blob: 4fe42ce720d2cd8066ab79319db431fdd65ba014 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
Russell King0ddbccd2008-09-25 15:59:19 +01002 * linux/arch/arm/mm/dma-mapping.c
Linus Torvalds1da177e2005-04-16 15:20:36 -07003 *
4 * Copyright (C) 2000-2004 Russell King
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation.
9 *
10 * DMA uncached mapping support.
11 */
Russell King11a5aa32013-11-25 21:52:25 +000012#include <linux/bootmem.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070013#include <linux/module.h>
14#include <linux/mm.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090015#include <linux/gfp.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070016#include <linux/errno.h>
17#include <linux/list.h>
18#include <linux/init.h>
19#include <linux/device.h>
20#include <linux/dma-mapping.h>
Marek Szyprowskic7909502011-12-29 13:09:51 +010021#include <linux/dma-contiguous.h>
Nicolas Pitre39af22a2010-12-15 15:14:45 -050022#include <linux/highmem.h>
Marek Szyprowskic7909502011-12-29 13:09:51 +010023#include <linux/memblock.h>
Jon Medhurst99d17172011-08-02 17:28:27 +010024#include <linux/slab.h>
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +020025#include <linux/iommu.h>
Marek Szyprowskie9da6e92012-07-30 09:11:33 +020026#include <linux/io.h>
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +020027#include <linux/vmalloc.h>
Alessandro Rubini158e8bf2012-06-24 12:46:26 +010028#include <linux/sizes.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070029
Lennert Buytenhek23759dc2006-04-02 00:07:39 +010030#include <asm/memory.h>
Nicolas Pitre43377452009-03-12 22:52:09 -040031#include <asm/highmem.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070032#include <asm/cacheflush.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070033#include <asm/tlbflush.h>
Jon Medhurst99d17172011-08-02 17:28:27 +010034#include <asm/mach/arch.h>
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +020035#include <asm/dma-iommu.h>
Marek Szyprowskic7909502011-12-29 13:09:51 +010036#include <asm/mach/map.h>
37#include <asm/system_info.h>
38#include <asm/dma-contiguous.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070039
Russell King022ae532011-07-08 21:26:59 +010040#include "mm.h"
41
Marek Szyprowski15237e12012-02-10 19:55:20 +010042/*
43 * The DMA API is built upon the notion of "buffer ownership". A buffer
44 * is either exclusively owned by the CPU (and therefore may be accessed
45 * by it) or exclusively owned by the DMA device. These helper functions
46 * represent the transitions between these two ownership states.
47 *
48 * Note, however, that on later ARMs, this notion does not work due to
49 * speculative prefetches. We model our approach on the assumption that
50 * the CPU does do speculative prefetches, which means we clean caches
51 * before transfers and delay cache invalidation until transfer completion.
52 *
Marek Szyprowski15237e12012-02-10 19:55:20 +010053 */
Marek Szyprowski51fde3492012-02-10 19:55:20 +010054static void __dma_page_cpu_to_dev(struct page *, unsigned long,
Marek Szyprowski15237e12012-02-10 19:55:20 +010055 size_t, enum dma_data_direction);
Marek Szyprowski51fde3492012-02-10 19:55:20 +010056static void __dma_page_dev_to_cpu(struct page *, unsigned long,
Marek Szyprowski15237e12012-02-10 19:55:20 +010057 size_t, enum dma_data_direction);
58
Marek Szyprowski2dc6a012012-02-10 19:55:20 +010059/**
60 * arm_dma_map_page - map a portion of a page for streaming DMA
61 * @dev: valid struct device pointer, or NULL for ISA and EISA-like devices
62 * @page: page that buffer resides in
63 * @offset: offset into page for start of buffer
64 * @size: size of buffer to map
65 * @dir: DMA transfer direction
66 *
67 * Ensure that any data held in the cache is appropriately discarded
68 * or written back.
69 *
70 * The device owns this memory once this call has completed. The CPU
71 * can regain ownership by calling dma_unmap_page().
72 */
Marek Szyprowski51fde3492012-02-10 19:55:20 +010073static dma_addr_t arm_dma_map_page(struct device *dev, struct page *page,
Marek Szyprowski2dc6a012012-02-10 19:55:20 +010074 unsigned long offset, size_t size, enum dma_data_direction dir,
75 struct dma_attrs *attrs)
76{
Rob Herringdd37e942012-08-21 12:20:17 +020077 if (!dma_get_attr(DMA_ATTR_SKIP_CPU_SYNC, attrs))
Marek Szyprowski51fde3492012-02-10 19:55:20 +010078 __dma_page_cpu_to_dev(page, offset, size, dir);
79 return pfn_to_dma(dev, page_to_pfn(page)) + offset;
Marek Szyprowski2dc6a012012-02-10 19:55:20 +010080}
81
Rob Herringdd37e942012-08-21 12:20:17 +020082static dma_addr_t arm_coherent_dma_map_page(struct device *dev, struct page *page,
83 unsigned long offset, size_t size, enum dma_data_direction dir,
84 struct dma_attrs *attrs)
85{
86 return pfn_to_dma(dev, page_to_pfn(page)) + offset;
87}
88
Marek Szyprowski2dc6a012012-02-10 19:55:20 +010089/**
90 * arm_dma_unmap_page - unmap a buffer previously mapped through dma_map_page()
91 * @dev: valid struct device pointer, or NULL for ISA and EISA-like devices
92 * @handle: DMA address of buffer
93 * @size: size of buffer (same as passed to dma_map_page)
94 * @dir: DMA transfer direction (same as passed to dma_map_page)
95 *
96 * Unmap a page streaming mode DMA translation. The handle and size
97 * must match what was provided in the previous dma_map_page() call.
98 * All other usages are undefined.
99 *
100 * After this call, reads by the CPU to the buffer are guaranteed to see
101 * whatever the device wrote there.
102 */
Marek Szyprowski51fde3492012-02-10 19:55:20 +0100103static void arm_dma_unmap_page(struct device *dev, dma_addr_t handle,
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100104 size_t size, enum dma_data_direction dir,
105 struct dma_attrs *attrs)
106{
Rob Herringdd37e942012-08-21 12:20:17 +0200107 if (!dma_get_attr(DMA_ATTR_SKIP_CPU_SYNC, attrs))
Marek Szyprowski51fde3492012-02-10 19:55:20 +0100108 __dma_page_dev_to_cpu(pfn_to_page(dma_to_pfn(dev, handle)),
109 handle & ~PAGE_MASK, size, dir);
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100110}
111
Marek Szyprowski51fde3492012-02-10 19:55:20 +0100112static void arm_dma_sync_single_for_cpu(struct device *dev,
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100113 dma_addr_t handle, size_t size, enum dma_data_direction dir)
114{
115 unsigned int offset = handle & (PAGE_SIZE - 1);
116 struct page *page = pfn_to_page(dma_to_pfn(dev, handle-offset));
Rob Herringdd37e942012-08-21 12:20:17 +0200117 __dma_page_dev_to_cpu(page, offset, size, dir);
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100118}
119
Marek Szyprowski51fde3492012-02-10 19:55:20 +0100120static void arm_dma_sync_single_for_device(struct device *dev,
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100121 dma_addr_t handle, size_t size, enum dma_data_direction dir)
122{
123 unsigned int offset = handle & (PAGE_SIZE - 1);
124 struct page *page = pfn_to_page(dma_to_pfn(dev, handle-offset));
Rob Herringdd37e942012-08-21 12:20:17 +0200125 __dma_page_cpu_to_dev(page, offset, size, dir);
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100126}
127
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100128struct dma_map_ops arm_dma_ops = {
Marek Szyprowskif99d6032012-05-16 18:31:23 +0200129 .alloc = arm_dma_alloc,
130 .free = arm_dma_free,
131 .mmap = arm_dma_mmap,
Marek Szyprowskidc2832e2012-06-13 10:01:15 +0200132 .get_sgtable = arm_dma_get_sgtable,
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100133 .map_page = arm_dma_map_page,
134 .unmap_page = arm_dma_unmap_page,
135 .map_sg = arm_dma_map_sg,
136 .unmap_sg = arm_dma_unmap_sg,
137 .sync_single_for_cpu = arm_dma_sync_single_for_cpu,
138 .sync_single_for_device = arm_dma_sync_single_for_device,
139 .sync_sg_for_cpu = arm_dma_sync_sg_for_cpu,
140 .sync_sg_for_device = arm_dma_sync_sg_for_device,
141 .set_dma_mask = arm_dma_set_mask,
142};
143EXPORT_SYMBOL(arm_dma_ops);
144
Rob Herringdd37e942012-08-21 12:20:17 +0200145static void *arm_coherent_dma_alloc(struct device *dev, size_t size,
146 dma_addr_t *handle, gfp_t gfp, struct dma_attrs *attrs);
147static void arm_coherent_dma_free(struct device *dev, size_t size, void *cpu_addr,
148 dma_addr_t handle, struct dma_attrs *attrs);
149
150struct dma_map_ops arm_coherent_dma_ops = {
151 .alloc = arm_coherent_dma_alloc,
152 .free = arm_coherent_dma_free,
153 .mmap = arm_dma_mmap,
154 .get_sgtable = arm_dma_get_sgtable,
155 .map_page = arm_coherent_dma_map_page,
156 .map_sg = arm_dma_map_sg,
157 .set_dma_mask = arm_dma_set_mask,
158};
159EXPORT_SYMBOL(arm_coherent_dma_ops);
160
Russell King9f28cde2013-12-06 12:30:42 +0000161static int __dma_supported(struct device *dev, u64 mask, bool warn)
162{
163 unsigned long max_dma_pfn;
164
165 /*
166 * If the mask allows for more memory than we can address,
167 * and we actually have that much memory, then we must
168 * indicate that DMA to this device is not supported.
169 */
170 if (sizeof(mask) != sizeof(dma_addr_t) &&
171 mask > (dma_addr_t)~0 &&
172 dma_to_pfn(dev, ~0) < max_pfn) {
173 if (warn) {
174 dev_warn(dev, "Coherent DMA mask %#llx is larger than dma_addr_t allows\n",
175 mask);
176 dev_warn(dev, "Driver did not use or check the return value from dma_set_coherent_mask()?\n");
177 }
178 return 0;
179 }
180
181 max_dma_pfn = min(max_pfn, arm_dma_pfn_limit);
182
183 /*
184 * Translate the device's DMA mask to a PFN limit. This
185 * PFN number includes the page which we can DMA to.
186 */
187 if (dma_to_pfn(dev, mask) < max_dma_pfn) {
188 if (warn)
189 dev_warn(dev, "Coherent DMA mask %#llx (pfn %#lx-%#lx) covers a smaller range of system memory than the DMA zone pfn 0x0-%#lx\n",
190 mask,
191 dma_to_pfn(dev, 0), dma_to_pfn(dev, mask) + 1,
192 max_dma_pfn + 1);
193 return 0;
194 }
195
196 return 1;
197}
198
Catalin Marinasab6494f2009-07-24 12:35:02 +0100199static u64 get_coherent_dma_mask(struct device *dev)
200{
Russell King4dcfa602013-07-09 12:14:49 +0100201 u64 mask = (u64)DMA_BIT_MASK(32);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700202
Catalin Marinasab6494f2009-07-24 12:35:02 +0100203 if (dev) {
204 mask = dev->coherent_dma_mask;
205
206 /*
207 * Sanity check the DMA mask - it must be non-zero, and
208 * must be able to be satisfied by a DMA allocation.
209 */
210 if (mask == 0) {
211 dev_warn(dev, "coherent DMA mask is unset\n");
212 return 0;
213 }
214
Russell King9f28cde2013-12-06 12:30:42 +0000215 if (!__dma_supported(dev, mask, true))
Russell King4dcfa602013-07-09 12:14:49 +0100216 return 0;
Catalin Marinasab6494f2009-07-24 12:35:02 +0100217 }
218
219 return mask;
220}
221
Marek Szyprowskic7909502011-12-29 13:09:51 +0100222static void __dma_clear_buffer(struct page *page, size_t size)
223{
Marek Szyprowskic7909502011-12-29 13:09:51 +0100224 /*
225 * Ensure that the allocated pages are zeroed, and that any data
226 * lurking in the kernel direct-mapped region is invalidated.
227 */
Marek Szyprowski9848e482013-01-16 15:38:44 +0100228 if (PageHighMem(page)) {
229 phys_addr_t base = __pfn_to_phys(page_to_pfn(page));
230 phys_addr_t end = base + size;
231 while (size > 0) {
232 void *ptr = kmap_atomic(page);
233 memset(ptr, 0, PAGE_SIZE);
234 dmac_flush_range(ptr, ptr + PAGE_SIZE);
235 kunmap_atomic(ptr);
236 page++;
237 size -= PAGE_SIZE;
238 }
239 outer_flush_range(base, end);
240 } else {
241 void *ptr = page_address(page);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +0200242 memset(ptr, 0, size);
243 dmac_flush_range(ptr, ptr + size);
244 outer_flush_range(__pa(ptr), __pa(ptr) + size);
245 }
Marek Szyprowskic7909502011-12-29 13:09:51 +0100246}
247
Russell King7a9a32a2009-11-19 15:31:07 +0000248/*
249 * Allocate a DMA buffer for 'dev' of size 'size' using the
250 * specified gfp mask. Note that 'size' must be page aligned.
251 */
252static struct page *__dma_alloc_buffer(struct device *dev, size_t size, gfp_t gfp)
253{
254 unsigned long order = get_order(size);
255 struct page *page, *p, *e;
Russell King7a9a32a2009-11-19 15:31:07 +0000256
257 page = alloc_pages(gfp, order);
258 if (!page)
259 return NULL;
260
261 /*
262 * Now split the huge page and free the excess pages
263 */
264 split_page(page, order);
265 for (p = page + (size >> PAGE_SHIFT), e = page + (1 << order); p < e; p++)
266 __free_page(p);
267
Marek Szyprowskic7909502011-12-29 13:09:51 +0100268 __dma_clear_buffer(page, size);
Russell King7a9a32a2009-11-19 15:31:07 +0000269
270 return page;
271}
272
273/*
274 * Free a DMA buffer. 'size' must be page aligned.
275 */
276static void __dma_free_buffer(struct page *page, size_t size)
277{
278 struct page *e = page + (size >> PAGE_SHIFT);
279
280 while (page < e) {
281 __free_page(page);
282 page++;
283 }
284}
285
Catalin Marinasab6494f2009-07-24 12:35:02 +0100286#ifdef CONFIG_MMU
Linus Torvalds1da177e2005-04-16 15:20:36 -0700287#ifdef CONFIG_HUGETLB_PAGE
Catalin Marinas1355e2a2012-07-25 14:32:38 +0100288#warning ARM Coherent DMA allocator does not (yet) support huge TLB
Linus Torvalds1da177e2005-04-16 15:20:36 -0700289#endif
290
Marek Szyprowskic7909502011-12-29 13:09:51 +0100291static void *__alloc_from_contiguous(struct device *dev, size_t size,
Marek Szyprowski9848e482013-01-16 15:38:44 +0100292 pgprot_t prot, struct page **ret_page,
293 const void *caller);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100294
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200295static void *__alloc_remap_buffer(struct device *dev, size_t size, gfp_t gfp,
296 pgprot_t prot, struct page **ret_page,
297 const void *caller);
298
299static void *
300__dma_alloc_remap(struct page *page, size_t size, gfp_t gfp, pgprot_t prot,
301 const void *caller)
302{
303 struct vm_struct *area;
304 unsigned long addr;
305
306 /*
307 * DMA allocation can be mapped to user space, so lets
308 * set VM_USERMAP flags too.
309 */
310 area = get_vm_area_caller(size, VM_ARM_DMA_CONSISTENT | VM_USERMAP,
311 caller);
312 if (!area)
313 return NULL;
314 addr = (unsigned long)area->addr;
315 area->phys_addr = __pfn_to_phys(page_to_pfn(page));
316
317 if (ioremap_page_range(addr, addr + size, area->phys_addr, prot)) {
318 vunmap((void *)addr);
319 return NULL;
320 }
321 return (void *)addr;
322}
323
324static void __dma_free_remap(void *cpu_addr, size_t size)
325{
326 unsigned int flags = VM_ARM_DMA_CONSISTENT | VM_USERMAP;
327 struct vm_struct *area = find_vm_area(cpu_addr);
328 if (!area || (area->flags & flags) != flags) {
329 WARN(1, "trying to free invalid coherent area: %p\n", cpu_addr);
330 return;
331 }
332 unmap_kernel_range((unsigned long)cpu_addr, size);
333 vunmap(cpu_addr);
334}
335
Marek Szyprowski6e5267a2012-08-20 11:19:25 +0200336#define DEFAULT_DMA_COHERENT_POOL_SIZE SZ_256K
337
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200338struct dma_pool {
339 size_t size;
340 spinlock_t lock;
341 unsigned long *bitmap;
342 unsigned long nr_pages;
343 void *vaddr;
Hiroshi Doyu6b3fe472012-08-28 08:13:01 +0300344 struct page **pages;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100345};
346
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200347static struct dma_pool atomic_pool = {
Marek Szyprowski6e5267a2012-08-20 11:19:25 +0200348 .size = DEFAULT_DMA_COHERENT_POOL_SIZE,
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200349};
Marek Szyprowskic7909502011-12-29 13:09:51 +0100350
351static int __init early_coherent_pool(char *p)
352{
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200353 atomic_pool.size = memparse(p, &p);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100354 return 0;
355}
356early_param("coherent_pool", early_coherent_pool);
357
Marek Szyprowski6e5267a2012-08-20 11:19:25 +0200358void __init init_dma_coherent_pool_size(unsigned long size)
359{
360 /*
361 * Catch any attempt to set the pool size too late.
362 */
363 BUG_ON(atomic_pool.vaddr);
364
365 /*
366 * Set architecture specific coherent pool size only if
367 * it has not been changed by kernel command line parameter.
368 */
369 if (atomic_pool.size == DEFAULT_DMA_COHERENT_POOL_SIZE)
370 atomic_pool.size = size;
371}
372
Marek Szyprowskic7909502011-12-29 13:09:51 +0100373/*
374 * Initialise the coherent pool for atomic allocations.
375 */
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200376static int __init atomic_pool_init(void)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100377{
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200378 struct dma_pool *pool = &atomic_pool;
Russell King71b55662013-11-25 12:01:03 +0000379 pgprot_t prot = pgprot_dmacoherent(PAGE_KERNEL);
Marek Szyprowski9d1400c2013-02-26 07:46:24 +0100380 gfp_t gfp = GFP_KERNEL | GFP_DMA;
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200381 unsigned long nr_pages = pool->size >> PAGE_SHIFT;
382 unsigned long *bitmap;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100383 struct page *page;
Hiroshi Doyu6b3fe472012-08-28 08:13:01 +0300384 struct page **pages;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100385 void *ptr;
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200386 int bitmap_size = BITS_TO_LONGS(nr_pages) * sizeof(long);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100387
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200388 bitmap = kzalloc(bitmap_size, GFP_KERNEL);
389 if (!bitmap)
390 goto no_bitmap;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100391
Hiroshi Doyu6b3fe472012-08-28 08:13:01 +0300392 pages = kzalloc(nr_pages * sizeof(struct page *), GFP_KERNEL);
393 if (!pages)
394 goto no_pages;
395
Aneesh Kumar K.Vf825c732013-07-02 11:15:15 +0530396 if (IS_ENABLED(CONFIG_DMA_CMA))
Marek Szyprowski9848e482013-01-16 15:38:44 +0100397 ptr = __alloc_from_contiguous(NULL, pool->size, prot, &page,
398 atomic_pool_init);
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200399 else
Marek Szyprowski9d1400c2013-02-26 07:46:24 +0100400 ptr = __alloc_remap_buffer(NULL, pool->size, gfp, prot, &page,
401 atomic_pool_init);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100402 if (ptr) {
Hiroshi Doyu6b3fe472012-08-28 08:13:01 +0300403 int i;
404
405 for (i = 0; i < nr_pages; i++)
406 pages[i] = page + i;
407
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200408 spin_lock_init(&pool->lock);
409 pool->vaddr = ptr;
Hiroshi Doyu6b3fe472012-08-28 08:13:01 +0300410 pool->pages = pages;
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200411 pool->bitmap = bitmap;
412 pool->nr_pages = nr_pages;
413 pr_info("DMA: preallocated %u KiB pool for atomic coherent allocations\n",
414 (unsigned)pool->size / 1024);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100415 return 0;
416 }
Sachin Kamatec106652012-09-24 08:35:03 +0200417
418 kfree(pages);
Hiroshi Doyu6b3fe472012-08-28 08:13:01 +0300419no_pages:
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200420 kfree(bitmap);
421no_bitmap:
422 pr_err("DMA: failed to allocate %u KiB pool for atomic coherent allocation\n",
423 (unsigned)pool->size / 1024);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100424 return -ENOMEM;
425}
426/*
427 * CMA is activated by core_initcall, so we must be called after it.
428 */
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200429postcore_initcall(atomic_pool_init);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100430
431struct dma_contig_early_reserve {
432 phys_addr_t base;
433 unsigned long size;
434};
435
436static struct dma_contig_early_reserve dma_mmu_remap[MAX_CMA_AREAS] __initdata;
437
438static int dma_mmu_remap_num __initdata;
439
440void __init dma_contiguous_early_fixup(phys_addr_t base, unsigned long size)
441{
442 dma_mmu_remap[dma_mmu_remap_num].base = base;
443 dma_mmu_remap[dma_mmu_remap_num].size = size;
444 dma_mmu_remap_num++;
445}
446
447void __init dma_contiguous_remap(void)
448{
449 int i;
450 for (i = 0; i < dma_mmu_remap_num; i++) {
451 phys_addr_t start = dma_mmu_remap[i].base;
452 phys_addr_t end = start + dma_mmu_remap[i].size;
453 struct map_desc map;
454 unsigned long addr;
455
456 if (end > arm_lowmem_limit)
457 end = arm_lowmem_limit;
458 if (start >= end)
Chris Brand39f78e72012-08-07 14:01:14 +0200459 continue;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100460
461 map.pfn = __phys_to_pfn(start);
462 map.virtual = __phys_to_virt(start);
463 map.length = end - start;
464 map.type = MT_MEMORY_DMA_READY;
465
466 /*
467 * Clear previous low-memory mapping
468 */
469 for (addr = __phys_to_virt(start); addr < __phys_to_virt(end);
Vitaly Andrianov61f6c7a2012-05-14 13:49:56 -0400470 addr += PMD_SIZE)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100471 pmd_clear(pmd_off_k(addr));
472
473 iotable_init(&map, 1);
474 }
475}
476
Marek Szyprowskic7909502011-12-29 13:09:51 +0100477static int __dma_update_pte(pte_t *pte, pgtable_t token, unsigned long addr,
478 void *data)
479{
480 struct page *page = virt_to_page(addr);
481 pgprot_t prot = *(pgprot_t *)data;
482
483 set_pte_ext(pte, mk_pte(page, prot), 0);
484 return 0;
485}
486
487static void __dma_remap(struct page *page, size_t size, pgprot_t prot)
488{
489 unsigned long start = (unsigned long) page_address(page);
490 unsigned end = start + size;
491
492 apply_to_page_range(&init_mm, start, size, __dma_update_pte, &prot);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100493 flush_tlb_kernel_range(start, end);
494}
495
496static void *__alloc_remap_buffer(struct device *dev, size_t size, gfp_t gfp,
497 pgprot_t prot, struct page **ret_page,
498 const void *caller)
499{
500 struct page *page;
501 void *ptr;
502 page = __dma_alloc_buffer(dev, size, gfp);
503 if (!page)
504 return NULL;
505
506 ptr = __dma_alloc_remap(page, size, gfp, prot, caller);
507 if (!ptr) {
508 __dma_free_buffer(page, size);
509 return NULL;
510 }
511
512 *ret_page = page;
513 return ptr;
514}
515
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200516static void *__alloc_from_pool(size_t size, struct page **ret_page)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100517{
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200518 struct dma_pool *pool = &atomic_pool;
519 unsigned int count = PAGE_ALIGN(size) >> PAGE_SHIFT;
520 unsigned int pageno;
521 unsigned long flags;
522 void *ptr = NULL;
Aaro Koskinene4ea6912012-08-07 14:39:25 +0200523 unsigned long align_mask;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100524
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200525 if (!pool->vaddr) {
526 WARN(1, "coherent pool not initialised!\n");
Marek Szyprowskic7909502011-12-29 13:09:51 +0100527 return NULL;
528 }
529
530 /*
531 * Align the region allocation - allocations from pool are rather
532 * small, so align them to their order in pages, minimum is a page
533 * size. This helps reduce fragmentation of the DMA space.
534 */
Aaro Koskinene4ea6912012-08-07 14:39:25 +0200535 align_mask = (1 << get_order(size)) - 1;
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200536
537 spin_lock_irqsave(&pool->lock, flags);
538 pageno = bitmap_find_next_zero_area(pool->bitmap, pool->nr_pages,
Aaro Koskinene4ea6912012-08-07 14:39:25 +0200539 0, count, align_mask);
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200540 if (pageno < pool->nr_pages) {
541 bitmap_set(pool->bitmap, pageno, count);
542 ptr = pool->vaddr + PAGE_SIZE * pageno;
Hiroshi Doyu6b3fe472012-08-28 08:13:01 +0300543 *ret_page = pool->pages[pageno];
Marek Szyprowskifb712852012-08-22 14:50:42 +0200544 } else {
545 pr_err_once("ERROR: %u KiB atomic DMA coherent pool is too small!\n"
546 "Please increase it with coherent_pool= kernel parameter!\n",
547 (unsigned)pool->size / 1024);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100548 }
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200549 spin_unlock_irqrestore(&pool->lock, flags);
550
551 return ptr;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100552}
553
Hiroshi Doyu21d0a752012-08-28 08:13:02 +0300554static bool __in_atomic_pool(void *start, size_t size)
555{
556 struct dma_pool *pool = &atomic_pool;
557 void *end = start + size;
558 void *pool_start = pool->vaddr;
559 void *pool_end = pool->vaddr + pool->size;
560
Thomas Petazzonif3d87522012-09-10 16:14:16 +0200561 if (start < pool_start || start >= pool_end)
Hiroshi Doyu21d0a752012-08-28 08:13:02 +0300562 return false;
563
564 if (end <= pool_end)
565 return true;
566
567 WARN(1, "Wrong coherent size(%p-%p) from atomic pool(%p-%p)\n",
568 start, end - 1, pool_start, pool_end - 1);
569
570 return false;
571}
572
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200573static int __free_from_pool(void *start, size_t size)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100574{
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200575 struct dma_pool *pool = &atomic_pool;
576 unsigned long pageno, count;
577 unsigned long flags;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100578
Hiroshi Doyu21d0a752012-08-28 08:13:02 +0300579 if (!__in_atomic_pool(start, size))
Marek Szyprowskic7909502011-12-29 13:09:51 +0100580 return 0;
581
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200582 pageno = (start - pool->vaddr) >> PAGE_SHIFT;
583 count = size >> PAGE_SHIFT;
584
585 spin_lock_irqsave(&pool->lock, flags);
586 bitmap_clear(pool->bitmap, pageno, count);
587 spin_unlock_irqrestore(&pool->lock, flags);
588
Marek Szyprowskic7909502011-12-29 13:09:51 +0100589 return 1;
590}
591
592static void *__alloc_from_contiguous(struct device *dev, size_t size,
Marek Szyprowski9848e482013-01-16 15:38:44 +0100593 pgprot_t prot, struct page **ret_page,
594 const void *caller)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100595{
596 unsigned long order = get_order(size);
597 size_t count = size >> PAGE_SHIFT;
598 struct page *page;
Marek Szyprowski9848e482013-01-16 15:38:44 +0100599 void *ptr;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100600
601 page = dma_alloc_from_contiguous(dev, count, order);
602 if (!page)
603 return NULL;
604
605 __dma_clear_buffer(page, size);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100606
Marek Szyprowski9848e482013-01-16 15:38:44 +0100607 if (PageHighMem(page)) {
608 ptr = __dma_alloc_remap(page, size, GFP_KERNEL, prot, caller);
609 if (!ptr) {
610 dma_release_from_contiguous(dev, page, count);
611 return NULL;
612 }
613 } else {
614 __dma_remap(page, size, prot);
615 ptr = page_address(page);
616 }
Marek Szyprowskic7909502011-12-29 13:09:51 +0100617 *ret_page = page;
Marek Szyprowski9848e482013-01-16 15:38:44 +0100618 return ptr;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100619}
620
621static void __free_from_contiguous(struct device *dev, struct page *page,
Marek Szyprowski9848e482013-01-16 15:38:44 +0100622 void *cpu_addr, size_t size)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100623{
Marek Szyprowski9848e482013-01-16 15:38:44 +0100624 if (PageHighMem(page))
625 __dma_free_remap(cpu_addr, size);
626 else
Russell King71b55662013-11-25 12:01:03 +0000627 __dma_remap(page, size, PAGE_KERNEL);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100628 dma_release_from_contiguous(dev, page, size >> PAGE_SHIFT);
629}
630
Marek Szyprowskif99d6032012-05-16 18:31:23 +0200631static inline pgprot_t __get_dma_pgprot(struct dma_attrs *attrs, pgprot_t prot)
632{
633 prot = dma_get_attr(DMA_ATTR_WRITE_COMBINE, attrs) ?
634 pgprot_writecombine(prot) :
635 pgprot_dmacoherent(prot);
636 return prot;
637}
638
Marek Szyprowskic7909502011-12-29 13:09:51 +0100639#define nommu() 0
640
Catalin Marinasab6494f2009-07-24 12:35:02 +0100641#else /* !CONFIG_MMU */
Russell King695ae0a2009-11-19 16:31:39 +0000642
Marek Szyprowskic7909502011-12-29 13:09:51 +0100643#define nommu() 1
644
Marek Szyprowskif99d6032012-05-16 18:31:23 +0200645#define __get_dma_pgprot(attrs, prot) __pgprot(0)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100646#define __alloc_remap_buffer(dev, size, gfp, prot, ret, c) NULL
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200647#define __alloc_from_pool(size, ret_page) NULL
Marek Szyprowski9848e482013-01-16 15:38:44 +0100648#define __alloc_from_contiguous(dev, size, prot, ret, c) NULL
Marek Szyprowskic7909502011-12-29 13:09:51 +0100649#define __free_from_pool(cpu_addr, size) 0
Marek Szyprowski9848e482013-01-16 15:38:44 +0100650#define __free_from_contiguous(dev, page, cpu_addr, size) do { } while (0)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100651#define __dma_free_remap(cpu_addr, size) do { } while (0)
Russell King31ebf942009-11-19 21:12:17 +0000652
653#endif /* CONFIG_MMU */
654
Marek Szyprowskic7909502011-12-29 13:09:51 +0100655static void *__alloc_simple_buffer(struct device *dev, size_t size, gfp_t gfp,
656 struct page **ret_page)
Catalin Marinasab6494f2009-07-24 12:35:02 +0100657{
Russell King04da5692009-11-19 15:54:45 +0000658 struct page *page;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100659 page = __dma_alloc_buffer(dev, size, gfp);
660 if (!page)
661 return NULL;
662
663 *ret_page = page;
664 return page_address(page);
665}
666
667
668
669static void *__dma_alloc(struct device *dev, size_t size, dma_addr_t *handle,
Rob Herringdd37e942012-08-21 12:20:17 +0200670 gfp_t gfp, pgprot_t prot, bool is_coherent, const void *caller)
Marek Szyprowskic7909502011-12-29 13:09:51 +0100671{
672 u64 mask = get_coherent_dma_mask(dev);
Jingoo Han3dd7ea92012-10-24 14:09:14 +0900673 struct page *page = NULL;
Russell King31ebf942009-11-19 21:12:17 +0000674 void *addr;
Catalin Marinasab6494f2009-07-24 12:35:02 +0100675
Marek Szyprowskic7909502011-12-29 13:09:51 +0100676#ifdef CONFIG_DMA_API_DEBUG
677 u64 limit = (mask + 1) & ~mask;
678 if (limit && size >= limit) {
679 dev_warn(dev, "coherent allocation too big (requested %#x mask %#llx)\n",
680 size, mask);
681 return NULL;
682 }
683#endif
684
685 if (!mask)
686 return NULL;
687
688 if (mask < 0xffffffffULL)
689 gfp |= GFP_DMA;
690
Sumit Bhattacharyaea2e7052011-11-24 00:47:12 +0100691 /*
692 * Following is a work-around (a.k.a. hack) to prevent pages
693 * with __GFP_COMP being passed to split_page() which cannot
694 * handle them. The real problem is that this flag probably
695 * should be 0 on ARM as it is not supported on this
696 * platform; see CONFIG_HUGETLBFS.
697 */
698 gfp &= ~(__GFP_COMP);
699
Marek Szyprowski553ac782012-02-29 14:45:28 +0100700 *handle = DMA_ERROR_CODE;
Russell King04da5692009-11-19 15:54:45 +0000701 size = PAGE_ALIGN(size);
702
Rob Herringdd37e942012-08-21 12:20:17 +0200703 if (is_coherent || nommu())
Marek Szyprowskic7909502011-12-29 13:09:51 +0100704 addr = __alloc_simple_buffer(dev, size, gfp, &page);
Russell King633dc922013-01-30 23:55:35 +0000705 else if (!(gfp & __GFP_WAIT))
Marek Szyprowskie9da6e92012-07-30 09:11:33 +0200706 addr = __alloc_from_pool(size, &page);
Aneesh Kumar K.Vf825c732013-07-02 11:15:15 +0530707 else if (!IS_ENABLED(CONFIG_DMA_CMA))
Marek Szyprowskic7909502011-12-29 13:09:51 +0100708 addr = __alloc_remap_buffer(dev, size, gfp, prot, &page, caller);
Russell King31ebf942009-11-19 21:12:17 +0000709 else
Marek Szyprowski9848e482013-01-16 15:38:44 +0100710 addr = __alloc_from_contiguous(dev, size, prot, &page, caller);
Russell King31ebf942009-11-19 21:12:17 +0000711
712 if (addr)
Russell King9eedd962011-01-03 00:00:17 +0000713 *handle = pfn_to_dma(dev, page_to_pfn(page));
Russell King31ebf942009-11-19 21:12:17 +0000714
715 return addr;
Catalin Marinasab6494f2009-07-24 12:35:02 +0100716}
Russell King695ae0a2009-11-19 16:31:39 +0000717
Linus Torvalds1da177e2005-04-16 15:20:36 -0700718/*
719 * Allocate DMA-coherent memory space and return both the kernel remapped
720 * virtual and bus address for that space.
721 */
Marek Szyprowskif99d6032012-05-16 18:31:23 +0200722void *arm_dma_alloc(struct device *dev, size_t size, dma_addr_t *handle,
723 gfp_t gfp, struct dma_attrs *attrs)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700724{
Russell King0ea1ec72013-10-23 16:14:59 +0100725 pgprot_t prot = __get_dma_pgprot(attrs, PAGE_KERNEL);
Dmitry Baryshkov1fe53262008-07-18 13:30:14 +0400726 void *memory;
727
728 if (dma_alloc_from_coherent(dev, size, handle, &memory))
729 return memory;
730
Rob Herringdd37e942012-08-21 12:20:17 +0200731 return __dma_alloc(dev, size, handle, gfp, prot, false,
732 __builtin_return_address(0));
733}
734
735static void *arm_coherent_dma_alloc(struct device *dev, size_t size,
736 dma_addr_t *handle, gfp_t gfp, struct dma_attrs *attrs)
737{
Russell King0ea1ec72013-10-23 16:14:59 +0100738 pgprot_t prot = __get_dma_pgprot(attrs, PAGE_KERNEL);
Rob Herringdd37e942012-08-21 12:20:17 +0200739 void *memory;
740
741 if (dma_alloc_from_coherent(dev, size, handle, &memory))
742 return memory;
743
744 return __dma_alloc(dev, size, handle, gfp, prot, true,
Russell King45cd5292012-01-12 23:08:07 +0000745 __builtin_return_address(0));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700746}
Linus Torvalds1da177e2005-04-16 15:20:36 -0700747
748/*
Marek Szyprowskif99d6032012-05-16 18:31:23 +0200749 * Create userspace mapping for the DMA-coherent memory.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700750 */
Marek Szyprowskif99d6032012-05-16 18:31:23 +0200751int arm_dma_mmap(struct device *dev, struct vm_area_struct *vma,
752 void *cpu_addr, dma_addr_t dma_addr, size_t size,
753 struct dma_attrs *attrs)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700754{
Catalin Marinasab6494f2009-07-24 12:35:02 +0100755 int ret = -ENXIO;
756#ifdef CONFIG_MMU
Marek Szyprowski50262a42012-07-30 09:35:26 +0200757 unsigned long nr_vma_pages = (vma->vm_end - vma->vm_start) >> PAGE_SHIFT;
758 unsigned long nr_pages = PAGE_ALIGN(size) >> PAGE_SHIFT;
Marek Szyprowskic7909502011-12-29 13:09:51 +0100759 unsigned long pfn = dma_to_pfn(dev, dma_addr);
Marek Szyprowski50262a42012-07-30 09:35:26 +0200760 unsigned long off = vma->vm_pgoff;
761
Marek Szyprowskif99d6032012-05-16 18:31:23 +0200762 vma->vm_page_prot = __get_dma_pgprot(attrs, vma->vm_page_prot);
763
Marek Szyprowski47142f02012-05-15 19:04:13 +0200764 if (dma_mmap_from_coherent(dev, vma, cpu_addr, size, &ret))
765 return ret;
766
Marek Szyprowski50262a42012-07-30 09:35:26 +0200767 if (off < nr_pages && nr_vma_pages <= (nr_pages - off)) {
768 ret = remap_pfn_range(vma, vma->vm_start,
769 pfn + off,
770 vma->vm_end - vma->vm_start,
771 vma->vm_page_prot);
772 }
Catalin Marinasab6494f2009-07-24 12:35:02 +0100773#endif /* CONFIG_MMU */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700774
775 return ret;
776}
777
Linus Torvalds1da177e2005-04-16 15:20:36 -0700778/*
Marek Szyprowskic7909502011-12-29 13:09:51 +0100779 * Free a buffer as defined by the above mapping.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700780 */
Rob Herringdd37e942012-08-21 12:20:17 +0200781static void __arm_dma_free(struct device *dev, size_t size, void *cpu_addr,
782 dma_addr_t handle, struct dma_attrs *attrs,
783 bool is_coherent)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700784{
Marek Szyprowskic7909502011-12-29 13:09:51 +0100785 struct page *page = pfn_to_page(dma_to_pfn(dev, handle));
Russell King5edf71a2005-11-25 15:52:51 +0000786
Dmitry Baryshkov1fe53262008-07-18 13:30:14 +0400787 if (dma_release_from_coherent(dev, get_order(size), cpu_addr))
788 return;
789
Russell King3e82d012009-11-19 15:38:12 +0000790 size = PAGE_ALIGN(size);
791
Rob Herringdd37e942012-08-21 12:20:17 +0200792 if (is_coherent || nommu()) {
Marek Szyprowskic7909502011-12-29 13:09:51 +0100793 __dma_free_buffer(page, size);
Aaro Koskinend9e0d142012-08-07 14:44:05 +0200794 } else if (__free_from_pool(cpu_addr, size)) {
795 return;
Aneesh Kumar K.Vf825c732013-07-02 11:15:15 +0530796 } else if (!IS_ENABLED(CONFIG_DMA_CMA)) {
Russell King695ae0a2009-11-19 16:31:39 +0000797 __dma_free_remap(cpu_addr, size);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100798 __dma_free_buffer(page, size);
799 } else {
Marek Szyprowskic7909502011-12-29 13:09:51 +0100800 /*
801 * Non-atomic allocations cannot be freed with IRQs disabled
802 */
803 WARN_ON(irqs_disabled());
Marek Szyprowski9848e482013-01-16 15:38:44 +0100804 __free_from_contiguous(dev, page, cpu_addr, size);
Marek Szyprowskic7909502011-12-29 13:09:51 +0100805 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700806}
Russell Kingafd1a322008-09-25 16:30:57 +0100807
Rob Herringdd37e942012-08-21 12:20:17 +0200808void arm_dma_free(struct device *dev, size_t size, void *cpu_addr,
809 dma_addr_t handle, struct dma_attrs *attrs)
810{
811 __arm_dma_free(dev, size, cpu_addr, handle, attrs, false);
812}
813
814static void arm_coherent_dma_free(struct device *dev, size_t size, void *cpu_addr,
815 dma_addr_t handle, struct dma_attrs *attrs)
816{
817 __arm_dma_free(dev, size, cpu_addr, handle, attrs, true);
818}
819
Marek Szyprowskidc2832e2012-06-13 10:01:15 +0200820int arm_dma_get_sgtable(struct device *dev, struct sg_table *sgt,
821 void *cpu_addr, dma_addr_t handle, size_t size,
822 struct dma_attrs *attrs)
823{
824 struct page *page = pfn_to_page(dma_to_pfn(dev, handle));
825 int ret;
826
827 ret = sg_alloc_table(sgt, 1, GFP_KERNEL);
828 if (unlikely(ret))
829 return ret;
830
831 sg_set_page(sgt->sgl, page, PAGE_ALIGN(size), 0);
832 return 0;
833}
834
Russell King65af1912009-11-24 17:53:33 +0000835static void dma_cache_maint_page(struct page *page, unsigned long offset,
Russell Kinga9c91472009-11-26 16:19:58 +0000836 size_t size, enum dma_data_direction dir,
837 void (*op)(const void *, size_t, int))
Russell King65af1912009-11-24 17:53:33 +0000838{
Russell King15653372013-01-19 11:05:57 +0000839 unsigned long pfn;
840 size_t left = size;
841
842 pfn = page_to_pfn(page) + offset / PAGE_SIZE;
843 offset %= PAGE_SIZE;
844
Russell King65af1912009-11-24 17:53:33 +0000845 /*
846 * A single sg entry may refer to multiple physically contiguous
847 * pages. But we still need to process highmem pages individually.
848 * If highmem is not configured then the bulk of this loop gets
849 * optimized out.
850 */
Russell King65af1912009-11-24 17:53:33 +0000851 do {
852 size_t len = left;
Russell King93f1d622009-11-24 14:41:01 +0000853 void *vaddr;
854
Russell King15653372013-01-19 11:05:57 +0000855 page = pfn_to_page(pfn);
856
Russell King93f1d622009-11-24 14:41:01 +0000857 if (PageHighMem(page)) {
Russell King15653372013-01-19 11:05:57 +0000858 if (len + offset > PAGE_SIZE)
Russell King93f1d622009-11-24 14:41:01 +0000859 len = PAGE_SIZE - offset;
Joonsoo Kimdd0f67f2013-04-05 03:16:14 +0100860
861 if (cache_is_vipt_nonaliasing()) {
Nicolas Pitre39af22a2010-12-15 15:14:45 -0500862 vaddr = kmap_atomic(page);
Nicolas Pitre7e5a69e2010-03-29 21:46:02 +0100863 op(vaddr + offset, len, dir);
Nicolas Pitre39af22a2010-12-15 15:14:45 -0500864 kunmap_atomic(vaddr);
Joonsoo Kimdd0f67f2013-04-05 03:16:14 +0100865 } else {
866 vaddr = kmap_high_get(page);
867 if (vaddr) {
868 op(vaddr + offset, len, dir);
869 kunmap_high(page);
870 }
Russell King93f1d622009-11-24 14:41:01 +0000871 }
872 } else {
873 vaddr = page_address(page) + offset;
Russell Kinga9c91472009-11-26 16:19:58 +0000874 op(vaddr, len, dir);
Russell King65af1912009-11-24 17:53:33 +0000875 }
Russell King65af1912009-11-24 17:53:33 +0000876 offset = 0;
Russell King15653372013-01-19 11:05:57 +0000877 pfn++;
Russell King65af1912009-11-24 17:53:33 +0000878 left -= len;
879 } while (left);
880}
881
Marek Szyprowski51fde3492012-02-10 19:55:20 +0100882/*
883 * Make an area consistent for devices.
884 * Note: Drivers should NOT use this function directly, as it will break
885 * platforms with CONFIG_DMABOUNCE.
886 * Use the driver DMA support - see dma-mapping.h (dma_sync_*)
887 */
888static void __dma_page_cpu_to_dev(struct page *page, unsigned long off,
Russell King65af1912009-11-24 17:53:33 +0000889 size_t size, enum dma_data_direction dir)
890{
Nicolas Pitre43377452009-03-12 22:52:09 -0400891 unsigned long paddr;
Nicolas Pitre43377452009-03-12 22:52:09 -0400892
Russell Kinga9c91472009-11-26 16:19:58 +0000893 dma_cache_maint_page(page, off, size, dir, dmac_map_area);
Nicolas Pitre43377452009-03-12 22:52:09 -0400894
Russell King65af1912009-11-24 17:53:33 +0000895 paddr = page_to_phys(page) + off;
Russell King2ffe2da2009-10-31 16:52:16 +0000896 if (dir == DMA_FROM_DEVICE) {
897 outer_inv_range(paddr, paddr + size);
898 } else {
899 outer_clean_range(paddr, paddr + size);
900 }
901 /* FIXME: non-speculating: flush on bidirectional mappings? */
Nicolas Pitre43377452009-03-12 22:52:09 -0400902}
Russell King4ea0d732009-11-24 16:27:17 +0000903
Marek Szyprowski51fde3492012-02-10 19:55:20 +0100904static void __dma_page_dev_to_cpu(struct page *page, unsigned long off,
Russell King4ea0d732009-11-24 16:27:17 +0000905 size_t size, enum dma_data_direction dir)
906{
Russell King2ffe2da2009-10-31 16:52:16 +0000907 unsigned long paddr = page_to_phys(page) + off;
908
909 /* FIXME: non-speculating: not required */
910 /* don't bother invalidating if DMA to device */
911 if (dir != DMA_TO_DEVICE)
912 outer_inv_range(paddr, paddr + size);
913
Russell Kinga9c91472009-11-26 16:19:58 +0000914 dma_cache_maint_page(page, off, size, dir, dmac_unmap_area);
Catalin Marinasc0177802010-09-13 15:57:36 +0100915
916 /*
Ming Leib2a234e2013-05-18 11:21:36 +0100917 * Mark the D-cache clean for these pages to avoid extra flushing.
Catalin Marinasc0177802010-09-13 15:57:36 +0100918 */
Ming Leib2a234e2013-05-18 11:21:36 +0100919 if (dir != DMA_TO_DEVICE && size >= PAGE_SIZE) {
920 unsigned long pfn;
921 size_t left = size;
922
923 pfn = page_to_pfn(page) + off / PAGE_SIZE;
924 off %= PAGE_SIZE;
925 if (off) {
926 pfn++;
927 left -= PAGE_SIZE - off;
928 }
929 while (left >= PAGE_SIZE) {
930 page = pfn_to_page(pfn++);
931 set_bit(PG_dcache_clean, &page->flags);
932 left -= PAGE_SIZE;
933 }
934 }
Russell King4ea0d732009-11-24 16:27:17 +0000935}
Nicolas Pitre43377452009-03-12 22:52:09 -0400936
Russell Kingafd1a322008-09-25 16:30:57 +0100937/**
Marek Szyprowski2a550e72012-02-10 19:55:20 +0100938 * arm_dma_map_sg - map a set of SG buffers for streaming mode DMA
Russell Kingafd1a322008-09-25 16:30:57 +0100939 * @dev: valid struct device pointer, or NULL for ISA and EISA-like devices
940 * @sg: list of buffers
941 * @nents: number of buffers to map
942 * @dir: DMA transfer direction
943 *
944 * Map a set of buffers described by scatterlist in streaming mode for DMA.
945 * This is the scatter-gather version of the dma_map_single interface.
946 * Here the scatter gather list elements are each tagged with the
947 * appropriate dma address and length. They are obtained via
948 * sg_dma_{address,length}.
949 *
950 * Device ownership issues as mentioned for dma_map_single are the same
951 * here.
952 */
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100953int arm_dma_map_sg(struct device *dev, struct scatterlist *sg, int nents,
954 enum dma_data_direction dir, struct dma_attrs *attrs)
Russell Kingafd1a322008-09-25 16:30:57 +0100955{
Marek Szyprowski2a550e72012-02-10 19:55:20 +0100956 struct dma_map_ops *ops = get_dma_ops(dev);
Russell Kingafd1a322008-09-25 16:30:57 +0100957 struct scatterlist *s;
Russell King01135d922008-09-25 21:05:02 +0100958 int i, j;
Russell Kingafd1a322008-09-25 16:30:57 +0100959
960 for_each_sg(sg, s, nents, i) {
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +0200961#ifdef CONFIG_NEED_SG_DMA_LENGTH
962 s->dma_length = s->length;
963#endif
Marek Szyprowski2a550e72012-02-10 19:55:20 +0100964 s->dma_address = ops->map_page(dev, sg_page(s), s->offset,
965 s->length, dir, attrs);
Russell King01135d922008-09-25 21:05:02 +0100966 if (dma_mapping_error(dev, s->dma_address))
967 goto bad_mapping;
Russell Kingafd1a322008-09-25 16:30:57 +0100968 }
Russell Kingafd1a322008-09-25 16:30:57 +0100969 return nents;
Russell King01135d922008-09-25 21:05:02 +0100970
971 bad_mapping:
972 for_each_sg(sg, s, i, j)
Marek Szyprowski2a550e72012-02-10 19:55:20 +0100973 ops->unmap_page(dev, sg_dma_address(s), sg_dma_len(s), dir, attrs);
Russell King01135d922008-09-25 21:05:02 +0100974 return 0;
Russell Kingafd1a322008-09-25 16:30:57 +0100975}
Russell Kingafd1a322008-09-25 16:30:57 +0100976
977/**
Marek Szyprowski2a550e72012-02-10 19:55:20 +0100978 * arm_dma_unmap_sg - unmap a set of SG buffers mapped by dma_map_sg
Russell Kingafd1a322008-09-25 16:30:57 +0100979 * @dev: valid struct device pointer, or NULL for ISA and EISA-like devices
980 * @sg: list of buffers
Linus Walleij0adfca62011-01-12 18:50:37 +0100981 * @nents: number of buffers to unmap (same as was passed to dma_map_sg)
Russell Kingafd1a322008-09-25 16:30:57 +0100982 * @dir: DMA transfer direction (same as was passed to dma_map_sg)
983 *
984 * Unmap a set of streaming mode DMA translations. Again, CPU access
985 * rules concerning calls here are the same as for dma_unmap_single().
986 */
Marek Szyprowski2dc6a012012-02-10 19:55:20 +0100987void arm_dma_unmap_sg(struct device *dev, struct scatterlist *sg, int nents,
988 enum dma_data_direction dir, struct dma_attrs *attrs)
Russell Kingafd1a322008-09-25 16:30:57 +0100989{
Marek Szyprowski2a550e72012-02-10 19:55:20 +0100990 struct dma_map_ops *ops = get_dma_ops(dev);
Russell King01135d922008-09-25 21:05:02 +0100991 struct scatterlist *s;
Russell King01135d922008-09-25 21:05:02 +0100992
Russell King01135d922008-09-25 21:05:02 +0100993 int i;
Russell King24056f52011-01-03 11:29:28 +0000994
Russell King01135d922008-09-25 21:05:02 +0100995 for_each_sg(sg, s, nents, i)
Marek Szyprowski2a550e72012-02-10 19:55:20 +0100996 ops->unmap_page(dev, sg_dma_address(s), sg_dma_len(s), dir, attrs);
Russell Kingafd1a322008-09-25 16:30:57 +0100997}
Russell Kingafd1a322008-09-25 16:30:57 +0100998
999/**
Marek Szyprowski2a550e72012-02-10 19:55:20 +01001000 * arm_dma_sync_sg_for_cpu
Russell Kingafd1a322008-09-25 16:30:57 +01001001 * @dev: valid struct device pointer, or NULL for ISA and EISA-like devices
1002 * @sg: list of buffers
1003 * @nents: number of buffers to map (returned from dma_map_sg)
1004 * @dir: DMA transfer direction (same as was passed to dma_map_sg)
1005 */
Marek Szyprowski2dc6a012012-02-10 19:55:20 +01001006void arm_dma_sync_sg_for_cpu(struct device *dev, struct scatterlist *sg,
Russell Kingafd1a322008-09-25 16:30:57 +01001007 int nents, enum dma_data_direction dir)
1008{
Marek Szyprowski2a550e72012-02-10 19:55:20 +01001009 struct dma_map_ops *ops = get_dma_ops(dev);
Russell Kingafd1a322008-09-25 16:30:57 +01001010 struct scatterlist *s;
1011 int i;
1012
Marek Szyprowski2a550e72012-02-10 19:55:20 +01001013 for_each_sg(sg, s, nents, i)
1014 ops->sync_single_for_cpu(dev, sg_dma_address(s), s->length,
1015 dir);
Russell Kingafd1a322008-09-25 16:30:57 +01001016}
Russell Kingafd1a322008-09-25 16:30:57 +01001017
1018/**
Marek Szyprowski2a550e72012-02-10 19:55:20 +01001019 * arm_dma_sync_sg_for_device
Russell Kingafd1a322008-09-25 16:30:57 +01001020 * @dev: valid struct device pointer, or NULL for ISA and EISA-like devices
1021 * @sg: list of buffers
1022 * @nents: number of buffers to map (returned from dma_map_sg)
1023 * @dir: DMA transfer direction (same as was passed to dma_map_sg)
1024 */
Marek Szyprowski2dc6a012012-02-10 19:55:20 +01001025void arm_dma_sync_sg_for_device(struct device *dev, struct scatterlist *sg,
Russell Kingafd1a322008-09-25 16:30:57 +01001026 int nents, enum dma_data_direction dir)
1027{
Marek Szyprowski2a550e72012-02-10 19:55:20 +01001028 struct dma_map_ops *ops = get_dma_ops(dev);
Russell Kingafd1a322008-09-25 16:30:57 +01001029 struct scatterlist *s;
1030 int i;
1031
Marek Szyprowski2a550e72012-02-10 19:55:20 +01001032 for_each_sg(sg, s, nents, i)
1033 ops->sync_single_for_device(dev, sg_dma_address(s), s->length,
1034 dir);
Russell Kingafd1a322008-09-25 16:30:57 +01001035}
Russell King24056f52011-01-03 11:29:28 +00001036
Russell King022ae532011-07-08 21:26:59 +01001037/*
1038 * Return whether the given device DMA address mask can be supported
1039 * properly. For example, if your device can only drive the low 24-bits
1040 * during bus mastering, then you would pass 0x00ffffff as the mask
1041 * to this function.
1042 */
1043int dma_supported(struct device *dev, u64 mask)
1044{
Russell King9f28cde2013-12-06 12:30:42 +00001045 return __dma_supported(dev, mask, false);
Russell King022ae532011-07-08 21:26:59 +01001046}
1047EXPORT_SYMBOL(dma_supported);
1048
Gregory CLEMENT87b54e72012-11-21 09:39:19 +01001049int arm_dma_set_mask(struct device *dev, u64 dma_mask)
Russell King022ae532011-07-08 21:26:59 +01001050{
1051 if (!dev->dma_mask || !dma_supported(dev, dma_mask))
1052 return -EIO;
1053
Russell King022ae532011-07-08 21:26:59 +01001054 *dev->dma_mask = dma_mask;
Russell King022ae532011-07-08 21:26:59 +01001055
1056 return 0;
1057}
Russell King022ae532011-07-08 21:26:59 +01001058
Russell King24056f52011-01-03 11:29:28 +00001059#define PREALLOC_DMA_DEBUG_ENTRIES 4096
1060
1061static int __init dma_debug_do_init(void)
1062{
1063 dma_debug_init(PREALLOC_DMA_DEBUG_ENTRIES);
1064 return 0;
1065}
1066fs_initcall(dma_debug_do_init);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001067
1068#ifdef CONFIG_ARM_DMA_USE_IOMMU
1069
1070/* IOMMU */
1071
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001072static int extend_iommu_mapping(struct dma_iommu_mapping *mapping);
1073
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001074static inline dma_addr_t __alloc_iova(struct dma_iommu_mapping *mapping,
1075 size_t size)
1076{
1077 unsigned int order = get_order(size);
1078 unsigned int align = 0;
1079 unsigned int count, start;
1080 unsigned long flags;
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001081 dma_addr_t iova;
1082 int i;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001083
Seung-Woo Kim60460ab2013-02-06 13:21:14 +09001084 if (order > CONFIG_ARM_DMA_IOMMU_ALIGNMENT)
1085 order = CONFIG_ARM_DMA_IOMMU_ALIGNMENT;
1086
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001087 count = PAGE_ALIGN(size) >> PAGE_SHIFT;
1088 align = (1 << order) - 1;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001089
1090 spin_lock_irqsave(&mapping->lock, flags);
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001091 for (i = 0; i < mapping->nr_bitmaps; i++) {
1092 start = bitmap_find_next_zero_area(mapping->bitmaps[i],
1093 mapping->bits, 0, count, align);
1094
1095 if (start > mapping->bits)
1096 continue;
1097
1098 bitmap_set(mapping->bitmaps[i], start, count);
1099 break;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001100 }
1101
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001102 /*
1103 * No unused range found. Try to extend the existing mapping
1104 * and perform a second attempt to reserve an IO virtual
1105 * address range of size bytes.
1106 */
1107 if (i == mapping->nr_bitmaps) {
1108 if (extend_iommu_mapping(mapping)) {
1109 spin_unlock_irqrestore(&mapping->lock, flags);
1110 return DMA_ERROR_CODE;
1111 }
1112
1113 start = bitmap_find_next_zero_area(mapping->bitmaps[i],
1114 mapping->bits, 0, count, align);
1115
1116 if (start > mapping->bits) {
1117 spin_unlock_irqrestore(&mapping->lock, flags);
1118 return DMA_ERROR_CODE;
1119 }
1120
1121 bitmap_set(mapping->bitmaps[i], start, count);
1122 }
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001123 spin_unlock_irqrestore(&mapping->lock, flags);
1124
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001125 iova = mapping->base + (mapping->size * i);
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001126 iova += start << PAGE_SHIFT;
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001127
1128 return iova;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001129}
1130
1131static inline void __free_iova(struct dma_iommu_mapping *mapping,
1132 dma_addr_t addr, size_t size)
1133{
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001134 unsigned int start, count;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001135 unsigned long flags;
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001136 dma_addr_t bitmap_base;
1137 u32 bitmap_index;
1138
1139 if (!size)
1140 return;
1141
1142 bitmap_index = (u32) (addr - mapping->base) / (u32) mapping->size;
1143 BUG_ON(addr < mapping->base || bitmap_index > mapping->extensions);
1144
1145 bitmap_base = mapping->base + mapping->size * bitmap_index;
1146
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001147 start = (addr - bitmap_base) >> PAGE_SHIFT;
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001148
1149 if (addr + size > bitmap_base + mapping->size) {
1150 /*
1151 * The address range to be freed reaches into the iova
1152 * range of the next bitmap. This should not happen as
1153 * we don't allow this in __alloc_iova (at the
1154 * moment).
1155 */
1156 BUG();
1157 } else
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001158 count = size >> PAGE_SHIFT;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001159
1160 spin_lock_irqsave(&mapping->lock, flags);
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001161 bitmap_clear(mapping->bitmaps[bitmap_index], start, count);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001162 spin_unlock_irqrestore(&mapping->lock, flags);
1163}
1164
Marek Szyprowski549a17e2012-10-15 16:03:52 +02001165static struct page **__iommu_alloc_buffer(struct device *dev, size_t size,
1166 gfp_t gfp, struct dma_attrs *attrs)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001167{
1168 struct page **pages;
1169 int count = size >> PAGE_SHIFT;
1170 int array_size = count * sizeof(struct page *);
1171 int i = 0;
1172
1173 if (array_size <= PAGE_SIZE)
1174 pages = kzalloc(array_size, gfp);
1175 else
1176 pages = vzalloc(array_size);
1177 if (!pages)
1178 return NULL;
1179
Marek Szyprowski549a17e2012-10-15 16:03:52 +02001180 if (dma_get_attr(DMA_ATTR_FORCE_CONTIGUOUS, attrs))
1181 {
1182 unsigned long order = get_order(size);
1183 struct page *page;
1184
1185 page = dma_alloc_from_contiguous(dev, count, order);
1186 if (!page)
1187 goto error;
1188
1189 __dma_clear_buffer(page, size);
1190
1191 for (i = 0; i < count; i++)
1192 pages[i] = page + i;
1193
1194 return pages;
1195 }
1196
Marek Szyprowskif8669be2013-01-16 15:41:02 +01001197 /*
1198 * IOMMU can map any pages, so himem can also be used here
1199 */
1200 gfp |= __GFP_NOWARN | __GFP_HIGHMEM;
1201
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001202 while (count) {
Marek Szyprowski593f4732012-06-21 11:48:11 +02001203 int j, order = __fls(count);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001204
Marek Szyprowskif8669be2013-01-16 15:41:02 +01001205 pages[i] = alloc_pages(gfp, order);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001206 while (!pages[i] && order)
Marek Szyprowskif8669be2013-01-16 15:41:02 +01001207 pages[i] = alloc_pages(gfp, --order);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001208 if (!pages[i])
1209 goto error;
1210
Hiroshi Doyu5a796ee2012-09-11 07:39:39 +02001211 if (order) {
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001212 split_page(pages[i], order);
Hiroshi Doyu5a796ee2012-09-11 07:39:39 +02001213 j = 1 << order;
1214 while (--j)
1215 pages[i + j] = pages[i] + j;
1216 }
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001217
1218 __dma_clear_buffer(pages[i], PAGE_SIZE << order);
1219 i += 1 << order;
1220 count -= 1 << order;
1221 }
1222
1223 return pages;
1224error:
Marek Szyprowski9fa8af92012-07-27 17:12:50 +02001225 while (i--)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001226 if (pages[i])
1227 __free_pages(pages[i], 0);
Prathyush K46c87852012-07-16 08:59:55 +02001228 if (array_size <= PAGE_SIZE)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001229 kfree(pages);
1230 else
1231 vfree(pages);
1232 return NULL;
1233}
1234
Marek Szyprowski549a17e2012-10-15 16:03:52 +02001235static int __iommu_free_buffer(struct device *dev, struct page **pages,
1236 size_t size, struct dma_attrs *attrs)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001237{
1238 int count = size >> PAGE_SHIFT;
1239 int array_size = count * sizeof(struct page *);
1240 int i;
Marek Szyprowski549a17e2012-10-15 16:03:52 +02001241
1242 if (dma_get_attr(DMA_ATTR_FORCE_CONTIGUOUS, attrs)) {
1243 dma_release_from_contiguous(dev, pages[0], count);
1244 } else {
1245 for (i = 0; i < count; i++)
1246 if (pages[i])
1247 __free_pages(pages[i], 0);
1248 }
1249
Prathyush K46c87852012-07-16 08:59:55 +02001250 if (array_size <= PAGE_SIZE)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001251 kfree(pages);
1252 else
1253 vfree(pages);
1254 return 0;
1255}
1256
1257/*
1258 * Create a CPU mapping for a specified pages
1259 */
1260static void *
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001261__iommu_alloc_remap(struct page **pages, size_t size, gfp_t gfp, pgprot_t prot,
1262 const void *caller)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001263{
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001264 unsigned int i, nr_pages = PAGE_ALIGN(size) >> PAGE_SHIFT;
1265 struct vm_struct *area;
1266 unsigned long p;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001267
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001268 area = get_vm_area_caller(size, VM_ARM_DMA_CONSISTENT | VM_USERMAP,
1269 caller);
1270 if (!area)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001271 return NULL;
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001272
1273 area->pages = pages;
1274 area->nr_pages = nr_pages;
1275 p = (unsigned long)area->addr;
1276
1277 for (i = 0; i < nr_pages; i++) {
1278 phys_addr_t phys = __pfn_to_phys(page_to_pfn(pages[i]));
1279 if (ioremap_page_range(p, p + PAGE_SIZE, phys, prot))
1280 goto err;
1281 p += PAGE_SIZE;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001282 }
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001283 return area->addr;
1284err:
1285 unmap_kernel_range((unsigned long)area->addr, size);
1286 vunmap(area->addr);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001287 return NULL;
1288}
1289
1290/*
1291 * Create a mapping in device IO address space for specified pages
1292 */
1293static dma_addr_t
1294__iommu_create_mapping(struct device *dev, struct page **pages, size_t size)
1295{
1296 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1297 unsigned int count = PAGE_ALIGN(size) >> PAGE_SHIFT;
1298 dma_addr_t dma_addr, iova;
1299 int i, ret = DMA_ERROR_CODE;
1300
1301 dma_addr = __alloc_iova(mapping, size);
1302 if (dma_addr == DMA_ERROR_CODE)
1303 return dma_addr;
1304
1305 iova = dma_addr;
1306 for (i = 0; i < count; ) {
1307 unsigned int next_pfn = page_to_pfn(pages[i]) + 1;
1308 phys_addr_t phys = page_to_phys(pages[i]);
1309 unsigned int len, j;
1310
1311 for (j = i + 1; j < count; j++, next_pfn++)
1312 if (page_to_pfn(pages[j]) != next_pfn)
1313 break;
1314
1315 len = (j - i) << PAGE_SHIFT;
Andreas Herrmannc9b24992013-09-27 00:36:15 +02001316 ret = iommu_map(mapping->domain, iova, phys, len,
1317 IOMMU_READ|IOMMU_WRITE);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001318 if (ret < 0)
1319 goto fail;
1320 iova += len;
1321 i = j;
1322 }
1323 return dma_addr;
1324fail:
1325 iommu_unmap(mapping->domain, dma_addr, iova-dma_addr);
1326 __free_iova(mapping, dma_addr, size);
1327 return DMA_ERROR_CODE;
1328}
1329
1330static int __iommu_remove_mapping(struct device *dev, dma_addr_t iova, size_t size)
1331{
1332 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1333
1334 /*
1335 * add optional in-page offset from iova to size and align
1336 * result to page size
1337 */
1338 size = PAGE_ALIGN((iova & ~PAGE_MASK) + size);
1339 iova &= PAGE_MASK;
1340
1341 iommu_unmap(mapping->domain, iova, size);
1342 __free_iova(mapping, iova, size);
1343 return 0;
1344}
1345
Hiroshi Doyu665bad72012-08-28 08:13:03 +03001346static struct page **__atomic_get_pages(void *addr)
1347{
1348 struct dma_pool *pool = &atomic_pool;
1349 struct page **pages = pool->pages;
1350 int offs = (addr - pool->vaddr) >> PAGE_SHIFT;
1351
1352 return pages + offs;
1353}
1354
Marek Szyprowski955c7572012-05-16 19:38:58 +01001355static struct page **__iommu_get_pages(void *cpu_addr, struct dma_attrs *attrs)
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001356{
1357 struct vm_struct *area;
1358
Hiroshi Doyu665bad72012-08-28 08:13:03 +03001359 if (__in_atomic_pool(cpu_addr, PAGE_SIZE))
1360 return __atomic_get_pages(cpu_addr);
1361
Marek Szyprowski955c7572012-05-16 19:38:58 +01001362 if (dma_get_attr(DMA_ATTR_NO_KERNEL_MAPPING, attrs))
1363 return cpu_addr;
1364
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001365 area = find_vm_area(cpu_addr);
1366 if (area && (area->flags & VM_ARM_DMA_CONSISTENT))
1367 return area->pages;
1368 return NULL;
1369}
1370
Hiroshi Doyu479ed932012-08-28 08:13:04 +03001371static void *__iommu_alloc_atomic(struct device *dev, size_t size,
1372 dma_addr_t *handle)
1373{
1374 struct page *page;
1375 void *addr;
1376
1377 addr = __alloc_from_pool(size, &page);
1378 if (!addr)
1379 return NULL;
1380
1381 *handle = __iommu_create_mapping(dev, &page, size);
1382 if (*handle == DMA_ERROR_CODE)
1383 goto err_mapping;
1384
1385 return addr;
1386
1387err_mapping:
1388 __free_from_pool(addr, size);
1389 return NULL;
1390}
1391
Marek Szyprowskid5898292013-02-08 10:54:48 +01001392static void __iommu_free_atomic(struct device *dev, void *cpu_addr,
Hiroshi Doyu479ed932012-08-28 08:13:04 +03001393 dma_addr_t handle, size_t size)
1394{
1395 __iommu_remove_mapping(dev, handle, size);
Marek Szyprowskid5898292013-02-08 10:54:48 +01001396 __free_from_pool(cpu_addr, size);
Hiroshi Doyu479ed932012-08-28 08:13:04 +03001397}
1398
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001399static void *arm_iommu_alloc_attrs(struct device *dev, size_t size,
1400 dma_addr_t *handle, gfp_t gfp, struct dma_attrs *attrs)
1401{
Russell King71b55662013-11-25 12:01:03 +00001402 pgprot_t prot = __get_dma_pgprot(attrs, PAGE_KERNEL);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001403 struct page **pages;
1404 void *addr = NULL;
1405
1406 *handle = DMA_ERROR_CODE;
1407 size = PAGE_ALIGN(size);
1408
Marek Szyprowski10c85622014-01-16 15:39:17 +01001409 if (!(gfp & __GFP_WAIT))
Hiroshi Doyu479ed932012-08-28 08:13:04 +03001410 return __iommu_alloc_atomic(dev, size, handle);
1411
Richard Zhao5b91a982013-06-20 20:31:00 +08001412 /*
1413 * Following is a work-around (a.k.a. hack) to prevent pages
1414 * with __GFP_COMP being passed to split_page() which cannot
1415 * handle them. The real problem is that this flag probably
1416 * should be 0 on ARM as it is not supported on this
1417 * platform; see CONFIG_HUGETLBFS.
1418 */
1419 gfp &= ~(__GFP_COMP);
1420
Marek Szyprowski549a17e2012-10-15 16:03:52 +02001421 pages = __iommu_alloc_buffer(dev, size, gfp, attrs);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001422 if (!pages)
1423 return NULL;
1424
1425 *handle = __iommu_create_mapping(dev, pages, size);
1426 if (*handle == DMA_ERROR_CODE)
1427 goto err_buffer;
1428
Marek Szyprowski955c7572012-05-16 19:38:58 +01001429 if (dma_get_attr(DMA_ATTR_NO_KERNEL_MAPPING, attrs))
1430 return pages;
1431
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001432 addr = __iommu_alloc_remap(pages, size, gfp, prot,
1433 __builtin_return_address(0));
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001434 if (!addr)
1435 goto err_mapping;
1436
1437 return addr;
1438
1439err_mapping:
1440 __iommu_remove_mapping(dev, *handle, size);
1441err_buffer:
Marek Szyprowski549a17e2012-10-15 16:03:52 +02001442 __iommu_free_buffer(dev, pages, size, attrs);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001443 return NULL;
1444}
1445
1446static int arm_iommu_mmap_attrs(struct device *dev, struct vm_area_struct *vma,
1447 void *cpu_addr, dma_addr_t dma_addr, size_t size,
1448 struct dma_attrs *attrs)
1449{
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001450 unsigned long uaddr = vma->vm_start;
1451 unsigned long usize = vma->vm_end - vma->vm_start;
Marek Szyprowski955c7572012-05-16 19:38:58 +01001452 struct page **pages = __iommu_get_pages(cpu_addr, attrs);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001453
1454 vma->vm_page_prot = __get_dma_pgprot(attrs, vma->vm_page_prot);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001455
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001456 if (!pages)
1457 return -ENXIO;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001458
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001459 do {
1460 int ret = vm_insert_page(vma, uaddr, *pages++);
1461 if (ret) {
1462 pr_err("Remapping memory failed: %d\n", ret);
1463 return ret;
1464 }
1465 uaddr += PAGE_SIZE;
1466 usize -= PAGE_SIZE;
1467 } while (usize > 0);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001468
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001469 return 0;
1470}
1471
1472/*
1473 * free a page as defined by the above mapping.
1474 * Must not be called with IRQs disabled.
1475 */
1476void arm_iommu_free_attrs(struct device *dev, size_t size, void *cpu_addr,
1477 dma_addr_t handle, struct dma_attrs *attrs)
1478{
YoungJun Cho836bfa02013-06-17 13:18:52 +09001479 struct page **pages;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001480 size = PAGE_ALIGN(size);
1481
Hiroshi Doyu479ed932012-08-28 08:13:04 +03001482 if (__in_atomic_pool(cpu_addr, size)) {
Marek Szyprowskid5898292013-02-08 10:54:48 +01001483 __iommu_free_atomic(dev, cpu_addr, handle, size);
Hiroshi Doyu479ed932012-08-28 08:13:04 +03001484 return;
1485 }
1486
YoungJun Cho836bfa02013-06-17 13:18:52 +09001487 pages = __iommu_get_pages(cpu_addr, attrs);
1488 if (!pages) {
1489 WARN(1, "trying to free invalid coherent area: %p\n", cpu_addr);
1490 return;
1491 }
1492
Marek Szyprowski955c7572012-05-16 19:38:58 +01001493 if (!dma_get_attr(DMA_ATTR_NO_KERNEL_MAPPING, attrs)) {
1494 unmap_kernel_range((unsigned long)cpu_addr, size);
1495 vunmap(cpu_addr);
1496 }
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02001497
1498 __iommu_remove_mapping(dev, handle, size);
Marek Szyprowski549a17e2012-10-15 16:03:52 +02001499 __iommu_free_buffer(dev, pages, size, attrs);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001500}
1501
Marek Szyprowskidc2832e2012-06-13 10:01:15 +02001502static int arm_iommu_get_sgtable(struct device *dev, struct sg_table *sgt,
1503 void *cpu_addr, dma_addr_t dma_addr,
1504 size_t size, struct dma_attrs *attrs)
1505{
1506 unsigned int count = PAGE_ALIGN(size) >> PAGE_SHIFT;
1507 struct page **pages = __iommu_get_pages(cpu_addr, attrs);
1508
1509 if (!pages)
1510 return -ENXIO;
1511
1512 return sg_alloc_table_from_pages(sgt, pages, count, 0, size,
1513 GFP_KERNEL);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001514}
1515
Andreas Herrmannc9b24992013-09-27 00:36:15 +02001516static int __dma_direction_to_prot(enum dma_data_direction dir)
1517{
1518 int prot;
1519
1520 switch (dir) {
1521 case DMA_BIDIRECTIONAL:
1522 prot = IOMMU_READ | IOMMU_WRITE;
1523 break;
1524 case DMA_TO_DEVICE:
1525 prot = IOMMU_READ;
1526 break;
1527 case DMA_FROM_DEVICE:
1528 prot = IOMMU_WRITE;
1529 break;
1530 default:
1531 prot = 0;
1532 }
1533
1534 return prot;
1535}
1536
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001537/*
1538 * Map a part of the scatter-gather list into contiguous io address space
1539 */
1540static int __map_sg_chunk(struct device *dev, struct scatterlist *sg,
1541 size_t size, dma_addr_t *handle,
Rob Herring0fa478d2012-08-21 12:23:23 +02001542 enum dma_data_direction dir, struct dma_attrs *attrs,
1543 bool is_coherent)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001544{
1545 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1546 dma_addr_t iova, iova_base;
1547 int ret = 0;
1548 unsigned int count;
1549 struct scatterlist *s;
Andreas Herrmannc9b24992013-09-27 00:36:15 +02001550 int prot;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001551
1552 size = PAGE_ALIGN(size);
1553 *handle = DMA_ERROR_CODE;
1554
1555 iova_base = iova = __alloc_iova(mapping, size);
1556 if (iova == DMA_ERROR_CODE)
1557 return -ENOMEM;
1558
1559 for (count = 0, s = sg; count < (size >> PAGE_SHIFT); s = sg_next(s)) {
1560 phys_addr_t phys = page_to_phys(sg_page(s));
1561 unsigned int len = PAGE_ALIGN(s->offset + s->length);
1562
Rob Herring0fa478d2012-08-21 12:23:23 +02001563 if (!is_coherent &&
1564 !dma_get_attr(DMA_ATTR_SKIP_CPU_SYNC, attrs))
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001565 __dma_page_cpu_to_dev(sg_page(s), s->offset, s->length, dir);
1566
Andreas Herrmannc9b24992013-09-27 00:36:15 +02001567 prot = __dma_direction_to_prot(dir);
1568
1569 ret = iommu_map(mapping->domain, iova, phys, len, prot);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001570 if (ret < 0)
1571 goto fail;
1572 count += len >> PAGE_SHIFT;
1573 iova += len;
1574 }
1575 *handle = iova_base;
1576
1577 return 0;
1578fail:
1579 iommu_unmap(mapping->domain, iova_base, count * PAGE_SIZE);
1580 __free_iova(mapping, iova_base, size);
1581 return ret;
1582}
1583
Rob Herring0fa478d2012-08-21 12:23:23 +02001584static int __iommu_map_sg(struct device *dev, struct scatterlist *sg, int nents,
1585 enum dma_data_direction dir, struct dma_attrs *attrs,
1586 bool is_coherent)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001587{
1588 struct scatterlist *s = sg, *dma = sg, *start = sg;
1589 int i, count = 0;
1590 unsigned int offset = s->offset;
1591 unsigned int size = s->offset + s->length;
1592 unsigned int max = dma_get_max_seg_size(dev);
1593
1594 for (i = 1; i < nents; i++) {
1595 s = sg_next(s);
1596
1597 s->dma_address = DMA_ERROR_CODE;
1598 s->dma_length = 0;
1599
1600 if (s->offset || (size & ~PAGE_MASK) || size + s->length > max) {
1601 if (__map_sg_chunk(dev, start, size, &dma->dma_address,
Rob Herring0fa478d2012-08-21 12:23:23 +02001602 dir, attrs, is_coherent) < 0)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001603 goto bad_mapping;
1604
1605 dma->dma_address += offset;
1606 dma->dma_length = size - offset;
1607
1608 size = offset = s->offset;
1609 start = s;
1610 dma = sg_next(dma);
1611 count += 1;
1612 }
1613 size += s->length;
1614 }
Rob Herring0fa478d2012-08-21 12:23:23 +02001615 if (__map_sg_chunk(dev, start, size, &dma->dma_address, dir, attrs,
1616 is_coherent) < 0)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001617 goto bad_mapping;
1618
1619 dma->dma_address += offset;
1620 dma->dma_length = size - offset;
1621
1622 return count+1;
1623
1624bad_mapping:
1625 for_each_sg(sg, s, count, i)
1626 __iommu_remove_mapping(dev, sg_dma_address(s), sg_dma_len(s));
1627 return 0;
1628}
1629
1630/**
Rob Herring0fa478d2012-08-21 12:23:23 +02001631 * arm_coherent_iommu_map_sg - map a set of SG buffers for streaming mode DMA
1632 * @dev: valid struct device pointer
1633 * @sg: list of buffers
1634 * @nents: number of buffers to map
1635 * @dir: DMA transfer direction
1636 *
1637 * Map a set of i/o coherent buffers described by scatterlist in streaming
1638 * mode for DMA. The scatter gather list elements are merged together (if
1639 * possible) and tagged with the appropriate dma address and length. They are
1640 * obtained via sg_dma_{address,length}.
1641 */
1642int arm_coherent_iommu_map_sg(struct device *dev, struct scatterlist *sg,
1643 int nents, enum dma_data_direction dir, struct dma_attrs *attrs)
1644{
1645 return __iommu_map_sg(dev, sg, nents, dir, attrs, true);
1646}
1647
1648/**
1649 * arm_iommu_map_sg - map a set of SG buffers for streaming mode DMA
1650 * @dev: valid struct device pointer
1651 * @sg: list of buffers
1652 * @nents: number of buffers to map
1653 * @dir: DMA transfer direction
1654 *
1655 * Map a set of buffers described by scatterlist in streaming mode for DMA.
1656 * The scatter gather list elements are merged together (if possible) and
1657 * tagged with the appropriate dma address and length. They are obtained via
1658 * sg_dma_{address,length}.
1659 */
1660int arm_iommu_map_sg(struct device *dev, struct scatterlist *sg,
1661 int nents, enum dma_data_direction dir, struct dma_attrs *attrs)
1662{
1663 return __iommu_map_sg(dev, sg, nents, dir, attrs, false);
1664}
1665
1666static void __iommu_unmap_sg(struct device *dev, struct scatterlist *sg,
1667 int nents, enum dma_data_direction dir, struct dma_attrs *attrs,
1668 bool is_coherent)
1669{
1670 struct scatterlist *s;
1671 int i;
1672
1673 for_each_sg(sg, s, nents, i) {
1674 if (sg_dma_len(s))
1675 __iommu_remove_mapping(dev, sg_dma_address(s),
1676 sg_dma_len(s));
1677 if (!is_coherent &&
1678 !dma_get_attr(DMA_ATTR_SKIP_CPU_SYNC, attrs))
1679 __dma_page_dev_to_cpu(sg_page(s), s->offset,
1680 s->length, dir);
1681 }
1682}
1683
1684/**
1685 * arm_coherent_iommu_unmap_sg - unmap a set of SG buffers mapped by dma_map_sg
1686 * @dev: valid struct device pointer
1687 * @sg: list of buffers
1688 * @nents: number of buffers to unmap (same as was passed to dma_map_sg)
1689 * @dir: DMA transfer direction (same as was passed to dma_map_sg)
1690 *
1691 * Unmap a set of streaming mode DMA translations. Again, CPU access
1692 * rules concerning calls here are the same as for dma_unmap_single().
1693 */
1694void arm_coherent_iommu_unmap_sg(struct device *dev, struct scatterlist *sg,
1695 int nents, enum dma_data_direction dir, struct dma_attrs *attrs)
1696{
1697 __iommu_unmap_sg(dev, sg, nents, dir, attrs, true);
1698}
1699
1700/**
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001701 * arm_iommu_unmap_sg - unmap a set of SG buffers mapped by dma_map_sg
1702 * @dev: valid struct device pointer
1703 * @sg: list of buffers
1704 * @nents: number of buffers to unmap (same as was passed to dma_map_sg)
1705 * @dir: DMA transfer direction (same as was passed to dma_map_sg)
1706 *
1707 * Unmap a set of streaming mode DMA translations. Again, CPU access
1708 * rules concerning calls here are the same as for dma_unmap_single().
1709 */
1710void arm_iommu_unmap_sg(struct device *dev, struct scatterlist *sg, int nents,
1711 enum dma_data_direction dir, struct dma_attrs *attrs)
1712{
Rob Herring0fa478d2012-08-21 12:23:23 +02001713 __iommu_unmap_sg(dev, sg, nents, dir, attrs, false);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001714}
1715
1716/**
1717 * arm_iommu_sync_sg_for_cpu
1718 * @dev: valid struct device pointer
1719 * @sg: list of buffers
1720 * @nents: number of buffers to map (returned from dma_map_sg)
1721 * @dir: DMA transfer direction (same as was passed to dma_map_sg)
1722 */
1723void arm_iommu_sync_sg_for_cpu(struct device *dev, struct scatterlist *sg,
1724 int nents, enum dma_data_direction dir)
1725{
1726 struct scatterlist *s;
1727 int i;
1728
1729 for_each_sg(sg, s, nents, i)
Rob Herring0fa478d2012-08-21 12:23:23 +02001730 __dma_page_dev_to_cpu(sg_page(s), s->offset, s->length, dir);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001731
1732}
1733
1734/**
1735 * arm_iommu_sync_sg_for_device
1736 * @dev: valid struct device pointer
1737 * @sg: list of buffers
1738 * @nents: number of buffers to map (returned from dma_map_sg)
1739 * @dir: DMA transfer direction (same as was passed to dma_map_sg)
1740 */
1741void arm_iommu_sync_sg_for_device(struct device *dev, struct scatterlist *sg,
1742 int nents, enum dma_data_direction dir)
1743{
1744 struct scatterlist *s;
1745 int i;
1746
1747 for_each_sg(sg, s, nents, i)
Rob Herring0fa478d2012-08-21 12:23:23 +02001748 __dma_page_cpu_to_dev(sg_page(s), s->offset, s->length, dir);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001749}
1750
1751
1752/**
Rob Herring0fa478d2012-08-21 12:23:23 +02001753 * arm_coherent_iommu_map_page
1754 * @dev: valid struct device pointer
1755 * @page: page that buffer resides in
1756 * @offset: offset into page for start of buffer
1757 * @size: size of buffer to map
1758 * @dir: DMA transfer direction
1759 *
1760 * Coherent IOMMU aware version of arm_dma_map_page()
1761 */
1762static dma_addr_t arm_coherent_iommu_map_page(struct device *dev, struct page *page,
1763 unsigned long offset, size_t size, enum dma_data_direction dir,
1764 struct dma_attrs *attrs)
1765{
1766 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1767 dma_addr_t dma_addr;
Will Deacon13987d62013-06-10 19:34:39 +01001768 int ret, prot, len = PAGE_ALIGN(size + offset);
Rob Herring0fa478d2012-08-21 12:23:23 +02001769
1770 dma_addr = __alloc_iova(mapping, len);
1771 if (dma_addr == DMA_ERROR_CODE)
1772 return dma_addr;
1773
Andreas Herrmannc9b24992013-09-27 00:36:15 +02001774 prot = __dma_direction_to_prot(dir);
Will Deacon13987d62013-06-10 19:34:39 +01001775
1776 ret = iommu_map(mapping->domain, dma_addr, page_to_phys(page), len, prot);
Rob Herring0fa478d2012-08-21 12:23:23 +02001777 if (ret < 0)
1778 goto fail;
1779
1780 return dma_addr + offset;
1781fail:
1782 __free_iova(mapping, dma_addr, len);
1783 return DMA_ERROR_CODE;
1784}
1785
1786/**
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001787 * arm_iommu_map_page
1788 * @dev: valid struct device pointer
1789 * @page: page that buffer resides in
1790 * @offset: offset into page for start of buffer
1791 * @size: size of buffer to map
1792 * @dir: DMA transfer direction
1793 *
1794 * IOMMU aware version of arm_dma_map_page()
1795 */
1796static dma_addr_t arm_iommu_map_page(struct device *dev, struct page *page,
1797 unsigned long offset, size_t size, enum dma_data_direction dir,
1798 struct dma_attrs *attrs)
1799{
Rob Herring0fa478d2012-08-21 12:23:23 +02001800 if (!dma_get_attr(DMA_ATTR_SKIP_CPU_SYNC, attrs))
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001801 __dma_page_cpu_to_dev(page, offset, size, dir);
1802
Rob Herring0fa478d2012-08-21 12:23:23 +02001803 return arm_coherent_iommu_map_page(dev, page, offset, size, dir, attrs);
1804}
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001805
Rob Herring0fa478d2012-08-21 12:23:23 +02001806/**
1807 * arm_coherent_iommu_unmap_page
1808 * @dev: valid struct device pointer
1809 * @handle: DMA address of buffer
1810 * @size: size of buffer (same as passed to dma_map_page)
1811 * @dir: DMA transfer direction (same as passed to dma_map_page)
1812 *
1813 * Coherent IOMMU aware version of arm_dma_unmap_page()
1814 */
1815static void arm_coherent_iommu_unmap_page(struct device *dev, dma_addr_t handle,
1816 size_t size, enum dma_data_direction dir,
1817 struct dma_attrs *attrs)
1818{
1819 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1820 dma_addr_t iova = handle & PAGE_MASK;
Rob Herring0fa478d2012-08-21 12:23:23 +02001821 int offset = handle & ~PAGE_MASK;
1822 int len = PAGE_ALIGN(size + offset);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001823
Rob Herring0fa478d2012-08-21 12:23:23 +02001824 if (!iova)
1825 return;
1826
1827 iommu_unmap(mapping->domain, iova, len);
1828 __free_iova(mapping, iova, len);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001829}
1830
1831/**
1832 * arm_iommu_unmap_page
1833 * @dev: valid struct device pointer
1834 * @handle: DMA address of buffer
1835 * @size: size of buffer (same as passed to dma_map_page)
1836 * @dir: DMA transfer direction (same as passed to dma_map_page)
1837 *
1838 * IOMMU aware version of arm_dma_unmap_page()
1839 */
1840static void arm_iommu_unmap_page(struct device *dev, dma_addr_t handle,
1841 size_t size, enum dma_data_direction dir,
1842 struct dma_attrs *attrs)
1843{
1844 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1845 dma_addr_t iova = handle & PAGE_MASK;
1846 struct page *page = phys_to_page(iommu_iova_to_phys(mapping->domain, iova));
1847 int offset = handle & ~PAGE_MASK;
1848 int len = PAGE_ALIGN(size + offset);
1849
1850 if (!iova)
1851 return;
1852
Rob Herring0fa478d2012-08-21 12:23:23 +02001853 if (!dma_get_attr(DMA_ATTR_SKIP_CPU_SYNC, attrs))
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001854 __dma_page_dev_to_cpu(page, offset, size, dir);
1855
1856 iommu_unmap(mapping->domain, iova, len);
1857 __free_iova(mapping, iova, len);
1858}
1859
1860static void arm_iommu_sync_single_for_cpu(struct device *dev,
1861 dma_addr_t handle, size_t size, enum dma_data_direction dir)
1862{
1863 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1864 dma_addr_t iova = handle & PAGE_MASK;
1865 struct page *page = phys_to_page(iommu_iova_to_phys(mapping->domain, iova));
1866 unsigned int offset = handle & ~PAGE_MASK;
1867
1868 if (!iova)
1869 return;
1870
Rob Herring0fa478d2012-08-21 12:23:23 +02001871 __dma_page_dev_to_cpu(page, offset, size, dir);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001872}
1873
1874static void arm_iommu_sync_single_for_device(struct device *dev,
1875 dma_addr_t handle, size_t size, enum dma_data_direction dir)
1876{
1877 struct dma_iommu_mapping *mapping = dev->archdata.mapping;
1878 dma_addr_t iova = handle & PAGE_MASK;
1879 struct page *page = phys_to_page(iommu_iova_to_phys(mapping->domain, iova));
1880 unsigned int offset = handle & ~PAGE_MASK;
1881
1882 if (!iova)
1883 return;
1884
1885 __dma_page_cpu_to_dev(page, offset, size, dir);
1886}
1887
1888struct dma_map_ops iommu_ops = {
1889 .alloc = arm_iommu_alloc_attrs,
1890 .free = arm_iommu_free_attrs,
1891 .mmap = arm_iommu_mmap_attrs,
Marek Szyprowskidc2832e2012-06-13 10:01:15 +02001892 .get_sgtable = arm_iommu_get_sgtable,
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001893
1894 .map_page = arm_iommu_map_page,
1895 .unmap_page = arm_iommu_unmap_page,
1896 .sync_single_for_cpu = arm_iommu_sync_single_for_cpu,
1897 .sync_single_for_device = arm_iommu_sync_single_for_device,
1898
1899 .map_sg = arm_iommu_map_sg,
1900 .unmap_sg = arm_iommu_unmap_sg,
1901 .sync_sg_for_cpu = arm_iommu_sync_sg_for_cpu,
1902 .sync_sg_for_device = arm_iommu_sync_sg_for_device,
Hiroshi Doyud09e1332013-01-29 14:57:07 +02001903
1904 .set_dma_mask = arm_dma_set_mask,
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001905};
1906
Rob Herring0fa478d2012-08-21 12:23:23 +02001907struct dma_map_ops iommu_coherent_ops = {
1908 .alloc = arm_iommu_alloc_attrs,
1909 .free = arm_iommu_free_attrs,
1910 .mmap = arm_iommu_mmap_attrs,
1911 .get_sgtable = arm_iommu_get_sgtable,
1912
1913 .map_page = arm_coherent_iommu_map_page,
1914 .unmap_page = arm_coherent_iommu_unmap_page,
1915
1916 .map_sg = arm_coherent_iommu_map_sg,
1917 .unmap_sg = arm_coherent_iommu_unmap_sg,
Hiroshi Doyud09e1332013-01-29 14:57:07 +02001918
1919 .set_dma_mask = arm_dma_set_mask,
Rob Herring0fa478d2012-08-21 12:23:23 +02001920};
1921
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001922/**
1923 * arm_iommu_create_mapping
1924 * @bus: pointer to the bus holding the client device (for IOMMU calls)
1925 * @base: start address of the valid IO address space
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001926 * @size: maximum size of the valid IO address space
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001927 *
1928 * Creates a mapping structure which holds information about used/unused
1929 * IO address ranges, which is required to perform memory allocation and
1930 * mapping with IOMMU aware functions.
1931 *
1932 * The client device need to be attached to the mapping with
1933 * arm_iommu_attach_device function.
1934 */
1935struct dma_iommu_mapping *
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001936arm_iommu_create_mapping(struct bus_type *bus, dma_addr_t base, size_t size)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001937{
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001938 unsigned int bits = size >> PAGE_SHIFT;
1939 unsigned int bitmap_size = BITS_TO_LONGS(bits) * sizeof(long);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001940 struct dma_iommu_mapping *mapping;
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001941 int extensions = 1;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001942 int err = -ENOMEM;
1943
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001944 if (!bitmap_size)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001945 return ERR_PTR(-EINVAL);
1946
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001947 if (bitmap_size > PAGE_SIZE) {
1948 extensions = bitmap_size / PAGE_SIZE;
1949 bitmap_size = PAGE_SIZE;
1950 }
1951
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001952 mapping = kzalloc(sizeof(struct dma_iommu_mapping), GFP_KERNEL);
1953 if (!mapping)
1954 goto err;
1955
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001956 mapping->bitmap_size = bitmap_size;
1957 mapping->bitmaps = kzalloc(extensions * sizeof(unsigned long *),
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001958 GFP_KERNEL);
1959 if (!mapping->bitmaps)
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001960 goto err2;
1961
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001962 mapping->bitmaps[0] = kzalloc(bitmap_size, GFP_KERNEL);
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001963 if (!mapping->bitmaps[0])
1964 goto err3;
1965
1966 mapping->nr_bitmaps = 1;
1967 mapping->extensions = extensions;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001968 mapping->base = base;
Marek Szyprowski68efd7d2014-02-25 13:01:09 +01001969 mapping->size = bitmap_size << PAGE_SHIFT;
1970 mapping->bits = BITS_PER_BYTE * bitmap_size;
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001971
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001972 spin_lock_init(&mapping->lock);
1973
1974 mapping->domain = iommu_domain_alloc(bus);
1975 if (!mapping->domain)
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001976 goto err4;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001977
1978 kref_init(&mapping->kref);
1979 return mapping;
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001980err4:
1981 kfree(mapping->bitmaps[0]);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001982err3:
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001983 kfree(mapping->bitmaps);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001984err2:
1985 kfree(mapping);
1986err:
1987 return ERR_PTR(err);
1988}
Prathyush K18177d12013-01-04 06:22:42 -05001989EXPORT_SYMBOL_GPL(arm_iommu_create_mapping);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001990
1991static void release_iommu_mapping(struct kref *kref)
1992{
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001993 int i;
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02001994 struct dma_iommu_mapping *mapping =
1995 container_of(kref, struct dma_iommu_mapping, kref);
1996
1997 iommu_domain_free(mapping->domain);
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01001998 for (i = 0; i < mapping->nr_bitmaps; i++)
1999 kfree(mapping->bitmaps[i]);
2000 kfree(mapping->bitmaps);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02002001 kfree(mapping);
2002}
2003
Andreas Herrmann4d852ef2014-02-25 13:09:53 +01002004static int extend_iommu_mapping(struct dma_iommu_mapping *mapping)
2005{
2006 int next_bitmap;
2007
2008 if (mapping->nr_bitmaps > mapping->extensions)
2009 return -EINVAL;
2010
2011 next_bitmap = mapping->nr_bitmaps;
2012 mapping->bitmaps[next_bitmap] = kzalloc(mapping->bitmap_size,
2013 GFP_ATOMIC);
2014 if (!mapping->bitmaps[next_bitmap])
2015 return -ENOMEM;
2016
2017 mapping->nr_bitmaps++;
2018
2019 return 0;
2020}
2021
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02002022void arm_iommu_release_mapping(struct dma_iommu_mapping *mapping)
2023{
2024 if (mapping)
2025 kref_put(&mapping->kref, release_iommu_mapping);
2026}
Prathyush K18177d12013-01-04 06:22:42 -05002027EXPORT_SYMBOL_GPL(arm_iommu_release_mapping);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02002028
2029/**
2030 * arm_iommu_attach_device
2031 * @dev: valid struct device pointer
2032 * @mapping: io address space mapping structure (returned from
2033 * arm_iommu_create_mapping)
2034 *
2035 * Attaches specified io address space mapping to the provided device,
2036 * this replaces the dma operations (dma_map_ops pointer) with the
2037 * IOMMU aware version. More than one client might be attached to
2038 * the same io address space mapping.
2039 */
2040int arm_iommu_attach_device(struct device *dev,
2041 struct dma_iommu_mapping *mapping)
2042{
2043 int err;
2044
2045 err = iommu_attach_device(mapping->domain, dev);
2046 if (err)
2047 return err;
2048
2049 kref_get(&mapping->kref);
2050 dev->archdata.mapping = mapping;
2051 set_dma_ops(dev, &iommu_ops);
2052
Hiroshi Doyu75c59712012-09-11 07:39:48 +02002053 pr_debug("Attached IOMMU controller to %s device.\n", dev_name(dev));
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02002054 return 0;
2055}
Prathyush K18177d12013-01-04 06:22:42 -05002056EXPORT_SYMBOL_GPL(arm_iommu_attach_device);
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02002057
Hiroshi Doyu6fe36752013-01-24 15:16:57 +02002058/**
2059 * arm_iommu_detach_device
2060 * @dev: valid struct device pointer
2061 *
2062 * Detaches the provided device from a previously attached map.
2063 * This voids the dma operations (dma_map_ops pointer)
2064 */
2065void arm_iommu_detach_device(struct device *dev)
2066{
2067 struct dma_iommu_mapping *mapping;
2068
2069 mapping = to_dma_iommu_mapping(dev);
2070 if (!mapping) {
2071 dev_warn(dev, "Not attached\n");
2072 return;
2073 }
2074
2075 iommu_detach_device(mapping->domain, dev);
2076 kref_put(&mapping->kref, release_iommu_mapping);
Will Deacon9e4b2592013-06-10 19:34:40 +01002077 dev->archdata.mapping = NULL;
Hiroshi Doyu6fe36752013-01-24 15:16:57 +02002078 set_dma_ops(dev, NULL);
2079
2080 pr_debug("Detached IOMMU controller from %s device.\n", dev_name(dev));
2081}
Prathyush K18177d12013-01-04 06:22:42 -05002082EXPORT_SYMBOL_GPL(arm_iommu_detach_device);
Hiroshi Doyu6fe36752013-01-24 15:16:57 +02002083
Marek Szyprowski4ce63fc2012-05-16 15:48:21 +02002084#endif