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1/*
2 * bootmem - A boot-time physical memory allocator and configurator
3 *
4 * Copyright (C) 1999 Ingo Molnar
5 * 1999 Kanoj Sarcar, SGI
6 * 2008 Johannes Weiner
7 *
8 * Access to this subsystem has to be serialized externally (which is true
9 * for the boot process anyway).
10 */
11#include <linux/init.h>
12#include <linux/pfn.h>
13#include <linux/slab.h>
14#include <linux/bootmem.h>
15#include <linux/export.h>
16#include <linux/kmemleak.h>
17#include <linux/range.h>
18#include <linux/memblock.h>
19
20#include <asm/bug.h>
21#include <asm/io.h>
22#include <asm/processor.h>
23
24#include "internal.h"
25
26#ifndef CONFIG_NEED_MULTIPLE_NODES
27struct pglist_data __refdata contig_page_data;
28EXPORT_SYMBOL(contig_page_data);
29#endif
30
31unsigned long max_low_pfn;
32unsigned long min_low_pfn;
33unsigned long max_pfn;
34unsigned long long max_possible_pfn;
35
36static void * __init __alloc_memory_core_early(int nid, u64 size, u64 align,
37 u64 goal, u64 limit)
38{
39 void *ptr;
40 u64 addr;
41 ulong flags = choose_memblock_flags();
42
43 if (limit > memblock.current_limit)
44 limit = memblock.current_limit;
45
46again:
47 addr = memblock_find_in_range_node(size, align, goal, limit, nid,
48 flags);
49 if (!addr && (flags & MEMBLOCK_MIRROR)) {
50 flags &= ~MEMBLOCK_MIRROR;
51 pr_warn("Could not allocate %pap bytes of mirrored memory\n",
52 &size);
53 goto again;
54 }
55 if (!addr)
56 return NULL;
57
58 if (memblock_reserve(addr, size))
59 return NULL;
60
61 ptr = phys_to_virt(addr);
62 memset(ptr, 0, size);
63 /*
64 * The min_count is set to 0 so that bootmem allocated blocks
65 * are never reported as leaks.
66 */
67 kmemleak_alloc(ptr, size, 0, 0);
68 return ptr;
69}
70
71/*
72 * free_bootmem_late - free bootmem pages directly to page allocator
73 * @addr: starting address of the range
74 * @size: size of the range in bytes
75 *
76 * This is only useful when the bootmem allocator has already been torn
77 * down, but we are still initializing the system. Pages are given directly
78 * to the page allocator, no bootmem metadata is updated because it is gone.
79 */
80void __init free_bootmem_late(unsigned long addr, unsigned long size)
81{
82 unsigned long cursor, end;
83
84 kmemleak_free_part(__va(addr), size);
85
86 cursor = PFN_UP(addr);
87 end = PFN_DOWN(addr + size);
88
89 for (; cursor < end; cursor++) {
90 __free_pages_bootmem(pfn_to_page(cursor), cursor, 0);
91 totalram_pages++;
92 }
93}
94
95static void __init __free_pages_memory(unsigned long start, unsigned long end)
96{
97 int order;
98
99 while (start < end) {
100 order = min(MAX_ORDER - 1UL, __ffs(start));
101
102 while (start + (1UL << order) > end)
103 order--;
104
105 __free_pages_bootmem(pfn_to_page(start), start, order);
106
107 start += (1UL << order);
108 }
109}
110
111static unsigned long __init __free_memory_core(phys_addr_t start,
112 phys_addr_t end)
113{
114 unsigned long start_pfn = PFN_UP(start);
115 unsigned long end_pfn = min_t(unsigned long,
116 PFN_DOWN(end), max_low_pfn);
117
118 if (start_pfn > end_pfn)
119 return 0;
120
121 __free_pages_memory(start_pfn, end_pfn);
122
123 return end_pfn - start_pfn;
124}
125
126static unsigned long __init free_low_memory_core_early(void)
127{
128 unsigned long count = 0;
129 phys_addr_t start, end;
130 u64 i;
131
132 memblock_clear_hotplug(0, -1);
133
134 for_each_reserved_mem_region(i, &start, &end)
135 reserve_bootmem_region(start, end);
136
137 for_each_free_mem_range(i, NUMA_NO_NODE, MEMBLOCK_NONE, &start, &end,
138 NULL)
139 count += __free_memory_core(start, end);
140
141#ifdef CONFIG_ARCH_DISCARD_MEMBLOCK
142 {
143 phys_addr_t size;
144
145 /* Free memblock.reserved array if it was allocated */
146 size = get_allocated_memblock_reserved_regions_info(&start);
147 if (size)
148 count += __free_memory_core(start, start + size);
149
150 /* Free memblock.memory array if it was allocated */
151 size = get_allocated_memblock_memory_regions_info(&start);
152 if (size)
153 count += __free_memory_core(start, start + size);
154 }
155#endif
156
157 return count;
158}
159
160static int reset_managed_pages_done __initdata;
161
162void reset_node_managed_pages(pg_data_t *pgdat)
163{
164 struct zone *z;
165
166 for (z = pgdat->node_zones; z < pgdat->node_zones + MAX_NR_ZONES; z++)
167 z->managed_pages = 0;
168}
169
170void __init reset_all_zones_managed_pages(void)
171{
172 struct pglist_data *pgdat;
173
174 if (reset_managed_pages_done)
175 return;
176
177 for_each_online_pgdat(pgdat)
178 reset_node_managed_pages(pgdat);
179
180 reset_managed_pages_done = 1;
181}
182
183/**
184 * free_all_bootmem - release free pages to the buddy allocator
185 *
186 * Returns the number of pages actually released.
187 */
188unsigned long __init free_all_bootmem(void)
189{
190 unsigned long pages;
191
192 reset_all_zones_managed_pages();
193
194 /*
195 * We need to use NUMA_NO_NODE instead of NODE_DATA(0)->node_id
196 * because in some case like Node0 doesn't have RAM installed
197 * low ram will be on Node1
198 */
199 pages = free_low_memory_core_early();
200 totalram_pages += pages;
201
202 return pages;
203}
204
205/**
206 * free_bootmem_node - mark a page range as usable
207 * @pgdat: node the range resides on
208 * @physaddr: starting address of the range
209 * @size: size of the range in bytes
210 *
211 * Partial pages will be considered reserved and left as they are.
212 *
213 * The range must reside completely on the specified node.
214 */
215void __init free_bootmem_node(pg_data_t *pgdat, unsigned long physaddr,
216 unsigned long size)
217{
218 memblock_free(physaddr, size);
219}
220
221/**
222 * free_bootmem - mark a page range as usable
223 * @addr: starting address of the range
224 * @size: size of the range in bytes
225 *
226 * Partial pages will be considered reserved and left as they are.
227 *
228 * The range must be contiguous but may span node boundaries.
229 */
230void __init free_bootmem(unsigned long addr, unsigned long size)
231{
232 memblock_free(addr, size);
233}
234
235static void * __init ___alloc_bootmem_nopanic(unsigned long size,
236 unsigned long align,
237 unsigned long goal,
238 unsigned long limit)
239{
240 void *ptr;
241
242 if (WARN_ON_ONCE(slab_is_available()))
243 return kzalloc(size, GFP_NOWAIT);
244
245restart:
246
247 ptr = __alloc_memory_core_early(NUMA_NO_NODE, size, align, goal, limit);
248
249 if (ptr)
250 return ptr;
251
252 if (goal != 0) {
253 goal = 0;
254 goto restart;
255 }
256
257 return NULL;
258}
259
260/**
261 * __alloc_bootmem_nopanic - allocate boot memory without panicking
262 * @size: size of the request in bytes
263 * @align: alignment of the region
264 * @goal: preferred starting address of the region
265 *
266 * The goal is dropped if it can not be satisfied and the allocation will
267 * fall back to memory below @goal.
268 *
269 * Allocation may happen on any node in the system.
270 *
271 * Returns NULL on failure.
272 */
273void * __init __alloc_bootmem_nopanic(unsigned long size, unsigned long align,
274 unsigned long goal)
275{
276 unsigned long limit = -1UL;
277
278 return ___alloc_bootmem_nopanic(size, align, goal, limit);
279}
280
281static void * __init ___alloc_bootmem(unsigned long size, unsigned long align,
282 unsigned long goal, unsigned long limit)
283{
284 void *mem = ___alloc_bootmem_nopanic(size, align, goal, limit);
285
286 if (mem)
287 return mem;
288 /*
289 * Whoops, we cannot satisfy the allocation request.
290 */
291 pr_alert("bootmem alloc of %lu bytes failed!\n", size);
292 panic("Out of memory");
293 return NULL;
294}
295
296/**
297 * __alloc_bootmem - allocate boot memory
298 * @size: size of the request in bytes
299 * @align: alignment of the region
300 * @goal: preferred starting address of the region
301 *
302 * The goal is dropped if it can not be satisfied and the allocation will
303 * fall back to memory below @goal.
304 *
305 * Allocation may happen on any node in the system.
306 *
307 * The function panics if the request can not be satisfied.
308 */
309void * __init __alloc_bootmem(unsigned long size, unsigned long align,
310 unsigned long goal)
311{
312 unsigned long limit = -1UL;
313
314 return ___alloc_bootmem(size, align, goal, limit);
315}
316
317void * __init ___alloc_bootmem_node_nopanic(pg_data_t *pgdat,
318 unsigned long size,
319 unsigned long align,
320 unsigned long goal,
321 unsigned long limit)
322{
323 void *ptr;
324
325again:
326 ptr = __alloc_memory_core_early(pgdat->node_id, size, align,
327 goal, limit);
328 if (ptr)
329 return ptr;
330
331 ptr = __alloc_memory_core_early(NUMA_NO_NODE, size, align,
332 goal, limit);
333 if (ptr)
334 return ptr;
335
336 if (goal) {
337 goal = 0;
338 goto again;
339 }
340
341 return NULL;
342}
343
344void * __init __alloc_bootmem_node_nopanic(pg_data_t *pgdat, unsigned long size,
345 unsigned long align, unsigned long goal)
346{
347 if (WARN_ON_ONCE(slab_is_available()))
348 return kzalloc_node(size, GFP_NOWAIT, pgdat->node_id);
349
350 return ___alloc_bootmem_node_nopanic(pgdat, size, align, goal, 0);
351}
352
353static void * __init ___alloc_bootmem_node(pg_data_t *pgdat, unsigned long size,
354 unsigned long align, unsigned long goal,
355 unsigned long limit)
356{
357 void *ptr;
358
359 ptr = ___alloc_bootmem_node_nopanic(pgdat, size, align, goal, limit);
360 if (ptr)
361 return ptr;
362
363 pr_alert("bootmem alloc of %lu bytes failed!\n", size);
364 panic("Out of memory");
365 return NULL;
366}
367
368/**
369 * __alloc_bootmem_node - allocate boot memory from a specific node
370 * @pgdat: node to allocate from
371 * @size: size of the request in bytes
372 * @align: alignment of the region
373 * @goal: preferred starting address of the region
374 *
375 * The goal is dropped if it can not be satisfied and the allocation will
376 * fall back to memory below @goal.
377 *
378 * Allocation may fall back to any node in the system if the specified node
379 * can not hold the requested memory.
380 *
381 * The function panics if the request can not be satisfied.
382 */
383void * __init __alloc_bootmem_node(pg_data_t *pgdat, unsigned long size,
384 unsigned long align, unsigned long goal)
385{
386 if (WARN_ON_ONCE(slab_is_available()))
387 return kzalloc_node(size, GFP_NOWAIT, pgdat->node_id);
388
389 return ___alloc_bootmem_node(pgdat, size, align, goal, 0);
390}
391
392void * __init __alloc_bootmem_node_high(pg_data_t *pgdat, unsigned long size,
393 unsigned long align, unsigned long goal)
394{
395 return __alloc_bootmem_node(pgdat, size, align, goal);
396}
397
398#ifndef ARCH_LOW_ADDRESS_LIMIT
399#define ARCH_LOW_ADDRESS_LIMIT 0xffffffffUL
400#endif
401
402/**
403 * __alloc_bootmem_low - allocate low boot memory
404 * @size: size of the request in bytes
405 * @align: alignment of the region
406 * @goal: preferred starting address of the region
407 *
408 * The goal is dropped if it can not be satisfied and the allocation will
409 * fall back to memory below @goal.
410 *
411 * Allocation may happen on any node in the system.
412 *
413 * The function panics if the request can not be satisfied.
414 */
415void * __init __alloc_bootmem_low(unsigned long size, unsigned long align,
416 unsigned long goal)
417{
418 return ___alloc_bootmem(size, align, goal, ARCH_LOW_ADDRESS_LIMIT);
419}
420
421void * __init __alloc_bootmem_low_nopanic(unsigned long size,
422 unsigned long align,
423 unsigned long goal)
424{
425 return ___alloc_bootmem_nopanic(size, align, goal,
426 ARCH_LOW_ADDRESS_LIMIT);
427}
428
429/**
430 * __alloc_bootmem_low_node - allocate low boot memory from a specific node
431 * @pgdat: node to allocate from
432 * @size: size of the request in bytes
433 * @align: alignment of the region
434 * @goal: preferred starting address of the region
435 *
436 * The goal is dropped if it can not be satisfied and the allocation will
437 * fall back to memory below @goal.
438 *
439 * Allocation may fall back to any node in the system if the specified node
440 * can not hold the requested memory.
441 *
442 * The function panics if the request can not be satisfied.
443 */
444void * __init __alloc_bootmem_low_node(pg_data_t *pgdat, unsigned long size,
445 unsigned long align, unsigned long goal)
446{
447 if (WARN_ON_ONCE(slab_is_available()))
448 return kzalloc_node(size, GFP_NOWAIT, pgdat->node_id);
449
450 return ___alloc_bootmem_node(pgdat, size, align, goal,
451 ARCH_LOW_ADDRESS_LIMIT);
452}
1// SPDX-License-Identifier: GPL-2.0
2/*
3 * bootmem - A boot-time physical memory allocator and configurator
4 *
5 * Copyright (C) 1999 Ingo Molnar
6 * 1999 Kanoj Sarcar, SGI
7 * 2008 Johannes Weiner
8 *
9 * Access to this subsystem has to be serialized externally (which is true
10 * for the boot process anyway).
11 */
12#include <linux/init.h>
13#include <linux/pfn.h>
14#include <linux/slab.h>
15#include <linux/export.h>
16#include <linux/kmemleak.h>
17#include <linux/range.h>
18#include <linux/memblock.h>
19#include <linux/bootmem.h>
20
21#include <asm/bug.h>
22#include <asm/io.h>
23
24#include "internal.h"
25
26#ifndef CONFIG_HAVE_MEMBLOCK
27#error CONFIG_HAVE_MEMBLOCK not defined
28#endif
29
30#ifndef CONFIG_NEED_MULTIPLE_NODES
31struct pglist_data __refdata contig_page_data;
32EXPORT_SYMBOL(contig_page_data);
33#endif
34
35unsigned long max_low_pfn;
36unsigned long min_low_pfn;
37unsigned long max_pfn;
38unsigned long long max_possible_pfn;
39
40static void * __init __alloc_memory_core_early(int nid, u64 size, u64 align,
41 u64 goal, u64 limit)
42{
43 void *ptr;
44 u64 addr;
45 ulong flags = choose_memblock_flags();
46
47 if (limit > memblock.current_limit)
48 limit = memblock.current_limit;
49
50again:
51 addr = memblock_find_in_range_node(size, align, goal, limit, nid,
52 flags);
53 if (!addr && (flags & MEMBLOCK_MIRROR)) {
54 flags &= ~MEMBLOCK_MIRROR;
55 pr_warn("Could not allocate %pap bytes of mirrored memory\n",
56 &size);
57 goto again;
58 }
59 if (!addr)
60 return NULL;
61
62 if (memblock_reserve(addr, size))
63 return NULL;
64
65 ptr = phys_to_virt(addr);
66 memset(ptr, 0, size);
67 /*
68 * The min_count is set to 0 so that bootmem allocated blocks
69 * are never reported as leaks.
70 */
71 kmemleak_alloc(ptr, size, 0, 0);
72 return ptr;
73}
74
75/*
76 * free_bootmem_late - free bootmem pages directly to page allocator
77 * @addr: starting address of the range
78 * @size: size of the range in bytes
79 *
80 * This is only useful when the bootmem allocator has already been torn
81 * down, but we are still initializing the system. Pages are given directly
82 * to the page allocator, no bootmem metadata is updated because it is gone.
83 */
84void __init free_bootmem_late(unsigned long addr, unsigned long size)
85{
86 unsigned long cursor, end;
87
88 kmemleak_free_part_phys(addr, size);
89
90 cursor = PFN_UP(addr);
91 end = PFN_DOWN(addr + size);
92
93 for (; cursor < end; cursor++) {
94 __free_pages_bootmem(pfn_to_page(cursor), cursor, 0);
95 totalram_pages++;
96 }
97}
98
99static void __init __free_pages_memory(unsigned long start, unsigned long end)
100{
101 int order;
102
103 while (start < end) {
104 order = min(MAX_ORDER - 1UL, __ffs(start));
105
106 while (start + (1UL << order) > end)
107 order--;
108
109 __free_pages_bootmem(pfn_to_page(start), start, order);
110
111 start += (1UL << order);
112 }
113}
114
115static unsigned long __init __free_memory_core(phys_addr_t start,
116 phys_addr_t end)
117{
118 unsigned long start_pfn = PFN_UP(start);
119 unsigned long end_pfn = min_t(unsigned long,
120 PFN_DOWN(end), max_low_pfn);
121
122 if (start_pfn >= end_pfn)
123 return 0;
124
125 __free_pages_memory(start_pfn, end_pfn);
126
127 return end_pfn - start_pfn;
128}
129
130static unsigned long __init free_low_memory_core_early(void)
131{
132 unsigned long count = 0;
133 phys_addr_t start, end;
134 u64 i;
135
136 memblock_clear_hotplug(0, -1);
137
138 for_each_reserved_mem_region(i, &start, &end)
139 reserve_bootmem_region(start, end);
140
141 /*
142 * We need to use NUMA_NO_NODE instead of NODE_DATA(0)->node_id
143 * because in some case like Node0 doesn't have RAM installed
144 * low ram will be on Node1
145 */
146 for_each_free_mem_range(i, NUMA_NO_NODE, MEMBLOCK_NONE, &start, &end,
147 NULL)
148 count += __free_memory_core(start, end);
149
150 return count;
151}
152
153static int reset_managed_pages_done __initdata;
154
155void reset_node_managed_pages(pg_data_t *pgdat)
156{
157 struct zone *z;
158
159 for (z = pgdat->node_zones; z < pgdat->node_zones + MAX_NR_ZONES; z++)
160 z->managed_pages = 0;
161}
162
163void __init reset_all_zones_managed_pages(void)
164{
165 struct pglist_data *pgdat;
166
167 if (reset_managed_pages_done)
168 return;
169
170 for_each_online_pgdat(pgdat)
171 reset_node_managed_pages(pgdat);
172
173 reset_managed_pages_done = 1;
174}
175
176/**
177 * free_all_bootmem - release free pages to the buddy allocator
178 *
179 * Returns the number of pages actually released.
180 */
181unsigned long __init free_all_bootmem(void)
182{
183 unsigned long pages;
184
185 reset_all_zones_managed_pages();
186
187 pages = free_low_memory_core_early();
188 totalram_pages += pages;
189
190 return pages;
191}
192
193/**
194 * free_bootmem_node - mark a page range as usable
195 * @pgdat: node the range resides on
196 * @physaddr: starting address of the range
197 * @size: size of the range in bytes
198 *
199 * Partial pages will be considered reserved and left as they are.
200 *
201 * The range must reside completely on the specified node.
202 */
203void __init free_bootmem_node(pg_data_t *pgdat, unsigned long physaddr,
204 unsigned long size)
205{
206 memblock_free(physaddr, size);
207}
208
209/**
210 * free_bootmem - mark a page range as usable
211 * @addr: starting address of the range
212 * @size: size of the range in bytes
213 *
214 * Partial pages will be considered reserved and left as they are.
215 *
216 * The range must be contiguous but may span node boundaries.
217 */
218void __init free_bootmem(unsigned long addr, unsigned long size)
219{
220 memblock_free(addr, size);
221}
222
223static void * __init ___alloc_bootmem_nopanic(unsigned long size,
224 unsigned long align,
225 unsigned long goal,
226 unsigned long limit)
227{
228 void *ptr;
229
230 if (WARN_ON_ONCE(slab_is_available()))
231 return kzalloc(size, GFP_NOWAIT);
232
233restart:
234
235 ptr = __alloc_memory_core_early(NUMA_NO_NODE, size, align, goal, limit);
236
237 if (ptr)
238 return ptr;
239
240 if (goal != 0) {
241 goal = 0;
242 goto restart;
243 }
244
245 return NULL;
246}
247
248/**
249 * __alloc_bootmem_nopanic - allocate boot memory without panicking
250 * @size: size of the request in bytes
251 * @align: alignment of the region
252 * @goal: preferred starting address of the region
253 *
254 * The goal is dropped if it can not be satisfied and the allocation will
255 * fall back to memory below @goal.
256 *
257 * Allocation may happen on any node in the system.
258 *
259 * Returns NULL on failure.
260 */
261void * __init __alloc_bootmem_nopanic(unsigned long size, unsigned long align,
262 unsigned long goal)
263{
264 unsigned long limit = -1UL;
265
266 return ___alloc_bootmem_nopanic(size, align, goal, limit);
267}
268
269static void * __init ___alloc_bootmem(unsigned long size, unsigned long align,
270 unsigned long goal, unsigned long limit)
271{
272 void *mem = ___alloc_bootmem_nopanic(size, align, goal, limit);
273
274 if (mem)
275 return mem;
276 /*
277 * Whoops, we cannot satisfy the allocation request.
278 */
279 pr_alert("bootmem alloc of %lu bytes failed!\n", size);
280 panic("Out of memory");
281 return NULL;
282}
283
284/**
285 * __alloc_bootmem - allocate boot memory
286 * @size: size of the request in bytes
287 * @align: alignment of the region
288 * @goal: preferred starting address of the region
289 *
290 * The goal is dropped if it can not be satisfied and the allocation will
291 * fall back to memory below @goal.
292 *
293 * Allocation may happen on any node in the system.
294 *
295 * The function panics if the request can not be satisfied.
296 */
297void * __init __alloc_bootmem(unsigned long size, unsigned long align,
298 unsigned long goal)
299{
300 unsigned long limit = -1UL;
301
302 return ___alloc_bootmem(size, align, goal, limit);
303}
304
305void * __init ___alloc_bootmem_node_nopanic(pg_data_t *pgdat,
306 unsigned long size,
307 unsigned long align,
308 unsigned long goal,
309 unsigned long limit)
310{
311 void *ptr;
312
313again:
314 ptr = __alloc_memory_core_early(pgdat->node_id, size, align,
315 goal, limit);
316 if (ptr)
317 return ptr;
318
319 ptr = __alloc_memory_core_early(NUMA_NO_NODE, size, align,
320 goal, limit);
321 if (ptr)
322 return ptr;
323
324 if (goal) {
325 goal = 0;
326 goto again;
327 }
328
329 return NULL;
330}
331
332void * __init __alloc_bootmem_node_nopanic(pg_data_t *pgdat, unsigned long size,
333 unsigned long align, unsigned long goal)
334{
335 if (WARN_ON_ONCE(slab_is_available()))
336 return kzalloc_node(size, GFP_NOWAIT, pgdat->node_id);
337
338 return ___alloc_bootmem_node_nopanic(pgdat, size, align, goal, 0);
339}
340
341static void * __init ___alloc_bootmem_node(pg_data_t *pgdat, unsigned long size,
342 unsigned long align, unsigned long goal,
343 unsigned long limit)
344{
345 void *ptr;
346
347 ptr = ___alloc_bootmem_node_nopanic(pgdat, size, align, goal, limit);
348 if (ptr)
349 return ptr;
350
351 pr_alert("bootmem alloc of %lu bytes failed!\n", size);
352 panic("Out of memory");
353 return NULL;
354}
355
356/**
357 * __alloc_bootmem_node - allocate boot memory from a specific node
358 * @pgdat: node to allocate from
359 * @size: size of the request in bytes
360 * @align: alignment of the region
361 * @goal: preferred starting address of the region
362 *
363 * The goal is dropped if it can not be satisfied and the allocation will
364 * fall back to memory below @goal.
365 *
366 * Allocation may fall back to any node in the system if the specified node
367 * can not hold the requested memory.
368 *
369 * The function panics if the request can not be satisfied.
370 */
371void * __init __alloc_bootmem_node(pg_data_t *pgdat, unsigned long size,
372 unsigned long align, unsigned long goal)
373{
374 if (WARN_ON_ONCE(slab_is_available()))
375 return kzalloc_node(size, GFP_NOWAIT, pgdat->node_id);
376
377 return ___alloc_bootmem_node(pgdat, size, align, goal, 0);
378}
379
380void * __init __alloc_bootmem_node_high(pg_data_t *pgdat, unsigned long size,
381 unsigned long align, unsigned long goal)
382{
383 return __alloc_bootmem_node(pgdat, size, align, goal);
384}
385
386
387/**
388 * __alloc_bootmem_low - allocate low boot memory
389 * @size: size of the request in bytes
390 * @align: alignment of the region
391 * @goal: preferred starting address of the region
392 *
393 * The goal is dropped if it can not be satisfied and the allocation will
394 * fall back to memory below @goal.
395 *
396 * Allocation may happen on any node in the system.
397 *
398 * The function panics if the request can not be satisfied.
399 */
400void * __init __alloc_bootmem_low(unsigned long size, unsigned long align,
401 unsigned long goal)
402{
403 return ___alloc_bootmem(size, align, goal, ARCH_LOW_ADDRESS_LIMIT);
404}
405
406void * __init __alloc_bootmem_low_nopanic(unsigned long size,
407 unsigned long align,
408 unsigned long goal)
409{
410 return ___alloc_bootmem_nopanic(size, align, goal,
411 ARCH_LOW_ADDRESS_LIMIT);
412}
413
414/**
415 * __alloc_bootmem_low_node - allocate low boot memory from a specific node
416 * @pgdat: node to allocate from
417 * @size: size of the request in bytes
418 * @align: alignment of the region
419 * @goal: preferred starting address of the region
420 *
421 * The goal is dropped if it can not be satisfied and the allocation will
422 * fall back to memory below @goal.
423 *
424 * Allocation may fall back to any node in the system if the specified node
425 * can not hold the requested memory.
426 *
427 * The function panics if the request can not be satisfied.
428 */
429void * __init __alloc_bootmem_low_node(pg_data_t *pgdat, unsigned long size,
430 unsigned long align, unsigned long goal)
431{
432 if (WARN_ON_ONCE(slab_is_available()))
433 return kzalloc_node(size, GFP_NOWAIT, pgdat->node_id);
434
435 return ___alloc_bootmem_node(pgdat, size, align, goal,
436 ARCH_LOW_ADDRESS_LIMIT);
437}