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8607a965 | 1 | // SPDX-License-Identifier: GPL-2.0-or-later |
a254129e JK |
2 | /* |
3 | * Contiguous Memory Allocator | |
4 | * | |
5 | * Copyright (c) 2010-2011 by Samsung Electronics. | |
6 | * Copyright IBM Corporation, 2013 | |
7 | * Copyright LG Electronics Inc., 2014 | |
8 | * Written by: | |
9 | * Marek Szyprowski <[email protected]> | |
10 | * Michal Nazarewicz <[email protected]> | |
11 | * Aneesh Kumar K.V <[email protected]> | |
12 | * Joonsoo Kim <[email protected]> | |
a254129e JK |
13 | */ |
14 | ||
15 | #define pr_fmt(fmt) "cma: " fmt | |
16 | ||
99e8ea6c | 17 | #define CREATE_TRACE_POINTS |
a254129e JK |
18 | |
19 | #include <linux/memblock.h> | |
20 | #include <linux/err.h> | |
21 | #include <linux/mm.h> | |
a254129e JK |
22 | #include <linux/sizes.h> |
23 | #include <linux/slab.h> | |
24 | #include <linux/log2.h> | |
25 | #include <linux/cma.h> | |
f7426b98 | 26 | #include <linux/highmem.h> |
620951e2 | 27 | #include <linux/io.h> |
514c6032 | 28 | #include <linux/kmemleak.h> |
99e8ea6c | 29 | #include <trace/events/cma.h> |
a254129e | 30 | |
9420f89d | 31 | #include "internal.h" |
28b24c1f SL |
32 | #include "cma.h" |
33 | ||
34 | struct cma cma_areas[MAX_CMA_AREAS]; | |
35 | unsigned cma_area_count; | |
60a60e32 | 36 | static DEFINE_MUTEX(cma_mutex); |
a254129e | 37 | |
ac173824 | 38 | phys_addr_t cma_get_base(const struct cma *cma) |
a254129e JK |
39 | { |
40 | return PFN_PHYS(cma->base_pfn); | |
41 | } | |
42 | ||
ac173824 | 43 | unsigned long cma_get_size(const struct cma *cma) |
a254129e JK |
44 | { |
45 | return cma->count << PAGE_SHIFT; | |
46 | } | |
47 | ||
f318dd08 LA |
48 | const char *cma_get_name(const struct cma *cma) |
49 | { | |
18e98e56 | 50 | return cma->name; |
f318dd08 LA |
51 | } |
52 | ||
ac173824 | 53 | static unsigned long cma_bitmap_aligned_mask(const struct cma *cma, |
e048cb32 | 54 | unsigned int align_order) |
a254129e | 55 | { |
68faed63 WY |
56 | if (align_order <= cma->order_per_bit) |
57 | return 0; | |
58 | return (1UL << (align_order - cma->order_per_bit)) - 1; | |
a254129e JK |
59 | } |
60 | ||
850fc430 | 61 | /* |
e048cb32 DB |
62 | * Find the offset of the base PFN from the specified align_order. |
63 | * The value returned is represented in order_per_bits. | |
850fc430 | 64 | */ |
ac173824 | 65 | static unsigned long cma_bitmap_aligned_offset(const struct cma *cma, |
e048cb32 | 66 | unsigned int align_order) |
b5be83e3 | 67 | { |
e048cb32 DB |
68 | return (cma->base_pfn & ((1UL << align_order) - 1)) |
69 | >> cma->order_per_bit; | |
b5be83e3 GF |
70 | } |
71 | ||
ac173824 SL |
72 | static unsigned long cma_bitmap_pages_to_bits(const struct cma *cma, |
73 | unsigned long pages) | |
a254129e JK |
74 | { |
75 | return ALIGN(pages, 1UL << cma->order_per_bit) >> cma->order_per_bit; | |
76 | } | |
77 | ||
ac173824 | 78 | static void cma_clear_bitmap(struct cma *cma, unsigned long pfn, |
78fa5150 | 79 | unsigned long count) |
a254129e JK |
80 | { |
81 | unsigned long bitmap_no, bitmap_count; | |
0ef7dcac | 82 | unsigned long flags; |
a254129e JK |
83 | |
84 | bitmap_no = (pfn - cma->base_pfn) >> cma->order_per_bit; | |
85 | bitmap_count = cma_bitmap_pages_to_bits(cma, count); | |
86 | ||
0ef7dcac | 87 | spin_lock_irqsave(&cma->lock, flags); |
a254129e | 88 | bitmap_clear(cma->bitmap, bitmap_no, bitmap_count); |
0ef7dcac | 89 | spin_unlock_irqrestore(&cma->lock, flags); |
a254129e JK |
90 | } |
91 | ||
3a5139f1 | 92 | static void __init cma_activate_area(struct cma *cma) |
a254129e | 93 | { |
072355c1 | 94 | unsigned long base_pfn = cma->base_pfn, pfn; |
a254129e JK |
95 | struct zone *zone; |
96 | ||
2184f992 | 97 | cma->bitmap = bitmap_zalloc(cma_bitmap_maxno(cma), GFP_KERNEL); |
3a5139f1 MK |
98 | if (!cma->bitmap) |
99 | goto out_error; | |
a254129e | 100 | |
072355c1 DH |
101 | /* |
102 | * alloc_contig_range() requires the pfn range specified to be in the | |
103 | * same zone. Simplify by forcing the entire CMA resv range to be in the | |
104 | * same zone. | |
105 | */ | |
106 | WARN_ON_ONCE(!pfn_valid(base_pfn)); | |
107 | zone = page_zone(pfn_to_page(base_pfn)); | |
108 | for (pfn = base_pfn + 1; pfn < base_pfn + cma->count; pfn++) { | |
109 | WARN_ON_ONCE(!pfn_valid(pfn)); | |
110 | if (page_zone(pfn_to_page(pfn)) != zone) | |
111 | goto not_in_zone; | |
112 | } | |
113 | ||
114 | for (pfn = base_pfn; pfn < base_pfn + cma->count; | |
115 | pfn += pageblock_nr_pages) | |
116 | init_cma_reserved_pageblock(pfn_to_page(pfn)); | |
a254129e | 117 | |
0ef7dcac | 118 | spin_lock_init(&cma->lock); |
26b02a1f SL |
119 | |
120 | #ifdef CONFIG_CMA_DEBUGFS | |
121 | INIT_HLIST_HEAD(&cma->mem_head); | |
122 | spin_lock_init(&cma->mem_head_lock); | |
123 | #endif | |
124 | ||
3a5139f1 | 125 | return; |
a254129e | 126 | |
d883c6cf | 127 | not_in_zone: |
2184f992 | 128 | bitmap_free(cma->bitmap); |
3a5139f1 | 129 | out_error: |
072355c1 | 130 | /* Expose all pages to the buddy, they are useless for CMA. */ |
27d121d0 HB |
131 | if (!cma->reserve_pages_on_error) { |
132 | for (pfn = base_pfn; pfn < base_pfn + cma->count; pfn++) | |
133 | free_reserved_page(pfn_to_page(pfn)); | |
134 | } | |
072355c1 | 135 | totalcma_pages -= cma->count; |
f022d8cb | 136 | cma->count = 0; |
3a5139f1 MK |
137 | pr_err("CMA area %s could not be activated\n", cma->name); |
138 | return; | |
a254129e JK |
139 | } |
140 | ||
141 | static int __init cma_init_reserved_areas(void) | |
142 | { | |
143 | int i; | |
144 | ||
3a5139f1 MK |
145 | for (i = 0; i < cma_area_count; i++) |
146 | cma_activate_area(&cma_areas[i]); | |
a254129e JK |
147 | |
148 | return 0; | |
149 | } | |
d883c6cf | 150 | core_initcall(cma_init_reserved_areas); |
a254129e | 151 | |
27d121d0 HB |
152 | void __init cma_reserve_pages_on_error(struct cma *cma) |
153 | { | |
154 | cma->reserve_pages_on_error = true; | |
155 | } | |
156 | ||
de9e14ee MS |
157 | /** |
158 | * cma_init_reserved_mem() - create custom contiguous area from reserved memory | |
159 | * @base: Base address of the reserved area | |
160 | * @size: Size of the reserved area (in bytes), | |
161 | * @order_per_bit: Order of pages represented by one bit on bitmap. | |
e8b098fc MR |
162 | * @name: The name of the area. If this parameter is NULL, the name of |
163 | * the area will be set to "cmaN", where N is a running counter of | |
164 | * used areas. | |
de9e14ee MS |
165 | * @res_cma: Pointer to store the created cma region. |
166 | * | |
167 | * This function creates custom contiguous area from already reserved memory. | |
168 | */ | |
169 | int __init cma_init_reserved_mem(phys_addr_t base, phys_addr_t size, | |
ac173824 | 170 | unsigned int order_per_bit, |
f318dd08 | 171 | const char *name, |
ac173824 | 172 | struct cma **res_cma) |
de9e14ee MS |
173 | { |
174 | struct cma *cma; | |
de9e14ee MS |
175 | |
176 | /* Sanity checks */ | |
177 | if (cma_area_count == ARRAY_SIZE(cma_areas)) { | |
178 | pr_err("Not enough slots for CMA reserved regions!\n"); | |
179 | return -ENOSPC; | |
180 | } | |
181 | ||
182 | if (!size || !memblock_is_region_reserved(base, size)) | |
183 | return -EINVAL; | |
184 | ||
e16faf26 DH |
185 | /* ensure minimal alignment required by mm core */ |
186 | if (!IS_ALIGNED(base | size, CMA_MIN_ALIGNMENT_BYTES)) | |
de9e14ee MS |
187 | return -EINVAL; |
188 | ||
189 | /* | |
190 | * Each reserved area must be initialised later, when more kernel | |
191 | * subsystems (like slab allocator) are available. | |
192 | */ | |
193 | cma = &cma_areas[cma_area_count]; | |
18e98e56 BS |
194 | |
195 | if (name) | |
196 | snprintf(cma->name, CMA_MAX_NAME, name); | |
197 | else | |
198 | snprintf(cma->name, CMA_MAX_NAME, "cma%d\n", cma_area_count); | |
199 | ||
de9e14ee MS |
200 | cma->base_pfn = PFN_DOWN(base); |
201 | cma->count = size >> PAGE_SHIFT; | |
202 | cma->order_per_bit = order_per_bit; | |
203 | *res_cma = cma; | |
204 | cma_area_count++; | |
94737a85 | 205 | totalcma_pages += (size / PAGE_SIZE); |
de9e14ee MS |
206 | |
207 | return 0; | |
208 | } | |
209 | ||
a254129e | 210 | /** |
8676af1f | 211 | * cma_declare_contiguous_nid() - reserve custom contiguous area |
a254129e | 212 | * @base: Base address of the reserved area optional, use 0 for any |
c1f733aa | 213 | * @size: Size of the reserved area (in bytes), |
a254129e JK |
214 | * @limit: End address of the reserved memory (optional, 0 for any). |
215 | * @alignment: Alignment for the CMA area, should be power of 2 or zero | |
216 | * @order_per_bit: Order of pages represented by one bit on bitmap. | |
a254129e | 217 | * @fixed: hint about where to place the reserved area |
e8b098fc | 218 | * @name: The name of the area. See function cma_init_reserved_mem() |
c1f733aa | 219 | * @res_cma: Pointer to store the created cma region. |
8676af1f | 220 | * @nid: nid of the free area to find, %NUMA_NO_NODE for any node |
a254129e JK |
221 | * |
222 | * This function reserves memory from early allocator. It should be | |
223 | * called by arch specific code once the early allocator (memblock or bootmem) | |
224 | * has been activated and all other subsystems have already allocated/reserved | |
225 | * memory. This function allows to create custom reserved areas. | |
226 | * | |
227 | * If @fixed is true, reserve contiguous area at exactly @base. If false, | |
228 | * reserve in range from @base to @limit. | |
229 | */ | |
8676af1f | 230 | int __init cma_declare_contiguous_nid(phys_addr_t base, |
c1f733aa | 231 | phys_addr_t size, phys_addr_t limit, |
a254129e | 232 | phys_addr_t alignment, unsigned int order_per_bit, |
8676af1f AB |
233 | bool fixed, const char *name, struct cma **res_cma, |
234 | int nid) | |
a254129e | 235 | { |
f7426b98 | 236 | phys_addr_t memblock_end = memblock_end_of_DRAM(); |
6b101e2a | 237 | phys_addr_t highmem_start; |
4196810a | 238 | int ret; |
a254129e | 239 | |
6b101e2a | 240 | /* |
2dece445 LA |
241 | * We can't use __pa(high_memory) directly, since high_memory |
242 | * isn't a valid direct map VA, and DEBUG_VIRTUAL will (validly) | |
243 | * complain. Find the boundary by adding one to the last valid | |
244 | * address. | |
6b101e2a | 245 | */ |
2dece445 | 246 | highmem_start = __pa(high_memory - 1) + 1; |
56fa4f60 LP |
247 | pr_debug("%s(size %pa, base %pa, limit %pa alignment %pa)\n", |
248 | __func__, &size, &base, &limit, &alignment); | |
a254129e JK |
249 | |
250 | if (cma_area_count == ARRAY_SIZE(cma_areas)) { | |
251 | pr_err("Not enough slots for CMA reserved regions!\n"); | |
252 | return -ENOSPC; | |
253 | } | |
254 | ||
255 | if (!size) | |
256 | return -EINVAL; | |
257 | ||
258 | if (alignment && !is_power_of_2(alignment)) | |
259 | return -EINVAL; | |
260 | ||
bf29bfaa YD |
261 | if (!IS_ENABLED(CONFIG_NUMA)) |
262 | nid = NUMA_NO_NODE; | |
263 | ||
e16faf26 DH |
264 | /* Sanitise input arguments. */ |
265 | alignment = max_t(phys_addr_t, alignment, CMA_MIN_ALIGNMENT_BYTES); | |
c633324e DB |
266 | if (fixed && base & (alignment - 1)) { |
267 | ret = -EINVAL; | |
268 | pr_err("Region at %pa must be aligned to %pa bytes\n", | |
269 | &base, &alignment); | |
270 | goto err; | |
271 | } | |
a254129e JK |
272 | base = ALIGN(base, alignment); |
273 | size = ALIGN(size, alignment); | |
274 | limit &= ~(alignment - 1); | |
275 | ||
800a85d3 LP |
276 | if (!base) |
277 | fixed = false; | |
278 | ||
a254129e JK |
279 | /* size should be aligned with order_per_bit */ |
280 | if (!IS_ALIGNED(size >> PAGE_SHIFT, 1 << order_per_bit)) | |
281 | return -EINVAL; | |
282 | ||
f7426b98 | 283 | /* |
16195ddd LP |
284 | * If allocating at a fixed base the request region must not cross the |
285 | * low/high memory boundary. | |
f7426b98 | 286 | */ |
16195ddd | 287 | if (fixed && base < highmem_start && base + size > highmem_start) { |
f7426b98 | 288 | ret = -EINVAL; |
56fa4f60 LP |
289 | pr_err("Region at %pa defined on low/high memory boundary (%pa)\n", |
290 | &base, &highmem_start); | |
f7426b98 MS |
291 | goto err; |
292 | } | |
293 | ||
16195ddd LP |
294 | /* |
295 | * If the limit is unspecified or above the memblock end, its effective | |
296 | * value will be the memblock end. Set it explicitly to simplify further | |
297 | * checks. | |
298 | */ | |
299 | if (limit == 0 || limit > memblock_end) | |
300 | limit = memblock_end; | |
301 | ||
c633324e DB |
302 | if (base + size > limit) { |
303 | ret = -EINVAL; | |
304 | pr_err("Size (%pa) of region at %pa exceeds limit (%pa)\n", | |
305 | &size, &base, &limit); | |
306 | goto err; | |
307 | } | |
308 | ||
a254129e | 309 | /* Reserve memory */ |
800a85d3 | 310 | if (fixed) { |
a254129e JK |
311 | if (memblock_is_region_reserved(base, size) || |
312 | memblock_reserve(base, size) < 0) { | |
313 | ret = -EBUSY; | |
314 | goto err; | |
315 | } | |
316 | } else { | |
16195ddd LP |
317 | phys_addr_t addr = 0; |
318 | ||
df2ff39e RG |
319 | /* |
320 | * If there is enough memory, try a bottom-up allocation first. | |
321 | * It will place the new cma area close to the start of the node | |
322 | * and guarantee that the compaction is moving pages out of the | |
323 | * cma area and not into it. | |
324 | * Avoid using first 4GB to not interfere with constrained zones | |
325 | * like DMA/DMA32. | |
326 | */ | |
327 | #ifdef CONFIG_PHYS_ADDR_T_64BIT | |
328 | if (!memblock_bottom_up() && memblock_end >= SZ_4G + size) { | |
329 | memblock_set_bottom_up(true); | |
330 | addr = memblock_alloc_range_nid(size, alignment, SZ_4G, | |
331 | limit, nid, true); | |
332 | memblock_set_bottom_up(false); | |
333 | } | |
334 | #endif | |
335 | ||
148aa87e LY |
336 | /* |
337 | * All pages in the reserved area must come from the same zone. | |
338 | * If the requested region crosses the low/high memory boundary, | |
339 | * try allocating from high memory first and fall back to low | |
340 | * memory in case of failure. | |
341 | */ | |
342 | if (!addr && base < highmem_start && limit > highmem_start) { | |
343 | addr = memblock_alloc_range_nid(size, alignment, | |
344 | highmem_start, limit, nid, true); | |
345 | limit = highmem_start; | |
346 | } | |
347 | ||
a254129e | 348 | if (!addr) { |
8676af1f | 349 | addr = memblock_alloc_range_nid(size, alignment, base, |
40366bd7 | 350 | limit, nid, true); |
16195ddd LP |
351 | if (!addr) { |
352 | ret = -ENOMEM; | |
353 | goto err; | |
354 | } | |
a254129e | 355 | } |
16195ddd | 356 | |
620951e2 TR |
357 | /* |
358 | * kmemleak scans/reads tracked objects for pointers to other | |
359 | * objects but this address isn't mapped and accessible | |
360 | */ | |
9099daed | 361 | kmemleak_ignore_phys(addr); |
16195ddd | 362 | base = addr; |
a254129e JK |
363 | } |
364 | ||
f318dd08 | 365 | ret = cma_init_reserved_mem(base, size, order_per_bit, name, res_cma); |
de9e14ee | 366 | if (ret) |
0d3bd18a | 367 | goto free_mem; |
a254129e | 368 | |
bf29bfaa YD |
369 | pr_info("Reserved %ld MiB at %pa on node %d\n", (unsigned long)size / SZ_1M, |
370 | &base, nid); | |
a254129e JK |
371 | return 0; |
372 | ||
0d3bd18a | 373 | free_mem: |
3ecc6834 | 374 | memblock_phys_free(base, size); |
a254129e | 375 | err: |
bf29bfaa YD |
376 | pr_err("Failed to reserve %ld MiB on node %d\n", (unsigned long)size / SZ_1M, |
377 | nid); | |
a254129e JK |
378 | return ret; |
379 | } | |
380 | ||
dbe43d4d JK |
381 | static void cma_debug_show_areas(struct cma *cma) |
382 | { | |
2b59e01a | 383 | unsigned long next_zero_bit, next_set_bit, nr_zero; |
dbe43d4d | 384 | unsigned long start = 0; |
2b59e01a YH |
385 | unsigned long nr_part, nr_total = 0; |
386 | unsigned long nbits = cma_bitmap_maxno(cma); | |
dbe43d4d | 387 | |
0ef7dcac | 388 | spin_lock_irq(&cma->lock); |
dbe43d4d JK |
389 | pr_info("number of available pages: "); |
390 | for (;;) { | |
2b59e01a YH |
391 | next_zero_bit = find_next_zero_bit(cma->bitmap, nbits, start); |
392 | if (next_zero_bit >= nbits) | |
dbe43d4d | 393 | break; |
2b59e01a | 394 | next_set_bit = find_next_bit(cma->bitmap, nbits, next_zero_bit); |
dbe43d4d | 395 | nr_zero = next_set_bit - next_zero_bit; |
2b59e01a YH |
396 | nr_part = nr_zero << cma->order_per_bit; |
397 | pr_cont("%s%lu@%lu", nr_total ? "+" : "", nr_part, | |
398 | next_zero_bit); | |
399 | nr_total += nr_part; | |
dbe43d4d JK |
400 | start = next_zero_bit + nr_zero; |
401 | } | |
2b59e01a | 402 | pr_cont("=> %lu free of %lu total pages\n", nr_total, cma->count); |
0ef7dcac | 403 | spin_unlock_irq(&cma->lock); |
dbe43d4d | 404 | } |
dbe43d4d | 405 | |
a254129e JK |
406 | /** |
407 | * cma_alloc() - allocate pages from contiguous area | |
408 | * @cma: Contiguous memory region for which the allocation is performed. | |
409 | * @count: Requested number of pages. | |
410 | * @align: Requested alignment of pages (in PAGE_SIZE order). | |
65182029 | 411 | * @no_warn: Avoid printing message about failed allocation |
a254129e JK |
412 | * |
413 | * This function allocates part of contiguous memory on specific | |
414 | * contiguous memory area. | |
415 | */ | |
78fa5150 MK |
416 | struct page *cma_alloc(struct cma *cma, unsigned long count, |
417 | unsigned int align, bool no_warn) | |
a254129e | 418 | { |
3acaea68 AM |
419 | unsigned long mask, offset; |
420 | unsigned long pfn = -1; | |
421 | unsigned long start = 0; | |
a254129e | 422 | unsigned long bitmap_maxno, bitmap_no, bitmap_count; |
78fa5150 | 423 | unsigned long i; |
a254129e | 424 | struct page *page = NULL; |
dbe43d4d | 425 | int ret = -ENOMEM; |
51ae3f4a KS |
426 | const char *name = cma ? cma->name : NULL; |
427 | ||
428 | trace_cma_alloc_start(name, count, align); | |
a254129e | 429 | |
835832ba | 430 | if (!cma || !cma->count || !cma->bitmap) |
d818c98a | 431 | return page; |
a254129e | 432 | |
35fb4764 PK |
433 | pr_debug("%s(cma %p, name: %s, count %lu, align %d)\n", __func__, |
434 | (void *)cma, cma->name, count, align); | |
a254129e JK |
435 | |
436 | if (!count) | |
d818c98a | 437 | return page; |
a254129e JK |
438 | |
439 | mask = cma_bitmap_aligned_mask(cma, align); | |
b5be83e3 | 440 | offset = cma_bitmap_aligned_offset(cma, align); |
a254129e JK |
441 | bitmap_maxno = cma_bitmap_maxno(cma); |
442 | bitmap_count = cma_bitmap_pages_to_bits(cma, count); | |
443 | ||
6b36ba59 | 444 | if (bitmap_count > bitmap_maxno) |
d818c98a | 445 | return page; |
6b36ba59 | 446 | |
a254129e | 447 | for (;;) { |
0ef7dcac | 448 | spin_lock_irq(&cma->lock); |
b5be83e3 GF |
449 | bitmap_no = bitmap_find_next_zero_area_off(cma->bitmap, |
450 | bitmap_maxno, start, bitmap_count, mask, | |
451 | offset); | |
a254129e | 452 | if (bitmap_no >= bitmap_maxno) { |
0ef7dcac | 453 | spin_unlock_irq(&cma->lock); |
a254129e JK |
454 | break; |
455 | } | |
456 | bitmap_set(cma->bitmap, bitmap_no, bitmap_count); | |
457 | /* | |
458 | * It's safe to drop the lock here. We've marked this region for | |
459 | * our exclusive use. If the migration fails we will take the | |
460 | * lock again and unmark it. | |
461 | */ | |
0ef7dcac | 462 | spin_unlock_irq(&cma->lock); |
a254129e JK |
463 | |
464 | pfn = cma->base_pfn + (bitmap_no << cma->order_per_bit); | |
60a60e32 | 465 | mutex_lock(&cma_mutex); |
ca96b625 | 466 | ret = alloc_contig_range(pfn, pfn + count, MIGRATE_CMA, |
65182029 | 467 | GFP_KERNEL | (no_warn ? __GFP_NOWARN : 0)); |
60a60e32 | 468 | mutex_unlock(&cma_mutex); |
a254129e JK |
469 | if (ret == 0) { |
470 | page = pfn_to_page(pfn); | |
471 | break; | |
a254129e | 472 | } |
b7155e76 | 473 | |
a254129e | 474 | cma_clear_bitmap(cma, pfn, count); |
b7155e76 JK |
475 | if (ret != -EBUSY) |
476 | break; | |
477 | ||
399fd496 KL |
478 | pr_debug("%s(): memory range at pfn 0x%lx %p is busy, retrying\n", |
479 | __func__, pfn, pfn_to_page(pfn)); | |
7bc1aec5 | 480 | |
3aab8ae7 MK |
481 | trace_cma_alloc_busy_retry(cma->name, pfn, pfn_to_page(pfn), |
482 | count, align); | |
a254129e JK |
483 | /* try again with a bit different memory target */ |
484 | start = bitmap_no + mask + 1; | |
485 | } | |
486 | ||
2813b9c0 AK |
487 | /* |
488 | * CMA can allocate multiple page blocks, which results in different | |
489 | * blocks being marked with different tags. Reset the tags to ignore | |
490 | * those page blocks. | |
491 | */ | |
492 | if (page) { | |
493 | for (i = 0; i < count; i++) | |
2e7cfe5c | 494 | page_kasan_tag_reset(nth_page(page, i)); |
2813b9c0 AK |
495 | } |
496 | ||
65182029 | 497 | if (ret && !no_warn) { |
78fa5150 | 498 | pr_err_ratelimited("%s: %s: alloc failed, req-size: %lu pages, ret: %d\n", |
63f83b31 | 499 | __func__, cma->name, count, ret); |
dbe43d4d JK |
500 | cma_debug_show_areas(cma); |
501 | } | |
502 | ||
a254129e | 503 | pr_debug("%s(): returned %p\n", __func__, page); |
51ae3f4a | 504 | trace_cma_alloc_finish(name, pfn, page, count, align, ret); |
43ca106f | 505 | if (page) { |
bbb26920 | 506 | count_vm_event(CMA_ALLOC_SUCCESS); |
43ca106f MK |
507 | cma_sysfs_account_success_pages(cma, count); |
508 | } else { | |
bbb26920 | 509 | count_vm_event(CMA_ALLOC_FAIL); |
d818c98a | 510 | cma_sysfs_account_fail_pages(cma, count); |
43ca106f | 511 | } |
bbb26920 | 512 | |
a254129e JK |
513 | return page; |
514 | } | |
515 | ||
9871e2de MK |
516 | bool cma_pages_valid(struct cma *cma, const struct page *pages, |
517 | unsigned long count) | |
518 | { | |
519 | unsigned long pfn; | |
520 | ||
521 | if (!cma || !pages) | |
522 | return false; | |
523 | ||
524 | pfn = page_to_pfn(pages); | |
525 | ||
526 | if (pfn < cma->base_pfn || pfn >= cma->base_pfn + cma->count) { | |
527 | pr_debug("%s(page %p, count %lu)\n", __func__, | |
528 | (void *)pages, count); | |
529 | return false; | |
530 | } | |
531 | ||
532 | return true; | |
533 | } | |
534 | ||
a254129e JK |
535 | /** |
536 | * cma_release() - release allocated pages | |
537 | * @cma: Contiguous memory region for which the allocation is performed. | |
538 | * @pages: Allocated pages. | |
539 | * @count: Number of allocated pages. | |
540 | * | |
929f92f7 | 541 | * This function releases memory allocated by cma_alloc(). |
a254129e JK |
542 | * It returns false when provided pages do not belong to contiguous area and |
543 | * true otherwise. | |
544 | */ | |
78fa5150 MK |
545 | bool cma_release(struct cma *cma, const struct page *pages, |
546 | unsigned long count) | |
a254129e JK |
547 | { |
548 | unsigned long pfn; | |
549 | ||
9871e2de | 550 | if (!cma_pages_valid(cma, pages, count)) |
a254129e JK |
551 | return false; |
552 | ||
78fa5150 | 553 | pr_debug("%s(page %p, count %lu)\n", __func__, (void *)pages, count); |
a254129e JK |
554 | |
555 | pfn = page_to_pfn(pages); | |
556 | ||
a254129e JK |
557 | VM_BUG_ON(pfn + count > cma->base_pfn + cma->count); |
558 | ||
559 | free_contig_range(pfn, count); | |
560 | cma_clear_bitmap(cma, pfn, count); | |
b9ad003a | 561 | cma_sysfs_account_release_pages(cma, count); |
3aab8ae7 | 562 | trace_cma_release(cma->name, pfn, pages, count); |
a254129e JK |
563 | |
564 | return true; | |
565 | } | |
e4231bcd LA |
566 | |
567 | int cma_for_each_area(int (*it)(struct cma *cma, void *data), void *data) | |
568 | { | |
569 | int i; | |
570 | ||
571 | for (i = 0; i < cma_area_count; i++) { | |
572 | int ret = it(&cma_areas[i], data); | |
573 | ||
574 | if (ret) | |
575 | return ret; | |
576 | } | |
577 | ||
578 | return 0; | |
579 | } |