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329 lines
10 KiB
329 lines
10 KiB
/* |
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* Copyright 2016 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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#define LOG_TAG "Gralloc1Allocator" |
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#include "Gralloc1Allocator.h" |
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#include "GrallocBufferDescriptor.h" |
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#include <vector> |
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#include <string.h> |
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#include <log/log.h> |
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namespace android { |
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namespace hardware { |
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namespace graphics { |
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namespace allocator { |
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namespace V2_0 { |
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namespace implementation { |
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using android::hardware::graphics::common::V1_0::BufferUsage; |
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using android::hardware::graphics::mapper::V2_0::implementation:: |
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grallocDecodeBufferDescriptor; |
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Gralloc1Allocator::Gralloc1Allocator(const hw_module_t* module) |
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: mDevice(nullptr), mCapabilities(), mDispatch() { |
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int result = gralloc1_open(module, &mDevice); |
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if (result) { |
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LOG_ALWAYS_FATAL("failed to open gralloc1 device: %s", |
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strerror(-result)); |
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} |
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initCapabilities(); |
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initDispatch(); |
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} |
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Gralloc1Allocator::~Gralloc1Allocator() { |
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gralloc1_close(mDevice); |
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} |
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void Gralloc1Allocator::initCapabilities() { |
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uint32_t count = 0; |
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mDevice->getCapabilities(mDevice, &count, nullptr); |
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std::vector<int32_t> capabilities(count); |
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mDevice->getCapabilities(mDevice, &count, capabilities.data()); |
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capabilities.resize(count); |
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for (auto capability : capabilities) { |
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if (capability == GRALLOC1_CAPABILITY_LAYERED_BUFFERS) { |
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mCapabilities.layeredBuffers = true; |
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break; |
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} |
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} |
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} |
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template <typename T> |
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void Gralloc1Allocator::initDispatch(gralloc1_function_descriptor_t desc, |
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T* outPfn) { |
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auto pfn = mDevice->getFunction(mDevice, desc); |
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if (!pfn) { |
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LOG_ALWAYS_FATAL("failed to get gralloc1 function %d", desc); |
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} |
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*outPfn = reinterpret_cast<T>(pfn); |
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} |
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void Gralloc1Allocator::initDispatch() { |
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initDispatch(GRALLOC1_FUNCTION_DUMP, &mDispatch.dump); |
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initDispatch(GRALLOC1_FUNCTION_CREATE_DESCRIPTOR, |
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&mDispatch.createDescriptor); |
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initDispatch(GRALLOC1_FUNCTION_DESTROY_DESCRIPTOR, |
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&mDispatch.destroyDescriptor); |
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initDispatch(GRALLOC1_FUNCTION_SET_DIMENSIONS, &mDispatch.setDimensions); |
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initDispatch(GRALLOC1_FUNCTION_SET_FORMAT, &mDispatch.setFormat); |
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if (mCapabilities.layeredBuffers) { |
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initDispatch(GRALLOC1_FUNCTION_SET_LAYER_COUNT, |
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&mDispatch.setLayerCount); |
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} |
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initDispatch(GRALLOC1_FUNCTION_SET_CONSUMER_USAGE, |
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&mDispatch.setConsumerUsage); |
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initDispatch(GRALLOC1_FUNCTION_SET_PRODUCER_USAGE, |
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&mDispatch.setProducerUsage); |
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initDispatch(GRALLOC1_FUNCTION_GET_STRIDE, &mDispatch.getStride); |
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initDispatch(GRALLOC1_FUNCTION_ALLOCATE, &mDispatch.allocate); |
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initDispatch(GRALLOC1_FUNCTION_RELEASE, &mDispatch.release); |
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} |
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Return<void> Gralloc1Allocator::dumpDebugInfo(dumpDebugInfo_cb hidl_cb) { |
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uint32_t len = 0; |
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mDispatch.dump(mDevice, &len, nullptr); |
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std::vector<char> buf(len + 1); |
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mDispatch.dump(mDevice, &len, buf.data()); |
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buf.resize(len + 1); |
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buf[len] = '\0'; |
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hidl_string reply; |
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reply.setToExternal(buf.data(), len); |
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hidl_cb(reply); |
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return Void(); |
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} |
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Return<void> Gralloc1Allocator::allocate(const BufferDescriptor& descriptor, |
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uint32_t count, allocate_cb hidl_cb) { |
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IMapper::BufferDescriptorInfo descriptorInfo; |
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if (!grallocDecodeBufferDescriptor(descriptor, &descriptorInfo)) { |
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hidl_cb(Error::BAD_DESCRIPTOR, 0, hidl_vec<hidl_handle>()); |
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return Void(); |
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} |
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gralloc1_buffer_descriptor_t desc; |
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Error error = createDescriptor(descriptorInfo, &desc); |
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if (error != Error::NONE) { |
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hidl_cb(error, 0, hidl_vec<hidl_handle>()); |
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return Void(); |
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} |
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uint32_t stride = 0; |
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std::vector<hidl_handle> buffers; |
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buffers.reserve(count); |
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// allocate the buffers |
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for (uint32_t i = 0; i < count; i++) { |
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buffer_handle_t tmpBuffer; |
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uint32_t tmpStride; |
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error = allocateOne(desc, &tmpBuffer, &tmpStride); |
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if (error != Error::NONE) { |
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break; |
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} |
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if (stride == 0) { |
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stride = tmpStride; |
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} else if (stride != tmpStride) { |
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// non-uniform strides |
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mDispatch.release(mDevice, tmpBuffer); |
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stride = 0; |
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error = Error::UNSUPPORTED; |
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break; |
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} |
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buffers.emplace_back(hidl_handle(tmpBuffer)); |
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} |
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mDispatch.destroyDescriptor(mDevice, desc); |
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// return the buffers |
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hidl_vec<hidl_handle> hidl_buffers; |
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if (error == Error::NONE) { |
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hidl_buffers.setToExternal(buffers.data(), buffers.size()); |
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} |
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hidl_cb(error, stride, hidl_buffers); |
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// free the buffers |
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for (const auto& buffer : buffers) { |
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mDispatch.release(mDevice, buffer.getNativeHandle()); |
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} |
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return Void(); |
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} |
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Error Gralloc1Allocator::toError(int32_t error) { |
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switch (error) { |
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case GRALLOC1_ERROR_NONE: |
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return Error::NONE; |
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case GRALLOC1_ERROR_BAD_DESCRIPTOR: |
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return Error::BAD_DESCRIPTOR; |
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case GRALLOC1_ERROR_BAD_HANDLE: |
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return Error::BAD_BUFFER; |
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case GRALLOC1_ERROR_BAD_VALUE: |
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return Error::BAD_VALUE; |
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case GRALLOC1_ERROR_NOT_SHARED: |
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return Error::NONE; // this is fine |
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case GRALLOC1_ERROR_NO_RESOURCES: |
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return Error::NO_RESOURCES; |
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case GRALLOC1_ERROR_UNDEFINED: |
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case GRALLOC1_ERROR_UNSUPPORTED: |
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default: |
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return Error::UNSUPPORTED; |
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} |
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} |
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uint64_t Gralloc1Allocator::toProducerUsage(uint64_t usage) { |
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// this is potentially broken as we have no idea which private flags |
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// should be filtered out |
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uint64_t producerUsage = |
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usage & |
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~static_cast<uint64_t>(BufferUsage::CPU_READ_MASK | BufferUsage::CPU_WRITE_MASK | |
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BufferUsage::GPU_DATA_BUFFER); |
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switch (usage & BufferUsage::CPU_WRITE_MASK) { |
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case static_cast<uint64_t>(BufferUsage::CPU_WRITE_RARELY): |
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producerUsage |= GRALLOC1_PRODUCER_USAGE_CPU_WRITE; |
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break; |
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case static_cast<uint64_t>(BufferUsage::CPU_WRITE_OFTEN): |
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producerUsage |= GRALLOC1_PRODUCER_USAGE_CPU_WRITE_OFTEN; |
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break; |
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default: |
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break; |
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} |
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switch (usage & BufferUsage::CPU_READ_MASK) { |
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case static_cast<uint64_t>(BufferUsage::CPU_READ_RARELY): |
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producerUsage |= GRALLOC1_PRODUCER_USAGE_CPU_READ; |
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break; |
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case static_cast<uint64_t>(BufferUsage::CPU_READ_OFTEN): |
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producerUsage |= GRALLOC1_PRODUCER_USAGE_CPU_READ_OFTEN; |
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break; |
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default: |
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break; |
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} |
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// BufferUsage::GPU_DATA_BUFFER is always filtered out |
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return producerUsage; |
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} |
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uint64_t Gralloc1Allocator::toConsumerUsage(uint64_t usage) { |
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// this is potentially broken as we have no idea which private flags |
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// should be filtered out |
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uint64_t consumerUsage = |
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usage & |
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~static_cast<uint64_t>(BufferUsage::CPU_READ_MASK | BufferUsage::CPU_WRITE_MASK | |
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BufferUsage::SENSOR_DIRECT_DATA | BufferUsage::GPU_DATA_BUFFER); |
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switch (usage & BufferUsage::CPU_READ_MASK) { |
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case static_cast<uint64_t>(BufferUsage::CPU_READ_RARELY): |
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consumerUsage |= GRALLOC1_CONSUMER_USAGE_CPU_READ; |
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break; |
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case static_cast<uint64_t>(BufferUsage::CPU_READ_OFTEN): |
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consumerUsage |= GRALLOC1_CONSUMER_USAGE_CPU_READ_OFTEN; |
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break; |
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default: |
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break; |
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} |
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// BufferUsage::SENSOR_DIRECT_DATA is always filtered out |
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if (usage & BufferUsage::GPU_DATA_BUFFER) { |
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consumerUsage |= GRALLOC1_CONSUMER_USAGE_GPU_DATA_BUFFER; |
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} |
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return consumerUsage; |
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} |
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Error Gralloc1Allocator::createDescriptor( |
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const IMapper::BufferDescriptorInfo& info, |
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gralloc1_buffer_descriptor_t* outDescriptor) { |
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gralloc1_buffer_descriptor_t descriptor; |
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int32_t error = mDispatch.createDescriptor(mDevice, &descriptor); |
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if (error == GRALLOC1_ERROR_NONE) { |
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error = mDispatch.setDimensions(mDevice, descriptor, info.width, |
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info.height); |
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} |
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if (error == GRALLOC1_ERROR_NONE) { |
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error = mDispatch.setFormat(mDevice, descriptor, |
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static_cast<int32_t>(info.format)); |
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} |
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if (error == GRALLOC1_ERROR_NONE) { |
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if (mCapabilities.layeredBuffers) { |
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error = |
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mDispatch.setLayerCount(mDevice, descriptor, info.layerCount); |
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} else if (info.layerCount > 1) { |
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error = GRALLOC1_ERROR_UNSUPPORTED; |
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} |
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} |
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if (error == GRALLOC1_ERROR_NONE) { |
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error = mDispatch.setProducerUsage(mDevice, descriptor, |
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toProducerUsage(info.usage)); |
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} |
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if (error == GRALLOC1_ERROR_NONE) { |
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error = mDispatch.setConsumerUsage(mDevice, descriptor, |
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toConsumerUsage(info.usage)); |
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} |
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if (error == GRALLOC1_ERROR_NONE) { |
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*outDescriptor = descriptor; |
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} else { |
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mDispatch.destroyDescriptor(mDevice, descriptor); |
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} |
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return toError(error); |
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} |
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Error Gralloc1Allocator::allocateOne(gralloc1_buffer_descriptor_t descriptor, |
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buffer_handle_t* outBuffer, |
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uint32_t* outStride) { |
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buffer_handle_t buffer = nullptr; |
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int32_t error = mDispatch.allocate(mDevice, 1, &descriptor, &buffer); |
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if (error != GRALLOC1_ERROR_NONE && error != GRALLOC1_ERROR_NOT_SHARED) { |
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return toError(error); |
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} |
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uint32_t stride = 0; |
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error = mDispatch.getStride(mDevice, buffer, &stride); |
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if (error != GRALLOC1_ERROR_NONE && error != GRALLOC1_ERROR_UNDEFINED) { |
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mDispatch.release(mDevice, buffer); |
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return toError(error); |
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} |
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*outBuffer = buffer; |
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*outStride = stride; |
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return Error::NONE; |
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} |
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} // namespace implementation |
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} // namespace V2_0 |
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} // namespace allocator |
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} // namespace graphics |
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} // namespace hardware |
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} // namespace android
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