mirror of
https://github.com/libretro/scummvm.git
synced 2025-01-21 01:05:59 +00:00
467 lines
12 KiB
C++
467 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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*
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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., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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*/
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#include "common/scummsys.h"
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#include "common/system.h"
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#ifdef USE_MT32EMU
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#include "audio/softsynth/mt32/mt32emu.h"
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#include "audio/softsynth/mt32/ROMInfo.h"
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#include "audio/softsynth/emumidi.h"
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#include "audio/musicplugin.h"
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#include "audio/mpu401.h"
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#include "common/config-manager.h"
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#include "common/debug.h"
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#include "common/error.h"
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#include "common/events.h"
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#include "common/file.h"
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#include "common/system.h"
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#include "common/util.h"
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#include "common/archive.h"
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#include "common/textconsole.h"
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#include "common/translation.h"
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#include "graphics/fontman.h"
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#include "graphics/surface.h"
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#include "graphics/pixelformat.h"
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#include "graphics/palette.h"
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#include "graphics/font.h"
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#include "gui/message.h"
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namespace MT32Emu {
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class ReportHandlerScummVM : public ReportHandler {
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friend class Synth;
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public:
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virtual ~ReportHandlerScummVM() {}
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protected:
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// Callback for debug messages, in vprintf() format
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void printDebug(const char *fmt, va_list list) {
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Common::String out = Common::String::vformat(fmt, list);
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debug(4, "%s", out.c_str());
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}
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// Callbacks for reporting various errors and information
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void onErrorControlROM() {
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GUI::MessageDialog dialog("MT32emu: Init Error - Missing or invalid Control ROM image", "OK");
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dialog.runModal();
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error("MT32emu: Init Error - Missing or invalid Control ROM image");
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}
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void onErrorPCMROM() {
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GUI::MessageDialog dialog("MT32emu: Init Error - Missing PCM ROM image", "OK");
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dialog.runModal();
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error("MT32emu: Init Error - Missing PCM ROM image");
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}
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void showLCDMessage(const char *message) {
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g_system->displayMessageOnOSD(message);
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}
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};
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} // end of namespace MT32Emu
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class MidiChannel_MT32 : public MidiChannel_MPU401 {
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void effectLevel(byte value) { }
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void chorusLevel(byte value) { }
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};
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class MidiDriver_MT32 : public MidiDriver_Emulated {
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private:
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MidiChannel_MT32 _midiChannels[16];
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uint16 _channelMask;
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MT32Emu::Synth *_synth;
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MT32Emu::ReportHandlerScummVM *_reportHandler;
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const MT32Emu::ROMImage *_controlROM, *_pcmROM;
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Common::File *_controlFile, *_pcmFile;
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void deleteMuntStructures();
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int _outputRate;
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protected:
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void generateSamples(int16 *buf, int len);
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public:
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bool _initializing;
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MidiDriver_MT32(Audio::Mixer *mixer);
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virtual ~MidiDriver_MT32();
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int open();
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void close();
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void send(uint32 b);
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void setPitchBendRange (byte channel, uint range);
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void sysEx(const byte *msg, uint16 length);
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uint32 property(int prop, uint32 param);
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MidiChannel *allocateChannel();
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MidiChannel *getPercussionChannel();
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// AudioStream API
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bool isStereo() const { return true; }
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int getRate() const { return _outputRate; }
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};
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////////////////////////////////////////
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//
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// MidiDriver_MT32
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//
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////////////////////////////////////////
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MidiDriver_MT32::MidiDriver_MT32(Audio::Mixer *mixer) : MidiDriver_Emulated(mixer) {
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_channelMask = 0xFFFF; // Permit all 16 channels by default
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uint i;
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for (i = 0; i < ARRAYSIZE(_midiChannels); ++i) {
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_midiChannels[i].init(this, i);
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}
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_reportHandler = NULL;
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_synth = NULL;
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// Unfortunately bugs in the emulator cause inaccurate tuning
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// at rates other than 32KHz, thus we produce data at 32KHz and
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// rely on Mixer to convert.
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_outputRate = 32000; //_mixer->getOutputRate();
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_initializing = false;
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// Initialized in open()
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_controlROM = NULL;
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_pcmROM = NULL;
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_controlFile = NULL;
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_pcmFile = NULL;
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}
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MidiDriver_MT32::~MidiDriver_MT32() {
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deleteMuntStructures();
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}
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void MidiDriver_MT32::deleteMuntStructures() {
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delete _synth;
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_synth = NULL;
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delete _reportHandler;
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_reportHandler = NULL;
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if (_controlROM)
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MT32Emu::ROMImage::freeROMImage(_controlROM);
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_controlROM = NULL;
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if (_pcmROM)
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MT32Emu::ROMImage::freeROMImage(_pcmROM);
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_pcmROM = NULL;
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delete _controlFile;
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_controlFile = NULL;
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delete _pcmFile;
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_pcmFile = NULL;
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}
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int MidiDriver_MT32::open() {
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if (_isOpen)
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return MERR_ALREADY_OPEN;
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MidiDriver_Emulated::open();
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_reportHandler = new MT32Emu::ReportHandlerScummVM();
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_synth = new MT32Emu::Synth(_reportHandler);
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Graphics::PixelFormat screenFormat = g_system->getScreenFormat();
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if (screenFormat.bytesPerPixel == 1) {
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const byte dummy_palette[] = {
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0, 0, 0, // background
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0, 171, 0, // border, font
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171, 0, 0 // fill
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};
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g_system->getPaletteManager()->setPalette(dummy_palette, 0, 3);
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}
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_initializing = true;
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debug(4, _s("Initializing MT-32 Emulator"));
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_controlFile = new Common::File();
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if (!_controlFile->open("MT32_CONTROL.ROM") && !_controlFile->open("CM32L_CONTROL.ROM"))
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error("Error opening MT32_CONTROL.ROM / CM32L_CONTROL.ROM");
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_pcmFile = new Common::File();
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if (!_pcmFile->open("MT32_PCM.ROM") && !_pcmFile->open("CM32L_PCM.ROM"))
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error("Error opening MT32_PCM.ROM / CM32L_PCM.ROM");
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_controlROM = MT32Emu::ROMImage::makeROMImage(_controlFile);
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_pcmROM = MT32Emu::ROMImage::makeROMImage(_pcmFile);
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if (!_synth->open(*_controlROM, *_pcmROM))
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return MERR_DEVICE_NOT_AVAILABLE;
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double gain = (double)ConfMan.getInt("midi_gain") / 100.0;
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_synth->setOutputGain(1.0f * gain);
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_synth->setReverbOutputGain(0.68f * gain);
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_initializing = false;
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if (screenFormat.bytesPerPixel > 1)
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g_system->fillScreen(screenFormat.RGBToColor(0, 0, 0));
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else
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g_system->fillScreen(0);
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g_system->updateScreen();
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_mixer->playStream(Audio::Mixer::kPlainSoundType, &_mixerSoundHandle, this, -1, Audio::Mixer::kMaxChannelVolume, 0, DisposeAfterUse::NO, true);
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return 0;
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}
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void MidiDriver_MT32::send(uint32 b) {
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_synth->playMsg(b);
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}
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void MidiDriver_MT32::setPitchBendRange(byte channel, uint range) {
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if (range > 24) {
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warning("setPitchBendRange() called with range > 24: %d", range);
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}
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byte benderRangeSysex[9];
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benderRangeSysex[0] = 0x41; // Roland
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benderRangeSysex[1] = channel;
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benderRangeSysex[2] = 0x16; // MT-32
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benderRangeSysex[3] = 0x12; // Write
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benderRangeSysex[4] = 0x00;
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benderRangeSysex[5] = 0x00;
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benderRangeSysex[6] = 0x04;
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benderRangeSysex[7] = (byte)range;
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benderRangeSysex[8] = MT32Emu::Synth::calcSysexChecksum(&benderRangeSysex[4], 4, 0);
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sysEx(benderRangeSysex, 9);
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}
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void MidiDriver_MT32::sysEx(const byte *msg, uint16 length) {
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if (msg[0] == 0xf0) {
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_synth->playSysex(msg, length);
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} else {
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_synth->playSysexWithoutFraming(msg, length);
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}
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}
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void MidiDriver_MT32::close() {
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if (!_isOpen)
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return;
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_isOpen = false;
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// Detach the player callback handler
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setTimerCallback(NULL, NULL);
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// Detach the mixer callback handler
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_mixer->stopHandle(_mixerSoundHandle);
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_synth->close();
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deleteMuntStructures();
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}
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void MidiDriver_MT32::generateSamples(int16 *data, int len) {
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_synth->render(data, len);
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}
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uint32 MidiDriver_MT32::property(int prop, uint32 param) {
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switch (prop) {
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case PROP_CHANNEL_MASK:
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_channelMask = param & 0xFFFF;
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return 1;
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}
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return 0;
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}
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MidiChannel *MidiDriver_MT32::allocateChannel() {
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MidiChannel_MT32 *chan;
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uint i;
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for (i = 0; i < ARRAYSIZE(_midiChannels); ++i) {
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if (i == 9 || !(_channelMask & (1 << i)))
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continue;
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chan = &_midiChannels[i];
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if (chan->allocate()) {
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return chan;
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}
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}
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return NULL;
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}
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MidiChannel *MidiDriver_MT32::getPercussionChannel() {
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return &_midiChannels[9];
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}
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// This code should be used when calling the timer callback from the mixer thread is undesirable.
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// Note that it results in less accurate timing.
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#if 0
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class MidiEvent_MT32 {
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public:
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MidiEvent_MT32 *_next;
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uint32 _msg; // 0xFFFFFFFF indicates a sysex message
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byte *_data;
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uint32 _len;
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MidiEvent_MT32(uint32 msg, byte *data, uint32 len) {
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_msg = msg;
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if (len > 0) {
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_data = new byte[len];
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memcpy(_data, data, len);
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}
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_len = len;
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_next = NULL;
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}
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MidiEvent_MT32() {
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if (_len > 0)
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delete _data;
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}
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};
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class MidiDriver_ThreadedMT32 : public MidiDriver_MT32 {
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private:
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OSystem::Mutex _eventMutex;
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MidiEvent_MT32 *_events;
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TimerManager::TimerProc _timer_proc;
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void pushMidiEvent(MidiEvent_MT32 *event);
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MidiEvent_MT32 *popMidiEvent();
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protected:
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void send(uint32 b);
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void sysEx(const byte *msg, uint16 length);
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public:
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MidiDriver_ThreadedMT32(Audio::Mixer *mixer);
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void onTimer();
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void close();
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void setTimerCallback(void *timer_param, TimerManager::TimerProc timer_proc);
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};
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MidiDriver_ThreadedMT32::MidiDriver_ThreadedMT32(Audio::Mixer *mixer) : MidiDriver_MT32(mixer) {
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_events = NULL;
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_timer_proc = NULL;
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}
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void MidiDriver_ThreadedMT32::close() {
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MidiDriver_MT32::close();
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while ((popMidiEvent() != NULL)) {
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// Just eat any leftover events
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}
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}
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void MidiDriver_ThreadedMT32::setTimerCallback(void *timer_param, TimerManager::TimerProc timer_proc) {
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if (!_timer_proc || !timer_proc) {
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if (_timer_proc)
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_vm->_timer->removeTimerProc(_timer_proc);
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_timer_proc = timer_proc;
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if (timer_proc)
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_vm->_timer->installTimerProc(timer_proc, getBaseTempo(), timer_param, "MT32tempo");
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}
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}
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void MidiDriver_ThreadedMT32::pushMidiEvent(MidiEvent_MT32 *event) {
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Common::StackLock lock(_eventMutex);
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if (_events == NULL) {
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_events = event;
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} else {
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MidiEvent_MT32 *last = _events;
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while (last->_next != NULL)
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last = last->_next;
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last->_next = event;
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}
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}
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MidiEvent_MT32 *MidiDriver_ThreadedMT32::popMidiEvent() {
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Common::StackLock lock(_eventMutex);
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MidiEvent_MT32 *event;
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event = _events;
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if (event != NULL)
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_events = event->_next;
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return event;
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}
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void MidiDriver_ThreadedMT32::send(uint32 b) {
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MidiEvent_MT32 *event = new MidiEvent_MT32(b, NULL, 0);
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pushMidiEvent(event);
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}
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void MidiDriver_ThreadedMT32::sysEx(const byte *msg, uint16 length) {
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MidiEvent_MT32 *event = new MidiEvent_MT32(0xFFFFFFFF, msg, length);
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pushMidiEvent(event);
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}
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void MidiDriver_ThreadedMT32::onTimer() {
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MidiEvent_MT32 *event;
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while ((event = popMidiEvent()) != NULL) {
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if (event->_msg == 0xFFFFFFFF) {
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MidiDriver_MT32::sysEx(event->_data, event->_len);
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} else {
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MidiDriver_MT32::send(event->_msg);
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}
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delete event;
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}
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}
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#endif
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// Plugin interface
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class MT32EmuMusicPlugin : public MusicPluginObject {
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public:
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const char *getName() const {
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return _s("MT-32 Emulator");
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}
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const char *getId() const {
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return "mt32";
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}
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MusicDevices getDevices() const;
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bool checkDevice(MidiDriver::DeviceHandle) const;
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Common::Error createInstance(MidiDriver **mididriver, MidiDriver::DeviceHandle = 0) const;
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};
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MusicDevices MT32EmuMusicPlugin::getDevices() const {
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MusicDevices devices;
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devices.push_back(MusicDevice(this, "", MT_MT32));
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return devices;
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}
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bool MT32EmuMusicPlugin::checkDevice(MidiDriver::DeviceHandle) const {
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if (!((Common::File::exists("MT32_CONTROL.ROM") && Common::File::exists("MT32_PCM.ROM")) ||
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(Common::File::exists("CM32L_CONTROL.ROM") && Common::File::exists("CM32L_PCM.ROM")))) {
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warning("The MT-32 emulator requires one of the two following file sets (not bundled with ScummVM):\n Either 'MT32_CONTROL.ROM' and 'MT32_PCM.ROM' or 'CM32L_CONTROL.ROM' and 'CM32L_PCM.ROM'");
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return false;
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}
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return true;
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}
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Common::Error MT32EmuMusicPlugin::createInstance(MidiDriver **mididriver, MidiDriver::DeviceHandle) const {
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*mididriver = new MidiDriver_MT32(g_system->getMixer());
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return Common::kNoError;
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}
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//#if PLUGIN_ENABLED_DYNAMIC(MT32)
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//REGISTER_PLUGIN_DYNAMIC(MT32, PLUGIN_TYPE_MUSIC, MT32EmuMusicPlugin);
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//#else
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REGISTER_PLUGIN_STATIC(MT32, PLUGIN_TYPE_MUSIC, MT32EmuMusicPlugin);
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//#endif
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#endif
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