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/* libxmms-flac - XMMS FLAC input plugin
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* Copyright ( C ) 2000 , 2001 , 2002 , 2003 Josh Coalson
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*
* This program is free software ; you can redistribute it and / or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation ; either version 2
* of the License , or ( at your option ) any later version .
*
* This program is distributed in the hope that it will be useful ,
* but WITHOUT ANY WARRANTY ; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
* GNU General Public License for more details .
*
* You should have received a copy of the GNU General Public License
* along with this program ; if not , write to the Free Software
* Foundation , Inc . , 59 Temple Place - Suite 330 , Boston , MA 02111 - 1307 , USA .
*/
# include <pthread.h>
# include <stdlib.h>
# include <string.h>
# include <stdio.h>
# include <glib.h>
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# include <xmms/plugin.h>
# include <xmms/util.h>
# include <xmms/configfile.h>
# include <xmms/titlestring.h>
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# ifdef HAVE_CONFIG_H
# include <config.h>
# endif
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# ifdef HAVE_LANGINFO_CODESET
# include <langinfo.h>
# endif
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# include "FLAC/all.h"
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# include "plugin_common/all.h"
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# include "share/grabbag.h"
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# include "configure.h"
# include "wrap_id3.h"
# include "charset.h"
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# ifdef min
# undef min
# endif
# define min(x,y) ((x)<(y)?(x):(y))
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extern void FLAC_XMMS__file_info_box ( char * filename ) ;
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typedef struct {
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FLAC__bool abort_flag ;
FLAC__bool is_playing ;
FLAC__bool eof ;
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FLAC__bool play_thread_open ; /* if true, is_playing must also be true */
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unsigned total_samples ;
unsigned bits_per_sample ;
unsigned channels ;
unsigned sample_rate ;
unsigned length_in_msec ;
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gchar * title ;
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AFormat sample_format ;
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int seek_to_in_sec ;
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FLAC__bool has_replaygain ;
double replay_scale ;
DitherContext dither_context ;
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} file_info_struct ;
static void FLAC_XMMS__init ( ) ;
static int FLAC_XMMS__is_our_file ( char * filename ) ;
static void FLAC_XMMS__play_file ( char * filename ) ;
static void FLAC_XMMS__stop ( ) ;
static void FLAC_XMMS__pause ( short p ) ;
static void FLAC_XMMS__seek ( int time ) ;
static int FLAC_XMMS__get_time ( ) ;
static void FLAC_XMMS__cleanup ( ) ;
static void FLAC_XMMS__get_song_info ( char * filename , char * * title , int * length ) ;
static void * play_loop_ ( void * arg ) ;
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static FLAC__bool safe_decoder_init_ ( const char * filename , FLAC__FileDecoder * decoder ) ;
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static void safe_decoder_finish_ ( FLAC__FileDecoder * decoder ) ;
static void safe_decoder_delete_ ( FLAC__FileDecoder * decoder ) ;
static FLAC__StreamDecoderWriteStatus write_callback_ ( const FLAC__FileDecoder * decoder , const FLAC__Frame * frame , const FLAC__int32 * const buffer [ ] , void * client_data ) ;
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static void metadata_callback_ ( const FLAC__FileDecoder * decoder , const FLAC__StreamMetadata * metadata , void * client_data ) ;
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static void error_callback_ ( const FLAC__FileDecoder * decoder , FLAC__StreamDecoderErrorStatus status , void * client_data ) ;
InputPlugin flac_ip =
{
NULL ,
NULL ,
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" Reference FLAC Player v " VERSION ,
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FLAC_XMMS__init ,
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FLAC_XMMS__aboutbox ,
FLAC_XMMS__configure ,
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FLAC_XMMS__is_our_file ,
NULL ,
FLAC_XMMS__play_file ,
FLAC_XMMS__stop ,
FLAC_XMMS__pause ,
FLAC_XMMS__seek ,
NULL ,
FLAC_XMMS__get_time ,
NULL ,
NULL ,
FLAC_XMMS__cleanup ,
NULL ,
NULL ,
NULL ,
NULL ,
FLAC_XMMS__get_song_info ,
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FLAC_XMMS__file_info_box ,
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NULL
} ;
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# define SAMPLES_PER_WRITE 512
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static FLAC__int32 reservoir_ [ FLAC__MAX_BLOCK_SIZE * 2 /*for overflow*/ * FLAC_PLUGIN__MAX_SUPPORTED_CHANNELS ] ;
static FLAC__byte sample_buffer_ [ SAMPLES_PER_WRITE * FLAC_PLUGIN__MAX_SUPPORTED_CHANNELS * ( 24 / 8 ) ] ; /* (24/8) for max bytes per sample */
static unsigned wide_samples_in_reservoir_ = 0 ;
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static FLAC__FileDecoder * decoder_ = 0 ;
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static file_info_struct file_info_ ;
static pthread_t decode_thread_ ;
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static FLAC__bool audio_error_ = false ;
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# define BITRATE_HIST_SEGMENT_MSEC 500
/* 500ms * 50 = 25s should be enough */
# define BITRATE_HIST_SIZE 50
static unsigned bitrate_history_ [ BITRATE_HIST_SIZE ] ;
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InputPlugin * get_iplugin_info ( )
{
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flac_ip . description = g_strdup_printf ( " Reference FLAC Player v%s " , FLAC__VERSION_STRING ) ;
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return & flac_ip ;
}
void FLAC_XMMS__init ( )
{
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ConfigFile * cfg ;
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flac_cfg . title . tag_override = FALSE ;
g_free ( flac_cfg . title . tag_format ) ;
flac_cfg . title . convert_char_set = FALSE ;
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cfg = xmms_cfg_open_default_file ( ) ;
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/* title */
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xmms_cfg_read_boolean ( cfg , " flac " , " title.tag_override " , & flac_cfg . title . tag_override ) ;
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if ( ! xmms_cfg_read_string ( cfg , " flac " , " title.tag_format " , & flac_cfg . title . tag_format ) )
flac_cfg . title . tag_format = g_strdup ( " %p - %t " ) ;
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xmms_cfg_read_boolean ( cfg , " flac " , " title.convert_char_set " , & flac_cfg . title . convert_char_set ) ;
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if ( ! xmms_cfg_read_string ( cfg , " flac " , " title.file_char_set " , & flac_cfg . title . file_char_set ) )
flac_cfg . title . file_char_set = FLAC_plugin__charset_get_current ( ) ;
if ( ! xmms_cfg_read_string ( cfg , " flac " , " title.user_char_set " , & flac_cfg . title . user_char_set ) )
flac_cfg . title . user_char_set = FLAC_plugin__charset_get_current ( ) ;
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/* replaygain */
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xmms_cfg_read_boolean ( cfg , " flac " , " output.replaygain.enable " , & flac_cfg . output . replaygain . enable ) ;
xmms_cfg_read_boolean ( cfg , " flac " , " output.replaygain.album_mode " , & flac_cfg . output . replaygain . album_mode ) ;
if ( ! xmms_cfg_read_int ( cfg , " flac " , " output.replaygain.preamp " , & flac_cfg . output . replaygain . preamp ) )
flac_cfg . output . replaygain . preamp = 0 ;
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xmms_cfg_read_boolean ( cfg , " flac " , " output.replaygain.hard_limit " , & flac_cfg . output . replaygain . hard_limit ) ;
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xmms_cfg_read_boolean ( cfg , " flac " , " output.resolution.normal.dither_24_to_16 " , & flac_cfg . output . resolution . normal . dither_24_to_16 ) ;
xmms_cfg_read_boolean ( cfg , " flac " , " output.resolution.replaygain.dither " , & flac_cfg . output . resolution . replaygain . dither ) ;
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if ( ! xmms_cfg_read_int ( cfg , " flac " , " output.resolution.replaygain.noise_shaping " , & flac_cfg . output . resolution . replaygain . noise_shaping ) )
flac_cfg . output . resolution . replaygain . noise_shaping = 1 ;
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if ( ! xmms_cfg_read_int ( cfg , " flac " , " output.resolution.replaygain.bps_out " , & flac_cfg . output . resolution . replaygain . bps_out ) )
flac_cfg . output . resolution . replaygain . bps_out = 16 ;
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decoder_ = FLAC__file_decoder_new ( ) ;
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}
int FLAC_XMMS__is_our_file ( char * filename )
{
char * ext ;
ext = strrchr ( filename , ' . ' ) ;
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if ( ext )
if ( ! strcasecmp ( ext , " .flac " ) | | ! strcasecmp ( ext , " .fla " ) )
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return 1 ;
return 0 ;
}
void FLAC_XMMS__play_file ( char * filename )
{
FILE * f ;
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wide_samples_in_reservoir_ = 0 ;
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audio_error_ = false ;
file_info_ . abort_flag = false ;
file_info_ . is_playing = false ;
file_info_ . eof = false ;
file_info_ . play_thread_open = false ;
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file_info_ . has_replaygain = false ;
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if ( 0 = = ( f = fopen ( filename , " r " ) ) )
return ;
fclose ( f ) ;
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if ( decoder_ = = 0 )
return ;
if ( ! safe_decoder_init_ ( filename , decoder_ ) )
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return ;
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if ( file_info_ . has_replaygain & & flac_cfg . output . replaygain . enable & & flac_cfg . output . resolution . replaygain . dither )
FLAC__plugin_common__init_dither_context ( & file_info_ . dither_context , file_info_ . bits_per_sample , flac_cfg . output . resolution . replaygain . noise_shaping ) ;
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file_info_ . is_playing = true ;
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if ( flac_ip . output - > open_audio ( file_info_ . sample_format , file_info_ . sample_rate , file_info_ . channels ) = = 0 ) {
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audio_error_ = true ;
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safe_decoder_finish_ ( decoder_ ) ;
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return ;
}
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file_info_ . title = flac_format_song_title ( filename ) ;
flac_ip . set_info ( file_info_ . title , file_info_ . length_in_msec , file_info_ . sample_rate * file_info_ . channels * file_info_ . bits_per_sample , file_info_ . sample_rate , file_info_ . channels ) ;
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file_info_ . seek_to_in_sec = - 1 ;
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file_info_ . play_thread_open = true ;
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pthread_create ( & decode_thread_ , NULL , play_loop_ , NULL ) ;
}
void FLAC_XMMS__stop ( )
{
if ( file_info_ . is_playing ) {
file_info_ . is_playing = false ;
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if ( file_info_ . play_thread_open ) {
file_info_ . play_thread_open = false ;
pthread_join ( decode_thread_ , NULL ) ;
}
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flac_ip . output - > close_audio ( ) ;
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safe_decoder_finish_ ( decoder_ ) ;
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}
}
void FLAC_XMMS__pause ( short p )
{
flac_ip . output - > pause ( p ) ;
}
void FLAC_XMMS__seek ( int time )
{
file_info_ . seek_to_in_sec = time ;
file_info_ . eof = false ;
while ( file_info_ . seek_to_in_sec ! = - 1 )
xmms_usleep ( 10000 ) ;
}
int FLAC_XMMS__get_time ( )
{
if ( audio_error_ )
return - 2 ;
if ( ! file_info_ . is_playing | | ( file_info_ . eof & & ! flac_ip . output - > buffer_playing ( ) ) )
return - 1 ;
else
return flac_ip . output - > output_time ( ) ;
}
void FLAC_XMMS__cleanup ( )
{
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safe_decoder_delete_ ( decoder_ ) ;
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decoder_ = 0 ;
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}
void FLAC_XMMS__get_song_info ( char * filename , char * * title , int * length_in_msec )
{
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FLAC__StreamMetadata streaminfo ;
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if ( 0 = = filename )
filename = " " ;
if ( ! FLAC__metadata_get_streaminfo ( filename , & streaminfo ) ) {
/* @@@ how to report the error? */
if ( title ) {
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static const char * errtitle = " Invalid FLAC File: " ;
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* title = g_malloc ( strlen ( errtitle ) + 1 + strlen ( filename ) + 1 + 1 ) ;
sprintf ( * title , " %s \" %s \" " , errtitle , filename ) ;
}
if ( length_in_msec )
* length_in_msec = - 1 ;
return ;
}
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if ( title ) {
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* title = flac_format_song_title ( filename ) ;
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}
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if ( length_in_msec )
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* length_in_msec = streaminfo . data . stream_info . total_samples * 10 / ( streaminfo . data . stream_info . sample_rate / 100 ) ;
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}
/***********************************************************************
* local routines
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
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void * play_loop_ ( void * arg )
{
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unsigned written_time_last = 0 , bh_index_last_w = 0 , bh_index_last_o = BITRATE_HIST_SIZE , blocksize = 1 ;
FLAC__uint64 decode_position_last = 0 , decode_position_frame_last = 0 , decode_position_frame = 0 ;
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( void ) arg ;
while ( file_info_ . is_playing ) {
if ( ! file_info_ . eof ) {
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while ( wide_samples_in_reservoir_ < SAMPLES_PER_WRITE ) {
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unsigned s ;
s = wide_samples_in_reservoir_ ;
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if ( FLAC__file_decoder_get_state ( decoder_ ) = = FLAC__FILE_DECODER_END_OF_FILE ) {
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file_info_ . eof = true ;
break ;
}
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else if ( ! FLAC__file_decoder_process_single ( decoder_ ) ) {
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/*@@@ this should probably be a dialog */
fprintf ( stderr , " libxmms-flac: READ ERROR processing frame \n " ) ;
file_info_ . eof = true ;
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break ;
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}
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blocksize = wide_samples_in_reservoir_ - s ;
decode_position_frame_last = decode_position_frame ;
if ( ! FLAC__file_decoder_get_decode_position ( decoder_ , & decode_position_frame ) )
decode_position_frame = 0 ;
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}
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if ( wide_samples_in_reservoir_ > 0 ) {
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const unsigned channels = file_info_ . channels ;
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const unsigned bits_per_sample = file_info_ . bits_per_sample ;
const unsigned n = min ( wide_samples_in_reservoir_ , SAMPLES_PER_WRITE ) ;
const unsigned delta = n * channels ;
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int bytes ;
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unsigned i , written_time , bh_index_w ;
FLAC__uint64 decode_position ;
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if ( flac_cfg . output . replaygain . enable & & file_info_ . has_replaygain ) {
bytes = ( int ) FLAC__plugin_common__apply_gain (
sample_buffer_ ,
reservoir_ ,
n ,
channels ,
bits_per_sample ,
flac_cfg . output . resolution . replaygain . bps_out ,
file_info_ . replay_scale ,
flac_cfg . output . replaygain . hard_limit ,
flac_cfg . output . resolution . replaygain . dither ,
( NoiseShaping ) flac_cfg . output . resolution . replaygain . noise_shaping ,
& file_info_ . dither_context
) ;
}
else {
bytes = ( int ) FLAC__plugin_common__pack_pcm_signed_little_endian (
sample_buffer_ ,
reservoir_ ,
n ,
channels ,
bits_per_sample ,
flac_cfg . output . resolution . normal . dither_24_to_16 ?
min ( bits_per_sample , 16 ) :
bits_per_sample
) ;
}
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for ( i = delta ; i < wide_samples_in_reservoir_ * channels ; i + + )
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reservoir_ [ i - delta ] = reservoir_ [ i ] ;
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wide_samples_in_reservoir_ - = n ;
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flac_ip . add_vis_pcm ( flac_ip . output - > written_time ( ) , file_info_ . sample_format , channels , bytes , sample_buffer_ ) ;
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while ( flac_ip . output - > buffer_free ( ) < ( int ) bytes & & file_info_ . is_playing & & file_info_ . seek_to_in_sec = = - 1 )
xmms_usleep ( 10000 ) ;
if ( file_info_ . is_playing & & file_info_ . seek_to_in_sec = = - 1 )
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flac_ip . output - > write_audio ( sample_buffer_ , bytes ) ;
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/* compute current bitrate */
written_time = flac_ip . output - > written_time ( ) ;
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bh_index_w = written_time / BITRATE_HIST_SEGMENT_MSEC % BITRATE_HIST_SIZE ;
if ( bh_index_w ! = bh_index_last_w ) {
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bh_index_last_w = bh_index_w ;
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decode_position = decode_position_frame - ( double ) wide_samples_in_reservoir_ * ( double ) ( decode_position_frame - decode_position_frame_last ) / ( double ) blocksize ;
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bitrate_history_ [ ( bh_index_w + BITRATE_HIST_SIZE - 1 ) % BITRATE_HIST_SIZE ] =
decode_position > decode_position_last & & written_time > written_time_last ?
8000 * ( decode_position - decode_position_last ) / ( written_time - written_time_last ) :
file_info_ . sample_rate * file_info_ . channels * file_info_ . bits_per_sample ;
decode_position_last = decode_position ;
written_time_last = written_time ;
}
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}
else {
file_info_ . eof = true ;
xmms_usleep ( 10000 ) ;
}
}
else
xmms_usleep ( 10000 ) ;
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if ( file_info_ . seek_to_in_sec ! = - 1 ) {
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const double distance = ( double ) file_info_ . seek_to_in_sec * 1000.0 / ( double ) file_info_ . length_in_msec ;
unsigned target_sample = ( unsigned ) ( distance * ( double ) file_info_ . total_samples ) ;
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if ( FLAC__file_decoder_seek_absolute ( decoder_ , ( FLAC__uint64 ) target_sample ) ) {
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flac_ip . output - > flush ( file_info_ . seek_to_in_sec * 1000 ) ;
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bh_index_last_w = bh_index_last_o = flac_ip . output - > output_time ( ) / BITRATE_HIST_SEGMENT_MSEC % BITRATE_HIST_SIZE ;
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if ( ! FLAC__file_decoder_get_decode_position ( decoder_ , & decode_position_frame ) )
decode_position_frame = 0 ;
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file_info_ . seek_to_in_sec = - 1 ;
file_info_ . eof = false ;
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wide_samples_in_reservoir_ = 0 ;
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}
}
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else {
/* display the right bitrate from history */
unsigned bh_index_o = flac_ip . output - > output_time ( ) / BITRATE_HIST_SEGMENT_MSEC % BITRATE_HIST_SIZE ;
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if ( bh_index_o ! = bh_index_last_o & & bh_index_o ! = bh_index_last_w & & bh_index_o ! = ( bh_index_last_w + 1 ) % BITRATE_HIST_SIZE ) {
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bh_index_last_o = bh_index_o ;
flac_ip . set_info ( file_info_ . title , file_info_ . length_in_msec , bitrate_history_ [ bh_index_o ] , file_info_ . sample_rate , file_info_ . channels ) ;
}
}
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}
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safe_decoder_finish_ ( decoder_ ) ;
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/* are these two calls necessary? */
flac_ip . output - > buffer_free ( ) ;
flac_ip . output - > buffer_free ( ) ;
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g_free ( file_info_ . title ) ;
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pthread_exit ( NULL ) ;
return 0 ; /* to silence the compiler warning about not returning a value */
}
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FLAC__bool safe_decoder_init_ ( const char * filename , FLAC__FileDecoder * decoder )
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{
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if ( decoder = = 0 )
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return false ;
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safe_decoder_finish_ ( decoder ) ;
FLAC__file_decoder_set_md5_checking ( decoder , false ) ;
FLAC__file_decoder_set_filename ( decoder , filename ) ;
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FLAC__file_decoder_set_metadata_ignore_all ( decoder ) ;
FLAC__file_decoder_set_metadata_respond ( decoder , FLAC__METADATA_TYPE_STREAMINFO ) ;
FLAC__file_decoder_set_metadata_respond ( decoder , FLAC__METADATA_TYPE_VORBIS_COMMENT ) ;
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FLAC__file_decoder_set_write_callback ( decoder , write_callback_ ) ;
FLAC__file_decoder_set_metadata_callback ( decoder , metadata_callback_ ) ;
FLAC__file_decoder_set_error_callback ( decoder , error_callback_ ) ;
FLAC__file_decoder_set_client_data ( decoder , & file_info_ ) ;
if ( FLAC__file_decoder_init ( decoder ) ! = FLAC__FILE_DECODER_OK )
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return false ;
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if ( ! FLAC__file_decoder_process_until_end_of_metadata ( decoder ) )
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return false ;
return true ;
}
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void safe_decoder_finish_ ( FLAC__FileDecoder * decoder )
{
if ( decoder & & FLAC__file_decoder_get_state ( decoder ) ! = FLAC__FILE_DECODER_UNINITIALIZED )
FLAC__file_decoder_finish ( decoder ) ;
}
void safe_decoder_delete_ ( FLAC__FileDecoder * decoder )
{
if ( decoder ) {
safe_decoder_finish_ ( decoder ) ;
FLAC__file_decoder_delete ( decoder ) ;
}
}
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FLAC__StreamDecoderWriteStatus write_callback_ ( const FLAC__FileDecoder * decoder , const FLAC__Frame * frame , const FLAC__int32 * const buffer [ ] , void * client_data )
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{
file_info_struct * file_info = ( file_info_struct * ) client_data ;
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const unsigned channels = file_info - > channels , wide_samples = frame - > header . blocksize ;
unsigned wide_sample , offset_sample , channel ;
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( void ) decoder ;
if ( file_info - > abort_flag )
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return FLAC__STREAM_DECODER_WRITE_STATUS_ABORT ;
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for ( offset_sample = wide_samples_in_reservoir_ * channels , wide_sample = 0 ; wide_sample < wide_samples ; wide_sample + + )
for ( channel = 0 ; channel < channels ; channel + + , offset_sample + + )
reservoir_ [ offset_sample ] = buffer [ channel ] [ wide_sample ] ;
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wide_samples_in_reservoir_ + = wide_samples ;
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return FLAC__STREAM_DECODER_WRITE_STATUS_CONTINUE ;
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}
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void metadata_callback_ ( const FLAC__FileDecoder * decoder , const FLAC__StreamMetadata * metadata , void * client_data )
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{
file_info_struct * file_info = ( file_info_struct * ) client_data ;
( void ) decoder ;
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if ( metadata - > type = = FLAC__METADATA_TYPE_STREAMINFO ) {
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FLAC__ASSERT ( metadata - > data . stream_info . total_samples < 0x100000000 ) ; /* this plugin can only handle < 4 gigasamples */
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file_info - > total_samples = ( unsigned ) ( metadata - > data . stream_info . total_samples & 0xffffffff ) ;
file_info - > bits_per_sample = metadata - > data . stream_info . bits_per_sample ;
file_info - > channels = metadata - > data . stream_info . channels ;
file_info - > sample_rate = metadata - > data . stream_info . sample_rate ;
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# ifdef FLAC__DO_DITHER
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if ( file_info - > bits_per_sample = = 8 ) {
file_info - > sample_format = FMT_S8 ;
}
else if ( file_info - > bits_per_sample = = 16 | | file_info - > bits_per_sample = = 24 ) {
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file_info - > sample_format = FMT_S16_LE ;
}
else {
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/*@@@ need some error here like wa2: MessageBox(mod_.hMainWindow, "ERROR: plugin can only handle 8/16/24-bit samples\n", "ERROR: plugin can only handle 8/16/24-bit samples", 0); */
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file_info - > abort_flag = true ;
return ;
}
# else
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if ( file_info - > bits_per_sample = = 8 ) {
file_info - > sample_format = FMT_S8 ;
}
else if ( file_info - > bits_per_sample = = 16 ) {
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file_info - > sample_format = FMT_S16_LE ;
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}
else {
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/*@@@ need some error here like wa2: MessageBox(mod_.hMainWindow, "ERROR: plugin can only handle 8/16-bit samples\n", "ERROR: plugin can only handle 8/16-bit samples", 0); */
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file_info - > abort_flag = true ;
return ;
}
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# endif
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file_info - > length_in_msec = file_info - > total_samples * 10 / ( file_info - > sample_rate / 100 ) ;
}
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else if ( metadata - > type = = FLAC__METADATA_TYPE_VORBIS_COMMENT ) {
double gain , peak ;
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if ( grabbag__replaygain_load_from_vorbiscomment ( metadata , flac_cfg . output . replaygain . album_mode , & gain , & peak ) ) {
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file_info_ . has_replaygain = true ;
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file_info_ . replay_scale = grabbag__replaygain_compute_scale_factor ( peak , gain , ( double ) flac_cfg . output . replaygain . preamp , /*prevent_clipping=*/ ! flac_cfg . output . replaygain . hard_limit ) ;
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}
}
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}
void error_callback_ ( const FLAC__FileDecoder * decoder , FLAC__StreamDecoderErrorStatus status , void * client_data )
{
file_info_struct * file_info = ( file_info_struct * ) client_data ;
( void ) decoder ;
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if ( status ! = FLAC__STREAM_DECODER_ERROR_STATUS_LOST_SYNC )
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file_info - > abort_flag = true ;
}