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1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright(c) 2015 Intel Corporation. All rights reserved. */
3 #include <linux/device.h>
4 #include <linux/io.h>
5 #include <linux/kasan.h>
6 #include <linux/memory_hotplug.h>
7 #include <linux/mm.h>
8 #include <linux/pfn_t.h>
9 #include <linux/swap.h>
10 #include <linux/mmzone.h>
11 #include <linux/swapops.h>
12 #include <linux/types.h>
13 #include <linux/wait_bit.h>
14 #include <linux/xarray.h>
15 
16 static DEFINE_XARRAY(pgmap_array);
17 
18 /*
19  * The memremap() and memremap_pages() interfaces are alternately used
20  * to map persistent memory namespaces. These interfaces place different
21  * constraints on the alignment and size of the mapping (namespace).
22  * memremap() can map individual PAGE_SIZE pages. memremap_pages() can
23  * only map subsections (2MB), and at least one architecture (PowerPC)
24  * the minimum mapping granularity of memremap_pages() is 16MB.
25  *
26  * The role of memremap_compat_align() is to communicate the minimum
27  * arch supported alignment of a namespace such that it can freely
28  * switch modes without violating the arch constraint. Namely, do not
29  * allow a namespace to be PAGE_SIZE aligned since that namespace may be
30  * reconfigured into a mode that requires SUBSECTION_SIZE alignment.
31  */
32 #ifndef CONFIG_ARCH_HAS_MEMREMAP_COMPAT_ALIGN
memremap_compat_align(void)33 unsigned long memremap_compat_align(void)
34 {
35 	return SUBSECTION_SIZE;
36 }
37 EXPORT_SYMBOL_GPL(memremap_compat_align);
38 #endif
39 
40 #ifdef CONFIG_DEV_PAGEMAP_OPS
41 DEFINE_STATIC_KEY_FALSE(devmap_managed_key);
42 EXPORT_SYMBOL(devmap_managed_key);
43 
devmap_managed_enable_put(struct dev_pagemap * pgmap)44 static void devmap_managed_enable_put(struct dev_pagemap *pgmap)
45 {
46 	if (pgmap->type == MEMORY_DEVICE_PRIVATE ||
47 	    pgmap->type == MEMORY_DEVICE_FS_DAX)
48 		static_branch_dec(&devmap_managed_key);
49 }
50 
devmap_managed_enable_get(struct dev_pagemap * pgmap)51 static void devmap_managed_enable_get(struct dev_pagemap *pgmap)
52 {
53 	if (pgmap->type == MEMORY_DEVICE_PRIVATE ||
54 	    pgmap->type == MEMORY_DEVICE_FS_DAX)
55 		static_branch_inc(&devmap_managed_key);
56 }
57 #else
devmap_managed_enable_get(struct dev_pagemap * pgmap)58 static void devmap_managed_enable_get(struct dev_pagemap *pgmap)
59 {
60 }
devmap_managed_enable_put(struct dev_pagemap * pgmap)61 static void devmap_managed_enable_put(struct dev_pagemap *pgmap)
62 {
63 }
64 #endif /* CONFIG_DEV_PAGEMAP_OPS */
65 
pgmap_array_delete(struct range * range)66 static void pgmap_array_delete(struct range *range)
67 {
68 	xa_store_range(&pgmap_array, PHYS_PFN(range->start), PHYS_PFN(range->end),
69 			NULL, GFP_KERNEL);
70 	synchronize_rcu();
71 }
72 
pfn_first(struct dev_pagemap * pgmap,int range_id)73 static unsigned long pfn_first(struct dev_pagemap *pgmap, int range_id)
74 {
75 	struct range *range = &pgmap->ranges[range_id];
76 	unsigned long pfn = PHYS_PFN(range->start);
77 
78 	if (range_id)
79 		return pfn;
80 	return pfn + vmem_altmap_offset(pgmap_altmap(pgmap));
81 }
82 
pgmap_pfn_valid(struct dev_pagemap * pgmap,unsigned long pfn)83 bool pgmap_pfn_valid(struct dev_pagemap *pgmap, unsigned long pfn)
84 {
85 	int i;
86 
87 	for (i = 0; i < pgmap->nr_range; i++) {
88 		struct range *range = &pgmap->ranges[i];
89 
90 		if (pfn >= PHYS_PFN(range->start) &&
91 		    pfn <= PHYS_PFN(range->end))
92 			return pfn >= pfn_first(pgmap, i);
93 	}
94 
95 	return false;
96 }
97 
pfn_end(struct dev_pagemap * pgmap,int range_id)98 static unsigned long pfn_end(struct dev_pagemap *pgmap, int range_id)
99 {
100 	const struct range *range = &pgmap->ranges[range_id];
101 
102 	return (range->start + range_len(range)) >> PAGE_SHIFT;
103 }
104 
pfn_next(unsigned long pfn)105 static unsigned long pfn_next(unsigned long pfn)
106 {
107 	if (pfn % 1024 == 0)
108 		cond_resched();
109 	return pfn + 1;
110 }
111 
112 #define for_each_device_pfn(pfn, map, i) \
113 	for (pfn = pfn_first(map, i); pfn < pfn_end(map, i); pfn = pfn_next(pfn))
114 
pageunmap_range(struct dev_pagemap * pgmap,int range_id)115 static void pageunmap_range(struct dev_pagemap *pgmap, int range_id)
116 {
117 	struct range *range = &pgmap->ranges[range_id];
118 	struct page *first_page;
119 
120 	/* make sure to access a memmap that was actually initialized */
121 	first_page = pfn_to_page(pfn_first(pgmap, range_id));
122 
123 	/* pages are dead and unused, undo the arch mapping */
124 	mem_hotplug_begin();
125 	remove_pfn_range_from_zone(page_zone(first_page), PHYS_PFN(range->start),
126 				   PHYS_PFN(range_len(range)));
127 	if (pgmap->type == MEMORY_DEVICE_PRIVATE) {
128 		__remove_pages(PHYS_PFN(range->start),
129 			       PHYS_PFN(range_len(range)), NULL);
130 	} else {
131 		arch_remove_memory(range->start, range_len(range),
132 				pgmap_altmap(pgmap));
133 		kasan_remove_zero_shadow(__va(range->start), range_len(range));
134 	}
135 	mem_hotplug_done();
136 
137 	untrack_pfn(NULL, PHYS_PFN(range->start), range_len(range));
138 	pgmap_array_delete(range);
139 }
140 
memunmap_pages(struct dev_pagemap * pgmap)141 void memunmap_pages(struct dev_pagemap *pgmap)
142 {
143 	unsigned long pfn;
144 	int i;
145 
146 	percpu_ref_kill(&pgmap->ref);
147 	for (i = 0; i < pgmap->nr_range; i++)
148 		for_each_device_pfn(pfn, pgmap, i)
149 			put_page(pfn_to_page(pfn));
150 	wait_for_completion(&pgmap->done);
151 
152 	for (i = 0; i < pgmap->nr_range; i++)
153 		pageunmap_range(pgmap, i);
154 	percpu_ref_exit(&pgmap->ref);
155 
156 	WARN_ONCE(pgmap->altmap.alloc, "failed to free all reserved pages\n");
157 	devmap_managed_enable_put(pgmap);
158 }
159 EXPORT_SYMBOL_GPL(memunmap_pages);
160 
devm_memremap_pages_release(void * data)161 static void devm_memremap_pages_release(void *data)
162 {
163 	memunmap_pages(data);
164 }
165 
dev_pagemap_percpu_release(struct percpu_ref * ref)166 static void dev_pagemap_percpu_release(struct percpu_ref *ref)
167 {
168 	struct dev_pagemap *pgmap = container_of(ref, struct dev_pagemap, ref);
169 
170 	complete(&pgmap->done);
171 }
172 
pagemap_range(struct dev_pagemap * pgmap,struct mhp_params * params,int range_id,int nid)173 static int pagemap_range(struct dev_pagemap *pgmap, struct mhp_params *params,
174 		int range_id, int nid)
175 {
176 	const bool is_private = pgmap->type == MEMORY_DEVICE_PRIVATE;
177 	struct range *range = &pgmap->ranges[range_id];
178 	struct dev_pagemap *conflict_pgmap;
179 	int error, is_ram;
180 
181 	if (WARN_ONCE(pgmap_altmap(pgmap) && range_id > 0,
182 				"altmap not supported for multiple ranges\n"))
183 		return -EINVAL;
184 
185 	conflict_pgmap = get_dev_pagemap(PHYS_PFN(range->start), NULL);
186 	if (conflict_pgmap) {
187 		WARN(1, "Conflicting mapping in same section\n");
188 		put_dev_pagemap(conflict_pgmap);
189 		return -ENOMEM;
190 	}
191 
192 	conflict_pgmap = get_dev_pagemap(PHYS_PFN(range->end), NULL);
193 	if (conflict_pgmap) {
194 		WARN(1, "Conflicting mapping in same section\n");
195 		put_dev_pagemap(conflict_pgmap);
196 		return -ENOMEM;
197 	}
198 
199 	is_ram = region_intersects(range->start, range_len(range),
200 		IORESOURCE_SYSTEM_RAM, IORES_DESC_NONE);
201 
202 	if (is_ram != REGION_DISJOINT) {
203 		WARN_ONCE(1, "attempted on %s region %#llx-%#llx\n",
204 				is_ram == REGION_MIXED ? "mixed" : "ram",
205 				range->start, range->end);
206 		return -ENXIO;
207 	}
208 
209 	error = xa_err(xa_store_range(&pgmap_array, PHYS_PFN(range->start),
210 				PHYS_PFN(range->end), pgmap, GFP_KERNEL));
211 	if (error)
212 		return error;
213 
214 	if (nid < 0)
215 		nid = numa_mem_id();
216 
217 	error = track_pfn_remap(NULL, &params->pgprot, PHYS_PFN(range->start), 0,
218 			range_len(range));
219 	if (error)
220 		goto err_pfn_remap;
221 
222 	if (!mhp_range_allowed(range->start, range_len(range), !is_private)) {
223 		error = -EINVAL;
224 		goto err_kasan;
225 	}
226 
227 	mem_hotplug_begin();
228 
229 	/*
230 	 * For device private memory we call add_pages() as we only need to
231 	 * allocate and initialize struct page for the device memory. More-
232 	 * over the device memory is un-accessible thus we do not want to
233 	 * create a linear mapping for the memory like arch_add_memory()
234 	 * would do.
235 	 *
236 	 * For all other device memory types, which are accessible by
237 	 * the CPU, we do want the linear mapping and thus use
238 	 * arch_add_memory().
239 	 */
240 	if (is_private) {
241 		error = add_pages(nid, PHYS_PFN(range->start),
242 				PHYS_PFN(range_len(range)), params);
243 	} else {
244 		error = kasan_add_zero_shadow(__va(range->start), range_len(range));
245 		if (error) {
246 			mem_hotplug_done();
247 			goto err_kasan;
248 		}
249 
250 		error = arch_add_memory(nid, range->start, range_len(range),
251 					params);
252 	}
253 
254 	if (!error) {
255 		struct zone *zone;
256 
257 		zone = &NODE_DATA(nid)->node_zones[ZONE_DEVICE];
258 		move_pfn_range_to_zone(zone, PHYS_PFN(range->start),
259 				PHYS_PFN(range_len(range)), params->altmap,
260 				MIGRATE_MOVABLE);
261 	}
262 
263 	mem_hotplug_done();
264 	if (error)
265 		goto err_add_memory;
266 
267 	/*
268 	 * Initialization of the pages has been deferred until now in order
269 	 * to allow us to do the work while not holding the hotplug lock.
270 	 */
271 	memmap_init_zone_device(&NODE_DATA(nid)->node_zones[ZONE_DEVICE],
272 				PHYS_PFN(range->start),
273 				PHYS_PFN(range_len(range)), pgmap);
274 	percpu_ref_get_many(&pgmap->ref,
275 		pfn_end(pgmap, range_id) - pfn_first(pgmap, range_id));
276 	return 0;
277 
278 err_add_memory:
279 	kasan_remove_zero_shadow(__va(range->start), range_len(range));
280 err_kasan:
281 	untrack_pfn(NULL, PHYS_PFN(range->start), range_len(range));
282 err_pfn_remap:
283 	pgmap_array_delete(range);
284 	return error;
285 }
286 
287 
288 /*
289  * Not device managed version of dev_memremap_pages, undone by
290  * memunmap_pages().  Please use dev_memremap_pages if you have a struct
291  * device available.
292  */
memremap_pages(struct dev_pagemap * pgmap,int nid)293 void *memremap_pages(struct dev_pagemap *pgmap, int nid)
294 {
295 	struct mhp_params params = {
296 		.altmap = pgmap_altmap(pgmap),
297 		.pgprot = PAGE_KERNEL,
298 	};
299 	const int nr_range = pgmap->nr_range;
300 	int error, i;
301 
302 	if (WARN_ONCE(!nr_range, "nr_range must be specified\n"))
303 		return ERR_PTR(-EINVAL);
304 
305 	switch (pgmap->type) {
306 	case MEMORY_DEVICE_PRIVATE:
307 		if (!IS_ENABLED(CONFIG_DEVICE_PRIVATE)) {
308 			WARN(1, "Device private memory not supported\n");
309 			return ERR_PTR(-EINVAL);
310 		}
311 		if (!pgmap->ops || !pgmap->ops->migrate_to_ram) {
312 			WARN(1, "Missing migrate_to_ram method\n");
313 			return ERR_PTR(-EINVAL);
314 		}
315 		if (!pgmap->ops->page_free) {
316 			WARN(1, "Missing page_free method\n");
317 			return ERR_PTR(-EINVAL);
318 		}
319 		if (!pgmap->owner) {
320 			WARN(1, "Missing owner\n");
321 			return ERR_PTR(-EINVAL);
322 		}
323 		break;
324 	case MEMORY_DEVICE_FS_DAX:
325 		if (!IS_ENABLED(CONFIG_ZONE_DEVICE) ||
326 		    IS_ENABLED(CONFIG_FS_DAX_LIMITED)) {
327 			WARN(1, "File system DAX not supported\n");
328 			return ERR_PTR(-EINVAL);
329 		}
330 		params.pgprot = pgprot_decrypted(params.pgprot);
331 		break;
332 	case MEMORY_DEVICE_GENERIC:
333 		break;
334 	case MEMORY_DEVICE_PCI_P2PDMA:
335 		params.pgprot = pgprot_noncached(params.pgprot);
336 		break;
337 	default:
338 		WARN(1, "Invalid pgmap type %d\n", pgmap->type);
339 		break;
340 	}
341 
342 	init_completion(&pgmap->done);
343 	error = percpu_ref_init(&pgmap->ref, dev_pagemap_percpu_release, 0,
344 				GFP_KERNEL);
345 	if (error)
346 		return ERR_PTR(error);
347 
348 	devmap_managed_enable_get(pgmap);
349 
350 	/*
351 	 * Clear the pgmap nr_range as it will be incremented for each
352 	 * successfully processed range. This communicates how many
353 	 * regions to unwind in the abort case.
354 	 */
355 	pgmap->nr_range = 0;
356 	error = 0;
357 	for (i = 0; i < nr_range; i++) {
358 		error = pagemap_range(pgmap, &params, i, nid);
359 		if (error)
360 			break;
361 		pgmap->nr_range++;
362 	}
363 
364 	if (i < nr_range) {
365 		memunmap_pages(pgmap);
366 		pgmap->nr_range = nr_range;
367 		return ERR_PTR(error);
368 	}
369 
370 	return __va(pgmap->ranges[0].start);
371 }
372 EXPORT_SYMBOL_GPL(memremap_pages);
373 
374 /**
375  * devm_memremap_pages - remap and provide memmap backing for the given resource
376  * @dev: hosting device for @res
377  * @pgmap: pointer to a struct dev_pagemap
378  *
379  * Notes:
380  * 1/ At a minimum the res and type members of @pgmap must be initialized
381  *    by the caller before passing it to this function
382  *
383  * 2/ The altmap field may optionally be initialized, in which case
384  *    PGMAP_ALTMAP_VALID must be set in pgmap->flags.
385  *
386  * 3/ The ref field may optionally be provided, in which pgmap->ref must be
387  *    'live' on entry and will be killed and reaped at
388  *    devm_memremap_pages_release() time, or if this routine fails.
389  *
390  * 4/ range is expected to be a host memory range that could feasibly be
391  *    treated as a "System RAM" range, i.e. not a device mmio range, but
392  *    this is not enforced.
393  */
devm_memremap_pages(struct device * dev,struct dev_pagemap * pgmap)394 void *devm_memremap_pages(struct device *dev, struct dev_pagemap *pgmap)
395 {
396 	int error;
397 	void *ret;
398 
399 	ret = memremap_pages(pgmap, dev_to_node(dev));
400 	if (IS_ERR(ret))
401 		return ret;
402 
403 	error = devm_add_action_or_reset(dev, devm_memremap_pages_release,
404 			pgmap);
405 	if (error)
406 		return ERR_PTR(error);
407 	return ret;
408 }
409 EXPORT_SYMBOL_GPL(devm_memremap_pages);
410 
devm_memunmap_pages(struct device * dev,struct dev_pagemap * pgmap)411 void devm_memunmap_pages(struct device *dev, struct dev_pagemap *pgmap)
412 {
413 	devm_release_action(dev, devm_memremap_pages_release, pgmap);
414 }
415 EXPORT_SYMBOL_GPL(devm_memunmap_pages);
416 
vmem_altmap_offset(struct vmem_altmap * altmap)417 unsigned long vmem_altmap_offset(struct vmem_altmap *altmap)
418 {
419 	/* number of pfns from base where pfn_to_page() is valid */
420 	if (altmap)
421 		return altmap->reserve + altmap->free;
422 	return 0;
423 }
424 
vmem_altmap_free(struct vmem_altmap * altmap,unsigned long nr_pfns)425 void vmem_altmap_free(struct vmem_altmap *altmap, unsigned long nr_pfns)
426 {
427 	altmap->alloc -= nr_pfns;
428 }
429 
430 /**
431  * get_dev_pagemap() - take a new live reference on the dev_pagemap for @pfn
432  * @pfn: page frame number to lookup page_map
433  * @pgmap: optional known pgmap that already has a reference
434  *
435  * If @pgmap is non-NULL and covers @pfn it will be returned as-is.  If @pgmap
436  * is non-NULL but does not cover @pfn the reference to it will be released.
437  */
get_dev_pagemap(unsigned long pfn,struct dev_pagemap * pgmap)438 struct dev_pagemap *get_dev_pagemap(unsigned long pfn,
439 		struct dev_pagemap *pgmap)
440 {
441 	resource_size_t phys = PFN_PHYS(pfn);
442 
443 	/*
444 	 * In the cached case we're already holding a live reference.
445 	 */
446 	if (pgmap) {
447 		if (phys >= pgmap->range.start && phys <= pgmap->range.end)
448 			return pgmap;
449 		put_dev_pagemap(pgmap);
450 	}
451 
452 	/* fall back to slow path lookup */
453 	rcu_read_lock();
454 	pgmap = xa_load(&pgmap_array, PHYS_PFN(phys));
455 	if (pgmap && !percpu_ref_tryget_live(&pgmap->ref))
456 		pgmap = NULL;
457 	rcu_read_unlock();
458 
459 	return pgmap;
460 }
461 EXPORT_SYMBOL_GPL(get_dev_pagemap);
462 
463 #ifdef CONFIG_DEV_PAGEMAP_OPS
free_devmap_managed_page(struct page * page)464 void free_devmap_managed_page(struct page *page)
465 {
466 	/* notify page idle for dax */
467 	if (!is_device_private_page(page)) {
468 		wake_up_var(&page->_refcount);
469 		return;
470 	}
471 
472 	__ClearPageWaiters(page);
473 
474 	mem_cgroup_uncharge(page);
475 
476 	/*
477 	 * When a device_private page is freed, the page->mapping field
478 	 * may still contain a (stale) mapping value. For example, the
479 	 * lower bits of page->mapping may still identify the page as an
480 	 * anonymous page. Ultimately, this entire field is just stale
481 	 * and wrong, and it will cause errors if not cleared.  One
482 	 * example is:
483 	 *
484 	 *  migrate_vma_pages()
485 	 *    migrate_vma_insert_page()
486 	 *      page_add_new_anon_rmap()
487 	 *        __page_set_anon_rmap()
488 	 *          ...checks page->mapping, via PageAnon(page) call,
489 	 *            and incorrectly concludes that the page is an
490 	 *            anonymous page. Therefore, it incorrectly,
491 	 *            silently fails to set up the new anon rmap.
492 	 *
493 	 * For other types of ZONE_DEVICE pages, migration is either
494 	 * handled differently or not done at all, so there is no need
495 	 * to clear page->mapping.
496 	 */
497 	page->mapping = NULL;
498 	page->pgmap->ops->page_free(page);
499 }
500 #endif /* CONFIG_DEV_PAGEMAP_OPS */
501