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13#include <linux/kernel.h>
14#include <linux/slab.h>
15#include <linux/init.h>
16#include <linux/bitops.h>
17#include <linux/poison.h>
18#include <linux/pfn.h>
19#include <linux/debugfs.h>
20#include <linux/seq_file.h>
21#include <linux/memblock.h>
22
23static struct memblock_region memblock_memory_init_regions[INIT_MEMBLOCK_REGIONS] __initdata_memblock;
24static struct memblock_region memblock_reserved_init_regions[INIT_MEMBLOCK_REGIONS] __initdata_memblock;
25
26struct memblock memblock __initdata_memblock = {
27 .memory.regions = memblock_memory_init_regions,
28 .memory.cnt = 1,
29 .memory.max = INIT_MEMBLOCK_REGIONS,
30
31 .reserved.regions = memblock_reserved_init_regions,
32 .reserved.cnt = 1,
33 .reserved.max = INIT_MEMBLOCK_REGIONS,
34
35 .current_limit = MEMBLOCK_ALLOC_ANYWHERE,
36};
37
38int memblock_debug __initdata_memblock;
39static int memblock_can_resize __initdata_memblock;
40static int memblock_memory_in_slab __initdata_memblock = 0;
41static int memblock_reserved_in_slab __initdata_memblock = 0;
42
43
44static __init_memblock const char *
45memblock_type_name(struct memblock_type *type)
46{
47 if (type == &memblock.memory)
48 return "memory";
49 else if (type == &memblock.reserved)
50 return "reserved";
51 else
52 return "unknown";
53}
54
55
56static inline phys_addr_t memblock_cap_size(phys_addr_t base, phys_addr_t *size)
57{
58 return *size = min(*size, (phys_addr_t)ULLONG_MAX - base);
59}
60
61
62
63
64static unsigned long __init_memblock memblock_addrs_overlap(phys_addr_t base1, phys_addr_t size1,
65 phys_addr_t base2, phys_addr_t size2)
66{
67 return ((base1 < (base2 + size2)) && (base2 < (base1 + size1)));
68}
69
70static long __init_memblock memblock_overlaps_region(struct memblock_type *type,
71 phys_addr_t base, phys_addr_t size)
72{
73 unsigned long i;
74
75 for (i = 0; i < type->cnt; i++) {
76 phys_addr_t rgnbase = type->regions[i].base;
77 phys_addr_t rgnsize = type->regions[i].size;
78 if (memblock_addrs_overlap(base, size, rgnbase, rgnsize))
79 break;
80 }
81
82 return (i < type->cnt) ? i : -1;
83}
84
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88
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95
96
97
98phys_addr_t __init_memblock memblock_find_in_range_node(phys_addr_t start,
99 phys_addr_t end, phys_addr_t size,
100 phys_addr_t align, int nid)
101{
102 phys_addr_t this_start, this_end, cand;
103 u64 i;
104
105
106 if (end == MEMBLOCK_ALLOC_ACCESSIBLE)
107 end = memblock.current_limit;
108
109
110 start = max_t(phys_addr_t, start, PAGE_SIZE);
111 end = max(start, end);
112
113 for_each_free_mem_range_reverse(i, nid, &this_start, &this_end, NULL) {
114 this_start = clamp(this_start, start, end);
115 this_end = clamp(this_end, start, end);
116
117 if (this_end < size)
118 continue;
119
120 cand = round_down(this_end - size, align);
121 if (cand >= this_start)
122 return cand;
123 }
124 return 0;
125}
126
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135
136
137
138
139phys_addr_t __init_memblock memblock_find_in_range(phys_addr_t start,
140 phys_addr_t end, phys_addr_t size,
141 phys_addr_t align)
142{
143 return memblock_find_in_range_node(start, end, size, align,
144 MAX_NUMNODES);
145}
146
147static void __init_memblock memblock_remove_region(struct memblock_type *type, unsigned long r)
148{
149 type->total_size -= type->regions[r].size;
150 memmove(&type->regions[r], &type->regions[r + 1],
151 (type->cnt - (r + 1)) * sizeof(type->regions[r]));
152 type->cnt--;
153
154
155 if (type->cnt == 0) {
156 WARN_ON(type->total_size != 0);
157 type->cnt = 1;
158 type->regions[0].base = 0;
159 type->regions[0].size = 0;
160 memblock_set_region_node(&type->regions[0], MAX_NUMNODES);
161 }
162}
163
164phys_addr_t __init_memblock get_allocated_memblock_reserved_regions_info(
165 phys_addr_t *addr)
166{
167 if (memblock.reserved.regions == memblock_reserved_init_regions)
168 return 0;
169
170 *addr = __pa(memblock.reserved.regions);
171
172 return PAGE_ALIGN(sizeof(struct memblock_region) *
173 memblock.reserved.max);
174}
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189
190
191static int __init_memblock memblock_double_array(struct memblock_type *type,
192 phys_addr_t new_area_start,
193 phys_addr_t new_area_size)
194{
195 struct memblock_region *new_array, *old_array;
196 phys_addr_t old_alloc_size, new_alloc_size;
197 phys_addr_t old_size, new_size, addr;
198 int use_slab = slab_is_available();
199 int *in_slab;
200
201
202
203
204 if (!memblock_can_resize)
205 return -1;
206
207
208 old_size = type->max * sizeof(struct memblock_region);
209 new_size = old_size << 1;
210
211
212
213
214 old_alloc_size = PAGE_ALIGN(old_size);
215 new_alloc_size = PAGE_ALIGN(new_size);
216
217
218 if (type == &memblock.memory)
219 in_slab = &memblock_memory_in_slab;
220 else
221 in_slab = &memblock_reserved_in_slab;
222
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229
230
231
232
233
234 if (use_slab) {
235 new_array = kmalloc(new_size, GFP_KERNEL);
236 addr = new_array ? __pa(new_array) : 0;
237 } else {
238
239 if (type != &memblock.reserved)
240 new_area_start = new_area_size = 0;
241
242 addr = memblock_find_in_range(new_area_start + new_area_size,
243 memblock.current_limit,
244 new_alloc_size, PAGE_SIZE);
245 if (!addr && new_area_size)
246 addr = memblock_find_in_range(0,
247 min(new_area_start, memblock.current_limit),
248 new_alloc_size, PAGE_SIZE);
249
250 new_array = addr ? __va(addr) : NULL;
251 }
252 if (!addr) {
253 pr_err("memblock: Failed to double %s array from %ld to %ld entries !\n",
254 memblock_type_name(type), type->max, type->max * 2);
255 return -1;
256 }
257
258 memblock_dbg("memblock: %s is doubled to %ld at [%#010llx-%#010llx]",
259 memblock_type_name(type), type->max * 2, (u64)addr,
260 (u64)addr + new_size - 1);
261
262
263
264
265
266
267 memcpy(new_array, type->regions, old_size);
268 memset(new_array + type->max, 0, old_size);
269 old_array = type->regions;
270 type->regions = new_array;
271 type->max <<= 1;
272
273
274 if (*in_slab)
275 kfree(old_array);
276 else if (old_array != memblock_memory_init_regions &&
277 old_array != memblock_reserved_init_regions)
278 memblock_free(__pa(old_array), old_alloc_size);
279
280
281
282
283
284 if (!use_slab)
285 BUG_ON(memblock_reserve(addr, new_alloc_size));
286
287
288 *in_slab = use_slab;
289
290 return 0;
291}
292
293
294
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296
297
298
299static void __init_memblock memblock_merge_regions(struct memblock_type *type)
300{
301 int i = 0;
302
303
304 while (i < type->cnt - 1) {
305 struct memblock_region *this = &type->regions[i];
306 struct memblock_region *next = &type->regions[i + 1];
307
308 if (this->base + this->size != next->base ||
309 memblock_get_region_node(this) !=
310 memblock_get_region_node(next)) {
311 BUG_ON(this->base + this->size > next->base);
312 i++;
313 continue;
314 }
315
316 this->size += next->size;
317 memmove(next, next + 1, (type->cnt - (i + 1)) * sizeof(*next));
318 type->cnt--;
319 }
320}
321
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330
331
332static void __init_memblock memblock_insert_region(struct memblock_type *type,
333 int idx, phys_addr_t base,
334 phys_addr_t size, int nid)
335{
336 struct memblock_region *rgn = &type->regions[idx];
337
338 BUG_ON(type->cnt >= type->max);
339 memmove(rgn + 1, rgn, (type->cnt - idx) * sizeof(*rgn));
340 rgn->base = base;
341 rgn->size = size;
342 memblock_set_region_node(rgn, nid);
343 type->cnt++;
344 type->total_size += size;
345}
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361
362static int __init_memblock memblock_add_region(struct memblock_type *type,
363 phys_addr_t base, phys_addr_t size, int nid)
364{
365 bool insert = false;
366 phys_addr_t obase = base;
367 phys_addr_t end = base + memblock_cap_size(base, &size);
368 int i, nr_new;
369
370 if (!size)
371 return 0;
372
373
374 if (type->regions[0].size == 0) {
375 WARN_ON(type->cnt != 1 || type->total_size);
376 type->regions[0].base = base;
377 type->regions[0].size = size;
378 memblock_set_region_node(&type->regions[0], nid);
379 type->total_size = size;
380 return 0;
381 }
382repeat:
383
384
385
386
387
388 base = obase;
389 nr_new = 0;
390
391 for (i = 0; i < type->cnt; i++) {
392 struct memblock_region *rgn = &type->regions[i];
393 phys_addr_t rbase = rgn->base;
394 phys_addr_t rend = rbase + rgn->size;
395
396 if (rbase >= end)
397 break;
398 if (rend <= base)
399 continue;
400
401
402
403
404 if (rbase > base) {
405 nr_new++;
406 if (insert)
407 memblock_insert_region(type, i++, base,
408 rbase - base, nid);
409 }
410
411 base = min(rend, end);
412 }
413
414
415 if (base < end) {
416 nr_new++;
417 if (insert)
418 memblock_insert_region(type, i, base, end - base, nid);
419 }
420
421
422
423
424
425 if (!insert) {
426 while (type->cnt + nr_new > type->max)
427 if (memblock_double_array(type, obase, size) < 0)
428 return -ENOMEM;
429 insert = true;
430 goto repeat;
431 } else {
432 memblock_merge_regions(type);
433 return 0;
434 }
435}
436
437int __init_memblock memblock_add_node(phys_addr_t base, phys_addr_t size,
438 int nid)
439{
440 return memblock_add_region(&memblock.memory, base, size, nid);
441}
442
443int __init_memblock memblock_add(phys_addr_t base, phys_addr_t size)
444{
445 return memblock_add_region(&memblock.memory, base, size, MAX_NUMNODES);
446}
447
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462
463
464static int __init_memblock memblock_isolate_range(struct memblock_type *type,
465 phys_addr_t base, phys_addr_t size,
466 int *start_rgn, int *end_rgn)
467{
468 phys_addr_t end = base + memblock_cap_size(base, &size);
469 int i;
470
471 *start_rgn = *end_rgn = 0;
472
473 if (!size)
474 return 0;
475
476
477 while (type->cnt + 2 > type->max)
478 if (memblock_double_array(type, base, size) < 0)
479 return -ENOMEM;
480
481 for (i = 0; i < type->cnt; i++) {
482 struct memblock_region *rgn = &type->regions[i];
483 phys_addr_t rbase = rgn->base;
484 phys_addr_t rend = rbase + rgn->size;
485
486 if (rbase >= end)
487 break;
488 if (rend <= base)
489 continue;
490
491 if (rbase < base) {
492
493
494
495
496 rgn->base = base;
497 rgn->size -= base - rbase;
498 type->total_size -= base - rbase;
499 memblock_insert_region(type, i, rbase, base - rbase,
500 memblock_get_region_node(rgn));
501 } else if (rend > end) {
502
503
504
505
506 rgn->base = end;
507 rgn->size -= end - rbase;
508 type->total_size -= end - rbase;
509 memblock_insert_region(type, i--, rbase, end - rbase,
510 memblock_get_region_node(rgn));
511 } else {
512
513 if (!*end_rgn)
514 *start_rgn = i;
515 *end_rgn = i + 1;
516 }
517 }
518
519 return 0;
520}
521
522static int __init_memblock __memblock_remove(struct memblock_type *type,
523 phys_addr_t base, phys_addr_t size)
524{
525 int start_rgn, end_rgn;
526 int i, ret;
527
528 ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
529 if (ret)
530 return ret;
531
532 for (i = end_rgn - 1; i >= start_rgn; i--)
533 memblock_remove_region(type, i);
534 return 0;
535}
536
537int __init_memblock memblock_remove(phys_addr_t base, phys_addr_t size)
538{
539 return __memblock_remove(&memblock.memory, base, size);
540}
541
542int __init_memblock memblock_free(phys_addr_t base, phys_addr_t size)
543{
544 memblock_dbg(" memblock_free: [%#016llx-%#016llx] %pF\n",
545 (unsigned long long)base,
546 (unsigned long long)base + size,
547 (void *)_RET_IP_);
548
549 return __memblock_remove(&memblock.reserved, base, size);
550}
551
552int __init_memblock memblock_reserve(phys_addr_t base, phys_addr_t size)
553{
554 struct memblock_type *_rgn = &memblock.reserved;
555
556 memblock_dbg("memblock_reserve: [%#016llx-%#016llx] %pF\n",
557 (unsigned long long)base,
558 (unsigned long long)base + size,
559 (void *)_RET_IP_);
560
561 return memblock_add_region(_rgn, base, size, MAX_NUMNODES);
562}
563
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586
587void __init_memblock __next_free_mem_range(u64 *idx, int nid,
588 phys_addr_t *out_start,
589 phys_addr_t *out_end, int *out_nid)
590{
591 struct memblock_type *mem = &memblock.memory;
592 struct memblock_type *rsv = &memblock.reserved;
593 int mi = *idx & 0xffffffff;
594 int ri = *idx >> 32;
595
596 for ( ; mi < mem->cnt; mi++) {
597 struct memblock_region *m = &mem->regions[mi];
598 phys_addr_t m_start = m->base;
599 phys_addr_t m_end = m->base + m->size;
600
601
602 if (nid != MAX_NUMNODES && nid != memblock_get_region_node(m))
603 continue;
604
605
606 for ( ; ri < rsv->cnt + 1; ri++) {
607 struct memblock_region *r = &rsv->regions[ri];
608 phys_addr_t r_start = ri ? r[-1].base + r[-1].size : 0;
609 phys_addr_t r_end = ri < rsv->cnt ? r->base : ULLONG_MAX;
610
611
612 if (r_start >= m_end)
613 break;
614
615 if (m_start < r_end) {
616 if (out_start)
617 *out_start = max(m_start, r_start);
618 if (out_end)
619 *out_end = min(m_end, r_end);
620 if (out_nid)
621 *out_nid = memblock_get_region_node(m);
622
623
624
625
626 if (m_end <= r_end)
627 mi++;
628 else
629 ri++;
630 *idx = (u32)mi | (u64)ri << 32;
631 return;
632 }
633 }
634 }
635
636
637 *idx = ULLONG_MAX;
638}
639
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645
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647
648
649
650void __init_memblock __next_free_mem_range_rev(u64 *idx, int nid,
651 phys_addr_t *out_start,
652 phys_addr_t *out_end, int *out_nid)
653{
654 struct memblock_type *mem = &memblock.memory;
655 struct memblock_type *rsv = &memblock.reserved;
656 int mi = *idx & 0xffffffff;
657 int ri = *idx >> 32;
658
659 if (*idx == (u64)ULLONG_MAX) {
660 mi = mem->cnt - 1;
661 ri = rsv->cnt;
662 }
663
664 for ( ; mi >= 0; mi--) {
665 struct memblock_region *m = &mem->regions[mi];
666 phys_addr_t m_start = m->base;
667 phys_addr_t m_end = m->base + m->size;
668
669
670 if (nid != MAX_NUMNODES && nid != memblock_get_region_node(m))
671 continue;
672
673
674 for ( ; ri >= 0; ri--) {
675 struct memblock_region *r = &rsv->regions[ri];
676 phys_addr_t r_start = ri ? r[-1].base + r[-1].size : 0;
677 phys_addr_t r_end = ri < rsv->cnt ? r->base : ULLONG_MAX;
678
679
680 if (r_end <= m_start)
681 break;
682
683 if (m_end > r_start) {
684 if (out_start)
685 *out_start = max(m_start, r_start);
686 if (out_end)
687 *out_end = min(m_end, r_end);
688 if (out_nid)
689 *out_nid = memblock_get_region_node(m);
690
691 if (m_start >= r_start)
692 mi--;
693 else
694 ri--;
695 *idx = (u32)mi | (u64)ri << 32;
696 return;
697 }
698 }
699 }
700
701 *idx = ULLONG_MAX;
702}
703
704#ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
705
706
707
708void __init_memblock __next_mem_pfn_range(int *idx, int nid,
709 unsigned long *out_start_pfn,
710 unsigned long *out_end_pfn, int *out_nid)
711{
712 struct memblock_type *type = &memblock.memory;
713 struct memblock_region *r;
714
715 while (++*idx < type->cnt) {
716 r = &type->regions[*idx];
717
718 if (PFN_UP(r->base) >= PFN_DOWN(r->base + r->size))
719 continue;
720 if (nid == MAX_NUMNODES || nid == r->nid)
721 break;
722 }
723 if (*idx >= type->cnt) {
724 *idx = -1;
725 return;
726 }
727
728 if (out_start_pfn)
729 *out_start_pfn = PFN_UP(r->base);
730 if (out_end_pfn)
731 *out_end_pfn = PFN_DOWN(r->base + r->size);
732 if (out_nid)
733 *out_nid = r->nid;
734}
735
736
737
738
739
740
741
742
743
744
745
746
747
748int __init_memblock memblock_set_node(phys_addr_t base, phys_addr_t size,
749 int nid)
750{
751 struct memblock_type *type = &memblock.memory;
752 int start_rgn, end_rgn;
753 int i, ret;
754
755 ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
756 if (ret)
757 return ret;
758
759 for (i = start_rgn; i < end_rgn; i++)
760 memblock_set_region_node(&type->regions[i], nid);
761
762 memblock_merge_regions(type);
763 return 0;
764}
765#endif
766
767static phys_addr_t __init memblock_alloc_base_nid(phys_addr_t size,
768 phys_addr_t align, phys_addr_t max_addr,
769 int nid)
770{
771 phys_addr_t found;
772
773
774 size = round_up(size, align);
775
776 found = memblock_find_in_range_node(0, max_addr, size, align, nid);
777 if (found && !memblock_reserve(found, size))
778 return found;
779
780 return 0;
781}
782
783phys_addr_t __init memblock_alloc_nid(phys_addr_t size, phys_addr_t align, int nid)
784{
785 return memblock_alloc_base_nid(size, align, MEMBLOCK_ALLOC_ACCESSIBLE, nid);
786}
787
788phys_addr_t __init __memblock_alloc_base(phys_addr_t size, phys_addr_t align, phys_addr_t max_addr)
789{
790 return memblock_alloc_base_nid(size, align, max_addr, MAX_NUMNODES);
791}
792
793phys_addr_t __init memblock_alloc_base(phys_addr_t size, phys_addr_t align, phys_addr_t max_addr)
794{
795 phys_addr_t alloc;
796
797 alloc = __memblock_alloc_base(size, align, max_addr);
798
799 if (alloc == 0)
800 panic("ERROR: Failed to allocate 0x%llx bytes below 0x%llx.\n",
801 (unsigned long long) size, (unsigned long long) max_addr);
802
803 return alloc;
804}
805
806phys_addr_t __init memblock_alloc(phys_addr_t size, phys_addr_t align)
807{
808 return memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ACCESSIBLE);
809}
810
811phys_addr_t __init memblock_alloc_try_nid(phys_addr_t size, phys_addr_t align, int nid)
812{
813 phys_addr_t res = memblock_alloc_nid(size, align, nid);
814
815 if (res)
816 return res;
817 return memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ACCESSIBLE);
818}
819
820
821
822
823
824
825phys_addr_t __init memblock_phys_mem_size(void)
826{
827 return memblock.memory.total_size;
828}
829
830
831phys_addr_t __init_memblock memblock_start_of_DRAM(void)
832{
833 return memblock.memory.regions[0].base;
834}
835
836phys_addr_t __init_memblock memblock_end_of_DRAM(void)
837{
838 int idx = memblock.memory.cnt - 1;
839
840 return (memblock.memory.regions[idx].base + memblock.memory.regions[idx].size);
841}
842
843void __init memblock_enforce_memory_limit(phys_addr_t limit)
844{
845 unsigned long i;
846 phys_addr_t max_addr = (phys_addr_t)ULLONG_MAX;
847
848 if (!limit)
849 return;
850
851
852 for (i = 0; i < memblock.memory.cnt; i++) {
853 struct memblock_region *r = &memblock.memory.regions[i];
854
855 if (limit <= r->size) {
856 max_addr = r->base + limit;
857 break;
858 }
859 limit -= r->size;
860 }
861
862
863 __memblock_remove(&memblock.memory, max_addr, (phys_addr_t)ULLONG_MAX);
864 __memblock_remove(&memblock.reserved, max_addr, (phys_addr_t)ULLONG_MAX);
865}
866
867static int __init_memblock memblock_search(struct memblock_type *type, phys_addr_t addr)
868{
869 unsigned int left = 0, right = type->cnt;
870
871 do {
872 unsigned int mid = (right + left) / 2;
873
874 if (addr < type->regions[mid].base)
875 right = mid;
876 else if (addr >= (type->regions[mid].base +
877 type->regions[mid].size))
878 left = mid + 1;
879 else
880 return mid;
881 } while (left < right);
882 return -1;
883}
884
885int __init memblock_is_reserved(phys_addr_t addr)
886{
887 return memblock_search(&memblock.reserved, addr) != -1;
888}
889
890int __init_memblock memblock_is_memory(phys_addr_t addr)
891{
892 return memblock_search(&memblock.memory, addr) != -1;
893}
894
895
896
897
898
899
900
901
902
903
904
905int __init_memblock memblock_is_region_memory(phys_addr_t base, phys_addr_t size)
906{
907 int idx = memblock_search(&memblock.memory, base);
908 phys_addr_t end = base + memblock_cap_size(base, &size);
909
910 if (idx == -1)
911 return 0;
912 return memblock.memory.regions[idx].base <= base &&
913 (memblock.memory.regions[idx].base +
914 memblock.memory.regions[idx].size) >= end;
915}
916
917
918
919
920
921
922
923
924
925
926
927int __init_memblock memblock_is_region_reserved(phys_addr_t base, phys_addr_t size)
928{
929 memblock_cap_size(base, &size);
930 return memblock_overlaps_region(&memblock.reserved, base, size) >= 0;
931}
932
933void __init_memblock memblock_trim_memory(phys_addr_t align)
934{
935 int i;
936 phys_addr_t start, end, orig_start, orig_end;
937 struct memblock_type *mem = &memblock.memory;
938
939 for (i = 0; i < mem->cnt; i++) {
940 orig_start = mem->regions[i].base;
941 orig_end = mem->regions[i].base + mem->regions[i].size;
942 start = round_up(orig_start, align);
943 end = round_down(orig_end, align);
944
945 if (start == orig_start && end == orig_end)
946 continue;
947
948 if (start < end) {
949 mem->regions[i].base = start;
950 mem->regions[i].size = end - start;
951 } else {
952 memblock_remove_region(mem, i);
953 i--;
954 }
955 }
956}
957
958void __init_memblock memblock_set_current_limit(phys_addr_t limit)
959{
960 memblock.current_limit = limit;
961}
962
963static void __init_memblock memblock_dump(struct memblock_type *type, char *name)
964{
965 unsigned long long base, size;
966 int i;
967
968 pr_info(" %s.cnt = 0x%lx\n", name, type->cnt);
969
970 for (i = 0; i < type->cnt; i++) {
971 struct memblock_region *rgn = &type->regions[i];
972 char nid_buf[32] = "";
973
974 base = rgn->base;
975 size = rgn->size;
976#ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
977 if (memblock_get_region_node(rgn) != MAX_NUMNODES)
978 snprintf(nid_buf, sizeof(nid_buf), " on node %d",
979 memblock_get_region_node(rgn));
980#endif
981 pr_info(" %s[%#x]\t[%#016llx-%#016llx], %#llx bytes%s\n",
982 name, i, base, base + size - 1, size, nid_buf);
983 }
984}
985
986void __init_memblock __memblock_dump_all(void)
987{
988 pr_info("MEMBLOCK configuration:\n");
989 pr_info(" memory size = %#llx reserved size = %#llx\n",
990 (unsigned long long)memblock.memory.total_size,
991 (unsigned long long)memblock.reserved.total_size);
992
993 memblock_dump(&memblock.memory, "memory");
994 memblock_dump(&memblock.reserved, "reserved");
995}
996
997void __init memblock_allow_resize(void)
998{
999 memblock_can_resize = 1;
1000}
1001
1002static int __init early_memblock(char *p)
1003{
1004 if (p && strstr(p, "debug"))
1005 memblock_debug = 1;
1006 return 0;
1007}
1008early_param("memblock", early_memblock);
1009
1010#if defined(CONFIG_DEBUG_FS) && !defined(CONFIG_ARCH_DISCARD_MEMBLOCK)
1011
1012static int memblock_debug_show(struct seq_file *m, void *private)
1013{
1014 struct memblock_type *type = m->private;
1015 struct memblock_region *reg;
1016 int i;
1017
1018 for (i = 0; i < type->cnt; i++) {
1019 reg = &type->regions[i];
1020 seq_printf(m, "%4d: ", i);
1021 if (sizeof(phys_addr_t) == 4)
1022 seq_printf(m, "0x%08lx..0x%08lx\n",
1023 (unsigned long)reg->base,
1024 (unsigned long)(reg->base + reg->size - 1));
1025 else
1026 seq_printf(m, "0x%016llx..0x%016llx\n",
1027 (unsigned long long)reg->base,
1028 (unsigned long long)(reg->base + reg->size - 1));
1029
1030 }
1031 return 0;
1032}
1033
1034static int memblock_debug_open(struct inode *inode, struct file *file)
1035{
1036 return single_open(file, memblock_debug_show, inode->i_private);
1037}
1038
1039static const struct file_operations memblock_debug_fops = {
1040 .open = memblock_debug_open,
1041 .read = seq_read,
1042 .llseek = seq_lseek,
1043 .release = single_release,
1044};
1045
1046static int __init memblock_init_debugfs(void)
1047{
1048 struct dentry *root = debugfs_create_dir("memblock", NULL);
1049 if (!root)
1050 return -ENXIO;
1051 debugfs_create_file("memory", S_IRUGO, root, &memblock.memory, &memblock_debug_fops);
1052 debugfs_create_file("reserved", S_IRUGO, root, &memblock.reserved, &memblock_debug_fops);
1053
1054 return 0;
1055}
1056__initcall(memblock_init_debugfs);
1057
1058#endif
1059