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Yinghai Lu95f72d12010-07-12 14:36:09 +10001/*
2 * Procedures for maintaining information about logical memory blocks.
3 *
4 * Peter Bergner, IBM Corp. June 2001.
5 * Copyright (C) 2001 Peter Bergner.
6 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License
9 * as published by the Free Software Foundation; either version
10 * 2 of the License, or (at your option) any later version.
11 */
12
13#include <linux/kernel.h>
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -070014#include <linux/slab.h>
Yinghai Lu95f72d12010-07-12 14:36:09 +100015#include <linux/init.h>
16#include <linux/bitops.h>
Benjamin Herrenschmidt449e8df2010-07-06 15:39:07 -070017#include <linux/poison.h>
Benjamin Herrenschmidtc196f762010-07-06 15:39:16 -070018#include <linux/pfn.h>
Benjamin Herrenschmidt6d03b882010-07-06 15:39:19 -070019#include <linux/debugfs.h>
20#include <linux/seq_file.h>
Yinghai Lu95f72d12010-07-12 14:36:09 +100021#include <linux/memblock.h>
22
Tang Chen79442ed2013-11-12 15:07:59 -080023#include <asm-generic/sections.h>
Santosh Shilimkar26f09e92014-01-21 15:50:19 -080024#include <linux/io.h>
25
26#include "internal.h"
Tang Chen79442ed2013-11-12 15:07:59 -080027
Tejun Heofe091c22011-12-08 10:22:07 -080028static struct memblock_region memblock_memory_init_regions[INIT_MEMBLOCK_REGIONS] __initdata_memblock;
29static struct memblock_region memblock_reserved_init_regions[INIT_MEMBLOCK_REGIONS] __initdata_memblock;
30
31struct memblock memblock __initdata_memblock = {
32 .memory.regions = memblock_memory_init_regions,
33 .memory.cnt = 1, /* empty dummy entry */
34 .memory.max = INIT_MEMBLOCK_REGIONS,
35
36 .reserved.regions = memblock_reserved_init_regions,
37 .reserved.cnt = 1, /* empty dummy entry */
38 .reserved.max = INIT_MEMBLOCK_REGIONS,
39
Tang Chen79442ed2013-11-12 15:07:59 -080040 .bottom_up = false,
Tejun Heofe091c22011-12-08 10:22:07 -080041 .current_limit = MEMBLOCK_ALLOC_ANYWHERE,
42};
Yinghai Lu95f72d12010-07-12 14:36:09 +100043
Yinghai Lu10d06432010-07-28 15:43:02 +100044int memblock_debug __initdata_memblock;
Tang Chen55ac5902014-01-21 15:49:35 -080045#ifdef CONFIG_MOVABLE_NODE
46bool movable_node_enabled __initdata_memblock = false;
47#endif
Tejun Heo1aadc052011-12-08 10:22:08 -080048static int memblock_can_resize __initdata_memblock;
Gavin Shan181eb392012-05-29 15:06:50 -070049static int memblock_memory_in_slab __initdata_memblock = 0;
50static int memblock_reserved_in_slab __initdata_memblock = 0;
Yinghai Lu95f72d12010-07-12 14:36:09 +100051
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -070052/* inline so we don't get a warning when pr_debug is compiled out */
Raghavendra D Prabhuc2233112012-10-08 16:33:55 -070053static __init_memblock const char *
54memblock_type_name(struct memblock_type *type)
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -070055{
56 if (type == &memblock.memory)
57 return "memory";
58 else if (type == &memblock.reserved)
59 return "reserved";
60 else
61 return "unknown";
62}
63
Tejun Heoeb18f1b2011-12-08 10:22:07 -080064/* adjust *@size so that (@base + *@size) doesn't overflow, return new size */
65static inline phys_addr_t memblock_cap_size(phys_addr_t base, phys_addr_t *size)
66{
67 return *size = min(*size, (phys_addr_t)ULLONG_MAX - base);
68}
69
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +100070/*
71 * Address comparison utilities
72 */
Yinghai Lu10d06432010-07-28 15:43:02 +100073static unsigned long __init_memblock memblock_addrs_overlap(phys_addr_t base1, phys_addr_t size1,
Benjamin Herrenschmidt2898cc42010-08-04 13:34:42 +100074 phys_addr_t base2, phys_addr_t size2)
Yinghai Lu95f72d12010-07-12 14:36:09 +100075{
76 return ((base1 < (base2 + size2)) && (base2 < (base1 + size1)));
77}
78
H Hartley Sweeten2d7d3eb2011-10-31 17:09:15 -070079static long __init_memblock memblock_overlaps_region(struct memblock_type *type,
80 phys_addr_t base, phys_addr_t size)
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +100081{
82 unsigned long i;
83
84 for (i = 0; i < type->cnt; i++) {
85 phys_addr_t rgnbase = type->regions[i].base;
86 phys_addr_t rgnsize = type->regions[i].size;
87 if (memblock_addrs_overlap(base, size, rgnbase, rgnsize))
88 break;
89 }
90
91 return (i < type->cnt) ? i : -1;
92}
93
Tang Chen79442ed2013-11-12 15:07:59 -080094/*
95 * __memblock_find_range_bottom_up - find free area utility in bottom-up
96 * @start: start of candidate range
97 * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
98 * @size: size of free area to find
99 * @align: alignment of free area to find
Grygorii Strashkob1154232014-01-21 15:50:16 -0800100 * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
Tang Chen79442ed2013-11-12 15:07:59 -0800101 *
102 * Utility called from memblock_find_in_range_node(), find free area bottom-up.
103 *
104 * RETURNS:
105 * Found address on success, 0 on failure.
106 */
107static phys_addr_t __init_memblock
108__memblock_find_range_bottom_up(phys_addr_t start, phys_addr_t end,
109 phys_addr_t size, phys_addr_t align, int nid)
110{
111 phys_addr_t this_start, this_end, cand;
112 u64 i;
113
114 for_each_free_mem_range(i, nid, &this_start, &this_end, NULL) {
115 this_start = clamp(this_start, start, end);
116 this_end = clamp(this_end, start, end);
117
118 cand = round_up(this_start, align);
119 if (cand < this_end && this_end - cand >= size)
120 return cand;
121 }
122
123 return 0;
124}
125
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800126/**
Tang Chen14028992013-11-12 15:07:57 -0800127 * __memblock_find_range_top_down - find free area utility, in top-down
128 * @start: start of candidate range
129 * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
130 * @size: size of free area to find
131 * @align: alignment of free area to find
Grygorii Strashkob1154232014-01-21 15:50:16 -0800132 * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
Tang Chen14028992013-11-12 15:07:57 -0800133 *
134 * Utility called from memblock_find_in_range_node(), find free area top-down.
135 *
136 * RETURNS:
Tang Chen79442ed2013-11-12 15:07:59 -0800137 * Found address on success, 0 on failure.
Tang Chen14028992013-11-12 15:07:57 -0800138 */
139static phys_addr_t __init_memblock
140__memblock_find_range_top_down(phys_addr_t start, phys_addr_t end,
141 phys_addr_t size, phys_addr_t align, int nid)
142{
143 phys_addr_t this_start, this_end, cand;
144 u64 i;
145
146 for_each_free_mem_range_reverse(i, nid, &this_start, &this_end, NULL) {
147 this_start = clamp(this_start, start, end);
148 this_end = clamp(this_end, start, end);
149
150 if (this_end < size)
151 continue;
152
153 cand = round_down(this_end - size, align);
154 if (cand >= this_start)
155 return cand;
156 }
157
158 return 0;
159}
160
161/**
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800162 * memblock_find_in_range_node - find free area in given range and node
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800163 * @size: size of free area to find
164 * @align: alignment of free area to find
Grygorii Strashko87029ee2014-01-21 15:50:14 -0800165 * @start: start of candidate range
166 * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
Grygorii Strashkob1154232014-01-21 15:50:16 -0800167 * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800168 *
169 * Find @size free area aligned to @align in the specified range and node.
170 *
Tang Chen79442ed2013-11-12 15:07:59 -0800171 * When allocation direction is bottom-up, the @start should be greater
172 * than the end of the kernel image. Otherwise, it will be trimmed. The
173 * reason is that we want the bottom-up allocation just near the kernel
174 * image so it is highly likely that the allocated memory and the kernel
175 * will reside in the same node.
176 *
177 * If bottom-up allocation failed, will try to allocate memory top-down.
178 *
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800179 * RETURNS:
Tang Chen79442ed2013-11-12 15:07:59 -0800180 * Found address on success, 0 on failure.
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +1000181 */
Grygorii Strashko87029ee2014-01-21 15:50:14 -0800182phys_addr_t __init_memblock memblock_find_in_range_node(phys_addr_t size,
183 phys_addr_t align, phys_addr_t start,
184 phys_addr_t end, int nid)
Tang Chenf7210e62013-02-22 16:33:51 -0800185{
Tang Chen79442ed2013-11-12 15:07:59 -0800186 int ret;
187 phys_addr_t kernel_end;
188
Tang Chenf7210e62013-02-22 16:33:51 -0800189 /* pump up @end */
190 if (end == MEMBLOCK_ALLOC_ACCESSIBLE)
191 end = memblock.current_limit;
192
193 /* avoid allocating the first page */
194 start = max_t(phys_addr_t, start, PAGE_SIZE);
195 end = max(start, end);
Tang Chen79442ed2013-11-12 15:07:59 -0800196 kernel_end = __pa_symbol(_end);
197
198 /*
199 * try bottom-up allocation only when bottom-up mode
200 * is set and @end is above the kernel image.
201 */
202 if (memblock_bottom_up() && end > kernel_end) {
203 phys_addr_t bottom_up_start;
204
205 /* make sure we will allocate above the kernel */
206 bottom_up_start = max(start, kernel_end);
207
208 /* ok, try bottom-up allocation first */
209 ret = __memblock_find_range_bottom_up(bottom_up_start, end,
210 size, align, nid);
211 if (ret)
212 return ret;
213
214 /*
215 * we always limit bottom-up allocation above the kernel,
216 * but top-down allocation doesn't have the limit, so
217 * retrying top-down allocation may succeed when bottom-up
218 * allocation failed.
219 *
220 * bottom-up allocation is expected to be fail very rarely,
221 * so we use WARN_ONCE() here to see the stack trace if
222 * fail happens.
223 */
224 WARN_ONCE(1, "memblock: bottom-up allocation failed, "
225 "memory hotunplug may be affected\n");
226 }
Tang Chenf7210e62013-02-22 16:33:51 -0800227
Tang Chen14028992013-11-12 15:07:57 -0800228 return __memblock_find_range_top_down(start, end, size, align, nid);
Tang Chenf7210e62013-02-22 16:33:51 -0800229}
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +1000230
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800231/**
232 * memblock_find_in_range - find free area in given range
233 * @start: start of candidate range
234 * @end: end of candidate range, can be %MEMBLOCK_ALLOC_{ANYWHERE|ACCESSIBLE}
235 * @size: size of free area to find
236 * @align: alignment of free area to find
237 *
238 * Find @size free area aligned to @align in the specified range.
239 *
240 * RETURNS:
Tang Chen79442ed2013-11-12 15:07:59 -0800241 * Found address on success, 0 on failure.
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800242 */
243phys_addr_t __init_memblock memblock_find_in_range(phys_addr_t start,
244 phys_addr_t end, phys_addr_t size,
245 phys_addr_t align)
246{
Grygorii Strashko87029ee2014-01-21 15:50:14 -0800247 return memblock_find_in_range_node(size, align, start, end,
Grygorii Strashkob1154232014-01-21 15:50:16 -0800248 NUMA_NO_NODE);
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800249}
250
Yinghai Lu10d06432010-07-28 15:43:02 +1000251static void __init_memblock memblock_remove_region(struct memblock_type *type, unsigned long r)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000252{
Tejun Heo1440c4e2011-12-08 10:22:08 -0800253 type->total_size -= type->regions[r].size;
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200254 memmove(&type->regions[r], &type->regions[r + 1],
255 (type->cnt - (r + 1)) * sizeof(type->regions[r]));
Benjamin Herrenschmidte3239ff2010-08-04 14:06:41 +1000256 type->cnt--;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000257
Benjamin Herrenschmidt8f7a6602011-03-22 16:33:43 -0700258 /* Special case for empty arrays */
259 if (type->cnt == 0) {
Tejun Heo1440c4e2011-12-08 10:22:08 -0800260 WARN_ON(type->total_size != 0);
Benjamin Herrenschmidt8f7a6602011-03-22 16:33:43 -0700261 type->cnt = 1;
262 type->regions[0].base = 0;
263 type->regions[0].size = 0;
Tang Chen66a20752014-01-21 15:49:20 -0800264 type->regions[0].flags = 0;
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200265 memblock_set_region_node(&type->regions[0], MAX_NUMNODES);
Benjamin Herrenschmidt8f7a6602011-03-22 16:33:43 -0700266 }
Yinghai Lu95f72d12010-07-12 14:36:09 +1000267}
268
Yinghai Lu29f67382012-07-11 14:02:56 -0700269phys_addr_t __init_memblock get_allocated_memblock_reserved_regions_info(
270 phys_addr_t *addr)
271{
272 if (memblock.reserved.regions == memblock_reserved_init_regions)
273 return 0;
274
Grygorii Strashkofd615c42014-01-21 15:50:05 -0800275 /*
276 * Don't allow nobootmem allocator to free reserved memory regions
277 * array if
278 * - CONFIG_DEBUG_FS is enabled;
279 * - CONFIG_ARCH_DISCARD_MEMBLOCK is not enabled;
280 * - reserved memory regions array have been resized during boot.
281 * Otherwise debug_fs entry "sys/kernel/debug/memblock/reserved"
282 * will show garbage instead of state of memory reservations.
283 */
284 if (IS_ENABLED(CONFIG_DEBUG_FS) &&
285 !IS_ENABLED(CONFIG_ARCH_DISCARD_MEMBLOCK))
286 return 0;
287
Yinghai Lu29f67382012-07-11 14:02:56 -0700288 *addr = __pa(memblock.reserved.regions);
289
290 return PAGE_ALIGN(sizeof(struct memblock_region) *
291 memblock.reserved.max);
292}
293
Greg Pearson48c3b582012-06-20 12:53:05 -0700294/**
295 * memblock_double_array - double the size of the memblock regions array
296 * @type: memblock type of the regions array being doubled
297 * @new_area_start: starting address of memory range to avoid overlap with
298 * @new_area_size: size of memory range to avoid overlap with
299 *
300 * Double the size of the @type regions array. If memblock is being used to
301 * allocate memory for a new reserved regions array and there is a previously
302 * allocated memory range [@new_area_start,@new_area_start+@new_area_size]
303 * waiting to be reserved, ensure the memory used by the new array does
304 * not overlap.
305 *
306 * RETURNS:
307 * 0 on success, -1 on failure.
308 */
309static int __init_memblock memblock_double_array(struct memblock_type *type,
310 phys_addr_t new_area_start,
311 phys_addr_t new_area_size)
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700312{
313 struct memblock_region *new_array, *old_array;
Yinghai Lu29f67382012-07-11 14:02:56 -0700314 phys_addr_t old_alloc_size, new_alloc_size;
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700315 phys_addr_t old_size, new_size, addr;
316 int use_slab = slab_is_available();
Gavin Shan181eb392012-05-29 15:06:50 -0700317 int *in_slab;
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700318
319 /* We don't allow resizing until we know about the reserved regions
320 * of memory that aren't suitable for allocation
321 */
322 if (!memblock_can_resize)
323 return -1;
324
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700325 /* Calculate new doubled size */
326 old_size = type->max * sizeof(struct memblock_region);
327 new_size = old_size << 1;
Yinghai Lu29f67382012-07-11 14:02:56 -0700328 /*
329 * We need to allocated new one align to PAGE_SIZE,
330 * so we can free them completely later.
331 */
332 old_alloc_size = PAGE_ALIGN(old_size);
333 new_alloc_size = PAGE_ALIGN(new_size);
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700334
Gavin Shan181eb392012-05-29 15:06:50 -0700335 /* Retrieve the slab flag */
336 if (type == &memblock.memory)
337 in_slab = &memblock_memory_in_slab;
338 else
339 in_slab = &memblock_reserved_in_slab;
340
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700341 /* Try to find some space for it.
342 *
343 * WARNING: We assume that either slab_is_available() and we use it or
Andrew Mortonfd073832012-07-31 16:42:40 -0700344 * we use MEMBLOCK for allocations. That means that this is unsafe to
345 * use when bootmem is currently active (unless bootmem itself is
346 * implemented on top of MEMBLOCK which isn't the case yet)
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700347 *
348 * This should however not be an issue for now, as we currently only
Andrew Mortonfd073832012-07-31 16:42:40 -0700349 * call into MEMBLOCK while it's still active, or much later when slab
350 * is active for memory hotplug operations
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700351 */
352 if (use_slab) {
353 new_array = kmalloc(new_size, GFP_KERNEL);
Tejun Heo1f5026a2011-07-12 09:58:09 +0200354 addr = new_array ? __pa(new_array) : 0;
Gavin Shan4e2f0772012-05-29 15:06:50 -0700355 } else {
Greg Pearson48c3b582012-06-20 12:53:05 -0700356 /* only exclude range when trying to double reserved.regions */
357 if (type != &memblock.reserved)
358 new_area_start = new_area_size = 0;
359
360 addr = memblock_find_in_range(new_area_start + new_area_size,
361 memblock.current_limit,
Yinghai Lu29f67382012-07-11 14:02:56 -0700362 new_alloc_size, PAGE_SIZE);
Greg Pearson48c3b582012-06-20 12:53:05 -0700363 if (!addr && new_area_size)
364 addr = memblock_find_in_range(0,
Andrew Mortonfd073832012-07-31 16:42:40 -0700365 min(new_area_start, memblock.current_limit),
366 new_alloc_size, PAGE_SIZE);
Greg Pearson48c3b582012-06-20 12:53:05 -0700367
Sachin Kamat15674862012-09-04 13:55:05 +0530368 new_array = addr ? __va(addr) : NULL;
Gavin Shan4e2f0772012-05-29 15:06:50 -0700369 }
Tejun Heo1f5026a2011-07-12 09:58:09 +0200370 if (!addr) {
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700371 pr_err("memblock: Failed to double %s array from %ld to %ld entries !\n",
372 memblock_type_name(type), type->max, type->max * 2);
373 return -1;
374 }
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700375
Andrew Mortonfd073832012-07-31 16:42:40 -0700376 memblock_dbg("memblock: %s is doubled to %ld at [%#010llx-%#010llx]",
377 memblock_type_name(type), type->max * 2, (u64)addr,
378 (u64)addr + new_size - 1);
Yinghai Luea9e4372010-07-28 15:13:22 +1000379
Andrew Mortonfd073832012-07-31 16:42:40 -0700380 /*
381 * Found space, we now need to move the array over before we add the
382 * reserved region since it may be our reserved array itself that is
383 * full.
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700384 */
385 memcpy(new_array, type->regions, old_size);
386 memset(new_array + type->max, 0, old_size);
387 old_array = type->regions;
388 type->regions = new_array;
389 type->max <<= 1;
390
Andrew Mortonfd073832012-07-31 16:42:40 -0700391 /* Free old array. We needn't free it if the array is the static one */
Gavin Shan181eb392012-05-29 15:06:50 -0700392 if (*in_slab)
393 kfree(old_array);
394 else if (old_array != memblock_memory_init_regions &&
395 old_array != memblock_reserved_init_regions)
Yinghai Lu29f67382012-07-11 14:02:56 -0700396 memblock_free(__pa(old_array), old_alloc_size);
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700397
Andrew Mortonfd073832012-07-31 16:42:40 -0700398 /*
399 * Reserve the new array if that comes from the memblock. Otherwise, we
400 * needn't do it
Gavin Shan181eb392012-05-29 15:06:50 -0700401 */
402 if (!use_slab)
Yinghai Lu29f67382012-07-11 14:02:56 -0700403 BUG_ON(memblock_reserve(addr, new_alloc_size));
Gavin Shan181eb392012-05-29 15:06:50 -0700404
405 /* Update slab flag */
406 *in_slab = use_slab;
407
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700408 return 0;
409}
410
Tejun Heo784656f2011-07-12 11:15:55 +0200411/**
412 * memblock_merge_regions - merge neighboring compatible regions
413 * @type: memblock type to scan
414 *
415 * Scan @type and merge neighboring compatible regions.
416 */
417static void __init_memblock memblock_merge_regions(struct memblock_type *type)
418{
419 int i = 0;
420
421 /* cnt never goes below 1 */
422 while (i < type->cnt - 1) {
423 struct memblock_region *this = &type->regions[i];
424 struct memblock_region *next = &type->regions[i + 1];
425
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200426 if (this->base + this->size != next->base ||
427 memblock_get_region_node(this) !=
Tang Chen66a20752014-01-21 15:49:20 -0800428 memblock_get_region_node(next) ||
429 this->flags != next->flags) {
Tejun Heo784656f2011-07-12 11:15:55 +0200430 BUG_ON(this->base + this->size > next->base);
431 i++;
432 continue;
433 }
434
435 this->size += next->size;
Lin Fengc0232ae2013-01-11 14:31:44 -0800436 /* move forward from next + 1, index of which is i + 2 */
437 memmove(next, next + 1, (type->cnt - (i + 2)) * sizeof(*next));
Tejun Heo784656f2011-07-12 11:15:55 +0200438 type->cnt--;
439 }
440}
441
442/**
443 * memblock_insert_region - insert new memblock region
Tang Chen209ff862013-04-29 15:08:41 -0700444 * @type: memblock type to insert into
445 * @idx: index for the insertion point
446 * @base: base address of the new region
447 * @size: size of the new region
448 * @nid: node id of the new region
Tang Chen66a20752014-01-21 15:49:20 -0800449 * @flags: flags of the new region
Tejun Heo784656f2011-07-12 11:15:55 +0200450 *
451 * Insert new memblock region [@base,@base+@size) into @type at @idx.
452 * @type must already have extra room to accomodate the new region.
453 */
454static void __init_memblock memblock_insert_region(struct memblock_type *type,
455 int idx, phys_addr_t base,
Tang Chen66a20752014-01-21 15:49:20 -0800456 phys_addr_t size,
457 int nid, unsigned long flags)
Tejun Heo784656f2011-07-12 11:15:55 +0200458{
459 struct memblock_region *rgn = &type->regions[idx];
460
461 BUG_ON(type->cnt >= type->max);
462 memmove(rgn + 1, rgn, (type->cnt - idx) * sizeof(*rgn));
463 rgn->base = base;
464 rgn->size = size;
Tang Chen66a20752014-01-21 15:49:20 -0800465 rgn->flags = flags;
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200466 memblock_set_region_node(rgn, nid);
Tejun Heo784656f2011-07-12 11:15:55 +0200467 type->cnt++;
Tejun Heo1440c4e2011-12-08 10:22:08 -0800468 type->total_size += size;
Tejun Heo784656f2011-07-12 11:15:55 +0200469}
470
471/**
472 * memblock_add_region - add new memblock region
473 * @type: memblock type to add new region into
474 * @base: base address of the new region
475 * @size: size of the new region
Tejun Heo7fb0bc32011-12-08 10:22:08 -0800476 * @nid: nid of the new region
Tang Chen66a20752014-01-21 15:49:20 -0800477 * @flags: flags of the new region
Tejun Heo784656f2011-07-12 11:15:55 +0200478 *
479 * Add new memblock region [@base,@base+@size) into @type. The new region
480 * is allowed to overlap with existing ones - overlaps don't affect already
481 * existing regions. @type is guaranteed to be minimal (all neighbouring
482 * compatible regions are merged) after the addition.
483 *
484 * RETURNS:
485 * 0 on success, -errno on failure.
486 */
Tejun Heo581adcb2011-12-08 10:22:06 -0800487static int __init_memblock memblock_add_region(struct memblock_type *type,
Tang Chen66a20752014-01-21 15:49:20 -0800488 phys_addr_t base, phys_addr_t size,
489 int nid, unsigned long flags)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000490{
Tejun Heo784656f2011-07-12 11:15:55 +0200491 bool insert = false;
Tejun Heoeb18f1b2011-12-08 10:22:07 -0800492 phys_addr_t obase = base;
493 phys_addr_t end = base + memblock_cap_size(base, &size);
Tejun Heo784656f2011-07-12 11:15:55 +0200494 int i, nr_new;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000495
Tejun Heob3dc6272012-04-20 08:31:34 -0700496 if (!size)
497 return 0;
498
Tejun Heo784656f2011-07-12 11:15:55 +0200499 /* special case for empty array */
500 if (type->regions[0].size == 0) {
Tejun Heo1440c4e2011-12-08 10:22:08 -0800501 WARN_ON(type->cnt != 1 || type->total_size);
Benjamin Herrenschmidte3239ff2010-08-04 14:06:41 +1000502 type->regions[0].base = base;
503 type->regions[0].size = size;
Tang Chen66a20752014-01-21 15:49:20 -0800504 type->regions[0].flags = flags;
Tejun Heo7fb0bc32011-12-08 10:22:08 -0800505 memblock_set_region_node(&type->regions[0], nid);
Tejun Heo1440c4e2011-12-08 10:22:08 -0800506 type->total_size = size;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000507 return 0;
508 }
Tejun Heo784656f2011-07-12 11:15:55 +0200509repeat:
510 /*
511 * The following is executed twice. Once with %false @insert and
512 * then with %true. The first counts the number of regions needed
513 * to accomodate the new area. The second actually inserts them.
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700514 */
Tejun Heo784656f2011-07-12 11:15:55 +0200515 base = obase;
516 nr_new = 0;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000517
Tejun Heo784656f2011-07-12 11:15:55 +0200518 for (i = 0; i < type->cnt; i++) {
519 struct memblock_region *rgn = &type->regions[i];
520 phys_addr_t rbase = rgn->base;
521 phys_addr_t rend = rbase + rgn->size;
522
523 if (rbase >= end)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000524 break;
Tejun Heo784656f2011-07-12 11:15:55 +0200525 if (rend <= base)
526 continue;
527 /*
528 * @rgn overlaps. If it separates the lower part of new
529 * area, insert that portion.
530 */
531 if (rbase > base) {
532 nr_new++;
533 if (insert)
534 memblock_insert_region(type, i++, base,
Tang Chen66a20752014-01-21 15:49:20 -0800535 rbase - base, nid,
536 flags);
Yinghai Lu95f72d12010-07-12 14:36:09 +1000537 }
Tejun Heo784656f2011-07-12 11:15:55 +0200538 /* area below @rend is dealt with, forget about it */
539 base = min(rend, end);
Yinghai Lu95f72d12010-07-12 14:36:09 +1000540 }
Yinghai Lu95f72d12010-07-12 14:36:09 +1000541
Tejun Heo784656f2011-07-12 11:15:55 +0200542 /* insert the remaining portion */
543 if (base < end) {
544 nr_new++;
545 if (insert)
Tang Chen66a20752014-01-21 15:49:20 -0800546 memblock_insert_region(type, i, base, end - base,
547 nid, flags);
Tejun Heo784656f2011-07-12 11:15:55 +0200548 }
549
550 /*
551 * If this was the first round, resize array and repeat for actual
552 * insertions; otherwise, merge and return.
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700553 */
Tejun Heo784656f2011-07-12 11:15:55 +0200554 if (!insert) {
555 while (type->cnt + nr_new > type->max)
Greg Pearson48c3b582012-06-20 12:53:05 -0700556 if (memblock_double_array(type, obase, size) < 0)
Tejun Heo784656f2011-07-12 11:15:55 +0200557 return -ENOMEM;
558 insert = true;
559 goto repeat;
560 } else {
561 memblock_merge_regions(type);
562 return 0;
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -0700563 }
Yinghai Lu95f72d12010-07-12 14:36:09 +1000564}
565
Tejun Heo7fb0bc32011-12-08 10:22:08 -0800566int __init_memblock memblock_add_node(phys_addr_t base, phys_addr_t size,
567 int nid)
568{
Tang Chen66a20752014-01-21 15:49:20 -0800569 return memblock_add_region(&memblock.memory, base, size, nid, 0);
Tejun Heo7fb0bc32011-12-08 10:22:08 -0800570}
571
Tejun Heo581adcb2011-12-08 10:22:06 -0800572int __init_memblock memblock_add(phys_addr_t base, phys_addr_t size)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000573{
Tang Chen66a20752014-01-21 15:49:20 -0800574 return memblock_add_region(&memblock.memory, base, size,
575 MAX_NUMNODES, 0);
Yinghai Lu95f72d12010-07-12 14:36:09 +1000576}
577
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800578/**
579 * memblock_isolate_range - isolate given range into disjoint memblocks
580 * @type: memblock type to isolate range for
581 * @base: base of range to isolate
582 * @size: size of range to isolate
583 * @start_rgn: out parameter for the start of isolated region
584 * @end_rgn: out parameter for the end of isolated region
585 *
586 * Walk @type and ensure that regions don't cross the boundaries defined by
587 * [@base,@base+@size). Crossing regions are split at the boundaries,
588 * which may create at most two more regions. The index of the first
589 * region inside the range is returned in *@start_rgn and end in *@end_rgn.
590 *
591 * RETURNS:
592 * 0 on success, -errno on failure.
593 */
594static int __init_memblock memblock_isolate_range(struct memblock_type *type,
595 phys_addr_t base, phys_addr_t size,
596 int *start_rgn, int *end_rgn)
597{
Tejun Heoeb18f1b2011-12-08 10:22:07 -0800598 phys_addr_t end = base + memblock_cap_size(base, &size);
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800599 int i;
600
601 *start_rgn = *end_rgn = 0;
602
Tejun Heob3dc6272012-04-20 08:31:34 -0700603 if (!size)
604 return 0;
605
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800606 /* we'll create at most two more regions */
607 while (type->cnt + 2 > type->max)
Greg Pearson48c3b582012-06-20 12:53:05 -0700608 if (memblock_double_array(type, base, size) < 0)
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800609 return -ENOMEM;
610
611 for (i = 0; i < type->cnt; i++) {
612 struct memblock_region *rgn = &type->regions[i];
613 phys_addr_t rbase = rgn->base;
614 phys_addr_t rend = rbase + rgn->size;
615
616 if (rbase >= end)
617 break;
618 if (rend <= base)
619 continue;
620
621 if (rbase < base) {
622 /*
623 * @rgn intersects from below. Split and continue
624 * to process the next region - the new top half.
625 */
626 rgn->base = base;
Tejun Heo1440c4e2011-12-08 10:22:08 -0800627 rgn->size -= base - rbase;
628 type->total_size -= base - rbase;
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800629 memblock_insert_region(type, i, rbase, base - rbase,
Tang Chen66a20752014-01-21 15:49:20 -0800630 memblock_get_region_node(rgn),
631 rgn->flags);
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800632 } else if (rend > end) {
633 /*
634 * @rgn intersects from above. Split and redo the
635 * current region - the new bottom half.
636 */
637 rgn->base = end;
Tejun Heo1440c4e2011-12-08 10:22:08 -0800638 rgn->size -= end - rbase;
639 type->total_size -= end - rbase;
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800640 memblock_insert_region(type, i--, rbase, end - rbase,
Tang Chen66a20752014-01-21 15:49:20 -0800641 memblock_get_region_node(rgn),
642 rgn->flags);
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800643 } else {
644 /* @rgn is fully contained, record it */
645 if (!*end_rgn)
646 *start_rgn = i;
647 *end_rgn = i + 1;
648 }
649 }
650
651 return 0;
652}
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800653
Tejun Heo581adcb2011-12-08 10:22:06 -0800654static int __init_memblock __memblock_remove(struct memblock_type *type,
655 phys_addr_t base, phys_addr_t size)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000656{
Tejun Heo71936182011-12-08 10:22:07 -0800657 int start_rgn, end_rgn;
658 int i, ret;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000659
Tejun Heo71936182011-12-08 10:22:07 -0800660 ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
661 if (ret)
662 return ret;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000663
Tejun Heo71936182011-12-08 10:22:07 -0800664 for (i = end_rgn - 1; i >= start_rgn; i--)
665 memblock_remove_region(type, i);
Benjamin Herrenschmidt8f7a6602011-03-22 16:33:43 -0700666 return 0;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000667}
668
Tejun Heo581adcb2011-12-08 10:22:06 -0800669int __init_memblock memblock_remove(phys_addr_t base, phys_addr_t size)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000670{
671 return __memblock_remove(&memblock.memory, base, size);
672}
673
Tejun Heo581adcb2011-12-08 10:22:06 -0800674int __init_memblock memblock_free(phys_addr_t base, phys_addr_t size)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000675{
Tejun Heo24aa0782011-07-12 11:16:06 +0200676 memblock_dbg(" memblock_free: [%#016llx-%#016llx] %pF\n",
H. Peter Anvina1504392011-07-14 11:57:10 -0700677 (unsigned long long)base,
Grygorii Strashko931d13f2014-01-21 15:49:17 -0800678 (unsigned long long)base + size - 1,
H. Peter Anvina1504392011-07-14 11:57:10 -0700679 (void *)_RET_IP_);
Tejun Heo24aa0782011-07-12 11:16:06 +0200680
Yinghai Lu95f72d12010-07-12 14:36:09 +1000681 return __memblock_remove(&memblock.reserved, base, size);
682}
683
Tang Chen66a20752014-01-21 15:49:20 -0800684static int __init_memblock memblock_reserve_region(phys_addr_t base,
685 phys_addr_t size,
686 int nid,
687 unsigned long flags)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000688{
Benjamin Herrenschmidte3239ff2010-08-04 14:06:41 +1000689 struct memblock_type *_rgn = &memblock.reserved;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000690
Tang Chen66a20752014-01-21 15:49:20 -0800691 memblock_dbg("memblock_reserve: [%#016llx-%#016llx] flags %#02lx %pF\n",
H. Peter Anvina1504392011-07-14 11:57:10 -0700692 (unsigned long long)base,
Grygorii Strashko931d13f2014-01-21 15:49:17 -0800693 (unsigned long long)base + size - 1,
Tang Chen66a20752014-01-21 15:49:20 -0800694 flags, (void *)_RET_IP_);
Yinghai Lu95f72d12010-07-12 14:36:09 +1000695
Tang Chen66a20752014-01-21 15:49:20 -0800696 return memblock_add_region(_rgn, base, size, nid, flags);
697}
698
699int __init_memblock memblock_reserve(phys_addr_t base, phys_addr_t size)
700{
701 return memblock_reserve_region(base, size, MAX_NUMNODES, 0);
Yinghai Lu95f72d12010-07-12 14:36:09 +1000702}
703
Tejun Heo35fd0802011-07-12 11:15:59 +0200704/**
Tang Chen66b16ed2014-01-21 15:49:23 -0800705 * memblock_mark_hotplug - Mark hotpluggable memory with flag MEMBLOCK_HOTPLUG.
706 * @base: the base phys addr of the region
707 * @size: the size of the region
708 *
709 * This function isolates region [@base, @base + @size), and mark it with flag
710 * MEMBLOCK_HOTPLUG.
711 *
712 * Return 0 on succees, -errno on failure.
713 */
714int __init_memblock memblock_mark_hotplug(phys_addr_t base, phys_addr_t size)
715{
716 struct memblock_type *type = &memblock.memory;
717 int i, ret, start_rgn, end_rgn;
718
719 ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
720 if (ret)
721 return ret;
722
723 for (i = start_rgn; i < end_rgn; i++)
724 memblock_set_region_flags(&type->regions[i], MEMBLOCK_HOTPLUG);
725
726 memblock_merge_regions(type);
727 return 0;
728}
729
730/**
731 * memblock_clear_hotplug - Clear flag MEMBLOCK_HOTPLUG for a specified region.
732 * @base: the base phys addr of the region
733 * @size: the size of the region
734 *
735 * This function isolates region [@base, @base + @size), and clear flag
736 * MEMBLOCK_HOTPLUG for the isolated regions.
737 *
738 * Return 0 on succees, -errno on failure.
739 */
740int __init_memblock memblock_clear_hotplug(phys_addr_t base, phys_addr_t size)
741{
742 struct memblock_type *type = &memblock.memory;
743 int i, ret, start_rgn, end_rgn;
744
745 ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
746 if (ret)
747 return ret;
748
749 for (i = start_rgn; i < end_rgn; i++)
750 memblock_clear_region_flags(&type->regions[i],
751 MEMBLOCK_HOTPLUG);
752
753 memblock_merge_regions(type);
754 return 0;
755}
756
757/**
Tejun Heo35fd0802011-07-12 11:15:59 +0200758 * __next_free_mem_range - next function for for_each_free_mem_range()
759 * @idx: pointer to u64 loop variable
Grygorii Strashkob1154232014-01-21 15:50:16 -0800760 * @nid: node selector, %NUMA_NO_NODE for all nodes
Wanpeng Lidad75572012-06-20 12:53:01 -0700761 * @out_start: ptr to phys_addr_t for start address of the range, can be %NULL
762 * @out_end: ptr to phys_addr_t for end address of the range, can be %NULL
763 * @out_nid: ptr to int for nid of the range, can be %NULL
Tejun Heo35fd0802011-07-12 11:15:59 +0200764 *
765 * Find the first free area from *@idx which matches @nid, fill the out
766 * parameters, and update *@idx for the next iteration. The lower 32bit of
767 * *@idx contains index into memory region and the upper 32bit indexes the
768 * areas before each reserved region. For example, if reserved regions
769 * look like the following,
770 *
771 * 0:[0-16), 1:[32-48), 2:[128-130)
772 *
773 * The upper 32bit indexes the following regions.
774 *
775 * 0:[0-0), 1:[16-32), 2:[48-128), 3:[130-MAX)
776 *
777 * As both region arrays are sorted, the function advances the two indices
778 * in lockstep and returns each intersection.
779 */
780void __init_memblock __next_free_mem_range(u64 *idx, int nid,
781 phys_addr_t *out_start,
782 phys_addr_t *out_end, int *out_nid)
783{
784 struct memblock_type *mem = &memblock.memory;
785 struct memblock_type *rsv = &memblock.reserved;
786 int mi = *idx & 0xffffffff;
787 int ri = *idx >> 32;
Grygorii Strashkob1154232014-01-21 15:50:16 -0800788 bool check_node = (nid != NUMA_NO_NODE) && (nid != MAX_NUMNODES);
789
790 if (nid == MAX_NUMNODES)
Santosh Shilimkar26f09e92014-01-21 15:50:19 -0800791 pr_warn_once("%s: Usage of MAX_NUMNODES is deprecated. Use NUMA_NO_NODE instead\n",
Grygorii Strashkob1154232014-01-21 15:50:16 -0800792 __func__);
Tejun Heo35fd0802011-07-12 11:15:59 +0200793
794 for ( ; mi < mem->cnt; mi++) {
795 struct memblock_region *m = &mem->regions[mi];
796 phys_addr_t m_start = m->base;
797 phys_addr_t m_end = m->base + m->size;
798
799 /* only memory regions are associated with nodes, check it */
Grygorii Strashkob1154232014-01-21 15:50:16 -0800800 if (check_node && nid != memblock_get_region_node(m))
Tejun Heo35fd0802011-07-12 11:15:59 +0200801 continue;
802
803 /* scan areas before each reservation for intersection */
804 for ( ; ri < rsv->cnt + 1; ri++) {
805 struct memblock_region *r = &rsv->regions[ri];
806 phys_addr_t r_start = ri ? r[-1].base + r[-1].size : 0;
807 phys_addr_t r_end = ri < rsv->cnt ? r->base : ULLONG_MAX;
808
809 /* if ri advanced past mi, break out to advance mi */
810 if (r_start >= m_end)
811 break;
812 /* if the two regions intersect, we're done */
813 if (m_start < r_end) {
814 if (out_start)
815 *out_start = max(m_start, r_start);
816 if (out_end)
817 *out_end = min(m_end, r_end);
818 if (out_nid)
819 *out_nid = memblock_get_region_node(m);
820 /*
821 * The region which ends first is advanced
822 * for the next iteration.
823 */
824 if (m_end <= r_end)
825 mi++;
826 else
827 ri++;
828 *idx = (u32)mi | (u64)ri << 32;
829 return;
830 }
831 }
832 }
833
834 /* signal end of iteration */
835 *idx = ULLONG_MAX;
836}
837
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800838/**
839 * __next_free_mem_range_rev - next function for for_each_free_mem_range_reverse()
840 * @idx: pointer to u64 loop variable
Grygorii Strashkob1154232014-01-21 15:50:16 -0800841 * @nid: nid: node selector, %NUMA_NO_NODE for all nodes
Wanpeng Lidad75572012-06-20 12:53:01 -0700842 * @out_start: ptr to phys_addr_t for start address of the range, can be %NULL
843 * @out_end: ptr to phys_addr_t for end address of the range, can be %NULL
844 * @out_nid: ptr to int for nid of the range, can be %NULL
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800845 *
846 * Reverse of __next_free_mem_range().
Tang Chen55ac5902014-01-21 15:49:35 -0800847 *
848 * Linux kernel cannot migrate pages used by itself. Memory hotplug users won't
849 * be able to hot-remove hotpluggable memory used by the kernel. So this
850 * function skip hotpluggable regions if needed when allocating memory for the
851 * kernel.
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800852 */
853void __init_memblock __next_free_mem_range_rev(u64 *idx, int nid,
854 phys_addr_t *out_start,
855 phys_addr_t *out_end, int *out_nid)
856{
857 struct memblock_type *mem = &memblock.memory;
858 struct memblock_type *rsv = &memblock.reserved;
859 int mi = *idx & 0xffffffff;
860 int ri = *idx >> 32;
Grygorii Strashkob1154232014-01-21 15:50:16 -0800861 bool check_node = (nid != NUMA_NO_NODE) && (nid != MAX_NUMNODES);
862
863 if (nid == MAX_NUMNODES)
Santosh Shilimkar26f09e92014-01-21 15:50:19 -0800864 pr_warn_once("%s: Usage of MAX_NUMNODES is deprecated. Use NUMA_NO_NODE instead\n",
Grygorii Strashkob1154232014-01-21 15:50:16 -0800865 __func__);
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800866
867 if (*idx == (u64)ULLONG_MAX) {
868 mi = mem->cnt - 1;
869 ri = rsv->cnt;
870 }
871
872 for ( ; mi >= 0; mi--) {
873 struct memblock_region *m = &mem->regions[mi];
874 phys_addr_t m_start = m->base;
875 phys_addr_t m_end = m->base + m->size;
876
877 /* only memory regions are associated with nodes, check it */
Grygorii Strashkob1154232014-01-21 15:50:16 -0800878 if (check_node && nid != memblock_get_region_node(m))
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800879 continue;
880
Tang Chen55ac5902014-01-21 15:49:35 -0800881 /* skip hotpluggable memory regions if needed */
882 if (movable_node_is_enabled() && memblock_is_hotpluggable(m))
883 continue;
884
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800885 /* scan areas before each reservation for intersection */
886 for ( ; ri >= 0; ri--) {
887 struct memblock_region *r = &rsv->regions[ri];
888 phys_addr_t r_start = ri ? r[-1].base + r[-1].size : 0;
889 phys_addr_t r_end = ri < rsv->cnt ? r->base : ULLONG_MAX;
890
891 /* if ri advanced past mi, break out to advance mi */
892 if (r_end <= m_start)
893 break;
894 /* if the two regions intersect, we're done */
895 if (m_end > r_start) {
896 if (out_start)
897 *out_start = max(m_start, r_start);
898 if (out_end)
899 *out_end = min(m_end, r_end);
900 if (out_nid)
901 *out_nid = memblock_get_region_node(m);
902
903 if (m_start >= r_start)
904 mi--;
905 else
906 ri--;
907 *idx = (u32)mi | (u64)ri << 32;
908 return;
909 }
910 }
911 }
912
913 *idx = ULLONG_MAX;
914}
915
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200916#ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
917/*
918 * Common iterator interface used to define for_each_mem_range().
919 */
920void __init_memblock __next_mem_pfn_range(int *idx, int nid,
921 unsigned long *out_start_pfn,
922 unsigned long *out_end_pfn, int *out_nid)
923{
924 struct memblock_type *type = &memblock.memory;
925 struct memblock_region *r;
926
927 while (++*idx < type->cnt) {
928 r = &type->regions[*idx];
929
930 if (PFN_UP(r->base) >= PFN_DOWN(r->base + r->size))
931 continue;
932 if (nid == MAX_NUMNODES || nid == r->nid)
933 break;
934 }
935 if (*idx >= type->cnt) {
936 *idx = -1;
937 return;
938 }
939
940 if (out_start_pfn)
941 *out_start_pfn = PFN_UP(r->base);
942 if (out_end_pfn)
943 *out_end_pfn = PFN_DOWN(r->base + r->size);
944 if (out_nid)
945 *out_nid = r->nid;
946}
947
948/**
949 * memblock_set_node - set node ID on memblock regions
950 * @base: base of area to set node ID for
951 * @size: size of area to set node ID for
Tang Chene7e8de52014-01-21 15:49:26 -0800952 * @type: memblock type to set node ID for
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200953 * @nid: node ID to set
954 *
Tang Chene7e8de52014-01-21 15:49:26 -0800955 * Set the nid of memblock @type regions in [@base,@base+@size) to @nid.
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200956 * Regions which cross the area boundaries are split as necessary.
957 *
958 * RETURNS:
959 * 0 on success, -errno on failure.
960 */
961int __init_memblock memblock_set_node(phys_addr_t base, phys_addr_t size,
Tang Chene7e8de52014-01-21 15:49:26 -0800962 struct memblock_type *type, int nid)
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200963{
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800964 int start_rgn, end_rgn;
965 int i, ret;
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200966
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800967 ret = memblock_isolate_range(type, base, size, &start_rgn, &end_rgn);
968 if (ret)
969 return ret;
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200970
Tejun Heo6a9ceb32011-12-08 10:22:07 -0800971 for (i = start_rgn; i < end_rgn; i++)
Wanpeng Lie9d24ad2012-10-08 16:32:21 -0700972 memblock_set_region_node(&type->regions[i], nid);
Tejun Heo7c0caeb2011-07-14 11:43:42 +0200973
974 memblock_merge_regions(type);
975 return 0;
976}
977#endif /* CONFIG_HAVE_MEMBLOCK_NODE_MAP */
978
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800979static phys_addr_t __init memblock_alloc_base_nid(phys_addr_t size,
980 phys_addr_t align, phys_addr_t max_addr,
981 int nid)
Yinghai Lu95f72d12010-07-12 14:36:09 +1000982{
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +1000983 phys_addr_t found;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000984
Grygorii Strashko79f40fa2014-01-21 15:50:12 -0800985 if (!align)
986 align = SMP_CACHE_BYTES;
Vineet Gupta94f3d3a2013-04-29 15:06:15 -0700987
Tejun Heo847854f2012-02-29 05:56:21 +0900988 /* align @size to avoid excessive fragmentation on reserved array */
989 size = round_up(size, align);
990
Grygorii Strashko87029ee2014-01-21 15:50:14 -0800991 found = memblock_find_in_range_node(size, align, 0, max_addr, nid);
Tejun Heo9c8c27e2011-12-08 10:22:06 -0800992 if (found && !memblock_reserve(found, size))
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +1000993 return found;
994
995 return 0;
Yinghai Lu95f72d12010-07-12 14:36:09 +1000996}
997
Tejun Heo7bd0b0f2011-12-08 10:22:09 -0800998phys_addr_t __init memblock_alloc_nid(phys_addr_t size, phys_addr_t align, int nid)
999{
1000 return memblock_alloc_base_nid(size, align, MEMBLOCK_ALLOC_ACCESSIBLE, nid);
1001}
1002
1003phys_addr_t __init __memblock_alloc_base(phys_addr_t size, phys_addr_t align, phys_addr_t max_addr)
1004{
Grygorii Strashkob1154232014-01-21 15:50:16 -08001005 return memblock_alloc_base_nid(size, align, max_addr, NUMA_NO_NODE);
Tejun Heo7bd0b0f2011-12-08 10:22:09 -08001006}
1007
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001008phys_addr_t __init memblock_alloc_base(phys_addr_t size, phys_addr_t align, phys_addr_t max_addr)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001009{
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001010 phys_addr_t alloc;
1011
1012 alloc = __memblock_alloc_base(size, align, max_addr);
1013
1014 if (alloc == 0)
1015 panic("ERROR: Failed to allocate 0x%llx bytes below 0x%llx.\n",
1016 (unsigned long long) size, (unsigned long long) max_addr);
1017
1018 return alloc;
Yinghai Lu95f72d12010-07-12 14:36:09 +10001019}
1020
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001021phys_addr_t __init memblock_alloc(phys_addr_t size, phys_addr_t align)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001022{
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001023 return memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ACCESSIBLE);
Yinghai Lu95f72d12010-07-12 14:36:09 +10001024}
1025
Benjamin Herrenschmidt9d1e2492010-07-06 15:39:17 -07001026phys_addr_t __init memblock_alloc_try_nid(phys_addr_t size, phys_addr_t align, int nid)
1027{
1028 phys_addr_t res = memblock_alloc_nid(size, align, nid);
1029
1030 if (res)
1031 return res;
Tejun Heo15fb0972011-07-12 09:58:07 +02001032 return memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ACCESSIBLE);
Yinghai Lu95f72d12010-07-12 14:36:09 +10001033}
1034
Santosh Shilimkar26f09e92014-01-21 15:50:19 -08001035/**
1036 * memblock_virt_alloc_internal - allocate boot memory block
1037 * @size: size of memory block to be allocated in bytes
1038 * @align: alignment of the region and block's size
1039 * @min_addr: the lower bound of the memory region to allocate (phys address)
1040 * @max_addr: the upper bound of the memory region to allocate (phys address)
1041 * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
1042 *
1043 * The @min_addr limit is dropped if it can not be satisfied and the allocation
1044 * will fall back to memory below @min_addr. Also, allocation may fall back
1045 * to any node in the system if the specified node can not
1046 * hold the requested memory.
1047 *
1048 * The allocation is performed from memory region limited by
1049 * memblock.current_limit if @max_addr == %BOOTMEM_ALLOC_ACCESSIBLE.
1050 *
1051 * The memory block is aligned on SMP_CACHE_BYTES if @align == 0.
1052 *
1053 * The phys address of allocated boot memory block is converted to virtual and
1054 * allocated memory is reset to 0.
1055 *
1056 * In addition, function sets the min_count to 0 using kmemleak_alloc for
1057 * allocated boot memory block, so that it is never reported as leaks.
1058 *
1059 * RETURNS:
1060 * Virtual address of allocated memory block on success, NULL on failure.
1061 */
1062static void * __init memblock_virt_alloc_internal(
1063 phys_addr_t size, phys_addr_t align,
1064 phys_addr_t min_addr, phys_addr_t max_addr,
1065 int nid)
1066{
1067 phys_addr_t alloc;
1068 void *ptr;
1069
1070 if (nid == MAX_NUMNODES)
1071 pr_warn("%s: usage of MAX_NUMNODES is deprecated. Use NUMA_NO_NODE\n",
1072 __func__);
1073
1074 /*
1075 * Detect any accidental use of these APIs after slab is ready, as at
1076 * this moment memblock may be deinitialized already and its
1077 * internal data may be destroyed (after execution of free_all_bootmem)
1078 */
1079 if (WARN_ON_ONCE(slab_is_available()))
1080 return kzalloc_node(size, GFP_NOWAIT, nid);
1081
1082 if (!align)
1083 align = SMP_CACHE_BYTES;
1084
1085 /* align @size to avoid excessive fragmentation on reserved array */
1086 size = round_up(size, align);
1087
1088again:
1089 alloc = memblock_find_in_range_node(size, align, min_addr, max_addr,
1090 nid);
1091 if (alloc)
1092 goto done;
1093
1094 if (nid != NUMA_NO_NODE) {
1095 alloc = memblock_find_in_range_node(size, align, min_addr,
1096 max_addr, NUMA_NO_NODE);
1097 if (alloc)
1098 goto done;
1099 }
1100
1101 if (min_addr) {
1102 min_addr = 0;
1103 goto again;
1104 } else {
1105 goto error;
1106 }
1107
1108done:
1109 memblock_reserve(alloc, size);
1110 ptr = phys_to_virt(alloc);
1111 memset(ptr, 0, size);
1112
1113 /*
1114 * The min_count is set to 0 so that bootmem allocated blocks
1115 * are never reported as leaks. This is because many of these blocks
1116 * are only referred via the physical address which is not
1117 * looked up by kmemleak.
1118 */
1119 kmemleak_alloc(ptr, size, 0, 0);
1120
1121 return ptr;
1122
1123error:
1124 return NULL;
1125}
1126
1127/**
1128 * memblock_virt_alloc_try_nid_nopanic - allocate boot memory block
1129 * @size: size of memory block to be allocated in bytes
1130 * @align: alignment of the region and block's size
1131 * @min_addr: the lower bound of the memory region from where the allocation
1132 * is preferred (phys address)
1133 * @max_addr: the upper bound of the memory region from where the allocation
1134 * is preferred (phys address), or %BOOTMEM_ALLOC_ACCESSIBLE to
1135 * allocate only from memory limited by memblock.current_limit value
1136 * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
1137 *
1138 * Public version of _memblock_virt_alloc_try_nid_nopanic() which provides
1139 * additional debug information (including caller info), if enabled.
1140 *
1141 * RETURNS:
1142 * Virtual address of allocated memory block on success, NULL on failure.
1143 */
1144void * __init memblock_virt_alloc_try_nid_nopanic(
1145 phys_addr_t size, phys_addr_t align,
1146 phys_addr_t min_addr, phys_addr_t max_addr,
1147 int nid)
1148{
1149 memblock_dbg("%s: %llu bytes align=0x%llx nid=%d from=0x%llx max_addr=0x%llx %pF\n",
1150 __func__, (u64)size, (u64)align, nid, (u64)min_addr,
1151 (u64)max_addr, (void *)_RET_IP_);
1152 return memblock_virt_alloc_internal(size, align, min_addr,
1153 max_addr, nid);
1154}
1155
1156/**
1157 * memblock_virt_alloc_try_nid - allocate boot memory block with panicking
1158 * @size: size of memory block to be allocated in bytes
1159 * @align: alignment of the region and block's size
1160 * @min_addr: the lower bound of the memory region from where the allocation
1161 * is preferred (phys address)
1162 * @max_addr: the upper bound of the memory region from where the allocation
1163 * is preferred (phys address), or %BOOTMEM_ALLOC_ACCESSIBLE to
1164 * allocate only from memory limited by memblock.current_limit value
1165 * @nid: nid of the free area to find, %NUMA_NO_NODE for any node
1166 *
1167 * Public panicking version of _memblock_virt_alloc_try_nid_nopanic()
1168 * which provides debug information (including caller info), if enabled,
1169 * and panics if the request can not be satisfied.
1170 *
1171 * RETURNS:
1172 * Virtual address of allocated memory block on success, NULL on failure.
1173 */
1174void * __init memblock_virt_alloc_try_nid(
1175 phys_addr_t size, phys_addr_t align,
1176 phys_addr_t min_addr, phys_addr_t max_addr,
1177 int nid)
1178{
1179 void *ptr;
1180
1181 memblock_dbg("%s: %llu bytes align=0x%llx nid=%d from=0x%llx max_addr=0x%llx %pF\n",
1182 __func__, (u64)size, (u64)align, nid, (u64)min_addr,
1183 (u64)max_addr, (void *)_RET_IP_);
1184 ptr = memblock_virt_alloc_internal(size, align,
1185 min_addr, max_addr, nid);
1186 if (ptr)
1187 return ptr;
1188
1189 panic("%s: Failed to allocate %llu bytes align=0x%llx nid=%d from=0x%llx max_addr=0x%llx\n",
1190 __func__, (u64)size, (u64)align, nid, (u64)min_addr,
1191 (u64)max_addr);
1192 return NULL;
1193}
1194
1195/**
1196 * __memblock_free_early - free boot memory block
1197 * @base: phys starting address of the boot memory block
1198 * @size: size of the boot memory block in bytes
1199 *
1200 * Free boot memory block previously allocated by memblock_virt_alloc_xx() API.
1201 * The freeing memory will not be released to the buddy allocator.
1202 */
1203void __init __memblock_free_early(phys_addr_t base, phys_addr_t size)
1204{
1205 memblock_dbg("%s: [%#016llx-%#016llx] %pF\n",
1206 __func__, (u64)base, (u64)base + size - 1,
1207 (void *)_RET_IP_);
1208 kmemleak_free_part(__va(base), size);
1209 __memblock_remove(&memblock.reserved, base, size);
1210}
1211
1212/*
1213 * __memblock_free_late - free bootmem block pages directly to buddy allocator
1214 * @addr: phys starting address of the boot memory block
1215 * @size: size of the boot memory block in bytes
1216 *
1217 * This is only useful when the bootmem allocator has already been torn
1218 * down, but we are still initializing the system. Pages are released directly
1219 * to the buddy allocator, no bootmem metadata is updated because it is gone.
1220 */
1221void __init __memblock_free_late(phys_addr_t base, phys_addr_t size)
1222{
1223 u64 cursor, end;
1224
1225 memblock_dbg("%s: [%#016llx-%#016llx] %pF\n",
1226 __func__, (u64)base, (u64)base + size - 1,
1227 (void *)_RET_IP_);
1228 kmemleak_free_part(__va(base), size);
1229 cursor = PFN_UP(base);
1230 end = PFN_DOWN(base + size);
1231
1232 for (; cursor < end; cursor++) {
1233 __free_pages_bootmem(pfn_to_page(cursor), 0);
1234 totalram_pages++;
1235 }
1236}
Benjamin Herrenschmidt9d1e2492010-07-06 15:39:17 -07001237
1238/*
1239 * Remaining API functions
1240 */
1241
Benjamin Herrenschmidt2898cc42010-08-04 13:34:42 +10001242phys_addr_t __init memblock_phys_mem_size(void)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001243{
Tejun Heo1440c4e2011-12-08 10:22:08 -08001244 return memblock.memory.total_size;
Yinghai Lu95f72d12010-07-12 14:36:09 +10001245}
1246
Yinghai Lu595ad9a2013-01-24 12:20:09 -08001247phys_addr_t __init memblock_mem_size(unsigned long limit_pfn)
1248{
1249 unsigned long pages = 0;
1250 struct memblock_region *r;
1251 unsigned long start_pfn, end_pfn;
1252
1253 for_each_memblock(memory, r) {
1254 start_pfn = memblock_region_memory_base_pfn(r);
1255 end_pfn = memblock_region_memory_end_pfn(r);
1256 start_pfn = min_t(unsigned long, start_pfn, limit_pfn);
1257 end_pfn = min_t(unsigned long, end_pfn, limit_pfn);
1258 pages += end_pfn - start_pfn;
1259 }
1260
1261 return (phys_addr_t)pages << PAGE_SHIFT;
1262}
1263
Sam Ravnborg0a93ebe2011-10-31 17:08:16 -07001264/* lowest address */
1265phys_addr_t __init_memblock memblock_start_of_DRAM(void)
1266{
1267 return memblock.memory.regions[0].base;
1268}
1269
Yinghai Lu10d06432010-07-28 15:43:02 +10001270phys_addr_t __init_memblock memblock_end_of_DRAM(void)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001271{
1272 int idx = memblock.memory.cnt - 1;
1273
Benjamin Herrenschmidte3239ff2010-08-04 14:06:41 +10001274 return (memblock.memory.regions[idx].base + memblock.memory.regions[idx].size);
Yinghai Lu95f72d12010-07-12 14:36:09 +10001275}
1276
Tejun Heoc0ce8fe2011-12-08 10:22:07 -08001277void __init memblock_enforce_memory_limit(phys_addr_t limit)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001278{
1279 unsigned long i;
Tejun Heoc0ce8fe2011-12-08 10:22:07 -08001280 phys_addr_t max_addr = (phys_addr_t)ULLONG_MAX;
Yinghai Lu95f72d12010-07-12 14:36:09 +10001281
Tejun Heoc0ce8fe2011-12-08 10:22:07 -08001282 if (!limit)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001283 return;
1284
Tejun Heoc0ce8fe2011-12-08 10:22:07 -08001285 /* find out max address */
Yinghai Lu95f72d12010-07-12 14:36:09 +10001286 for (i = 0; i < memblock.memory.cnt; i++) {
Tejun Heoc0ce8fe2011-12-08 10:22:07 -08001287 struct memblock_region *r = &memblock.memory.regions[i];
Yinghai Lu95f72d12010-07-12 14:36:09 +10001288
Tejun Heoc0ce8fe2011-12-08 10:22:07 -08001289 if (limit <= r->size) {
1290 max_addr = r->base + limit;
1291 break;
1292 }
1293 limit -= r->size;
Yinghai Lu95f72d12010-07-12 14:36:09 +10001294 }
1295
Tejun Heoc0ce8fe2011-12-08 10:22:07 -08001296 /* truncate both memory and reserved regions */
1297 __memblock_remove(&memblock.memory, max_addr, (phys_addr_t)ULLONG_MAX);
1298 __memblock_remove(&memblock.reserved, max_addr, (phys_addr_t)ULLONG_MAX);
Yinghai Lu95f72d12010-07-12 14:36:09 +10001299}
1300
Yinghai Lucd794812010-10-11 12:34:09 -07001301static int __init_memblock memblock_search(struct memblock_type *type, phys_addr_t addr)
Benjamin Herrenschmidt72d4b0b2010-08-04 14:38:47 +10001302{
1303 unsigned int left = 0, right = type->cnt;
1304
1305 do {
1306 unsigned int mid = (right + left) / 2;
1307
1308 if (addr < type->regions[mid].base)
1309 right = mid;
1310 else if (addr >= (type->regions[mid].base +
1311 type->regions[mid].size))
1312 left = mid + 1;
1313 else
1314 return mid;
1315 } while (left < right);
1316 return -1;
1317}
1318
Benjamin Herrenschmidt2898cc42010-08-04 13:34:42 +10001319int __init memblock_is_reserved(phys_addr_t addr)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001320{
Benjamin Herrenschmidt72d4b0b2010-08-04 14:38:47 +10001321 return memblock_search(&memblock.reserved, addr) != -1;
1322}
Yinghai Lu95f72d12010-07-12 14:36:09 +10001323
Yinghai Lu3661ca62010-09-15 13:05:29 -07001324int __init_memblock memblock_is_memory(phys_addr_t addr)
Benjamin Herrenschmidt72d4b0b2010-08-04 14:38:47 +10001325{
1326 return memblock_search(&memblock.memory, addr) != -1;
1327}
1328
Yinghai Lue76b63f2013-09-11 14:22:17 -07001329#ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
1330int __init_memblock memblock_search_pfn_nid(unsigned long pfn,
1331 unsigned long *start_pfn, unsigned long *end_pfn)
1332{
1333 struct memblock_type *type = &memblock.memory;
1334 int mid = memblock_search(type, (phys_addr_t)pfn << PAGE_SHIFT);
1335
1336 if (mid == -1)
1337 return -1;
1338
1339 *start_pfn = type->regions[mid].base >> PAGE_SHIFT;
1340 *end_pfn = (type->regions[mid].base + type->regions[mid].size)
1341 >> PAGE_SHIFT;
1342
1343 return type->regions[mid].nid;
1344}
1345#endif
1346
Stephen Boydeab30942012-05-24 00:45:21 -07001347/**
1348 * memblock_is_region_memory - check if a region is a subset of memory
1349 * @base: base of region to check
1350 * @size: size of region to check
1351 *
1352 * Check if the region [@base, @base+@size) is a subset of a memory block.
1353 *
1354 * RETURNS:
1355 * 0 if false, non-zero if true
1356 */
Yinghai Lu3661ca62010-09-15 13:05:29 -07001357int __init_memblock memblock_is_region_memory(phys_addr_t base, phys_addr_t size)
Benjamin Herrenschmidt72d4b0b2010-08-04 14:38:47 +10001358{
Tomi Valkeinenabb65272011-01-20 14:44:20 -08001359 int idx = memblock_search(&memblock.memory, base);
Tejun Heoeb18f1b2011-12-08 10:22:07 -08001360 phys_addr_t end = base + memblock_cap_size(base, &size);
Benjamin Herrenschmidt72d4b0b2010-08-04 14:38:47 +10001361
1362 if (idx == -1)
1363 return 0;
Tomi Valkeinenabb65272011-01-20 14:44:20 -08001364 return memblock.memory.regions[idx].base <= base &&
1365 (memblock.memory.regions[idx].base +
Tejun Heoeb18f1b2011-12-08 10:22:07 -08001366 memblock.memory.regions[idx].size) >= end;
Yinghai Lu95f72d12010-07-12 14:36:09 +10001367}
1368
Stephen Boydeab30942012-05-24 00:45:21 -07001369/**
1370 * memblock_is_region_reserved - check if a region intersects reserved memory
1371 * @base: base of region to check
1372 * @size: size of region to check
1373 *
1374 * Check if the region [@base, @base+@size) intersects a reserved memory block.
1375 *
1376 * RETURNS:
1377 * 0 if false, non-zero if true
1378 */
Yinghai Lu10d06432010-07-28 15:43:02 +10001379int __init_memblock memblock_is_region_reserved(phys_addr_t base, phys_addr_t size)
Yinghai Lu95f72d12010-07-12 14:36:09 +10001380{
Tejun Heoeb18f1b2011-12-08 10:22:07 -08001381 memblock_cap_size(base, &size);
Benjamin Herrenschmidtf1c2c192010-08-04 14:17:17 +10001382 return memblock_overlaps_region(&memblock.reserved, base, size) >= 0;
Yinghai Lu95f72d12010-07-12 14:36:09 +10001383}
1384
Yinghai Lu6ede1fd2012-10-22 16:35:18 -07001385void __init_memblock memblock_trim_memory(phys_addr_t align)
1386{
1387 int i;
1388 phys_addr_t start, end, orig_start, orig_end;
1389 struct memblock_type *mem = &memblock.memory;
1390
1391 for (i = 0; i < mem->cnt; i++) {
1392 orig_start = mem->regions[i].base;
1393 orig_end = mem->regions[i].base + mem->regions[i].size;
1394 start = round_up(orig_start, align);
1395 end = round_down(orig_end, align);
1396
1397 if (start == orig_start && end == orig_end)
1398 continue;
1399
1400 if (start < end) {
1401 mem->regions[i].base = start;
1402 mem->regions[i].size = end - start;
1403 } else {
1404 memblock_remove_region(mem, i);
1405 i--;
1406 }
1407 }
1408}
Benjamin Herrenschmidte63075a2010-07-06 15:39:01 -07001409
Yinghai Lu3661ca62010-09-15 13:05:29 -07001410void __init_memblock memblock_set_current_limit(phys_addr_t limit)
Benjamin Herrenschmidte63075a2010-07-06 15:39:01 -07001411{
1412 memblock.current_limit = limit;
1413}
1414
Tejun Heo7c0caeb2011-07-14 11:43:42 +02001415static void __init_memblock memblock_dump(struct memblock_type *type, char *name)
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001416{
1417 unsigned long long base, size;
Tang Chen66a20752014-01-21 15:49:20 -08001418 unsigned long flags;
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001419 int i;
1420
Tejun Heo7c0caeb2011-07-14 11:43:42 +02001421 pr_info(" %s.cnt = 0x%lx\n", name, type->cnt);
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001422
Tejun Heo7c0caeb2011-07-14 11:43:42 +02001423 for (i = 0; i < type->cnt; i++) {
1424 struct memblock_region *rgn = &type->regions[i];
1425 char nid_buf[32] = "";
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001426
Tejun Heo7c0caeb2011-07-14 11:43:42 +02001427 base = rgn->base;
1428 size = rgn->size;
Tang Chen66a20752014-01-21 15:49:20 -08001429 flags = rgn->flags;
Tejun Heo7c0caeb2011-07-14 11:43:42 +02001430#ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
1431 if (memblock_get_region_node(rgn) != MAX_NUMNODES)
1432 snprintf(nid_buf, sizeof(nid_buf), " on node %d",
1433 memblock_get_region_node(rgn));
1434#endif
Tang Chen66a20752014-01-21 15:49:20 -08001435 pr_info(" %s[%#x]\t[%#016llx-%#016llx], %#llx bytes%s flags: %#lx\n",
1436 name, i, base, base + size - 1, size, nid_buf, flags);
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001437 }
1438}
1439
Tejun Heo4ff7b822011-12-08 10:22:06 -08001440void __init_memblock __memblock_dump_all(void)
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001441{
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001442 pr_info("MEMBLOCK configuration:\n");
Tejun Heo1440c4e2011-12-08 10:22:08 -08001443 pr_info(" memory size = %#llx reserved size = %#llx\n",
1444 (unsigned long long)memblock.memory.total_size,
1445 (unsigned long long)memblock.reserved.total_size);
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001446
1447 memblock_dump(&memblock.memory, "memory");
1448 memblock_dump(&memblock.reserved, "reserved");
1449}
1450
Tejun Heo1aadc052011-12-08 10:22:08 -08001451void __init memblock_allow_resize(void)
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001452{
Benjamin Herrenschmidt142b45a2010-07-06 15:39:13 -07001453 memblock_can_resize = 1;
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001454}
1455
Benjamin Herrenschmidt6ed311b2010-07-12 14:36:48 +10001456static int __init early_memblock(char *p)
1457{
1458 if (p && strstr(p, "debug"))
1459 memblock_debug = 1;
1460 return 0;
1461}
1462early_param("memblock", early_memblock);
1463
Tejun Heoc378ddd2011-07-14 11:46:03 +02001464#if defined(CONFIG_DEBUG_FS) && !defined(CONFIG_ARCH_DISCARD_MEMBLOCK)
Benjamin Herrenschmidt6d03b882010-07-06 15:39:19 -07001465
1466static int memblock_debug_show(struct seq_file *m, void *private)
1467{
1468 struct memblock_type *type = m->private;
1469 struct memblock_region *reg;
1470 int i;
1471
1472 for (i = 0; i < type->cnt; i++) {
1473 reg = &type->regions[i];
1474 seq_printf(m, "%4d: ", i);
1475 if (sizeof(phys_addr_t) == 4)
1476 seq_printf(m, "0x%08lx..0x%08lx\n",
1477 (unsigned long)reg->base,
1478 (unsigned long)(reg->base + reg->size - 1));
1479 else
1480 seq_printf(m, "0x%016llx..0x%016llx\n",
1481 (unsigned long long)reg->base,
1482 (unsigned long long)(reg->base + reg->size - 1));
1483
1484 }
1485 return 0;
1486}
1487
1488static int memblock_debug_open(struct inode *inode, struct file *file)
1489{
1490 return single_open(file, memblock_debug_show, inode->i_private);
1491}
1492
1493static const struct file_operations memblock_debug_fops = {
1494 .open = memblock_debug_open,
1495 .read = seq_read,
1496 .llseek = seq_lseek,
1497 .release = single_release,
1498};
1499
1500static int __init memblock_init_debugfs(void)
1501{
1502 struct dentry *root = debugfs_create_dir("memblock", NULL);
1503 if (!root)
1504 return -ENXIO;
1505 debugfs_create_file("memory", S_IRUGO, root, &memblock.memory, &memblock_debug_fops);
1506 debugfs_create_file("reserved", S_IRUGO, root, &memblock.reserved, &memblock_debug_fops);
1507
1508 return 0;
1509}
1510__initcall(memblock_init_debugfs);
1511
1512#endif /* CONFIG_DEBUG_FS */