2010-05-18 17:58:33 +02:00
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/*
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2010-09-09 14:16:39 +02:00
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* Copyright (c) 2010 The WebM project authors. All Rights Reserved.
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2010-05-18 17:58:33 +02:00
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*
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2010-06-18 18:39:21 +02:00
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* Use of this source code is governed by a BSD-style license
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2010-06-04 22:19:40 +02:00
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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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2010-06-18 18:39:21 +02:00
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* in the file PATENTS. All contributing project authors may
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2010-06-04 22:19:40 +02:00
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* be found in the AUTHORS file in the root of the source tree.
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2010-05-18 17:58:33 +02:00
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*/
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2012-11-30 01:36:10 +01:00
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#ifndef VP9_COMMON_VP9_RECONINTER_H_
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#define VP9_COMMON_VP9_RECONINTER_H_
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2010-05-18 17:58:33 +02:00
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2012-12-19 00:31:19 +01:00
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#include "vpx/vpx_integer.h"
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2012-11-28 19:41:40 +01:00
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#include "vp9/common/vp9_onyxc_int.h"
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2012-07-18 22:43:01 +02:00
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2014-01-18 21:16:11 +01:00
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#ifdef __cplusplus
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extern "C" {
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#endif
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2013-08-26 20:33:16 +02:00
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void vp9_build_inter_predictors_sby(MACROBLOCKD *xd, int mi_row, int mi_col,
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BLOCK_SIZE bsize);
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2013-04-15 18:31:27 +02:00
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2013-08-26 20:33:16 +02:00
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void vp9_build_inter_predictors_sbuv(MACROBLOCKD *xd, int mi_row, int mi_col,
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BLOCK_SIZE bsize);
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2013-04-19 19:45:50 +02:00
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2013-08-26 20:33:16 +02:00
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void vp9_build_inter_predictors_sb(MACROBLOCKD *xd, int mi_row, int mi_col,
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BLOCK_SIZE bsize);
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2013-11-22 20:56:29 +01:00
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void vp9_dec_build_inter_predictors_sb(MACROBLOCKD *xd, int mi_row, int mi_col,
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BLOCK_SIZE bsize);
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2012-08-21 02:45:36 +02:00
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2013-02-09 02:49:44 +01:00
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void vp9_build_inter_predictor(const uint8_t *src, int src_stride,
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uint8_t *dst, int dst_stride,
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2013-08-03 00:26:32 +02:00
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const MV *mv_q3,
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2013-12-20 01:06:33 +01:00
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const struct scale_factors *sf,
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2013-02-09 02:49:44 +01:00
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int w, int h, int do_avg,
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2014-02-04 01:48:38 +01:00
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const InterpKernel *kernel,
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2013-12-19 20:16:05 +01:00
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enum mv_precision precision,
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int x, int y);
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2013-02-27 00:52:05 +01:00
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2013-05-08 23:11:47 +02:00
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static int scaled_buffer_offset(int x_offset, int y_offset, int stride,
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2013-12-20 01:06:33 +01:00
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const struct scale_factors *sf) {
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const int x = sf ? sf->scale_value_x(x_offset, sf) : x_offset;
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const int y = sf ? sf->scale_value_y(y_offset, sf) : y_offset;
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2013-05-08 23:11:47 +02:00
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return y * stride + x;
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2013-04-20 00:52:17 +02:00
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}
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static void setup_pred_plane(struct buf_2d *dst,
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uint8_t *src, int stride,
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2013-04-26 20:57:17 +02:00
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int mi_row, int mi_col,
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2013-04-20 00:52:17 +02:00
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const struct scale_factors *scale,
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int subsampling_x, int subsampling_y) {
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2013-04-26 20:57:17 +02:00
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const int x = (MI_SIZE * mi_col) >> subsampling_x;
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const int y = (MI_SIZE * mi_row) >> subsampling_y;
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2013-04-20 00:52:17 +02:00
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dst->buf = src + scaled_buffer_offset(x, y, stride, scale);
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dst->stride = stride;
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}
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// TODO(jkoleszar): audit all uses of this that don't set mb_row, mb_col
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static void setup_dst_planes(MACROBLOCKD *xd,
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const YV12_BUFFER_CONFIG *src,
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2013-04-26 20:57:17 +02:00
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int mi_row, int mi_col) {
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2013-12-26 20:00:58 +01:00
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uint8_t *const buffers[4] = {src->y_buffer, src->u_buffer, src->v_buffer,
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src->alpha_buffer};
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const int strides[4] = {src->y_stride, src->uv_stride, src->uv_stride,
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src->alpha_stride};
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2013-05-08 22:39:16 +02:00
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int i;
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for (i = 0; i < MAX_MB_PLANE; ++i) {
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2013-12-26 20:00:58 +01:00
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struct macroblockd_plane *const pd = &xd->plane[i];
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2013-05-08 22:39:16 +02:00
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setup_pred_plane(&pd->dst, buffers[i], strides[i], mi_row, mi_col, NULL,
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pd->subsampling_x, pd->subsampling_y);
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}
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Spatial resamping of ZEROMV predictors
This patch allows coding frames using references of different
resolution, in ZEROMV mode. For compound prediction, either
reference may be scaled.
To test, I use the resize_test and enable WRITE_RECON_BUFFER
in vp9_onyxd_if.c. It's also useful to apply this patch to
test/i420_video_source.h:
--- a/test/i420_video_source.h
+++ b/test/i420_video_source.h
@@ -93,6 +93,7 @@ class I420VideoSource : public VideoSource {
virtual void FillFrame() {
// Read a frame from input_file.
+ if (frame_ != 3)
if (fread(img_->img_data, raw_sz_, 1, input_file_) == 0) {
limit_ = frame_;
}
This forces the frame that the resolution changes on to be coded
with no motion, only scaling, and improves the quality of the
result.
Change-Id: I1ee75d19a437ff801192f767fd02a36bcbd1d496
2013-02-25 05:55:14 +01:00
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}
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2013-12-26 20:00:58 +01:00
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static void setup_pre_planes(MACROBLOCKD *xd, int idx,
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2013-07-04 02:42:01 +02:00
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const YV12_BUFFER_CONFIG *src,
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2013-04-26 20:57:17 +02:00
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int mi_row, int mi_col,
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2013-07-18 00:27:12 +02:00
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const struct scale_factors *sf) {
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2013-12-26 20:00:58 +01:00
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if (src != NULL) {
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int i;
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uint8_t *const buffers[4] = {src->y_buffer, src->u_buffer, src->v_buffer,
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src->alpha_buffer};
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const int strides[4] = {src->y_stride, src->uv_stride, src->uv_stride,
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src->alpha_stride};
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2013-07-04 02:42:01 +02:00
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2013-12-26 20:00:58 +01:00
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for (i = 0; i < MAX_MB_PLANE; ++i) {
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struct macroblockd_plane *const pd = &xd->plane[i];
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setup_pred_plane(&pd->pre[idx], buffers[i], strides[i], mi_row, mi_col,
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sf, pd->subsampling_x, pd->subsampling_y);
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2013-05-08 22:39:16 +02:00
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}
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2013-04-20 04:16:14 +02:00
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}
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}
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2014-01-18 21:16:11 +01:00
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#ifdef __cplusplus
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} // extern "C"
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#endif
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2012-12-19 00:31:19 +01:00
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#endif // VP9_COMMON_VP9_RECONINTER_H_
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