246 lines
7.9 KiB
C
246 lines
7.9 KiB
C
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/**
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* PANDA 3D SOFTWARE
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* Copyright (c) Carnegie Mellon University. All rights reserved.
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*
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* All use of this software is subject to the terms of the revised BSD
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* license. You should have received a copy of this license along
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* with this source code in a file named "LICENSE."
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*
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* @file openalAudioManager.h
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* @author Ben Buchwald <bb2@alumni.cmu.edu>
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*/
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#ifndef __OPENAL_AUDIO_MANAGER_H__
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#define __OPENAL_AUDIO_MANAGER_H__
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#include "pandabase.h"
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#include "audioManager.h"
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#include "plist.h"
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#include "pmap.h"
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#include "pset.h"
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#include "movieAudioCursor.h"
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#include "reMutex.h"
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// OSX uses the OpenAL framework
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#ifdef HAVE_OPENAL_FRAMEWORK
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#include <OpenAL/al.h>
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#include <OpenAL/alc.h>
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#else
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#include <AL/al.h>
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#include <AL/alc.h>
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#endif
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class OpenALAudioSound;
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extern void al_audio_errcheck(const char *context);
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extern void alc_audio_errcheck(const char *context,ALCdevice* device);
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class EXPCL_OPENAL_AUDIO OpenALAudioManager : public AudioManager {
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class SoundData;
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friend class OpenALAudioSound;
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friend class OpenALSoundData;
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public:
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// Constructor and Destructor
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OpenALAudioManager();
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virtual ~OpenALAudioManager();
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virtual void shutdown();
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virtual bool is_valid();
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virtual PT(AudioSound) get_sound(const Filename &, bool positional = false, int mode=SM_heuristic);
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virtual PT(AudioSound) get_sound(MovieAudio *sound, bool positional = false, int mode=SM_heuristic);
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virtual void uncache_sound(const Filename &);
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virtual void clear_cache();
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virtual void set_cache_limit(unsigned int count);
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virtual unsigned int get_cache_limit() const;
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virtual void set_volume(PN_stdfloat);
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virtual PN_stdfloat get_volume() const;
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void set_play_rate(PN_stdfloat play_rate);
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PN_stdfloat get_play_rate() const;
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virtual void set_active(bool);
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virtual bool get_active() const;
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// This controls the "set of ears" that listens to 3D spacialized sound px,
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// py, pz are position coordinates. Can be 0.0f to ignore. vx, vy, vz are
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// a velocity vector in UNITS PER SECOND. fx, fy and fz are the respective
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// components of a unit forward-vector ux, uy and uz are the respective
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// components of a unit up-vector These changes will NOT be invoked until
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// audio_3d_update() is called.
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virtual void audio_3d_set_listener_attributes(PN_stdfloat px, PN_stdfloat py, PN_stdfloat pz,
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PN_stdfloat vx, PN_stdfloat xy, PN_stdfloat xz,
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PN_stdfloat fx, PN_stdfloat fy, PN_stdfloat fz,
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PN_stdfloat ux, PN_stdfloat uy, PN_stdfloat uz);
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virtual void audio_3d_get_listener_attributes(PN_stdfloat *px, PN_stdfloat *py, PN_stdfloat *pz,
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PN_stdfloat *vx, PN_stdfloat *vy, PN_stdfloat *vz,
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PN_stdfloat *fx, PN_stdfloat *fy, PN_stdfloat *fz,
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PN_stdfloat *ux, PN_stdfloat *uy, PN_stdfloat *uz);
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// Control the "relative scale that sets the distance factor" units for 3D
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// spacialized audio. This is a float in units-per-meter. Default value is
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// 1.0, which means that Panda units are understood as meters; for e.g.
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// feet, set 3.28. This factor is applied only to Fmod and OpenAL at the
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// moment.
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// OpenAL in fact has no distance factor like Fmod, but works with the speed
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// of sound instead, so we use this factor to scale the speed of sound.
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virtual void audio_3d_set_distance_factor(PN_stdfloat factor);
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virtual PN_stdfloat audio_3d_get_distance_factor() const;
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// Control the presence of the Doppler effect. Default is 1.0 Exaggerated
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// Doppler, use >1.0 Diminshed Doppler, use <1.0
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virtual void audio_3d_set_doppler_factor(PN_stdfloat factor);
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virtual PN_stdfloat audio_3d_get_doppler_factor() const;
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// Exaggerate or diminish the effect of distance on sound. Default is 1.0
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// Faster drop off, use >1.0 Slower drop off, use <1.0
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virtual void audio_3d_set_drop_off_factor(PN_stdfloat factor);
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virtual PN_stdfloat audio_3d_get_drop_off_factor() const;
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virtual void set_concurrent_sound_limit(unsigned int limit = 0);
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virtual unsigned int get_concurrent_sound_limit() const;
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virtual void reduce_sounds_playing_to(unsigned int count);
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virtual void stop_all_sounds();
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virtual void update();
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private:
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std::string select_audio_device();
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void make_current() const;
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bool can_use_audio(MovieAudioCursor *source);
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bool should_load_audio(MovieAudioCursor *source, int mode);
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SoundData *get_sound_data(MovieAudio *source, int mode);
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// Tell the manager that the sound dtor was called.
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void release_sound(OpenALAudioSound* audioSound);
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void increment_client_count(SoundData *sd);
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void decrement_client_count(SoundData *sd);
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void discard_excess_cache(int limit);
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void delete_buffer(ALuint buffer);
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void starting_sound(OpenALAudioSound* audio);
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void stopping_sound(OpenALAudioSound* audio);
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void cleanup();
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private:
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// This global lock protects all access to OpenAL library interfaces.
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static ReMutex _lock;
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// An expiration queue is a list of SoundData that are no longer being used.
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// They are kept around for a little while, since it is common to stop using
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// a sound for a brief moment and then quickly resume.
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typedef plist<void *> ExpirationQueue;
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ExpirationQueue _expiring_samples;
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ExpirationQueue _expiring_streams;
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/*
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* An AudioSound that uses a SoundData is called a "client" of the SoundData.
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* The SoundData keeps track of how many clients are using it. When the
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* number of clients drops to zero, the SoundData is no longer in use. The
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* expiration queue is a list of all SoundData that aren't in use, in least-
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* recently-used order. If a SoundData in the expiration queue gains a new
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* client, it is removed from the expiration queue. When the number of sounds
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* in the expiration queue exceeds the cache limit, the first sound in the
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* expiration queue is purged.
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*/
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class SoundData {
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public:
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SoundData();
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~SoundData();
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OpenALAudioManager* _manager;
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PT(MovieAudio) _movie;
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ALuint _sample;
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PT(MovieAudioCursor) _stream;
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double _length;
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int _rate;
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int _channels;
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int _client_count;
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ExpirationQueue::iterator _expire;
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};
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typedef phash_map<std::string, SoundData *> SampleCache;
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SampleCache _sample_cache;
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typedef phash_set<PT(OpenALAudioSound)> SoundsPlaying;
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SoundsPlaying _sounds_playing;
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typedef phash_set<OpenALAudioSound *> AllSounds;
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AllSounds _all_sounds;
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// State:
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int _cache_limit;
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PN_stdfloat _volume;
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PN_stdfloat _play_rate;
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bool _active;
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bool _cleanup_required;
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// keep a count for startup and shutdown:
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static int _active_managers;
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static bool _openal_active;
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unsigned int _concurrent_sound_limit;
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bool _is_valid;
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typedef pset<OpenALAudioManager *> Managers;
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static Managers *_managers;
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static ALCdevice* _device;
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static ALCcontext* _context;
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// cache of openal sources, use only for playing sounds
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typedef pset<ALuint > SourceCache;
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static SourceCache *_al_sources;
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PN_stdfloat _distance_factor;
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PN_stdfloat _doppler_factor;
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PN_stdfloat _drop_off_factor;
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ALfloat _position[3];
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ALfloat _velocity[3];
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ALfloat _forward_up[6];
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// These are needed for Panda's Pointer System. DO NOT ERASE!
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public:
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static TypeHandle get_class_type() {
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return _type_handle;
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}
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static void init_type() {
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AudioManager::init_type();
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register_type(_type_handle, "OpenALAudioManager", AudioManager::get_class_type());
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}
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virtual TypeHandle get_type() const {
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return get_class_type();
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}
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virtual TypeHandle force_init_type() {
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init_type();
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return get_class_type();
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}
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private:
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static TypeHandle _type_handle;
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// DONE
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};
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EXPCL_OPENAL_AUDIO AudioManager *Create_OpenALAudioManager();
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#endif /* __OPENAL_AUDIO_MANAGER_H__ */
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