forked from rubenslte/android_kernel_samsung_msm8226
AU_LINUX_ANDROID_ICS.04.00.04.00.126 from msm-3.0. First parent is from google/android-3.4. * commit 'AU_LINUX_ANDROID_ICS.04.00.04.00.126': (8712 commits) PRNG: Device tree entry for qrng device. vidc:1080p: Set video core timeout value for Thumbnail mode msm: sps: improve the debugging support in SPS driver board-8064 msm: Overlap secure and non secure video firmware heaps. msm: clock: Add handoff ops for 7x30 and copper XO clocks msm_fb: display: Wait for external vsync before DTV IOMMU unmap msm: Fix ciruclar dependency in debug UART settings msm: gdsc: Add GDSC regulator driver for msm-copper defconfig: Enable Mobicore Driver. mobicore: Add mobicore driver. mobicore: rename variable to lower case. mobicore: rename folder. mobicore: add makefiles mobicore: initial import of kernel driver ASoC: msm: Add SLIMBUS_2_RX CPU DAI board-8064-gpio: Update FUNC for EPM SPI CS msm_fb: display: Remove chicken bit config during video playback mmc: msm_sdcc: enable the sanitize capability msm-fb: display: lm2 writeback support on mpq platfroms msm_fb: display: Disable LVDS phy & pll during panel off ... Signed-off-by: Steve Muckle <smuckle@codeaurora.org>
100 lines
3.6 KiB
C
100 lines
3.6 KiB
C
/*
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* Basic general purpose allocator for managing special purpose
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* memory, for example, memory that is not managed by the regular
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* kmalloc/kfree interface. Uses for this includes on-device special
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* memory, uncached memory etc.
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*
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* It is safe to use the allocator in NMI handlers and other special
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* unblockable contexts that could otherwise deadlock on locks. This
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* is implemented by using atomic operations and retries on any
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* conflicts. The disadvantage is that there may be livelocks in
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* extreme cases. For better scalability, one allocator can be used
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* for each CPU.
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*
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* The lockless operation only works if there is enough memory
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* available. If new memory is added to the pool a lock has to be
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* still taken. So any user relying on locklessness has to ensure
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* that sufficient memory is preallocated.
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*
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* The basic atomic operation of this allocator is cmpxchg on long.
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* On architectures that don't have NMI-safe cmpxchg implementation,
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* the allocator can NOT be used in NMI handler. So code uses the
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* allocator in NMI handler should depend on
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* CONFIG_ARCH_HAVE_NMI_SAFE_CMPXCHG.
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*
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* This source code is licensed under the GNU General Public License,
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* Version 2. See the file COPYING for more details.
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*/
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#ifndef __GENALLOC_H__
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#define __GENALLOC_H__
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/*
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* General purpose special memory pool descriptor.
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*/
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struct gen_pool {
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spinlock_t lock;
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struct list_head chunks; /* list of chunks in this pool */
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int min_alloc_order; /* minimum allocation order */
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};
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/*
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* General purpose special memory pool chunk descriptor.
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*/
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struct gen_pool_chunk {
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struct list_head next_chunk; /* next chunk in pool */
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atomic_t avail;
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phys_addr_t phys_addr; /* physical starting address of memory chunk */
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unsigned long start_addr; /* starting address of memory chunk */
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unsigned long end_addr; /* ending address of memory chunk */
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unsigned long bits[0]; /* bitmap for allocating memory chunk */
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};
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extern struct gen_pool *gen_pool_create(int, int);
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extern phys_addr_t gen_pool_virt_to_phys(struct gen_pool *pool, unsigned long);
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extern int gen_pool_add_virt(struct gen_pool *, unsigned long, phys_addr_t,
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size_t, int);
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/**
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* gen_pool_add - add a new chunk of special memory to the pool
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* @pool: pool to add new memory chunk to
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* @addr: starting address of memory chunk to add to pool
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* @size: size in bytes of the memory chunk to add to pool
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* @nid: node id of the node the chunk structure and bitmap should be
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* allocated on, or -1
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*
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* Add a new chunk of special memory to the specified pool.
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*
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* Returns 0 on success or a -ve errno on failure.
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*/
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static inline int gen_pool_add(struct gen_pool *pool, unsigned long addr,
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size_t size, int nid)
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{
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return gen_pool_add_virt(pool, addr, -1, size, nid);
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}
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extern void gen_pool_destroy(struct gen_pool *);
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extern void gen_pool_free(struct gen_pool *, unsigned long, size_t);
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extern void gen_pool_for_each_chunk(struct gen_pool *,
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void (*)(struct gen_pool *, struct gen_pool_chunk *, void *), void *);
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extern size_t gen_pool_avail(struct gen_pool *);
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extern size_t gen_pool_size(struct gen_pool *);
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unsigned long __must_check
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gen_pool_alloc_aligned(struct gen_pool *pool, size_t size,
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unsigned alignment_order);
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/**
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* gen_pool_alloc() - allocate special memory from the pool
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* @pool: Pool to allocate from.
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* @size: Number of bytes to allocate from the pool.
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*
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* Allocate the requested number of bytes from the specified pool.
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* Uses a first-fit algorithm.
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*/
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static inline unsigned long __must_check
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gen_pool_alloc(struct gen_pool *pool, size_t size)
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{
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return gen_pool_alloc_aligned(pool, size, 0);
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}
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#endif /* __GENALLOC_H__ */
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