374
375 /* No need to lock the zones, they can't change. */
656d5711
DH
376 if (!zone->spanned_pages)
377 continue;
378 if (!node_end_pfn) {
379 node_start_pfn = zone->zone_start_pfn;
6c922cf7 380 node_end_pfn = end_pfn;
656d5711
DH
381 continue;
382 }
383
6c922cf7
ML
384 if (end_pfn > node_end_pfn)
385 node_end_pfn = end_pfn;
00d6c019
DH
386 if (zone->zone_start_pfn < node_start_pfn)
387 node_start_pfn = zone->zone_start_pfn;
815121d2
YI
388 }
389
00d6c019
DH
390 pgdat->node_start_pfn = node_start_pfn;
391 pgdat->node_spanned_pages = node_end_pfn - node_start_pfn;
815121d2
YI
392}
393
feee6b29
DH
394void __ref remove_pfn_range_from_zone(struct zone *zone,
395 unsigned long start_pfn,
396 unsigned long nr_pages)
815121d2 397{
b7e3debd 398 const unsigned long end_pfn = start_pfn + nr_pages;
815121d2 399 struct pglist_data *pgdat = zone->zone_pgdat;
27cacaad 400 unsigned long pfn, cur_nr_pages;
815121d2 401
d33695b1 402 /* Poison struct pages because they are now uninitialized again. */
b7e3debd
BW
403 for (pfn = start_pfn; pfn < end_pfn; pfn += cur_nr_pages) {
404 cond_resched();
405
406 /* Select all remaining pages up to the next section boundary */
407 cur_nr_pages =
408 min(end_pfn - pfn, SECTION_ALIGN_UP(pfn + 1) - pfn);
409 page_init_poison(pfn_to_page(pfn),
410 sizeof(struct page) * cur_nr_pages);
411 }
d33695b1 412
7ce700bf
DH
413#ifdef CONFIG_ZONE_DEVICE
414 /*
415 * Zone shrinking code cannot properly deal with ZONE_DEVICE. So
416 * we will not try to shrink the zones - which is okay as
417 * set_zone_contiguous() cannot deal with ZONE_DEVICE either way.
418 */
419 if (zone_idx(zone) == ZONE_DEVICE)
420 return;
421#endif
422
feee6b29
DH
423 clear_zone_contiguous(zone);
424
815121d2 425 shrink_zone_span(zone, start_pfn, start_pfn + nr_pages);
00d6c019 426 update_pgdat_span(pgdat);
feee6b29
DH
427
428 set_zone_contiguous(zone);
815121d2
YI
429}
430
feee6b29
DH
431static void __remove_section(unsigned long pfn, unsigned long nr_pages,
432 unsigned long map_offset,
433 struct vmem_altmap *altmap)
ea01ea93 434{
10404901 435 struct mem_section *ms = __pfn_to_section(pfn);
ea01ea93 436
9d1d887d
DH
437 if (WARN_ON_ONCE(!valid_section(ms)))
438 return;
ea01ea93 439
ba72b4c8 440 sparse_remove_section(ms, pfn, nr_pages, map_offset, altmap);
ea01ea93
BP
441}
442
ea01ea93 443/**
feee6b29 444 * __remove_pages() - remove sections of pages
7ea62160 445 * @pfn: starting pageframe (must be aligned to start of a section)
ea01ea93 446 * @nr_pages: number of pages to remove (must be multiple of section size)
e8b098fc 447 * @altmap: alternative device page map or %NULL if default memmap is used
ea01ea93
BP
448 *
449 * Generic helper function to remove section mappings and sysfs entries
450 * for the section of the memory we are removing. Caller needs to make
451 * sure that pages are marked reserved and zones are adjust properly by
452 * calling offline_pages().
453 */
feee6b29
DH
454void __remove_pages(unsigned long pfn, unsigned long nr_pages,
455 struct vmem_altmap *altmap)
ea01ea93 456{
52fb87c8
DH
457 const unsigned long end_pfn = pfn + nr_pages;
458 unsigned long cur_nr_pages;
4b94ffdc 459 unsigned long map_offset = 0;
4b94ffdc 460
96da4350 461 map_offset = vmem_altmap_offset(altmap);
ea01ea93 462
7ea62160
DW
463 if (check_pfn_span(pfn, nr_pages, "remove"))
464 return;
ea01ea93 465
52fb87c8 466 for (; pfn < end_pfn; pfn += cur_nr_pages) {
dd33ad7b 467 cond_resched();
52fb87c8 468 /* Select all remaining pages up to the next section boundary */
a11b9419
DH
469 cur_nr_pages = min(end_pfn - pfn,
470 SECTION_ALIGN_UP(pfn + 1) - pfn);
52fb87c8 471 __remove_section(pfn, cur_nr_pages, map_offset, altmap);
4b94ffdc 472 map_offset = 0;
ea01ea93 473 }
ea01ea93 474}
ea01ea93 475
9d0ad8ca
DK
476int set_online_page_callback(online_page_callback_t callback)
477{
478 int rc = -EINVAL;
479
bfc8c901
VD
480 get_online_mems();
481 mutex_lock(&online_page_callback_lock);
9d0ad8ca
DK
482
483 if (online_page_callback == generic_online_page) {
484 online_page_callback = callback;
485 rc = 0;
486 }
487
bfc8c901
VD
488 mutex_unlock(&online_page_callback_lock);
489 put_online_mems();
9d0ad8ca
DK
490
491 return rc;
492}
493EXPORT_SYMBOL_GPL(set_online_page_callback);
494
495int restore_online_page_callback(online_page_callback_t callback)
496{
497 int rc = -EINVAL;
498
bfc8c901
VD
499 get_online_mems();
500 mutex_lock(&online_page_callback_lock);
9d0ad8ca
DK
501
502 if (online_page_callback == callback) {
503 online_page_callback = generic_online_page;
504 rc = 0;
505 }
506
bfc8c901
VD
507 mutex_unlock(&online_page_callback_lock);
508 put_online_mems();
9d0ad8ca
DK
509
510 return rc;
511}
512EXPORT_SYMBOL_GPL(restore_online_page_callback);
513
18db1491 514void generic_online_page(struct page *page, unsigned int order)
9d0ad8ca 515{
c87cbc1f
VB
516 /*
517 * Freeing the page with debug_pagealloc enabled will try to unmap it,
518 * so we should map it first. This is better than introducing a special
519 * case in page freeing fast path.
520 */
77bc7fd6 521 debug_pagealloc_map_pages(page, 1 << order);
a9cd410a
AK
522 __free_pages_core(page, order);
523 totalram_pages_add(1UL << order);
524#ifdef CONFIG_HIGHMEM
525 if (PageHighMem(page))
526 totalhigh_pages_add(1UL << order);
527#endif
528}
18db1491 529EXPORT_SYMBOL_GPL(generic_online_page);
a9cd410a 530
aac65321 531static void online_pages_range(unsigned long start_pfn, unsigned long nr_pages)
3947be19 532{
b2c2ab20
DH
533 const unsigned long end_pfn = start_pfn + nr_pages;
534 unsigned long pfn;
b2c2ab20
DH
535
536 /*
aac65321
DH
537 * Online the pages in MAX_ORDER - 1 aligned chunks. The callback might
538 * decide to not expose all pages to the buddy (e.g., expose them
539 * later). We account all pages as being online and belonging to this
540 * zone ("present").
a08a2ae3
OS
541 * When using memmap_on_memory, the range might not be aligned to
542 * MAX_ORDER_NR_PAGES - 1, but pageblock aligned. __ffs() will detect
543 * this and the first chunk to online will be pageblock_nr_pages.
b2c2ab20 544 */
a08a2ae3
OS
545 for (pfn = start_pfn; pfn < end_pfn;) {
546 int order = min(MAX_ORDER - 1UL, __ffs(pfn));
547
548 (*online_page_callback)(pfn_to_page(pfn), order);
549 pfn += (1UL << order);
550 }
2d070eab 551
b2c2ab20
DH
552 /* mark all involved sections as online */
553 online_mem_sections(start_pfn, end_pfn);
75884fb1
KH
554}
555
d9713679
LJ
556/* check which state of node_states will be changed when online memory */
557static void node_states_check_changes_online(unsigned long nr_pages,
558 struct zone *zone, struct memory_notify *arg)
559{
560 int nid = zone_to_nid(zone);
d9713679 561
98fa15f3
AK
562 arg->status_change_nid = NUMA_NO_NODE;
563 arg->status_change_nid_normal = NUMA_NO_NODE;
564 arg->status_change_nid_high = NUMA_NO_NODE;
d9713679 565
8efe33f4
OS
566 if (!node_state(nid, N_MEMORY))
567 arg->status_change_nid = nid;
568 if (zone_idx(zone) <= ZONE_NORMAL && !node_state(nid, N_NORMAL_MEMORY))
d9713679 569 arg->status_change_nid_normal = nid;
6715ddf9 570#ifdef CONFIG_HIGHMEM
d3ba3ae1 571 if (zone_idx(zone) <= ZONE_HIGHMEM && !node_state(nid, N_HIGH_MEMORY))
6715ddf9 572 arg->status_change_nid_high = nid;
6715ddf9 573#endif
d9713679
LJ
574}
575
576static void node_states_set_node(int node, struct memory_notify *arg)
577{
578 if (arg->status_change_nid_normal >= 0)
579 node_set_state(node, N_NORMAL_MEMORY);
580
6715ddf9
LJ
581 if (arg->status_change_nid_high >= 0)
582 node_set_state(node, N_HIGH_MEMORY);
583
83d83612
OS
584 if (arg->status_change_nid >= 0)
585 node_set_state(node, N_MEMORY);
d9713679
LJ
586}
587
f1dd2cd1
MH
588static void __meminit resize_zone_range(struct zone *zone, unsigned long start_pfn,
589 unsigned long nr_pages)
590{
591 unsigned long old_end_pfn = zone_end_pfn(zone);
592
593 if (zone_is_empty(zone) || start_pfn < zone->zone_start_pfn)
594 zone->zone_start_pfn = start_pfn;
595
596 zone->spanned_pages = max(start_pfn + nr_pages, old_end_pfn) - zone->zone_start_pfn;
597}
598
599static void __meminit resize_pgdat_range(struct pglist_data *pgdat, unsigned long start_pfn,
600 unsigned long nr_pages)
601{
602 unsigned long old_end_pfn = pgdat_end_pfn(pgdat);
603
604 if (!pgdat->node_spanned_pages || start_pfn < pgdat->node_start_pfn)
605 pgdat->node_start_pfn = start_pfn;
606
607 pgdat->node_spanned_pages = max(start_pfn + nr_pages, old_end_pfn) - pgdat->node_start_pfn;
f1dd2cd1 608
3fccb74c 609}
1f90a347
DW
610
611static void section_taint_zone_device(unsigned long pfn)
612{
613 struct mem_section *ms = __pfn_to_section(pfn);
614
615 ms->section_mem_map |= SECTION_TAINT_ZONE_DEVICE;
616}
617
3fccb74c
DH
618/*
619 * Associate the pfn range with the given zone, initializing the memmaps
620 * and resizing the pgdat/zone data to span the added pages. After this
621 * call, all affected pages are PG_reserved.
d882c006
DH
622 *
623 * All aligned pageblocks are initialized to the specified migratetype
624 * (usually MIGRATE_MOVABLE). Besides setting the migratetype, no related
625 * zone stats (e.g., nr_isolate_pageblock) are touched.
3fccb74c 626 */
a99583e7 627void __ref move_pfn_range_to_zone(struct zone *zone, unsigned long start_pfn,
d882c006
DH
628 unsigned long nr_pages,
629 struct vmem_altmap *altmap, int migratetype)
f1dd2cd1
MH
630{
631 struct pglist_data *pgdat = zone->zone_pgdat;
632 int nid = pgdat->node_id;
df429ac0 633
f1dd2cd1
MH
634 clear_zone_contiguous(zone);
635
fa004ab7
WY
636 if (zone_is_empty(zone))
637 init_currently_empty_zone(zone, start_pfn, nr_pages);
f1dd2cd1 638 resize_zone_range(zone, start_pfn, nr_pages);
f1dd2cd1 639 resize_pgdat_range(pgdat, start_pfn, nr_pages);
f1dd2cd1 640
1f90a347
DW
641 /*
642 * Subsection population requires care in pfn_to_online_page().
643 * Set the taint to enable the slow path detection of
644 * ZONE_DEVICE pages in an otherwise ZONE_{NORMAL,MOVABLE}
645 * section.
646 */
647 if (zone_is_zone_device(zone)) {
648 if (!IS_ALIGNED(start_pfn, PAGES_PER_SECTION))
649 section_taint_zone_device(start_pfn);
650 if (!IS_ALIGNED(start_pfn + nr_pages, PAGES_PER_SECTION))
651 section_taint_zone_device(start_pfn + nr_pages);
652 }
653
f1dd2cd1
MH
654 /*
655 * TODO now we have a visible range of pages which are not associated
656 * with their zone properly. Not nice but set_pfnblock_flags_mask
657 * expects the zone spans the pfn range. All the pages in the range
658 * are reserved so nobody should be touching them so we should be safe
659 */
ab28cb6e 660 memmap_init_range(nr_pages, nid, zone_idx(zone), start_pfn, 0,
d882c006 661 MEMINIT_HOTPLUG, altmap, migratetype);
f1dd2cd1
MH
662
663 set_zone_contiguous(zone);
664}
665
c246a213
MH
666/*
667 * Returns a default kernel memory zone for the given pfn range.
668 * If no kernel zone covers this pfn range it will automatically go
669 * to the ZONE_NORMAL.
670 */
c6f03e29 671static struct zone *default_kernel_zone_for_pfn(int nid, unsigned long start_pfn,
c246a213
MH
672 unsigned long nr_pages)
673{
674 struct pglist_data *pgdat = NODE_DATA(nid);
675 int zid;
676
677 for (zid = 0; zid <= ZONE_NORMAL; zid++) {
678 struct zone *zone = &pgdat->node_zones[zid];
679
680 if (zone_intersects(zone, start_pfn, nr_pages))
681 return zone;
682 }
683
684 return &pgdat->node_zones[ZONE_NORMAL];
685}
686
c6f03e29
MH
687static inline struct zone *default_zone_for_pfn(int nid, unsigned long start_pfn,
688 unsigned long nr_pages)
e5e68930 689{
c6f03e29
MH
690 struct zone *kernel_zone = default_kernel_zone_for_pfn(nid, start_pfn,
691 nr_pages);
692 struct zone *movable_zone = &NODE_DATA(nid)->node_zones[ZONE_MOVABLE];
693 bool in_kernel = zone_intersects(kernel_zone, start_pfn, nr_pages);
694 bool in_movable = zone_intersects(movable_zone, start_pfn, nr_pages);
e5e68930
MH
695
696 /*
c6f03e29
MH
697 * We inherit the existing zone in a simple case where zones do not
698 * overlap in the given range
e5e68930 699 */
c6f03e29
MH
700 if (in_kernel ^ in_movable)
701 return (in_kernel) ? kernel_zone : movable_zone;
9f123ab5 702
c6f03e29
MH
703 /*
704 * If the range doesn't belong to any zone or two zones overlap in the
705 * given range then we use movable zone only if movable_node is
706 * enabled because we always online to a kernel zone by default.
707 */
708 return movable_node_enabled ? movable_zone : kernel_zone;
9f123ab5
MH
709}
710
7cf209ba
DH
711struct zone *zone_for_pfn_range(int online_type, int nid,
712 unsigned long start_pfn, unsigned long nr_pages)
f1dd2cd1 713{
c6f03e29
MH
714 if (online_type == MMOP_ONLINE_KERNEL)
715 return default_kernel_zone_for_pfn(nid, start_pfn, nr_pages);
f1dd2cd1 716
c6f03e29
MH
717 if (online_type == MMOP_ONLINE_MOVABLE)
718 return &NODE_DATA(nid)->node_zones[ZONE_MOVABLE];
df429ac0 719
c6f03e29 720 return default_zone_for_pfn(nid, start_pfn, nr_pages);
e5e68930
MH
721}
722
a08a2ae3
OS
723/*
724 * This function should only be called by memory_block_{online,offline},
725 * and {online,offline}_pages.
726 */
727void adjust_present_page_count(struct zone *zone, long nr_pages)
f9901144 728{
f9901144 729 zone->present_pages += nr_pages;
f9901144 730 zone->zone_pgdat->node_present_pages += nr_pages;
f9901144
DH
731}
732
a08a2ae3
OS
733int mhp_init_memmap_on_memory(unsigned long pfn, unsigned long nr_pages,
734 struct zone *zone)
735{
736 unsigned long end_pfn = pfn + nr_pages;
737 int ret;
738
739 ret = kasan_add_zero_shadow(__va(PFN_PHYS(pfn)), PFN_PHYS(nr_pages));
740 if (ret)
741 return ret;
742
743 move_pfn_range_to_zone(zone, pfn, nr_pages, NULL, MIGRATE_UNMOVABLE);
744
745 /*
746 * It might be that the vmemmap_pages fully span sections. If that is
747 * the case, mark those sections online here as otherwise they will be
748 * left offline.
749 */
750 if (nr_pages >= PAGES_PER_SECTION)
751 online_mem_sections(pfn, ALIGN_DOWN(end_pfn, PAGES_PER_SECTION));
752
753 return ret;
754}
755
756void mhp_deinit_memmap_on_memory(unsigned long pfn, unsigned long nr_pages)
757{
758 unsigned long end_pfn = pfn + nr_pages;
759
760 /*
761 * It might be that the vmemmap_pages fully span sections. If that is
762 * the case, mark those sections offline here as otherwise they will be
763 * left online.
764 */
765 if (nr_pages >= PAGES_PER_SECTION)
766 offline_mem_sections(pfn, ALIGN_DOWN(end_pfn, PAGES_PER_SECTION));
767
768 /*
769 * The pages associated with this vmemmap have been offlined, so
770 * we can reset its state here.
771 */
772 remove_pfn_range_from_zone(page_zone(pfn_to_page(pfn)), pfn, nr_pages);
773 kasan_remove_zero_shadow(__va(PFN_PHYS(pfn)), PFN_PHYS(nr_pages));
774}
775
776int __ref online_pages(unsigned long pfn, unsigned long nr_pages, struct zone *zone)
75884fb1 777{
aa47228a 778 unsigned long flags;
6811378e 779 int need_zonelists_rebuild = 0;
a08a2ae3 780 const int nid = zone_to_nid(zone);
7b78d335
YG
781 int ret;
782 struct memory_notify arg;
d0dc12e8 783
dd8e2f23
OS
784 /*
785 * {on,off}lining is constrained to full memory sections (or more
041711ce 786 * precisely to memory blocks from the user space POV).
dd8e2f23
OS
787 * memmap_on_memory is an exception because it reserves initial part
788 * of the physical memory space for vmemmaps. That space is pageblock
789 * aligned.
790 */
4986fac1 791 if (WARN_ON_ONCE(!nr_pages ||
dd8e2f23
OS
792 !IS_ALIGNED(pfn, pageblock_nr_pages) ||
793 !IS_ALIGNED(pfn + nr_pages, PAGES_PER_SECTION)))
4986fac1
DH
794 return -EINVAL;
795
381eab4a
DH
796 mem_hotplug_begin();
797
f1dd2cd1 798 /* associate pfn range with the zone */
b30c5927 799 move_pfn_range_to_zone(zone, pfn, nr_pages, NULL, MIGRATE_ISOLATE);
f1dd2cd1 800
7b78d335
YG
801 arg.start_pfn = pfn;
802 arg.nr_pages = nr_pages;
d9713679 803 node_states_check_changes_online(nr_pages, zone, &arg);
7b78d335 804
7b78d335
YG
805 ret = memory_notify(MEM_GOING_ONLINE, &arg);
806 ret = notifier_to_errno(ret);
e33e33b4
CY
807 if (ret)
808 goto failed_addition;
809
b30c5927
DH
810 /*
811 * Fixup the number of isolated pageblocks before marking the sections
812 * onlining, such that undo_isolate_page_range() works correctly.
813 */
814 spin_lock_irqsave(&zone->lock, flags);
815 zone->nr_isolate_pageblock += nr_pages / pageblock_nr_pages;
816 spin_unlock_irqrestore(&zone->lock, flags);
817
6811378e
YG
818 /*
819 * If this zone is not populated, then it is not in zonelist.
820 * This means the page allocator ignores this zone.
821 * So, zonelist must be updated after online.
822 */
6dcd73d7 823 if (!populated_zone(zone)) {
6811378e 824 need_zonelists_rebuild = 1;
72675e13 825 setup_zone_pageset(zone);
6dcd73d7 826 }
6811378e 827
aac65321 828 online_pages_range(pfn, nr_pages);
f9901144 829 adjust_present_page_count(zone, nr_pages);
aa47228a 830
b30c5927
DH
831 node_states_set_node(nid, &arg);
832 if (need_zonelists_rebuild)
833 build_all_zonelists(NULL);
b30c5927
DH
834
835 /* Basic onlining is complete, allow allocation of onlined pages. */
836 undo_isolate_page_range(pfn, pfn + nr_pages, MIGRATE_MOVABLE);
837
93146d98 838 /*
b86c5fc4
DH
839 * Freshly onlined pages aren't shuffled (e.g., all pages are placed to
840 * the tail of the freelist when undoing isolation). Shuffle the whole
841 * zone to make sure the just onlined pages are properly distributed
842 * across the whole freelist - to create an initial shuffle.
93146d98 843 */
e900a918
DW
844 shuffle_zone(zone);
845
b92ca18e 846 /* reinitialise watermarks and update pcp limits */
1b79acc9
KM
847 init_per_zone_wmark_min();
848
ca9a46f8
DH
849 kswapd_run(nid);
850 kcompactd_run(nid);
61b13993 851
2d1d43f6 852 writeback_set_ratelimit();
7b78d335 853
ca9a46f8 854 memory_notify(MEM_ONLINE, &arg);
381eab4a 855 mem_hotplug_done();
30467e0b 856 return 0;
e33e33b4
CY
857
858failed_addition:
859 pr_debug("online_pages [mem %#010llx-%#010llx] failed\n",
860 (unsigned long long) pfn << PAGE_SHIFT,
861 (((unsigned long long) pfn + nr_pages) << PAGE_SHIFT) - 1);
862 memory_notify(MEM_CANCEL_ONLINE, &arg);
feee6b29 863 remove_pfn_range_from_zone(zone, pfn, nr_pages);
381eab4a 864 mem_hotplug_done();
e33e33b4 865 return ret;
3947be19 866}
53947027 867#endif /* CONFIG_MEMORY_HOTPLUG_SPARSE */
bc02af93 868
0bd85420
TC
869static void reset_node_present_pages(pg_data_t *pgdat)
870{
871 struct zone *z;
872
873 for (z = pgdat->node_zones; z < pgdat->node_zones + MAX_NR_ZONES; z++)
874 z->present_pages = 0;
875
876 pgdat->node_present_pages = 0;
877}
878
e1319331 879/* we are OK calling __meminit stuff here - we have CONFIG_MEMORY_HOTPLUG */
c68ab18c 880static pg_data_t __ref *hotadd_new_pgdat(int nid)
9af3c2de
YG
881{
882 struct pglist_data *pgdat;
9af3c2de 883
a1e565aa
TC
884 pgdat = NODE_DATA(nid);
885 if (!pgdat) {
886 pgdat = arch_alloc_nodedata(nid);
887 if (!pgdat)
888 return NULL;
9af3c2de 889
33fce011
WY
890 pgdat->per_cpu_nodestats =
891 alloc_percpu(struct per_cpu_nodestat);
a1e565aa 892 arch_refresh_nodedata(nid, pgdat);
b0dc3a34 893 } else {
33fce011 894 int cpu;
e716f2eb 895 /*
97a225e6
JK
896 * Reset the nr_zones, order and highest_zoneidx before reuse.
897 * Note that kswapd will init kswapd_highest_zoneidx properly
e716f2eb
MG
898 * when it starts in the near future.
899 */
b0dc3a34 900 pgdat->nr_zones = 0;
38087d9b 901 pgdat->kswapd_order = 0;
97a225e6 902 pgdat->kswapd_highest_zoneidx = 0;
33fce011
WY
903 for_each_online_cpu(cpu) {
904 struct per_cpu_nodestat *p;
905
906 p = per_cpu_ptr(pgdat->per_cpu_nodestats, cpu);
907 memset(p, 0, sizeof(*p));
908 }
a1e565aa 909 }
9af3c2de
YG
910
911 /* we can use NODE_DATA(nid) from here */
03e85f9d 912 pgdat->node_id = nid;
c68ab18c 913 pgdat->node_start_pfn = 0;
03e85f9d 914
9af3c2de 915 /* init node's zones as empty zones, we don't have any present pages.*/
03e85f9d 916 free_area_init_core_hotplug(nid);
9af3c2de 917
959ecc48
KH
918 /*
919 * The node we allocated has no zone fallback lists. For avoiding
920 * to access not-initialized zonelist, build here.
921 */
72675e13 922 build_all_zonelists(pgdat);
959ecc48 923
0bd85420
TC
924 /*
925 * When memory is hot-added, all the memory is in offline state. So
926 * clear all zones' present_pages because they will be updated in
927 * online_pages() and offline_pages().
928 */
03e85f9d 929 reset_node_managed_pages(pgdat);
0bd85420
TC
930 reset_node_present_pages(pgdat);
931
9af3c2de
YG
932 return pgdat;
933}
934
b9ff0360 935static void rollback_node_hotadd(int nid)
9af3c2de 936{
b9ff0360
OS
937 pg_data_t *pgdat = NODE_DATA(nid);
938
9af3c2de 939 arch_refresh_nodedata(nid, NULL);
5830169f 940 free_percpu(pgdat->per_cpu_nodestats);
9af3c2de 941 arch_free_nodedata(pgdat);
9af3c2de
YG
942}
943
0a547039 944
ba2d2666
MG
945/*
946 * __try_online_node - online a node if offlined
e8b098fc 947 * @nid: the node ID
b9ff0360 948 * @set_node_online: Whether we want to online the node
cf23422b 949 * called by cpu_up() to online a node without onlined memory.
b9ff0360
OS
950 *
951 * Returns:
952 * 1 -> a new node has been allocated
953 * 0 -> the node is already online
954 * -ENOMEM -> the node could not be allocated
cf23422b 955 */
c68ab18c 956static int __try_online_node(int nid, bool set_node_online)
cf23422b 957{
b9ff0360
OS
958 pg_data_t *pgdat;
959 int ret = 1;
cf23422b 960
01b0f197
TK
961 if (node_online(nid))
962 return 0;
963
c68ab18c 964 pgdat = hotadd_new_pgdat(nid);
7553e8f2 965 if (!pgdat) {
01b0f197 966 pr_err("Cannot online node %d due to NULL pgdat\n", nid);
cf23422b 967 ret = -ENOMEM;
968 goto out;
969 }
b9ff0360
OS
970
971 if (set_node_online) {
972 node_set_online(nid);
973 ret = register_one_node(nid);
974 BUG_ON(ret);
975 }
cf23422b 976out:
b9ff0360
OS
977 return ret;
978}
979
980/*
981 * Users of this function always want to online/register the node
982 */
983int try_online_node(int nid)
984{
985 int ret;
986
987 mem_hotplug_begin();
c68ab18c 988 ret = __try_online_node(nid, true);
bfc8c901 989 mem_hotplug_done();
cf23422b 990 return ret;
991}
992
27356f54
TK
993static int check_hotplug_memory_range(u64 start, u64 size)
994{
ba325585 995 /* memory range must be block size aligned */
cec3ebd0
DH
996 if (!size || !IS_ALIGNED(start, memory_block_size_bytes()) ||
997 !IS_ALIGNED(size, memory_block_size_bytes())) {
ba325585 998 pr_err("Block size [%#lx] unaligned hotplug range: start %#llx, size %#llx",
cec3ebd0 999 memory_block_size_bytes(), start, size);
27356f54
TK
1000 return -EINVAL;
1001 }
1002
1003 return 0;
1004}
1005
31bc3858
VK
1006static int online_memory_block(struct memory_block *mem, void *arg)
1007{
1adf8b46 1008 mem->online_type = mhp_default_online_type;
dc18d706 1009 return device_online(&mem->dev);
31bc3858
VK
1010}
1011
a08a2ae3
OS
1012bool mhp_supports_memmap_on_memory(unsigned long size)
1013{
1014 unsigned long nr_vmemmap_pages = size / PAGE_SIZE;
1015 unsigned long vmemmap_size = nr_vmemmap_pages * sizeof(struct page);
1016 unsigned long remaining_size = size - vmemmap_size;
1017
1018 /*
1019 * Besides having arch support and the feature enabled at runtime, we
1020 * need a few more assumptions to hold true:
1021 *
1022 * a) We span a single memory block: memory onlining/offlinin;g happens
1023 * in memory block granularity. We don't want the vmemmap of online
1024 * memory blocks to reside on offline memory blocks. In the future,
1025 * we might want to support variable-sized memory blocks to make the
1026 * feature more versatile.
1027 *
1028 * b) The vmemmap pages span complete PMDs: We don't want vmemmap code
1029 * to populate memory from the altmap for unrelated parts (i.e.,
1030 * other memory blocks)
1031 *
1032 * c) The vmemmap pages (and thereby the pages that will be exposed to
1033 * the buddy) have to cover full pageblocks: memory onlining/offlining
1034 * code requires applicable ranges to be page-aligned, for example, to
1035 * set the migratetypes properly.
1036 *
1037 * TODO: Although we have a check here to make sure that vmemmap pages
1038 * fully populate a PMD, it is not the right place to check for
1039 * this. A much better solution involves improving vmemmap code
1040 * to fallback to base pages when trying to populate vmemmap using
1041 * altmap as an alternative source of memory, and we do not exactly
1042 * populate a single PMD.
1043 */
1044 return memmap_on_memory &&
2d7a2171 1045 !hugetlb_free_vmemmap_enabled &&
a08a2ae3
OS
1046 IS_ENABLED(CONFIG_MHP_MEMMAP_ON_MEMORY) &&
1047 size == memory_block_size_bytes() &&
1048 IS_ALIGNED(vmemmap_size, PMD_SIZE) &&
1049 IS_ALIGNED(remaining_size, (pageblock_nr_pages << PAGE_SHIFT));
1050}
1051
8df1d0e4
DH
1052/*
1053 * NOTE: The caller must call lock_device_hotplug() to serialize hotplug
1054 * and online/offline operations (triggered e.g. by sysfs).
1055 *
1056 * we are OK calling __meminit stuff here - we have CONFIG_MEMORY_HOTPLUG
1057 */
b6117199 1058int __ref add_memory_resource(int nid, struct resource *res, mhp_t mhp_flags)
bc02af93 1059{
d15dfd31 1060 struct mhp_params params = { .pgprot = pgprot_mhp(PAGE_KERNEL) };
a08a2ae3 1061 struct vmem_altmap mhp_altmap = {};
62cedb9f 1062 u64 start, size;
b9ff0360 1063 bool new_node = false;
bc02af93
YG
1064 int ret;
1065
62cedb9f
DV
1066 start = res->start;
1067 size = resource_size(res);
1068
27356f54
TK
1069 ret = check_hotplug_memory_range(start, size);
1070 if (ret)
1071 return ret;
1072
fa6d9ec7
VV
1073 if (!node_possible(nid)) {
1074 WARN(1, "node %d was absent from the node_possible_map\n", nid);
1075 return -EINVAL;
1076 }
1077
bfc8c901 1078 mem_hotplug_begin();
ac13c462 1079
52219aea
DH
1080 if (IS_ENABLED(CONFIG_ARCH_KEEP_MEMBLOCK))
1081 memblock_add_node(start, size, nid);
7f36e3e5 1082
c68ab18c 1083 ret = __try_online_node(nid, false);
b9ff0360
OS
1084 if (ret < 0)
1085 goto error;
1086 new_node = ret;
9af3c2de 1087
a08a2ae3
OS
1088 /*
1089 * Self hosted memmap array
1090 */
1091 if (mhp_flags & MHP_MEMMAP_ON_MEMORY) {
1092 if (!mhp_supports_memmap_on_memory(size)) {
1093 ret = -EINVAL;
1094 goto error;
1095 }
1096 mhp_altmap.free = PHYS_PFN(size);
1097 mhp_altmap.base_pfn = PHYS_PFN(start);
1098 params.altmap = &mhp_altmap;
1099 }
1100
bc02af93 1101 /* call arch's memory hotadd */
f5637d3b 1102 ret = arch_add_memory(nid, start, size, &params);
9af3c2de
YG
1103 if (ret < 0)
1104 goto error;
1105
db051a0d 1106 /* create memory block devices after memory was added */
a08a2ae3 1107 ret = create_memory_block_devices(start, size, mhp_altmap.alloc);
db051a0d
DH
1108 if (ret) {
1109 arch_remove_memory(nid, start, size, NULL);
1110 goto error;
1111 }
1112
a1e565aa 1113 if (new_node) {
d5b6f6a3 1114 /* If sysfs file of new node can't be created, cpu on the node
0fc44159
YG
1115 * can't be hot-added. There is no rollback way now.
1116 * So, check by BUG_ON() to catch it reluctantly..
d5b6f6a3 1117 * We online node here. We can't roll back from here.
0fc44159 1118 */
d5b6f6a3
OS
1119 node_set_online(nid);
1120 ret = __register_one_node(nid);
0fc44159
YG
1121 BUG_ON(ret);
1122 }
1123
d5b6f6a3 1124 /* link memory sections under this node.*/
90c7eaeb
LD
1125 link_mem_sections(nid, PFN_DOWN(start), PFN_UP(start + size - 1),
1126 MEMINIT_HOTPLUG);
d5b6f6a3 1127
d96ae530 1128 /* create new memmap entry */
7b7b2721
DH
1129 if (!strcmp(res->name, "System RAM"))
1130 firmware_map_add_hotplug(start, start + size, "System RAM");
d96ae530 1131
381eab4a
DH
1132 /* device_online() will take the lock when calling online_pages() */
1133 mem_hotplug_done();
1134
9ca6551e
DH
1135 /*
1136 * In case we're allowed to merge the resource, flag it and trigger
1137 * merging now that adding succeeded.
1138 */
26011267 1139 if (mhp_flags & MHP_MERGE_RESOURCE)
9ca6551e
DH
1140 merge_system_ram_resource(res);
1141
31bc3858 1142 /* online pages if requested */
1adf8b46 1143 if (mhp_default_online_type != MMOP_OFFLINE)
fbcf73ce 1144 walk_memory_blocks(start, size, NULL, online_memory_block);
31bc3858 1145
381eab4a 1146 return ret;
9af3c2de
YG
1147error:
1148 /* rollback pgdat allocation and others */
b9ff0360
OS
1149 if (new_node)
1150 rollback_node_hotadd(nid);
52219aea
DH
1151 if (IS_ENABLED(CONFIG_ARCH_KEEP_MEMBLOCK))
1152 memblock_remove(start, size);
bfc8c901 1153 mem_hotplug_done();
bc02af93
YG
1154 return ret;
1155}
62cedb9f 1156
8df1d0e4 1157/* requires device_hotplug_lock, see add_memory_resource() */
b6117199 1158int __ref __add_memory(int nid, u64 start, u64 size, mhp_t mhp_flags)
62cedb9f
DV
1159{
1160 struct resource *res;
1161 int ret;
1162
7b7b2721 1163 res = register_memory_resource(start, size, "System RAM");
6f754ba4
VK
1164 if (IS_ERR(res))
1165 return PTR_ERR(res);
62cedb9f 1166
b6117199 1167 ret = add_memory_resource(nid, res, mhp_flags);
62cedb9f
DV
1168 if (ret < 0)
1169 release_memory_resource(res);
1170 return ret;
1171}
8df1d0e4 1172
b6117199 1173int add_memory(int nid, u64 start, u64 size, mhp_t mhp_flags)
8df1d0e4
DH
1174{
1175 int rc;
1176
1177 lock_device_hotplug();
b6117199 1178 rc = __add_memory(nid, start, size, mhp_flags);
8df1d0e4
DH
1179 unlock_device_hotplug();
1180
1181 return rc;
1182}
bc02af93 1183EXPORT_SYMBOL_GPL(add_memory);
0c0e6195 1184
7b7b2721
DH
1185/*
1186 * Add special, driver-managed memory to the system as system RAM. Such
1187 * memory is not exposed via the raw firmware-provided memmap as system
1188 * RAM, instead, it is detected and added by a driver - during cold boot,
1189 * after a reboot, and after kexec.
1190 *
1191 * Reasons why this memory should not be used for the initial memmap of a
1192 * kexec kernel or for placing kexec images:
1193 * - The booting kernel is in charge of determining how this memory will be
1194 * used (e.g., use persistent memory as system RAM)
1195 * - Coordination with a hypervisor is required before this memory
1196 * can be used (e.g., inaccessible parts).
1197 *
1198 * For this memory, no entries in /sys/firmware/memmap ("raw firmware-provided
1199 * memory map") are created. Also, the created memory resource is flagged
7cf603d1 1200 * with IORESOURCE_SYSRAM_DRIVER_MANAGED, so in-kernel users can special-case
7b7b2721
DH
1201 * this memory as well (esp., not place kexec images onto it).
1202 *
1203 * The resource_name (visible via /proc/iomem) has to have the format
1204 * "System RAM ($DRIVER)".
1205 */
1206int add_memory_driver_managed(int nid, u64 start, u64 size,
b6117199 1207 const char *resource_name, mhp_t mhp_flags)
7b7b2721
DH
1208{
1209 struct resource *res;
1210 int rc;
1211
1212 if (!resource_name ||
1213 strstr(resource_name, "System RAM (") != resource_name ||
1214 resource_name[strlen(resource_name) - 1] != ')')
1215 return -EINVAL;
1216
1217 lock_device_hotplug();
1218
1219 res = register_memory_resource(start, size, resource_name);
1220 if (IS_ERR(res)) {
1221 rc = PTR_ERR(res);
1222 goto out_unlock;
1223 }
1224
b6117199 1225 rc = add_memory_resource(nid, res, mhp_flags);
7b7b2721
DH
1226 if (rc < 0)
1227 release_memory_resource(res);
1228
1229out_unlock:
1230 unlock_device_hotplug();
1231 return rc;
1232}
1233EXPORT_SYMBOL_GPL(add_memory_driver_managed);
1234
bca3feaa
AK
1235/*
1236 * Platforms should define arch_get_mappable_range() that provides
1237 * maximum possible addressable physical memory range for which the
1238 * linear mapping could be created. The platform returned address
1239 * range must adhere to these following semantics.
1240 *
1241 * - range.start <= range.end
1242 * - Range includes both end points [range.start..range.end]
1243 *
1244 * There is also a fallback definition provided here, allowing the
1245 * entire possible physical address range in case any platform does
1246 * not define arch_get_mappable_range().
1247 */
1248struct range __weak arch_get_mappable_range(void)
1249{
1250 struct range mhp_range = {
1251 .start = 0UL,
1252 .end = -1ULL,
1253 };
1254 return mhp_range;
1255}
1256
1257struct range mhp_get_pluggable_range(bool need_mapping)
1258{
1259 const u64 max_phys = (1ULL << MAX_PHYSMEM_BITS) - 1;
1260 struct range mhp_range;
1261
1262 if (need_mapping) {
1263 mhp_range = arch_get_mappable_range();
1264 if (mhp_range.start > max_phys) {
1265 mhp_range.start = 0;
1266 mhp_range.end = 0;
1267 }
1268 mhp_range.end = min_t(u64, mhp_range.end, max_phys);
1269 } else {
1270 mhp_range.start = 0;
1271 mhp_range.end = max_phys;
1272 }
1273 return mhp_range;
1274}
1275EXPORT_SYMBOL_GPL(mhp_get_pluggable_range);
1276
1277bool mhp_range_allowed(u64 start, u64 size, bool need_mapping)
1278{
1279 struct range mhp_range = mhp_get_pluggable_range(need_mapping);
1280 u64 end = start + size;
1281
1282 if (start < end && start >= mhp_range.start && (end - 1) <= mhp_range.end)
1283 return true;
1284
1285 pr_warn("Hotplug memory [%#llx-%#llx] exceeds maximum addressable range [%#llx-%#llx]\n",
1286 start, end, mhp_range.start, mhp_range.end);
1287 return false;
1288}
1289
0c0e6195
KH
1290#ifdef CONFIG_MEMORY_HOTREMOVE
1291/*
92917998
DH
1292 * Confirm all pages in a range [start, end) belong to the same zone (skipping
1293 * memory holes). When true, return the zone.
0c0e6195 1294 */
92917998
DH
1295struct zone *test_pages_in_a_zone(unsigned long start_pfn,
1296 unsigned long end_pfn)
0c0e6195 1297{
5f0f2887 1298 unsigned long pfn, sec_end_pfn;
0c0e6195
KH
1299 struct zone *zone = NULL;
1300 struct page *page;
673d40c8 1301
deb88a2a 1302 for (pfn = start_pfn, sec_end_pfn = SECTION_ALIGN_UP(start_pfn + 1);
0c0e6195 1303 pfn < end_pfn;
deb88a2a 1304 pfn = sec_end_pfn, sec_end_pfn += PAGES_PER_SECTION) {
5f0f2887
AB
1305 /* Make sure the memory section is present first */
1306 if (!present_section_nr(pfn_to_section_nr(pfn)))
0c0e6195 1307 continue;
5f0f2887
AB
1308 for (; pfn < sec_end_pfn && pfn < end_pfn;
1309 pfn += MAX_ORDER_NR_PAGES) {
24feb47c 1310 /* Check if we got outside of the zone */
673d40c8 1311 if (zone && !zone_spans_pfn(zone, pfn))
92917998 1312 return NULL;
673d40c8 1313 page = pfn_to_page(pfn);
5f0f2887 1314 if (zone && page_zone(page) != zone)
92917998 1315 return NULL;
5f0f2887
AB
1316 zone = page_zone(page);
1317 }
0c0e6195 1318 }
deb88a2a 1319
92917998 1320 return zone;
0c0e6195
KH
1321}
1322
1323/*
0efadf48 1324 * Scan pfn range [start,end) to find movable/migratable pages (LRU pages,
aa218795
DH
1325 * non-lru movable pages and hugepages). Will skip over most unmovable
1326 * pages (esp., pages that can be skipped when offlining), but bail out on
1327 * definitely unmovable pages.
1328 *
1329 * Returns:
1330 * 0 in case a movable page is found and movable_pfn was updated.
1331 * -ENOENT in case no movable page was found.
1332 * -EBUSY in case a definitely unmovable page was found.
0c0e6195 1333 */
aa218795
DH
1334static int scan_movable_pages(unsigned long start, unsigned long end,
1335 unsigned long *movable_pfn)
0c0e6195
KH
1336{
1337 unsigned long pfn;
eeb0efd0 1338
0c0e6195 1339 for (pfn = start; pfn < end; pfn++) {
eeb0efd0
OS
1340 struct page *page, *head;
1341 unsigned long skip;
1342
1343 if (!pfn_valid(pfn))
1344 continue;
1345 page = pfn_to_page(pfn);
1346 if (PageLRU(page))
aa218795 1347 goto found;
eeb0efd0 1348 if (__PageMovable(page))
aa218795
DH
1349 goto found;
1350
1351 /*
1352 * PageOffline() pages that are not marked __PageMovable() and
1353 * have a reference count > 0 (after MEM_GOING_OFFLINE) are
1354 * definitely unmovable. If their reference count would be 0,
1355 * they could at least be skipped when offlining memory.
1356 */
1357 if (PageOffline(page) && page_count(page))
1358 return -EBUSY;
eeb0efd0
OS
1359
1360 if (!PageHuge(page))
1361 continue;
1362 head = compound_head(page);
8f251a3d
MK
1363 /*
1364 * This test is racy as we hold no reference or lock. The
1365 * hugetlb page could have been free'ed and head is no longer
1366 * a hugetlb page before the following check. In such unlikely
1367 * cases false positives and negatives are possible. Calling
1368 * code must deal with these scenarios.
1369 */
1370 if (HPageMigratable(head))
aa218795 1371 goto found;
d8c6546b 1372 skip = compound_nr(head) - (page - head);
eeb0efd0 1373 pfn += skip - 1;
0c0e6195 1374 }
aa218795
DH
1375 return -ENOENT;
1376found:
1377 *movable_pfn = pfn;
0c0e6195
KH
1378 return 0;
1379}
1380
0c0e6195
KH
1381static int
1382do_migrate_range(unsigned long start_pfn, unsigned long end_pfn)
1383{
1384 unsigned long pfn;
6c357848 1385 struct page *page, *head;
0c0e6195
KH
1386 int ret = 0;
1387 LIST_HEAD(source);
786dee86
LM
1388 static DEFINE_RATELIMIT_STATE(migrate_rs, DEFAULT_RATELIMIT_INTERVAL,
1389 DEFAULT_RATELIMIT_BURST);
0c0e6195 1390
a85009c3 1391 for (pfn = start_pfn; pfn < end_pfn; pfn++) {
0c0e6195
KH
1392 if (!pfn_valid(pfn))
1393 continue;
1394 page = pfn_to_page(pfn);
6c357848 1395 head = compound_head(page);
c8721bbb
NH
1396
1397 if (PageHuge(page)) {
d8c6546b 1398 pfn = page_to_pfn(head) + compound_nr(head) - 1;
daf3538a 1399 isolate_huge_page(head, &source);
c8721bbb 1400 continue;
94723aaf 1401 } else if (PageTransHuge(page))
6c357848 1402 pfn = page_to_pfn(head) + thp_nr_pages(page) - 1;
c8721bbb 1403
b15c8726
MH
1404 /*
1405 * HWPoison pages have elevated reference counts so the migration would
1406 * fail on them. It also doesn't make any sense to migrate them in the
1407 * first place. Still try to unmap such a page in case it is still mapped
1408 * (e.g. current hwpoison implementation doesn't unmap KSM pages but keep
1409 * the unmap as the catch all safety net).
1410 */
1411 if (PageHWPoison(page)) {
1412 if (WARN_ON(PageLRU(page)))
1413 isolate_lru_page(page);
1414 if (page_mapped(page))
013339df 1415 try_to_unmap(page, TTU_IGNORE_MLOCK);
b15c8726
MH
1416 continue;
1417 }
1418
700c2a46 1419 if (!get_page_unless_zero(page))
0c0e6195
KH
1420 continue;
1421 /*
0efadf48
YX
1422 * We can skip free pages. And we can deal with pages on
1423 * LRU and non-lru movable pages.
0c0e6195 1424 */
0efadf48
YX
1425 if (PageLRU(page))
1426 ret = isolate_lru_page(page);
1427 else
1428 ret = isolate_movable_page(page, ISOLATE_UNEVICTABLE);
0c0e6195 1429 if (!ret) { /* Success */
62695a84 1430 list_add_tail(&page->lru, &source);
0efadf48
YX
1431 if (!__PageMovable(page))
1432 inc_node_page_state(page, NR_ISOLATED_ANON +
9de4f22a 1433 page_is_file_lru(page));
6d9c285a 1434
0c0e6195 1435 } else {
786dee86
LM
1436 if (__ratelimit(&migrate_rs)) {
1437 pr_warn("failed to isolate pfn %lx\n", pfn);
1438 dump_page(page, "isolation failed");
1439 }
0c0e6195 1440 }
1723058e 1441 put_page(page);
0c0e6195 1442 }
f3ab2636 1443 if (!list_empty(&source)) {
203e6e5c
JK
1444 nodemask_t nmask = node_states[N_MEMORY];
1445 struct migration_target_control mtc = {
1446 .nmask = &nmask,
1447 .gfp_mask = GFP_USER | __GFP_MOVABLE | __GFP_RETRY_MAYFAIL,
1448 };
1449
1450 /*
1451 * We have checked that migration range is on a single zone so
1452 * we can use the nid of the first page to all the others.
1453 */
1454 mtc.nid = page_to_nid(list_first_entry(&source, struct page, lru));
1455
1456 /*
1457 * try to allocate from a different node but reuse this node
1458 * if there are no other online nodes to be used (e.g. we are
1459 * offlining a part of the only existing node)
1460 */
1461 node_clear(mtc.nid, nmask);
1462 if (nodes_empty(nmask))
1463 node_set(mtc.nid, nmask);
1464 ret = migrate_pages(&source, alloc_migration_target, NULL,
1465 (unsigned long)&mtc, MIGRATE_SYNC, MR_MEMORY_HOTPLUG);
2932c8b0
MH
1466 if (ret) {
1467 list_for_each_entry(page, &source, lru) {
786dee86
LM
1468 if (__ratelimit(&migrate_rs)) {
1469 pr_warn("migrating pfn %lx failed ret:%d\n",
1470 page_to_pfn(page), ret);
1471 dump_page(page, "migration failure");
1472 }
2932c8b0 1473 }
c8721bbb 1474 putback_movable_pages(&source);
2932c8b0 1475 }
0c0e6195 1476 }
1723058e 1477
0c0e6195
KH
1478 return ret;
1479}
1480
c5320926
TC
1481static int __init cmdline_parse_movable_node(char *p)
1482{
55ac590c 1483 movable_node_enabled = true;
c5320926
TC
1484 return 0;
1485}
1486early_param("movable_node", cmdline_parse_movable_node);
1487
d9713679
LJ
1488/* check which state of node_states will be changed when offline memory */
1489static void node_states_check_changes_offline(unsigned long nr_pages,
1490 struct zone *zone, struct memory_notify *arg)
1491{
1492 struct pglist_data *pgdat = zone->zone_pgdat;
1493 unsigned long present_pages = 0;
86b27bea 1494 enum zone_type zt;
d9713679 1495
98fa15f3
AK
1496 arg->status_change_nid = NUMA_NO_NODE;
1497 arg->status_change_nid_normal = NUMA_NO_NODE;
1498 arg->status_change_nid_high = NUMA_NO_NODE;
d9713679
LJ
1499
1500 /*
86b27bea
OS
1501 * Check whether node_states[N_NORMAL_MEMORY] will be changed.
1502 * If the memory to be offline is within the range
1503 * [0..ZONE_NORMAL], and it is the last present memory there,
1504 * the zones in that range will become empty after the offlining,
1505 * thus we can determine that we need to clear the node from
1506 * node_states[N_NORMAL_MEMORY].
d9713679 1507 */
86b27bea 1508 for (zt = 0; zt <= ZONE_NORMAL; zt++)
d9713679 1509 present_pages += pgdat->node_zones[zt].present_pages;
86b27bea 1510 if (zone_idx(zone) <= ZONE_NORMAL && nr_pages >= present_pages)
d9713679 1511 arg->status_change_nid_normal = zone_to_nid(zone);
d9713679 1512
6715ddf9
LJ
1513#ifdef CONFIG_HIGHMEM
1514 /*
86b27bea
OS
1515 * node_states[N_HIGH_MEMORY] contains nodes which
1516 * have normal memory or high memory.
1517 * Here we add the present_pages belonging to ZONE_HIGHMEM.
1518 * If the zone is within the range of [0..ZONE_HIGHMEM), and
1519 * we determine that the zones in that range become empty,
1520 * we need to clear the node for N_HIGH_MEMORY.
6715ddf9 1521 */
86b27bea
OS
1522 present_pages += pgdat->node_zones[ZONE_HIGHMEM].present_pages;
1523 if (zone_idx(zone) <= ZONE_HIGHMEM && nr_pages >= present_pages)
6715ddf9 1524 arg->status_change_nid_high = zone_to_nid(zone);
6715ddf9
LJ
1525#endif
1526
d9713679 1527 /*
86b27bea
OS
1528 * We have accounted the pages from [0..ZONE_NORMAL), and
1529 * in case of CONFIG_HIGHMEM the pages from ZONE_HIGHMEM
1530 * as well.
1531 * Here we count the possible pages from ZONE_MOVABLE.
1532 * If after having accounted all the pages, we see that the nr_pages
1533 * to be offlined is over or equal to the accounted pages,
1534 * we know that the node will become empty, and so, we can clear
1535 * it for N_MEMORY as well.
d9713679 1536 */
86b27bea 1537 present_pages += pgdat->node_zones[ZONE_MOVABLE].present_pages;
d9713679 1538
d9713679
LJ
1539 if (nr_pages >= present_pages)
1540 arg->status_change_nid = zone_to_nid(zone);
d9713679
LJ
1541}
1542
1543static void node_states_clear_node(int node, struct memory_notify *arg)
1544{
1545 if (arg->status_change_nid_normal >= 0)
1546 node_clear_state(node, N_NORMAL_MEMORY);
1547
cf01f6f5 1548 if (arg->status_change_nid_high >= 0)
d9713679 1549 node_clear_state(node, N_HIGH_MEMORY);
6715ddf9 1550
cf01f6f5 1551 if (arg->status_change_nid >= 0)
6715ddf9 1552 node_clear_state(node, N_MEMORY);
d9713679
LJ
1553}
1554
c5e79ef5
DH
1555static int count_system_ram_pages_cb(unsigned long start_pfn,
1556 unsigned long nr_pages, void *data)
1557{
1558 unsigned long *nr_system_ram_pages = data;
1559
1560 *nr_system_ram_pages += nr_pages;
1561 return 0;
1562}
1563
73a11c96 1564int __ref offline_pages(unsigned long start_pfn, unsigned long nr_pages)
0c0e6195 1565{
73a11c96 1566 const unsigned long end_pfn = start_pfn + nr_pages;
0a1a9a00 1567 unsigned long pfn, system_ram_pages = 0;
d702909f 1568 unsigned long flags;
0c0e6195 1569 struct zone *zone;
7b78d335 1570 struct memory_notify arg;
ea15153c 1571 int ret, node;
79605093 1572 char *reason;
0c0e6195 1573
dd8e2f23
OS
1574 /*
1575 * {on,off}lining is constrained to full memory sections (or more
041711ce 1576 * precisely to memory blocks from the user space POV).
dd8e2f23
OS
1577 * memmap_on_memory is an exception because it reserves initial part
1578 * of the physical memory space for vmemmaps. That space is pageblock
1579 * aligned.
1580 */
4986fac1 1581 if (WARN_ON_ONCE(!nr_pages ||
dd8e2f23
OS
1582 !IS_ALIGNED(start_pfn, pageblock_nr_pages) ||
1583 !IS_ALIGNED(start_pfn + nr_pages, PAGES_PER_SECTION)))
4986fac1
DH
1584 return -EINVAL;
1585
381eab4a
DH
1586 mem_hotplug_begin();
1587
c5e79ef5
DH
1588 /*
1589 * Don't allow to offline memory blocks that contain holes.
1590 * Consequently, memory blocks with holes can never get onlined
1591 * via the hotplug path - online_pages() - as hotplugged memory has
1592 * no holes. This way, we e.g., don't have to worry about marking
1593 * memory holes PG_reserved, don't need pfn_valid() checks, and can
1594 * avoid using walk_system_ram_range() later.
1595 */
73a11c96 1596 walk_system_ram_range(start_pfn, nr_pages, &system_ram_pages,
c5e79ef5 1597 count_system_ram_pages_cb);
73a11c96 1598 if (system_ram_pages != nr_pages) {
c5e79ef5
DH
1599 ret = -EINVAL;
1600 reason = "memory holes";
1601 goto failed_removal;
1602 }
1603
0c0e6195
KH
1604 /* This makes hotplug much easier...and readable.
1605 we assume this for now. .*/
92917998
DH
1606 zone = test_pages_in_a_zone(start_pfn, end_pfn);
1607 if (!zone) {
79605093
MH
1608 ret = -EINVAL;
1609 reason = "multizone range";
1610 goto failed_removal;
381eab4a 1611 }
7b78d335 1612 node = zone_to_nid(zone);
7b78d335 1613
ec6e8c7e
VB
1614 /*
1615 * Disable pcplists so that page isolation cannot race with freeing
1616 * in a way that pages from isolated pageblock are left on pcplists.
1617 */
1618 zone_pcp_disable(zone);
d479960e 1619 lru_cache_disable();
ec6e8c7e 1620
0c0e6195 1621 /* set above range as isolated */
b023f468 1622 ret = start_isolate_page_range(start_pfn, end_pfn,
d381c547 1623 MIGRATE_MOVABLE,
756d25be 1624 MEMORY_OFFLINE | REPORT_FAILURE);
3fa0c7c7 1625 if (ret) {
79605093 1626 reason = "failure to isolate range";
ec6e8c7e 1627 goto failed_removal_pcplists_disabled;
381eab4a 1628 }
7b78d335
YG
1629
1630 arg.start_pfn = start_pfn;
1631 arg.nr_pages = nr_pages;
d9713679 1632 node_states_check_changes_offline(nr_pages, zone, &arg);
7b78d335
YG
1633
1634 ret = memory_notify(MEM_GOING_OFFLINE, &arg);
1635 ret = notifier_to_errno(ret);
79605093
MH
1636 if (ret) {
1637 reason = "notifier failure";
1638 goto failed_removal_isolated;
1639 }
7b78d335 1640
bb8965bd 1641 do {
aa218795
DH
1642 pfn = start_pfn;
1643 do {
bb8965bd
MH
1644 if (signal_pending(current)) {
1645 ret = -EINTR;
1646 reason = "signal backoff";
1647 goto failed_removal_isolated;
1648 }
72b39cfc 1649
bb8965bd 1650 cond_resched();
bb8965bd 1651
aa218795
DH
1652 ret = scan_movable_pages(pfn, end_pfn, &pfn);
1653 if (!ret) {
bb8965bd
MH
1654 /*
1655 * TODO: fatal migration failures should bail
1656 * out
1657 */
1658 do_migrate_range(pfn, end_pfn);
1659 }
aa218795
DH
1660 } while (!ret);
1661
1662 if (ret != -ENOENT) {
1663 reason = "unmovable page";
1664 goto failed_removal_isolated;
bb8965bd 1665 }
0c0e6195 1666
bb8965bd
MH
1667 /*
1668 * Dissolve free hugepages in the memory block before doing
1669 * offlining actually in order to make hugetlbfs's object
1670 * counting consistent.
1671 */
1672 ret = dissolve_free_huge_pages(start_pfn, end_pfn);
1673 if (ret) {
1674 reason = "failure to dissolve huge pages";
1675 goto failed_removal_isolated;
1676 }
0a1a9a00 1677
0a1a9a00 1678 ret = test_pages_isolated(start_pfn, end_pfn, MEMORY_OFFLINE);
ec6e8c7e 1679
5557c766 1680 } while (ret);
72b39cfc 1681
0a1a9a00
DH
1682 /* Mark all sections offline and remove free pages from the buddy. */
1683 __offline_isolated_pages(start_pfn, end_pfn);
7c33023a 1684 pr_debug("Offlined Pages %ld\n", nr_pages);
0a1a9a00 1685
9b7ea46a 1686 /*
b30c5927
DH
1687 * The memory sections are marked offline, and the pageblock flags
1688 * effectively stale; nobody should be touching them. Fixup the number
1689 * of isolated pageblocks, memory onlining will properly revert this.
9b7ea46a
QC
1690 */
1691 spin_lock_irqsave(&zone->lock, flags);
ea15153c 1692 zone->nr_isolate_pageblock -= nr_pages / pageblock_nr_pages;
9b7ea46a
QC
1693 spin_unlock_irqrestore(&zone->lock, flags);
1694
d479960e 1695 lru_cache_enable();
ec6e8c7e
VB
1696 zone_pcp_enable(zone);
1697
0c0e6195 1698 /* removal success */
0a1a9a00 1699 adjust_managed_page_count(pfn_to_page(start_pfn), -nr_pages);
f9901144 1700 adjust_present_page_count(zone, -nr_pages);
7b78d335 1701
b92ca18e 1702 /* reinitialise watermarks and update pcp limits */
1b79acc9
KM
1703 init_per_zone_wmark_min();
1704
1e8537ba 1705 if (!populated_zone(zone)) {
340175b7 1706 zone_pcp_reset(zone);
72675e13 1707 build_all_zonelists(NULL);
b92ca18e 1708 }
340175b7 1709
d9713679 1710 node_states_clear_node(node, &arg);
698b1b30 1711 if (arg.status_change_nid >= 0) {
8fe23e05 1712 kswapd_stop(node);
698b1b30
VB
1713 kcompactd_stop(node);
1714 }
bce7394a 1715
0c0e6195 1716 writeback_set_ratelimit();
7b78d335
YG
1717
1718 memory_notify(MEM_OFFLINE, &arg);
feee6b29 1719 remove_pfn_range_from_zone(zone, start_pfn, nr_pages);
381eab4a 1720 mem_hotplug_done();
0c0e6195
KH
1721 return 0;
1722
79605093
MH
1723failed_removal_isolated:
1724 undo_isolate_page_range(start_pfn, end_pfn, MIGRATE_MOVABLE);
c4efe484 1725 memory_notify(MEM_CANCEL_OFFLINE, &arg);
ec6e8c7e 1726failed_removal_pcplists_disabled:
946746d1 1727 lru_cache_enable();
ec6e8c7e 1728 zone_pcp_enable(zone);
0c0e6195 1729failed_removal:
79605093 1730 pr_debug("memory offlining [mem %#010llx-%#010llx] failed due to %s\n",
e33e33b4 1731 (unsigned long long) start_pfn << PAGE_SHIFT,
79605093
MH
1732 ((unsigned long long) end_pfn << PAGE_SHIFT) - 1,
1733 reason);
0c0e6195 1734 /* pushback to free area */
381eab4a 1735 mem_hotplug_done();
0c0e6195
KH
1736 return ret;
1737}
71088785 1738
d6de9d53 1739static int check_memblock_offlined_cb(struct memory_block *mem, void *arg)
bbc76be6
WC
1740{
1741 int ret = !is_memblock_offlined(mem);
1742
349daa0f
RD
1743 if (unlikely(ret)) {
1744 phys_addr_t beginpa, endpa;
1745
1746 beginpa = PFN_PHYS(section_nr_to_pfn(mem->start_section_nr));
b6c88d3b 1747 endpa = beginpa + memory_block_size_bytes() - 1;
756a025f 1748 pr_warn("removing memory fails, because memory [%pa-%pa] is onlined\n",
349daa0f 1749 &beginpa, &endpa);
bbc76be6 1750
eca499ab
PT
1751 return -EBUSY;
1752 }
1753 return 0;
bbc76be6
WC
1754}
1755
a08a2ae3
OS
1756static int get_nr_vmemmap_pages_cb(struct memory_block *mem, void *arg)
1757{
1758 /*
1759 * If not set, continue with the next block.
1760 */
1761 return mem->nr_vmemmap_pages;
1762}
1763
0f1cfe9d 1764static int check_cpu_on_node(pg_data_t *pgdat)
60a5a19e 1765{
60a5a19e
TC
1766 int cpu;
1767
1768 for_each_present_cpu(cpu) {
1769 if (cpu_to_node(cpu) == pgdat->node_id)
1770 /*
1771 * the cpu on this node isn't removed, and we can't
1772 * offline this node.
1773 */
1774 return -EBUSY;
1775 }
1776
1777 return 0;
1778}
1779
2c91f8fc
DH
1780static int check_no_memblock_for_node_cb(struct memory_block *mem, void *arg)
1781{
1782 int nid = *(int *)arg;
1783
1784 /*
1785 * If a memory block belongs to multiple nodes, the stored nid is not
1786 * reliable. However, such blocks are always online (e.g., cannot get
1787 * offlined) and, therefore, are still spanned by the node.
1788 */
1789 return mem->nid == nid ? -EEXIST : 0;
1790}
1791
0f1cfe9d
TK
1792/**
1793 * try_offline_node
e8b098fc 1794 * @nid: the node ID
0f1cfe9d
TK
1795 *
1796 * Offline a node if all memory sections and cpus of the node are removed.
1797 *
1798 * NOTE: The caller must call lock_device_hotplug() to serialize hotplug
1799 * and online/offline operations before this call.
1800 */
90b30cdc 1801void try_offline_node(int nid)
60a5a19e 1802{
d822b86a 1803 pg_data_t *pgdat = NODE_DATA(nid);
2c91f8fc 1804 int rc;
60a5a19e 1805
2c91f8fc
DH
1806 /*
1807 * If the node still spans pages (especially ZONE_DEVICE), don't
1808 * offline it. A node spans memory after move_pfn_range_to_zone(),
1809 * e.g., after the memory block was onlined.
1810 */
1811 if (pgdat->node_spanned_pages)
1812 return;
60a5a19e 1813
2c91f8fc
DH
1814 /*
1815 * Especially offline memory blocks might not be spanned by the
1816 * node. They will get spanned by the node once they get onlined.
1817 * However, they link to the node in sysfs and can get onlined later.
1818 */
1819 rc = for_each_memory_block(&nid, check_no_memblock_for_node_cb);
1820 if (rc)
60a5a19e 1821 return;
60a5a19e 1822
46a3679b 1823 if (check_cpu_on_node(pgdat))
60a5a19e
TC
1824 return;
1825
1826 /*
1827 * all memory/cpu of this node are removed, we can offline this
1828 * node now.
1829 */
1830 node_set_offline(nid);
1831 unregister_one_node(nid);
1832}
90b30cdc 1833EXPORT_SYMBOL(try_offline_node);
60a5a19e 1834
eca499ab 1835static int __ref try_remove_memory(int nid, u64 start, u64 size)
bbc76be6 1836{
eca499ab 1837 int rc = 0;
a08a2ae3
OS
1838 struct vmem_altmap mhp_altmap = {};
1839 struct vmem_altmap *altmap = NULL;
1840 unsigned long nr_vmemmap_pages;
993c1aad 1841
27356f54
TK
1842 BUG_ON(check_hotplug_memory_range(start, size));
1843
6677e3ea 1844 /*
242831eb 1845 * All memory blocks must be offlined before removing memory. Check
eca499ab 1846 * whether all memory blocks in question are offline and return error
242831eb 1847 * if this is not the case.
6677e3ea 1848 */
fbcf73ce 1849 rc = walk_memory_blocks(start, size, NULL, check_memblock_offlined_cb);
eca499ab 1850 if (rc)
b4223a51 1851 return rc;
6677e3ea 1852
a08a2ae3
OS
1853 /*
1854 * We only support removing memory added with MHP_MEMMAP_ON_MEMORY in
1855 * the same granularity it was added - a single memory block.
1856 */
1857 if (memmap_on_memory) {
1858 nr_vmemmap_pages = walk_memory_blocks(start, size, NULL,
1859 get_nr_vmemmap_pages_cb);
1860 if (nr_vmemmap_pages) {
1861 if (size != memory_block_size_bytes()) {
1862 pr_warn("Refuse to remove %#llx - %#llx,"
1863 "wrong granularity\n",
1864 start, start + size);
1865 return -EINVAL;
1866 }
1867
1868 /*
1869 * Let remove_pmd_table->free_hugepage_table do the
1870 * right thing if we used vmem_altmap when hot-adding
1871 * the range.
1872 */
1873 mhp_altmap.alloc = nr_vmemmap_pages;
1874 altmap = &mhp_altmap;
1875 }
1876 }
1877
46c66c4b
YI
1878 /* remove memmap entry */
1879 firmware_map_remove(start, start + size, "System RAM");
4c4b7f9b 1880
f1037ec0
DW
1881 /*
1882 * Memory block device removal under the device_hotplug_lock is
1883 * a barrier against racing online attempts.
1884 */
4c4b7f9b 1885 remove_memory_block_devices(start, size);
46c66c4b 1886
f1037ec0
DW
1887 mem_hotplug_begin();
1888
a08a2ae3 1889 arch_remove_memory(nid, start, size, altmap);
52219aea
DH
1890
1891 if (IS_ENABLED(CONFIG_ARCH_KEEP_MEMBLOCK)) {
1892 memblock_free(start, size);
1893 memblock_remove(start, size);
1894 }
1895
cb8e3c8b 1896 release_mem_region_adjustable(start, size);
24d335ca 1897
60a5a19e
TC
1898 try_offline_node(nid);
1899
bfc8c901 1900 mem_hotplug_done();
b4223a51 1901 return 0;
71088785 1902}
d15e5926 1903
eca499ab 1904/**
5640c9ca 1905 * __remove_memory - Remove memory if every memory block is offline
eca499ab
PT
1906 * @nid: the node ID
1907 * @start: physical address of the region to remove
1908 * @size: size of the region to remove
1909 *
1910 * NOTE: The caller must call lock_device_hotplug() to serialize hotplug
1911 * and online/offline operations before this call, as required by
1912 * try_offline_node().
1913 */
1914void __remove_memory(int nid, u64 start, u64 size)
1915{
1916
1917 /*
29a90db9 1918 * trigger BUG() if some memory is not offlined prior to calling this
eca499ab
PT
1919 * function
1920 */
1921 if (try_remove_memory(nid, start, size))
1922 BUG();
1923}
1924
1925/*
1926 * Remove memory if every memory block is offline, otherwise return -EBUSY is
1927 * some memory is not offline
1928 */
1929int remove_memory(int nid, u64 start, u64 size)
d15e5926 1930{
eca499ab
PT
1931 int rc;
1932
d15e5926 1933 lock_device_hotplug();
eca499ab 1934 rc = try_remove_memory(nid, start, size);
d15e5926 1935 unlock_device_hotplug();
eca499ab
PT
1936
1937 return rc;
d15e5926 1938}
71088785 1939EXPORT_SYMBOL_GPL(remove_memory);
08b3acd7 1940
8dc4bb58
DH
1941static int try_offline_memory_block(struct memory_block *mem, void *arg)
1942{
1943 uint8_t online_type = MMOP_ONLINE_KERNEL;
1944 uint8_t **online_types = arg;
1945 struct page *page;
1946 int rc;
1947
1948 /*
1949 * Sense the online_type via the zone of the memory block. Offlining
1950 * with multiple zones within one memory block will be rejected
1951 * by offlining code ... so we don't care about that.
1952 */
1953 page = pfn_to_online_page(section_nr_to_pfn(mem->start_section_nr));
1954 if (page && zone_idx(page_zone(page)) == ZONE_MOVABLE)
1955 online_type = MMOP_ONLINE_MOVABLE;
1956
1957 rc = device_offline(&mem->dev);
1958 /*
1959 * Default is MMOP_OFFLINE - change it only if offlining succeeded,
1960 * so try_reonline_memory_block() can do the right thing.
1961 */
1962 if (!rc)
1963 **online_types = online_type;
1964
1965 (*online_types)++;
1966 /* Ignore if already offline. */
1967 return rc < 0 ? rc : 0;
1968}
1969
1970static int try_reonline_memory_block(struct memory_block *mem, void *arg)
1971{
1972 uint8_t **online_types = arg;
1973 int rc;
1974
1975 if (**online_types != MMOP_OFFLINE) {
1976 mem->online_type = **online_types;
1977 rc = device_online(&mem->dev);
1978 if (rc < 0)
1979 pr_warn("%s: Failed to re-online memory: %d",
1980 __func__, rc);
1981 }
1982
1983 /* Continue processing all remaining memory blocks. */
1984 (*online_types)++;
1985 return 0;
1986}
1987
08b3acd7 1988/*
8dc4bb58
DH
1989 * Try to offline and remove memory. Might take a long time to finish in case
1990 * memory is still in use. Primarily useful for memory devices that logically
1991 * unplugged all memory (so it's no longer in use) and want to offline + remove
1992 * that memory.
08b3acd7
DH
1993 */
1994int offline_and_remove_memory(int nid, u64 start, u64 size)
1995{
8dc4bb58
DH
1996 const unsigned long mb_count = size / memory_block_size_bytes();
1997 uint8_t *online_types, *tmp;
1998 int rc;
08b3acd7
DH
1999
2000 if (!IS_ALIGNED(start, memory_block_size_bytes()) ||
8dc4bb58
DH
2001 !IS_ALIGNED(size, memory_block_size_bytes()) || !size)
2002 return -EINVAL;
2003
2004 /*
2005 * We'll remember the old online type of each memory block, so we can
2006 * try to revert whatever we did when offlining one memory block fails
2007 * after offlining some others succeeded.
2008 */
2009 online_types = kmalloc_array(mb_count, sizeof(*online_types),
2010 GFP_KERNEL);
2011 if (!online_types)
2012 return -ENOMEM;
2013 /*
2014 * Initialize all states to MMOP_OFFLINE, so when we abort processing in
2015 * try_offline_memory_block(), we'll skip all unprocessed blocks in
2016 * try_reonline_memory_block().
2017 */
2018 memset(online_types, MMOP_OFFLINE, mb_count);
08b3acd7
DH
2019
2020 lock_device_hotplug();
8dc4bb58
DH
2021
2022 tmp = online_types;
2023 rc = walk_memory_blocks(start, size, &tmp, try_offline_memory_block);
08b3acd7
DH
2024
2025 /*
8dc4bb58 2026 * In case we succeeded to offline all memory, remove it.
08b3acd7
DH
2027 * This cannot fail as it cannot get onlined in the meantime.
2028 */
2029 if (!rc) {
2030 rc = try_remove_memory(nid, start, size);
8dc4bb58
DH
2031 if (rc)
2032 pr_err("%s: Failed to remove memory: %d", __func__, rc);
2033 }
2034
2035 /*
2036 * Rollback what we did. While memory onlining might theoretically fail
2037 * (nacked by a notifier), it barely ever happens.
2038 */
2039 if (rc) {
2040 tmp = online_types;
2041 walk_memory_blocks(start, size, &tmp,
2042 try_reonline_memory_block);
08b3acd7
DH
2043 }
2044 unlock_device_hotplug();
2045
8dc4bb58 2046 kfree(online_types);
08b3acd7
DH
2047 return rc;
2048}
2049EXPORT_SYMBOL_GPL(offline_and_remove_memory);
aba6efc4 2050#endif /* CONFIG_MEMORY_HOTREMOVE */