mirror of
https://github.com/libretro/scummvm.git
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555 lines
12 KiB
C++
555 lines
12 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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*/
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#include "common/stream.h"
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#include "common/textconsole.h"
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#include "common/util.h"
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#include "audio/mixer.h"
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#include "audio/midiparser.h"
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#include "audio/midiplayer.h"
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#include "audio/mods/protracker.h"
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#include "audio/decoders/raw.h"
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#include "parallaction/disk.h"
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#include "parallaction/parallaction.h"
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#include "parallaction/sound.h"
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namespace Parallaction {
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/*
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* List of calls to the original music driver.
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*
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*
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* 1 set music buffer segment
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* 2 set music buffer offset
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* 3 set music buffer size
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* 4 play/resume
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* 5 stop
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* 6 pause
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* 7 set channel volume
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* 8 set fade in flag
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* 9 set fade out flag
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* 10 set global volume
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* 11 shutdown
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* 12 get status (stopped, playing, paused)
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* 13 set fade volume change rate
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* 14 get global volume
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* 15 get fade in flag
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* 16 get fade out flag
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* 17 set tempo
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* 18 get tempo
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* 19 get fade volume change rate
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* 20 get looping flag
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* 21 set looping flag
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* 22 get version??
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* 23 get version??
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* 24 get busy flag (dsp has pending data)
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*/
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class MidiParser_MSC : public MidiParser {
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protected:
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virtual void parseNextEvent(EventInfo &info);
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virtual bool loadMusic(byte *data, uint32 size);
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uint8 read1(byte *&data) {
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return *data++;
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}
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void parseMetaEvent(EventInfo &info);
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void parseMidiEvent(EventInfo &info);
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bool byte_11C5A;
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uint8 _beats;
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uint8 _lastEvent;
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byte *_trackEnd;
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public:
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MidiParser_MSC() : byte_11C5A(false) {
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}
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};
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void MidiParser_MSC::parseMetaEvent(EventInfo &info) {
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uint8 type = read1(_position._play_pos);
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uint8 len = read1(_position._play_pos);
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info.ext.type = type;
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info.length = len;
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info.ext.data = 0;
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if (type == 0x51) {
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info.ext.data = _position._play_pos;
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} else {
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warning("unknown meta event 0x%02X", type);
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info.ext.type = 0;
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}
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_position._play_pos += len;
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}
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void MidiParser_MSC::parseMidiEvent(EventInfo &info) {
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uint8 type = info.command();
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switch (type) {
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case 0x8:
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case 0x9:
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case 0xA:
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case 0xB:
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case 0xE:
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info.basic.param1 = read1(_position._play_pos);
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info.basic.param2 = read1(_position._play_pos);
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break;
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case 0xC:
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case 0xD:
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info.basic.param1 = read1(_position._play_pos);
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info.basic.param2 = 0;
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break;
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default:
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warning("Unexpected midi event 0x%02X in midi data", info.event);
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}
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//if ((type == 0xB) && (info.basic.param1 == 64)) info.basic.param2 = 127;
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}
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void MidiParser_MSC::parseNextEvent(EventInfo &info) {
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info.start = _position._play_pos;
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if (_position._play_pos >= _trackEnd) {
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// fake an end-of-track meta event
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info.delta = 0;
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info.event = 0xFF;
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info.ext.type = 0x2F;
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info.length = 0;
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return;
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}
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info.delta = readVLQ(_position._play_pos);
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info.event = read1(_position._play_pos);
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if (info.event == 0xFF) {
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parseMetaEvent(info);
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return;
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}
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if (info.event < 0x80) {
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_position._play_pos--;
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info.event = _lastEvent;
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}
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parseMidiEvent(info);
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_lastEvent = info.event;
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}
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bool MidiParser_MSC::loadMusic(byte *data, uint32 size) {
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unloadMusic();
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byte *pos = data;
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if (memcmp("MSCt", pos, 4)) {
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warning("Expected header not found in music file");
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return false;
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}
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pos += 4;
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_beats = read1(pos);
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_ppqn = read2low(pos);
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if (byte_11C5A) {
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// do something with byte_11C4D
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}
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_lastEvent = 0;
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_trackEnd = data + size;
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_num_tracks = 1;
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_tracks[0] = pos;
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setTempo(500000);
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setTrack(0);
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return true;
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}
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MidiParser *createParser_MSC() {
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return new MidiParser_MSC;
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}
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class MidiPlayer_MSC : public Audio::MidiPlayer {
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public:
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MidiPlayer_MSC();
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void play(Common::SeekableReadStream *stream);
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virtual void pause(bool p);
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virtual void setVolume(int volume);
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virtual void onTimer();
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// MidiDriver_BASE interface
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virtual void send(uint32 b);
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private:
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void setVolumeInternal(int volume);
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bool _paused;
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};
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MidiPlayer_MSC::MidiPlayer_MSC()
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: _paused(false) {
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MidiDriver::DeviceHandle dev = MidiDriver::detectDevice(MDT_MIDI | MDT_ADLIB | MDT_PREFER_GM);
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_driver = MidiDriver::createMidi(dev);
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assert(_driver);
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int ret = _driver->open();
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if (ret == 0) {
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_driver->setTimerCallback(this, &timerCallback);
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}
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}
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void MidiPlayer_MSC::play(Common::SeekableReadStream *stream) {
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Common::StackLock lock(_mutex);
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stop();
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if (!stream)
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return;
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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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_parser = createParser_MSC();
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_parser->loadMusic(_midiData, size);
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_parser->setTrack(0);
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_parser->setMidiDriver(this);
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_parser->setTimerRate(_driver->getBaseTempo());
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_isLooping = true;
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_isPlaying = true;
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}
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}
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void MidiPlayer_MSC::pause(bool p) {
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_paused = p;
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setVolumeInternal(_paused ? 0 : _masterVolume);
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}
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void MidiPlayer_MSC::onTimer() {
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Common::StackLock lock(_mutex);
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if (!_paused && _isPlaying && _parser) {
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_parser->onTimer();
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}
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}
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void MidiPlayer_MSC::setVolume(int volume) {
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_masterVolume = CLIP(volume, 0, 255);
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setVolumeInternal(_masterVolume);
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}
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void MidiPlayer_MSC::setVolumeInternal(int volume) {
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Common::StackLock lock(_mutex);
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for (int i = 0; i < kNumChannels; ++i) {
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if (_channelsTable[i]) {
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_channelsTable[i]->volume(_channelsVolume[i] * volume / 255);
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}
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}
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}
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void MidiPlayer_MSC::send(uint32 b) {
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// FIXME/TODO: Unlike Audio::MidiPlayer::send(), this code
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// does not handle All Note Off. Is this on purpose?
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// If not, we could simply remove this method, and use the
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// inherited one.
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const byte ch = b & 0x0F;
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byte param2 = (b >> 16) & 0xFF;
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switch (b & 0xFFF0) {
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case 0x07B0: // volume change
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_channelsVolume[ch] = param2;
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break;
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}
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sendToChannel(ch, b);
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}
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DosSoundMan_br::DosSoundMan_br(Parallaction_br *vm) : SoundMan_br(vm) {
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_midiPlayer = new MidiPlayer_MSC();
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assert(_midiPlayer);
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}
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DosSoundMan_br::~DosSoundMan_br() {
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delete _midiPlayer;
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}
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Audio::AudioStream *DosSoundMan_br::loadChannelData(const char *filename, Channel *ch, bool looping) {
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Common::SeekableReadStream *stream = _vm->_disk->loadSound(filename);
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uint32 dataSize = stream->size();
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byte *data = (byte *)malloc(dataSize);
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if (stream->read(data, dataSize) != dataSize)
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error("DosSoundMan_br::loadChannelData: Read failed");
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delete stream;
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// TODO: Confirm sound rate
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int rate = 11025;
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ch->stream = Audio::makeLoopingAudioStream(
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Audio::makeRawStream(data, dataSize, rate, Audio::FLAG_UNSIGNED),
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looping ? 0 : 1);
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return ch->stream;
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}
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void DosSoundMan_br::playSfx(const char *filename, uint channel, bool looping, int volume) {
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stopSfx(channel);
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if (!_sfxEnabled) {
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return;
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}
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debugC(1, kDebugAudio, "DosSoundMan_br::playSfx(%s, %u, %i, %i)", filename, channel, looping, volume);
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Channel *ch = &_channels[channel];
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Audio::AudioStream *input = loadChannelData(filename, ch, looping);
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_mixer->playStream(Audio::Mixer::kSFXSoundType, &ch->handle, input, -1, volume);
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}
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void DosSoundMan_br::playMusic() {
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if (_musicFile.empty()) {
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return;
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}
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if (!_musicEnabled) {
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return;
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}
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Common::SeekableReadStream *s = _vm->_disk->loadMusic(_musicFile.c_str());
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assert(s);
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_midiPlayer->play(s);
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}
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void DosSoundMan_br::stopMusic() {
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_midiPlayer->stop();
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}
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void DosSoundMan_br::pause(bool p) {
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_midiPlayer->pause(p);
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}
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AmigaSoundMan_br::AmigaSoundMan_br(Parallaction_br *vm) : SoundMan_br(vm) {
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_musicStream = 0;
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}
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AmigaSoundMan_br::~AmigaSoundMan_br() {
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stopMusic();
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}
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Audio::AudioStream *AmigaSoundMan_br::loadChannelData(const char *filename, Channel *ch, bool looping) {
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Common::SeekableReadStream *stream = _vm->_disk->loadSound(filename);
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Audio::AudioStream *input = 0;
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if (_vm->getFeatures() & GF_DEMO) {
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uint32 dataSize = stream->size();
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int8 *data = (int8*)malloc(dataSize);
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if (stream->read(data, dataSize) != dataSize)
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error("DosSoundMan_br::loadChannelData: Read failed");
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// TODO: Confirm sound rate
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int rate = 11025;
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input = Audio::makeRawStream((byte *)data, dataSize, rate, 0);
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} else {
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input = Audio::make8SVXStream(*stream, looping);
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}
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delete stream;
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ch->stream = input;
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return input;
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}
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void AmigaSoundMan_br::playSfx(const char *filename, uint channel, bool looping, int volume) {
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if (channel >= NUM_SFX_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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if (!_sfxEnabled) {
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return;
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}
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debugC(1, kDebugAudio, "AmigaSoundMan_ns::playSfx(%s, %i)", filename, channel);
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Channel *ch = &_channels[channel];
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Audio::AudioStream *input = loadChannelData(filename, ch, looping);
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if (volume == -1) {
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volume = ch->volume;
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}
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_mixer->playStream(Audio::Mixer::kSFXSoundType, &ch->handle, input, -1, volume);
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}
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void AmigaSoundMan_br::playMusic() {
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stopMusic();
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if (!_musicEnabled) {
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return;
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}
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debugC(1, kDebugAudio, "AmigaSoundMan_ns::playMusic()");
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Common::SeekableReadStream *stream = _vm->_disk->loadMusic(_musicFile.c_str());
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// NOTE: Music files don't always exist
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if (!stream)
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return;
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_musicStream = Audio::makeProtrackerStream(stream);
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delete stream;
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debugC(3, kDebugAudio, "AmigaSoundMan_ns::playMusic(): created new music stream");
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_mixer->playStream(Audio::Mixer::kMusicSoundType, &_musicHandle, _musicStream, -1, Audio::Mixer::kMaxChannelVolume, 0, DisposeAfterUse::NO, false);
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}
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void AmigaSoundMan_br::stopMusic() {
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debugC(1, kDebugAudio, "AmigaSoundMan_ns::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_br::pause(bool p) {
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_mixer->pauseHandle(_musicHandle, p);
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}
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SoundMan_br::SoundMan_br(Parallaction_br *vm) : _vm(vm) {
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_mixer = _vm->_mixer;
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_musicEnabled = true;
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_sfxEnabled = true;
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}
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SoundMan_br::~SoundMan_br() {
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stopAllSfx();
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}
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void SoundMan_br::stopAllSfx() {
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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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void SoundMan_br::setMusicFile(const char *name) {
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stopMusic();
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_musicFile = name;
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}
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void SoundMan_br::stopSfx(uint channel) {
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if (channel >= NUM_SFX_CHANNELS) {
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warning("unknown sfx channel");
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return;
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}
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debugC(1, kDebugAudio, "SoundMan_br::stopSfx(%i)", channel);
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_mixer->stopHandle(_channels[channel].handle);
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_channels[channel].stream = 0;
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}
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void SoundMan_br::execute(int command, const char *parm) {
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uint32 n = parm ? strtoul(parm, 0, 10) : 0;
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bool b = (n == 1) ? true : false;
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switch (command) {
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case SC_PLAYMUSIC:
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playMusic();
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break;
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case SC_STOPMUSIC:
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stopMusic();
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break;
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case SC_SETMUSICFILE:
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setMusicFile(parm);
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break;
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case SC_PLAYSFX:
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playSfx(parm, _sfxChannel, _sfxLooping, _sfxVolume);
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break;
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case SC_STOPSFX:
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stopSfx(n);
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break;
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case SC_SETSFXCHANNEL:
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_sfxChannel = n;
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break;
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case SC_SETSFXLOOPING:
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_sfxLooping = b;
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break;
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case SC_SETSFXVOLUME:
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_sfxVolume = n;
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break;
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case SC_PAUSE:
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pause(b);
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break;
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}
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}
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void SoundMan_br::enableSfx(bool enable) {
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if (!enable) {
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stopAllSfx();
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}
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_sfxEnabled = enable;
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}
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void SoundMan_br::enableMusic(bool enable) {
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if (enable) {
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playMusic();
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} else {
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stopMusic();
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}
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_musicEnabled = enable;
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}
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bool SoundMan_br::isSfxEnabled() const {
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return _sfxEnabled;
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}
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bool SoundMan_br::isMusicEnabled() const {
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return _musicEnabled;
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}
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} // namespace Parallaction
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