2 * Coherent per-device memory handling.
5 #include <linux/slab.h>
6 #include <linux/kernel.h>
7 #include <linux/module.h>
8 #include <linux/dma-mapping.h>
10 struct dma_coherent_mem
{
12 dma_addr_t device_base
;
15 unsigned long *bitmap
;
18 int dma_declare_coherent_memory(struct device
*dev
, dma_addr_t bus_addr
,
19 dma_addr_t device_addr
, size_t size
, int flags
)
21 void __iomem
*mem_base
= NULL
;
22 int pages
= size
>> PAGE_SHIFT
;
23 int bitmap_size
= BITS_TO_LONGS(pages
) * sizeof(long);
25 if ((flags
& (DMA_MEMORY_MAP
| DMA_MEMORY_IO
)) == 0)
32 /* FIXME: this routine just ignores DMA_MEMORY_INCLUDES_CHILDREN */
34 mem_base
= ioremap(bus_addr
, size
);
38 dev
->dma_mem
= kzalloc(sizeof(struct dma_coherent_mem
), GFP_KERNEL
);
41 dev
->dma_mem
->bitmap
= kzalloc(bitmap_size
, GFP_KERNEL
);
42 if (!dev
->dma_mem
->bitmap
)
45 dev
->dma_mem
->virt_base
= mem_base
;
46 dev
->dma_mem
->device_base
= device_addr
;
47 dev
->dma_mem
->size
= pages
;
48 dev
->dma_mem
->flags
= flags
;
50 if (flags
& DMA_MEMORY_MAP
)
51 return DMA_MEMORY_MAP
;
62 EXPORT_SYMBOL(dma_declare_coherent_memory
);
64 void dma_release_declared_memory(struct device
*dev
)
66 struct dma_coherent_mem
*mem
= dev
->dma_mem
;
71 iounmap(mem
->virt_base
);
75 EXPORT_SYMBOL(dma_release_declared_memory
);
77 void *dma_mark_declared_memory_occupied(struct device
*dev
,
78 dma_addr_t device_addr
, size_t size
)
80 struct dma_coherent_mem
*mem
= dev
->dma_mem
;
83 size
+= device_addr
& ~PAGE_MASK
;
86 return ERR_PTR(-EINVAL
);
88 pos
= (device_addr
- mem
->device_base
) >> PAGE_SHIFT
;
89 err
= bitmap_allocate_region(mem
->bitmap
, pos
, get_order(size
));
92 return mem
->virt_base
+ (pos
<< PAGE_SHIFT
);
94 EXPORT_SYMBOL(dma_mark_declared_memory_occupied
);
97 * dma_alloc_from_coherent() - try to allocate memory from the per-device coherent area
99 * @dev: device from which we allocate memory
100 * @size: size of requested memory area
101 * @dma_handle: This will be filled with the correct dma handle
102 * @ret: This pointer will be filled with the virtual address
105 * This function should be only called from per-arch dma_alloc_coherent()
106 * to support allocation from per-device coherent memory pools.
108 * Returns 0 if dma_alloc_coherent should continue with allocating from
109 * generic memory areas, or !0 if dma_alloc_coherent should return @ret.
111 int dma_alloc_from_coherent(struct device
*dev
, ssize_t size
,
112 dma_addr_t
*dma_handle
, void **ret
)
114 struct dma_coherent_mem
*mem
;
115 int order
= get_order(size
);
126 if (unlikely(size
> (mem
->size
<< PAGE_SHIFT
)))
129 pageno
= bitmap_find_free_region(mem
->bitmap
, mem
->size
, order
);
130 if (unlikely(pageno
< 0))
134 * Memory was found in the per-device area.
136 *dma_handle
= mem
->device_base
+ (pageno
<< PAGE_SHIFT
);
137 *ret
= mem
->virt_base
+ (pageno
<< PAGE_SHIFT
);
138 memset(*ret
, 0, size
);
144 * In the case where the allocation can not be satisfied from the
145 * per-device area, try to fall back to generic memory if the
146 * constraints allow it.
148 return mem
->flags
& DMA_MEMORY_EXCLUSIVE
;
150 EXPORT_SYMBOL(dma_alloc_from_coherent
);
153 * dma_release_from_coherent() - try to free the memory allocated from per-device coherent memory pool
154 * @dev: device from which the memory was allocated
155 * @order: the order of pages allocated
156 * @vaddr: virtual address of allocated pages
158 * This checks whether the memory was allocated from the per-device
159 * coherent memory pool and if so, releases that memory.
161 * Returns 1 if we correctly released the memory, or 0 if
162 * dma_release_coherent() should proceed with releasing memory from
165 int dma_release_from_coherent(struct device
*dev
, int order
, void *vaddr
)
167 struct dma_coherent_mem
*mem
= dev
? dev
->dma_mem
: NULL
;
169 if (mem
&& vaddr
>= mem
->virt_base
&& vaddr
<
170 (mem
->virt_base
+ (mem
->size
<< PAGE_SHIFT
))) {
171 int page
= (vaddr
- mem
->virt_base
) >> PAGE_SHIFT
;
173 bitmap_release_region(mem
->bitmap
, page
, order
);
178 EXPORT_SYMBOL(dma_release_from_coherent
);