2023-04-24 13:45:06 -07:00
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#include "playback.h"
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2023-07-10 12:45:24 -07:00
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#include "SDL_mixer.h"
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#include <SDL_audio.h>
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2023-07-15 14:52:49 -07:00
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#include <SDL.h>
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2023-07-10 12:45:24 -07:00
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#include <exception>
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2023-04-24 13:45:06 -07:00
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#include <thread>
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2023-09-03 11:54:07 -07:00
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#include <cmath>
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#ifdef __linux__
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#include <pthread.h>
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#endif
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2023-04-24 13:45:06 -07:00
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using namespace std::chrono;
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size_t CalculateBufSize(SDL_AudioSpec *obtained, double seconds, double max_seconds, size_t samples_override = 0) {
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return ((((samples_override == 0) ? obtained->samples : samples_override) * std::min(seconds, max_seconds)) + 1) * sizeof(SAMPLETYPE) * obtained->channels;
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}
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void Playback::SDLCallbackInner(Uint8 *stream, int len) {
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SDL_memset((void*)stream, 0, len);
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if (!playback_ready.load()) {
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return;
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}
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size_t i = 0;
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size_t max = 0;
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size_t unit = sizeof(SAMPLETYPE) * spec.channels;
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size_t bytes_per_iter = std::min(((bufsize / unit)) * unit, (size_t)len);
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while (st->numSamples() <= (uint)len) {
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if (general_mixer == nullptr) {
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return;
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}
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general_mixer(NULL, buf + i, bytes_per_iter);
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i += bytes_per_iter;
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max = i + bytes_per_iter;
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if (i + bytes_per_iter >= bufsize) {
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st->putSamples((SAMPLETYPE*)buf, i / unit);
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max = 0;
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i = 0;
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SDL_memset((void*)buf, 0, bufsize);
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}
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}
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st->putSamples((SAMPLETYPE*)buf, max / unit);
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st->receiveSamples((SAMPLETYPE*)stream, len / unit);
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}
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void Playback::SDLCallback(void *userdata, Uint8 *stream, int len) {
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((Playback*)userdata)->SDLCallbackInner(stream, len);
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}
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Mix_Music *Playback::Load(const char *file) {
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Mix_Music *output = Mix_LoadMUS(file);
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if (!output) {
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printf("Error loading music '%s': %s\n", file, Mix_GetError());
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throw std::exception();
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}
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Mix_PlayMusicStream(output, -1);
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length = Mix_MusicDuration(output);
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update.store(true);
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return output;
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}
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void Playback::Unload(Mix_Music *music) {
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Mix_HaltMusicStream(music);
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Mix_FreeMusic(music);
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}
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void Playback::UpdateST() {
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if (speed > 0.0f) {
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st->setRate(speed);
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}
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if (tempo > 0.0f) {
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st->setTempo(tempo);
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}
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if (pitch > 0.0f) {
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st->setPitch(pitch);
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}
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}
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double Playback::GetMaxSeconds() {
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return std::max(MaxSpeed * MaxTempo, st->getInputOutputSampleRatio());
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}
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void Playback::ThreadFunc() {
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#ifdef __linux__
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pthread_setname_np(pthread_self(), "Playback control thread");
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#endif
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bool reload = false;
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while (running) {
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playback_ready.store(false);
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if (reload) {
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printf("Resuming playback...\n");
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}
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if (!SDL_WasInit(SDL_INIT_AUDIO)) {
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if (SDL_InitSubSystem(SDL_INIT_AUDIO) < 0) {
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printf("Error initializing SDL: '%s'\n", SDL_GetError());
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throw std::exception();
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}
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}
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SDL_AudioSpec obtained;
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SDL_AudioSpec desired;
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desired.format =
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#ifdef SOUNDTOUCH_INTEGER_SAMPLES
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AUDIO_S16SYS;
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#else
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AUDIO_F32SYS;
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#endif
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desired.freq = 48000;
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desired.samples = 1024;
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desired.channels = 2;
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desired.callback = Playback::SDLCallback;
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desired.userdata = this;
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st = new SoundTouch();
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Mix_Init(MIX_INIT_FLAC|MIX_INIT_MID|MIX_INIT_MOD|MIX_INIT_MP3|MIX_INIT_OGG|MIX_INIT_OPUS|MIX_INIT_WAVPACK);
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if ((device = SDL_OpenAudioDevice(NULL, 0, &desired, &obtained, SDL_AUDIO_ALLOW_CHANNELS_CHANGE|SDL_AUDIO_ALLOW_FREQUENCY_CHANGE|SDL_AUDIO_ALLOW_SAMPLES_CHANGE)) == 0) {
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printf("Error opening audio device: '%s'\n", SDL_GetError());
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throw std::exception();
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}
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spec = obtained;
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st->setSampleRate(spec.freq);
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st->setChannels(spec.channels);
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UpdateST();
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bufsize = 0;
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size_t new_bufsize = CalculateBufSize(&spec, GetMaxSeconds(), MaxSeconds);
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buf = (Uint8*)malloc(new_bufsize);
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if (buf == NULL) {
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throw std::exception();
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}
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bufsize = new_bufsize;
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general_mixer = Mix_GetGeneralMixer();
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Mix_InitMixer(&spec, SDL_TRUE);
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SDL_PauseAudioDevice(device, 0);
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Mix_Music *music = Load(filePath.c_str());
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if (reload) {
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Seek(position);
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}
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reload = false;
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playback_ready.store(true);
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while (running && !reload) {
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if (file_changed.exchange(false)) {
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Unload(music);
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music = Load(filePath.c_str());
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}
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if (flag_mutex.try_lock()) {
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if (seeking.exchange(false)) {
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Mix_SetMusicPositionStream(music, position);
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}
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if (paused) {
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Mix_PauseMusicStream(music);
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} else {
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Mix_ResumeMusicStream(music);
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}
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if (update.exchange(false)) {
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Mix_VolumeMusicStream(music, (volume / 100.0 * MIX_MAX_VOLUME));
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SDL_LockAudioDevice(device);
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UpdateST();
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size_t correct_buf_size = CalculateBufSize(&spec, GetMaxSeconds(), MaxSeconds);
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size_t max_buf_size = correct_buf_size * 10;
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bool too_large = max_buf_size < bufsize;
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bool too_small = correct_buf_size > bufsize;
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if (too_large) {
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printf("Bufsize is too large - ");
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} else if (too_small) {
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printf("Bufsize is too small - ");
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}
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if (too_large || too_small) {
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printf("Resizing buffer...\n");
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general_mixer = nullptr;
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bufsize = 0;
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buf = (Uint8*)realloc((void*)buf, correct_buf_size);
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if (buf == NULL) {
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break;
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}
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bufsize = correct_buf_size;
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}
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SDL_UnlockAudioDevice(device);
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}
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flag_mutex.unlock();
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}
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position = Mix_GetMusicPosition(music);
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std::this_thread::sleep_for(20ms);
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}
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playback_ready.store(false);
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// ====
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Unload(music);
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SDL_CloseAudioDevice(device);
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Mix_CloseAudio();
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Mix_Quit();
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SDL_QuitSubSystem(SDL_INIT_AUDIO);
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delete st;
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free(buf);
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}
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}
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Playback::Playback() {
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running = false;
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paused = true;
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position = 0;
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length = 0;
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volume = 100.0;
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speed = 1.0;
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pitch = 1.0;
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tempo = 1.0;
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}
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Playback::~Playback() {
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Stop();
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}
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void Playback::Start(std::string filePath) {
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this->filePath = filePath;
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printf("Playing %s...\n", filePath.c_str());
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flag_mutex.lock();
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this->position = 0.0;
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seeking.store(true);
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paused = false;
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Update();
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if (running.exchange(true)) {
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file_changed.store(true);
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} else {
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thread = std::thread(&Playback::ThreadFunc, this);
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}
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flag_mutex.unlock();
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}
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double Playback::GetPosition() {
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return position;
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}
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double Playback::GetLength() {
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return length;
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}
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void Playback::Seek(double position) {
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flag_mutex.lock();
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this->position = position;
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seeking.store(true);
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flag_mutex.unlock();
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}
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void Playback::Pause() {
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flag_mutex.lock();
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paused = !paused;
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flag_mutex.unlock();
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}
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bool Playback::IsPaused() {
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return paused;
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}
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void Playback::Stop() {
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if (running.exchange(false)) {
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thread.join();
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}
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}
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void Playback::Update() {
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update.store(true);
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}
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bool Playback::IsStopped() {
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return !running;
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}
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