mirror of
https://github.com/libretro/scummvm.git
synced 2024-12-15 06:08:35 +00:00
64c3407500
svn-id: r22433
539 lines
13 KiB
C++
539 lines
13 KiB
C++
/* ScummVM - Scumm Interpreter
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* Copyright (C) 2004-2006 The ScummVM project
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*
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* The ReInherit Engine is (C)2000-2003 by Daniel Balsom.
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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 "saga/saga.h"
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#include "saga/rscfile.h"
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#include "saga/sagaresnames.h"
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#include "saga/music.h"
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#include "saga/stream.h"
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#include "sound/audiostream.h"
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#include "sound/mididrv.h"
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#include "sound/midiparser.h"
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#include "sound/mp3.h"
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#include "sound/vorbis.h"
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#include "sound/flac.h"
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#include "common/config-manager.h"
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#include "common/file.h"
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namespace Saga {
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#define BUFFER_SIZE 4096
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struct TrackFormat {
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Audio::DigitalTrackInfo* (*openTrackFunction)(int);
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};
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static const TrackFormat TRACK_FORMATS[] = {
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#ifdef USE_FLAC
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{ Audio::getFlacTrack },
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#endif
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#ifdef USE_VORBIS
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{ Audio::getVorbisTrack },
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#endif
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#ifdef USE_MAD
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{ Audio::getMP3Track },
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#endif
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{ NULL } // Terminator
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};
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// I haven't decided yet if it's a good idea to make looping part of the audio
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// stream class, or if I should use a "wrapper" class, like I did for Broken
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// Sword 2, to make it easier to add support for compressed music... but I'll
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// worry about that later.
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class RAWInputStream : public Audio::AudioStream {
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private:
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ResourceContext *_context;
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Common::File *_file;
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uint32 _filePos;
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uint32 _startPos;
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uint32 _endPos;
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bool _finished;
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bool _looping;
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int16 _buf[BUFFER_SIZE];
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const int16 *_bufferEnd;
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const int16 *_pos;
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const GameSoundInfo *_musicInfo;
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void refill();
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bool eosIntern() const {
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return _pos >= _bufferEnd;
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}
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public:
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RAWInputStream(SagaEngine *vm, ResourceContext *context, uint32 resourceId, bool looping, uint32 loopStart);
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int readBuffer(int16 *buffer, const int numSamples);
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bool endOfData() const { return eosIntern(); }
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bool isStereo() const { return _musicInfo->stereo; }
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int getRate() const { return _musicInfo->frequency; }
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};
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RAWInputStream::RAWInputStream(SagaEngine *vm, ResourceContext *context, uint32 resourceId, bool looping, uint32 loopStart)
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: _context(context), _finished(false), _looping(looping), _bufferEnd(_buf + BUFFER_SIZE) {
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ResourceData * resourceData;
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resourceData = vm->_resource->getResourceData(context, resourceId);
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_file = context->getFile(resourceData);
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_musicInfo = vm->getMusicInfo();
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if (_musicInfo == NULL) {
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error("RAWInputStream() wrong musicInfo");
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}
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// Determine the end position
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_filePos = resourceData->offset;
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_endPos = _filePos + resourceData->size;
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_startPos = _filePos + loopStart;
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if (_startPos >= _endPos)
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_startPos = _filePos;
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// Read in initial data
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refill();
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}
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int RAWInputStream::readBuffer(int16 *buffer, const int numSamples) {
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int samples = 0;
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while (samples < numSamples && !eosIntern()) {
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const int len = MIN(numSamples - samples, (int) (_bufferEnd - _pos));
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memcpy(buffer, _pos, len * 2);
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buffer += len;
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_pos += len;
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samples += len;
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if (_pos >= _bufferEnd) {
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refill();
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}
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}
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return samples;
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}
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void RAWInputStream::refill() {
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if (_finished)
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return;
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uint32 lengthLeft;
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byte *ptr = (byte *) _buf;
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_file->seek(_filePos, SEEK_SET);
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if (_looping)
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lengthLeft = 2 * BUFFER_SIZE;
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else
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lengthLeft = MIN((uint32) (2 * BUFFER_SIZE), _endPos - _filePos);
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while (lengthLeft > 0) {
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uint32 len = _file->read(ptr, MIN(lengthLeft, _endPos - _file->pos()));
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if (len & 1)
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len--;
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#ifdef SCUMM_BIG_ENDIAN
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if (!_context->isBigEndian) {
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#else
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if (_context->isBigEndian) {
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#endif
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uint16 *ptr16 = (uint16 *)ptr;
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for (uint32 i = 0; i < (len / 2); i++)
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ptr16[i] = SWAP_BYTES_16(ptr16[i]);
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}
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lengthLeft -= len;
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ptr += len;
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if (lengthLeft > 0)
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_file->seek(_startPos);
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}
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_filePos = _file->pos();
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_pos = _buf;
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_bufferEnd = (int16 *)ptr;
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if (!_looping && _filePos >= _endPos) {
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_finished = true;
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}
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}
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MusicPlayer::MusicPlayer(MidiDriver *driver) : _parser(0), _driver(driver), _looping(false), _isPlaying(false), _passThrough(false), _isGM(false) {
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memset(_channel, 0, sizeof(_channel));
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_masterVolume = 0;
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this->open();
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}
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MusicPlayer::~MusicPlayer() {
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_driver->setTimerCallback(NULL, NULL);
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stopMusic();
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this->close();
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}
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void MusicPlayer::setVolume(int volume) {
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if (volume < 0)
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volume = 0;
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else if (volume > 255)
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volume = 255;
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if (_masterVolume == volume)
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return;
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_masterVolume = volume;
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for (int i = 0; i < 16; ++i) {
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if (_channel[i]) {
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_channel[i]->volume(_channelVolume[i] * _masterVolume / 255);
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}
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}
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}
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int MusicPlayer::open() {
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// Don't ever call open without first setting the output driver!
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if (!_driver)
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return 255;
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int ret = _driver->open();
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if (ret)
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return ret;
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_driver->setTimerCallback(this, &onTimer);
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return 0;
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}
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void MusicPlayer::close() {
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stopMusic();
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if (_driver)
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_driver->close();
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_driver = 0;
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}
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void MusicPlayer::send(uint32 b) {
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if (_passThrough) {
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_driver->send(b);
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return;
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}
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byte channel = (byte)(b & 0x0F);
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if ((b & 0xFFF0) == 0x07B0) {
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// Adjust volume changes by master volume
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byte volume = (byte)((b >> 16) & 0x7F);
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_channelVolume[channel] = volume;
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volume = volume * _masterVolume / 255;
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b = (b & 0xFF00FFFF) | (volume << 16);
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} else if ((b & 0xF0) == 0xC0 && !_isGM && !_nativeMT32) {
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b = (b & 0xFFFF00FF) | MidiDriver::_mt32ToGm[(b >> 8) & 0xFF] << 8;
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}
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else if ((b & 0xFFF0) == 0x007BB0) {
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//Only respond to All Notes Off if this channel
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//has currently been allocated
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if (_channel[b & 0x0F])
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return;
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}
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if (!_channel[channel])
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_channel[channel] = (channel == 9) ? _driver->getPercussionChannel() : _driver->allocateChannel();
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if (_channel[channel])
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_channel[channel]->send(b);
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}
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void MusicPlayer::metaEvent(byte type, byte *data, uint16 length) {
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// FIXME: The "elkfanfare" is played much too quickly. There are some
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// meta events that we don't handle. Perhaps there is a
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// connection...?
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switch (type) {
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case 0x2F: // End of Track
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if (_looping)
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_parser->jumpToTick(0);
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else
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stopMusic();
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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 MusicPlayer::onTimer(void *refCon) {
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MusicPlayer *music = (MusicPlayer *)refCon;
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if (music->_isPlaying)
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music->_parser->onTimer();
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}
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void MusicPlayer::playMusic() {
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_isPlaying = true;
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}
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void MusicPlayer::stopMusic() {
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_isPlaying = false;
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if (_parser) {
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_parser->unloadMusic();
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_parser = NULL;
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}
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}
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Music::Music(SagaEngine *vm, Audio::Mixer *mixer, MidiDriver *driver, int enabled) : _vm(vm), _mixer(mixer), _enabled(enabled), _adlib(false) {
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_player = new MusicPlayer(driver);
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_currentVolume = 0;
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xmidiParser = MidiParser::createParser_XMIDI();
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smfParser = MidiParser::createParser_SMF();
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_musicContext = _vm->_resource->getContext(GAME_MUSICFILE);
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_songTableLen = 0;
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_songTable = 0;
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_track = NULL;
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_midiMusicData = NULL;
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}
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Music::~Music() {
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_mixer->stopHandle(_musicHandle);
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delete _player;
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xmidiParser->setMidiDriver(NULL);
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smfParser->setMidiDriver(NULL);
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delete xmidiParser;
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delete smfParser;
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free(_songTable);
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free(_midiMusicData);
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}
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void Music::musicVolumeGaugeCallback(void *refCon) {
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((Music *)refCon)->musicVolumeGauge();
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}
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void Music::musicVolumeGauge() {
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int volume;
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_currentVolumePercent += 10;
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if (_currentVolume - _targetVolume > 0) { // Volume decrease
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volume = _targetVolume + (_currentVolume - _targetVolume) * (100 - _currentVolumePercent) / 100;
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} else {
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volume = _currentVolume + (_targetVolume - _currentVolume) * _currentVolumePercent / 100;
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}
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if (volume < 0)
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volume = 1;
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_mixer->setVolumeForSoundType(Audio::Mixer::kMusicSoundType, volume);
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_player->setVolume(volume);
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if (_currentVolumePercent == 100) {
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Common::g_timer->removeTimerProc(&musicVolumeGaugeCallback);
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_currentVolume = _targetVolume;
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}
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}
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void Music::setVolume(int volume, int time) {
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_targetVolume = volume * 2; // ScummVM has different volume scale
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_currentVolumePercent = 0;
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if (volume == -1) // Set Full volume
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volume = 255;
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if (time == 1) {
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_mixer->setVolumeForSoundType(Audio::Mixer::kMusicSoundType, volume);
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_player->setVolume(volume);
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Common::g_timer->removeTimerProc(&musicVolumeGaugeCallback);
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_currentVolume = volume;
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return;
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}
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Common::g_timer->installTimerProc(&musicVolumeGaugeCallback, time * 100L, this);
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}
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bool Music::isPlaying() {
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return _mixer->isSoundHandleActive(_musicHandle) || _player->isPlaying();
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}
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void Music::play(uint32 resourceId, MusicFlags flags) {
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Audio::AudioStream *audioStream = NULL;
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MidiParser *parser;
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ResourceContext *context;
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byte *resourceData;
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size_t resourceSize;
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uint32 loopStart;
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debug(2, "Music::play %d, %d", resourceId, flags);
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if (!_enabled) {
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return;
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}
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if (isPlaying() && _trackNumber == resourceId) {
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return;
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}
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_trackNumber = resourceId;
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_player->stopMusic();
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_mixer->stopHandle(_musicHandle);
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int realTrackNumber;
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if (_vm->getGameType() == GType_ITE) {
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if (flags == MUSIC_DEFAULT) {
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if (resourceId == 13 || resourceId == 19) {
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flags = MUSIC_NORMAL;
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} else {
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flags = MUSIC_LOOP;
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}
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}
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realTrackNumber = resourceId - 8;
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} else {
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realTrackNumber = resourceId + 1;
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}
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// Try to open standalone digital track
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for (int i = 0; i < ARRAYSIZE(TRACK_FORMATS) - 1; ++i)
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if ((_track = TRACK_FORMATS[i].openTrackFunction(realTrackNumber))) {
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break;
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}
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if (_track) {
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_track->play(_mixer, &_musicHandle, (flags == MUSIC_LOOP) ? -1 : 1, 10000);
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return;
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}
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if (_vm->getGameType() == GType_ITE) {
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if (resourceId >= 9 && resourceId <= 34) {
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if (_musicContext != NULL) {
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//TODO: check resource size
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loopStart = 0;
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// fix ITE sunstatm score
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if ((_vm->getGameType() == GType_ITE) && (resourceId == MUSIC_SUNSPOT)) {
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loopStart = 4 * 18727;
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}
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audioStream = new RAWInputStream(_vm, _musicContext, resourceId - 9, flags == MUSIC_LOOP, loopStart);
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}
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}
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}
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if (audioStream) {
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debug(2, "Playing digitized music");
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_mixer->playInputStream(Audio::Mixer::kMusicSoundType, &_musicHandle, audioStream);
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return;
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}
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if (flags == MUSIC_DEFAULT) {
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flags = MUSIC_NORMAL;
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}
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// Load MIDI/XMI resource data
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if (_vm->getGameType() == GType_ITE) {
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context = _vm->_resource->getContext(GAME_MUSICFILE_GM);
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if (context == NULL) {
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context = _vm->_resource->getContext(GAME_RESOURCEFILE);
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}
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} else {
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// I've listened to music from both the FM and the GM
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// file, and I've tentatively reached the conclusion
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// that they are both General MIDI. My guess is that
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// the FM file has been reorchestrated to sound better
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// on Adlib and other FM synths.
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//
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// Sev says the Adlib music does not sound like in the
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// original, but I still think assuming General MIDI is
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// the right thing to do. Some music, like the End
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// Title (song 0) sound absolutely atrocious when piped
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// through our MT-32 to GM mapping.
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//
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// It is, however, quite possible that the original
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// used a different GM to FM mapping. If the original
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// sounded markedly better, perhaps we should add some
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// way of replacing our stock mapping in adlib.cpp?
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//
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// For the composer's own recording of the End Title,
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// see http://www.johnottman.com/
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// Oddly enough, the intro music (song 1) is very
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// different in the two files. I have no idea why.
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if (hasAdlib()) {
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context = _vm->_resource->getContext(GAME_MUSICFILE_FM);
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} else {
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context = _vm->_resource->getContext(GAME_MUSICFILE_GM);
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}
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}
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_player->setGM(true);
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_vm->_resource->loadResource(context, resourceId, resourceData, resourceSize);
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if (resourceSize < 4) {
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error("Music::play() wrong music resource size");
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}
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if (xmidiParser->loadMusic(resourceData, resourceSize)) {
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if (_vm->getGameType() == GType_ITE)
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_player->setGM(false);
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parser = xmidiParser;
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} else {
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if (smfParser->loadMusic(resourceData, resourceSize)) {
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parser = smfParser;
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} else {
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error("Music::play() wrong music resource");
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}
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}
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parser->setTrack(0);
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parser->setMidiDriver(_player);
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parser->setTimerRate(_player->getBaseTempo());
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parser->property(MidiParser::mpCenterPitchWheelOnUnload, 1);
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_player->_parser = parser;
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_player->setVolume(_vm->_musicVolume == 10 ? 255 : _vm->_musicVolume * 25);
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if (flags & MUSIC_LOOP)
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_player->setLoop(true);
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else
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_player->setLoop(false);
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_player->playMusic();
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free(_midiMusicData);
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_midiMusicData = resourceData;
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}
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void Music::pause(void) {
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//TODO: do it
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}
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void Music::resume(void) {
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//TODO: do it}
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}
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void Music::stop(void) {
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//TODO: do it
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}
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} // End of namespace Saga
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