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mixer.c

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1610 lines (1403 loc) · 44.4 KB
 
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/*
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SDL_mixer: An audio mixer library based on the SDL library
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Copyright (C) 1997-2018 Sam Lantinga <slouken@libsdl.org>
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This software is provided 'as-is', without any express or implied
warranty. In no event will the authors be held liable for any damages
arising from the use of this software.
Permission is granted to anyone to use this software for any purpose,
including commercial applications, and to alter it and redistribute it
freely, subject to the following restrictions:
1. The origin of this software must not be misrepresented; you must not
claim that you wrote the original software. If you use this software
in a product, an acknowledgment in the product documentation would be
appreciated but is not required.
2. Altered source versions must be plainly marked as such, and must not be
misrepresented as being the original software.
3. This notice may not be removed or altered from any source distribution.
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*/
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/* $Id$ */
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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
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#include "SDL.h"
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#include "SDL_mixer.h"
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#include "mixer.h"
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#include "music.h"
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#include "load_aiff.h"
#include "load_voc.h"
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#define __MIX_INTERNAL_EFFECT__
#include "effects_internal.h"
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/* Magic numbers for various audio file formats */
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#define RIFF 0x46464952 /* "RIFF" */
#define WAVE 0x45564157 /* "WAVE" */
#define FORM 0x4d524f46 /* "FORM" */
#define CREA 0x61657243 /* "Crea" */
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static int audio_opened = 0;
static SDL_AudioSpec mixer;
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static SDL_AudioDeviceID audio_device;
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typedef struct _Mix_effectinfo
{
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Mix_EffectFunc_t callback;
Mix_EffectDone_t done_callback;
void *udata;
struct _Mix_effectinfo *next;
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} effect_info;
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static struct _Mix_Channel {
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Mix_Chunk *chunk;
int playing;
int paused;
Uint8 *samples;
int volume;
int looping;
int tag;
Uint32 expire;
Uint32 start_time;
Mix_Fading fading;
int fade_volume;
int fade_volume_reset;
Uint32 fade_length;
Uint32 ticks_fade;
effect_info *effects;
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} *mix_channel = NULL;
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static effect_info *posteffects = NULL;
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static int num_channels;
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static int reserved_channels = 0;
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/* Support for hooking into the mixer callback system */
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static void (SDLCALL *mix_postmix)(void *udata, Uint8 *stream, int len) = NULL;
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static void *mix_postmix_data = NULL;
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/* rcg07062001 callback to alert when channels are done playing. */
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static void (SDLCALL *channel_done_callback)(int channel) = NULL;
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/* Support for user defined music functions */
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static void (SDLCALL *mix_music)(void *udata, Uint8 *stream, int len) = music_mixer;
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static void *music_data = NULL;
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/* rcg06042009 report available decoders at runtime. */
static const char **chunk_decoders = NULL;
static int num_decoders = 0;
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int Mix_GetNumChunkDecoders(void)
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{
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return(num_decoders);
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}
const char *Mix_GetChunkDecoder(int index)
{
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if ((index < 0) || (index >= num_decoders)) {
return NULL;
}
return(chunk_decoders[index]);
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}
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SDL_bool Mix_HasChunkDecoder(const char *name)
{
int index;
for (index = 0; index < num_decoders; ++index) {
if (SDL_strcasecmp(name, chunk_decoders[index]) == 0) {
return SDL_TRUE;
}
}
return SDL_FALSE;
}
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void add_chunk_decoder(const char *decoder)
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{
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int i;
void *ptr;
/* Check to see if we already have this decoder */
for (i = 0; i < num_decoders; ++i) {
if (SDL_strcmp(chunk_decoders[i], decoder) == 0) {
return;
}
}
ptr = SDL_realloc((void *)chunk_decoders, (num_decoders + 1) * sizeof (const char *));
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if (ptr == NULL) {
return; /* oh well, go on without it. */
}
chunk_decoders = (const char **) ptr;
chunk_decoders[num_decoders++] = decoder;
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}
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/* rcg06192001 get linked library's version. */
const SDL_version *Mix_Linked_Version(void)
{
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static SDL_version linked_version;
SDL_MIXER_VERSION(&linked_version);
return(&linked_version);
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}
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int Mix_Init(int flags)
{
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int result = 0;
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if (flags & MIX_INIT_FLAC) {
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if (load_music_type(MUS_FLAC)) {
open_music_type(MUS_FLAC);
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result |= MIX_INIT_FLAC;
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} else {
Mix_SetError("FLAC support not available");
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}
}
if (flags & MIX_INIT_MOD) {
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if (load_music_type(MUS_MOD)) {
open_music_type(MUS_MOD);
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result |= MIX_INIT_MOD;
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} else {
Mix_SetError("MOD support not available");
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}
}
if (flags & MIX_INIT_MP3) {
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if (load_music_type(MUS_MP3)) {
open_music_type(MUS_MP3);
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result |= MIX_INIT_MP3;
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} else {
Mix_SetError("MP3 support not available");
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}
}
if (flags & MIX_INIT_OGG) {
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if (load_music_type(MUS_OGG)) {
open_music_type(MUS_OGG);
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result |= MIX_INIT_OGG;
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} else {
Mix_SetError("OGG support not available");
}
}
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if (flags & MIX_INIT_OPUS) {
if (load_music_type(MUS_OPUS)) {
open_music_type(MUS_OPUS);
result |= MIX_INIT_OPUS;
} else {
Mix_SetError("OPUS support not available");
}
}
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if (flags & MIX_INIT_MID) {
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if (load_music_type(MUS_MID)) {
open_music_type(MUS_MID);
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result |= MIX_INIT_MID;
} else {
Mix_SetError("MIDI support not available");
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}
}
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return result;
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}
void Mix_Quit()
{
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unload_music();
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}
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static int _Mix_remove_all_effects(int channel, effect_info **e);
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/*
* rcg06122001 Cleanup effect callbacks.
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* MAKE SURE Mix_LockAudio() is called before this (or you're in the
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* audio callback).
*/
static void _Mix_channel_done_playing(int channel)
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{
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if (channel_done_callback) {
channel_done_callback(channel);
}
/*
* Call internal function directly, to avoid locking audio from
* inside audio callback.
*/
_Mix_remove_all_effects(channel, &mix_channel[channel].effects);
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}
static void *Mix_DoEffects(int chan, void *snd, int len)
{
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int posteffect = (chan == MIX_CHANNEL_POST);
effect_info *e = ((posteffect) ? posteffects : mix_channel[chan].effects);
void *buf = snd;
if (e != NULL) { /* are there any registered effects? */
/* if this is the postmix, we can just overwrite the original. */
if (!posteffect) {
buf = SDL_malloc(len);
if (buf == NULL) {
return(snd);
}
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SDL_memcpy(buf, snd, len);
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}
for (; e != NULL; e = e->next) {
if (e->callback != NULL) {
e->callback(chan, buf, len, e->udata);
}
}
}
/* be sure to SDL_free() the return value if != snd ... */
return(buf);
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}
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/* Mixing function */
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static void SDLCALL
mix_channels(void *udata, Uint8 *stream, int len)
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{
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Uint8 *mix_input;
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int i, mixable, volume = MIX_MAX_VOLUME;
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Uint32 sdl_ticks;
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#if SDL_VERSION_ATLEAST(1, 3, 0)
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/* Need to initialize the stream in SDL 1.3+ */
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SDL_memset(stream, mixer.silence, len);
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#endif
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/* Mix the music (must be done before the channels are added) */
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mix_music(music_data, stream, len);
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/* Mix any playing channels... */
sdl_ticks = SDL_GetTicks();
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for (i=0; i<num_channels; ++i) {
if (!mix_channel[i].paused) {
if (mix_channel[i].expire > 0 && mix_channel[i].expire < sdl_ticks) {
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/* Expiration delay for that channel is reached */
mix_channel[i].playing = 0;
mix_channel[i].looping = 0;
mix_channel[i].fading = MIX_NO_FADING;
mix_channel[i].expire = 0;
_Mix_channel_done_playing(i);
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} else if (mix_channel[i].fading != MIX_NO_FADING) {
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Uint32 ticks = sdl_ticks - mix_channel[i].ticks_fade;
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if (ticks >= mix_channel[i].fade_length) {
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Mix_Volume(i, mix_channel[i].fade_volume_reset); /* Restore the volume */
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if(mix_channel[i].fading == MIX_FADING_OUT) {
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mix_channel[i].playing = 0;
mix_channel[i].looping = 0;
mix_channel[i].expire = 0;
_Mix_channel_done_playing(i);
}
mix_channel[i].fading = MIX_NO_FADING;
} else {
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if (mix_channel[i].fading == MIX_FADING_OUT) {
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Mix_Volume(i, (mix_channel[i].fade_volume * (mix_channel[i].fade_length-ticks))
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/ mix_channel[i].fade_length);
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} else {
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Mix_Volume(i, (mix_channel[i].fade_volume * ticks) / mix_channel[i].fade_length);
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}
}
}
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if (mix_channel[i].playing > 0) {
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int index = 0;
int remaining = len;
while (mix_channel[i].playing > 0 && index < len) {
remaining = len - index;
volume = (mix_channel[i].volume*mix_channel[i].chunk->volume) / MIX_MAX_VOLUME;
mixable = mix_channel[i].playing;
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if (mixable > remaining) {
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mixable = remaining;
}
mix_input = Mix_DoEffects(i, mix_channel[i].samples, mixable);
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SDL_MixAudioFormat(stream+index,mix_input,mixer.format,mixable,volume);
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if (mix_input != mix_channel[i].samples)
SDL_free(mix_input);
mix_channel[i].samples += mixable;
mix_channel[i].playing -= mixable;
index += mixable;
/* rcg06072001 Alert app if channel is done playing. */
if (!mix_channel[i].playing && !mix_channel[i].looping) {
_Mix_channel_done_playing(i);
}
}
/* If looping the sample and we are at its end, make sure
we will still return a full buffer */
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while (mix_channel[i].looping && index < len) {
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int alen = mix_channel[i].chunk->alen;
remaining = len - index;
if (remaining > alen) {
remaining = alen;
}
mix_input = Mix_DoEffects(i, mix_channel[i].chunk->abuf, remaining);
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SDL_MixAudioFormat(stream+index, mix_input, mixer.format, remaining, volume);
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if (mix_input != mix_channel[i].chunk->abuf)
SDL_free(mix_input);
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if (mix_channel[i].looping > 0) {
--mix_channel[i].looping;
}
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mix_channel[i].samples = mix_channel[i].chunk->abuf + remaining;
mix_channel[i].playing = mix_channel[i].chunk->alen - remaining;
index += remaining;
}
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if (! mix_channel[i].playing && mix_channel[i].looping) {
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if (mix_channel[i].looping > 0) {
--mix_channel[i].looping;
}
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mix_channel[i].samples = mix_channel[i].chunk->abuf;
mix_channel[i].playing = mix_channel[i].chunk->alen;
}
}
}
}
/* rcg06122001 run posteffects... */
Mix_DoEffects(MIX_CHANNEL_POST, stream, len);
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if (mix_postmix) {
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mix_postmix(mix_postmix_data, stream, len);
}
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}
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#if 0
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static void PrintFormat(char *title, SDL_AudioSpec *fmt)
{
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printf("%s: %d bit %s audio (%s) at %u Hz\n", title, (fmt->format&0xFF),
(fmt->format&0x8000) ? "signed" : "unsigned",
(fmt->channels > 2) ? "surround" :
(fmt->channels > 1) ? "stereo" : "mono", fmt->freq);
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}
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#endif
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/* Open the mixer with a certain desired audio format */
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int Mix_OpenAudioDevice(int frequency, Uint16 format, int nchannels, int chunksize,
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const char* device, int allowed_changes)
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{
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int i;
SDL_AudioSpec desired;
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/* This used to call SDL_OpenAudio(), which initializes the audio
subsystem if necessary. Since SDL_OpenAudioDevice() doesn't,
we have to handle this case here. */
if (!SDL_WasInit(SDL_INIT_AUDIO)) {
if (SDL_InitSubSystem(SDL_INIT_AUDIO) < 0) {
return -1;
}
}
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/* If the mixer is already opened, increment open count */
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if (audio_opened) {
if (format == mixer.format && nchannels == mixer.channels) {
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++audio_opened;
return(0);
}
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while (audio_opened) {
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Mix_CloseAudio();
}
}
/* Set the desired format and frequency */
desired.freq = frequency;
desired.format = format;
desired.channels = nchannels;
desired.samples = chunksize;
desired.callback = mix_channels;
desired.userdata = NULL;
/* Accept nearly any audio format */
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if ((audio_device = SDL_OpenAudioDevice(device, 0, &desired, &mixer, allowed_changes)) == 0) {
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return(-1);
}
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#if 0
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PrintFormat("Audio device", &mixer);
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#endif
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num_channels = MIX_CHANNELS;
mix_channel = (struct _Mix_Channel *) SDL_malloc(num_channels * sizeof(struct _Mix_Channel));
/* Clear out the audio channels */
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for (i=0; i<num_channels; ++i) {
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mix_channel[i].chunk = NULL;
mix_channel[i].playing = 0;
mix_channel[i].looping = 0;
mix_channel[i].volume = SDL_MIX_MAXVOLUME;
mix_channel[i].fade_volume = SDL_MIX_MAXVOLUME;
mix_channel[i].fade_volume_reset = SDL_MIX_MAXVOLUME;
mix_channel[i].fading = MIX_NO_FADING;
mix_channel[i].tag = -1;
mix_channel[i].expire = 0;
mix_channel[i].effects = NULL;
mix_channel[i].paused = 0;
}
Mix_VolumeMusic(SDL_MIX_MAXVOLUME);
_Mix_InitEffects();
add_chunk_decoder("WAVE");
add_chunk_decoder("AIFF");
add_chunk_decoder("VOC");
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/* Initialize the music players */
open_music(&mixer);
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audio_opened = 1;
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SDL_PauseAudioDevice(audio_device, 0);
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return(0);
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}
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/* Open the mixer with a certain desired audio format */
int Mix_OpenAudio(int frequency, Uint16 format, int nchannels, int chunksize)
{
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return Mix_OpenAudioDevice(frequency, format, nchannels, chunksize, NULL,
SDL_AUDIO_ALLOW_FREQUENCY_CHANGE |
SDL_AUDIO_ALLOW_CHANNELS_CHANGE);
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}
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/* Dynamically change the number of channels managed by the mixer.
If decreasing the number of channels, the upper channels are
stopped.
*/
int Mix_AllocateChannels(int numchans)
{
Oct 17, 2017
Oct 17, 2017
471
if (numchans<0 || numchans==num_channels)
May 22, 2013
May 22, 2013
472
473
return(num_channels);
Oct 17, 2017
Oct 17, 2017
474
if (numchans < num_channels) {
May 22, 2013
May 22, 2013
475
476
477
478
479
480
481
/* Stop the affected channels */
int i;
for(i=numchans; i < num_channels; i++) {
Mix_UnregisterAllEffects(i);
Mix_HaltChannel(i);
}
}
Jan 29, 2016
Jan 29, 2016
482
Mix_LockAudio();
May 22, 2013
May 22, 2013
483
mix_channel = (struct _Mix_Channel *) SDL_realloc(mix_channel, numchans * sizeof(struct _Mix_Channel));
Oct 17, 2017
Oct 17, 2017
484
if (numchans > num_channels) {
May 22, 2013
May 22, 2013
485
486
487
488
489
490
/* Initialize the new channels */
int i;
for(i=num_channels; i < numchans; i++) {
mix_channel[i].chunk = NULL;
mix_channel[i].playing = 0;
mix_channel[i].looping = 0;
Oct 17, 2017
Oct 17, 2017
491
492
493
mix_channel[i].volume = MIX_MAX_VOLUME;
mix_channel[i].fade_volume = MIX_MAX_VOLUME;
mix_channel[i].fade_volume_reset = MIX_MAX_VOLUME;
May 22, 2013
May 22, 2013
494
495
496
497
498
499
500
501
mix_channel[i].fading = MIX_NO_FADING;
mix_channel[i].tag = -1;
mix_channel[i].expire = 0;
mix_channel[i].effects = NULL;
mix_channel[i].paused = 0;
}
}
num_channels = numchans;
Jan 29, 2016
Jan 29, 2016
502
Mix_UnlockAudio();
May 22, 2013
May 22, 2013
503
return(num_channels);
Oct 26, 1999
Oct 26, 1999
504
505
}
Oct 21, 1999
Oct 21, 1999
506
507
508
/* Return the actual mixer parameters */
int Mix_QuerySpec(int *frequency, Uint16 *format, int *channels)
{
Oct 17, 2017
Oct 17, 2017
509
510
if (audio_opened) {
if (frequency) {
May 22, 2013
May 22, 2013
511
512
*frequency = mixer.freq;
}
Oct 17, 2017
Oct 17, 2017
513
if (format) {
May 22, 2013
May 22, 2013
514
515
*format = mixer.format;
}
Oct 17, 2017
Oct 17, 2017
516
if (channels) {
May 22, 2013
May 22, 2013
517
518
519
520
*channels = mixer.channels;
}
}
return(audio_opened);
Oct 21, 1999
Oct 21, 1999
521
522
}
Oct 17, 2017
Oct 17, 2017
523
typedef struct _MusicFragment
Sep 16, 2013
Sep 16, 2013
524
{
Oct 17, 2017
Oct 17, 2017
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
Uint8 *data;
int size;
struct _MusicFragment *next;
} MusicFragment;
static SDL_AudioSpec *Mix_LoadMusic_RW(Mix_MusicType music_type, SDL_RWops *src, int freesrc, SDL_AudioSpec *spec, Uint8 **audio_buf, Uint32 *audio_len)
{
int i;
Mix_MusicInterface *interface = NULL;
void *music = NULL;
Sint64 start;
SDL_bool playing;
MusicFragment *first = NULL, *last = NULL, *fragment = NULL;
int count = 0;
int fragment_size;
Oct 25, 2017
Oct 25, 2017
541
542
543
544
if (!load_music_type(music_type) || !open_music_type(music_type)) {
return NULL;
}
Oct 17, 2017
Oct 17, 2017
545
546
547
548
549
550
551
552
*spec = mixer;
/* Use fragments sized on full audio frame boundaries - this'll do */
fragment_size = spec->size;
start = SDL_RWtell(src);
for (i = 0; i < get_num_music_interfaces(); ++i) {
interface = get_music_interface(i);
Oct 25, 2017
Oct 25, 2017
553
554
555
if (!interface->opened) {
continue;
}
Oct 17, 2017
Oct 17, 2017
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
if (interface->type != music_type) {
continue;
}
if (!interface->CreateFromRW || !interface->GetAudio) {
continue;
}
/* These music interfaces are not safe to use while music is playing */
if (interface->api == MIX_MUSIC_CMD ||
interface->api == MIX_MUSIC_MIKMOD ||
interface->api == MIX_MUSIC_NATIVEMIDI) {
continue;
}
music = interface->CreateFromRW(src, freesrc);
if (music) {
/* The interface owns the data source now */
freesrc = SDL_FALSE;
break;
}
/* Reset the stream for the next decoder */
SDL_RWseek(src, start, RW_SEEK_SET);
Sep 16, 2013
Sep 16, 2013
579
580
}
Oct 17, 2017
Oct 17, 2017
581
582
583
584
585
586
587
588
589
590
591
if (!music) {
if (freesrc) {
SDL_RWclose(src);
}
Mix_SetError("Unrecognized audio format");
return NULL;
}
Mix_LockAudio();
if (interface->Play) {
Oct 21, 2017
Oct 21, 2017
592
interface->Play(music, 1);
Oct 21, 2017
Oct 21, 2017
593
}
Oct 17, 2017
Oct 17, 2017
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633
634
635
playing = SDL_TRUE;
while (playing) {
int left;
fragment = (MusicFragment *)SDL_malloc(sizeof(*fragment));
if (!fragment) {
/* Uh oh, out of memory, let's return what we have */
break;
}
fragment->data = (Uint8 *)SDL_malloc(fragment_size);
if (!fragment->data) {
/* Uh oh, out of memory, let's return what we have */
SDL_free(fragment);
break;
}
fragment->next = NULL;
left = interface->GetAudio(music, fragment->data, fragment_size);
if (left > 0) {
playing = SDL_FALSE;
} else if (interface->IsPlaying) {
playing = interface->IsPlaying(music);
}
fragment->size = (fragment_size - left);
if (!first) {
first = fragment;
}
if (last) {
last->next = fragment;
}
last = fragment;
++count;
}
if (interface->Stop) {
interface->Stop(music);
}
if (music) {
interface->Delete(music);
Sep 16, 2013
Sep 16, 2013
636
}
Oct 17, 2017
Oct 17, 2017
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
Mix_UnlockAudio();
if (count > 0) {
*audio_len = (count - 1) * fragment_size + fragment->size;
*audio_buf = (Uint8 *)SDL_malloc(*audio_len);
if (*audio_buf) {
Uint8 *dst = *audio_buf;
for (fragment = first; fragment; fragment = fragment->next) {
SDL_memcpy(dst, fragment->data, fragment->size);
dst += fragment->size;
}
} else {
SDL_OutOfMemory();
spec = NULL;
}
} else {
Mix_SetError("No audio data");
spec = NULL;
}
while (first) {
fragment = first;
first = first->next;
SDL_free(fragment->data);
SDL_free(fragment);
}
if (freesrc) {
SDL_RWclose(src);
}
return spec;
Sep 16, 2013
Sep 16, 2013
669
}
Jun 10, 2001
Jun 10, 2001
670
Oct 21, 1999
Oct 21, 1999
671
672
673
/* Load a wave file */
Mix_Chunk *Mix_LoadWAV_RW(SDL_RWops *src, int freesrc)
{
Oct 17, 2017
Oct 17, 2017
674
Uint8 magic[4];
May 22, 2013
May 22, 2013
675
676
677
678
679
680
Mix_Chunk *chunk;
SDL_AudioSpec wavespec, *loaded;
SDL_AudioCVT wavecvt;
int samplesize;
/* rcg06012001 Make sure src is valid */
Oct 17, 2017
Oct 17, 2017
681
if (!src) {
May 22, 2013
May 22, 2013
682
683
684
685
686
SDL_SetError("Mix_LoadWAV_RW with NULL src");
return(NULL);
}
/* Make sure audio has been opened */
Oct 17, 2017
Oct 17, 2017
687
if (!audio_opened) {
May 22, 2013
May 22, 2013
688
SDL_SetError("Audio device hasn't been opened");
Oct 17, 2017
Oct 17, 2017
689
if (freesrc) {
May 22, 2013
May 22, 2013
690
691
692
693
694
695
696
SDL_RWclose(src);
}
return(NULL);
}
/* Allocate the chunk memory */
chunk = (Mix_Chunk *)SDL_malloc(sizeof(Mix_Chunk));
Oct 17, 2017
Oct 17, 2017
697
if (chunk == NULL) {
May 22, 2013
May 22, 2013
698
SDL_SetError("Out of memory");
Oct 17, 2017
Oct 17, 2017
699
if (freesrc) {
May 22, 2013
May 22, 2013
700
701
702
703
704
705
SDL_RWclose(src);
}
return(NULL);
}
/* Find out what kind of audio file this is */
Oct 17, 2017
Oct 17, 2017
706
707
708
709
710
711
712
if (SDL_RWread(src, magic, 1, 4) != 4) {
if (freesrc) {
SDL_RWclose(src);
}
Mix_SetError("Couldn't read first 4 bytes of audio data");
return NULL;
}
May 22, 2013
May 22, 2013
713
/* Seek backwards for compatibility with older loaders */
Oct 17, 2017
Oct 17, 2017
714
715
716
717
718
719
SDL_RWseek(src, -4, RW_SEEK_CUR);
if (SDL_memcmp(magic, "WAVE", 4) == 0 || SDL_memcmp(magic, "RIFF", 4) == 0) {
loaded = SDL_LoadWAV_RW(src, freesrc, &wavespec, (Uint8 **)&chunk->abuf, &chunk->alen);
} else if (SDL_memcmp(magic, "FORM", 4) == 0) {
loaded = Mix_LoadAIFF_RW(src, freesrc, &wavespec, (Uint8 **)&chunk->abuf, &chunk->alen);
May 23, 2018
May 23, 2018
720
} else if (SDL_memcmp(magic, "Crea", 4) == 0) {
Oct 17, 2017
Oct 17, 2017
721
722
723
724
loaded = Mix_LoadVOC_RW(src, freesrc, &wavespec, (Uint8 **)&chunk->abuf, &chunk->alen);
} else {
Mix_MusicType music_type = detect_music_type_from_magic(magic);
loaded = Mix_LoadMusic_RW(music_type, src, freesrc, &wavespec, (Uint8 **)&chunk->abuf, &chunk->alen);
May 22, 2013
May 22, 2013
725
}
Oct 17, 2017
Oct 17, 2017
726
if (!loaded) {
May 22, 2013
May 22, 2013
727
728
729
730
/* The individual loaders have closed src if needed */
SDL_free(chunk);
return(NULL);
}
Jun 10, 2001
Jun 10, 2001
731
Oct 21, 1999
Oct 21, 1999
732
#if 0
May 22, 2013
May 22, 2013
733
734
PrintFormat("Audio device", &mixer);
PrintFormat("-- Wave file", &wavespec);
Oct 21, 1999
Oct 21, 1999
735
736
#endif
May 22, 2013
May 22, 2013
737
/* Build the audio converter and create conversion buffers */
Oct 17, 2017
Oct 17, 2017
738
if (wavespec.format != mixer.format ||
May 22, 2013
May 22, 2013
739
wavespec.channels != mixer.channels ||
Oct 17, 2017
Oct 17, 2017
740
741
wavespec.freq != mixer.freq) {
if (SDL_BuildAudioCVT(&wavecvt,
May 22, 2013
May 22, 2013
742
wavespec.format, wavespec.channels, wavespec.freq,
Oct 17, 2017
Oct 17, 2017
743
mixer.format, mixer.channels, mixer.freq) < 0) {
May 22, 2013
May 22, 2013
744
745
746
747
748
749
750
SDL_free(chunk->abuf);
SDL_free(chunk);
return(NULL);
}
samplesize = ((wavespec.format & 0xFF)/8)*wavespec.channels;
wavecvt.len = chunk->alen & ~(samplesize-1);
wavecvt.buf = (Uint8 *)SDL_calloc(1, wavecvt.len*wavecvt.len_mult);
Oct 17, 2017
Oct 17, 2017
751
if (wavecvt.buf == NULL) {
May 22, 2013
May 22, 2013
752
753
754
755
756
SDL_SetError("Out of memory");
SDL_free(chunk->abuf);
SDL_free(chunk);
return(NULL);
}
Oct 21, 2017
Oct 21, 2017
757
SDL_memcpy(wavecvt.buf, chunk->abuf, wavecvt.len);
May 22, 2013
May 22, 2013
758
759
760
SDL_free(chunk->abuf);
/* Run the audio converter */
Oct 17, 2017
Oct 17, 2017
761
if (SDL_ConvertAudio(&wavecvt) < 0) {
May 22, 2013
May 22, 2013
762
763
764
765
766
767
768
769
770
771
772
773
774
SDL_free(wavecvt.buf);
SDL_free(chunk);
return(NULL);
}
chunk->abuf = wavecvt.buf;
chunk->alen = wavecvt.len_cvt;
}
chunk->allocated = 1;
chunk->volume = MIX_MAX_VOLUME;
return(chunk);
Oct 21, 1999
Oct 21, 1999
775
776
}
Oct 21, 1999
Oct 21, 1999
777
778
779
/* Load a wave file of the mixer format from a memory buffer */
Mix_Chunk *Mix_QuickLoad_WAV(Uint8 *mem)
{
May 22, 2013
May 22, 2013
780
781
782
783
Mix_Chunk *chunk;
Uint8 magic[4];
/* Make sure audio has been opened */
Oct 17, 2017
Oct 17, 2017
784
if (! audio_opened) {
May 22, 2013
May 22, 2013
785
786
787
788
789
790
SDL_SetError("Audio device hasn't been opened");
return(NULL);
}
/* Allocate the chunk memory */
chunk = (Mix_Chunk *)SDL_calloc(1,sizeof(Mix_Chunk));
Oct 17, 2017
Oct 17, 2017
791
if (chunk == NULL) {
May 22, 2013
May 22, 2013
792
793
794
795
796
797
798
799
SDL_SetError("Out of memory");
return(NULL);
}
/* Essentially just skip to the audio data (no error checking - fast) */
chunk->allocated = 0;
mem += 12; /* WAV header */
do {
Jun 1, 2013
Jun 1, 2013
800
SDL_memcpy(magic, mem, 4);
May 22, 2013
May 22, 2013
801
802
803
804
805
mem += 4;
chunk->alen = ((mem[3]<<24)|(mem[2]<<16)|(mem[1]<<8)|(mem[0]));
mem += 4;
chunk->abuf = mem;
mem += chunk->alen;
Oct 17, 2017
Oct 17, 2017
806
} while (memcmp(magic, "data", 4) != 0);
May 22, 2013
May 22, 2013
807
808
809
chunk->volume = MIX_MAX_VOLUME;
return(chunk);
Oct 21, 1999
Oct 21, 1999
810
811
}
May 18, 2002
May 18, 2002
812
813
814
/* Load raw audio data of the mixer format from a memory buffer */
Mix_Chunk *Mix_QuickLoad_RAW(Uint8 *mem, Uint32 len)
{
May 22, 2013
May 22, 2013
815
816
817
Mix_Chunk *chunk;
/* Make sure audio has been opened */
Oct 17, 2017
Oct 17, 2017
818
if (! audio_opened) {
May 22, 2013
May 22, 2013
819
820
821
822
823
824
SDL_SetError("Audio device hasn't been opened");
return(NULL);
}
/* Allocate the chunk memory */
chunk = (Mix_Chunk *)SDL_malloc(sizeof(Mix_Chunk));
Oct 17, 2017
Oct 17, 2017
825
if (chunk == NULL) {
May 22, 2013
May 22, 2013
826
827
828
829
830
831
832
833
834
835
836
SDL_SetError("Out of memory");
return(NULL);
}
/* Essentially just point at the audio data (no error checking - fast) */
chunk->allocated = 0;
chunk->alen = len;
chunk->abuf = mem;
chunk->volume = MIX_MAX_VOLUME;
return(chunk);
May 18, 2002
May 18, 2002
837
838
}
Oct 21, 1999
Oct 21, 1999
839
840
841
/* Free an audio chunk previously loaded */
void Mix_FreeChunk(Mix_Chunk *chunk)
{
May 22, 2013
May 22, 2013
842
843
844
int i;
/* Caution -- if the chunk is playing, the mixer will crash */
Oct 17, 2017
Oct 17, 2017
845
if (chunk) {
May 22, 2013
May 22, 2013
846
/* Guarantee that this chunk isn't playing */
Jan 29, 2016
Jan 29, 2016
847
Mix_LockAudio();
Oct 17, 2017
Oct 17, 2017
848
849
850
if (mix_channel) {
for (i=0; i<num_channels; ++i) {
if (chunk == mix_channel[i].chunk) {
May 22, 2013
May 22, 2013
851
852
853
854
855
mix_channel[i].playing = 0;
mix_channel[i].looping = 0;
}
}
}
Jan 29, 2016
Jan 29, 2016
856
Mix_UnlockAudio();
May 22, 2013
May 22, 2013
857
/* Actually free the chunk */
Oct 17, 2017
Oct 17, 2017
858
if (chunk->allocated) {
May 22, 2013
May 22, 2013
859
860
861
862
SDL_free(chunk->abuf);
}
SDL_free(chunk);
}
Oct 21, 1999
Oct 21, 1999
863
864
}
Dec 26, 1999
Dec 26, 1999
865
866
867
868
/* Set a function that is called after all mixing is performed.
This can be used to provide real-time visual display of the audio stream
or add a custom mixer filter for the stream data.
*/
Oct 21, 2017
Oct 21, 2017
869
void Mix_SetPostMix(void (SDLCALL *mix_func)
Dec 26, 1999
Dec 26, 1999
870
871
(void *udata, Uint8 *stream, int len), void *arg)
{
Jan 29, 2016
Jan 29, 2016
872
Mix_LockAudio();
May 22, 2013
May 22, 2013
873
874
mix_postmix_data = arg;
mix_postmix = mix_func;
Jan 29, 2016
Jan 29, 2016
875
Mix_UnlockAudio();
Dec 26, 1999
Dec 26, 1999
876
877
}
Oct 21, 1999
Oct 21, 1999
878
879
880
/* Add your own music player or mixer function.
If 'mix_func' is NULL, the default music player is re-enabled.
*/
Oct 21, 2017
Oct 21, 2017
881
void Mix_HookMusic(void (SDLCALL *mix_func)(void *udata, Uint8 *stream, int len),
Oct 21, 1999
Oct 21, 1999
882
883
void *arg)
{
Jan 29, 2016
Jan 29, 2016
884
Mix_LockAudio();
Oct 17, 2017
Oct 17, 2017
885
if (mix_func != NULL) {
May 22, 2013
May 22, 2013
886
887
888
889
890
891
music_data = arg;
mix_music = mix_func;
} else {
music_data = NULL;
mix_music = music_mixer;
}
Jan 29, 2016
Jan 29, 2016
892
Mix_UnlockAudio();
Oct 21, 1999
Oct 21, 1999
893
894
895
896
}
void *Mix_GetMusicHookData(void)
{
May 22, 2013
May 22, 2013
897
return(music_data);
Oct 21, 1999
Oct 21, 1999
898
899
}
Oct 21, 2017
Oct 21, 2017
900
void Mix_ChannelFinished(void (SDLCALL *channel_finished)(int channel))
Jun 10, 2001
Jun 10, 2001
901
{
Jan 29, 2016
Jan 29, 2016
902
Mix_LockAudio();
May 22, 2013
May 22, 2013
903
channel_done_callback = channel_finished;
Jan 29, 2016
Jan 29, 2016
904
Mix_UnlockAudio();
Jun 10, 2001
Jun 10, 2001
905
906
907
}
Oct 21, 1999
Oct 21, 1999
908
909
910
911
912
913
/* Reserve the first channels (0 -> n-1) for the application, i.e. don't allocate
them dynamically to the next sample if requested with a -1 value below.
Returns the number of reserved channels.
*/
int Mix_ReserveChannels(int num)
{
May 22, 2013
May 22, 2013
914
915
916
917
if (num > num_channels)
num = num_channels;
reserved_channels = num;
return num;
Oct 21, 1999
Oct 21, 1999
918
919
}
Aug 21, 2004
Aug 21, 2004
920
921
static int checkchunkintegral(Mix_Chunk *chunk)
{
May 22, 2013
May 22, 2013
922
int frame_width = 1;
Aug 21, 2004
Aug 21, 2004
923
May 22, 2013
May 22, 2013
924
925
926
927
if ((mixer.format & 0xFF) == 16) frame_width = 2;
frame_width *= mixer.channels;
while (chunk->alen % frame_width) chunk->alen--;
return chunk->alen;
Aug 21, 2004
Aug 21, 2004
928
929
}
Oct 21, 1999
Oct 21, 1999
930
931
/* Play an audio chunk on a specific channel.
If the specified channel is -1, play on the first free channel.
Oct 26, 1999
Oct 26, 1999
932
933
'ticks' is the number of milliseconds at most to play the sample, or -1
if there is no limit.
Oct 21, 1999
Oct 21, 1999
934
935
Returns which channel was used to play the sound.
*/
Oct 26, 1999
Oct 26, 1999
936
int Mix_PlayChannelTimed(int which, Mix_Chunk *chunk, int loops, int ticks)
Oct 21, 1999
Oct 21, 1999
937
{
May 22, 2013
May 22, 2013
938
939
940
int i;
/* Don't play null pointers :-) */
Oct 17, 2017
Oct 17, 2017
941
if (chunk == NULL) {
May 22, 2013
May 22, 2013
942
943
944
Mix_SetError("Tried to play a NULL chunk");
return(-1);
}
Oct 17, 2017
Oct 17, 2017
945
if (!checkchunkintegral(chunk)) {
May 22, 2013
May 22, 2013
946
947
948
949
950
Mix_SetError("Tried to play a chunk with a bad frame");
return(-1);
}
/* Lock the mixer while modifying the playing channels */
Jan 29, 2016
Jan 29, 2016
951
Mix_LockAudio();
May 22, 2013
May 22, 2013
952
953
{
/* If which is -1, play on the first free channel */
Oct 17, 2017
Oct 17, 2017
954
955
956
if (which == -1) {
for (i=reserved_channels; i<num_channels; ++i) {
if (mix_channel[i].playing <= 0)
May 22, 2013
May 22, 2013
957
958
break;
}
Oct 17, 2017
Oct 17, 2017
959
if (i == num_channels) {
May 22, 2013
May 22, 2013
960
961
962
963
964
965
966
967
Mix_SetError("No free channels available");
which = -1;
} else {
which = i;
}
}
/* Queue up the audio data for this channel */
Oct 17, 2017
Oct 17, 2017
968
if (which >= 0 && which < num_channels) {
May 22, 2013
May 22, 2013
969
970
971
972
973
974
975
976
977
978
979
980
981
Uint32 sdl_ticks = SDL_GetTicks();
if (Mix_Playing(which))
_Mix_channel_done_playing(which);
mix_channel[which].samples = chunk->abuf;
mix_channel[which].playing = chunk->alen;
mix_channel[which].looping = loops;
mix_channel[which].chunk = chunk;
mix_channel[which].paused = 0;
mix_channel[which].fading = MIX_NO_FADING;
mix_channel[which].start_time = sdl_ticks;
mix_channel[which].expire = (ticks>0) ? (sdl_ticks + ticks) : 0;
}
}
Jan 29, 2016
Jan 29, 2016
982
Mix_UnlockAudio();
May 22, 2013
May 22, 2013
983
984
985
/* Return the channel on which the sound is being played */
return(which);
Oct 23, 1999
Oct 23, 1999
986
987
}
Oct 26, 1999
Oct 26, 1999
988
989
990
/* Change the expiration delay for a channel */
int Mix_ExpireChannel(int which, int ticks)
{
May 22, 2013
May 22, 2013
991
992
int status = 0;
Oct 17, 2017
Oct 17, 2017
993
if (which == -1) {
May 22, 2013
May 22, 2013
994
int i;
Oct 17, 2017
Oct 17, 2017
995
for (i=0; i < num_channels; ++ i) {
May 22, 2013
May 22, 2013
996
997
status += Mix_ExpireChannel(i, ticks);
}
Oct 17, 2017
Oct 17, 2017
998
} else if (which < num_channels) {
Jan 29, 2016
Jan 29, 2016
999
Mix_LockAudio();
May 22, 2013
May 22, 2013
1000
mix_channel[which].expire = (ticks>0) ? (SDL_GetTicks() + ticks) : 0;