76feb965d3
vp8_mode_contexts[] is an entropy table used to code inter mode choices. It was a fixed constant table. This commit made the entropy context adaptive. Tests on derf set showed very good consistent gains on all metrics: avg psnr .47%, overall psnr .46% and ssim .40%. http://www.corp.google.com/~yaowu/no_crawl/newModeContext.html Change-Id: Ia62b14485c948e2b74586118619c5eb2068b43b2
184 lines
5.0 KiB
C
184 lines
5.0 KiB
C
/*
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* Copyright (c) 2010 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#ifndef __INC_FINDNEARMV_H
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#define __INC_FINDNEARMV_H
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#include "mv.h"
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#include "blockd.h"
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#include "modecont.h"
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#include "treecoder.h"
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#include "onyxc_int.h"
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static void mv_bias(int refmb_ref_frame_sign_bias, int refframe, int_mv *mvp, const int *ref_frame_sign_bias)
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{
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MV xmv;
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xmv = mvp->as_mv;
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if (refmb_ref_frame_sign_bias != ref_frame_sign_bias[refframe])
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{
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xmv.row *= -1;
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xmv.col *= -1;
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}
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mvp->as_mv = xmv;
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}
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#define LEFT_TOP_MARGIN (16 << 3)
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#define RIGHT_BOTTOM_MARGIN (16 << 3)
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static void vp8_clamp_mv2(int_mv *mv, const MACROBLOCKD *xd)
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{
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if (mv->as_mv.col < (xd->mb_to_left_edge - LEFT_TOP_MARGIN))
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mv->as_mv.col = xd->mb_to_left_edge - LEFT_TOP_MARGIN;
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else if (mv->as_mv.col > xd->mb_to_right_edge + RIGHT_BOTTOM_MARGIN)
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mv->as_mv.col = xd->mb_to_right_edge + RIGHT_BOTTOM_MARGIN;
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if (mv->as_mv.row < (xd->mb_to_top_edge - LEFT_TOP_MARGIN))
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mv->as_mv.row = xd->mb_to_top_edge - LEFT_TOP_MARGIN;
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else if (mv->as_mv.row > xd->mb_to_bottom_edge + RIGHT_BOTTOM_MARGIN)
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mv->as_mv.row = xd->mb_to_bottom_edge + RIGHT_BOTTOM_MARGIN;
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}
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static void vp8_clamp_mv(int_mv *mv, int mb_to_left_edge, int mb_to_right_edge,
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int mb_to_top_edge, int mb_to_bottom_edge)
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{
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mv->as_mv.col = (mv->as_mv.col < mb_to_left_edge) ?
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mb_to_left_edge : mv->as_mv.col;
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mv->as_mv.col = (mv->as_mv.col > mb_to_right_edge) ?
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mb_to_right_edge : mv->as_mv.col;
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mv->as_mv.row = (mv->as_mv.row < mb_to_top_edge) ?
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mb_to_top_edge : mv->as_mv.row;
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mv->as_mv.row = (mv->as_mv.row > mb_to_bottom_edge) ?
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mb_to_bottom_edge : mv->as_mv.row;
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}
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static unsigned int vp8_check_mv_bounds(int_mv *mv, int mb_to_left_edge,
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int mb_to_right_edge, int mb_to_top_edge,
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int mb_to_bottom_edge)
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{
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unsigned int need_to_clamp;
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need_to_clamp = (mv->as_mv.col < mb_to_left_edge) ? 1 : 0;
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need_to_clamp |= (mv->as_mv.col > mb_to_right_edge) ? 1 : 0;
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need_to_clamp |= (mv->as_mv.row < mb_to_top_edge) ? 1 : 0;
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need_to_clamp |= (mv->as_mv.row > mb_to_bottom_edge) ? 1 : 0;
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return need_to_clamp;
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}
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void vp8_find_near_mvs
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(
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MACROBLOCKD *xd,
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const MODE_INFO *here,
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#if CONFIG_NEWNEAR
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const MODE_INFO *lfhere,
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#endif
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int_mv *nearest, int_mv *nearby, int_mv *best,
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int near_mv_ref_cts[4],
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int refframe,
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int *ref_frame_sign_bias
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);
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vp8_prob *vp8_mv_ref_probs(VP8_COMMON *pc,
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vp8_prob p[VP8_MVREFS-1], const int near_mv_ref_ct[4]
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);
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extern const unsigned char vp8_mbsplit_offset[4][16];
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static int left_block_mv(const MODE_INFO *cur_mb, int b)
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{
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if (!(b & 3))
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{
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/* On L edge, get from MB to left of us */
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--cur_mb;
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if(cur_mb->mbmi.mode != SPLITMV)
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return cur_mb->mbmi.mv.as_int;
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b += 4;
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}
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return (cur_mb->bmi + b - 1)->mv.as_int;
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}
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static int above_block_mv(const MODE_INFO *cur_mb, int b, int mi_stride)
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{
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if (!(b >> 2))
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{
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/* On top edge, get from MB above us */
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cur_mb -= mi_stride;
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if(cur_mb->mbmi.mode != SPLITMV)
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return cur_mb->mbmi.mv.as_int;
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b += 16;
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}
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return (cur_mb->bmi + b - 4)->mv.as_int;
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}
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static B_PREDICTION_MODE left_block_mode(const MODE_INFO *cur_mb, int b)
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{
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if (!(b & 3))
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{
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/* On L edge, get from MB to left of us */
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--cur_mb;
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switch (cur_mb->mbmi.mode)
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{
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case DC_PRED:
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return B_DC_PRED;
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case V_PRED:
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return B_VE_PRED;
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case H_PRED:
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return B_HE_PRED;
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case TM_PRED:
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return B_TM_PRED;
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#if CONFIG_I8X8
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case I8X8_PRED:
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#endif
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case B_PRED:
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return (cur_mb->bmi + b + 3)->as_mode;
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default:
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return B_DC_PRED;
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}
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}
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return (cur_mb->bmi + b - 1)->as_mode;
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}
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static B_PREDICTION_MODE above_block_mode(const MODE_INFO
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*cur_mb, int b, int mi_stride)
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{
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if (!(b >> 2))
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{
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/* On top edge, get from MB above us */
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cur_mb -= mi_stride;
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switch (cur_mb->mbmi.mode)
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{
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case DC_PRED:
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return B_DC_PRED;
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case V_PRED:
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return B_VE_PRED;
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case H_PRED:
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return B_HE_PRED;
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case TM_PRED:
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return B_TM_PRED;
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#if CONFIG_I8X8
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case I8X8_PRED:
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#endif
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case B_PRED:
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return (cur_mb->bmi + b + 12)->as_mode;
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default:
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return B_DC_PRED;
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}
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}
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return (cur_mb->bmi + b - 4)->as_mode;
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}
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#endif
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