mirror of
https://github.com/libretro/scummvm.git
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1f9e408e2f
svn-id: r11217
475 lines
12 KiB
C++
475 lines
12 KiB
C++
/* ScummVM - Scumm Interpreter
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* Copyright (C) 2001 Ludvig Strigeus
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* Copyright (C) 2001-2003 The ScummVM project
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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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*
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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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*
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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., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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* $Header$
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*/
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#ifndef DEFINED_IMUSE_INTERNAL
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#define DEFINED_IMUSE_INTERNAL
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#include "common/scummsys.h"
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#include "scumm/instrument.h"
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#include "sound/mididrv.h"
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class MidiParser;
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class OSystem;
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class SoundMixer;
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namespace Scumm {
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// Unremark this statement to activate some of
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// the most common iMuse diagnostic messages.
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// #define IMUSE_DEBUG
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struct HookDatas;
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struct ParameterFader;
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struct DeferredCommand;
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struct ImTrigger;
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struct SustainingNotes;
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struct CommandQueue;
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struct IsNoteCmdData;
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class Player;
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struct Part;
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class IMuseInternal;
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// Some entities also referenced
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class ScummEngine;
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//////////////////////////////////////////////////
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//
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// Some constants
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//
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//////////////////////////////////////////////////
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#define TICKS_PER_BEAT 480
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#define TRIGGER_ID 0
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#define COMMAND_ID 1
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#define MDPG_TAG "MDpg"
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////////////////////////////////////////
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//
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// Helper functions
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//
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////////////////////////////////////////
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inline int clamp(int val, int min, int max) {
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if(val < min)
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return min;
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if(val > max)
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return max;
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return val;
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}
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inline int transpose_clamp(int a, int b, int c) {
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if(b > a)
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a += (b - a + 11) / 12 * 12;
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if(c < a)
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a -= (a - c + 11) / 12 * 12;
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return a;
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}
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//////////////////////////////////////////////////
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//
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// Entity declarations
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//
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//////////////////////////////////////////////////
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struct HookDatas {
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byte _jump[2];
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byte _transpose;
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byte _part_onoff[16];
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byte _part_volume[16];
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byte _part_program[16];
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byte _part_transpose[16];
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int query_param(int param, byte chan);
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int set(byte cls, byte value, byte chan);
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HookDatas() { memset(this, 0, sizeof(HookDatas)); }
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};
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struct ParameterFader {
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enum {
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pfVolume = 1,
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pfTranspose = 3,
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pfSpeed = 4
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};
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int param;
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int start;
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int end;
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uint32 total_time;
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uint32 current_time;
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ParameterFader() { param = 0; }
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void init() { param = 0; }
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};
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struct DeferredCommand {
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uint32 time_left;
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int a, b, c, d, e, f;
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DeferredCommand() { memset(this, 0, sizeof(DeferredCommand)); }
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};
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struct ImTrigger {
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int sound;
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byte id;
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uint16 expire;
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int command [8];
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ImTrigger() { memset(this, 0, sizeof(ImTrigger)); }
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};
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struct CommandQueue {
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uint16 array[8];
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CommandQueue() { memset(this, 0, sizeof(CommandQueue)); }
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};
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class Player : public MidiDriver {
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protected:
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// Moved from IMuseInternal.
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// This is only used by one player at a time.
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static uint16 _active_notes[128];
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protected:
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MidiDriver *_midi;
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MidiParser *_parser;
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bool _passThrough; // Only respond to EOT, all else direct to MidiDriver
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Part *_parts;
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bool _active;
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bool _scanning;
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int _id;
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byte _priority;
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byte _volume;
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int8 _pan;
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int8 _transpose;
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int8 _detune;
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byte _vol_eff;
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uint _track_index;
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uint _loop_to_beat;
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uint _loop_from_beat;
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uint _loop_counter;
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uint _loop_to_tick;
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uint _loop_from_tick;
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byte _speed;
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bool _abort;
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// This does not get used by us! It is only
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// here for save/load purposes, and gets
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// passed on to the MidiParser during
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// fixAfterLoad().
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uint32 _music_tick;
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HookDatas _hook;
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ParameterFader _parameterFaders[4];
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bool _isMT32;
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bool _isGM;
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protected:
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// Player part
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void hook_clear();
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void uninit_parts();
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byte *parse_midi(byte *s);
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void part_set_transpose(uint8 chan, byte relative, int8 b);
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void parse_sysex(byte *p, uint len);
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void maybe_jump(byte cmd, uint track, uint beat, uint tick);
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void maybe_set_transpose(byte *data);
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void maybe_part_onoff(byte *data);
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void maybe_set_volume(byte *data);
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void maybe_set_program(byte *data);
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void maybe_set_transpose_part(byte *data);
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void turn_off_pedals();
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int query_part_param(int param, byte chan);
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void turn_off_parts();
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void play_active_notes();
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void transitionParameters();
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static void decode_sysex_bytes(const byte *src, byte *dst, int len);
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// Sequencer part
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int start_seq_sound(int sound, bool reset_vars = true);
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int query_param(int param);
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public:
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IMuseInternal *_se;
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uint _vol_chan;
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public:
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Player();
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virtual ~Player();
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int addParameterFader(int param, int target, int time);
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void clear();
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void clearLoop();
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void fixAfterLoad();
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Part * getActivePart(uint8 part);
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uint getBeatIndex();
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int8 getDetune() const { return _detune; }
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byte getEffectiveVolume() const { return _vol_eff; }
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int getID() const { return _id; }
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MidiDriver *getMidiDriver() const { return _midi; }
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int getParam(int param, byte chan);
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int8 getPan() const { return _pan; }
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Part * getPart(uint8 part);
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byte getPriority() const { return _priority; }
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uint getTicksPerBeat() const { return TICKS_PER_BEAT; }
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int8 getTranspose() const { return _transpose; }
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byte getVolume() const { return _volume; }
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bool isActive() const { return _active; }
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bool isFadingOut() const;
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bool isGM() const { return _isGM; }
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bool isMT32() const { return _isMT32; }
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bool jump(uint track, uint beat, uint tick);
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void onTimer();
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void removePart(Part *part);
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int scan(uint totrack, uint tobeat, uint totick);
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int save_or_load(Serializer *ser);
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int setHook(byte cls, byte value, byte chan) { return _hook.set(cls, value, chan); }
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void setDetune(int detune);
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bool setLoop(uint count, uint tobeat, uint totick, uint frombeat, uint fromtick);
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void setPan(int pan);
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void setPriority(int pri);
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void setSpeed(byte speed);
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int setTranspose(byte relative, int b);
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int setVolume(byte vol);
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bool startSound(int sound, MidiDriver *midi, bool passThrough);
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int getMusicTimer() const;
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public:
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// MidiDriver interface
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int open() { return 0; }
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void close() { }
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void send(uint32 b);
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const char *getErrorName(int error_code) { return "Unknown"; }
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void sysEx(byte *msg, uint16 length);
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void metaEvent(byte type, byte *data, uint16 length);
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void setTimerCallback(void *timer_param, void(*timer_proc)(void *)) { }
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uint32 getBaseTempo();
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MidiChannel *allocateChannel() { return 0; }
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MidiChannel *getPercussionChannel() { return 0; }
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};
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struct Part {
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int _slot;
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Part *_next, *_prev;
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MidiChannel *_mc;
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Player *_player;
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int16 _pitchbend;
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byte _pitchbend_factor;
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int8 _transpose, _transpose_eff;
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byte _vol, _vol_eff;
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int8 _detune, _detune_eff;
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int8 _pan, _pan_eff;
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bool _on;
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byte _modwheel;
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bool _pedal;
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int8 _pri;
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byte _pri_eff;
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byte _chan;
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byte _effect_level;
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byte _chorus;
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byte _percussion;
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byte _bank;
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// New abstract instrument definition
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Instrument _instrument;
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bool _unassigned_instrument; // For diagnostic reporting purposes only
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// MidiChannel interface
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// (We don't currently derive from MidiChannel,
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// but if we ever do, this will make it easy.)
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void noteOff(byte note);
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void noteOn(byte note, byte velocity);
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void programChange(byte value);
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void pitchBend(int16 value);
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void modulationWheel(byte value);
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void volume(byte value);
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void pitchBendFactor(byte value);
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void sustain(bool value);
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void effectLevel(byte value);
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void chorusLevel(byte value);
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void allNotesOff();
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void set_param(byte param, int value) { }
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void init();
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void setup(Player *player);
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void uninit();
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void off();
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void set_instrument(uint b);
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void set_instrument(byte *data);
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void load_global_instrument(byte b);
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void set_transpose(int8 transpose);
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void set_detune(int8 detune);
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void set_pri(int8 pri);
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void set_pan(int8 pan);
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void set_onoff(bool on);
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void fix_after_load();
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void sendAll();
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void sendPitchBend();
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bool clearToTransmit();
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Part() {
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memset(this,0,sizeof(Part));
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}
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};
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// WARNING: This is the internal variant of the IMUSE class.
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// imuse.h contains a public version of the same class.
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// the public version, only contains a set of methods.
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class IMuseInternal {
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friend class Player;
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protected:
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bool _old_adlib_instruments;
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bool _enable_multi_midi;
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bool _native_mt32;
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MidiDriver *_midi_adlib;
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MidiDriver *_midi_native;
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byte **_base_sounds;
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SoundMixer *_mixer;
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protected:
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bool _paused;
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bool _initialized;
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int _tempoFactor;
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int _player_limit; // Limits how many simultaneous music tracks are played
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bool _recycle_players; // Can we stop a player in order to start another one?
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bool _direct_passthrough; // Pass data direct to MidiDriver (no interactivity)
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uint _queue_end, _queue_pos, _queue_sound;
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byte _queue_adding;
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byte _queue_marker;
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byte _queue_cleared;
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byte _master_volume; // Master volume. 0-255
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byte _music_volume; // Global music volume. 0-255
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uint16 _trigger_count;
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ImTrigger _snm_triggers[16]; // Sam & Max triggers
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uint16 _snm_trigger_index;
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uint16 _channel_volume[8];
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uint16 _channel_volume_eff[8]; // No Save
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uint16 _volchan_table[8];
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Player _players[8];
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Part _parts[32];
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Instrument _global_adlib_instruments[32];
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CommandQueue _cmd_queue[64];
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DeferredCommand _deferredCommands[4];
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protected:
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byte *findStartOfSound(int sound);
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bool isMT32(int sound);
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bool isGM(int sound);
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int get_queue_sound_status(int sound) const;
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void handle_marker(uint id, byte data);
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int get_channel_volume(uint a);
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void initMidiDriver(MidiDriver *midi);
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void initMT32(MidiDriver *midi);
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void init_players();
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void init_parts();
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void init_queue();
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void sequencer_timers(MidiDriver *midi);
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MidiDriver *getBestMidiDriver(int sound);
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Player *allocate_player(byte priority);
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Part *allocate_part(byte pri, MidiDriver *midi);
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int32 ImSetTrigger(int sound, int id, int a, int b, int c, int d, int e, int f, int g, int h);
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int32 ImClearTrigger(int sound, int id);
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int32 ImFireAllTriggers(int sound);
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void addDeferredCommand(int time, int a, int b, int c, int d, int e, int f);
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void handleDeferredCommands(MidiDriver *midi);
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int enqueue_command(int a, int b, int c, int d, int e, int f, int g);
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int enqueue_trigger(int sound, int marker);
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int query_queue(int param);
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Player *findActivePlayer(int id);
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int get_volchan_entry(uint a);
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int set_volchan_entry(uint a, uint b);
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int set_channel_volume(uint chan, uint vol);
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void update_volumes();
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void reset_tick();
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int set_volchan(int sound, int volchan);
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void fix_parts_after_load();
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void fix_players_after_load(ScummEngine *scumm);
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static int saveReference(void *me_ref, byte type, void *ref);
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static void *loadReference(void *me_ref, byte type, int ref);
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static void midiTimerCallback(void *data);
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public:
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IMuseInternal();
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int initialize(OSystem *syst, SoundMixer *mixer, MidiDriver *midi);
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void reallocateMidiChannels(MidiDriver *midi);
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void setGlobalAdlibInstrument(byte slot, byte *data);
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void copyGlobalAdlibInstrument(byte slot, Instrument *dest);
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bool isNativeMT32() { return _native_mt32; }
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// IMuse interface
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void on_timer(MidiDriver *midi);
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void pause(bool paused);
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int terminate1();
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int terminate2();
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int save_or_load(Serializer *ser, ScummEngine *scumm);
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int set_music_volume(uint vol);
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int setMasterVolume(uint vol);
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bool startSound(int sound);
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int stopSound(int sound);
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int stopAllSounds();
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int getSoundStatus(int sound, bool ignoreFadeouts = true) const;
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int getMusicTimer() const;
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int32 doCommand (int a, int b, int c, int d, int e, int f, int g, int h);
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int32 doCommand (int numargs, int args[]);
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int clear_queue();
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void setBase(byte **base);
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uint32 property(int prop, uint32 value);
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static IMuseInternal *create(OSystem *syst, SoundMixer *mixer, MidiDriver *midi);
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};
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} // End of namespace Scumm
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#endif
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