memremap: merge find_dev_pagemap into get_dev_pagemap
[linux-2.6-block.git] / kernel / memremap.c
CommitLineData
92281dee
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1/*
2 * Copyright(c) 2015 Intel Corporation. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of version 2 of the GNU General Public License as
6 * published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful, but
9 * WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * General Public License for more details.
12 */
9476df7d 13#include <linux/radix-tree.h>
7d3dcf26 14#include <linux/device.h>
92281dee 15#include <linux/types.h>
34c0fd54 16#include <linux/pfn_t.h>
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17#include <linux/io.h>
18#include <linux/mm.h>
41e94a85 19#include <linux/memory_hotplug.h>
5042db43
JG
20#include <linux/swap.h>
21#include <linux/swapops.h>
92281dee
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22
23#ifndef ioremap_cache
24/* temporary while we convert existing ioremap_cache users to memremap */
25__weak void __iomem *ioremap_cache(resource_size_t offset, unsigned long size)
26{
27 return ioremap(offset, size);
28}
29#endif
30
c269cba3
AB
31#ifndef arch_memremap_wb
32static void *arch_memremap_wb(resource_size_t offset, unsigned long size)
33{
34 return (__force void *)ioremap_cache(offset, size);
35}
36#endif
37
8f716c9b
TL
38#ifndef arch_memremap_can_ram_remap
39static bool arch_memremap_can_ram_remap(resource_size_t offset, size_t size,
40 unsigned long flags)
41{
42 return true;
43}
44#endif
45
46static void *try_ram_remap(resource_size_t offset, size_t size,
47 unsigned long flags)
182475b7 48{
ac343e88 49 unsigned long pfn = PHYS_PFN(offset);
182475b7
DW
50
51 /* In the simple case just return the existing linear address */
8f716c9b
TL
52 if (pfn_valid(pfn) && !PageHighMem(pfn_to_page(pfn)) &&
53 arch_memremap_can_ram_remap(offset, size, flags))
182475b7 54 return __va(offset);
8f716c9b 55
c269cba3 56 return NULL; /* fallback to arch_memremap_wb */
182475b7
DW
57}
58
92281dee
DW
59/**
60 * memremap() - remap an iomem_resource as cacheable memory
61 * @offset: iomem resource start address
62 * @size: size of remap
8f716c9b
TL
63 * @flags: any of MEMREMAP_WB, MEMREMAP_WT, MEMREMAP_WC,
64 * MEMREMAP_ENC, MEMREMAP_DEC
92281dee
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65 *
66 * memremap() is "ioremap" for cases where it is known that the resource
67 * being mapped does not have i/o side effects and the __iomem
c907e0eb
BS
68 * annotation is not applicable. In the case of multiple flags, the different
69 * mapping types will be attempted in the order listed below until one of
70 * them succeeds.
92281dee 71 *
1c29f25b 72 * MEMREMAP_WB - matches the default mapping for System RAM on
92281dee
DW
73 * the architecture. This is usually a read-allocate write-back cache.
74 * Morever, if MEMREMAP_WB is specified and the requested remap region is RAM
75 * memremap() will bypass establishing a new mapping and instead return
76 * a pointer into the direct map.
77 *
78 * MEMREMAP_WT - establish a mapping whereby writes either bypass the
79 * cache or are written through to memory and never exist in a
80 * cache-dirty state with respect to program visibility. Attempts to
1c29f25b 81 * map System RAM with this mapping type will fail.
c907e0eb
BS
82 *
83 * MEMREMAP_WC - establish a writecombine mapping, whereby writes may
84 * be coalesced together (e.g. in the CPU's write buffers), but is otherwise
85 * uncached. Attempts to map System RAM with this mapping type will fail.
92281dee
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86 */
87void *memremap(resource_size_t offset, size_t size, unsigned long flags)
88{
1c29f25b
TK
89 int is_ram = region_intersects(offset, size,
90 IORESOURCE_SYSTEM_RAM, IORES_DESC_NONE);
92281dee
DW
91 void *addr = NULL;
92
cf61e2a1
BS
93 if (!flags)
94 return NULL;
95
92281dee
DW
96 if (is_ram == REGION_MIXED) {
97 WARN_ONCE(1, "memremap attempted on mixed range %pa size: %#lx\n",
98 &offset, (unsigned long) size);
99 return NULL;
100 }
101
102 /* Try all mapping types requested until one returns non-NULL */
103 if (flags & MEMREMAP_WB) {
92281dee
DW
104 /*
105 * MEMREMAP_WB is special in that it can be satisifed
106 * from the direct map. Some archs depend on the
107 * capability of memremap() to autodetect cases where
1c29f25b 108 * the requested range is potentially in System RAM.
92281dee
DW
109 */
110 if (is_ram == REGION_INTERSECTS)
8f716c9b 111 addr = try_ram_remap(offset, size, flags);
182475b7 112 if (!addr)
c269cba3 113 addr = arch_memremap_wb(offset, size);
92281dee
DW
114 }
115
116 /*
cf61e2a1
BS
117 * If we don't have a mapping yet and other request flags are
118 * present then we will be attempting to establish a new virtual
92281dee 119 * address mapping. Enforce that this mapping is not aliasing
1c29f25b 120 * System RAM.
92281dee 121 */
cf61e2a1 122 if (!addr && is_ram == REGION_INTERSECTS && flags != MEMREMAP_WB) {
92281dee
DW
123 WARN_ONCE(1, "memremap attempted on ram %pa size: %#lx\n",
124 &offset, (unsigned long) size);
125 return NULL;
126 }
127
cf61e2a1 128 if (!addr && (flags & MEMREMAP_WT))
92281dee 129 addr = ioremap_wt(offset, size);
c907e0eb
BS
130
131 if (!addr && (flags & MEMREMAP_WC))
132 addr = ioremap_wc(offset, size);
92281dee
DW
133
134 return addr;
135}
136EXPORT_SYMBOL(memremap);
137
138void memunmap(void *addr)
139{
140 if (is_vmalloc_addr(addr))
141 iounmap((void __iomem *) addr);
142}
143EXPORT_SYMBOL(memunmap);
7d3dcf26
CH
144
145static void devm_memremap_release(struct device *dev, void *res)
146{
9273a8bb 147 memunmap(*(void **)res);
7d3dcf26
CH
148}
149
150static int devm_memremap_match(struct device *dev, void *res, void *match_data)
151{
152 return *(void **)res == match_data;
153}
154
155void *devm_memremap(struct device *dev, resource_size_t offset,
156 size_t size, unsigned long flags)
157{
158 void **ptr, *addr;
159
538ea4aa
DW
160 ptr = devres_alloc_node(devm_memremap_release, sizeof(*ptr), GFP_KERNEL,
161 dev_to_node(dev));
7d3dcf26 162 if (!ptr)
b36f4761 163 return ERR_PTR(-ENOMEM);
7d3dcf26
CH
164
165 addr = memremap(offset, size, flags);
166 if (addr) {
167 *ptr = addr;
168 devres_add(dev, ptr);
93f834df 169 } else {
7d3dcf26 170 devres_free(ptr);
93f834df
TK
171 return ERR_PTR(-ENXIO);
172 }
7d3dcf26
CH
173
174 return addr;
175}
176EXPORT_SYMBOL(devm_memremap);
177
178void devm_memunmap(struct device *dev, void *addr)
179{
d741314f
DW
180 WARN_ON(devres_release(dev, devm_memremap_release,
181 devm_memremap_match, addr));
7d3dcf26
CH
182}
183EXPORT_SYMBOL(devm_memunmap);
41e94a85
CH
184
185#ifdef CONFIG_ZONE_DEVICE
9476df7d
DW
186static DEFINE_MUTEX(pgmap_lock);
187static RADIX_TREE(pgmap_radix, GFP_KERNEL);
188#define SECTION_MASK ~((1UL << PA_SECTION_SHIFT) - 1)
189#define SECTION_SIZE (1UL << PA_SECTION_SHIFT)
190
ab1b597e 191static unsigned long order_at(struct resource *res, unsigned long pgoff)
9476df7d 192{
ab1b597e
DW
193 unsigned long phys_pgoff = PHYS_PFN(res->start) + pgoff;
194 unsigned long nr_pages, mask;
eb7d78c9 195
ab1b597e
DW
196 nr_pages = PHYS_PFN(resource_size(res));
197 if (nr_pages == pgoff)
198 return ULONG_MAX;
199
200 /*
201 * What is the largest aligned power-of-2 range available from
202 * this resource pgoff to the end of the resource range,
203 * considering the alignment of the current pgoff?
204 */
205 mask = phys_pgoff | rounddown_pow_of_two(nr_pages - pgoff);
206 if (!mask)
207 return ULONG_MAX;
208
209 return find_first_bit(&mask, BITS_PER_LONG);
210}
211
212#define foreach_order_pgoff(res, order, pgoff) \
213 for (pgoff = 0, order = order_at((res), pgoff); order < ULONG_MAX; \
214 pgoff += 1UL << order, order = order_at((res), pgoff))
215
5042db43
JG
216#if IS_ENABLED(CONFIG_DEVICE_PRIVATE)
217int device_private_entry_fault(struct vm_area_struct *vma,
218 unsigned long addr,
219 swp_entry_t entry,
220 unsigned int flags,
221 pmd_t *pmdp)
222{
223 struct page *page = device_private_entry_to_page(entry);
224
225 /*
226 * The page_fault() callback must migrate page back to system memory
227 * so that CPU can access it. This might fail for various reasons
228 * (device issue, device was unsafely unplugged, ...). When such
229 * error conditions happen, the callback must return VM_FAULT_SIGBUS.
230 *
231 * Note that because memory cgroup charges are accounted to the device
232 * memory, this should never fail because of memory restrictions (but
233 * allocation of regular system page might still fail because we are
234 * out of memory).
235 *
236 * There is a more in-depth description of what that callback can and
237 * cannot do, in include/linux/memremap.h
238 */
239 return page->pgmap->page_fault(vma, addr, page, flags, pmdp);
240}
241EXPORT_SYMBOL(device_private_entry_fault);
242#endif /* CONFIG_DEVICE_PRIVATE */
243
ab1b597e
DW
244static void pgmap_radix_release(struct resource *res)
245{
246 unsigned long pgoff, order;
9476df7d
DW
247
248 mutex_lock(&pgmap_lock);
ab1b597e
DW
249 foreach_order_pgoff(res, order, pgoff)
250 radix_tree_delete(&pgmap_radix, PHYS_PFN(res->start) + pgoff);
9476df7d 251 mutex_unlock(&pgmap_lock);
ab1b597e
DW
252
253 synchronize_rcu();
9476df7d
DW
254}
255
e7744aa2 256static unsigned long pfn_first(struct dev_pagemap *pgmap)
5c2c2587 257{
e7744aa2
LG
258 const struct resource *res = &pgmap->res;
259 struct vmem_altmap *altmap = &pgmap->altmap;
5c2c2587
DW
260 unsigned long pfn;
261
262 pfn = res->start >> PAGE_SHIFT;
e7744aa2 263 if (pgmap->altmap_valid)
5c2c2587
DW
264 pfn += vmem_altmap_offset(altmap);
265 return pfn;
266}
267
e7744aa2 268static unsigned long pfn_end(struct dev_pagemap *pgmap)
5c2c2587 269{
e7744aa2 270 const struct resource *res = &pgmap->res;
5c2c2587
DW
271
272 return (res->start + resource_size(res)) >> PAGE_SHIFT;
273}
274
275#define for_each_device_pfn(pfn, map) \
276 for (pfn = pfn_first(map); pfn < pfn_end(map); pfn++)
277
e8d51348 278static void devm_memremap_pages_release(void *data)
41e94a85 279{
e7744aa2 280 struct dev_pagemap *pgmap = data;
e8d51348 281 struct device *dev = pgmap->dev;
e7744aa2 282 struct resource *res = &pgmap->res;
9476df7d 283 resource_size_t align_start, align_size;
71389703
DW
284 unsigned long pfn;
285
e7744aa2 286 for_each_device_pfn(pfn, pgmap)
71389703 287 put_page(pfn_to_page(pfn));
9476df7d 288
5c2c2587
DW
289 if (percpu_ref_tryget_live(pgmap->ref)) {
290 dev_WARN(dev, "%s: page mapping is still live!\n", __func__);
291 percpu_ref_put(pgmap->ref);
292 }
293
41e94a85 294 /* pages are dead and unused, undo the arch mapping */
9476df7d
DW
295 align_start = res->start & ~(SECTION_SIZE - 1);
296 align_size = ALIGN(resource_size(res), SECTION_SIZE);
b5d24fda 297
f931ab47 298 mem_hotplug_begin();
e7744aa2
LG
299 arch_remove_memory(align_start, align_size, pgmap->altmap_valid ?
300 &pgmap->altmap : NULL);
f931ab47 301 mem_hotplug_done();
b5d24fda 302
9049771f 303 untrack_pfn(NULL, PHYS_PFN(align_start), align_size);
eb7d78c9 304 pgmap_radix_release(res);
e7744aa2
LG
305 dev_WARN_ONCE(dev, pgmap->altmap.alloc,
306 "%s: failed to free all reserved pages\n", __func__);
9476df7d
DW
307}
308
4b94ffdc
DW
309/**
310 * devm_memremap_pages - remap and provide memmap backing for the given resource
311 * @dev: hosting device for @res
e8d51348 312 * @pgmap: pointer to a struct dev_pgmap
4b94ffdc 313 *
5c2c2587 314 * Notes:
e8d51348
CH
315 * 1/ At a minimum the res, ref and type members of @pgmap must be initialized
316 * by the caller before passing it to this function
317 *
318 * 2/ The altmap field may optionally be initialized, in which case altmap_valid
319 * must be set to true
320 *
321 * 3/ pgmap.ref must be 'live' on entry and 'dead' before devm_memunmap_pages()
322 * time (or devm release event). The expected order of events is that ref has
71389703
DW
323 * been through percpu_ref_kill() before devm_memremap_pages_release(). The
324 * wait for the completion of all references being dropped and
325 * percpu_ref_exit() must occur after devm_memremap_pages_release().
5c2c2587 326 *
e8d51348 327 * 4/ res is expected to be a host memory range that could feasibly be
5c2c2587
DW
328 * treated as a "System RAM" range, i.e. not a device mmio range, but
329 * this is not enforced.
4b94ffdc 330 */
e8d51348 331void *devm_memremap_pages(struct device *dev, struct dev_pagemap *pgmap)
41e94a85 332{
ab1b597e 333 resource_size_t align_start, align_size, align_end;
e8d51348
CH
334 struct vmem_altmap *altmap = pgmap->altmap_valid ?
335 &pgmap->altmap : NULL;
ab1b597e 336 unsigned long pfn, pgoff, order;
9049771f 337 pgprot_t pgprot = PAGE_KERNEL;
1fdcce6e 338 int error, nid, is_ram, i = 0;
e8d51348 339 struct resource *res = &pgmap->res;
5f29a77c
DW
340
341 align_start = res->start & ~(SECTION_SIZE - 1);
342 align_size = ALIGN(res->start + resource_size(res), SECTION_SIZE)
343 - align_start;
d37a14bb
LT
344 is_ram = region_intersects(align_start, align_size,
345 IORESOURCE_SYSTEM_RAM, IORES_DESC_NONE);
41e94a85
CH
346
347 if (is_ram == REGION_MIXED) {
348 WARN_ONCE(1, "%s attempted on mixed region %pr\n",
349 __func__, res);
350 return ERR_PTR(-ENXIO);
351 }
352
353 if (is_ram == REGION_INTERSECTS)
354 return __va(res->start);
355
e8d51348 356 if (!pgmap->ref)
5c2c2587
DW
357 return ERR_PTR(-EINVAL);
358
4b94ffdc 359 pgmap->dev = dev;
4b94ffdc 360
9476df7d
DW
361 mutex_lock(&pgmap_lock);
362 error = 0;
eb7d78c9 363 align_end = align_start + align_size - 1;
ab1b597e
DW
364
365 foreach_order_pgoff(res, order, pgoff) {
ab1b597e 366 error = __radix_tree_insert(&pgmap_radix,
e7744aa2 367 PHYS_PFN(res->start) + pgoff, order, pgmap);
9476df7d
DW
368 if (error) {
369 dev_err(dev, "%s: failed: %d\n", __func__, error);
370 break;
371 }
372 }
373 mutex_unlock(&pgmap_lock);
374 if (error)
375 goto err_radix;
376
41e94a85
CH
377 nid = dev_to_node(dev);
378 if (nid < 0)
7eff93b7 379 nid = numa_mem_id();
41e94a85 380
9049771f
DW
381 error = track_pfn_remap(NULL, &pgprot, PHYS_PFN(align_start), 0,
382 align_size);
383 if (error)
384 goto err_pfn_remap;
385
f931ab47 386 mem_hotplug_begin();
24e6d5a5 387 error = arch_add_memory(nid, align_start, align_size, altmap, false);
f1dd2cd1
MH
388 if (!error)
389 move_pfn_range_to_zone(&NODE_DATA(nid)->node_zones[ZONE_DEVICE],
390 align_start >> PAGE_SHIFT,
a99583e7 391 align_size >> PAGE_SHIFT, altmap);
f931ab47 392 mem_hotplug_done();
9476df7d
DW
393 if (error)
394 goto err_add_memory;
41e94a85 395
e7744aa2 396 for_each_device_pfn(pfn, pgmap) {
5c2c2587
DW
397 struct page *page = pfn_to_page(pfn);
398
d77a117e
DW
399 /*
400 * ZONE_DEVICE pages union ->lru with a ->pgmap back
401 * pointer. It is a bug if a ZONE_DEVICE page is ever
402 * freed or placed on a driver-private list. Seed the
403 * storage with LIST_POISON* values.
404 */
405 list_del(&page->lru);
5c2c2587 406 page->pgmap = pgmap;
e8d51348 407 percpu_ref_get(pgmap->ref);
1fdcce6e
MH
408 if (!(++i % 1024))
409 cond_resched();
5c2c2587 410 }
e8d51348
CH
411
412 devm_add_action(dev, devm_memremap_pages_release, pgmap);
413
41e94a85 414 return __va(res->start);
9476df7d
DW
415
416 err_add_memory:
9049771f
DW
417 untrack_pfn(NULL, PHYS_PFN(align_start), align_size);
418 err_pfn_remap:
9476df7d
DW
419 err_radix:
420 pgmap_radix_release(res);
e7744aa2 421 devres_free(pgmap);
9476df7d 422 return ERR_PTR(error);
41e94a85
CH
423}
424EXPORT_SYMBOL(devm_memremap_pages);
4b94ffdc
DW
425
426unsigned long vmem_altmap_offset(struct vmem_altmap *altmap)
427{
428 /* number of pfns from base where pfn_to_page() is valid */
429 return altmap->reserve + altmap->free;
430}
431
432void vmem_altmap_free(struct vmem_altmap *altmap, unsigned long nr_pfns)
433{
434 altmap->alloc -= nr_pfns;
435}
436
0822acb8
CH
437/**
438 * get_dev_pagemap() - take a new live reference on the dev_pagemap for @pfn
439 * @pfn: page frame number to lookup page_map
440 * @pgmap: optional known pgmap that already has a reference
441 *
832d7aa0
CH
442 * If @pgmap is non-NULL and covers @pfn it will be returned as-is. If @pgmap
443 * is non-NULL but does not cover @pfn the reference to it will be released.
0822acb8
CH
444 */
445struct dev_pagemap *get_dev_pagemap(unsigned long pfn,
446 struct dev_pagemap *pgmap)
447{
0822acb8
CH
448 resource_size_t phys = PFN_PHYS(pfn);
449
450 /*
832d7aa0 451 * In the cached case we're already holding a live reference.
0822acb8 452 */
832d7aa0 453 if (pgmap) {
e7744aa2 454 if (phys >= pgmap->res.start && phys <= pgmap->res.end)
832d7aa0
CH
455 return pgmap;
456 put_dev_pagemap(pgmap);
0822acb8
CH
457 }
458
459 /* fall back to slow path lookup */
460 rcu_read_lock();
e697c5b9 461 pgmap = radix_tree_lookup(&pgmap_radix, PHYS_PFN(phys));
0822acb8
CH
462 if (pgmap && !percpu_ref_tryget_live(pgmap->ref))
463 pgmap = NULL;
464 rcu_read_unlock();
465
466 return pgmap;
467}
468#endif /* CONFIG_ZONE_DEVICE */
7b2d55d2 469
df6ad698
JG
470#if IS_ENABLED(CONFIG_DEVICE_PRIVATE) || IS_ENABLED(CONFIG_DEVICE_PUBLIC)
471void put_zone_device_private_or_public_page(struct page *page)
7b2d55d2
JG
472{
473 int count = page_ref_dec_return(page);
474
475 /*
476 * If refcount is 1 then page is freed and refcount is stable as nobody
477 * holds a reference on the page.
478 */
479 if (count == 1) {
480 /* Clear Active bit in case of parallel mark_page_accessed */
481 __ClearPageActive(page);
482 __ClearPageWaiters(page);
483
484 page->mapping = NULL;
c733a828 485 mem_cgroup_uncharge(page);
7b2d55d2
JG
486
487 page->pgmap->page_free(page, page->pgmap->data);
488 } else if (!count)
489 __put_page(page);
490}
df6ad698
JG
491EXPORT_SYMBOL(put_zone_device_private_or_public_page);
492#endif /* CONFIG_DEVICE_PRIVATE || CONFIG_DEVICE_PUBLIC */