mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-18 23:57:32 +00:00
fa1d881ad4
svn-id: r35756
485 lines
11 KiB
C++
485 lines
11 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (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, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* $URL$
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* $Id$
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*
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*/
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#include "common/file.h"
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#include "common/stream.h"
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#include "sound/mixer.h"
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#include "sound/midiparser.h"
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#include "sound/mods/protracker.h"
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#include "parallaction/sound.h"
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#include "parallaction/parallaction.h"
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namespace Parallaction {
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class MidiPlayer : public MidiDriver {
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public:
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enum {
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NUM_CHANNELS = 16
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};
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MidiPlayer(MidiDriver *driver);
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~MidiPlayer();
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void play(Common::SeekableReadStream *stream);
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void stop();
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void pause(bool p);
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void updateTimer();
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void adjustVolume(int diff);
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void setVolume(int volume);
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int getVolume() const { return _masterVolume; }
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void setLooping(bool loop) { _isLooping = loop; }
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// MidiDriver interface
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int open();
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void close();
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void send(uint32 b);
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void metaEvent(byte type, byte *data, uint16 length);
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void setTimerCallback(void *timerParam, void (*timerProc)(void *)) { }
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uint32 getBaseTempo() { return _driver ? _driver->getBaseTempo() : 0; }
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MidiChannel *allocateChannel() { return 0; }
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MidiChannel *getPercussionChannel() { return 0; }
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private:
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static void timerCallback(void *p);
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MidiDriver *_driver;
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MidiParser *_parser;
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uint8 *_midiData;
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bool _isLooping;
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bool _isPlaying;
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bool _paused;
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int _masterVolume;
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MidiChannel *_channelsTable[NUM_CHANNELS];
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uint8 _channelsVolume[NUM_CHANNELS];
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Common::Mutex _mutex;
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};
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MidiPlayer::MidiPlayer(MidiDriver *driver)
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: _driver(driver), _parser(0), _midiData(0), _isLooping(false), _isPlaying(false), _paused(false), _masterVolume(0) {
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assert(_driver);
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memset(_channelsTable, 0, sizeof(_channelsTable));
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for (int i = 0; i < NUM_CHANNELS; i++) {
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_channelsVolume[i] = 127;
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}
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open();
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}
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MidiPlayer::~MidiPlayer() {
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close();
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}
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void MidiPlayer::play(Common::SeekableReadStream *stream) {
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if (!stream) {
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stop();
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return;
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}
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int size = stream->size();
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_midiData = (uint8 *)malloc(size);
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if (_midiData) {
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stream->read(_midiData, size);
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delete stream;
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_mutex.lock();
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_parser->loadMusic(_midiData, size);
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_parser->setTrack(0);
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_isLooping = true;
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_isPlaying = true;
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_mutex.unlock();
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}
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}
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void MidiPlayer::stop() {
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_mutex.lock();
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if (_isPlaying) {
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_isPlaying = false;
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_parser->unloadMusic();
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free(_midiData);
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_midiData = 0;
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}
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_mutex.unlock();
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}
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void MidiPlayer::pause(bool p) {
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_paused = p;
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for (int i = 0; i < NUM_CHANNELS; ++i) {
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if (_channelsTable[i]) {
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_channelsTable[i]->volume(_paused ? 0 : _channelsVolume[i] * _masterVolume / 255);
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}
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}
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}
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void MidiPlayer::updateTimer() {
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if (_paused) {
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return;
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}
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_mutex.lock();
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if (_isPlaying) {
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_parser->onTimer();
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}
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_mutex.unlock();
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}
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void MidiPlayer::adjustVolume(int diff) {
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setVolume(_masterVolume + diff);
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}
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void MidiPlayer::setVolume(int volume) {
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_masterVolume = CLIP(volume, 0, 255);
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_mutex.lock();
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for (int i = 0; i < NUM_CHANNELS; ++i) {
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if (_channelsTable[i]) {
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_channelsTable[i]->volume(_channelsVolume[i] * _masterVolume / 255);
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}
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}
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_mutex.unlock();
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}
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int MidiPlayer::open() {
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int ret = _driver->open();
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if (ret == 0) {
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_parser = MidiParser::createParser_SMF();
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_parser->setMidiDriver(this);
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_parser->setTimerRate(_driver->getBaseTempo());
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_driver->setTimerCallback(this, &timerCallback);
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}
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return ret;
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}
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void MidiPlayer::close() {
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stop();
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_mutex.lock();
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_driver->setTimerCallback(NULL, NULL);
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_driver->close();
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delete _driver;
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_driver = 0;
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_parser->setMidiDriver(NULL);
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delete _parser;
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_mutex.unlock();
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}
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void MidiPlayer::send(uint32 b) {
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byte volume, ch = (byte)(b & 0xF);
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switch (b & 0xFFF0) {
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case 0x07B0: // volume change
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volume = (byte)((b >> 16) & 0x7F);
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_channelsVolume[ch] = volume;
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volume = volume * _masterVolume / 255;
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b = (b & 0xFF00FFFF) | (volume << 16);
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break;
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case 0x7BB0: // all notes off
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if (!_channelsTable[ch]) {
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// channel not yet allocated, no need to send the event
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return;
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}
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break;
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}
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if (!_channelsTable[ch]) {
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_channelsTable[ch] = (ch == 9) ? _driver->getPercussionChannel() : _driver->allocateChannel();
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}
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if (_channelsTable[ch]) {
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_channelsTable[ch]->send(b);
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}
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}
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void MidiPlayer::metaEvent(byte type, byte *data, uint16 length) {
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switch (type) {
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case 0x2F: // end of Track
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if (_isLooping) {
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_parser->jumpToTick(0);
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} else {
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stop();
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}
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break;
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default:
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// warning("Unhandled meta event: %02x", type);
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break;
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}
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}
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void MidiPlayer::timerCallback(void *p) {
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MidiPlayer *player = (MidiPlayer *)p;
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player->updateTimer();
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}
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DosSoundMan::DosSoundMan(Parallaction *vm, MidiDriver *midiDriver) : SoundMan(vm), _musicData1(0) {
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_midiPlayer = new MidiPlayer(midiDriver);
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}
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DosSoundMan::~DosSoundMan() {
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debugC(1, kDebugAudio, "DosSoundMan::playMusic()");
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delete _midiPlayer;
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}
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bool DosSoundMan::isLocationSilent(const char *locationName) {
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// these are the prefixes for location names with no background midi music
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const char *noMusicPrefix[] = { "museo", "intgrottadopo", "caveau", "estgrotta", "plaza1", "endtgz", "common", 0 };
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Common::String s(locationName);
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for (int i = 0; noMusicPrefix[i]; i++) {
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if (s.hasPrefix(noMusicPrefix[i])) {
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return true;
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}
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}
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return false;
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}
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void DosSoundMan::playMusic() {
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debugC(1, kDebugAudio, "DosSoundMan::playMusic()");
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if (isLocationSilent(_vm->_location._name)) {
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// just stop the music if this location is silent
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_midiPlayer->stop();
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return;
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}
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Common::SeekableReadStream *stream = _vm->_disk->loadMusic(_musicFile);
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_midiPlayer->play(stream);
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_midiPlayer->setVolume(255);
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}
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void DosSoundMan::stopMusic() {
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_midiPlayer->stop();
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}
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void DosSoundMan::pause(bool p) {
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SoundMan::pause(p);
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_midiPlayer->pause(p);
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}
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void DosSoundMan::playCharacterMusic(const char *character) {
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if (character == NULL) {
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return;
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}
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if (!scumm_stricmp(_vm->_location._name, "night") ||
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!scumm_stricmp(_vm->_location._name, "intsushi")) {
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return;
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}
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char *name = const_cast<char*>(character);
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if (!scumm_stricmp(name, _dinoName)) {
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setMusicFile("dino");
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} else
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if (!scumm_stricmp(name, _donnaName)) {
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setMusicFile("donna");
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} else
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if (!scumm_stricmp(name, _doughName)) {
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setMusicFile("nuts");
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} else {
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warning("unknown character '%s' in DosSoundMan::playCharacterMusic", character);
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return;
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}
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playMusic();
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}
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void DosSoundMan::playLocationMusic(const char *location) {
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if (_musicData1 != 0) {
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playCharacterMusic(_vm->_char.getBaseName());
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_musicData1 = 0;
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debugC(2, kDebugExec, "changeLocation: started character specific music");
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}
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if (!scumm_stricmp(location, "night") || !scumm_stricmp(location, "intsushi")) {
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setMusicFile("nuts");
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playMusic();
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debugC(2, kDebugExec, "changeLocation: started music 'soft'");
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}
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if (isLocationSilent(location)) {
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stopMusic();
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_musicData1 = 1;
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debugC(2, kDebugExec, "changeLocation: music stopped");
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}
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}
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AmigaSoundMan::AmigaSoundMan(Parallaction *vm) : SoundMan(vm) {
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_musicStream = 0;
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_channels[0].data = 0;
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_channels[0].dispose = false;
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_channels[1].data = 0;
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_channels[1].dispose = false;
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_channels[2].data = 0;
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_channels[2].dispose = false;
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_channels[3].data = 0;
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_channels[3].dispose = false;
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}
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AmigaSoundMan::~AmigaSoundMan() {
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stopMusic();
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stopSfx(0);
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stopSfx(1);
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stopSfx(2);
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stopSfx(3);
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}
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#define AMIGABEEP_SIZE 16
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#define NUM_REPEATS 60
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static int8 res_amigaBeep[AMIGABEEP_SIZE] = {
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0, 20, 40, 60, 80, 60, 40, 20, 0, -20, -40, -60, -80, -60, -40, -20
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};
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void AmigaSoundMan::loadChannelData(const char *filename, Channel *ch) {
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if (!scumm_stricmp("beep", filename)) {
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ch->header.oneShotHiSamples = 0;
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ch->header.repeatHiSamples = 0;
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ch->header.samplesPerHiCycle = 0;
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ch->header.samplesPerSec = 11934;
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ch->header.volume = 160;
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ch->data = (int8*)malloc(AMIGABEEP_SIZE * NUM_REPEATS);
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int8* odata = ch->data;
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for (uint i = 0; i < NUM_REPEATS; i++) {
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memcpy(odata, res_amigaBeep, AMIGABEEP_SIZE);
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odata += AMIGABEEP_SIZE;
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}
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ch->dataSize = AMIGABEEP_SIZE * NUM_REPEATS;
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ch->dispose = true;
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return;
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}
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Common::ReadStream *stream = _vm->_disk->loadSound(filename);
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Audio::A8SVXDecoder decoder(*stream, ch->header, ch->data, ch->dataSize);
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decoder.decode();
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ch->dispose = true;
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delete stream;
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}
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void AmigaSoundMan::playSfx(const char *filename, uint channel, bool looping, int volume, int rate) {
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if (channel >= NUM_AMIGA_CHANNELS) {
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warning("unknown sfx channel");
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return;
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}
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stopSfx(channel);
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debugC(1, kDebugAudio, "AmigaSoundMan::playSfx(%s, %i)", filename, channel);
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Channel *ch = &_channels[channel];
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loadChannelData(filename, ch);
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uint32 loopStart, loopEnd, flags;
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if (looping) {
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// the standard way to loop 8SVX audio implies use of the oneShotHiSamples and
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// repeatHiSamples fields, but Nippon Safes handles loops according to flags
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// set in its location scripts and always operates on the whole data.
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loopStart = 0;
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loopEnd = ch->header.oneShotHiSamples + ch->header.repeatHiSamples;
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flags = Audio::Mixer::FLAG_LOOP;
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} else {
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loopStart = loopEnd = 0;
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flags = 0;
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}
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if (volume == -1) {
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volume = ch->header.volume;
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}
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if (rate == -1) {
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rate = ch->header.samplesPerSec;
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}
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_mixer->playRaw(Audio::Mixer::kSFXSoundType, &ch->handle, ch->data, ch->dataSize, rate, flags, -1, volume, 0, loopStart, loopEnd);
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}
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void AmigaSoundMan::stopSfx(uint channel) {
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if (channel >= NUM_AMIGA_CHANNELS) {
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warning("unknown sfx channel");
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return;
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}
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if (_channels[channel].dispose) {
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debugC(1, kDebugAudio, "AmigaSoundMan::stopSfx(%i)", channel);
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_mixer->stopHandle(_channels[channel].handle);
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free(_channels[channel].data);
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_channels[channel].data = 0;
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}
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}
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void AmigaSoundMan::playMusic() {
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stopMusic();
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debugC(1, kDebugAudio, "AmigaSoundMan::playMusic()");
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Common::SeekableReadStream *stream = _vm->_disk->loadMusic(_musicFile);
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_musicStream = Audio::makeProtrackerStream(stream);
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delete stream;
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debugC(3, kDebugAudio, "AmigaSoundMan::playMusic(): created new music stream");
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_mixer->playInputStream(Audio::Mixer::kMusicSoundType, &_musicHandle, _musicStream, -1, 255, 0, false, false);
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}
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void AmigaSoundMan::stopMusic() {
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debugC(1, kDebugAudio, "AmigaSoundMan::stopMusic()");
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if (_mixer->isSoundHandleActive(_musicHandle)) {
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_mixer->stopHandle(_musicHandle);
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delete _musicStream;
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_musicStream = 0;
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}
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}
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void AmigaSoundMan::playCharacterMusic(const char *character) {
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}
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void AmigaSoundMan::playLocationMusic(const char *location) {
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}
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SoundMan::SoundMan(Parallaction *vm) : _vm(vm) {
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_mixer = _vm->_mixer;
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}
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void SoundMan::setMusicVolume(int value) {
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_mixer->setVolumeForSoundType(Audio::Mixer::kMusicSoundType, value);
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}
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void SoundMan::setMusicFile(const char *filename) {
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strcpy(_musicFile, filename);
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}
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} // namespace Parallaction
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