vpx/vp9/encoder/vp9_encodemb.h
Adrian Grange 7d6b5425d7 New prediction filter
This patch removes the old pred-filter experiment and replaces it
with one that is implemented using the switchable filter framework.

If the pred-filter experiment is enabled, three interopolation
filters are tested during mode selection; the standard 8-tap
interpolation filter, a sharp 8-tap filter and a (new) 8-tap
smoothing filter.

The 6-tap filter code has been preserved for now and if the
enable-6tap experiment is enabled (in addition to the pred-filter
experiment) the original 6-tap filter replaces the new 8-tap smooth
filter in the switchable mode.

The new experiment applies the prediction filter in cases of a
fractional-pel motion vector. Future patches will apply the filter
where the mv is pel-aligned and also to intra predicted blocks.

Change-Id: I08e8cba978f2bbf3019f8413f376b8e2cd85eba4
2013-01-09 12:00:39 -08:00

72 lines
2.4 KiB
C

/*
* Copyright (c) 2010 The WebM project authors. All Rights Reserved.
*
* Use of this source code is governed by a BSD-style license
* that can be found in the LICENSE file in the root of the source
* tree. An additional intellectual property rights grant can be found
* in the file PATENTS. All contributing project authors may
* be found in the AUTHORS file in the root of the source tree.
*/
#ifndef VP9_ENCODER_VP9_ENCODEMB_H_
#define VP9_ENCODER_VP9_ENCODEMB_H_
#include "./vpx_config.h"
#include "vp9/encoder/vp9_block.h"
typedef struct {
MB_PREDICTION_MODE mode;
MV_REFERENCE_FRAME ref_frame;
MV_REFERENCE_FRAME second_ref_frame;
} MODE_DEFINITION;
#include "vp9/encoder/vp9_onyx_int.h"
struct VP9_ENCODER_RTCD;
void vp9_encode_inter16x16(MACROBLOCK *x);
void vp9_transform_mbuv_4x4(MACROBLOCK *x);
void vp9_transform_mby_4x4(MACROBLOCK *x);
void vp9_optimize_mby_4x4(MACROBLOCK *x);
void vp9_optimize_mbuv_4x4(MACROBLOCK *x);
void vp9_encode_inter16x16y(MACROBLOCK *x);
void vp9_transform_mb_8x8(MACROBLOCK *mb);
void vp9_transform_mby_8x8(MACROBLOCK *x);
void vp9_transform_mbuv_8x8(MACROBLOCK *x);
void vp9_build_dcblock_8x8(MACROBLOCK *b);
void vp9_optimize_mby_8x8(MACROBLOCK *x);
void vp9_optimize_mbuv_8x8(MACROBLOCK *x);
void vp9_transform_mb_16x16(MACROBLOCK *mb);
void vp9_transform_mby_16x16(MACROBLOCK *x);
void vp9_optimize_mby_16x16(MACROBLOCK *x);
#if CONFIG_TX32X32
void vp9_transform_sby_32x32(MACROBLOCK *x);
void vp9_transform_sbuv_16x16(MACROBLOCK *x);
#endif
void vp9_fidct_mb(MACROBLOCK *x);
void vp9_subtract_4b_c(BLOCK *be, BLOCKD *bd, int pitch);
void vp9_subtract_mbuv_s_c(int16_t *diff, const uint8_t *usrc,
const uint8_t *vsrc, int src_stride,
const uint8_t *upred,
const uint8_t *vpred, int dst_stride);
void vp9_subtract_mby_s_c(int16_t *diff, const uint8_t *src,
int src_stride, const uint8_t *pred,
int dst_stride);
#if CONFIG_TX32X32
void vp9_subtract_sby_s_c(int16_t *diff, const uint8_t *src, int src_stride,
const uint8_t *pred, int dst_stride);
void vp9_subtract_sbuv_s_c(int16_t *diff, const uint8_t *usrc,
const uint8_t *vsrc, int src_stride,
const uint8_t *upred,
const uint8_t *vpred, int dst_stride);
#endif // CONFIG_TX32X32
#endif // VP9_ENCODER_VP9_ENCODEMB_H_