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      1 /*
      2  * audio.h
      3  *
      4  * Copyright (C) 2000 Ralph  Metzler <ralph (at) convergence.de>
      5  *                  & Marcus Metzler <marcus (at) convergence.de>
      6  *                    for convergence integrated media GmbH
      7  *
      8  * This program is free software; you can redistribute it and/or
      9  * modify it under the terms of the GNU General Lesser Public License
     10  * as published by the Free Software Foundation; either version 2.1
     11  * of the License, or (at your option) any later version.
     12  *
     13  * This program is distributed in the hope that it will be useful,
     14  * but WITHOUT ANY WARRANTY; without even the implied warranty of
     15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     16  * GNU General Public License for more details.
     17  *
     18  * You should have received a copy of the GNU Lesser General Public License
     19  * along with this program; if not, write to the Free Software
     20  * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.
     21  *
     22  */
     23 
     24 #ifndef _DVBAUDIO_H_
     25 #define _DVBAUDIO_H_
     26 
     27 #include <linux/types.h>
     28 
     29 typedef enum {
     30 	AUDIO_SOURCE_DEMUX, /* Select the demux as the main source */
     31 	AUDIO_SOURCE_MEMORY /* Select internal memory as the main source */
     32 } audio_stream_source_t;
     33 
     34 
     35 typedef enum {
     36 	AUDIO_STOPPED,      /* Device is stopped */
     37 	AUDIO_PLAYING,      /* Device is currently playing */
     38 	AUDIO_PAUSED        /* Device is paused */
     39 } audio_play_state_t;
     40 
     41 
     42 typedef enum {
     43 	AUDIO_STEREO,
     44 	AUDIO_MONO_LEFT,
     45 	AUDIO_MONO_RIGHT,
     46 	AUDIO_MONO,
     47 	AUDIO_STEREO_SWAPPED
     48 } audio_channel_select_t;
     49 
     50 
     51 typedef struct audio_mixer {
     52 	unsigned int volume_left;
     53 	unsigned int volume_right;
     54   // what else do we need? bass, pass-through, ...
     55 } audio_mixer_t;
     56 
     57 
     58 typedef struct audio_status {
     59 	int                    AV_sync_state;  /* sync audio and video? */
     60 	int                    mute_state;     /* audio is muted */
     61 	audio_play_state_t     play_state;     /* current playback state */
     62 	audio_stream_source_t  stream_source;  /* current stream source */
     63 	audio_channel_select_t channel_select; /* currently selected channel */
     64 	int                    bypass_mode;    /* pass on audio data to */
     65 	audio_mixer_t	       mixer_state;    /* current mixer state */
     66 } audio_status_t;                              /* separate decoder hardware */
     67 
     68 
     69 typedef
     70 struct audio_karaoke {  /* if Vocal1 or Vocal2 are non-zero, they get mixed  */
     71 	int vocal1;    /* into left and right t at 70% each */
     72 	int vocal2;    /* if both, Vocal1 and Vocal2 are non-zero, Vocal1 gets*/
     73 	int melody;    /* mixed into the left channel and */
     74 		       /* Vocal2 into the right channel at 100% each. */
     75 		       /* if Melody is non-zero, the melody channel gets mixed*/
     76 } audio_karaoke_t;     /* into left and right  */
     77 
     78 
     79 typedef __u16 audio_attributes_t;
     80 /*   bits: descr. */
     81 /*   15-13 audio coding mode (0=ac3, 2=mpeg1, 3=mpeg2ext, 4=LPCM, 6=DTS, */
     82 /*   12    multichannel extension */
     83 /*   11-10 audio type (0=not spec, 1=language included) */
     84 /*    9- 8 audio application mode (0=not spec, 1=karaoke, 2=surround) */
     85 /*    7- 6 Quantization / DRC (mpeg audio: 1=DRC exists)(lpcm: 0=16bit,  */
     86 /*    5- 4 Sample frequency fs (0=48kHz, 1=96kHz) */
     87 /*    2- 0 number of audio channels (n+1 channels) */
     88 
     89 
     90 /* for GET_CAPABILITIES and SET_FORMAT, the latter should only set one bit */
     91 #define AUDIO_CAP_DTS    1
     92 #define AUDIO_CAP_LPCM   2
     93 #define AUDIO_CAP_MP1    4
     94 #define AUDIO_CAP_MP2    8
     95 #define AUDIO_CAP_MP3   16
     96 #define AUDIO_CAP_AAC   32
     97 #define AUDIO_CAP_OGG   64
     98 #define AUDIO_CAP_SDDS 128
     99 #define AUDIO_CAP_AC3  256
    100 
    101 #define AUDIO_STOP                 _IO('o', 1)
    102 #define AUDIO_PLAY                 _IO('o', 2)
    103 #define AUDIO_PAUSE                _IO('o', 3)
    104 #define AUDIO_CONTINUE             _IO('o', 4)
    105 #define AUDIO_SELECT_SOURCE        _IO('o', 5)
    106 #define AUDIO_SET_MUTE             _IO('o', 6)
    107 #define AUDIO_SET_AV_SYNC          _IO('o', 7)
    108 #define AUDIO_SET_BYPASS_MODE      _IO('o', 8)
    109 #define AUDIO_CHANNEL_SELECT       _IO('o', 9)
    110 #define AUDIO_GET_STATUS           _IOR('o', 10, audio_status_t)
    111 
    112 #define AUDIO_GET_CAPABILITIES     _IOR('o', 11, unsigned int)
    113 #define AUDIO_CLEAR_BUFFER         _IO('o',  12)
    114 #define AUDIO_SET_ID               _IO('o', 13)
    115 #define AUDIO_SET_MIXER            _IOW('o', 14, audio_mixer_t)
    116 #define AUDIO_SET_STREAMTYPE       _IO('o', 15)
    117 #define AUDIO_SET_EXT_ID           _IO('o', 16)
    118 #define AUDIO_SET_ATTRIBUTES       _IOW('o', 17, audio_attributes_t)
    119 #define AUDIO_SET_KARAOKE          _IOW('o', 18, audio_karaoke_t)
    120 
    121 /**
    122  * AUDIO_GET_PTS
    123  *
    124  * Read the 33 bit presentation time stamp as defined
    125  * in ITU T-REC-H.222.0 / ISO/IEC 13818-1.
    126  *
    127  * The PTS should belong to the currently played
    128  * frame if possible, but may also be a value close to it
    129  * like the PTS of the last decoded frame or the last PTS
    130  * extracted by the PES parser.
    131  */
    132 #define AUDIO_GET_PTS              _IOR('o', 19, __u64)
    133 #define AUDIO_BILINGUAL_CHANNEL_SELECT _IO('o', 20)
    134 
    135 #endif /* _DVBAUDIO_H_ */
    136