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https://github.com/badaix/snapcast.git
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426 lines
15 KiB
C++
426 lines
15 KiB
C++
/***
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This file is part of snapcast
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Copyright (C) 2014-2021 Johannes Pohl
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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***/
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#ifndef NOMINMAX
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#define NOMINMAX
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#endif // NOMINMAX
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#include "controller.hpp"
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#include "decoder/pcm_decoder.hpp"
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#if defined(HAS_OGG) && (defined(HAS_TREMOR) || defined(HAS_VORBIS))
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#include "decoder/ogg_decoder.hpp"
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#endif
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#if defined(HAS_FLAC)
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#include "decoder/flac_decoder.hpp"
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#endif
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#if defined(HAS_OPUS)
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#include "decoder/opus_decoder.hpp"
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#endif
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#ifdef HAS_ALSA
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#include "player/alsa_player.hpp"
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#endif
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#ifdef HAS_PULSE
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#include "player/pulse_player.hpp"
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#endif
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#ifdef HAS_OPENSL
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#include "player/opensl_player.hpp"
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#endif
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#ifdef HAS_OBOE
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#include "player/oboe_player.hpp"
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#endif
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#ifdef HAS_COREAUDIO
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#include "player/coreaudio_player.hpp"
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#endif
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#ifdef HAS_WASAPI
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#include "player/wasapi_player.hpp"
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#endif
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#include "player/file_player.hpp"
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#include "browseZeroConf/browse_mdns.hpp"
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#include "common/aixlog.hpp"
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#include "common/snap_exception.hpp"
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#include "message/client_info.hpp"
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#include "message/hello.hpp"
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#include "message/time.hpp"
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#include "time_provider.hpp"
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#include <algorithm>
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#include <iostream>
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#include <memory>
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#include <string>
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using namespace std;
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using namespace player;
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static constexpr auto LOG_TAG = "Controller";
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static constexpr auto TIME_SYNC_INTERVAL = 1s;
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Controller::Controller(boost::asio::io_context& io_context, const ClientSettings& settings) //, std::unique_ptr<MetadataAdapter> meta)
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: io_context_(io_context), timer_(io_context), settings_(settings), stream_(nullptr), decoder_(nullptr), player_(nullptr),
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serverSettings_(nullptr) // meta_(std::move(meta)),
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{
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}
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template <typename PlayerType>
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std::unique_ptr<Player> Controller::createPlayer(ClientSettings::Player& settings, const std::string& player_name)
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{
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if (settings.player_name.empty() || settings.player_name == player_name)
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{
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settings.player_name = player_name;
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return make_unique<PlayerType>(io_context_, settings, stream_);
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}
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return nullptr;
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}
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std::vector<std::string> Controller::getSupportedPlayerNames()
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{
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std::vector<std::string> result;
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#ifdef HAS_ALSA
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result.emplace_back(player::ALSA);
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#endif
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#ifdef HAS_PULSE
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result.emplace_back(player::PULSE);
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#endif
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#ifdef HAS_OBOE
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result.emplace_back(player::OBOE);
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#endif
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#ifdef HAS_OPENSL
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result.emplace_back(player::OPENSL);
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#endif
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#ifdef HAS_COREAUDIO
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result.emplace_back(player::COREAUDIO);
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#endif
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#ifdef HAS_WASAPI
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result.emplace_back(player::WASAPI);
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#endif
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result.emplace_back(player::FILE);
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return result;
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}
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void Controller::getNextMessage()
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{
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clientConnection_->getNextMessage([this](const boost::system::error_code& ec, std::unique_ptr<msg::BaseMessage> response) {
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if (ec)
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{
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reconnect();
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return;
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}
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if (!response)
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{
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return getNextMessage();
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}
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if (response->type == message_type::kWireChunk)
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{
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if (stream_ && decoder_)
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{
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// execute on the io_context to do the (costly) decoding on another thread (if more than one thread is used)
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// boost::asio::post(io_context_, [this, response = std::move(response)]() mutable {
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auto pcmChunk = msg::message_cast<msg::PcmChunk>(std::move(response));
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pcmChunk->format = sampleFormat_;
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// LOG(TRACE, LOG_TAG) << "chunk: " << pcmChunk->payloadSize << ", sampleFormat: " << sampleFormat_.toString() << "\n";
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if (decoder_->decode(pcmChunk.get()))
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{
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// LOG(TRACE, LOG_TAG) << ", decoded: " << pcmChunk->payloadSize << ", Duration: " << pcmChunk->durationMs() << ", sec: " <<
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// pcmChunk->timestamp.sec << ", usec: " << pcmChunk->timestamp.usec / 1000 << ", type: " << pcmChunk->type << "\n";
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stream_->addChunk(std::move(pcmChunk));
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}
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// });
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}
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}
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else if (response->type == message_type::kServerSettings)
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{
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serverSettings_ = msg::message_cast<msg::ServerSettings>(std::move(response));
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LOG(INFO, LOG_TAG) << "ServerSettings - buffer: " << serverSettings_->getBufferMs() << ", latency: " << serverSettings_->getLatency()
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<< ", volume: " << serverSettings_->getVolume() << ", muted: " << serverSettings_->isMuted() << "\n";
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if (stream_ && player_)
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{
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player_->setVolume(serverSettings_->getVolume() / 100., serverSettings_->isMuted());
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stream_->setBufferLen(std::max(0, serverSettings_->getBufferMs() - serverSettings_->getLatency() - settings_.player.latency));
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}
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}
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else if (response->type == message_type::kCodecHeader)
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{
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headerChunk_ = msg::message_cast<msg::CodecHeader>(std::move(response));
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decoder_.reset(nullptr);
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stream_ = nullptr;
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player_.reset(nullptr);
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if (headerChunk_->codec == "pcm")
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decoder_ = make_unique<decoder::PcmDecoder>();
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#if defined(HAS_OGG) && (defined(HAS_TREMOR) || defined(HAS_VORBIS))
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else if (headerChunk_->codec == "ogg")
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decoder_ = make_unique<decoder::OggDecoder>();
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#endif
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#if defined(HAS_FLAC)
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else if (headerChunk_->codec == "flac")
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decoder_ = make_unique<decoder::FlacDecoder>();
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#endif
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#if defined(HAS_OPUS)
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else if (headerChunk_->codec == "opus")
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decoder_ = make_unique<decoder::OpusDecoder>();
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#endif
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else
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throw SnapException("codec not supported: \"" + headerChunk_->codec + "\"");
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sampleFormat_ = decoder_->setHeader(headerChunk_.get());
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LOG(INFO, LOG_TAG) << "Codec: " << headerChunk_->codec << ", sampleformat: " << sampleFormat_.toString() << "\n";
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stream_ = make_shared<Stream>(sampleFormat_, settings_.player.sample_format);
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stream_->setBufferLen(std::max(0, serverSettings_->getBufferMs() - serverSettings_->getLatency() - settings_.player.latency));
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#ifdef HAS_ALSA
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if (!player_)
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player_ = createPlayer<AlsaPlayer>(settings_.player, player::ALSA);
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#endif
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#ifdef HAS_PULSE
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if (!player_)
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player_ = createPlayer<PulsePlayer>(settings_.player, player::PULSE);
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#endif
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#ifdef HAS_OBOE
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if (!player_)
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player_ = createPlayer<OboePlayer>(settings_.player, player::OBOE);
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#endif
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#ifdef HAS_OPENSL
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if (!player_)
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player_ = createPlayer<OpenslPlayer>(settings_.player, player::OPENSL);
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#endif
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#ifdef HAS_COREAUDIO
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if (!player_)
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player_ = createPlayer<CoreAudioPlayer>(settings_.player, player::COREAUDIO);
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#endif
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#ifdef HAS_WASAPI
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if (!player_)
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player_ = createPlayer<WASAPIPlayer>(settings_.player, player::WASAPI);
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#endif
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if (!player_ && (settings_.player.player_name == player::FILE))
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player_ = createPlayer<FilePlayer>(settings_.player, player::FILE);
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if (!player_)
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throw SnapException("No audio player support" + (settings_.player.player_name.empty() ? "" : " for: " + settings_.player.player_name));
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player_->setVolumeCallback([this](double volume, bool muted) {
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static double last_volume(-1);
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static bool last_muted(true);
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if ((volume != last_volume) || (last_muted != muted))
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{
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last_volume = volume;
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last_muted = muted;
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auto info = std::make_shared<msg::ClientInfo>();
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info->setVolume(static_cast<uint16_t>(volume * 100.));
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info->setMuted(muted);
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clientConnection_->send(info, [this](const boost::system::error_code& ec) {
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if (ec)
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{
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LOG(ERROR, LOG_TAG) << "Failed to send client info, error: " << ec.message() << "\n";
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reconnect();
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return;
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}
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});
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}
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});
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player_->start();
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// Don't change the initial hardware mixer volume on the user's device.
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// The player class will send the device's volume to the server instead
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// if (settings_.player.mixer.mode != ClientSettings::Mixer::Mode::hardware)
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// {
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player_->setVolume(serverSettings_->getVolume() / 100., serverSettings_->isMuted());
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// }
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}
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// else if (response->type == message_type::kStreamTags)
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// {
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// if (meta_)
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// {
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// auto stream_tags = msg::message_cast<msg::StreamTags>(std::move(response));
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// meta_->push(stream_tags->msg);
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// }
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// }
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else
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{
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LOG(WARNING, LOG_TAG) << "Unexpected message received, type: " << response->type << "\n";
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}
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getNextMessage();
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});
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}
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void Controller::sendTimeSyncMessage(int quick_syncs)
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{
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auto timeReq = std::make_shared<msg::Time>();
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clientConnection_->sendRequest<msg::Time>(
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timeReq, 2s, [this, quick_syncs](const boost::system::error_code& ec, const std::unique_ptr<msg::Time>& response) mutable {
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if (ec)
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{
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LOG(ERROR, LOG_TAG) << "Time sync request failed: " << ec.message() << "\n";
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reconnect();
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return;
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}
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else
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{
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TimeProvider::getInstance().setDiff(response->latency, response->received - response->sent);
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}
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std::chrono::microseconds next = TIME_SYNC_INTERVAL;
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if (quick_syncs > 0)
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{
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if (--quick_syncs == 0)
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LOG(INFO, LOG_TAG) << "diff to server [ms]: "
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<< static_cast<float>(TimeProvider::getInstance().getDiffToServer<chronos::usec>().count()) / 1000.f << "\n";
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next = 100us;
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}
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timer_.expires_after(next);
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timer_.async_wait([this, quick_syncs](const boost::system::error_code& ec) {
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if (!ec)
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{
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sendTimeSyncMessage(quick_syncs);
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}
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});
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});
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}
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void Controller::browseMdns(const MdnsHandler& handler)
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{
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#if defined(HAS_AVAHI) || defined(HAS_BONJOUR)
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try
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{
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BrowseZeroConf browser;
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mDNSResult avahiResult;
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if (browser.browse("_snapcast._tcp", avahiResult, 1000))
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{
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string host = avahiResult.ip;
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uint16_t port = avahiResult.port;
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if (avahiResult.ip_version == IPVersion::IPv6)
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host += "%" + cpt::to_string(avahiResult.iface_idx);
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handler({}, host, port);
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return;
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}
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}
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catch (const std::exception& e)
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{
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LOG(ERROR, LOG_TAG) << "Exception: " << e.what() << std::endl;
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}
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timer_.expires_after(500ms);
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timer_.async_wait([this, handler](const boost::system::error_code& ec) {
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if (!ec)
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{
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browseMdns(handler);
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}
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else
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{
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handler(ec, "", 0);
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}
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});
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#else
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handler(boost::asio::error::operation_not_supported, "", 0);
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#endif
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}
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void Controller::start()
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{
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if (settings_.server.host.empty())
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{
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browseMdns([this](const boost::system::error_code& ec, const std::string& host, uint16_t port) {
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if (ec)
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{
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LOG(ERROR, LOG_TAG) << "Failed to browse MDNS, error: " << ec.message() << "\n";
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}
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else
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{
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settings_.server.host = host;
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settings_.server.port = port;
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LOG(INFO, LOG_TAG) << "Found server " << settings_.server.host << ":" << settings_.server.port << "\n";
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clientConnection_ = make_unique<ClientConnection>(io_context_, settings_.server);
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worker();
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}
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});
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}
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else
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{
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clientConnection_ = make_unique<ClientConnection>(io_context_, settings_.server);
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worker();
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}
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}
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// void Controller::stop()
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// {
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// LOG(DEBUG, LOG_TAG) << "Stopping\n";
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// timer_.cancel();
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// }
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void Controller::reconnect()
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{
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timer_.cancel();
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clientConnection_->disconnect();
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player_.reset();
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stream_.reset();
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decoder_.reset();
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timer_.expires_after(1s);
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timer_.async_wait([this](const boost::system::error_code& ec) {
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if (!ec)
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{
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worker();
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}
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});
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}
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void Controller::worker()
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{
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clientConnection_->connect([this](const boost::system::error_code& ec) {
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if (!ec)
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{
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// LOG(INFO, LOG_TAG) << "Connected!\n";
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string macAddress = clientConnection_->getMacAddress();
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if (settings_.host_id.empty())
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settings_.host_id = ::getHostId(macAddress);
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// Say hello to the server
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auto hello = std::make_shared<msg::Hello>(macAddress, settings_.host_id, settings_.instance);
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clientConnection_->sendRequest<msg::ServerSettings>(
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hello, 2s, [this](const boost::system::error_code& ec, std::unique_ptr<msg::ServerSettings> response) mutable {
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if (ec)
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{
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LOG(ERROR, LOG_TAG) << "Failed to send hello request, error: " << ec.message() << "\n";
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reconnect();
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return;
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}
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else
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{
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serverSettings_ = std::move(response);
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LOG(INFO, LOG_TAG) << "ServerSettings - buffer: " << serverSettings_->getBufferMs() << ", latency: " << serverSettings_->getLatency()
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<< ", volume: " << serverSettings_->getVolume() << ", muted: " << serverSettings_->isMuted() << "\n";
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}
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});
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// Do initial time sync with the server
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sendTimeSyncMessage(50);
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// Start receiver loop
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getNextMessage();
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}
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else
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{
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LOG(ERROR, LOG_TAG) << "Error: " << ec.message() << "\n";
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reconnect();
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}
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});
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}
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