mirror of
https://github.com/Evolution-X/hardware_interfaces
synced 2026-02-02 13:49:45 +00:00
The latency figure depends on the module implementation. Instead of using a hardcoded value, each module should be able to specify its own value. This value is then used for calculating the minimum buffer size. Set the nominal latency of the primary (CF) module to a high value since the virtual device implementation fails CTS tests if it attempts to pretend that it provides low latency. Bug: 302132812 Test: atest CtsMediaAudioTestCases --test-filter=".*AudioTrackTest.*" Test: atest CtsMediaAudioTestCases --test-filter=".*AudioRecordTest.*" Change-Id: I8ce9f230378eea787c9b3c7ce3660c1e4e7bc895
159 lines
5.9 KiB
C++
159 lines
5.9 KiB
C++
/*
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* Copyright (C) 2023 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 <cmath>
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#include <limits>
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#define LOG_TAG "AHAL_StreamAlsa"
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#include <android-base/logging.h>
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#include <Utils.h>
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#include <audio_utils/clock.h>
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#include <error/expected_utils.h>
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#include "core-impl/StreamAlsa.h"
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namespace aidl::android::hardware::audio::core {
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StreamAlsa::StreamAlsa(StreamContext* context, const Metadata& metadata, int readWriteRetries)
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: StreamCommonImpl(context, metadata),
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mBufferSizeFrames(getContext().getBufferSizeInFrames()),
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mFrameSizeBytes(getContext().getFrameSize()),
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mSampleRate(getContext().getSampleRate()),
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mIsInput(isInput(metadata)),
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mConfig(alsa::getPcmConfig(getContext(), mIsInput)),
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mReadWriteRetries(readWriteRetries) {}
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::android::status_t StreamAlsa::init() {
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return mConfig.has_value() ? ::android::OK : ::android::NO_INIT;
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}
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::android::status_t StreamAlsa::drain(StreamDescriptor::DrainMode) {
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if (!mIsInput) {
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static constexpr float kMicrosPerSecond = MICROS_PER_SECOND;
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const size_t delayUs = static_cast<size_t>(
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std::roundf(mBufferSizeFrames * kMicrosPerSecond / mSampleRate));
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usleep(delayUs);
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}
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return ::android::OK;
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}
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::android::status_t StreamAlsa::flush() {
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return ::android::OK;
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}
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::android::status_t StreamAlsa::pause() {
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return ::android::OK;
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}
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::android::status_t StreamAlsa::standby() {
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mAlsaDeviceProxies.clear();
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return ::android::OK;
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}
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::android::status_t StreamAlsa::start() {
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if (!mAlsaDeviceProxies.empty()) {
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// This is a resume after a pause.
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return ::android::OK;
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}
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decltype(mAlsaDeviceProxies) alsaDeviceProxies;
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for (const auto& device : getDeviceProfiles()) {
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alsa::DeviceProxy proxy;
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if (device.isExternal) {
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// Always ask alsa configure as required since the configuration should be supported
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// by the connected device. That is guaranteed by `setAudioPortConfig` and
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// `setAudioPatch`.
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proxy = alsa::openProxyForExternalDevice(
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device, const_cast<struct pcm_config*>(&mConfig.value()),
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true /*require_exact_match*/);
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} else {
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proxy = alsa::openProxyForAttachedDevice(
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device, const_cast<struct pcm_config*>(&mConfig.value()), mBufferSizeFrames);
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}
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if (proxy.get() == nullptr) {
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return ::android::NO_INIT;
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}
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alsaDeviceProxies.push_back(std::move(proxy));
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}
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mAlsaDeviceProxies = std::move(alsaDeviceProxies);
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return ::android::OK;
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}
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::android::status_t StreamAlsa::transfer(void* buffer, size_t frameCount, size_t* actualFrameCount,
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int32_t* latencyMs) {
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if (mAlsaDeviceProxies.empty()) {
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LOG(FATAL) << __func__ << ": no opened devices";
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return ::android::NO_INIT;
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}
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const size_t bytesToTransfer = frameCount * mFrameSizeBytes;
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unsigned maxLatency = 0;
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if (mIsInput) {
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// For input case, only support single device.
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proxy_read_with_retries(mAlsaDeviceProxies[0].get(), buffer, bytesToTransfer,
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mReadWriteRetries);
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maxLatency = proxy_get_latency(mAlsaDeviceProxies[0].get());
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} else {
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for (auto& proxy : mAlsaDeviceProxies) {
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proxy_write_with_retries(proxy.get(), buffer, bytesToTransfer, mReadWriteRetries);
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maxLatency = std::max(maxLatency, proxy_get_latency(proxy.get()));
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}
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}
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*actualFrameCount = frameCount;
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maxLatency = std::min(maxLatency, static_cast<unsigned>(std::numeric_limits<int32_t>::max()));
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*latencyMs = maxLatency;
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return ::android::OK;
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}
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::android::status_t StreamAlsa::refinePosition(StreamDescriptor::Position* position) {
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if (mAlsaDeviceProxies.empty()) {
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LOG(WARNING) << __func__ << ": no opened devices";
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return ::android::NO_INIT;
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}
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// Since the proxy can only count transferred frames since its creation,
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// we override its counter value with ours and let it to correct for buffered frames.
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alsa::resetTransferredFrames(mAlsaDeviceProxies[0], position->frames);
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if (mIsInput) {
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if (int ret = proxy_get_capture_position(mAlsaDeviceProxies[0].get(), &position->frames,
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&position->timeNs);
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ret != 0) {
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LOG(WARNING) << __func__ << ": failed to retrieve capture position: " << ret;
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return ::android::INVALID_OPERATION;
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}
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} else {
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uint64_t hwFrames;
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struct timespec timestamp;
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if (int ret = proxy_get_presentation_position(mAlsaDeviceProxies[0].get(), &hwFrames,
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×tamp);
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ret == 0) {
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if (hwFrames > std::numeric_limits<int64_t>::max()) {
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hwFrames -= std::numeric_limits<int64_t>::max();
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}
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position->frames = static_cast<int64_t>(hwFrames);
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position->timeNs = audio_utils_ns_from_timespec(×tamp);
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} else {
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LOG(WARNING) << __func__ << ": failed to retrieve presentation position: " << ret;
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return ::android::INVALID_OPERATION;
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}
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}
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return ::android::OK;
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}
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void StreamAlsa::shutdown() {
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mAlsaDeviceProxies.clear();
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}
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} // namespace aidl::android::hardware::audio::core
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