MIDI code will control volume via MIDI events thus the generated audio should
not be affected by mixer sound volumes.
The initial commit 0e6cdfd675
added it as music
sound type. Might be copied from the (also) incorrect FluidSynth code.
482 lines
12 KiB
C++
482 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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#include "common/scummsys.h"
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#if defined(__ANDROID__)
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#include <dlfcn.h>
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#include "common/debug.h"
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#include "common/endian.h"
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#include "common/textconsole.h"
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#include "common/error.h"
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#include "common/file.h"
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#include "common/config-manager.h"
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#include "common/system.h"
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#include "audio/audiostream.h"
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#include "audio/mpu401.h"
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#include "audio/musicplugin.h"
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#include "audio/mixer.h"
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//#define EAS_DUMPSTREAM
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// NOTE:
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// EAS's render function *only* accepts one mix buffer size. it's defined at
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// compile time of the library and can be retrieved via EASLibConfig.bufSize
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// (seen: 128 bytes).
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// to avoid local intermediate buffers, this implementation insists on a fixed
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// buffer size of the calling rate converter, which in return must be a
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// multiple of EAS's. that may change if there're hickups because slower
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// devices can't render fast enough
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// from rate_arm.cpp
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#define INTERMEDIATE_BUFFER_SIZE 512
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// so far all android versions have the very same library version
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#define EAS_LIBRARY "libsonivox.so"
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#define EAS_KNOWNVERSION 0x03060a0e
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#define EAS_REVERB 2
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#define EAS_REVERB_BYPASS 0
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#define EAS_REVERB_PRESET 1
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#define EAS_REVERB_CHAMBER 2
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class MidiDriver_EAS : public MidiDriver_MPU401, Audio::AudioStream {
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public:
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MidiDriver_EAS();
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virtual ~MidiDriver_EAS();
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// MidiDriver
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virtual int open();
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virtual bool isOpen() const;
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virtual void close();
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virtual void send(uint32 b);
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virtual void sysEx(const byte *msg, uint16 length);
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virtual void setTimerCallback(void *timerParam,
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Common::TimerManager::TimerProc timerProc);
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virtual uint32 getBaseTempo();
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// AudioStream
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virtual int readBuffer(int16 *buffer, const int numSamples);
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virtual bool isStereo() const;
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virtual int getRate() const;
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virtual bool endOfData() const;
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private:
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struct EASLibConfig {
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uint32 version;
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uint32 debug;
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int32 voices;
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int32 channels;
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int32 rate;
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int32 bufSize;
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uint32 filter;
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uint32 timeStamp;
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char *GUID;
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};
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struct EASFile {
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const char *path;
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int fd;
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long long offset;
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long long length;
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};
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typedef void * EASDataHandle;
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typedef void * EASHandle;
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typedef EASLibConfig *(*ConfigFunc)();
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typedef int32 (*InitFunc)(EASDataHandle *);
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typedef int32 (*ShutdownFunc)(EASDataHandle);
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typedef int32 (*LoadDLSFunc)(EASDataHandle, EASHandle, EASFile *);
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typedef int32 (*SetParameterFunc)(EASDataHandle, int32, int32, int32);
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typedef int32 (*SetVolumeFunc)(EASDataHandle, EASHandle, int32);
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typedef int32 (*OpenStreamFunc)(EASDataHandle, EASHandle *, EASHandle);
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typedef int32 (*WriteStreamFunc)(EASDataHandle, EASHandle, byte *, int32);
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typedef int32 (*CloseStreamFunc)(EASDataHandle, EASHandle);
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typedef int32 (*RenderFunc)(EASDataHandle, int16 *, int32, int32 *);
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template<typename T>
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void sym(T &t, const char *symbol) {
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union {
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void *v;
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T t;
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} u;
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assert(sizeof(u.v) == sizeof(u.t));
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u.v = dlsym(_dlHandle, symbol);
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if (!u.v)
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warning("couldn't resolve %s from " EAS_LIBRARY, symbol);
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t = u.t;
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}
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void *_dlHandle;
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ConfigFunc _configFunc;
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InitFunc _initFunc;
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ShutdownFunc _shutdownFunc;
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LoadDLSFunc _loadDLSFunc;
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SetParameterFunc _setParameterFunc;
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SetVolumeFunc _setVolumeFunc;
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OpenStreamFunc _openStreamFunc;
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WriteStreamFunc _writeStreamFunc;
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CloseStreamFunc _closeStreamFunc;
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RenderFunc _renderFunc;
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const EASLibConfig *_config;
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EASDataHandle _EASHandle;
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EASHandle _midiStream;
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Common::TimerManager::TimerProc _timerProc;
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void *_timerParam;
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uint32 _baseTempo;
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uint _rounds;
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Audio::SoundHandle _soundHandle;
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Common::DumpFile _dump;
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};
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MidiDriver_EAS::MidiDriver_EAS() :
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MidiDriver_MPU401(),
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_dlHandle(0),
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_configFunc(0),
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_initFunc(0),
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_shutdownFunc(0),
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_loadDLSFunc(0),
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_setParameterFunc(0),
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_setVolumeFunc(0),
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_openStreamFunc(0),
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_writeStreamFunc(0),
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_closeStreamFunc(0),
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_renderFunc(0),
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_config(0),
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_EASHandle(0),
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_midiStream(0),
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_timerProc(0),
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_timerParam(0),
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_baseTempo(0),
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_rounds(0),
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_soundHandle(),
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_dump() {
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}
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MidiDriver_EAS::~MidiDriver_EAS() {
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}
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int MidiDriver_EAS::open() {
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if (isOpen())
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return MERR_ALREADY_OPEN;
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_dlHandle = dlopen(EAS_LIBRARY, RTLD_LAZY);
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if (!_dlHandle) {
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warning("error opening " EAS_LIBRARY ": %s", dlerror());
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return MERR_DEVICE_NOT_AVAILABLE;
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}
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sym(_configFunc, "EAS_Config");
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if (!_configFunc) {
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close();
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return -1;
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}
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_config = _configFunc();
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if (!_config) {
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close();
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warning("error retrieving EAS library configuration");
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return -1;
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}
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if (_config->version != EAS_KNOWNVERSION) {
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close();
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warning("unknown EAS library version: 0x%08x", _config->version);
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return -1;
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}
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if (_config->channels > 2) {
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close();
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warning("unsupported number of EAS channels: %d", _config->channels);
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return -1;
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}
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// see note at top of this file
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if (INTERMEDIATE_BUFFER_SIZE % (_config->bufSize * _config->channels)) {
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close();
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warning("unsupported EAS buffer size: %d", _config->bufSize);
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return -1;
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}
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sym(_initFunc, "EAS_Init");
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sym(_shutdownFunc, "EAS_Shutdown");
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sym(_loadDLSFunc, "EAS_LoadDLSCollection");
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sym(_setParameterFunc, "EAS_SetParameter");
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sym(_setVolumeFunc, "EAS_SetVolume");
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sym(_openStreamFunc, "EAS_OpenMIDIStream");
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sym(_writeStreamFunc, "EAS_WriteMIDIStream");
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sym(_closeStreamFunc, "EAS_CloseMIDIStream");
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sym(_renderFunc, "EAS_Render");
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if (!_initFunc || !_shutdownFunc || !_loadDLSFunc || !_setParameterFunc ||
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!_openStreamFunc || !_writeStreamFunc || !_closeStreamFunc ||
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!_renderFunc) {
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close();
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return -1;
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}
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int32 res = _initFunc(&_EASHandle);
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if (res) {
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close();
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warning("error initializing the EAS library: %d", res);
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return -1;
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}
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res = _setParameterFunc(_EASHandle, EAS_REVERB, EAS_REVERB_PRESET,
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EAS_REVERB_CHAMBER);
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if (res)
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warning("error setting reverb preset: %d", res);
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res = _setParameterFunc(_EASHandle, EAS_REVERB, EAS_REVERB_BYPASS, 0);
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if (res)
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warning("error disabling reverb bypass: %d", res);
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// 90 is EAS's default, max is 100
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// so the option slider will only work from 0.1 to 1.1
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res = _setVolumeFunc(_EASHandle, 0, ConfMan.getInt("midi_gain") - 10);
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if (res)
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warning("error setting EAS master volume: %d", res);
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res = _openStreamFunc(_EASHandle, &_midiStream, 0);
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if (res) {
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close();
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warning("error opening EAS MIDI stream: %d", res);
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return -1;
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}
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// set the timer frequency to match a single buffer size
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_baseTempo = (1000000 * _config->bufSize) / _config->rate;
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// number of buffer fills per readBuffer()
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_rounds = INTERMEDIATE_BUFFER_SIZE / (_config->bufSize * _config->channels);
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debug("EAS initialized (voices:%d channels:%d rate:%d buffer:%d) "
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"tempo:%u rounds:%u", _config->voices, _config->channels,
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_config->rate, _config->bufSize, _baseTempo, _rounds);
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// TODO doesn't seem to work with midi streams?
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if (ConfMan.hasKey("soundfont")) {
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const Common::String dls = ConfMan.get("soundfont");
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debug("loading DLS file '%s'", dls.c_str());
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EASFile f;
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memset(&f, 0, sizeof(EASFile));
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f.path = dls.c_str();
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res = _loadDLSFunc(_EASHandle, 0, &f);
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if (res)
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warning("error loading DLS file '%s': %d", dls.c_str(), res);
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else
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debug("DLS file loaded");
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}
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#ifdef EAS_DUMPSTREAM
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if (!_dump.open("/sdcard/eas.dump"))
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warning("error opening EAS dump file");
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#endif
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g_system->getMixer()->playStream(Audio::Mixer::kPlainSoundType,
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&_soundHandle, this, -1,
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Audio::Mixer::kMaxChannelVolume, 0,
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DisposeAfterUse::NO, true);
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return 0;
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}
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bool MidiDriver_EAS::isOpen() const {
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return _dlHandle != 0;
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}
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void MidiDriver_EAS::close() {
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MidiDriver_MPU401::close();
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if (!isOpen())
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return;
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g_system->getMixer()->stopHandle(_soundHandle);
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#ifdef EAS_DUMPSTREAM
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if (_dump.isOpen())
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_dump.close();
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#endif
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// not pretty, but better than a mutex
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g_system->delayMillis((_baseTempo * _rounds) / 1000);
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if (_midiStream) {
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int32 res = _closeStreamFunc(_EASHandle, _midiStream);
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if (res)
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warning("error closing EAS MIDI stream: %d", res);
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_midiStream = 0;
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}
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if (_EASHandle) {
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int32 res = _shutdownFunc(_EASHandle);
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if (res)
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warning("error shutting down the EAS library: %d", res);
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_EASHandle = 0;
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}
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if (dlclose(_dlHandle))
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warning("error closing " EAS_LIBRARY ": %s", dlerror());
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_dlHandle = 0;
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}
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void MidiDriver_EAS::send(uint32 b) {
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byte buf[4];
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WRITE_LE_UINT32(buf, b);
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int32 len = 3;
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if ((buf[0] >> 4) == 0xC || (buf[0] >> 4) == 0xD)
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len = 2;
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int32 res = _writeStreamFunc(_EASHandle, _midiStream, buf, len);
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if (res)
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warning("error writing to EAS MIDI stream: %d", res);
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}
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void MidiDriver_EAS::sysEx(const byte *msg, uint16 length) {
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byte buf[266];
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assert(length + 2 <= ARRAYSIZE(buf));
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buf[0] = 0xF0;
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memcpy(buf + 1, msg, length);
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buf[length + 1] = 0xF7;
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int32 res = _writeStreamFunc(_EASHandle, _midiStream, buf, length + 2);
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if (res)
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warning("error writing to EAS MIDI stream: %d", res);
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}
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void MidiDriver_EAS::setTimerCallback(void *timerParam,
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Common::TimerManager::TimerProc timerProc) {
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_timerParam = timerParam;
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_timerProc = timerProc;
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}
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uint32 MidiDriver_EAS::getBaseTempo() {
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return _baseTempo;
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}
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int MidiDriver_EAS::readBuffer(int16 *buffer, const int numSamples) {
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// see note at top of this file
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assert(numSamples == INTERMEDIATE_BUFFER_SIZE);
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int32 res, c;
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for (uint i = 0; i < _rounds; ++i) {
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// pull in MIDI events for exactly one buffer size
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if (_timerProc)
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(*_timerProc)(_timerParam);
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// if there are no MIDI events, this just renders silence
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res = _renderFunc(_EASHandle, buffer, _config->bufSize, &c);
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if (res) {
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warning("error rendering EAS samples: %d", res);
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return -1;
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}
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#ifdef EAS_DUMPSTREAM
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if (_dump.isOpen())
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_dump.write(buffer, c * _config->channels * 2);
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#endif
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buffer += c * _config->channels;
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}
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return numSamples;
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}
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bool MidiDriver_EAS::isStereo() const {
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return _config->channels == 2;
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}
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int MidiDriver_EAS::getRate() const {
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return _config->rate;
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}
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bool MidiDriver_EAS::endOfData() const {
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return false;
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}
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class EASMusicPlugin : public MusicPluginObject {
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public:
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EASMusicPlugin();
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virtual ~EASMusicPlugin();
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const char *getName() const;
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const char *getId() const;
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MusicDevices getDevices() const;
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Common::Error createInstance(MidiDriver **mididriver,
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MidiDriver::DeviceHandle = 0) const;
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};
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EASMusicPlugin::EASMusicPlugin() {
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}
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EASMusicPlugin::~EASMusicPlugin() {
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}
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const char *EASMusicPlugin::getName() const {
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return "Embedded Audio Synthesis";
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}
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const char *EASMusicPlugin::getId() const {
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return "eas";
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}
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MusicDevices EASMusicPlugin::getDevices() const {
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MusicDevices devices;
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devices.push_back(MusicDevice(this, "", MT_GM));
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return devices;
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}
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Common::Error EASMusicPlugin::createInstance(MidiDriver **mididriver, MidiDriver::DeviceHandle) const {
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*mididriver = new MidiDriver_EAS();
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return Common::kNoError;
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}
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//#if PLUGIN_ENABLED_DYNAMIC(EAS)
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//REGISTER_PLUGIN_DYNAMIC(EAS, PLUGIN_TYPE_MUSIC, EASMusicPlugin);
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//#else
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REGISTER_PLUGIN_STATIC(EAS, PLUGIN_TYPE_MUSIC, EASMusicPlugin);
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//#endif
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#endif
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