/*
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* Copyright (C) 2019-2020 RockChip Limited. All rights reserved.
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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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/* --------------------------------------------------------------------------------------------------------
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* File: platform_gralloc4.c
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*
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* Desc: 具体实现 platform_gralloc4.h 定义的接口, 基于 IMapper 4.0.
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*
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* -----------------------------------------------------------------------------------
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* < 习语 和 缩略语 > :
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*
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* -----------------------------------------------------------------------------------
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* < 内部模块 or 对象的层次结构 > :
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*
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* -----------------------------------------------------------------------------------
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* < 功能实现的基本流程 > :
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*
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* -----------------------------------------------------------------------------------
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* < 关键标识符 > :
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*
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* -----------------------------------------------------------------------------------
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* < 本模块实现依赖的外部模块 > :
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* ...
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* -----------------------------------------------------------------------------------
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* Note:
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*
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* Author: ChenZhen
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*
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* Log:
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* init
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----Fri Aug 28 10:17:46 2020
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*/
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/* ---------------------------------------------------------------------------------------------------------
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* Include Files
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* ---------------------------------------------------------------------------------------------------------
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*/
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#ifdef LOG_TAG
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#undef LOG_TAG
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#define LOG_TAG "platform_gralloc4"
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#endif
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#define ENABLE_DEBUG_LOG
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#include <custom_log.h>
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#include <sync/sync.h>
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#include <drm_fourcc.h>
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#ifdef ANDROID_12
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#include <hardware/hardware_rockchip.h>
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#endif
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#include "platform_gralloc4.h"
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#include <android/hardware/graphics/mapper/4.0/IMapper.h>
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#include <gralloctypes/Gralloc4.h>
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// #include <aidl/arm/graphics/ArmMetadataType.h>
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using android::hardware::graphics::mapper::V4_0::Error;
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using android::hardware::graphics::mapper::V4_0::IMapper;
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using android::hardware::hidl_vec;
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using android::gralloc4::MetadataType_PlaneLayouts;
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using android::gralloc4::decodePlaneLayouts;
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using android::gralloc4::MetadataType_Usage;
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using android::gralloc4::decodeUsage;
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using android::gralloc4::MetadataType_PlaneLayouts;
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using android::gralloc4::decodePlaneLayouts;
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using android::gralloc4::MetadataType_PixelFormatFourCC;
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using android::gralloc4::decodePixelFormatFourCC;
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using android::gralloc4::MetadataType_PixelFormatModifier;
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using android::gralloc4::decodePixelFormatModifier;
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using android::gralloc4::MetadataType_PixelFormatRequested;
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using android::gralloc4::decodePixelFormatRequested;
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using android::gralloc4::MetadataType_AllocationSize;
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using android::gralloc4::decodeAllocationSize;
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using android::gralloc4::MetadataType_LayerCount;
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using android::gralloc4::decodeLayerCount;
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using android::gralloc4::MetadataType_Dataspace;
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using android::gralloc4::decodeDataspace;
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using android::gralloc4::MetadataType_Crop;
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using android::gralloc4::decodeCrop;
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using android::gralloc4::MetadataType_Width;
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using android::gralloc4::decodeWidth;
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using android::gralloc4::MetadataType_Height;
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using android::gralloc4::decodeHeight;
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using aidl::android::hardware::graphics::common::Dataspace;
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using aidl::android::hardware::graphics::common::PlaneLayout;
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using aidl::android::hardware::graphics::common::ExtendableType;
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using aidl::android::hardware::graphics::common::PlaneLayout;
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using aidl::android::hardware::graphics::common::Rect;
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using android::hardware::graphics::common::V1_2::PixelFormat;
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#define GRALLOC_ARM_METADATA_TYPE_NAME "arm.graphics.ArmMetadataType"
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const static IMapper::MetadataType ArmMetadataType_PLANE_FDS
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{
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GRALLOC_ARM_METADATA_TYPE_NAME,
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// static_cast<int64_t>(aidl::arm::graphics::ArmMetadataType::PLANE_FDS)
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1 // 就是上面的 'PLANE_FDS'
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};
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/* ---------------------------------------------------------------------------------------------------------
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* External Function Prototypes (referenced in this file)
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* ---------------------------------------------------------------------------------------------------------
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*/
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/* ---------------------------------------------------------------------------------------------------------
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* Local Macros
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* ---------------------------------------------------------------------------------------------------------
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*/
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namespace gralloc4 {
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/* ---------------------------------------------------------------------------------------------------------
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* Local Typedefs
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* ---------------------------------------------------------------------------------------------------------
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*/
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/* ---------------------------------------------------------------------------------------------------------
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* Local Function Prototypes
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* ---------------------------------------------------------------------------------------------------------
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*/
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/* ---------------------------------------------------------------------------------------------------------
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* Local Variables
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* ---------------------------------------------------------------------------------------------------------
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*/
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static constexpr Error kTransactionError = Error::NO_RESOURCES;
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/* ---------------------------------------------------------------------------------------------------------
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* Global Variables
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* ---------------------------------------------------------------------------------------------------------
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*/
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/* ---------------------------------------------------------------------------------------------------------
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* Local Functions Implementation
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* ---------------------------------------------------------------------------------------------------------
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*/
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static IMapper &get_service()
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{
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static android::sp<IMapper> cached_service = IMapper::getService();
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return *cached_service;
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}
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template <typename T>
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static int get_metadata(IMapper &mapper, buffer_handle_t handle, IMapper::MetadataType type,
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android::status_t (*decode)(const hidl_vec<uint8_t> &, T *), T *value)
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{
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void *handle_arg = const_cast<native_handle_t *>(handle);
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assert(handle_arg);
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assert(value);
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assert(decode);
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int err = 0;
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mapper.get(handle_arg, type, [&err, value, decode](Error error, const hidl_vec<uint8_t> &metadata)
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{
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if (error != Error::NONE)
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{
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err = android::BAD_VALUE;
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return;
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}
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err = decode(metadata, value);
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});
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return err;
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}
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android::status_t static decodeArmPlaneFds(const hidl_vec<uint8_t>& input, std::vector<int64_t>* fds)
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{
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assert (fds != nullptr);
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int64_t size = 0;
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memcpy(&size, input.data(), sizeof(int64_t));
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if (size < 0)
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{
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return android::BAD_VALUE;
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}
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fds->resize(size);
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const uint8_t *tmp = input.data() + sizeof(int64_t);
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memcpy(fds->data(), tmp, sizeof(int64_t) * size);
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return android::NO_ERROR;
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}
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/* ---------------------------------------------------------------------------------------------------------
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* Global Functions Implementation
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* ---------------------------------------------------------------------------------------------------------
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*/
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int get_width(buffer_handle_t handle, uint64_t* width)
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{
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auto &mapper = get_service();
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int err = get_metadata(mapper, handle, MetadataType_Width, decodeWidth, width);
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if (err != android::OK)
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{
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E("err : %d", err);
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}
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return err;
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}
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int get_height(buffer_handle_t handle, uint64_t* height)
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{
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auto &mapper = get_service();
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int err = get_metadata(mapper, handle, MetadataType_Height, decodeHeight, height);
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if (err != android::OK)
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{
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E("err : %d", err);
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}
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return err;
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}
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int get_pixel_stride(buffer_handle_t handle, int* pixel_stride)
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{
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auto &mapper = get_service();
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std::vector<PlaneLayout> layouts;
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int format_requested;
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int err = get_format_requested(handle, &format_requested);
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if (err != android::OK )
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{
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E("err : %d", err);
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return err;
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}
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/* 若 'format_requested' "不是" HAL_PIXEL_FORMAT_YCrCb_NV12_10, 则 ... */
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if ( format_requested != HAL_PIXEL_FORMAT_YCrCb_NV12_10 )
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{
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err = get_metadata(mapper, handle, MetadataType_PlaneLayouts, decodePlaneLayouts, &layouts);
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if (err != android::OK || layouts.size() < 1)
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{
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E("Failed to get plane layouts. err : %d", err);
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return err;
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}
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if ( layouts.size() > 1 )
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{
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W("it's not reasonable to get global pixel_stride of buffer with planes more than 1.");
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}
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*pixel_stride = (layouts[0].widthInSamples);
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}
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/* 否则, 即 'format_requested' "是" HAL_PIXEL_FORMAT_YCrCb_NV12_10, 则 ... */
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else
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{
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uint64_t width;
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int byte_stride;
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err = get_width(handle, &width);
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if (err != android::OK )
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{
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E("err : %d", err);
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return err;
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}
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// .trick : from CSY : 分配 rk_video_decoder 输出 buffers 时, 要求的 byte_stride of buffer in NV12_10, 已经通过 width 传入.
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// 原理上, NV12_10 的 pixel_stride 和 byte_stride 是不同的, 但是这里保留 之前 rk_drm_gralloc 的赋值方式.
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byte_stride = (int)width;
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*pixel_stride = byte_stride;
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}
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return err;
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}
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int get_byte_stride(buffer_handle_t handle, int* byte_stride)
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{
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auto &mapper = get_service();
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std::vector<PlaneLayout> layouts;
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int format_requested;
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int err = get_format_requested(handle, &format_requested);
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if (err != android::OK )
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{
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E("err : %d", err);
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return err;
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}
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/* 若 'format_requested' "不是" HAL_PIXEL_FORMAT_YCrCb_NV12_10, 则 ... */
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if ( format_requested != HAL_PIXEL_FORMAT_YCrCb_NV12_10 )
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{
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err = get_metadata(mapper, handle, MetadataType_PlaneLayouts, decodePlaneLayouts, &layouts);
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if (err != android::OK || layouts.size() < 1)
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{
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E("Failed to get plane layouts. err : %d", err);
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return err;
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}
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if ( layouts.size() > 1 )
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{
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W("it's not reasonable to get global byte_stride of buffer with planes more than 1.");
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}
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*byte_stride = (layouts[0].strideInBytes);
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}
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/* 否则, 即 'format_requested' "是" HAL_PIXEL_FORMAT_YCrCb_NV12_10, 则 ... */
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else
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{
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uint64_t width;
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err = get_width(handle, &width);
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if (err != android::OK )
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{
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E("err : %d", err);
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return err;
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}
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// .KP : from CSY : 分配 rk_video_decoder 输出 buffers 时, 要求的 byte_stride of buffer in NV12_10, 已经通过 width 传入.
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*byte_stride = (int)width;
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}
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return err;
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}
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int get_format_requested(buffer_handle_t handle, int* format_requested)
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{
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auto &mapper = get_service();
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// android::PixelFormat format; // *format_requested
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PixelFormat format; // *format_requested
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int err = get_metadata(mapper, handle, MetadataType_PixelFormatRequested, decodePixelFormatRequested, &format);
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if (err != android::OK)
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{
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E("Failed to get pixel_format_requested. err : %d", err);
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return err;
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}
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*format_requested = (int)format;
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return err;
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}
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int get_usage(buffer_handle_t handle, uint64_t* usage)
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{
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auto &mapper = get_service();
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int err = get_metadata(mapper, handle, MetadataType_Usage, decodeUsage, usage);
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if (err != android::OK)
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{
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E("Failed to get pixel_format_requested. err : %d", err);
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return err;
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}
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return err;
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}
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int get_allocation_size(buffer_handle_t handle, uint64_t* allocation_size)
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{
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auto &mapper = get_service();
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int err = get_metadata(mapper, handle, MetadataType_AllocationSize, decodeAllocationSize, allocation_size);
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if (err != android::OK)
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{
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E("Failed to get allocation_size. err : %d", err);
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return err;
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}
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return err;
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}
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int get_share_fd(buffer_handle_t handle, int* share_fd)
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{
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auto &mapper = get_service();
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std::vector<int64_t> fds;
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int err = get_metadata(mapper, handle, ArmMetadataType_PLANE_FDS, decodeArmPlaneFds, &fds);
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if (err != android::OK)
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{
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E("Failed to get plane_fds. err : %d", err);
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return err;
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}
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assert (fds.size() > 0);
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*share_fd = (int)(fds[0]);
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return err;
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}
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status_t importBuffer(buffer_handle_t rawHandle, buffer_handle_t* outHandle)
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{
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auto &mapper = get_service();
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Error error;
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auto ret = mapper.importBuffer(android::hardware::hidl_handle(rawHandle),
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[&](const auto& tmpError, const auto& tmpBuffer)
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{
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error = tmpError;
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if (error != Error::NONE)
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{
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return;
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}
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*outHandle = static_cast<buffer_handle_t>(tmpBuffer);
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});
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return static_cast<status_t>((ret.isOk()) ? error : kTransactionError);
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}
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void freeBuffer(buffer_handle_t handle)
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{
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auto &mapper = get_service();
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auto buffer = const_cast<native_handle_t*>(handle);
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auto ret = mapper.freeBuffer(buffer);
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auto error = (ret.isOk()) ? static_cast<Error>(ret) : kTransactionError;
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}
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status_t lock(buffer_handle_t bufferHandle,
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uint64_t usage,
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int x,
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int y,
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int w,
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int h,
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void** outData)
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{
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auto &mapper = get_service();
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auto buffer = const_cast<native_handle_t*>(bufferHandle);
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IMapper::Rect accessRegion = {x, y, w, h};
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android::hardware::hidl_handle acquireFenceHandle; // dummy
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Error error;
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auto ret = mapper.lock(buffer,
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usage,
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accessRegion,
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acquireFenceHandle,
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[&](const auto& tmpError, const auto& tmpData) {
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error = tmpError;
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if (error != Error::NONE) {
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return;
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}
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*outData = tmpData;
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});
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error = (ret.isOk()) ? error : kTransactionError;
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ALOGW_IF(error != Error::NONE, "lock(%p, ...) failed: %d", bufferHandle, error);
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return static_cast<status_t>(error);
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}
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void unlock(buffer_handle_t bufferHandle)
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{
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auto &mapper = get_service();
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auto buffer = const_cast<native_handle_t*>(bufferHandle);
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int releaseFence = -1;
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Error error;
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auto ret = mapper.unlock(buffer,
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[&](const auto& tmpError, const auto& tmpReleaseFence)
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{
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error = tmpError;
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if (error != Error::NONE) {
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return;
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}
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auto fenceHandle = tmpReleaseFence.getNativeHandle(); // 预期 unlock() 不会返回有效的 release_fence.
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if (fenceHandle && fenceHandle->numFds == 1)
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{
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E("got unexpected valid fd of release_fence : %d", fenceHandle->data[0]);
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int fd = dup(fenceHandle->data[0]);
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if (fd >= 0) {
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releaseFence = fd;
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} else {
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ALOGD("failed to dup unlock release fence");
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sync_wait(fenceHandle->data[0], -1);
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}
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}
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});
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if (!ret.isOk()) {
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error = kTransactionError;
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}
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if (error != Error::NONE) {
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ALOGE("unlock(%p) failed with %d", buffer, error);
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}
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return;
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}
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} // namespace gralloc4
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