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327 lines
12 KiB
327 lines
12 KiB
/*
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* Copyright (C) 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 "EffectHalHidl"
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//#define LOG_NDEBUG 0
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#include <hwbinder/IPCThreadState.h>
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#include <media/EffectsFactoryApi.h>
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#include <utils/Log.h>
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#include "ConversionHelperHidl.h"
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#include "EffectBufferHalHidl.h"
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#include "EffectHalHidl.h"
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#include "HidlUtils.h"
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using ::android::hardware::audio::effect::V2_0::AudioBuffer;
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using ::android::hardware::audio::effect::V2_0::EffectBufferAccess;
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using ::android::hardware::audio::effect::V2_0::EffectConfigParameters;
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using ::android::hardware::audio::effect::V2_0::MessageQueueFlagBits;
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using ::android::hardware::audio::effect::V2_0::Result;
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using ::android::hardware::audio::common::V2_0::AudioChannelMask;
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using ::android::hardware::audio::common::V2_0::AudioFormat;
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using ::android::hardware::hidl_vec;
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using ::android::hardware::MQDescriptorSync;
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using ::android::hardware::Return;
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namespace android {
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EffectHalHidl::EffectHalHidl(const sp<IEffect>& effect, uint64_t effectId)
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: mEffect(effect), mEffectId(effectId), mBuffersChanged(true) {
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}
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EffectHalHidl::~EffectHalHidl() {
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if (mEffect != 0) {
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close();
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mEffect.clear();
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hardware::IPCThreadState::self()->flushCommands();
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}
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}
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// static
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void EffectHalHidl::effectDescriptorToHal(
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const EffectDescriptor& descriptor, effect_descriptor_t* halDescriptor) {
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HidlUtils::uuidToHal(descriptor.type, &halDescriptor->type);
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HidlUtils::uuidToHal(descriptor.uuid, &halDescriptor->uuid);
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halDescriptor->flags = static_cast<uint32_t>(descriptor.flags);
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halDescriptor->cpuLoad = descriptor.cpuLoad;
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halDescriptor->memoryUsage = descriptor.memoryUsage;
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memcpy(halDescriptor->name, descriptor.name.data(), descriptor.name.size());
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memcpy(halDescriptor->implementor,
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descriptor.implementor.data(), descriptor.implementor.size());
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}
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// TODO(mnaganov): These buffer conversion functions should be shared with Effect wrapper
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// via HidlUtils. Move them there when hardware/interfaces will get un-frozen again.
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// static
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void EffectHalHidl::effectBufferConfigFromHal(
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const buffer_config_t& halConfig, EffectBufferConfig* config) {
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config->samplingRateHz = halConfig.samplingRate;
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config->channels = AudioChannelMask(halConfig.channels);
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config->format = AudioFormat(halConfig.format);
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config->accessMode = EffectBufferAccess(halConfig.accessMode);
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config->mask = EffectConfigParameters(halConfig.mask);
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}
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// static
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void EffectHalHidl::effectBufferConfigToHal(
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const EffectBufferConfig& config, buffer_config_t* halConfig) {
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halConfig->buffer.frameCount = 0;
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halConfig->buffer.raw = NULL;
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halConfig->samplingRate = config.samplingRateHz;
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halConfig->channels = static_cast<uint32_t>(config.channels);
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halConfig->bufferProvider.cookie = NULL;
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halConfig->bufferProvider.getBuffer = NULL;
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halConfig->bufferProvider.releaseBuffer = NULL;
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halConfig->format = static_cast<uint8_t>(config.format);
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halConfig->accessMode = static_cast<uint8_t>(config.accessMode);
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halConfig->mask = static_cast<uint8_t>(config.mask);
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}
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// static
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void EffectHalHidl::effectConfigFromHal(const effect_config_t& halConfig, EffectConfig* config) {
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effectBufferConfigFromHal(halConfig.inputCfg, &config->inputCfg);
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effectBufferConfigFromHal(halConfig.outputCfg, &config->outputCfg);
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}
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// static
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void EffectHalHidl::effectConfigToHal(const EffectConfig& config, effect_config_t* halConfig) {
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effectBufferConfigToHal(config.inputCfg, &halConfig->inputCfg);
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effectBufferConfigToHal(config.outputCfg, &halConfig->outputCfg);
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}
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// static
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status_t EffectHalHidl::analyzeResult(const Result& result) {
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switch (result) {
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case Result::OK: return OK;
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case Result::INVALID_ARGUMENTS: return BAD_VALUE;
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case Result::INVALID_STATE: return NOT_ENOUGH_DATA;
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case Result::NOT_INITIALIZED: return NO_INIT;
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case Result::NOT_SUPPORTED: return INVALID_OPERATION;
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case Result::RESULT_TOO_BIG: return NO_MEMORY;
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default: return NO_INIT;
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}
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}
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status_t EffectHalHidl::setInBuffer(const sp<EffectBufferHalInterface>& buffer) {
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if (mInBuffer == 0 || buffer->audioBuffer() != mInBuffer->audioBuffer()) {
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mBuffersChanged = true;
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}
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mInBuffer = buffer;
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return OK;
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}
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status_t EffectHalHidl::setOutBuffer(const sp<EffectBufferHalInterface>& buffer) {
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if (mOutBuffer == 0 || buffer->audioBuffer() != mOutBuffer->audioBuffer()) {
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mBuffersChanged = true;
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}
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mOutBuffer = buffer;
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return OK;
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}
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status_t EffectHalHidl::process() {
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return processImpl(static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_PROCESS));
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}
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status_t EffectHalHidl::processReverse() {
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return processImpl(static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_PROCESS_REVERSE));
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}
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status_t EffectHalHidl::prepareForProcessing() {
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std::unique_ptr<StatusMQ> tempStatusMQ;
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Result retval;
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Return<void> ret = mEffect->prepareForProcessing(
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[&](Result r, const MQDescriptorSync<Result>& statusMQ) {
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retval = r;
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if (retval == Result::OK) {
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tempStatusMQ.reset(new StatusMQ(statusMQ));
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if (tempStatusMQ->isValid() && tempStatusMQ->getEventFlagWord()) {
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EventFlag::createEventFlag(tempStatusMQ->getEventFlagWord(), &mEfGroup);
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}
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}
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});
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if (!ret.isOk() || retval != Result::OK) {
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return ret.isOk() ? analyzeResult(retval) : FAILED_TRANSACTION;
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}
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if (!tempStatusMQ || !tempStatusMQ->isValid() || !mEfGroup) {
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ALOGE_IF(!tempStatusMQ, "Failed to obtain status message queue for effects");
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ALOGE_IF(tempStatusMQ && !tempStatusMQ->isValid(),
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"Status message queue for effects is invalid");
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ALOGE_IF(!mEfGroup, "Event flag creation for effects failed");
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return NO_INIT;
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}
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mStatusMQ = std::move(tempStatusMQ);
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return OK;
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}
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bool EffectHalHidl::needToResetBuffers() {
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if (mBuffersChanged) return true;
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bool inBufferFrameCountUpdated = mInBuffer->checkFrameCountChange();
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bool outBufferFrameCountUpdated = mOutBuffer->checkFrameCountChange();
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return inBufferFrameCountUpdated || outBufferFrameCountUpdated;
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}
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status_t EffectHalHidl::processImpl(uint32_t mqFlag) {
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if (mEffect == 0 || mInBuffer == 0 || mOutBuffer == 0) return NO_INIT;
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status_t status;
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if (!mStatusMQ && (status = prepareForProcessing()) != OK) {
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return status;
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}
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if (needToResetBuffers() && (status = setProcessBuffers()) != OK) {
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return status;
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}
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// The data is already in the buffers, just need to flush it and wake up the server side.
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std::atomic_thread_fence(std::memory_order_release);
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mEfGroup->wake(mqFlag);
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uint32_t efState = 0;
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retry:
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status_t ret = mEfGroup->wait(
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static_cast<uint32_t>(MessageQueueFlagBits::DONE_PROCESSING), &efState);
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if (efState & static_cast<uint32_t>(MessageQueueFlagBits::DONE_PROCESSING)) {
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Result retval = Result::NOT_INITIALIZED;
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mStatusMQ->read(&retval);
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if (retval == Result::OK || retval == Result::INVALID_STATE) {
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// Sync back the changed contents of the buffer.
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std::atomic_thread_fence(std::memory_order_acquire);
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}
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return analyzeResult(retval);
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}
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if (ret == -EAGAIN || ret == -EINTR) {
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// Spurious wakeup. This normally retries no more than once.
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goto retry;
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}
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return ret;
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}
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status_t EffectHalHidl::setProcessBuffers() {
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Return<Result> ret = mEffect->setProcessBuffers(
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static_cast<EffectBufferHalHidl*>(mInBuffer.get())->hidlBuffer(),
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static_cast<EffectBufferHalHidl*>(mOutBuffer.get())->hidlBuffer());
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if (ret.isOk() && ret == Result::OK) {
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mBuffersChanged = false;
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return OK;
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}
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return ret.isOk() ? analyzeResult(ret) : FAILED_TRANSACTION;
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}
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status_t EffectHalHidl::command(uint32_t cmdCode, uint32_t cmdSize, void *pCmdData,
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uint32_t *replySize, void *pReplyData) {
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if (mEffect == 0) return NO_INIT;
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// Special cases.
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if (cmdCode == EFFECT_CMD_SET_CONFIG || cmdCode == EFFECT_CMD_SET_CONFIG_REVERSE) {
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return setConfigImpl(cmdCode, cmdSize, pCmdData, replySize, pReplyData);
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} else if (cmdCode == EFFECT_CMD_GET_CONFIG || cmdCode == EFFECT_CMD_GET_CONFIG_REVERSE) {
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return getConfigImpl(cmdCode, replySize, pReplyData);
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}
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// Common case.
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hidl_vec<uint8_t> hidlData;
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if (pCmdData != nullptr && cmdSize > 0) {
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hidlData.setToExternal(reinterpret_cast<uint8_t*>(pCmdData), cmdSize);
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}
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status_t status;
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uint32_t replySizeStub = 0;
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if (replySize == nullptr || pReplyData == nullptr) replySize = &replySizeStub;
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Return<void> ret = mEffect->command(cmdCode, hidlData, *replySize,
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[&](int32_t s, const hidl_vec<uint8_t>& result) {
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status = s;
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if (status == 0) {
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if (*replySize > result.size()) *replySize = result.size();
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if (pReplyData != nullptr && *replySize > 0) {
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memcpy(pReplyData, &result[0], *replySize);
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}
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}
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});
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return ret.isOk() ? status : FAILED_TRANSACTION;
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}
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status_t EffectHalHidl::getDescriptor(effect_descriptor_t *pDescriptor) {
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if (mEffect == 0) return NO_INIT;
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Result retval = Result::NOT_INITIALIZED;
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Return<void> ret = mEffect->getDescriptor(
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[&](Result r, const EffectDescriptor& result) {
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retval = r;
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if (retval == Result::OK) {
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effectDescriptorToHal(result, pDescriptor);
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}
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});
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return ret.isOk() ? analyzeResult(retval) : FAILED_TRANSACTION;
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}
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status_t EffectHalHidl::close() {
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if (mEffect == 0) return NO_INIT;
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Return<Result> ret = mEffect->close();
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return ret.isOk() ? analyzeResult(ret) : FAILED_TRANSACTION;
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}
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status_t EffectHalHidl::getConfigImpl(
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uint32_t cmdCode, uint32_t *replySize, void *pReplyData) {
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if (replySize == NULL || *replySize != sizeof(effect_config_t) || pReplyData == NULL) {
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return BAD_VALUE;
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}
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status_t result = FAILED_TRANSACTION;
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Return<void> ret;
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if (cmdCode == EFFECT_CMD_GET_CONFIG) {
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ret = mEffect->getConfig([&] (Result r, const EffectConfig &hidlConfig) {
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result = analyzeResult(r);
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if (r == Result::OK) {
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effectConfigToHal(hidlConfig, static_cast<effect_config_t*>(pReplyData));
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}
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});
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} else {
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ret = mEffect->getConfigReverse([&] (Result r, const EffectConfig &hidlConfig) {
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result = analyzeResult(r);
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if (r == Result::OK) {
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effectConfigToHal(hidlConfig, static_cast<effect_config_t*>(pReplyData));
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}
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});
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}
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if (!ret.isOk()) {
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result = FAILED_TRANSACTION;
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}
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return result;
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}
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status_t EffectHalHidl::setConfigImpl(
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uint32_t cmdCode, uint32_t cmdSize, void *pCmdData, uint32_t *replySize, void *pReplyData) {
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if (pCmdData == NULL || cmdSize != sizeof(effect_config_t) ||
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replySize == NULL || *replySize != sizeof(int32_t) || pReplyData == NULL) {
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return BAD_VALUE;
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}
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const effect_config_t *halConfig = static_cast<effect_config_t*>(pCmdData);
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if (halConfig->inputCfg.bufferProvider.getBuffer != NULL ||
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halConfig->inputCfg.bufferProvider.releaseBuffer != NULL ||
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halConfig->outputCfg.bufferProvider.getBuffer != NULL ||
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halConfig->outputCfg.bufferProvider.releaseBuffer != NULL) {
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ALOGE("Buffer provider callbacks are not supported");
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}
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EffectConfig hidlConfig;
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effectConfigFromHal(*halConfig, &hidlConfig);
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Return<Result> ret = cmdCode == EFFECT_CMD_SET_CONFIG ?
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mEffect->setConfig(hidlConfig, nullptr, nullptr) :
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mEffect->setConfigReverse(hidlConfig, nullptr, nullptr);
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status_t result = FAILED_TRANSACTION;
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if (ret.isOk()) {
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result = analyzeResult(ret);
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*static_cast<int32_t*>(pReplyData) = result;
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}
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return result;
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}
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} // namespace android
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