469 lines
16 KiB
C
469 lines
16 KiB
C
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/*****************************************************************************
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* vlc_es.h: Elementary stream formats descriptions
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*****************************************************************************
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* Copyright (C) 1999-2012 VLC authors and VideoLAN
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* $Id: 8db588494350b40b0f9225df00234f44189c5072 $
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*
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* Authors: Laurent Aimar <fenrir@via.ecp.fr>
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU Lesser General Public License as published by
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* the Free Software Foundation; either version 2.1 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston MA 02110-1301, USA.
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*****************************************************************************/
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#ifndef VLC_ES_H
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#define VLC_ES_H 1
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#include <vlc_fourcc.h>
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#include <vlc_text_style.h>
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/**
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* \file
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* This file defines the elementary streams format types
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*/
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/**
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* video palette data
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* \see video_format_t
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* \see subs_format_t
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*/
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#define VIDEO_PALETTE_COLORS_MAX 256
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struct video_palette_t
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{
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int i_entries; /**< to keep the compatibility with libavcodec's palette */
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uint8_t palette[VIDEO_PALETTE_COLORS_MAX][4]; /**< 4-byte RGBA/YUVA palette */
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};
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/**
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* audio replay gain description
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*/
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#define AUDIO_REPLAY_GAIN_MAX (2)
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#define AUDIO_REPLAY_GAIN_TRACK (0)
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#define AUDIO_REPLAY_GAIN_ALBUM (1)
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typedef struct
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{
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/* true if we have the peak value */
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bool pb_peak[AUDIO_REPLAY_GAIN_MAX];
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/* peak value where 1.0 means full sample value */
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float pf_peak[AUDIO_REPLAY_GAIN_MAX];
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/* true if we have the gain value */
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bool pb_gain[AUDIO_REPLAY_GAIN_MAX];
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/* gain value in dB */
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float pf_gain[AUDIO_REPLAY_GAIN_MAX];
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} audio_replay_gain_t;
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/**
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* audio format description
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*/
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struct audio_format_t
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{
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vlc_fourcc_t i_format; /**< audio format fourcc */
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unsigned int i_rate; /**< audio sample-rate */
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/* Describes the channels configuration of the samples (ie. number of
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* channels which are available in the buffer, and positions). */
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uint16_t i_physical_channels;
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/* Describes from which original channels, before downmixing, the
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* buffer is derived. */
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uint32_t i_original_channels;
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/* Optional - for A/52, SPDIF and DTS types : */
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/* Bytes used by one compressed frame, depends on bitrate. */
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unsigned int i_bytes_per_frame;
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/* Number of sampleframes contained in one compressed frame. */
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unsigned int i_frame_length;
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/* Please note that it may be completely arbitrary - buffers are not
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* obliged to contain a integral number of so-called "frames". It's
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* just here for the division :
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* buffer_size = i_nb_samples * i_bytes_per_frame / i_frame_length
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*/
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/* FIXME ? (used by the codecs) */
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unsigned i_bitspersample;
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unsigned i_blockalign;
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uint8_t i_channels; /* must be <=32 */
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};
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/* Values available for audio channels */
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#define AOUT_CHAN_CENTER 0x1
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#define AOUT_CHAN_LEFT 0x2
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#define AOUT_CHAN_RIGHT 0x4
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#define AOUT_CHAN_REARCENTER 0x10
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#define AOUT_CHAN_REARLEFT 0x20
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#define AOUT_CHAN_REARRIGHT 0x40
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#define AOUT_CHAN_MIDDLELEFT 0x100
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#define AOUT_CHAN_MIDDLERIGHT 0x200
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#define AOUT_CHAN_LFE 0x1000
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#define AOUT_CHANS_FRONT (AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT)
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#define AOUT_CHANS_MIDDLE (AOUT_CHAN_MIDDLELEFT | AOUT_CHAN_MIDDLERIGHT)
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#define AOUT_CHANS_REAR (AOUT_CHAN_REARLEFT | AOUT_CHAN_REARRIGHT)
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#define AOUT_CHANS_CENTER (AOUT_CHAN_CENTER | AOUT_CHAN_REARCENTER)
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#define AOUT_CHANS_STEREO AOUT_CHANS_2_0
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#define AOUT_CHANS_2_0 (AOUT_CHANS_FRONT)
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#define AOUT_CHANS_2_1 (AOUT_CHANS_FRONT | AOUT_CHAN_LFE)
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#define AOUT_CHANS_3_0 (AOUT_CHANS_FRONT | AOUT_CHAN_CENTER)
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#define AOUT_CHANS_3_1 (AOUT_CHANS_3_0 | AOUT_CHAN_LFE)
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#define AOUT_CHANS_4_0 (AOUT_CHANS_FRONT | AOUT_CHANS_REAR)
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#define AOUT_CHANS_4_1 (AOUT_CHANS_4_0 | AOUT_CHAN_LFE)
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#define AOUT_CHANS_5_0 (AOUT_CHANS_4_0 | AOUT_CHAN_CENTER)
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#define AOUT_CHANS_5_1 (AOUT_CHANS_5_0 | AOUT_CHAN_LFE)
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#define AOUT_CHANS_6_0 (AOUT_CHANS_4_0 | AOUT_CHANS_MIDDLE)
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#define AOUT_CHANS_7_0 (AOUT_CHANS_6_0 | AOUT_CHAN_CENTER)
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#define AOUT_CHANS_7_1 (AOUT_CHANS_5_1 | AOUT_CHANS_MIDDLE)
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#define AOUT_CHANS_8_1 (AOUT_CHANS_7_1 | AOUT_CHAN_REARCENTER)
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#define AOUT_CHANS_4_0_MIDDLE (AOUT_CHANS_FRONT | AOUT_CHANS_MIDDLE)
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#define AOUT_CHANS_4_CENTER_REAR (AOUT_CHANS_FRONT | AOUT_CHANS_CENTER)
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#define AOUT_CHANS_5_0_MIDDLE (AOUT_CHANS_4_0_MIDDLE | AOUT_CHAN_CENTER)
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#define AOUT_CHANS_6_1_MIDDLE (AOUT_CHANS_5_0_MIDDLE | AOUT_CHAN_REARCENTER | AOUT_CHAN_LFE)
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/* Values available for original channels only */
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#define AOUT_CHAN_DOLBYSTEREO 0x10000
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#define AOUT_CHAN_DUALMONO 0x20000
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#define AOUT_CHAN_REVERSESTEREO 0x40000
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#define AOUT_CHAN_PHYSMASK 0xFFFF
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#define AOUT_CHAN_MAX 9
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/**
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* Picture orientation.
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*/
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typedef enum video_orientation_t
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{
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ORIENT_TOP_LEFT = 0, /**< Top line represents top, left column left. */
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ORIENT_TOP_RIGHT, /**< Flipped horizontally */
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ORIENT_BOTTOM_LEFT, /**< Flipped vertically */
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ORIENT_BOTTOM_RIGHT, /**< Rotated 180 degrees */
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ORIENT_LEFT_TOP, /**< Transposed */
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ORIENT_LEFT_BOTTOM, /**< Rotated 90 degrees clockwise */
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ORIENT_RIGHT_TOP, /**< Rotated 90 degrees anti-clockwise */
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ORIENT_RIGHT_BOTTOM, /**< Anti-transposed */
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ORIENT_NORMAL = ORIENT_TOP_LEFT,
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ORIENT_TRANSPOSED = ORIENT_LEFT_TOP,
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ORIENT_ANTI_TRANSPOSED = ORIENT_RIGHT_BOTTOM,
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ORIENT_HFLIPPED = ORIENT_TOP_RIGHT,
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ORIENT_VFLIPPED = ORIENT_BOTTOM_LEFT,
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ORIENT_ROTATED_180 = ORIENT_BOTTOM_RIGHT,
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ORIENT_ROTATED_270 = ORIENT_LEFT_BOTTOM,
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ORIENT_ROTATED_90 = ORIENT_RIGHT_TOP,
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} video_orientation_t;
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/** Convert EXIF orientation to enum video_orientation_t */
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#define ORIENT_FROM_EXIF(exif) ((0x01324675U >> (4 * ((exif) - 1))) & 7)
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/** Convert enum video_orientation_t to EXIF */
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#define ORIENT_TO_EXIF(orient) ((0x12435867U >> (4 * (orient))) & 15)
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/** If the orientation is natural or mirrored */
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#define ORIENT_IS_MIRROR(orient) parity(orient)
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/** If the orientation swaps dimensions */
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#define ORIENT_IS_SWAP(orient) (((orient) & 4) != 0)
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/** Applies horizontal flip to an orientation */
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#define ORIENT_HFLIP(orient) ((orient) ^ 1)
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/** Applies vertical flip to an orientation */
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#define ORIENT_VFLIP(orient) ((orient) ^ 2)
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/** Applies horizontal flip to an orientation */
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#define ORIENT_ROTATE_180(orient) ((orient) ^ 3)
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typedef enum video_transform_t
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{
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TRANSFORM_IDENTITY = ORIENT_NORMAL,
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TRANSFORM_HFLIP = ORIENT_HFLIPPED,
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TRANSFORM_VFLIP = ORIENT_VFLIPPED,
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TRANSFORM_R180 = ORIENT_ROTATED_180,
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TRANSFORM_R270 = ORIENT_ROTATED_270,
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TRANSFORM_R90 = ORIENT_ROTATED_90,
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TRANSFORM_TRANSPOSE = ORIENT_TRANSPOSED,
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TRANSFORM_ANTI_TRANSPOSE = ORIENT_ANTI_TRANSPOSED
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} video_transform_t;
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/**
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* video format description
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*/
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struct video_format_t
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{
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vlc_fourcc_t i_chroma; /**< picture chroma */
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unsigned int i_width; /**< picture width */
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unsigned int i_height; /**< picture height */
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unsigned int i_x_offset; /**< start offset of visible area */
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unsigned int i_y_offset; /**< start offset of visible area */
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unsigned int i_visible_width; /**< width of visible area */
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unsigned int i_visible_height; /**< height of visible area */
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unsigned int i_bits_per_pixel; /**< number of bits per pixel */
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unsigned int i_sar_num; /**< sample/pixel aspect ratio */
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unsigned int i_sar_den;
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unsigned int i_frame_rate; /**< frame rate numerator */
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unsigned int i_frame_rate_base; /**< frame rate denominator */
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uint32_t i_rmask, i_gmask, i_bmask; /**< color masks for RGB chroma */
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int i_rrshift, i_lrshift;
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int i_rgshift, i_lgshift;
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int i_rbshift, i_lbshift;
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video_palette_t *p_palette; /**< video palette from demuxer */
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video_orientation_t orientation; /**< picture orientation */
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};
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/**
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* Initialize a video_format_t structure with chroma 'i_chroma'
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* \param p_src pointer to video_format_t structure
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* \param i_chroma chroma value to use
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*/
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static inline void video_format_Init( video_format_t *p_src, vlc_fourcc_t i_chroma )
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{
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memset( p_src, 0, sizeof( video_format_t ) );
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p_src->i_chroma = i_chroma;
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p_src->i_sar_num = p_src->i_sar_den = 1;
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p_src->p_palette = NULL;
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}
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/**
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* Copy video_format_t including the palette
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* \param p_dst video_format_t to copy to
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* \param p_src video_format_t to copy from
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*/
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static inline int video_format_Copy( video_format_t *p_dst, const video_format_t *p_src )
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{
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memcpy( p_dst, p_src, sizeof( *p_dst ) );
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if( p_src->p_palette )
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{
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p_dst->p_palette = (video_palette_t *) malloc( sizeof( video_palette_t ) );
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if( !p_dst->p_palette )
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return VLC_ENOMEM;
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memcpy( p_dst->p_palette, p_src->p_palette, sizeof( *p_dst->p_palette ) );
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}
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return VLC_SUCCESS;
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}
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/**
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* Cleanup and free palette of this video_format_t
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* \param p_src video_format_t structure to clean
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*/
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static inline void video_format_Clean( video_format_t *p_src )
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{
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free( p_src->p_palette );
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memset( p_src, 0, sizeof( video_format_t ) );
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p_src->p_palette = NULL;
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}
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/**
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* It will fill up a video_format_t using the given arguments.
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* Note that the video_format_t must already be initialized.
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*/
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VLC_API void video_format_Setup( video_format_t *, vlc_fourcc_t i_chroma,
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int i_width, int i_height, int i_visible_width, int i_visible_height,
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int i_sar_num, int i_sar_den );
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/**
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* It will copy the crop properties from a video_format_t to another.
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*/
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VLC_API void video_format_CopyCrop( video_format_t *, const video_format_t * );
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/**
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* It will compute the crop/ar properties when scaling.
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*/
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VLC_API void video_format_ScaleCropAr( video_format_t *, const video_format_t * );
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/**
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* This function "normalizes" the formats orientation, by switching the a/r according to the orientation,
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* producing a format whose orientation is ORIENT_NORMAL. It makes a shallow copy (pallette is not alloc'ed).
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*/
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VLC_API void video_format_ApplyRotation(video_format_t * /*restrict*/ out,
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const video_format_t *in);
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/**
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* This function applies the transform operation to fmt.
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*/
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VLC_API void video_format_TransformBy(video_format_t *fmt, video_transform_t transform);
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/**
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* This function applies the transforms necessary to fmt so that the resulting fmt
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* has the dst_orientation.
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*/
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VLC_API void video_format_TransformTo(video_format_t *fmt, video_orientation_t dst_orientation);
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/**
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* Returns the operation required to transform src into dst.
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*/
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VLC_API video_transform_t video_format_GetTransform(video_orientation_t src, video_orientation_t dst);
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/**
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* This function will check if the first video format is similar
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* to the second one.
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*/
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VLC_API bool video_format_IsSimilar( const video_format_t *, const video_format_t * );
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/**
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* It prints details about the given video_format_t
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*/
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VLC_API void video_format_Print( vlc_object_t *, const char *, const video_format_t * );
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static inline video_transform_t transform_Inverse( video_transform_t transform )
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{
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switch ( transform ) {
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case TRANSFORM_R90:
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return TRANSFORM_R270;
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case TRANSFORM_R270:
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return TRANSFORM_R90;
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default:
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return transform;
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}
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}
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/**
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* subtitles format description
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*/
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struct subs_format_t
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{
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/* the character encoding of the text of the subtitle.
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* all gettext recognized shorts can be used */
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char *psz_encoding;
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int i_x_origin; /**< x coordinate of the subtitle. 0 = left */
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int i_y_origin; /**< y coordinate of the subtitle. 0 = top */
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struct
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{
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/* */
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uint32_t palette[16+1];
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/* the width of the original movie the spu was extracted from */
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int i_original_frame_width;
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/* the height of the original movie the spu was extracted from */
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int i_original_frame_height;
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} spu;
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struct
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{
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int i_id;
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} dvb;
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struct
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{
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int i_magazine;
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int i_page;
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} teletext;
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text_style_t *p_style; /* Default styles to use */
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};
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/**
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* ES language definition
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*/
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typedef struct extra_languages_t
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{
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char *psz_language;
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char *psz_description;
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} extra_languages_t;
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/**
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* ES format definition
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*/
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#define ES_PRIORITY_NOT_SELECTABLE -2
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#define ES_PRIORITY_NOT_DEFAULTABLE -1
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#define ES_PRIORITY_SELECTABLE_MIN 0
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#define ES_PRIORITY_MIN ES_PRIORITY_NOT_SELECTABLE
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struct es_format_t
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{
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int i_cat; /**< ES category @see es_format_category_e */
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vlc_fourcc_t i_codec; /**< FOURCC value as used in vlc */
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vlc_fourcc_t i_original_fourcc; /**< original FOURCC from the container */
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int i_id; /**< es identifier, where means
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||
|
-1: let the core mark the right id
|
||
|
>=0: valid id */
|
||
|
int i_group; /**< group identifier, where means:
|
||
|
-1 : standalone
|
||
|
>= 0 then a "group" (program) is created
|
||
|
for each value */
|
||
|
int i_priority; /**< priority, where means:
|
||
|
-2 : mean not selectable by the users
|
||
|
-1 : mean not selected by default even
|
||
|
when no other stream
|
||
|
>=0: priority */
|
||
|
|
||
|
char *psz_language; /**< human readible language name */
|
||
|
char *psz_description; /**< human readible description of language */
|
||
|
int i_extra_languages; /**< length in bytes of extra language data pointer */
|
||
|
extra_languages_t *p_extra_languages; /**< extra language data needed by some decoders */
|
||
|
|
||
|
audio_format_t audio; /**< description of audio format */
|
||
|
audio_replay_gain_t audio_replay_gain; /*< audio replay gain information */
|
||
|
video_format_t video; /**< description of video format */
|
||
|
subs_format_t subs; /**< description of subtitle format */
|
||
|
|
||
|
unsigned int i_bitrate; /**< bitrate of this ES */
|
||
|
int i_profile; /**< codec specific information (like real audio flavor, mpeg audio layer, h264 profile ...) */
|
||
|
int i_level; /**< codec specific information: indicates maximum restrictions on the stream (resolution, bitrate, codec features ...) */
|
||
|
|
||
|
bool b_packetized; /**< whether the data is packetized (ie. not truncated) */
|
||
|
int i_extra; /**< length in bytes of extra data pointer */
|
||
|
void *p_extra; /**< extra data needed by some decoders or muxers */
|
||
|
|
||
|
};
|
||
|
|
||
|
/** ES Categories */
|
||
|
enum es_format_category_e
|
||
|
{
|
||
|
UNKNOWN_ES = 0x00,
|
||
|
VIDEO_ES,
|
||
|
AUDIO_ES,
|
||
|
SPU_ES,
|
||
|
NAV_ES,
|
||
|
};
|
||
|
#define ES_CATEGORY_COUNT (NAV_ES + 1)
|
||
|
|
||
|
/**
|
||
|
* This function will fill all RGB shift from RGB masks.
|
||
|
*/
|
||
|
VLC_API void video_format_FixRgb( video_format_t * );
|
||
|
|
||
|
/**
|
||
|
* This function will initialize a es_format_t structure.
|
||
|
*/
|
||
|
VLC_API void es_format_Init( es_format_t *, int i_cat, vlc_fourcc_t i_codec );
|
||
|
|
||
|
/**
|
||
|
* This function will initialize a es_format_t structure from a video_format_t.
|
||
|
*/
|
||
|
VLC_API void es_format_InitFromVideo( es_format_t *, const video_format_t * );
|
||
|
|
||
|
/**
|
||
|
* This functions will copy a es_format_t.
|
||
|
*/
|
||
|
VLC_API int es_format_Copy( es_format_t *p_dst, const es_format_t *p_src );
|
||
|
|
||
|
/**
|
||
|
* This function will clean up a es_format_t and release all associated
|
||
|
* resources.
|
||
|
* You can call it multiple times on the same structure.
|
||
|
*/
|
||
|
VLC_API void es_format_Clean( es_format_t *fmt );
|
||
|
|
||
|
/**
|
||
|
* This function will check if the first ES format is similar
|
||
|
* to the second one.
|
||
|
*
|
||
|
* All descriptive fields are ignored.
|
||
|
*/
|
||
|
VLC_API bool es_format_IsSimilar( const es_format_t *, const es_format_t * );
|
||
|
|
||
|
#endif
|