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766 lines
29 KiB
766 lines
29 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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#include <memory.h> |
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#define LOG_TAG "EffectHAL" |
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#define ATRACE_TAG ATRACE_TAG_AUDIO |
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#include <android/log.h> |
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#include <media/EffectsFactoryApi.h> |
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#include <utils/Trace.h> |
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#include "Conversions.h" |
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#include "Effect.h" |
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#include "EffectMap.h" |
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namespace android { |
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namespace hardware { |
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namespace audio { |
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namespace effect { |
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namespace V2_0 { |
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namespace implementation { |
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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::audio::effect::V2_0::MessageQueueFlagBits; |
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namespace { |
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class ProcessThread : public Thread { |
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public: |
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// ProcessThread's lifespan never exceeds Effect's lifespan. |
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ProcessThread(std::atomic<bool>* stop, |
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effect_handle_t effect, |
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std::atomic<audio_buffer_t*>* inBuffer, |
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std::atomic<audio_buffer_t*>* outBuffer, |
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Effect::StatusMQ* statusMQ, |
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EventFlag* efGroup) |
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: Thread(false /*canCallJava*/), |
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mStop(stop), |
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mEffect(effect), |
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mHasProcessReverse((*mEffect)->process_reverse != NULL), |
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mInBuffer(inBuffer), |
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mOutBuffer(outBuffer), |
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mStatusMQ(statusMQ), |
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mEfGroup(efGroup) { |
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} |
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virtual ~ProcessThread() {} |
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private: |
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std::atomic<bool>* mStop; |
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effect_handle_t mEffect; |
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bool mHasProcessReverse; |
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std::atomic<audio_buffer_t*>* mInBuffer; |
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std::atomic<audio_buffer_t*>* mOutBuffer; |
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Effect::StatusMQ* mStatusMQ; |
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EventFlag* mEfGroup; |
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bool threadLoop() override; |
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}; |
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bool ProcessThread::threadLoop() { |
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// This implementation doesn't return control back to the Thread until it decides to stop, |
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// as the Thread uses mutexes, and this can lead to priority inversion. |
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while(!std::atomic_load_explicit(mStop, std::memory_order_acquire)) { |
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uint32_t efState = 0; |
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mEfGroup->wait(static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_PROCESS_ALL), &efState); |
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if (!(efState & static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_PROCESS_ALL)) |
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|| (efState & static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_QUIT))) { |
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continue; // Nothing to do or time to quit. |
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} |
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Result retval = Result::OK; |
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if (efState & static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_PROCESS_REVERSE) |
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&& !mHasProcessReverse) { |
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retval = Result::NOT_SUPPORTED; |
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} |
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if (retval == Result::OK) { |
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// affects both buffer pointers and their contents. |
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std::atomic_thread_fence(std::memory_order_acquire); |
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int32_t processResult; |
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audio_buffer_t* inBuffer = |
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std::atomic_load_explicit(mInBuffer, std::memory_order_relaxed); |
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audio_buffer_t* outBuffer = |
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std::atomic_load_explicit(mOutBuffer, std::memory_order_relaxed); |
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if (inBuffer != nullptr && outBuffer != nullptr) { |
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if (efState & static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_PROCESS)) { |
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processResult = (*mEffect)->process(mEffect, inBuffer, outBuffer); |
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} else { |
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processResult = (*mEffect)->process_reverse(mEffect, inBuffer, outBuffer); |
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} |
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std::atomic_thread_fence(std::memory_order_release); |
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} else { |
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ALOGE("processing buffers were not set before calling 'process'"); |
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processResult = -ENODEV; |
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} |
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switch(processResult) { |
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case 0: retval = Result::OK; break; |
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case -ENODATA: retval = Result::INVALID_STATE; break; |
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case -EINVAL: retval = Result::INVALID_ARGUMENTS; break; |
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default: retval = Result::NOT_INITIALIZED; |
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} |
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} |
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if (!mStatusMQ->write(&retval)) { |
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ALOGW("status message queue write failed"); |
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} |
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mEfGroup->wake(static_cast<uint32_t>(MessageQueueFlagBits::DONE_PROCESSING)); |
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} |
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return false; |
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} |
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} // namespace |
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// static |
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const char *Effect::sContextResultOfCommand = "returned status"; |
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const char *Effect::sContextCallToCommand = "error"; |
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const char *Effect::sContextCallFunction = sContextCallToCommand; |
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Effect::Effect(effect_handle_t handle) |
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: mIsClosed(false), mHandle(handle), mEfGroup(nullptr), mStopProcessThread(false) { |
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} |
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Effect::~Effect() { |
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ATRACE_CALL(); |
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close(); |
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if (mProcessThread.get()) { |
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ATRACE_NAME("mProcessThread->join"); |
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status_t status = mProcessThread->join(); |
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ALOGE_IF(status, "processing thread exit error: %s", strerror(-status)); |
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} |
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if (mEfGroup) { |
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status_t status = EventFlag::deleteEventFlag(&mEfGroup); |
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ALOGE_IF(status, "processing MQ event flag deletion error: %s", strerror(-status)); |
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} |
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mInBuffer.clear(); |
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mOutBuffer.clear(); |
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int status = EffectRelease(mHandle); |
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ALOGW_IF(status, "Error releasing effect %p: %s", mHandle, strerror(-status)); |
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EffectMap::getInstance().remove(mHandle); |
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mHandle = 0; |
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} |
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// static |
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template<typename T> size_t Effect::alignedSizeIn(size_t s) { |
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return (s + sizeof(T) - 1) / sizeof(T); |
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} |
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// static |
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template<typename T> std::unique_ptr<uint8_t[]> Effect::hidlVecToHal( |
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const hidl_vec<T>& vec, uint32_t* halDataSize) { |
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// Due to bugs in HAL, they may attempt to write into the provided |
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// input buffer. The original binder buffer is r/o, thus it is needed |
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// to create a r/w version. |
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*halDataSize = vec.size() * sizeof(T); |
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std::unique_ptr<uint8_t[]> halData(new uint8_t[*halDataSize]); |
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memcpy(&halData[0], &vec[0], *halDataSize); |
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return halData; |
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} |
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// static |
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void Effect::effectAuxChannelsConfigFromHal( |
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const channel_config_t& halConfig, EffectAuxChannelsConfig* config) { |
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config->mainChannels = AudioChannelMask(halConfig.main_channels); |
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config->auxChannels = AudioChannelMask(halConfig.aux_channels); |
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} |
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// static |
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void Effect::effectAuxChannelsConfigToHal( |
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const EffectAuxChannelsConfig& config, channel_config_t* halConfig) { |
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halConfig->main_channels = static_cast<audio_channel_mask_t>(config.mainChannels); |
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halConfig->aux_channels = static_cast<audio_channel_mask_t>(config.auxChannels); |
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} |
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// static |
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void Effect::effectBufferConfigFromHal( |
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const buffer_config_t& halConfig, EffectBufferConfig* config) { |
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config->buffer.id = 0; |
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config->buffer.frameCount = 0; |
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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 Effect::effectBufferConfigToHal(const EffectBufferConfig& config, buffer_config_t* halConfig) { |
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// Note: setting the buffers directly is considered obsolete. They need to be set |
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// using 'setProcessBuffers'. |
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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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// Note: The framework code does not use BP. |
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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 Effect::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 Effect::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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void Effect::effectOffloadParamToHal( |
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const EffectOffloadParameter& offload, effect_offload_param_t* halOffload) { |
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halOffload->isOffload = offload.isOffload; |
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halOffload->ioHandle = offload.ioHandle; |
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} |
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// static |
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std::vector<uint8_t> Effect::parameterToHal( |
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uint32_t paramSize, |
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const void* paramData, |
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uint32_t valueSize, |
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const void** valueData) { |
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size_t valueOffsetFromData = alignedSizeIn<uint32_t>(paramSize) * sizeof(uint32_t); |
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size_t halParamBufferSize = sizeof(effect_param_t) + valueOffsetFromData + valueSize; |
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std::vector<uint8_t> halParamBuffer(halParamBufferSize, 0); |
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effect_param_t *halParam = reinterpret_cast<effect_param_t*>(&halParamBuffer[0]); |
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halParam->psize = paramSize; |
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halParam->vsize = valueSize; |
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memcpy(halParam->data, paramData, paramSize); |
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if (valueData) { |
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if (*valueData) { |
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// Value data is provided. |
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memcpy(halParam->data + valueOffsetFromData, *valueData, valueSize); |
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} else { |
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// The caller needs the pointer to the value data location. |
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*valueData = halParam->data + valueOffsetFromData; |
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} |
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} |
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return halParamBuffer; |
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} |
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Result Effect::analyzeCommandStatus(const char* commandName, const char* context, status_t status) { |
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return analyzeStatus("command", commandName, context, status); |
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} |
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Result Effect::analyzeStatus( |
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const char* funcName, |
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const char* subFuncName, |
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const char* contextDescription, |
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status_t status) { |
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if (status != OK) { |
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ALOGW("Effect %p %s %s %s: %s", |
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mHandle, funcName, subFuncName, contextDescription, strerror(-status)); |
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} |
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switch (status) { |
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case OK: return Result::OK; |
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case -EINVAL: return Result::INVALID_ARGUMENTS; |
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case -ENODATA: return Result::INVALID_STATE; |
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case -ENODEV: return Result::NOT_INITIALIZED; |
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case -ENOMEM: return Result::RESULT_TOO_BIG; |
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case -ENOSYS: return Result::NOT_SUPPORTED; |
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default: return Result::INVALID_STATE; |
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} |
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} |
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void Effect::getConfigImpl(int commandCode, const char* commandName, GetConfigCallback cb) { |
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uint32_t halResultSize = sizeof(effect_config_t); |
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effect_config_t halConfig{}; |
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status_t status = (*mHandle)->command( |
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mHandle, commandCode, 0, NULL, &halResultSize, &halConfig); |
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EffectConfig config; |
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if (status == OK) { |
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effectConfigFromHal(halConfig, &config); |
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} |
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cb(analyzeCommandStatus(commandName, sContextCallToCommand, status), config); |
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} |
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Result Effect::getCurrentConfigImpl( |
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uint32_t featureId, uint32_t configSize, GetCurrentConfigSuccessCallback onSuccess) { |
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uint32_t halCmd = featureId; |
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uint32_t halResult[alignedSizeIn<uint32_t>(sizeof(uint32_t) + configSize)]; |
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memset(halResult, 0, sizeof(halResult)); |
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uint32_t halResultSize = 0; |
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return sendCommandReturningStatusAndData( |
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EFFECT_CMD_GET_FEATURE_CONFIG, "GET_FEATURE_CONFIG", |
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sizeof(uint32_t), &halCmd, |
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&halResultSize, halResult, |
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sizeof(uint32_t), |
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[&]{ onSuccess(&halResult[1]); }); |
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} |
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Result Effect::getParameterImpl( |
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uint32_t paramSize, |
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const void* paramData, |
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uint32_t requestValueSize, |
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uint32_t replyValueSize, |
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GetParameterSuccessCallback onSuccess) { |
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// As it is unknown what method HAL uses for copying the provided parameter data, |
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// it is safer to make sure that input and output buffers do not overlap. |
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std::vector<uint8_t> halCmdBuffer = |
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parameterToHal(paramSize, paramData, requestValueSize, nullptr); |
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const void *valueData = nullptr; |
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std::vector<uint8_t> halParamBuffer = |
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parameterToHal(paramSize, paramData, replyValueSize, &valueData); |
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uint32_t halParamBufferSize = halParamBuffer.size(); |
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return sendCommandReturningStatusAndData( |
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EFFECT_CMD_GET_PARAM, "GET_PARAM", |
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halCmdBuffer.size(), &halCmdBuffer[0], |
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&halParamBufferSize, &halParamBuffer[0], |
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sizeof(effect_param_t), |
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[&]{ |
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effect_param_t *halParam = reinterpret_cast<effect_param_t*>(&halParamBuffer[0]); |
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onSuccess(halParam->vsize, valueData); |
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}); |
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} |
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Result Effect::getSupportedConfigsImpl( |
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uint32_t featureId, |
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uint32_t maxConfigs, |
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uint32_t configSize, |
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GetSupportedConfigsSuccessCallback onSuccess) { |
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uint32_t halCmd[2] = { featureId, maxConfigs }; |
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uint32_t halResultSize = 2 * sizeof(uint32_t) + maxConfigs * sizeof(configSize); |
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uint8_t halResult[halResultSize]; |
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memset(&halResult[0], 0, halResultSize); |
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return sendCommandReturningStatusAndData( |
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EFFECT_CMD_GET_FEATURE_SUPPORTED_CONFIGS, "GET_FEATURE_SUPPORTED_CONFIGS", |
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sizeof(halCmd), halCmd, |
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&halResultSize, &halResult[0], |
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2 * sizeof(uint32_t), |
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[&]{ |
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uint32_t *halResult32 = reinterpret_cast<uint32_t*>(&halResult[0]); |
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uint32_t supportedConfigs = *(++halResult32); // skip status field |
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if (supportedConfigs > maxConfigs) supportedConfigs = maxConfigs; |
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onSuccess(supportedConfigs, ++halResult32); |
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}); |
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} |
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Return<void> Effect::prepareForProcessing(prepareForProcessing_cb _hidl_cb) { |
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status_t status; |
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// Create message queue. |
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if (mStatusMQ) { |
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ALOGE("the client attempts to call prepareForProcessing_cb twice"); |
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_hidl_cb(Result::INVALID_STATE, StatusMQ::Descriptor()); |
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return Void(); |
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} |
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std::unique_ptr<StatusMQ> tempStatusMQ(new StatusMQ(1, true /*EventFlag*/)); |
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if (!tempStatusMQ->isValid()) { |
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ALOGE_IF(!tempStatusMQ->isValid(), "status MQ is invalid"); |
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_hidl_cb(Result::INVALID_ARGUMENTS, StatusMQ::Descriptor()); |
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return Void(); |
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} |
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status = EventFlag::createEventFlag(tempStatusMQ->getEventFlagWord(), &mEfGroup); |
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if (status != OK || !mEfGroup) { |
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ALOGE("failed creating event flag for status MQ: %s", strerror(-status)); |
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_hidl_cb(Result::INVALID_ARGUMENTS, StatusMQ::Descriptor()); |
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return Void(); |
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} |
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// Create and launch the thread. |
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mProcessThread = new ProcessThread( |
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&mStopProcessThread, |
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mHandle, |
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&mHalInBufferPtr, |
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&mHalOutBufferPtr, |
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tempStatusMQ.get(), |
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mEfGroup); |
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status = mProcessThread->run("effect", PRIORITY_URGENT_AUDIO); |
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if (status != OK) { |
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ALOGW("failed to start effect processing thread: %s", strerror(-status)); |
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_hidl_cb(Result::INVALID_ARGUMENTS, MQDescriptorSync<Result>()); |
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return Void(); |
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} |
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mStatusMQ = std::move(tempStatusMQ); |
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_hidl_cb(Result::OK, *mStatusMQ->getDesc()); |
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return Void(); |
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} |
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Return<Result> Effect::setProcessBuffers( |
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const AudioBuffer& inBuffer, const AudioBuffer& outBuffer) { |
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AudioBufferManager& manager = AudioBufferManager::getInstance(); |
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sp<AudioBufferWrapper> tempInBuffer, tempOutBuffer; |
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if (!manager.wrap(inBuffer, &tempInBuffer)) { |
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ALOGE("Could not map memory of the input buffer"); |
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return Result::INVALID_ARGUMENTS; |
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} |
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if (!manager.wrap(outBuffer, &tempOutBuffer)) { |
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ALOGE("Could not map memory of the output buffer"); |
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return Result::INVALID_ARGUMENTS; |
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} |
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mInBuffer = tempInBuffer; |
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mOutBuffer = tempOutBuffer; |
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// The processing thread only reads these pointers after waking up by an event flag, |
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// so it's OK to update the pair non-atomically. |
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mHalInBufferPtr.store(mInBuffer->getHalBuffer(), std::memory_order_release); |
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mHalOutBufferPtr.store(mOutBuffer->getHalBuffer(), std::memory_order_release); |
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return Result::OK; |
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} |
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Result Effect::sendCommand(int commandCode, const char* commandName) { |
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return sendCommand(commandCode, commandName, 0, NULL); |
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} |
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Result Effect::sendCommand( |
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int commandCode, const char* commandName, uint32_t size, void* data) { |
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status_t status = (*mHandle)->command(mHandle, commandCode, size, data, 0, NULL); |
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return analyzeCommandStatus(commandName, sContextCallToCommand, status); |
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} |
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Result Effect::sendCommandReturningData( |
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int commandCode, const char* commandName, |
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uint32_t* replySize, void* replyData) { |
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return sendCommandReturningData(commandCode, commandName, 0, NULL, replySize, replyData); |
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} |
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Result Effect::sendCommandReturningData( |
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int commandCode, const char* commandName, |
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uint32_t size, void* data, |
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uint32_t* replySize, void* replyData) { |
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uint32_t expectedReplySize = *replySize; |
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status_t status = (*mHandle)->command(mHandle, commandCode, size, data, replySize, replyData); |
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if (status == OK && *replySize != expectedReplySize) { |
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status = -ENODATA; |
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} |
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return analyzeCommandStatus(commandName, sContextCallToCommand, status); |
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} |
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Result Effect::sendCommandReturningStatus(int commandCode, const char* commandName) { |
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return sendCommandReturningStatus(commandCode, commandName, 0, NULL); |
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} |
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|
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Result Effect::sendCommandReturningStatus( |
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int commandCode, const char* commandName, uint32_t size, void* data) { |
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uint32_t replyCmdStatus; |
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uint32_t replySize = sizeof(uint32_t); |
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return sendCommandReturningStatusAndData( |
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commandCode, commandName, size, data, &replySize, &replyCmdStatus, replySize, []{}); |
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} |
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|
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Result Effect::sendCommandReturningStatusAndData( |
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int commandCode, const char* commandName, |
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uint32_t size, void* data, |
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uint32_t* replySize, void* replyData, |
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uint32_t minReplySize, |
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CommandSuccessCallback onSuccess) { |
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status_t status = |
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(*mHandle)->command(mHandle, commandCode, size, data, replySize, replyData); |
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Result retval; |
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if (status == OK && minReplySize >= sizeof(uint32_t) && *replySize >= minReplySize) { |
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uint32_t commandStatus = *reinterpret_cast<uint32_t*>(replyData); |
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retval = analyzeCommandStatus(commandName, sContextResultOfCommand, commandStatus); |
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if (commandStatus == OK) { |
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onSuccess(); |
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} |
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} else { |
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retval = analyzeCommandStatus(commandName, sContextCallToCommand, status); |
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} |
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return retval; |
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} |
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|
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Result Effect::setConfigImpl( |
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int commandCode, const char* commandName, |
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const EffectConfig& config, |
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const sp<IEffectBufferProviderCallback>& inputBufferProvider, |
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const sp<IEffectBufferProviderCallback>& outputBufferProvider) { |
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effect_config_t halConfig; |
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effectConfigToHal(config, &halConfig); |
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if (inputBufferProvider != 0) { |
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LOG_FATAL("Using input buffer provider is not supported"); |
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} |
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if (outputBufferProvider != 0) { |
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LOG_FATAL("Using output buffer provider is not supported"); |
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} |
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return sendCommandReturningStatus( |
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commandCode, commandName, sizeof(effect_config_t), &halConfig); |
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} |
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|
|
|
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Result Effect::setParameterImpl( |
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uint32_t paramSize, const void* paramData, uint32_t valueSize, const void* valueData) { |
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std::vector<uint8_t> halParamBuffer = parameterToHal( |
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paramSize, paramData, valueSize, &valueData); |
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return sendCommandReturningStatus( |
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EFFECT_CMD_SET_PARAM, "SET_PARAM", halParamBuffer.size(), &halParamBuffer[0]); |
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} |
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|
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// Methods from ::android::hardware::audio::effect::V2_0::IEffect follow. |
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Return<Result> Effect::init() { |
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return sendCommandReturningStatus(EFFECT_CMD_INIT, "INIT"); |
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} |
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|
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Return<Result> Effect::setConfig( |
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const EffectConfig& config, |
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const sp<IEffectBufferProviderCallback>& inputBufferProvider, |
|
const sp<IEffectBufferProviderCallback>& outputBufferProvider) { |
|
return setConfigImpl( |
|
EFFECT_CMD_SET_CONFIG, "SET_CONFIG", config, inputBufferProvider, outputBufferProvider); |
|
} |
|
|
|
Return<Result> Effect::reset() { |
|
return sendCommand(EFFECT_CMD_RESET, "RESET"); |
|
} |
|
|
|
Return<Result> Effect::enable() { |
|
return sendCommandReturningStatus(EFFECT_CMD_ENABLE, "ENABLE"); |
|
} |
|
|
|
Return<Result> Effect::disable() { |
|
return sendCommandReturningStatus(EFFECT_CMD_DISABLE, "DISABLE"); |
|
} |
|
|
|
Return<Result> Effect::setDevice(AudioDevice device) { |
|
uint32_t halDevice = static_cast<uint32_t>(device); |
|
return sendCommand(EFFECT_CMD_SET_DEVICE, "SET_DEVICE", sizeof(uint32_t), &halDevice); |
|
} |
|
|
|
Return<void> Effect::setAndGetVolume( |
|
const hidl_vec<uint32_t>& volumes, setAndGetVolume_cb _hidl_cb) { |
|
uint32_t halDataSize; |
|
std::unique_ptr<uint8_t[]> halData = hidlVecToHal(volumes, &halDataSize); |
|
uint32_t halResultSize = halDataSize; |
|
uint32_t halResult[volumes.size()]; |
|
Result retval = sendCommandReturningData( |
|
EFFECT_CMD_SET_VOLUME, "SET_VOLUME", |
|
halDataSize, &halData[0], |
|
&halResultSize, halResult); |
|
hidl_vec<uint32_t> result; |
|
if (retval == Result::OK) { |
|
result.setToExternal(&halResult[0], halResultSize); |
|
} |
|
_hidl_cb(retval, result); |
|
return Void(); |
|
} |
|
|
|
Return<Result> Effect::volumeChangeNotification(const hidl_vec<uint32_t>& volumes) { |
|
uint32_t halDataSize; |
|
std::unique_ptr<uint8_t[]> halData = hidlVecToHal(volumes, &halDataSize); |
|
return sendCommand( |
|
EFFECT_CMD_SET_VOLUME, "SET_VOLUME", |
|
halDataSize, &halData[0]); |
|
} |
|
|
|
Return<Result> Effect::setAudioMode(AudioMode mode) { |
|
uint32_t halMode = static_cast<uint32_t>(mode); |
|
return sendCommand( |
|
EFFECT_CMD_SET_AUDIO_MODE, "SET_AUDIO_MODE", sizeof(uint32_t), &halMode); |
|
} |
|
|
|
Return<Result> Effect::setConfigReverse( |
|
const EffectConfig& config, |
|
const sp<IEffectBufferProviderCallback>& inputBufferProvider, |
|
const sp<IEffectBufferProviderCallback>& outputBufferProvider) { |
|
return setConfigImpl(EFFECT_CMD_SET_CONFIG_REVERSE, "SET_CONFIG_REVERSE", |
|
config, inputBufferProvider, outputBufferProvider); |
|
} |
|
|
|
Return<Result> Effect::setInputDevice(AudioDevice device) { |
|
uint32_t halDevice = static_cast<uint32_t>(device); |
|
return sendCommand( |
|
EFFECT_CMD_SET_INPUT_DEVICE, "SET_INPUT_DEVICE", sizeof(uint32_t), &halDevice); |
|
} |
|
|
|
Return<void> Effect::getConfig(getConfig_cb _hidl_cb) { |
|
getConfigImpl(EFFECT_CMD_GET_CONFIG, "GET_CONFIG", _hidl_cb); |
|
return Void(); |
|
} |
|
|
|
Return<void> Effect::getConfigReverse(getConfigReverse_cb _hidl_cb) { |
|
getConfigImpl(EFFECT_CMD_GET_CONFIG_REVERSE, "GET_CONFIG_REVERSE", _hidl_cb); |
|
return Void(); |
|
} |
|
|
|
Return<void> Effect::getSupportedAuxChannelsConfigs( |
|
uint32_t maxConfigs, getSupportedAuxChannelsConfigs_cb _hidl_cb) { |
|
hidl_vec<EffectAuxChannelsConfig> result; |
|
Result retval = getSupportedConfigsImpl( |
|
EFFECT_FEATURE_AUX_CHANNELS, |
|
maxConfigs, |
|
sizeof(channel_config_t), |
|
[&] (uint32_t supportedConfigs, void* configsData) { |
|
result.resize(supportedConfigs); |
|
channel_config_t *config = reinterpret_cast<channel_config_t*>(configsData); |
|
for (size_t i = 0; i < result.size(); ++i) { |
|
effectAuxChannelsConfigFromHal(*config++, &result[i]); |
|
} |
|
}); |
|
_hidl_cb(retval, result); |
|
return Void(); |
|
} |
|
|
|
Return<void> Effect::getAuxChannelsConfig(getAuxChannelsConfig_cb _hidl_cb) { |
|
uint32_t halCmd = EFFECT_FEATURE_AUX_CHANNELS; |
|
uint32_t halResult[alignedSizeIn<uint32_t>(sizeof(uint32_t) + sizeof(channel_config_t))]; |
|
memset(halResult, 0, sizeof(halResult)); |
|
uint32_t halResultSize = 0; |
|
EffectAuxChannelsConfig result; |
|
Result retval = getCurrentConfigImpl( |
|
EFFECT_FEATURE_AUX_CHANNELS, |
|
sizeof(channel_config_t), |
|
[&] (void* configData) { |
|
effectAuxChannelsConfigFromHal( |
|
*reinterpret_cast<channel_config_t*>(configData), &result); |
|
}); |
|
_hidl_cb(retval, result); |
|
return Void(); |
|
} |
|
|
|
Return<Result> Effect::setAuxChannelsConfig(const EffectAuxChannelsConfig& config) { |
|
uint32_t halCmd[alignedSizeIn<uint32_t>(sizeof(uint32_t) + sizeof(channel_config_t))]; |
|
halCmd[0] = EFFECT_FEATURE_AUX_CHANNELS; |
|
effectAuxChannelsConfigToHal(config, reinterpret_cast<channel_config_t*>(&halCmd[1])); |
|
return sendCommandReturningStatus(EFFECT_CMD_SET_FEATURE_CONFIG, |
|
"SET_FEATURE_CONFIG AUX_CHANNELS", sizeof(halCmd), halCmd); |
|
} |
|
|
|
Return<Result> Effect::setAudioSource(AudioSource source) { |
|
uint32_t halSource = static_cast<uint32_t>(source); |
|
return sendCommand( |
|
EFFECT_CMD_SET_AUDIO_SOURCE, "SET_AUDIO_SOURCE", sizeof(uint32_t), &halSource); |
|
} |
|
|
|
Return<Result> Effect::offload(const EffectOffloadParameter& param) { |
|
effect_offload_param_t halParam; |
|
effectOffloadParamToHal(param, &halParam); |
|
return sendCommandReturningStatus( |
|
EFFECT_CMD_OFFLOAD, "OFFLOAD", sizeof(effect_offload_param_t), &halParam); |
|
} |
|
|
|
Return<void> Effect::getDescriptor(getDescriptor_cb _hidl_cb) { |
|
effect_descriptor_t halDescriptor; |
|
memset(&halDescriptor, 0, sizeof(effect_descriptor_t)); |
|
status_t status = (*mHandle)->get_descriptor(mHandle, &halDescriptor); |
|
EffectDescriptor descriptor; |
|
if (status == OK) { |
|
effectDescriptorFromHal(halDescriptor, &descriptor); |
|
} |
|
_hidl_cb(analyzeStatus("get_descriptor", "", sContextCallFunction, status), descriptor); |
|
return Void(); |
|
} |
|
|
|
Return<void> Effect::command( |
|
uint32_t commandId, |
|
const hidl_vec<uint8_t>& data, |
|
uint32_t resultMaxSize, |
|
command_cb _hidl_cb) { |
|
uint32_t halDataSize; |
|
std::unique_ptr<uint8_t[]> halData = hidlVecToHal(data, &halDataSize); |
|
uint32_t halResultSize = resultMaxSize; |
|
std::unique_ptr<uint8_t[]> halResult(new uint8_t[halResultSize]); |
|
memset(&halResult[0], 0, halResultSize); |
|
|
|
void* dataPtr = halDataSize > 0 ? &halData[0] : NULL; |
|
void* resultPtr = halResultSize > 0 ? &halResult[0] : NULL; |
|
status_t status = (*mHandle)->command( |
|
mHandle, commandId, halDataSize, dataPtr, &halResultSize, resultPtr); |
|
hidl_vec<uint8_t> result; |
|
if (status == OK && resultPtr != NULL) { |
|
result.setToExternal(&halResult[0], halResultSize); |
|
} |
|
_hidl_cb(status, result); |
|
return Void(); |
|
} |
|
|
|
Return<Result> Effect::setParameter( |
|
const hidl_vec<uint8_t>& parameter, const hidl_vec<uint8_t>& value) { |
|
return setParameterImpl(parameter.size(), ¶meter[0], value.size(), &value[0]); |
|
} |
|
|
|
Return<void> Effect::getParameter( |
|
const hidl_vec<uint8_t>& parameter, uint32_t valueMaxSize, getParameter_cb _hidl_cb) { |
|
hidl_vec<uint8_t> value; |
|
Result retval = getParameterImpl( |
|
parameter.size(), |
|
¶meter[0], |
|
valueMaxSize, |
|
[&] (uint32_t valueSize, const void* valueData) { |
|
value.setToExternal( |
|
reinterpret_cast<uint8_t*>(const_cast<void*>(valueData)), valueSize); |
|
}); |
|
_hidl_cb(retval, value); |
|
return Void(); |
|
} |
|
|
|
Return<void> Effect::getSupportedConfigsForFeature( |
|
uint32_t featureId, |
|
uint32_t maxConfigs, |
|
uint32_t configSize, |
|
getSupportedConfigsForFeature_cb _hidl_cb) { |
|
uint32_t configCount = 0; |
|
hidl_vec<uint8_t> result; |
|
Result retval = getSupportedConfigsImpl( |
|
featureId, |
|
maxConfigs, |
|
configSize, |
|
[&] (uint32_t supportedConfigs, void* configsData) { |
|
configCount = supportedConfigs; |
|
result.resize(configCount * configSize); |
|
memcpy(&result[0], configsData, result.size()); |
|
}); |
|
_hidl_cb(retval, configCount, result); |
|
return Void(); |
|
} |
|
|
|
Return<void> Effect::getCurrentConfigForFeature( |
|
uint32_t featureId, uint32_t configSize, getCurrentConfigForFeature_cb _hidl_cb) { |
|
hidl_vec<uint8_t> result; |
|
Result retval = getCurrentConfigImpl( |
|
featureId, |
|
configSize, |
|
[&] (void* configData) { |
|
result.resize(configSize); |
|
memcpy(&result[0], configData, result.size()); |
|
}); |
|
_hidl_cb(retval, result); |
|
return Void(); |
|
} |
|
|
|
Return<Result> Effect::setCurrentConfigForFeature( |
|
uint32_t featureId, const hidl_vec<uint8_t>& configData) { |
|
uint32_t halCmd[alignedSizeIn<uint32_t>(sizeof(uint32_t) + configData.size())]; |
|
memset(halCmd, 0, sizeof(halCmd)); |
|
halCmd[0] = featureId; |
|
memcpy(&halCmd[1], &configData[0], configData.size()); |
|
return sendCommandReturningStatus( |
|
EFFECT_CMD_SET_FEATURE_CONFIG, "SET_FEATURE_CONFIG", sizeof(halCmd), halCmd); |
|
} |
|
|
|
Return<Result> Effect::close() { |
|
if (mIsClosed) return Result::INVALID_STATE; |
|
mIsClosed = true; |
|
if (mProcessThread.get()) { |
|
mStopProcessThread.store(true, std::memory_order_release); |
|
} |
|
if (mEfGroup) { |
|
mEfGroup->wake(static_cast<uint32_t>(MessageQueueFlagBits::REQUEST_QUIT)); |
|
} |
|
return Result::OK; |
|
} |
|
|
|
} // namespace implementation |
|
} // namespace V2_0 |
|
} // namespace effect |
|
} // namespace audio |
|
} // namespace hardware |
|
} // namespace android
|
|
|