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621 lines
19 KiB
621 lines
19 KiB
/* |
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* include/linux/ion.h |
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* |
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* Copyright (C) 2011 Google, Inc. |
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* Copyright (c) 2011-2012, The Linux Foundation. All rights reserved. |
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* |
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* This software is licensed under the terms of the GNU General Public |
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* License version 2, as published by the Free Software Foundation, and |
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* may be copied, distributed, and modified under those terms. |
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* |
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* This program is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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* GNU General Public License for more details. |
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* |
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*/ |
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|
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#ifndef _LINUX_ION_H |
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#define _LINUX_ION_H |
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|
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#include <linux/ioctl.h> |
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#include <linux/types.h> |
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|
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struct ion_handle; |
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typedef struct ion_handle *ion_user_handle_t; |
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/** |
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* enum ion_heap_types - list of all possible types of heaps |
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* @ION_HEAP_TYPE_SYSTEM: memory allocated via vmalloc |
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* @ION_HEAP_TYPE_SYSTEM_CONTIG: memory allocated via kmalloc |
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* @ION_HEAP_TYPE_CARVEOUT: memory allocated from a prereserved |
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* carveout heap, allocations are physically |
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* contiguous |
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* @ION_HEAP_TYPE_IOMMU: IOMMU memory |
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* @ION_HEAP_TYPE_CP: memory allocated from a prereserved |
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* carveout heap, allocations are physically |
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* contiguous. Used for content protection. |
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* @ION_HEAP_TYPE_DMA: memory allocated via DMA API |
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* @ION_NUM_HEAPS: helper for iterating over heaps, a bit mask |
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* is used to identify the heaps, so only 32 |
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* total heap types are supported |
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*/ |
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enum ion_heap_type { |
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ION_HEAP_TYPE_SYSTEM, |
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ION_HEAP_TYPE_SYSTEM_CONTIG, |
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ION_HEAP_TYPE_CARVEOUT, |
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ION_HEAP_TYPE_DMA, |
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ION_HEAP_TYPE_CUSTOM, /* must be last so device specific heaps always |
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are at the end of this enum */ |
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ION_NUM_HEAPS = 16, |
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}; |
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#define ION_HEAP_SYSTEM_MASK (1 << ION_HEAP_TYPE_SYSTEM) |
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#define ION_HEAP_SYSTEM_CONTIG_MASK (1 << ION_HEAP_TYPE_SYSTEM_CONTIG) |
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#define ION_HEAP_CARVEOUT_MASK (1 << ION_HEAP_TYPE_CARVEOUT) |
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#define ION_HEAP_TYPE_DMA_MASK (1 << ION_HEAP_TYPE_DMA) |
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|
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/** |
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* heap flags - the lower 16 bits are used by core ion, the upper 16 |
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* bits are reserved for use by the heaps themselves. |
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*/ |
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#define ION_FLAG_CACHED 1 /* mappings of this buffer should be |
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cached, ion will do cache |
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maintenance when the buffer is |
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mapped for dma */ |
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|
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#ifdef __KERNEL__ |
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#include <linux/err.h> |
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#include <mach/ion.h> |
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struct ion_device; |
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struct ion_heap; |
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struct ion_mapper; |
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struct ion_client; |
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struct ion_buffer; |
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|
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/* This should be removed some day when phys_addr_t's are fully |
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plumbed in the kernel, and all instances of ion_phys_addr_t should |
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be converted to phys_addr_t. For the time being many kernel interfaces |
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do not accept phys_addr_t's that would have to */ |
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#define ion_phys_addr_t unsigned long |
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#define ion_virt_addr_t unsigned long |
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/** |
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* struct ion_platform_heap - defines a heap in the given platform |
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* @type: type of the heap from ion_heap_type enum |
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* @id: unique identifier for heap. When allocating (lower numbers |
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* will be allocated from first) |
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* @name: used for debug purposes |
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* @base: base address of heap in physical memory if applicable |
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* @size: size of the heap in bytes if applicable |
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* @memory_type:Memory type used for the heap |
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* @has_outer_cache: set to 1 if outer cache is used, 0 otherwise. |
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* @extra_data: Extra data specific to each heap type |
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* @priv: heap private data |
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*/ |
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struct ion_platform_heap { |
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enum ion_heap_type type; |
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unsigned int id; |
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const char *name; |
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ion_phys_addr_t base; |
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size_t size; |
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enum ion_memory_types memory_type; |
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unsigned int has_outer_cache; |
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void *extra_data; |
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void *priv; |
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}; |
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/** |
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* struct ion_platform_data - array of platform heaps passed from board file |
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* @has_outer_cache: set to 1 if outer cache is used, 0 otherwise. |
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* @nr: number of structures in the array |
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* @request_region: function to be called when the number of allocations goes |
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* from 0 -> 1 |
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* @release_region: function to be called when the number of allocations goes |
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* from 1 -> 0 |
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* @setup_region: function to be called upon ion registration |
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* @heaps: array of platform_heap structions |
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* |
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* Provided by the board file in the form of platform data to a platform device. |
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*/ |
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struct ion_platform_data { |
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unsigned int has_outer_cache; |
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int nr; |
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int (*request_region)(void *); |
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int (*release_region)(void *); |
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void *(*setup_region)(void); |
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struct ion_platform_heap *heaps; |
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}; |
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#ifdef CONFIG_ION |
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|
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/** |
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* ion_reserve() - reserve memory for ion heaps if applicable |
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* @data: platform data specifying starting physical address and |
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* size |
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* |
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* Calls memblock reserve to set aside memory for heaps that are |
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* located at specific memory addresses or of specfic sizes not |
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* managed by the kernel |
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*/ |
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void ion_reserve(struct ion_platform_data *data); |
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|
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/** |
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* ion_client_create() - allocate a client and returns it |
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* @dev: the global ion device |
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* @heap_mask: mask of heaps this client can allocate from |
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* @name: used for debugging |
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*/ |
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struct ion_client *ion_client_create(struct ion_device *dev, |
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unsigned int heap_mask, const char *name); |
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|
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/** |
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* msm_ion_client_create - allocate a client using the ion_device specified in |
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* drivers/gpu/ion/msm/msm_ion.c |
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* |
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* heap_mask and name are the same as ion_client_create, return values |
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* are the same as ion_client_create. |
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*/ |
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struct ion_client *msm_ion_client_create(unsigned int heap_mask, |
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const char *name); |
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|
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/** |
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* ion_client_destroy() - free's a client and all it's handles |
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* @client: the client |
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* |
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* Free the provided client and all it's resources including |
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* any handles it is holding. |
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*/ |
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void ion_client_destroy(struct ion_client *client); |
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|
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/** |
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* ion_alloc - allocate ion memory |
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* @client: the client |
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* @len: size of the allocation |
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* @align: requested allocation alignment, lots of hardware blocks have |
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* alignment requirements of some kind |
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* @heap_mask: mask of heaps to allocate from, if multiple bits are set |
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* heaps will be tried in order from lowest to highest order bit |
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* @flags: heap flags, the low 16 bits are consumed by ion, the high 16 |
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* bits are passed on to the respective heap and can be heap |
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* custom |
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* |
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* Allocate memory in one of the heaps provided in heap mask and return |
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* an opaque handle to it. |
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*/ |
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struct ion_handle *ion_alloc(struct ion_client *client, size_t len, |
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size_t align, unsigned int heap_mask, |
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unsigned int flags); |
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|
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/** |
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* ion_free - free a handle |
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* @client: the client |
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* @handle: the handle to free |
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* |
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* Free the provided handle. |
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*/ |
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void ion_free(struct ion_client *client, struct ion_handle *handle); |
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|
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/** |
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* ion_phys - returns the physical address and len of a handle |
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* @client: the client |
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* @handle: the handle |
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* @addr: a pointer to put the address in |
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* @len: a pointer to put the length in |
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* |
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* This function queries the heap for a particular handle to get the |
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* handle's physical address. It't output is only correct if |
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* a heap returns physically contiguous memory -- in other cases |
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* this api should not be implemented -- ion_sg_table should be used |
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* instead. Returns -EINVAL if the handle is invalid. This has |
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* no implications on the reference counting of the handle -- |
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* the returned value may not be valid if the caller is not |
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* holding a reference. |
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*/ |
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int ion_phys(struct ion_client *client, struct ion_handle *handle, |
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ion_phys_addr_t *addr, size_t *len); |
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|
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/** |
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* ion_map_dma - return an sg_table describing a handle |
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* @client: the client |
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* @handle: the handle |
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* |
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* This function returns the sg_table describing |
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* a particular ion handle. |
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*/ |
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struct sg_table *ion_sg_table(struct ion_client *client, |
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struct ion_handle *handle); |
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|
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/** |
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* ion_map_kernel - create mapping for the given handle |
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* @client: the client |
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* @handle: handle to map |
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* @flags: flags for this mapping |
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* |
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* Map the given handle into the kernel and return a kernel address that |
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* can be used to access this address. If no flags are specified, this |
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* will return a non-secure uncached mapping. |
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*/ |
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void *ion_map_kernel(struct ion_client *client, struct ion_handle *handle); |
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|
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/** |
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* ion_unmap_kernel() - destroy a kernel mapping for a handle |
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* @client: the client |
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* @handle: handle to unmap |
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*/ |
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void ion_unmap_kernel(struct ion_client *client, struct ion_handle *handle); |
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|
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/** |
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* ion_share_dma_buf() - given an ion client, create a dma-buf fd |
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* @client: the client |
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* @handle: the handle |
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*/ |
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int ion_share_dma_buf(struct ion_client *client, struct ion_handle *handle); |
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|
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/** |
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* ion_import_dma_buf() - given an dma-buf fd from the ion exporter get handle |
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* @client: the client |
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* @fd: the dma-buf fd |
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* |
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* Given an dma-buf fd that was allocated through ion via ion_share_dma_buf, |
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* import that fd and return a handle representing it. If a dma-buf from |
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* another exporter is passed in this function will return ERR_PTR(-EINVAL) |
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*/ |
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struct ion_handle *ion_import_dma_buf(struct ion_client *client, int fd); |
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|
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/** |
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* ion_handle_get_flags - get the flags for a given handle |
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* |
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* @client - client who allocated the handle |
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* @handle - handle to get the flags |
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* @flags - pointer to store the flags |
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* |
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* Gets the current flags for a handle. These flags indicate various options |
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* of the buffer (caching, security, etc.) |
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*/ |
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int ion_handle_get_flags(struct ion_client *client, struct ion_handle *handle, |
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unsigned long *flags); |
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/** |
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* ion_map_iommu - map the given handle into an iommu |
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* |
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* @client - client who allocated the handle |
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* @handle - handle to map |
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* @domain_num - domain number to map to |
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* @partition_num - partition number to allocate iova from |
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* @align - alignment for the iova |
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* @iova_length - length of iova to map. If the iova length is |
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* greater than the handle length, the remaining |
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* address space will be mapped to a dummy buffer. |
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* @iova - pointer to store the iova address |
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* @buffer_size - pointer to store the size of the buffer |
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* @flags - flags for options to map |
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* @iommu_flags - flags specific to the iommu. |
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* |
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* Maps the handle into the iova space specified via domain number. Iova |
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* will be allocated from the partition specified via partition_num. |
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* Returns 0 on success, negative value on error. |
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*/ |
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int ion_map_iommu(struct ion_client *client, struct ion_handle *handle, |
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int domain_num, int partition_num, unsigned long align, |
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unsigned long iova_length, unsigned long *iova, |
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unsigned long *buffer_size, |
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unsigned long flags, unsigned long iommu_flags); |
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/** |
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* ion_handle_get_size - get the allocated size of a given handle |
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* |
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* @client - client who allocated the handle |
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* @handle - handle to get the size |
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* @size - pointer to store the size |
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* |
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* gives the allocated size of a handle. returns 0 on success, negative |
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* value on error |
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* |
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* NOTE: This is intended to be used only to get a size to pass to map_iommu. |
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* You should *NOT* rely on this for any other usage. |
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*/ |
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int ion_handle_get_size(struct ion_client *client, struct ion_handle *handle, |
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unsigned long *size); |
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|
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/** |
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* ion_unmap_iommu - unmap the handle from an iommu |
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* |
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* @client - client who allocated the handle |
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* @handle - handle to unmap |
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* @domain_num - domain to unmap from |
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* @partition_num - partition to unmap from |
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* |
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* Decrement the reference count on the iommu mapping. If the count is |
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* 0, the mapping will be removed from the iommu. |
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*/ |
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void ion_unmap_iommu(struct ion_client *client, struct ion_handle *handle, |
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int domain_num, int partition_num); |
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|
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/** |
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* ion_secure_heap - secure a heap |
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* |
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* @client - a client that has allocated from the heap heap_id |
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* @heap_id - heap id to secure. |
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* @version - version of content protection |
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* @data - extra data needed for protection |
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* |
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* Secure a heap |
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* Returns 0 on success |
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*/ |
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int ion_secure_heap(struct ion_device *dev, int heap_id, int version, |
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void *data); |
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|
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/** |
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* ion_unsecure_heap - un-secure a heap |
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* |
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* @client - a client that has allocated from the heap heap_id |
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* @heap_id - heap id to un-secure. |
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* @version - version of content protection |
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* @data - extra data needed for protection |
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* |
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* Un-secure a heap |
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* Returns 0 on success |
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*/ |
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int ion_unsecure_heap(struct ion_device *dev, int heap_id, int version, |
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void *data); |
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|
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/** |
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* msm_ion_do_cache_op - do cache operations. |
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* |
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* @client - pointer to ION client. |
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* @handle - pointer to buffer handle. |
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* @vaddr - virtual address to operate on. |
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* @len - Length of data to do cache operation on. |
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* @cmd - Cache operation to perform: |
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* ION_IOC_CLEAN_CACHES |
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* ION_IOC_INV_CACHES |
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* ION_IOC_CLEAN_INV_CACHES |
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* |
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* Returns 0 on success |
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*/ |
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int msm_ion_do_cache_op(struct ion_client *client, struct ion_handle *handle, |
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void *vaddr, unsigned long len, unsigned int cmd); |
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|
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#else |
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static inline void ion_reserve(struct ion_platform_data *data) |
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{ |
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|
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} |
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|
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static inline struct ion_client *ion_client_create(struct ion_device *dev, |
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unsigned int heap_mask, const char *name) |
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{ |
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return ERR_PTR(-ENODEV); |
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} |
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|
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static inline struct ion_client *msm_ion_client_create(unsigned int heap_mask, |
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const char *name) |
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{ |
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return ERR_PTR(-ENODEV); |
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} |
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|
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static inline void ion_client_destroy(struct ion_client *client) { } |
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|
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static inline struct ion_handle *ion_alloc(struct ion_client *client, |
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size_t len, size_t align, |
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unsigned int heap_mask, |
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unsigned int flags) |
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{ |
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return ERR_PTR(-ENODEV); |
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} |
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|
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static inline void ion_free(struct ion_client *client, |
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struct ion_handle *handle) { } |
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|
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static inline int ion_phys(struct ion_client *client, |
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struct ion_handle *handle, ion_phys_addr_t *addr, size_t *len) |
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{ |
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return -ENODEV; |
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} |
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|
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static inline struct sg_table *ion_sg_table(struct ion_client *client, |
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struct ion_handle *handle) |
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{ |
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return ERR_PTR(-ENODEV); |
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} |
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|
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static inline void *ion_map_kernel(struct ion_client *client, |
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struct ion_handle *handle, unsigned long flags) |
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{ |
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return ERR_PTR(-ENODEV); |
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} |
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|
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static inline void ion_unmap_kernel(struct ion_client *client, |
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struct ion_handle *handle) { } |
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|
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static inline int ion_share_dma_buf(struct ion_client *client, struct ion_handle *handle) |
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{ |
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return -ENODEV; |
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} |
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|
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static inline struct ion_handle *ion_import_dma_buf(struct ion_client *client, int fd) |
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{ |
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return ERR_PTR(-ENODEV); |
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} |
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|
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static inline int ion_handle_get_flags(struct ion_client *client, |
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struct ion_handle *handle, unsigned long *flags) |
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{ |
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return -ENODEV; |
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} |
|
|
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static inline int ion_map_iommu(struct ion_client *client, |
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struct ion_handle *handle, int domain_num, |
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int partition_num, unsigned long align, |
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unsigned long iova_length, unsigned long *iova, |
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unsigned long *buffer_size, |
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unsigned long flags, |
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unsigned long iommu_flags) |
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{ |
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return -ENODEV; |
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} |
|
|
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static inline void ion_unmap_iommu(struct ion_client *client, |
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struct ion_handle *handle, int domain_num, |
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int partition_num) |
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{ |
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return; |
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} |
|
|
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static inline int ion_secure_heap(struct ion_device *dev, int heap_id, |
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int version, void *data) |
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{ |
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return -ENODEV; |
|
|
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} |
|
|
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static inline int ion_unsecure_heap(struct ion_device *dev, int heap_id, |
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int version, void *data) |
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{ |
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return -ENODEV; |
|
} |
|
|
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static inline int msm_ion_do_cache_op(struct ion_client *client, |
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struct ion_handle *handle, void *vaddr, |
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unsigned long len, unsigned int cmd) |
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{ |
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return -ENODEV; |
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} |
|
|
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#endif /* CONFIG_ION */ |
|
#endif /* __KERNEL__ */ |
|
|
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/** |
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* DOC: Ion Userspace API |
|
* |
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* create a client by opening /dev/ion |
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* most operations handled via following ioctls |
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* |
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*/ |
|
|
|
/** |
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* struct ion_allocation_data - metadata passed from userspace for allocations |
|
* @len: size of the allocation |
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* @align: required alignment of the allocation |
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* @heap_mask: mask of heaps to allocate from |
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* @flags: flags passed to heap |
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* @handle: pointer that will be populated with a cookie to use to refer |
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* to this allocation |
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* |
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* Provided by userspace as an argument to the ioctl |
|
*/ |
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struct ion_allocation_data { |
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size_t len; |
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size_t align; |
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unsigned int heap_id_mask; |
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unsigned int flags; |
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ion_user_handle_t handle; |
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}; |
|
|
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/** |
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* struct ion_fd_data - metadata passed to/from userspace for a handle/fd pair |
|
* @handle: a handle |
|
* @fd: a file descriptor representing that handle |
|
* |
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* For ION_IOC_SHARE or ION_IOC_MAP userspace populates the handle field with |
|
* the handle returned from ion alloc, and the kernel returns the file |
|
* descriptor to share or map in the fd field. For ION_IOC_IMPORT, userspace |
|
* provides the file descriptor and the kernel returns the handle. |
|
*/ |
|
struct ion_fd_data { |
|
ion_user_handle_t handle; |
|
int fd; |
|
}; |
|
|
|
/** |
|
* struct ion_handle_data - a handle passed to/from the kernel |
|
* @handle: a handle |
|
*/ |
|
struct ion_handle_data { |
|
ion_user_handle_t handle; |
|
}; |
|
|
|
/** |
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* struct ion_custom_data - metadata passed to/from userspace for a custom ioctl |
|
* @cmd: the custom ioctl function to call |
|
* @arg: additional data to pass to the custom ioctl, typically a user |
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* pointer to a predefined structure |
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* |
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* This works just like the regular cmd and arg fields of an ioctl. |
|
*/ |
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struct ion_custom_data { |
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unsigned int cmd; |
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unsigned long arg; |
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}; |
|
#define ION_IOC_MAGIC 'I' |
|
|
|
/** |
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* DOC: ION_IOC_ALLOC - allocate memory |
|
* |
|
* Takes an ion_allocation_data struct and returns it with the handle field |
|
* populated with the opaque handle for the allocation. |
|
*/ |
|
#define ION_IOC_ALLOC _IOWR(ION_IOC_MAGIC, 0, \ |
|
struct ion_allocation_data) |
|
|
|
/** |
|
* DOC: ION_IOC_FREE - free memory |
|
* |
|
* Takes an ion_handle_data struct and frees the handle. |
|
*/ |
|
#define ION_IOC_FREE _IOWR(ION_IOC_MAGIC, 1, struct ion_handle_data) |
|
|
|
/** |
|
* DOC: ION_IOC_MAP - get a file descriptor to mmap |
|
* |
|
* Takes an ion_fd_data struct with the handle field populated with a valid |
|
* opaque handle. Returns the struct with the fd field set to a file |
|
* descriptor open in the current address space. This file descriptor |
|
* can then be used as an argument to mmap. |
|
*/ |
|
#define ION_IOC_MAP _IOWR(ION_IOC_MAGIC, 2, struct ion_fd_data) |
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/** |
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* DOC: ION_IOC_SHARE - creates a file descriptor to use to share an allocation |
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* |
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* Takes an ion_fd_data struct with the handle field populated with a valid |
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* opaque handle. Returns the struct with the fd field set to a file |
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* descriptor open in the current address space. This file descriptor |
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* can then be passed to another process. The corresponding opaque handle can |
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* be retrieved via ION_IOC_IMPORT. |
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*/ |
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#define ION_IOC_SHARE _IOWR(ION_IOC_MAGIC, 4, struct ion_fd_data) |
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/** |
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* DOC: ION_IOC_IMPORT - imports a shared file descriptor |
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* |
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* Takes an ion_fd_data struct with the fd field populated with a valid file |
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* descriptor obtained from ION_IOC_SHARE and returns the struct with the handle |
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* filed set to the corresponding opaque handle. |
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*/ |
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#define ION_IOC_IMPORT _IOWR(ION_IOC_MAGIC, 5, struct ion_fd_data) |
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/** |
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* DOC: ION_IOC_CUSTOM - call architecture specific ion ioctl |
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* |
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* Takes the argument of the architecture specific ioctl to call and |
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* passes appropriate userdata for that ioctl |
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*/ |
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#define ION_IOC_CUSTOM _IOWR(ION_IOC_MAGIC, 6, struct ion_custom_data) |
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/** |
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* DOC: ION_IOC_SYNC - syncs a shared file descriptors to memory |
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* |
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* Deprecated in favor of using the dma_buf api's correctly (syncing |
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* will happend automatically when the buffer is mapped to a device). |
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* If necessary should be used after touching a cached buffer from the cpu, |
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* this will make the buffer in memory coherent. |
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*/ |
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#define ION_IOC_SYNC _IOWR(ION_IOC_MAGIC, 7, struct ion_fd_data) |
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#endif /* _LINUX_ION_H */
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