227 lines
5.7 KiB
C
227 lines
5.7 KiB
C
/*
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* This is an alternate backend for the sound effect system.
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* It uses SDL_mixer to provide a more reliable playback,
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* and allow processing of multiple audio formats.
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*
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* This file is based on the original D1X arch/sdl/digi.c
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*
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* -- MD2211 (2006-10-12)
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*/
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <SDL.h>
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#include <SDL_audio.h>
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#if !(defined(__APPLE__) && defined(__MACH__))
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#include <SDL_mixer.h>
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#else
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#include <SDL_mixer/SDL_mixer.h>
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#endif
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#include "pstypes.h"
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#include "dxxerror.h"
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#include "sounds.h"
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#include "digi.h"
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#include "digi_mixer.h"
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#include "digi_mixer_music.h"
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#include "console.h"
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#include "config.h"
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#include "args.h"
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#include "fix.h"
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#include "gr.h" // needed for piggy.h
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#include "piggy.h"
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#define MIX_DIGI_DEBUG 0
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#define MIX_OUTPUT_FORMAT AUDIO_S16
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#define MIX_OUTPUT_CHANNELS 2
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#define MAX_SOUND_SLOTS 64
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#if !((defined(__APPLE__) && defined(__MACH__)) || defined(macintosh))
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#define SOUND_BUFFER_SIZE 2048
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#else
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#define SOUND_BUFFER_SIZE 1024
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#endif
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#define MIN_VOLUME 10
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static int digi_initialised = 0;
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static int digi_max_channels = MAX_SOUND_SLOTS;
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static inline int fix2byte(fix f) { return (f / 256) % 256; }
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Mix_Chunk SoundChunks[MAX_SOUNDS];
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ubyte channels[MAX_SOUND_SLOTS];
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/* Initialise audio */
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int digi_mixer_init()
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{
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#if defined(DXX_BUILD_DESCENT_II)
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unsigned
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#endif
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digi_sample_rate = SAMPLE_RATE_44K;
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if (MIX_DIGI_DEBUG) con_printf(CON_DEBUG,"digi_init %d (SDL_Mixer)\n", MAX_SOUNDS);
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if (SDL_InitSubSystem(SDL_INIT_AUDIO) < 0) Error("SDL audio initialisation failed: %s.", SDL_GetError());
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if (Mix_OpenAudio(digi_sample_rate, MIX_OUTPUT_FORMAT, MIX_OUTPUT_CHANNELS, SOUND_BUFFER_SIZE))
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{
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//edited on 10/05/98 by Matt Mueller - should keep running, just with no sound.
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con_printf(CON_URGENT,"\nError: Couldn't open audio: %s\n", SDL_GetError());
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GameArg.SndNoSound = 1;
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return 1;
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}
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digi_max_channels = Mix_AllocateChannels(digi_max_channels);
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memset(channels, 0, MAX_SOUND_SLOTS);
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Mix_Pause(0);
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digi_initialised = 1;
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digi_mixer_set_digi_volume( (GameCfg.DigiVolume*32768)/8 );
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return 0;
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}
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/* Shut down audio */
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void digi_mixer_close() {
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if (MIX_DIGI_DEBUG) con_printf(CON_DEBUG,"digi_close (SDL_Mixer)\n");
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if (!digi_initialised) return;
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digi_initialised = 0;
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Mix_CloseAudio();
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}
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/* channel management */
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int digi_mixer_find_channel()
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{
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int i;
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for (i = 0; i < digi_max_channels; i++)
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if (channels[i] == 0)
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return i;
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return -1;
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}
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void digi_mixer_free_channel(int channel_num)
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{
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channels[channel_num] = 0;
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}
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/*
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* Play-time conversion. Performs output conversion only once per sound effect used.
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* Once the sound sample has been converted, it is cached in SoundChunks[]
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*/
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void mixdigi_convert_sound(int i)
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{
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SDL_AudioCVT cvt;
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Uint8 *data = GameSounds[i].data;
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Uint32 dlen = GameSounds[i].length;
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int freq;
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int out_freq;
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Uint16 out_format;
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int out_channels;
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#if defined(DXX_BUILD_DESCENT_I)
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out_freq = digi_sample_rate;
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out_format = MIX_OUTPUT_FORMAT;
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out_channels = MIX_OUTPUT_CHANNELS;
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freq = GameSounds[i].freq;
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#elif defined(DXX_BUILD_DESCENT_II)
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Mix_QuerySpec(&out_freq, &out_format, &out_channels); // get current output settings
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freq = GameArg.SndDigiSampleRate;
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#endif
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if (SoundChunks[i].abuf) return; //proceed only if not converted yet
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if (data)
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{
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if (MIX_DIGI_DEBUG) con_printf(CON_DEBUG,"converting %d (%d)\n", i, dlen);
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SDL_BuildAudioCVT(&cvt, AUDIO_U8, 1, freq, out_format, out_channels, out_freq);
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cvt.buf = malloc(dlen * cvt.len_mult);
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cvt.len = dlen;
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memcpy(cvt.buf, data, dlen);
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if (SDL_ConvertAudio(&cvt)) con_printf(CON_DEBUG,"conversion of %d failed\n", i);
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SoundChunks[i].abuf = cvt.buf;
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SoundChunks[i].alen = dlen * cvt.len_mult;
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SoundChunks[i].allocated = 1;
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SoundChunks[i].volume = 128; // Max volume = 128
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}
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}
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// Volume 0-F1_0
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int digi_mixer_start_sound(short soundnum, fix volume, int pan, int looping, int loop_start, int loop_end, int soundobj)
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{
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int mix_vol = fix2byte(fixmul(digi_volume, volume));
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int mix_pan = fix2byte(pan);
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int mix_loop = looping * -1;
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int channel;
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if (!digi_initialised) return -1;
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Assert(GameSounds[soundnum].data != (void *)-1);
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mixdigi_convert_sound(soundnum);
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if (MIX_DIGI_DEBUG) con_printf(CON_DEBUG,"digi_start_sound %d, volume %d, pan %d (start=%d, end=%d)\n", soundnum, mix_vol, mix_pan, loop_start, loop_end);
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channel = digi_mixer_find_channel();
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Mix_PlayChannel(channel, &(SoundChunks[soundnum]), mix_loop);
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Mix_SetPanning(channel, 255-mix_pan, mix_pan);
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if (volume > F1_0)
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Mix_SetDistance(channel, 0);
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else
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Mix_SetDistance(channel, 255-mix_vol);
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channels[channel] = 1;
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Mix_ChannelFinished(digi_mixer_free_channel);
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return channel;
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}
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void digi_mixer_set_channel_volume(int channel, int volume)
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{
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int mix_vol = fix2byte(volume);
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if (!digi_initialised) return;
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Mix_SetDistance(channel, 255-mix_vol);
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}
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void digi_mixer_set_channel_pan(int channel, int pan)
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{
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int mix_pan = fix2byte(pan);
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Mix_SetPanning(channel, 255-mix_pan, mix_pan);
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}
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void digi_mixer_stop_sound(int channel) {
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if (!digi_initialised) return;
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if (MIX_DIGI_DEBUG) con_printf(CON_DEBUG,"digi_stop_sound %d\n", channel);
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Mix_HaltChannel(channel);
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channels[channel] = 0;
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}
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void digi_mixer_end_sound(int channel)
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{
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digi_mixer_stop_sound(channel);
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channels[channel] = 0;
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}
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void digi_mixer_set_digi_volume( int dvolume )
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{
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digi_volume = dvolume;
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if (!digi_initialised) return;
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Mix_Volume(-1, fix2byte(dvolume));
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}
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int digi_mixer_is_sound_playing(int soundno) { return 0; }
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int digi_mixer_is_channel_playing(int channel) { return 0; }
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void digi_mixer_reset() {}
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void digi_mixer_stop_all_channels()
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{
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Mix_HaltChannel(-1);
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memset(channels, 0, MAX_SOUND_SLOTS);
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}
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extern void digi_end_soundobj(int channel);
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#ifndef NDEBUG
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void digi_mixer_debug() {}
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#endif
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