Files
ffmpeg/libavcodec/cabac.h
T

277 lines
6.3 KiB
C
Raw Normal View History

2003-05-28 18:44:52 +00:00
/*
* H.26L/H.264/AVC/JVT/14496-10/... encoder/decoder
* Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
*
* This file is part of Libav.
*
* Libav is free software; you can redistribute it and/or
2003-05-28 18:44:52 +00:00
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
2003-05-28 18:44:52 +00:00
*
* Libav is distributed in the hope that it will be useful,
2003-05-28 18:44:52 +00:00
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with Libav; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
2003-05-28 18:44:52 +00:00
*/
2005-12-17 18:14:38 +00:00
2003-05-28 18:44:52 +00:00
/**
* @file
2003-05-28 18:44:52 +00:00
* Context Adaptive Binary Arithmetic Coder.
*/
#ifndef AVCODEC_CABAC_H
#define AVCODEC_CABAC_H
2007-05-10 22:26:44 +00:00
#include <stddef.h>
#include "put_bits.h"
2003-05-28 18:44:52 +00:00
//#undef NDEBUG
2003-05-28 18:44:52 +00:00
#include <assert.h>
#define CABAC_BITS 16
2004-10-26 03:12:21 +00:00
#define CABAC_MASK ((1<<CABAC_BITS)-1)
2003-05-28 18:44:52 +00:00
typedef struct CABACContext{
int low;
int range;
int outstanding_count;
#ifdef STRICT_LIMITS
int symCount;
#endif
const uint8_t *bytestream_start;
const uint8_t *bytestream;
2004-07-08 00:53:21 +00:00
const uint8_t *bytestream_end;
2003-05-28 18:44:52 +00:00
PutBitContext pb;
}CABACContext;
extern uint8_t ff_h264_mlps_state[4*64];
2006-10-18 09:37:25 +00:00
extern uint8_t ff_h264_lps_range[4*2*64]; ///< rangeTabLPS
extern uint8_t ff_h264_mps_state[2*64]; ///< transIdxMPS
extern uint8_t ff_h264_lps_state[2*64]; ///< transIdxLPS
extern const uint8_t ff_h264_norm_shift[512];
2004-10-26 03:12:21 +00:00
#if ARCH_X86
# include "x86/cabac.h"
#endif
2003-05-28 18:44:52 +00:00
void ff_init_cabac_encoder(CABACContext *c, uint8_t *buf, int buf_size);
void ff_init_cabac_decoder(CABACContext *c, const uint8_t *buf, int buf_size);
void ff_init_cabac_states(CABACContext *c);
2003-05-28 18:44:52 +00:00
static inline void put_cabac_bit(CABACContext *c, int b){
2005-12-17 18:14:38 +00:00
put_bits(&c->pb, 1, b);
for(;c->outstanding_count; c->outstanding_count--){
2003-05-28 18:44:52 +00:00
put_bits(&c->pb, 1, 1-b);
}
}
static inline void renorm_cabac_encoder(CABACContext *c){
while(c->range < 0x100){
//FIXME optimize
if(c->low<0x100){
put_cabac_bit(c, 0);
}else if(c->low<0x200){
c->outstanding_count++;
c->low -= 0x100;
}else{
put_cabac_bit(c, 1);
c->low -= 0x200;
}
2005-12-17 18:14:38 +00:00
2003-05-28 18:44:52 +00:00
c->range+= c->range;
c->low += c->low;
}
}
2004-10-26 03:12:21 +00:00
static void refill(CABACContext *c){
#if CABAC_BITS == 16
2006-10-07 12:41:55 +00:00
c->low+= (c->bytestream[0]<<9) + (c->bytestream[1]<<1);
2004-10-26 03:12:21 +00:00
#else
c->low+= c->bytestream[0]<<1;
#endif
c->low -= CABAC_MASK;
c->bytestream+= CABAC_BITS/8;
}
2003-05-28 18:44:52 +00:00
static inline void renorm_cabac_decoder(CABACContext *c){
while(c->range < 0x100){
2003-05-28 18:44:52 +00:00
c->range+= c->range;
c->low+= c->low;
2004-10-26 03:12:21 +00:00
if(!(c->low & CABAC_MASK))
refill(c);
2003-05-28 18:44:52 +00:00
}
}
2004-10-26 03:12:21 +00:00
static inline void renorm_cabac_decoder_once(CABACContext *c){
int shift= (uint32_t)(c->range - 0x100)>>31;
2006-08-27 09:19:02 +00:00
c->range<<= shift;
c->low <<= shift;
2004-10-26 03:12:21 +00:00
if(!(c->low & CABAC_MASK))
refill(c);
}
#ifndef get_cabac_inline
static void refill2(CABACContext *c){
int i, x;
x= c->low ^ (c->low-1);
i= 7 - ff_h264_norm_shift[x>>(CABAC_BITS-1)];
x= -CABAC_MASK;
#if CABAC_BITS == 16
x+= (c->bytestream[0]<<9) + (c->bytestream[1]<<1);
#else
x+= c->bytestream[0]<<1;
#endif
c->low += x<<i;
c->bytestream+= CABAC_BITS/8;
}
static av_always_inline int get_cabac_inline(CABACContext *c, uint8_t * const state){
2006-08-27 09:19:02 +00:00
int s = *state;
2006-10-18 09:37:25 +00:00
int RangeLPS= ff_h264_lps_range[2*(c->range&0xC0) + s];
int bit, lps_mask;
2005-12-17 18:14:38 +00:00
2003-05-28 18:44:52 +00:00
c->range -= RangeLPS;
lps_mask= ((c->range<<(CABAC_BITS+1)) - c->low)>>31;
2005-12-17 18:14:38 +00:00
c->low -= (c->range<<(CABAC_BITS+1)) & lps_mask;
2004-10-26 03:12:21 +00:00
c->range += (RangeLPS - c->range) & lps_mask;
2005-12-17 18:14:38 +00:00
2006-10-09 20:44:11 +00:00
s^=lps_mask;
*state= (ff_h264_mlps_state+128)[s];
2006-10-09 20:44:11 +00:00
bit= s&1;
2005-12-17 18:14:38 +00:00
lps_mask= ff_h264_norm_shift[c->range];
2004-10-26 03:12:21 +00:00
c->range<<= lps_mask;
c->low <<= lps_mask;
if(!(c->low & CABAC_MASK))
refill2(c);
2005-12-17 18:14:38 +00:00
return bit;
2003-05-28 18:44:52 +00:00
}
#endif
2003-05-28 18:44:52 +00:00
static int av_noinline av_unused get_cabac_noinline(CABACContext *c, uint8_t * const state){
return get_cabac_inline(c,state);
}
static int av_unused get_cabac(CABACContext *c, uint8_t * const state){
return get_cabac_inline(c,state);
}
static int av_unused get_cabac_bypass(CABACContext *c){
int range;
2003-05-28 18:44:52 +00:00
c->low += c->low;
2004-10-26 03:12:21 +00:00
if(!(c->low & CABAC_MASK))
refill(c);
2005-12-17 18:14:38 +00:00
range= c->range<<(CABAC_BITS+1);
if(c->low < range){
2003-05-28 18:44:52 +00:00
return 0;
}else{
c->low -= range;
2003-05-28 18:44:52 +00:00
return 1;
}
}
#ifndef get_cabac_bypass_sign
static av_always_inline int get_cabac_bypass_sign(CABACContext *c, int val){
int range, mask;
c->low += c->low;
if(!(c->low & CABAC_MASK))
refill(c);
range= c->range<<(CABAC_BITS+1);
c->low -= range;
mask= c->low >> 31;
range &= mask;
c->low += range;
return (val^mask)-mask;
}
#endif
/**
*
* @return the number of bytes read or 0 if no end
*/
static int av_unused get_cabac_terminate(CABACContext *c){
c->range -= 2;
if(c->low < c->range<<(CABAC_BITS+1)){
2004-10-26 03:12:21 +00:00
renorm_cabac_decoder_once(c);
2003-05-28 18:44:52 +00:00
return 0;
}else{
return c->bytestream - c->bytestream_start;
2005-12-17 18:14:38 +00:00
}
2003-05-28 18:44:52 +00:00
}
#if 0
2003-05-30 01:05:48 +00:00
/**
2007-09-16 16:23:34 +00:00
* Get (truncated) unary binarization.
2003-05-30 01:05:48 +00:00
*/
static int get_cabac_u(CABACContext *c, uint8_t * state, int max, int max_index, int truncated){
2003-05-30 01:05:48 +00:00
int i;
2005-12-17 18:14:38 +00:00
for(i=0; i<max; i++){
2003-05-30 01:05:48 +00:00
if(get_cabac(c, state)==0)
return i;
2005-12-17 18:14:38 +00:00
2003-05-30 01:05:48 +00:00
if(i< max_index) state++;
}
return truncated ? max : -1;
}
/**
* get unary exp golomb k-th order binarization.
*/
static int get_cabac_ueg(CABACContext *c, uint8_t * state, int max, int is_signed, int k, int max_index){
2003-05-30 01:05:48 +00:00
int i, v;
int m= 1<<k;
2005-12-17 18:14:38 +00:00
if(get_cabac(c, state)==0)
2003-05-30 01:05:48 +00:00
return 0;
2005-12-17 18:14:38 +00:00
2003-05-30 01:05:48 +00:00
if(0 < max_index) state++;
2005-12-17 18:14:38 +00:00
for(i=1; i<max; i++){
2003-05-30 01:05:48 +00:00
if(get_cabac(c, state)==0){
if(is_signed && get_cabac_bypass(c)){
return -i;
}else
return i;
}
if(i < max_index) state++;
}
2005-12-17 18:14:38 +00:00
2003-05-30 01:05:48 +00:00
while(get_cabac_bypass(c)){
i+= m;
m+= m;
}
2005-12-17 18:14:38 +00:00
2003-05-30 01:05:48 +00:00
v=0;
while(m>>=1){
v+= v + get_cabac_bypass(c);
}
i += v;
if(is_signed && get_cabac_bypass(c)){
return -i;
}else
return i;
}
#endif /* 0 */
2007-05-10 22:26:44 +00:00
#endif /* AVCODEC_CABAC_H */