mpv/libao2/ao_sgi.c

196 lines
4.4 KiB
C

/*
ao_sgi - sgi/irix output plugin for MPlayer
22oct2001 oliver.schoenbrunner@jku.at
*/
#include <stdio.h>
#include <stdlib.h>
#include <dmedia/audio.h>
#include "audio_out.h"
#include "audio_out_internal.h"
#include "../mp_msg.h"
#include "../help_mp.h"
static ao_info_t info =
{
"sgi audio output",
"sgi",
"kopflos",
""
};
LIBAO_EXTERN(sgi)
static ALconfig ao_config;
static ALport ao_port;
static int sample_rate;
static int queue_size;
// to set/get/query special features/parameters
static int control(int cmd, void *arg){
mp_msg(MSGT_AO, MSGL_INFO, MSGTR_AO_SGI_INFO);
return -1;
}
// open & setup audio device
// return: 1=success 0=fail
static int init(int rate, int channels, int format, int flags) {
mp_msg(MSGT_AO, MSGL_INFO, MSGTR_AO_SGI_InitInfo, rate, (channels > 1) ? "Stereo" : "Mono", audio_out_format_name(format));
{ /* from /usr/share/src/dmedia/audio/setrate.c */
int fd;
int rv;
double frate;
ALpv x[2];
rv = alGetResourceByName(AL_SYSTEM, "out.analog", AL_DEVICE_TYPE);
if (!rv) {
mp_msg(MSGT_AO, MSGL_ERR, MSGTR_AO_SGI_InvalidDevice);
return 0;
}
frate = rate;
x[0].param = AL_RATE;
x[0].value.ll = alDoubleToFixed(rate);
x[1].param = AL_MASTER_CLOCK;
x[1].value.i = AL_CRYSTAL_MCLK_TYPE;
if (alSetParams(rv,x, 2)<0) {
mp_msg(MSGT_AO, MSGL_WARN, MSGTR_AO_SGI_CantSetParms_Samplerate, alGetErrorString(oserror()));
}
if (x[0].sizeOut < 0) {
mp_msg(MSGT_AO, MSGL_WARN, MSGTR_AO_SGI_CantSetAlRate);
}
if (alGetParams(rv,x, 1)<0) {
mp_msg(MSGT_AO, MSGL_WARN, MSGTR_AO_SGI_CantGetParms, alGetErrorString(oserror()));
}
if (frate != alFixedToDouble(x[0].value.ll)) {
mp_msg(MSGT_AO, MSGL_INFO, MSGTR_AO_SGI_SampleRateInfo, alFixedToDouble(x[0].value.ll), frate);
}
sample_rate = (int)frate;
}
ao_data.buffersize=131072;
ao_data.outburst = ao_data.buffersize/16;
ao_data.channels = channels;
ao_config = alNewConfig();
if (!ao_config) {
mp_msg(MSGT_AO, MSGL_ERR, MSGTR_AO_SGI_InitConfigError, alGetErrorString(oserror()));
return 0;
}
if(channels == 2) alSetChannels(ao_config, AL_STEREO);
else alSetChannels(ao_config, AL_MONO);
alSetWidth(ao_config, AL_SAMPLE_16);
alSetSampFmt(ao_config, AL_SAMPFMT_TWOSCOMP);
alSetQueueSize(ao_config, 48000);
if (alSetDevice(ao_config, AL_DEFAULT_OUTPUT) < 0) {
mp_msg(MSGT_AO, MSGL_ERR, MSGTR_AO_SGI_InitConfigError, alGetErrorString(oserror()));
return 0;
}
ao_port = alOpenPort("mplayer", "w", ao_config);
if (!ao_port) {
mp_msg(MSGT_AO, MSGL_ERR, MSGTR_AO_SGI_InitOpenAudioFailed, alGetErrorString(oserror()));
return 0;
}
// printf("ao_sgi, init: port %d config %d\n", ao_port, ao_config);
queue_size = alGetQueueSize(ao_config);
return 1;
}
// close audio device
static void uninit(int immed) {
/* TODO: samplerate should be set back to the value before mplayer was started! */
mp_msg(MSGT_AO, MSGL_INFO, MSGTR_AO_SGI_Uninit);
if (ao_port) {
while(alGetFilled(ao_port) > 0) sginap(1);
alClosePort(ao_port);
alFreeConfig(ao_config);
}
}
// stop playing and empty buffers (for seeking/pause)
static void reset() {
mp_msg(MSGT_AO, MSGL_INFO, MSGTR_AO_SGI_Reset);
}
// stop playing, keep buffers (for pause)
static void audio_pause() {
mp_msg(MSGT_AO, MSGL_INFO, MSGTR_AO_SGI_PauseInfo);
}
// resume playing, after audio_pause()
static void audio_resume() {
mp_msg(MSGT_AO, MSGL_INFO, MSGTR_AO_SGI_ResumeInfo);
}
// return: how many bytes can be played without blocking
static int get_space() {
// printf("ao_sgi, get_space: (ao_outburst %d)\n", ao_outburst);
// printf("ao_sgi, get_space: alGetFillable [%d] \n", alGetFillable(ao_port));
return alGetFillable(ao_port)*(2*ao_data.channels);
}
// plays 'len' bytes of 'data'
// it should round it down to outburst*n
// return: number of bytes played
static int play(void* data, int len, int flags) {
// printf("ao_sgi, play: len %d flags %d (%d %d)\n", len, flags, ao_port, ao_config);
// printf("channels %d\n", ao_channels);
alWriteFrames(ao_port, data, len/(2*ao_data.channels));
return len;
}
// return: delay in seconds between first and last sample in buffer
static float get_delay(){
// printf("ao_sgi, get_delay: (ao_buffersize %d)\n", ao_buffersize);
//return 0;
return (float)queue_size/((float)sample_rate);
}