/***************************************************************************** * aout_OutputPlay : play a buffer ***************************************************************************** * This function is entered with the mixer lock. *****************************************************************************/ void aout_OutputPlay( aout_instance_t * p_aout, aout_buffer_t * p_buffer ) { aout_FiltersPlay( p_aout, p_aout->output.pp_filters, p_aout->output.i_nb_filters, &p_buffer ); if( p_buffer->i_nb_bytes == 0 ) { aout_BufferFree( p_buffer ); return; } aout_lock_output_fifo( p_aout ); aout_FifoPush( p_aout, &p_aout->output.fifo, p_buffer ); p_aout->output.pf_play( p_aout ); aout_unlock_output_fifo( p_aout ); }
/***************************************************************************** * aout_OutputDelete : delete the output ***************************************************************************** * This function is entered with the mixer lock. *****************************************************************************/ void aout_OutputDelete( aout_instance_t * p_aout ) { if ( p_aout->output.b_error ) { return; } module_unneed( p_aout, p_aout->output.p_module ); aout_FiltersDestroyPipeline( p_aout, p_aout->output.pp_filters, p_aout->output.i_nb_filters ); aout_lock_output_fifo( p_aout ); aout_FifoDestroy( p_aout, &p_aout->output.fifo ); aout_unlock_output_fifo( p_aout ); p_aout->output.b_error = true; }
/***************************************************************************** * aout_OutputNextBuffer : give the audio output plug-in the right buffer ***************************************************************************** * If b_can_sleek is 1, the aout core functions won't try to resample * new buffers to catch up - that is we suppose that the output plug-in can * compensate it by itself. S/PDIF outputs should always set b_can_sleek = 1. * This function is entered with no lock at all :-). *****************************************************************************/ aout_buffer_t * aout_OutputNextBuffer( aout_instance_t * p_aout, mtime_t start_date, bool b_can_sleek ) { aout_buffer_t * p_buffer; aout_lock_output_fifo( p_aout ); p_buffer = p_aout->output.fifo.p_first; /* Drop the audio sample if the audio output is really late. * In the case of b_can_sleek, we don't use a resampler so we need to be * a lot more severe. */ while ( p_buffer && p_buffer->i_pts < (b_can_sleek ? start_date : mdate()) - AOUT_PTS_TOLERANCE ) { msg_Dbg( p_aout, "audio output is too slow (%"PRId64"), " "trashing %"PRId64"us", mdate() - p_buffer->i_pts, p_buffer->i_length ); p_buffer = p_buffer->p_next; aout_BufferFree( p_aout->output.fifo.p_first ); p_aout->output.fifo.p_first = p_buffer; } if ( p_buffer == NULL ) { p_aout->output.fifo.pp_last = &p_aout->output.fifo.p_first; #if 0 /* This is bad because the audio output might just be trying to fill * in its internal buffers. And anyway, it's up to the audio output * to deal with this kind of starvation. */ /* Set date to 0, to allow the mixer to send a new buffer ASAP */ aout_FifoSet( p_aout, &p_aout->output.fifo, 0 ); if ( !p_aout->output.b_starving ) msg_Dbg( p_aout, "audio output is starving (no input), playing silence" ); p_aout->output.b_starving = 1; #endif aout_unlock_output_fifo( p_aout ); return NULL; }
/***************************************************************************** * aout_OutputNew : allocate a new output and rework the filter pipeline ***************************************************************************** * This function is entered with the mixer lock. *****************************************************************************/ int aout_OutputNew( aout_instance_t * p_aout, audio_sample_format_t * p_format ) { /* Retrieve user defaults. */ int i_rate = var_InheritInteger( p_aout, "aout-rate" ); vlc_value_t val, text; /* kludge to avoid a fpu error when rate is 0... */ if( i_rate == 0 ) i_rate = -1; memcpy( &p_aout->output.output, p_format, sizeof(audio_sample_format_t) ); if ( i_rate != -1 ) p_aout->output.output.i_rate = i_rate; aout_FormatPrepare( &p_aout->output.output ); /* Find the best output plug-in. */ p_aout->output.p_module = module_need( p_aout, "audio output", "$aout", false ); if ( p_aout->output.p_module == NULL ) { msg_Err( p_aout, "no suitable audio output module" ); return -1; } if ( var_Type( p_aout, "audio-channels" ) == (VLC_VAR_INTEGER | VLC_VAR_HASCHOICE) ) { /* The user may have selected a different channels configuration. */ var_Get( p_aout, "audio-channels", &val ); if ( val.i_int == AOUT_VAR_CHAN_RSTEREO ) { p_aout->output.output.i_original_channels |= AOUT_CHAN_REVERSESTEREO; } else if ( val.i_int == AOUT_VAR_CHAN_STEREO ) { p_aout->output.output.i_original_channels = AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT; } else if ( val.i_int == AOUT_VAR_CHAN_LEFT ) { p_aout->output.output.i_original_channels = AOUT_CHAN_LEFT; } else if ( val.i_int == AOUT_VAR_CHAN_RIGHT ) { p_aout->output.output.i_original_channels = AOUT_CHAN_RIGHT; } else if ( val.i_int == AOUT_VAR_CHAN_DOLBYS ) { p_aout->output.output.i_original_channels = AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT | AOUT_CHAN_DOLBYSTEREO; } } else if ( p_aout->output.output.i_physical_channels == AOUT_CHAN_CENTER && (p_aout->output.output.i_original_channels & AOUT_CHAN_PHYSMASK) == (AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT) ) { /* Mono - create the audio-channels variable. */ var_Create( p_aout, "audio-channels", VLC_VAR_INTEGER | VLC_VAR_HASCHOICE ); text.psz_string = _("Audio Channels"); var_Change( p_aout, "audio-channels", VLC_VAR_SETTEXT, &text, NULL ); val.i_int = AOUT_VAR_CHAN_STEREO; text.psz_string = _("Stereo"); var_Change( p_aout, "audio-channels", VLC_VAR_ADDCHOICE, &val, &text ); val.i_int = AOUT_VAR_CHAN_LEFT; text.psz_string = _("Left"); var_Change( p_aout, "audio-channels", VLC_VAR_ADDCHOICE, &val, &text ); val.i_int = AOUT_VAR_CHAN_RIGHT; text.psz_string = _("Right"); var_Change( p_aout, "audio-channels", VLC_VAR_ADDCHOICE, &val, &text ); if ( p_aout->output.output.i_original_channels & AOUT_CHAN_DUALMONO ) { /* Go directly to the left channel. */ p_aout->output.output.i_original_channels = AOUT_CHAN_LEFT; var_SetInteger( p_aout, "audio-channels", AOUT_VAR_CHAN_LEFT ); } var_AddCallback( p_aout, "audio-channels", aout_ChannelsRestart, NULL ); } else if ( p_aout->output.output.i_physical_channels == (AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT) && (p_aout->output.output.i_original_channels & (AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT)) ) { /* Stereo - create the audio-channels variable. */ var_Create( p_aout, "audio-channels", VLC_VAR_INTEGER | VLC_VAR_HASCHOICE ); text.psz_string = _("Audio Channels"); var_Change( p_aout, "audio-channels", VLC_VAR_SETTEXT, &text, NULL ); if ( p_aout->output.output.i_original_channels & AOUT_CHAN_DOLBYSTEREO ) { val.i_int = AOUT_VAR_CHAN_DOLBYS; text.psz_string = _("Dolby Surround"); } else { val.i_int = AOUT_VAR_CHAN_STEREO; text.psz_string = _("Stereo"); } var_Change( p_aout, "audio-channels", VLC_VAR_ADDCHOICE, &val, &text ); val.i_int = AOUT_VAR_CHAN_LEFT; text.psz_string = _("Left"); var_Change( p_aout, "audio-channels", VLC_VAR_ADDCHOICE, &val, &text ); val.i_int = AOUT_VAR_CHAN_RIGHT; text.psz_string = _("Right"); var_Change( p_aout, "audio-channels", VLC_VAR_ADDCHOICE, &val, &text ); val.i_int = AOUT_VAR_CHAN_RSTEREO; text.psz_string=_("Reverse stereo"); var_Change( p_aout, "audio-channels", VLC_VAR_ADDCHOICE, &val, &text ); if ( p_aout->output.output.i_original_channels & AOUT_CHAN_DUALMONO ) { /* Go directly to the left channel. */ p_aout->output.output.i_original_channels = AOUT_CHAN_LEFT; var_SetInteger( p_aout, "audio-channels", AOUT_VAR_CHAN_LEFT ); } var_AddCallback( p_aout, "audio-channels", aout_ChannelsRestart, NULL ); } var_SetBool( p_aout, "intf-change", true ); aout_FormatPrepare( &p_aout->output.output ); aout_lock_output_fifo( p_aout ); /* Prepare FIFO. */ aout_FifoInit( p_aout, &p_aout->output.fifo, p_aout->output.output.i_rate ); aout_unlock_output_fifo( p_aout ); aout_FormatPrint( p_aout, "output", &p_aout->output.output ); /* Calculate the resulting mixer output format. */ p_aout->mixer_format = p_aout->output.output; if ( !AOUT_FMT_NON_LINEAR(&p_aout->output.output) ) { /* Non-S/PDIF mixer only deals with float32 or fixed32. */ p_aout->mixer_format.i_format = HAVE_FPU ? VLC_CODEC_FL32 : VLC_CODEC_FI32; aout_FormatPrepare( &p_aout->mixer_format ); } else { p_aout->mixer_format.i_format = p_format->i_format; } aout_FormatPrint( p_aout, "mixer", &p_aout->mixer_format ); /* Create filters. */ p_aout->output.i_nb_filters = 0; if ( aout_FiltersCreatePipeline( p_aout, p_aout->output.pp_filters, &p_aout->output.i_nb_filters, &p_aout->mixer_format, &p_aout->output.output ) < 0 ) { msg_Err( p_aout, "couldn't create audio output pipeline" ); module_unneed( p_aout, p_aout->output.p_module ); return -1; } /* Prepare hints for the buffer allocator. */ p_aout->mixer_allocation.b_alloc = true; p_aout->mixer_allocation.i_bytes_per_sec = p_aout->mixer_format.i_bytes_per_frame * p_aout->mixer_format.i_rate / p_aout->mixer_format.i_frame_length; aout_FiltersHintBuffers( p_aout, p_aout->output.pp_filters, p_aout->output.i_nb_filters, &p_aout->mixer_allocation ); p_aout->output.b_error = 0; return 0; }