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Mikhail Naganove5d747e2021-11-16 01:31:03 +00001/*
2 * Copyright (C) 2022 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include <algorithm>
Mikhail Naganov111e0ce2022-06-17 21:41:19 +000018#include <chrono>
Mikhail Naganove5d747e2021-11-16 01:31:03 +000019
Mikhail Naganovf84d6402022-06-16 00:35:31 +000020#include <aidl/android/media/audio/common/AudioIoFlags.h>
21#include <aidl/android/media/audio/common/AudioOutputFlags.h>
Mikhail Naganove5d747e2021-11-16 01:31:03 +000022
23#include "ModuleConfig.h"
24
25using namespace android;
Mikhail Naganov111e0ce2022-06-17 21:41:19 +000026using namespace std::chrono_literals;
Mikhail Naganove5d747e2021-11-16 01:31:03 +000027
Mikhail Naganovf84d6402022-06-16 00:35:31 +000028using aidl::android::hardware::audio::core::IModule;
29using aidl::android::media::audio::common::AudioChannelLayout;
Mikhail Naganov111e0ce2022-06-17 21:41:19 +000030using aidl::android::media::audio::common::AudioEncapsulationMode;
Mikhail Naganovf84d6402022-06-16 00:35:31 +000031using aidl::android::media::audio::common::AudioFormatDescription;
32using aidl::android::media::audio::common::AudioFormatType;
33using aidl::android::media::audio::common::AudioIoFlags;
Mikhail Naganov111e0ce2022-06-17 21:41:19 +000034using aidl::android::media::audio::common::AudioOffloadInfo;
Mikhail Naganovf84d6402022-06-16 00:35:31 +000035using aidl::android::media::audio::common::AudioOutputFlags;
36using aidl::android::media::audio::common::AudioPort;
37using aidl::android::media::audio::common::AudioPortConfig;
38using aidl::android::media::audio::common::AudioPortExt;
39using aidl::android::media::audio::common::AudioProfile;
Mikhail Naganov111e0ce2022-06-17 21:41:19 +000040using aidl::android::media::audio::common::AudioUsage;
Mikhail Naganovf84d6402022-06-16 00:35:31 +000041using aidl::android::media::audio::common::Int;
Mikhail Naganove5d747e2021-11-16 01:31:03 +000042
Mikhail Naganov111e0ce2022-06-17 21:41:19 +000043// static
44std::optional<AudioOffloadInfo> ModuleConfig::generateOffloadInfoIfNeeded(
45 const AudioPortConfig& portConfig) {
46 if (portConfig.flags.has_value() &&
47 portConfig.flags.value().getTag() == AudioIoFlags::Tag::output &&
48 (portConfig.flags.value().get<AudioIoFlags::Tag::output>() &
49 1 << static_cast<int>(AudioOutputFlags::COMPRESS_OFFLOAD)) != 0) {
50 AudioOffloadInfo offloadInfo;
51 offloadInfo.base.sampleRate = portConfig.sampleRate.value().value;
52 offloadInfo.base.channelMask = portConfig.channelMask.value();
53 offloadInfo.base.format = portConfig.format.value();
54 offloadInfo.bitRatePerSecond = 256; // Arbitrary value.
55 offloadInfo.durationUs = std::chrono::microseconds(1min).count(); // Arbitrary value.
56 offloadInfo.usage = AudioUsage::MEDIA;
57 offloadInfo.encapsulationMode = AudioEncapsulationMode::NONE;
58 return offloadInfo;
59 }
60 return {};
61}
62
Mikhail Naganove5d747e2021-11-16 01:31:03 +000063template <typename T>
64auto findById(const std::vector<T>& v, int32_t id) {
65 return std::find_if(v.begin(), v.end(), [&](const auto& p) { return p.id == id; });
66}
67
68ModuleConfig::ModuleConfig(IModule* module) {
69 mStatus = module->getAudioPorts(&mPorts);
70 if (!mStatus.isOk()) return;
71 for (const auto& port : mPorts) {
72 if (port.ext.getTag() != AudioPortExt::Tag::device) continue;
73 const auto& devicePort = port.ext.get<AudioPortExt::Tag::device>();
Mikhail Naganove5d747e2021-11-16 01:31:03 +000074 if (devicePort.device.type.connection.empty()) {
Mikhail Naganov00603d12022-05-02 22:52:13 +000075 const bool isInput = port.flags.getTag() == AudioIoFlags::Tag::input;
Mikhail Naganove5d747e2021-11-16 01:31:03 +000076 // Permanently attached device.
77 if (isInput) {
78 mAttachedSourceDevicePorts.insert(port.id);
79 } else {
80 mAttachedSinkDevicePorts.insert(port.id);
81 }
Mikhail Naganov00603d12022-05-02 22:52:13 +000082 } else if (port.profiles.empty()) {
83 mExternalDevicePorts.insert(port.id);
Mikhail Naganove5d747e2021-11-16 01:31:03 +000084 }
85 }
86 if (!mStatus.isOk()) return;
87 mStatus = module->getAudioRoutes(&mRoutes);
88 if (!mStatus.isOk()) return;
89 mStatus = module->getAudioPortConfigs(&mInitialConfigs);
90}
91
Mikhail Naganov00603d12022-05-02 22:52:13 +000092std::vector<AudioPort> ModuleConfig::getAttachedDevicePorts() const {
93 std::vector<AudioPort> result;
94 std::copy_if(mPorts.begin(), mPorts.end(), std::back_inserter(result), [&](const auto& port) {
95 return mAttachedSinkDevicePorts.count(port.id) != 0 ||
96 mAttachedSourceDevicePorts.count(port.id) != 0;
97 });
98 return result;
99}
100
101std::vector<AudioPort> ModuleConfig::getExternalDevicePorts() const {
102 std::vector<AudioPort> result;
103 std::copy_if(mPorts.begin(), mPorts.end(), std::back_inserter(result),
104 [&](const auto& port) { return mExternalDevicePorts.count(port.id) != 0; });
105 return result;
106}
107
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000108std::vector<AudioPort> ModuleConfig::getInputMixPorts() const {
109 std::vector<AudioPort> result;
110 std::copy_if(mPorts.begin(), mPorts.end(), std::back_inserter(result), [](const auto& port) {
111 return port.ext.getTag() == AudioPortExt::Tag::mix &&
112 port.flags.getTag() == AudioIoFlags::Tag::input;
113 });
114 return result;
115}
116
117std::vector<AudioPort> ModuleConfig::getOutputMixPorts() const {
118 std::vector<AudioPort> result;
119 std::copy_if(mPorts.begin(), mPorts.end(), std::back_inserter(result), [](const auto& port) {
120 return port.ext.getTag() == AudioPortExt::Tag::mix &&
121 port.flags.getTag() == AudioIoFlags::Tag::output;
122 });
123 return result;
124}
125
126std::vector<AudioPort> ModuleConfig::getAttachedSinkDevicesPortsForMixPort(
127 const AudioPort& mixPort) const {
128 std::vector<AudioPort> result;
129 for (const auto& route : mRoutes) {
130 if (mAttachedSinkDevicePorts.count(route.sinkPortId) != 0 &&
131 std::find(route.sourcePortIds.begin(), route.sourcePortIds.end(), mixPort.id) !=
132 route.sourcePortIds.end()) {
133 const auto devicePortIt = findById<AudioPort>(mPorts, route.sinkPortId);
134 if (devicePortIt != mPorts.end()) result.push_back(*devicePortIt);
135 }
136 }
137 return result;
138}
139
140std::vector<AudioPort> ModuleConfig::getAttachedSourceDevicesPortsForMixPort(
141 const AudioPort& mixPort) const {
142 std::vector<AudioPort> result;
143 for (const auto& route : mRoutes) {
144 if (route.sinkPortId == mixPort.id) {
145 for (const auto srcId : route.sourcePortIds) {
146 if (mAttachedSourceDevicePorts.count(srcId) != 0) {
147 const auto devicePortIt = findById<AudioPort>(mPorts, srcId);
148 if (devicePortIt != mPorts.end()) result.push_back(*devicePortIt);
149 }
150 }
151 }
152 }
153 return result;
154}
155
156std::optional<AudioPort> ModuleConfig::getSourceMixPortForAttachedDevice() const {
157 for (const auto& route : mRoutes) {
158 if (mAttachedSinkDevicePorts.count(route.sinkPortId) != 0) {
159 const auto mixPortIt = findById<AudioPort>(mPorts, route.sourcePortIds[0]);
160 if (mixPortIt != mPorts.end()) return *mixPortIt;
161 }
162 }
163 return {};
164}
165
166std::optional<ModuleConfig::SrcSinkPair> ModuleConfig::getNonRoutableSrcSinkPair(
167 bool isInput) const {
168 const auto mixPorts = getMixPorts(isInput);
169 std::set<std::pair<int32_t, int32_t>> allowedRoutes;
170 for (const auto& route : mRoutes) {
171 for (const auto srcPortId : route.sourcePortIds) {
172 allowedRoutes.emplace(std::make_pair(srcPortId, route.sinkPortId));
173 }
174 }
175 auto make_pair = [isInput](auto& device, auto& mix) {
176 return isInput ? std::make_pair(device, mix) : std::make_pair(mix, device);
177 };
178 for (const auto portId : isInput ? mAttachedSourceDevicePorts : mAttachedSinkDevicePorts) {
179 const auto devicePortIt = findById<AudioPort>(mPorts, portId);
180 if (devicePortIt == mPorts.end()) continue;
181 auto devicePortConfig = getSingleConfigForDevicePort(*devicePortIt);
182 for (const auto& mixPort : mixPorts) {
183 if (std::find(allowedRoutes.begin(), allowedRoutes.end(),
184 make_pair(portId, mixPort.id)) == allowedRoutes.end()) {
185 auto mixPortConfig = getSingleConfigForMixPort(isInput, mixPort);
186 if (mixPortConfig.has_value()) {
187 return make_pair(devicePortConfig, mixPortConfig.value());
188 }
189 }
190 }
191 }
192 return {};
193}
194
195std::optional<ModuleConfig::SrcSinkPair> ModuleConfig::getRoutableSrcSinkPair(bool isInput) const {
196 if (isInput) {
197 for (const auto& route : mRoutes) {
198 auto srcPortIdIt = std::find_if(
199 route.sourcePortIds.begin(), route.sourcePortIds.end(),
200 [&](const auto& portId) { return mAttachedSourceDevicePorts.count(portId); });
201 if (srcPortIdIt == route.sourcePortIds.end()) continue;
202 const auto devicePortIt = findById<AudioPort>(mPorts, *srcPortIdIt);
203 const auto mixPortIt = findById<AudioPort>(mPorts, route.sinkPortId);
204 if (devicePortIt == mPorts.end() || mixPortIt == mPorts.end()) continue;
205 auto devicePortConfig = getSingleConfigForDevicePort(*devicePortIt);
206 auto mixPortConfig = getSingleConfigForMixPort(isInput, *mixPortIt);
207 if (!mixPortConfig.has_value()) continue;
208 return std::make_pair(devicePortConfig, mixPortConfig.value());
209 }
210 } else {
211 for (const auto& route : mRoutes) {
212 if (mAttachedSinkDevicePorts.count(route.sinkPortId) == 0) continue;
213 const auto mixPortIt = findById<AudioPort>(mPorts, route.sourcePortIds[0]);
214 const auto devicePortIt = findById<AudioPort>(mPorts, route.sinkPortId);
215 if (devicePortIt == mPorts.end() || mixPortIt == mPorts.end()) continue;
216 auto mixPortConfig = getSingleConfigForMixPort(isInput, *mixPortIt);
217 auto devicePortConfig = getSingleConfigForDevicePort(*devicePortIt);
218 if (!mixPortConfig.has_value()) continue;
219 return std::make_pair(mixPortConfig.value(), devicePortConfig);
220 }
221 }
222 return {};
223}
224
225std::vector<ModuleConfig::SrcSinkGroup> ModuleConfig::getRoutableSrcSinkGroups(bool isInput) const {
226 std::vector<SrcSinkGroup> result;
227 if (isInput) {
228 for (const auto& route : mRoutes) {
229 std::vector<int32_t> srcPortIds;
230 std::copy_if(route.sourcePortIds.begin(), route.sourcePortIds.end(),
231 std::back_inserter(srcPortIds), [&](const auto& portId) {
232 return mAttachedSourceDevicePorts.count(portId);
233 });
234 if (srcPortIds.empty()) continue;
235 const auto mixPortIt = findById<AudioPort>(mPorts, route.sinkPortId);
236 if (mixPortIt == mPorts.end()) continue;
237 auto mixPortConfig = getSingleConfigForMixPort(isInput, *mixPortIt);
238 if (!mixPortConfig.has_value()) continue;
239 std::vector<SrcSinkPair> pairs;
240 for (const auto srcPortId : srcPortIds) {
241 const auto devicePortIt = findById<AudioPort>(mPorts, srcPortId);
242 if (devicePortIt == mPorts.end()) continue;
243 // Using all configs for every source would be too much.
244 auto devicePortConfig = getSingleConfigForDevicePort(*devicePortIt);
245 pairs.emplace_back(devicePortConfig, mixPortConfig.value());
246 }
247 if (!pairs.empty()) {
248 result.emplace_back(route, std::move(pairs));
249 }
250 }
251 } else {
252 for (const auto& route : mRoutes) {
253 if (mAttachedSinkDevicePorts.count(route.sinkPortId) == 0) continue;
254 const auto devicePortIt = findById<AudioPort>(mPorts, route.sinkPortId);
255 if (devicePortIt == mPorts.end()) continue;
256 auto devicePortConfig = getSingleConfigForDevicePort(*devicePortIt);
257 std::vector<SrcSinkPair> pairs;
258 for (const auto srcPortId : route.sourcePortIds) {
259 const auto mixPortIt = findById<AudioPort>(mPorts, srcPortId);
260 if (mixPortIt == mPorts.end()) continue;
261 // Using all configs for every source would be too much.
262 auto mixPortConfig = getSingleConfigForMixPort(isInput, *mixPortIt);
263 if (mixPortConfig.has_value()) {
264 pairs.emplace_back(mixPortConfig.value(), devicePortConfig);
265 }
266 }
267 if (!pairs.empty()) {
268 result.emplace_back(route, std::move(pairs));
269 }
270 }
271 }
272 return result;
273}
274
Mikhail Naganov00603d12022-05-02 22:52:13 +0000275std::string ModuleConfig::toString() const {
276 std::string result;
277 result.append("Ports: ");
278 result.append(android::internal::ToString(mPorts));
Mikhail Naganov16db9b72022-06-17 21:36:18 +0000279 result.append("\nInitial configs: ");
Mikhail Naganov00603d12022-05-02 22:52:13 +0000280 result.append(android::internal::ToString(mInitialConfigs));
Mikhail Naganov16db9b72022-06-17 21:36:18 +0000281 result.append("\nAttached sink device ports: ");
Mikhail Naganov00603d12022-05-02 22:52:13 +0000282 result.append(android::internal::ToString(mAttachedSinkDevicePorts));
Mikhail Naganov16db9b72022-06-17 21:36:18 +0000283 result.append("\nAttached source device ports: ");
Mikhail Naganov00603d12022-05-02 22:52:13 +0000284 result.append(android::internal::ToString(mAttachedSourceDevicePorts));
Mikhail Naganov16db9b72022-06-17 21:36:18 +0000285 result.append("\nExternal device ports: ");
Mikhail Naganov00603d12022-05-02 22:52:13 +0000286 result.append(android::internal::ToString(mExternalDevicePorts));
Mikhail Naganov16db9b72022-06-17 21:36:18 +0000287 result.append("\nRoutes: ");
Mikhail Naganov00603d12022-05-02 22:52:13 +0000288 result.append(android::internal::ToString(mRoutes));
289 return result;
290}
291
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000292static size_t combineAudioConfigs(const AudioPort& port, const AudioProfile& profile,
293 std::vector<AudioPortConfig>* result) {
294 const size_t newConfigCount = profile.channelMasks.size() * profile.sampleRates.size();
295 result->reserve(result->capacity() + newConfigCount);
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000296 for (auto channelMask : profile.channelMasks) {
297 for (auto sampleRate : profile.sampleRates) {
298 AudioPortConfig config{};
299 config.portId = port.id;
300 Int sr;
301 sr.value = sampleRate;
302 config.sampleRate = sr;
303 config.channelMask = channelMask;
304 config.format = profile.format;
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000305 config.flags = port.flags;
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000306 config.ext = port.ext;
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000307 result->push_back(std::move(config));
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000308 }
309 }
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000310 return newConfigCount;
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000311}
312
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000313static bool isDynamicProfile(const AudioProfile& profile) {
314 return (profile.format.type == AudioFormatType::DEFAULT && profile.format.encoding.empty()) ||
315 profile.sampleRates.empty() || profile.channelMasks.empty();
316}
317
318std::vector<AudioPortConfig> ModuleConfig::generateAudioMixPortConfigs(
319 const std::vector<AudioPort>& ports, bool isInput, bool singleProfile) const {
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000320 std::vector<AudioPortConfig> result;
321 for (const auto& mixPort : ports) {
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000322 if (getAttachedDevicesPortsForMixPort(isInput, mixPort).empty()) {
323 continue;
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000324 }
325 for (const auto& profile : mixPort.profiles) {
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000326 if (isDynamicProfile(profile)) continue;
327 combineAudioConfigs(mixPort, profile, &result);
328 if (singleProfile && !result.empty()) {
329 result.resize(1);
330 return result;
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000331 }
332 }
333 }
334 return result;
335}
336
337std::vector<AudioPortConfig> ModuleConfig::generateAudioDevicePortConfigs(
338 const std::vector<AudioPort>& ports, bool singleProfile) const {
339 std::vector<AudioPortConfig> result;
340 for (const auto& devicePort : ports) {
341 const size_t resultSizeBefore = result.size();
342 for (const auto& profile : devicePort.profiles) {
Mikhail Naganov111e0ce2022-06-17 21:41:19 +0000343 combineAudioConfigs(devicePort, profile, &result);
344 if (singleProfile && !result.empty()) {
345 result.resize(1);
346 return result;
347 }
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000348 }
349 if (resultSizeBefore == result.size()) {
Mikhail Naganov00603d12022-05-02 22:52:13 +0000350 std::copy_if(mInitialConfigs.begin(), mInitialConfigs.end(), std::back_inserter(result),
351 [&](const auto& config) { return config.portId == devicePort.id; });
352 if (resultSizeBefore == result.size()) {
353 AudioPortConfig empty;
354 empty.portId = devicePort.id;
355 empty.ext = devicePort.ext;
356 result.push_back(empty);
357 }
Mikhail Naganove5d747e2021-11-16 01:31:03 +0000358 }
359 if (singleProfile) return result;
360 }
361 return result;
362}