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fe14bcb98f
There are some Ion clients who would like to use the kmalloc heap. Enable it. Change-Id: Ie818be9e1211d52d489ad2cb63d94e2fddfc0f01 Signed-off-by: Mitchel Humpherys <mitchelh@codeaurora.org>
323 lines
8.8 KiB
C
323 lines
8.8 KiB
C
/*
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*
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* Copyright (c) 2012-2013, 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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#ifndef _LINUX_MSM_ION_H
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#define _LINUX_MSM_ION_H
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#include <linux/ion.h>
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#define ION_HEAP_TYPE_MSM_START (ION_HEAP_TYPE_CUSTOM + 1)
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#define ION_HEAP_TYPE_IOMMU (ION_HEAP_TYPE_MSM_START)
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#define ION_HEAP_TYPE_CP (ION_HEAP_TYPE_IOMMU + 1)
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/**
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* These are the only ids that should be used for Ion heap ids.
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* The ids listed are the order in which allocation will be attempted
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* if specified. Don't swap the order of heap ids unless you know what
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* you are doing!
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* Id's are spaced by purpose to allow new Id's to be inserted in-between (for
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* possible fallbacks)
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*/
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enum ion_heap_ids {
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INVALID_HEAP_ID = -1,
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ION_CP_MM_HEAP_ID = 8,
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ION_CP_MFC_HEAP_ID = 12,
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ION_CP_WB_HEAP_ID = 16, /* 8660 only */
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ION_CAMERA_HEAP_ID = 20, /* 8660 only */
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ION_SYSTEM_CONTIG_HEAP_ID = 21,
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ION_ADSP_HEAP_ID = 22,
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ION_SF_HEAP_ID = 24,
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ION_IOMMU_HEAP_ID = 25,
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ION_QSECOM_HEAP_ID = 27,
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ION_AUDIO_HEAP_ID = 28,
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ION_MM_FIRMWARE_HEAP_ID = 29,
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ION_SYSTEM_HEAP_ID = 30,
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ION_HEAP_ID_RESERVED = 31 /** Bit reserved for ION_SECURE flag */
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};
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enum ion_fixed_position {
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NOT_FIXED,
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FIXED_LOW,
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FIXED_MIDDLE,
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FIXED_HIGH,
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};
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enum cp_mem_usage {
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VIDEO_BITSTREAM = 0x1,
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VIDEO_PIXEL = 0x2,
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VIDEO_NONPIXEL = 0x3,
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MAX_USAGE = 0x4,
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UNKNOWN = 0x7FFFFFFF,
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};
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#define ION_HEAP_CP_MASK (1 << ION_HEAP_TYPE_CP)
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/**
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* Flag to use when allocating to indicate that a heap is secure.
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*/
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#define ION_SECURE (1 << ION_HEAP_ID_RESERVED)
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/**
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* Flag for clients to force contiguous memort allocation
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*
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* Use of this flag is carefully monitored!
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*/
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#define ION_FORCE_CONTIGUOUS (1 << 30)
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/**
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* Macro should be used with ion_heap_ids defined above.
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*/
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#define ION_HEAP(bit) (1 << (bit))
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#define ION_ADSP_HEAP_NAME "adsp"
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#define ION_VMALLOC_HEAP_NAME "vmalloc"
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#define ION_KMALLOC_HEAP_NAME "kmalloc"
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#define ION_AUDIO_HEAP_NAME "audio"
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#define ION_SF_HEAP_NAME "sf"
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#define ION_MM_HEAP_NAME "mm"
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#define ION_CAMERA_HEAP_NAME "camera_preview"
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#define ION_IOMMU_HEAP_NAME "iommu"
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#define ION_MFC_HEAP_NAME "mfc"
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#define ION_WB_HEAP_NAME "wb"
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#define ION_MM_FIRMWARE_HEAP_NAME "mm_fw"
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#define ION_QSECOM_HEAP_NAME "qsecom"
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#define ION_FMEM_HEAP_NAME "fmem"
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#define ION_SET_CACHED(__cache) (__cache | ION_FLAG_CACHED)
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#define ION_SET_UNCACHED(__cache) (__cache & ~ION_FLAG_CACHED)
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#define ION_IS_CACHED(__flags) ((__flags) & ION_FLAG_CACHED)
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#ifdef __KERNEL__
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/*
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* This flag allows clients when mapping into the IOMMU to specify to
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* defer un-mapping from the IOMMU until the buffer memory is freed.
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*/
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#define ION_IOMMU_UNMAP_DELAYED 1
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/**
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* struct ion_cp_heap_pdata - defines a content protection heap in the given
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* platform
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* @permission_type: Memory ID used to identify the memory to TZ
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* @align: Alignment requirement for the memory
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* @secure_base: Base address for securing the heap.
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* Note: This might be different from actual base address
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* of this heap in the case of a shared heap.
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* @secure_size: Memory size for securing the heap.
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* Note: This might be different from actual size
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* of this heap in the case of a shared heap.
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* @reusable Flag indicating whether this heap is reusable of not.
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* (see FMEM)
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* @mem_is_fmem Flag indicating whether this memory is coming from fmem
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* or not.
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* @fixed_position If nonzero, position in the fixed area.
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* @virt_addr: Virtual address used when using fmem.
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* @iommu_map_all: Indicates whether we should map whole heap into IOMMU.
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* @iommu_2x_map_domain: Indicates the domain to use for overmapping.
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* @request_region: function to be called when the number of allocations
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* goes from 0 -> 1
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* @release_region: function to be called when the number of allocations
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* goes from 1 -> 0
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* @setup_region: function to be called upon ion registration
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* @memory_type:Memory type used for the heap
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* @no_nonsecure_alloc: don't allow non-secure allocations from this heap
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*
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*/
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struct ion_cp_heap_pdata {
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enum ion_permission_type permission_type;
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unsigned int align;
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ion_phys_addr_t secure_base; /* Base addr used when heap is shared */
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size_t secure_size; /* Size used for securing heap when heap is shared*/
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int reusable;
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int mem_is_fmem;
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int is_cma;
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enum ion_fixed_position fixed_position;
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int iommu_map_all;
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int iommu_2x_map_domain;
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ion_virt_addr_t *virt_addr;
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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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enum ion_memory_types memory_type;
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int no_nonsecure_alloc;
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};
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/**
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* struct ion_co_heap_pdata - defines a carveout heap in the given platform
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* @adjacent_mem_id: Id of heap that this heap must be adjacent to.
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* @align: Alignment requirement for the memory
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* @mem_is_fmem Flag indicating whether this memory is coming from fmem
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* or not.
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* @fixed_position If nonzero, position in the fixed area.
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* @request_region: function to be called when the number of allocations
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* goes from 0 -> 1
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* @release_region: function to be called when the number of allocations
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* goes from 1 -> 0
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* @setup_region: function to be called upon ion registration
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* @memory_type:Memory type used for the heap
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*
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*/
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struct ion_co_heap_pdata {
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int adjacent_mem_id;
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unsigned int align;
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int mem_is_fmem;
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enum ion_fixed_position fixed_position;
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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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enum ion_memory_types memory_type;
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};
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#ifdef CONFIG_ION
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/**
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* msm_ion_secure_heap - secure a heap. Wrapper around ion_secure_heap.
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*
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* @heap_id - heap id to secure.
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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 msm_ion_secure_heap(int heap_id);
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/**
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* msm_ion_unsecure_heap - unsecure a heap. Wrapper around ion_unsecure_heap.
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*
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* @heap_id - heap id to secure.
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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 msm_ion_unsecure_heap(int heap_id);
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/**
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* msm_ion_secure_heap_2_0 - secure a heap using 2.0 APIs
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* Wrapper around ion_secure_heap.
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*
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* @heap_id - heap id to secure.
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* @usage - usage hint to TZ
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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 msm_ion_secure_heap_2_0(int heap_id, enum cp_mem_usage usage);
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/**
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* msm_ion_unsecure_heap - unsecure a heap secured with 3.0 APIs.
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* Wrapper around ion_unsecure_heap.
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*
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* @heap_id - heap id to secure.
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* @usage - usage hint to TZ
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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 msm_ion_unsecure_heap_2_0(int heap_id, enum cp_mem_usage usage);
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#else
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static inline int msm_ion_secure_heap(int heap_id)
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{
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return -ENODEV;
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}
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static inline int msm_ion_unsecure_heap(int heap_id)
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{
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return -ENODEV;
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}
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static inline int msm_ion_secure_heap_2_0(int heap_id, enum cp_mem_usage usage)
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{
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return -ENODEV;
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}
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static inline int msm_ion_unsecure_heap_2_0(int heap_id,
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enum cp_mem_usage usage)
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{
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return -ENODEV;
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}
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#endif /* CONFIG_ION */
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#endif /* __KERNEL */
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/* struct ion_flush_data - data passed to ion for flushing caches
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*
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* @handle: handle with data to flush
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* @fd: fd to flush
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* @vaddr: userspace virtual address mapped with mmap
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* @offset: offset into the handle to flush
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* @length: length of handle to flush
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*
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* Performs cache operations on the handle. If p is the start address
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* of the handle, p + offset through p + offset + length will have
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* the cache operations performed
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*/
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struct ion_flush_data {
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struct ion_handle *handle;
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int fd;
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void *vaddr;
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unsigned int offset;
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unsigned int length;
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};
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/* struct ion_flag_data - information about flags for this buffer
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*
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* @handle: handle to get flags from
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* @flags: flags of this handle
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*
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* Takes handle as an input and outputs the flags from the handle
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* in the flag field.
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*/
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struct ion_flag_data {
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struct ion_handle *handle;
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unsigned long flags;
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};
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#define ION_IOC_MSM_MAGIC 'M'
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/**
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* DOC: ION_IOC_CLEAN_CACHES - clean the caches
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*
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* Clean the caches of the handle specified.
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*/
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#define ION_IOC_CLEAN_CACHES _IOWR(ION_IOC_MSM_MAGIC, 0, \
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struct ion_flush_data)
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/**
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* DOC: ION_IOC_INV_CACHES - invalidate the caches
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*
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* Invalidate the caches of the handle specified.
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*/
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#define ION_IOC_INV_CACHES _IOWR(ION_IOC_MSM_MAGIC, 1, \
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struct ion_flush_data)
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/**
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* DOC: ION_IOC_CLEAN_INV_CACHES - clean and invalidate the caches
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*
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* Clean and invalidate the caches of the handle specified.
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*/
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#define ION_IOC_CLEAN_INV_CACHES _IOWR(ION_IOC_MSM_MAGIC, 2, \
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struct ion_flush_data)
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/**
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* DOC: ION_IOC_GET_FLAGS - get the flags of the handle
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*
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* Gets the flags of the current handle which indicate cachability,
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* secure state etc.
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*/
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#define ION_IOC_GET_FLAGS _IOWR(ION_IOC_MSM_MAGIC, 3, \
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struct ion_flag_data)
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#endif
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