openalbridge/openalwrap.c
author koda
Mon, 29 Jun 2009 23:03:25 +0000
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-openalbridge headers cleaned -static building of lib for non MSVC compilers
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/*
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 * OpenAL Bridge - a simple portable library for OpenAL interface
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 * Copyright (c) 2009 Vittorio Giovara <vittorio.giovara@gmail.com>
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 *
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 * This program is free software; you can redistribute it and/or modify
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 * it under the terms of the GNU General Public License as published by
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 * the Free Software Foundation; version 2 of the License
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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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#include "openalwrap.h"
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#ifdef __CPLUSPLUS
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extern "C" {
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#endif 
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	/*Sources are points emitting sound*/
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	ALuint *Sources;
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	/*Buffers hold sound data*/
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	ALuint *Buffers;
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	/*index for Sources and Buffers*/
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	ALuint globalindex, globalsize;
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	/*Position of the source sound*/
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	ALfloat SourcePos[] = { 0.0, 0.0, 0.0 };
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	/*Velocity of the source sound*/
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	ALfloat SourceVel[] = { 0.0, 0.0, 0.0 };
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	int increment;
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	ALint openal_close(void) {
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		/* This function stops all the sounds, deallocates all memory and closes OpenAL */
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		ALCcontext *context;
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		ALCdevice  *device;
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		alSourceStopv	(globalsize, Sources);
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		alDeleteSources (globalsize, Sources);
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		alDeleteBuffers (globalsize, Buffers);
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		free(Sources);
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		free(Buffers);
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		context = alcGetCurrentContext();
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		device  = alcGetContextsDevice(context);
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		alcMakeContextCurrent(NULL);
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		alcDestroyContext(context);
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		alcCloseDevice(device);
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		return AL_TRUE;
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	}
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	ALint openal_init(int memorysize) {	
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		/* This function initializes an OpenAL contex, allocates memory space for data and prepares OpenAL buffers*/
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		ALCcontext *context;
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		ALCdevice *device;
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		const ALCchar *default_device;
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		/*Position of the listener*/
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		ALfloat ListenerPos[] = { 0.0, 0.0, 0.0 };
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		/*Velocity of the listener*/
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		ALfloat ListenerVel[] = { 0.0, 0.0, 0.0 };
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		/*Orientation of the listener. (first 3 elements are "at", second 3 are "up")*/
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		ALfloat ListenerOri[] = { 0.0, 0.0, -1.0,  0.0, 1.0, 0.0 };
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		default_device = alcGetString(NULL, ALC_DEFAULT_DEVICE_SPECIFIER);
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		fprintf(stderr, "Using default device: %s\n", default_device);
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		if ((device = alcOpenDevice(default_device)) == NULL) {
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			fprintf(stderr, "ERROR: Failed to open sound device\n");
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			return AL_FALSE;
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		}
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		context = alcCreateContext(device, NULL);
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		alcMakeContextCurrent(context);
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		alcProcessContext(context);
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		if (AlGetError("ERROR %d: Creating a new contex\n") != AL_TRUE)
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			return AL_FALSE;
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		/*allocate memory space for buffers and sources*/
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		globalsize = memorysize;
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		increment = memorysize;
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		Buffers = (ALuint*) Malloc(sizeof(ALuint)*globalsize);
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		Sources = (ALuint*) Malloc(sizeof(ALuint)*globalsize);
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		/*set the listener gain, position (on xyz axes), velocity (one value for each axe) and orientation*/
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		alListenerf (AL_GAIN,		 1.0f		);
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		alListenerfv(AL_POSITION,    ListenerPos);
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		alListenerfv(AL_VELOCITY,    ListenerVel);
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		alListenerfv(AL_ORIENTATION, ListenerOri);
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		if (AlGetError("ERROR %d: Setting Listener properties\n") != AL_TRUE)
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			return AL_FALSE;
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		alGetError();  /* clear any AL errors beforehand */
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		return AL_TRUE;
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	}
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	int helper_realloc (void) {
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		globalsize += increment;
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#ifdef DEBUG
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		fprintf(stderr, "OpenAL: Realloc in process %d\n", globalsize);
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#endif
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		Buffers = (ALuint*) reallocf(Buffers, sizeof(ALuint)*globalsize);
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		Sources = (ALuint*) reallocf(Sources, sizeof(ALuint)*globalsize);
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		if (Buffers == NULL || Sources == NULL) {
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			fprintf(stderr, "ERROR: not enough memory! realloc() failed\n");
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			exit(-1);
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		} else {
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			return 0;
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		}
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	}
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	int openal_loadfile (const char *filename){
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		/* This function opens a file, loads into memory and allocates the Source buffer for playing*/
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		ALenum format;
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		ALsizei bitsize;
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		ALsizei freq;
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		uint8_t *data;
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		uint32_t fileformat;
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		int error;
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		FILE *fp;
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		if (globalindex == globalsize)
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			helper_realloc();
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		/*detect the file format, as written in the first 4 bytes of the header*/
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		fp = Fopen (filename, "rb");
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		if (fp == NULL)
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			return -1;
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		error = fread (&fileformat, sizeof(uint32_t), 1, fp);
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		fclose (fp);
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		if (error < 0) {
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			fprintf(stderr, "ERROR: file %s is too short \n", filename);
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			return -2;
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		}
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		/*prepare the buffer to receive data*/
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		alGenBuffers(1, &Buffers[globalindex]);
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		if (AlGetError("ERROR %d: Allocating memory for buffers\n") != AL_TRUE)
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			return -3;
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		/*prepare the source to emit sound*/
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		alGenSources(1, &Sources[globalindex]);
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		if (AlGetError("ERROR %d: Allocating memory for sources\n") != AL_TRUE)
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			return -4;
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		if (fileformat == 0x5367674F) /*check if ogg*/
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			error = load_OggVorbis (filename, &format, &data, &bitsize, &freq);
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		else {
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			if (fileformat == 0x46464952) /*check if wav*/
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				error = load_WavPcm (filename, &format, &data, &bitsize, &freq);
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			else {
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				fprintf(stderr, "ERROR: File format (%08X) not supported!\n", invert_endianness(fileformat));
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				return -5;
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			}
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		}
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		/*copy pcm data in one buffer*/
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		alBufferData(Buffers[globalindex], format, data, bitsize, freq);
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		free(data);		/*deallocate data to save memory*/
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		if (AlGetError("ERROR %d: Writing data to buffer\n") != AL_TRUE)
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			return -6;
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		/*set source properties that it will use when it's in playback*/
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		alSourcei (Sources[globalindex], AL_BUFFER,   Buffers[globalindex]  );
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		alSourcef (Sources[globalindex], AL_PITCH,    1.0f					);
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		alSourcef (Sources[globalindex], AL_GAIN,     1.0f					);
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		alSourcefv(Sources[globalindex], AL_POSITION, SourcePos				);
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		alSourcefv(Sources[globalindex], AL_VELOCITY, SourceVel				);
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		alSourcei (Sources[globalindex], AL_LOOPING,  0						);
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		if (AlGetError("ERROR %d: Setting source properties\n") != AL_TRUE)
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			return -7;
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		alGetError();  /* clear any AL errors beforehand */
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		/*returns the index of the source you just loaded, increments it and exits*/
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		return globalindex++;
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	}
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20c62f787a4d koda's OpenAL conversion:
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	ALint openal_toggleloop (int index){
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		/*Set or unset looping mode*/
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		ALint loop;
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   201
		
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		if (index >= globalsize) {
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			fprintf(stderr, "ERROR: index out of bounds (got %d, max %d)\n", index, globalindex);
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			return AL_FALSE;
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		}
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   206
		
20c62f787a4d koda's OpenAL conversion:
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		alGetSourcei (Sources[index], AL_LOOPING, &loop);
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		alSourcei (Sources[index], AL_LOOPING, !((uint8_t) loop) & 0x00000001);
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   209
		if (AlGetError("ERROR %d: Getting or setting loop property\n") != AL_TRUE)
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			return AL_FALSE;
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   211
		
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		alGetError();  /* clear any AL errors beforehand */
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		return AL_TRUE;
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	}
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20c62f787a4d koda's OpenAL conversion:
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   217
	
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	ALint openal_setvolume (int index, unsigned char percentage) {
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		/*Set volume for sound number index*/
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		if (index >= globalindex) {
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			fprintf(stderr, "ERROR: index out of bounds (got %d, max %d)\n", index, globalindex);
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			return AL_FALSE;
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   223
		}
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   224
		
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   225
		if (percentage > 100)
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			percentage = 100;
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		alSourcef (Sources[index], AL_GAIN, (ALfloat) percentage/100.0f);
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		if (AlGetError("ERROR %d: Setting volume for last sound\n") != AL_TRUE)
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			return AL_FALSE;
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   230
		
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		alGetError();  /* clear any AL errors beforehand */
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		return AL_TRUE;
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	}
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   235
	
20c62f787a4d koda's OpenAL conversion:
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   236
	
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	ALint openal_setglobalvolume (unsigned char percentage) {
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		/*Set volume for all sounds*/		
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		if (percentage > 100)
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			percentage = 100;
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		alListenerf (AL_GAIN, (ALfloat) percentage/100.0f);
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		if (AlGetError("ERROR %d: Setting global volume\n") != AL_TRUE)
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			return AL_FALSE;
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   244
		
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		alGetError();  /* clear any AL errors beforehand */
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   246
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		return AL_TRUE;
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	}
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   249
	
20c62f787a4d koda's OpenAL conversion:
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	ALint openal_togglemute () {
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		/*Mute or unmute sound*/
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		ALfloat mute;
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   254
		
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		alGetListenerf (AL_GAIN, &mute);
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   256
		if (mute > 0) 
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			mute = 0;
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   258
		else
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   259
			mute = 1.0;
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   260
		alListenerf (AL_GAIN, mute);
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   261
		if (AlGetError("ERROR %d: Setting mute property\n") != AL_TRUE)
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			return AL_FALSE;
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   263
		
20c62f787a4d koda's OpenAL conversion:
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   264
		alGetError();  /* clear any AL errors beforehand */
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		return AL_TRUE;
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	}
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   268
	
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	ALint openal_fade(int index, unsigned int quantity, char inout) {
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#ifndef _WIN32
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		pthread_t thread;
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#else
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		HANDLE Thread;
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		DWORD threadID;
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#endif
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		fade_t *fade;
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   278
		
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		fade = (fade_t*) Malloc(sizeof(fade_t));
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		fade->index = index;
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		fade->quantity = quantity;
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20c62f787a4d koda's OpenAL conversion:
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   283
		if (index >= globalindex) {
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			fprintf(stderr, "ERROR: index out of bounds (got %d, max %d)\n", index, globalindex);
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			return AL_FALSE;
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		}
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		if (inout == FADE_IN)
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   289
#ifndef _WIN32
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			pthread_create(&thread, NULL, helper_fadein, (void*) fade);
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   291
#else
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			Thread = _beginthread(&helper_fadein, 0, (void*) fade);
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   293
#endif
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		else {
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   295
			if (inout == FADE_OUT)
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   296
#ifndef _WIN32
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				pthread_create(&thread, NULL, helper_fadeout, (void*) fade);
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   298
#else
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				Thread = _beginthread(&helper_fadeout, 0, (void*) fade);
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#endif	
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   301
			else {
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   302
				fprintf(stderr, "ERROR: unknown direction for fade (%d)\n", inout);
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   303
				free(fade);
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   304
				return AL_FALSE;
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   305
			}
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   306
		}
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   307
		
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   308
#ifndef _WIN32
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   309
		pthread_detach(thread);
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#endif
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   311
		
20c62f787a4d koda's OpenAL conversion:
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   312
		alGetError();  /* clear any AL errors beforehand */
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2191
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		return AL_TRUE;
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   315
	}
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   317
	
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   318
	ALint openal_fadeout(int index, unsigned int quantity) {
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   319
		return openal_fade(index, quantity, FADE_OUT);
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   320
	}
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   321
		
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   322
		
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   323
	ALint openal_fadein(int index, unsigned int quantity) {
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   324
		return openal_fade(index, quantity, FADE_IN);
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   325
	}
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   326
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   327
	
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   328
	ALint openal_playsound(int index){
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   329
		/*Play sound number index*/
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   330
		if (index >= globalindex) {
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			fprintf(stderr, "ERROR: index out of bounds (got %d, max %d)\n", index, globalindex);
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			return AL_FALSE;
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		}
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		alSourcePlay(Sources[index]);
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		if (AlGetError("ERROR %d: Playing last sound\n") != AL_TRUE)
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			return AL_FALSE;
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		alGetError();  /* clear any AL errors beforehand */
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		return AL_TRUE;
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	}
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	ALint openal_pausesound(int index){
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		/*Pause sound number index*/
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		if (index >= globalindex) {
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			fprintf(stderr, "ERROR: index out of bounds (got %d, max %d)\n", index, globalindex);
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			return AL_FALSE;
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		}
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		alSourcePause(Sources[index]);
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		if (AlGetError("ERROR %d: Pausing last sound\n") != AL_TRUE)
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			return AL_FALSE;
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		return AL_TRUE;
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	}
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	ALint openal_stopsound(int index){
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		/*Stop sound number index*/
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		if (index >= globalindex) {
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			fprintf(stderr, "ERROR: index out of bounds (got %d, max %d)\n", index, globalindex);
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			return AL_FALSE;
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		}
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		alSourceStop(Sources[index]);
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		if (AlGetError("ERROR %d: Stopping last sound\n") != AL_TRUE)
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			return AL_FALSE;
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		alGetError();  /* clear any AL errors beforehand */
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		return AL_TRUE;
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	}
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#ifdef __CPLUSPLUS
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}
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#endif