ab3ea641ab
BUG=24397987 Change-Id: I534a8fc978e10e1277cb0c87b5942d182f7c2a79
349 lines
15 KiB
C
349 lines
15 KiB
C
/*
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* Copyright (C) 2015 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef ANDROID_HARDWARE_NVRAM_H
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#define ANDROID_HARDWARE_NVRAM_H
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#include <stdint.h>
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#include <sys/cdefs.h>
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#include <hardware/hardware.h>
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__BEGIN_DECLS
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/* The id of this module. */
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#define NVRAM_HARDWARE_MODULE_ID "nvram"
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#define NVRAM_HARDWARE_DEVICE_ID "nvram-dev"
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/* The version of this module. */
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#define NVRAM_MODULE_API_VERSION_0_1 HARDWARE_MODULE_API_VERSION(0, 1)
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#define NVRAM_DEVICE_API_VERSION_0_1 HARDWARE_DEVICE_API_VERSION(0, 1)
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/* Values returned by nvram_device methods. */
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typedef uint32_t nvram_result_t;
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const nvram_result_t NV_RESULT_SUCCESS = 0;
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const nvram_result_t NV_RESULT_INTERNAL_ERROR = 1;
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const nvram_result_t NV_RESULT_ACCESS_DENIED = 2;
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const nvram_result_t NV_RESULT_INVALID_PARAMETER = 3;
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const nvram_result_t NV_RESULT_SPACE_DOES_NOT_EXIST = 4;
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const nvram_result_t NV_RESULT_SPACE_ALREADY_EXISTS = 5;
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const nvram_result_t NV_RESULT_OPERATION_DISABLED = 6;
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/* Values describing available access controls. */
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typedef uint32_t nvram_control_t;
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const nvram_control_t NV_CONTROL_PERSISTENT_WRITE_LOCK = 1;
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const nvram_control_t NV_CONTROL_BOOT_WRITE_LOCK = 2;
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const nvram_control_t NV_CONTROL_BOOT_READ_LOCK = 3;
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const nvram_control_t NV_CONTROL_WRITE_AUTHORIZATION = 4;
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const nvram_control_t NV_CONTROL_READ_AUTHORIZATION = 5;
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const nvram_control_t NV_CONTROL_WRITE_EXTEND = 6;
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const uint32_t NV_UNLIMITED_SPACES = 0xFFFFFFFF;
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struct nvram_module {
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/**
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* Common methods of the nvram_module. This *must* be the first member of
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* nvram_module as users of this structure will cast a hw_module_t to
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* nvram_module pointer in contexts where it's known the hw_module_t
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* references a nvram_module.
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*/
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hw_module_t common;
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/* There are no module methods other than the common ones. */
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};
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struct nvram_device {
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/**
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* Common methods of the nvram_device. This *must* be the first member of
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* nvram_device as users of this structure will cast a hw_device_t to
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* nvram_device pointer in contexts where it's known the hw_device_t
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* references a nvram_device.
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*/
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struct hw_device_t common;
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/**
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* Outputs the total number of bytes available in NVRAM. This will
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* always be at least 2048. If an implementation does not know the
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* total size it may provide an estimate or 2048.
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*
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* device - The nvram_device instance.
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* total_size - Receives the output. Cannot be NULL.
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*/
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nvram_result_t (*get_total_size_in_bytes)(const struct nvram_device* device,
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uint64_t* total_size);
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/**
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* Outputs the unallocated number of bytes available in NVRAM. If an
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* implementation does not know the available size it may provide an
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* estimate or the total size.
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*
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* device - The nvram_device instance.
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* available_size - Receives the output. Cannot be NULL.
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*/
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nvram_result_t (*get_available_size_in_bytes)(
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const struct nvram_device* device, uint64_t* available_size);
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/**
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* Outputs the maximum total number of spaces that may be allocated.
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* This will always be at least 8. Outputs NV_UNLIMITED_SPACES if any
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* number of spaces are supported (limited only to available NVRAM
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* bytes).
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*
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* device - The nvram_device instance.
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* num_spaces - Receives the output. Cannot be NULL.
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*/
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nvram_result_t (*get_max_spaces)(const struct nvram_device* device,
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uint32_t* num_spaces);
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/**
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* Outputs a list of created space indices. If |max_list_size| is
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* 0, only |list_size| is populated.
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*
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* device - The nvram_device instance.
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* max_list_size - The number of items in the |space_index_list|
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* array.
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* space_index_list - Receives the list of created spaces up to the
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* given |max_list_size|. May be NULL if
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* |max_list_size| is 0.
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* list_size - Receives the number of items populated in
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* |space_index_list|, or the number of items available
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* if |space_index_list| is NULL.
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*/
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nvram_result_t (*get_space_list)(const struct nvram_device* device,
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uint32_t max_list_size,
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uint32_t* space_index_list,
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uint32_t* list_size);
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/**
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* Outputs the size, in bytes, of a given space.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* size - Receives the output. Cannot be NULL.
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*/
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nvram_result_t (*get_space_size)(const struct nvram_device* device,
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uint32_t index, uint64_t* size);
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/**
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* Outputs the list of controls associated with a given space.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* max_list_size - The number of items in the |control_list| array.
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* control_list - Receives the list of controls up to the given
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* |max_list_size|. May be NULL if |max_list_size|
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* is 0.
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* list_size - Receives the number of items populated in
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* |control_list|, or the number of items available if
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* |control_list| is NULL.
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*/
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nvram_result_t (*get_space_controls)(const struct nvram_device* device,
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uint32_t index, uint32_t max_list_size,
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nvram_control_t* control_list,
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uint32_t* list_size);
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/**
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* Outputs whether locks are enabled for the given space. When a lock
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* is enabled, the operation is disabled and any attempt to perform that
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* operation will result in NV_RESULT_OPERATION_DISABLED.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* write_lock_enabled - Will be set to non-zero iff write
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* operations are currently disabled.
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* read_lock_enabled - Will be set to non-zero iff read operations
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* are currently disabled.
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*/
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nvram_result_t (*is_space_locked)(const struct nvram_device* device,
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uint32_t index, int* write_lock_enabled,
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int* read_lock_enabled);
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/**
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* Creates a new space with the given index, size, controls, and
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* authorization value.
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*
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* device - The nvram_device instance.
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* index - An index for the new space. The index can be any 32-bit
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* value but must not already be assigned to an existing
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* space.
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* size_in_bytes - The number of bytes to allocate for the space.
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* control_list - An array of controls to enforce for the space.
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* list_size - The number of items in |control_list|.
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* authorization_value - If |control_list| contains
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* NV_CONTROL_READ_AUTHORIZATION and / or
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* NV_CONTROL_WRITE_AUTHORIZATION, then this
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* parameter provides the authorization value
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* for these policies (if both controls are
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* set then this value applies to both).
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* Otherwise, this value is ignored and may
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* be NULL.
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* authorization_value_size - The number of bytes in
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* |authorization_value|.
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*/
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nvram_result_t (*create_space)(const struct nvram_device* device,
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uint32_t index, uint64_t size_in_bytes,
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const nvram_control_t* control_list,
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uint32_t list_size,
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const uint8_t* authorization_value,
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uint32_t authorization_value_size);
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/**
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* Deletes a space.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* authorization_value - If the space has the
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* NV_CONTROL_WRITE_AUTHORIZATION policy,
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* then this parameter provides the
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* authorization value. Otherwise, this value
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* is ignored and may be NULL.
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* authorization_value_size - The number of bytes in
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* |authorization_value|.
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*/
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nvram_result_t (*delete_space)(const struct nvram_device* device,
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uint32_t index,
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const uint8_t* authorization_value,
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uint32_t authorization_value_size);
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/**
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* Disables any further creation of spaces until the next full device
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* reset (as in factory reset, not reboot). Subsequent calls to
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* NV_CreateSpace should return NV_RESULT_OPERATION_DISABLED.
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*
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* device - The nvram_device instance.
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*/
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nvram_result_t (*disable_create)(const struct nvram_device* device);
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/**
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* Writes the contents of a space. If the space is configured with
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* NV_CONTROL_WRITE_EXTEND then the input data is used to extend the
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* current data.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* buffer - The data to write.
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* buffer_size - The number of bytes in |buffer|. If this is less
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* than the size of the space, the remaining bytes
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* will be set to 0x00. If this is more than the size
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* of the space, returns NV_RESULT_INVALID_PARAMETER.
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* authorization_value - If the space has the
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* NV_CONTROL_WRITE_AUTHORIZATION policy,
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* then this parameter provides the
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* authorization value. Otherwise, this value
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* is ignored and may be NULL.
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* authorization_value_size - The number of bytes in
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* |authorization_value|.
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*/
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nvram_result_t (*write_space)(const struct nvram_device* device,
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uint32_t index, const uint8_t* buffer,
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uint64_t buffer_size,
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const uint8_t* authorization_value,
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uint32_t authorization_value_size);
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/**
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* Reads the contents of a space. If the space has never been
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* written, all bytes read will be 0x00.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* num_bytes_to_read - The number of bytes to read; |buffer| must
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* be large enough to hold this many bytes. If
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* this is more than the size of the space, the
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* entire space is read. If this is less than
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* the size of the space, the first bytes in
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* the space are read.
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* authorization_value - If the space has the
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* NV_CONTROL_READ_AUTHORIZATION policy, then
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* this parameter provides the authorization
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* value. Otherwise, this value is ignored
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* and may be NULL.
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* authorization_value_size - The number of bytes in
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* |authorization_value|.
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* buffer - Receives the data read from the space. Must be at least
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* |num_bytes_to_read| bytes in size.
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* bytes_read - The number of bytes read. If NV_RESULT_SUCCESS is
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* returned this will be set to the smaller of
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* |num_bytes_to_read| or the size of the space.
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*/
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nvram_result_t (*read_space)(const struct nvram_device* device,
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uint32_t index, uint64_t num_bytes_to_read,
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const uint8_t* authorization_value,
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uint32_t authorization_value_size,
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uint8_t* buffer, uint64_t* bytes_read);
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/**
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* Enables a write lock for the given space according to its policy.
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* If the space does not have NV_CONTROL_PERSISTENT_WRITE_LOCK or
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* NV_CONTROL_BOOT_WRITE_LOCK set then this function has no effect
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* and may return an error.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* authorization_value - If the space has the
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* NV_CONTROL_WRITE_AUTHORIZATION policy,
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* then this parameter provides the
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* authorization value. Otherwise, this value
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* is ignored and may be NULL.
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* authorization_value_size - The number of bytes in
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* |authorization_value|.
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*/
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nvram_result_t (*enable_write_lock)(const struct nvram_device* device,
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uint32_t index,
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const uint8_t* authorization_value,
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uint32_t authorization_value_size);
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/**
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* Enables a read lock for the given space according to its policy.
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* If the space does not have NV_CONTROL_BOOT_READ_LOCK set then this
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* function has no effect and may return an error.
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*
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* device - The nvram_device instance.
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* index - The space index.
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* authorization_value - If the space has the
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* NV_CONTROL_READ_AUTHORIZATION policy, then
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* this parameter provides the authorization
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* value. (Note that there is no requirement
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* for write access in order to lock for
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* reading. A read lock is always volatile.)
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* Otherwise, this value is ignored and may
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* be NULL.
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* authorization_value_size - The number of bytes in
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* |authorization_value|.
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*/
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nvram_result_t (*enable_read_lock)(const struct nvram_device* device,
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uint32_t index,
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const uint8_t* authorization_value,
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uint32_t authorization_value_size);
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};
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typedef struct nvram_device nvram_device_t;
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/* Convenience API for opening and closing nvram devices. */
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static inline int nvram_open(const struct hw_module_t* module,
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nvram_device_t** device) {
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return module->methods->open(module, NVRAM_HARDWARE_DEVICE_ID,
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(struct hw_device_t**)device);
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}
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static inline int nvram_close(nvram_device_t* device) {
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return device->common.close(&device->common);
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}
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__END_DECLS
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#endif // ANDROID_HARDWARE_NVRAM_H
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