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Transition to kvz_filter_frac_blocks_luma
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@ -1016,18 +1016,8 @@ static unsigned search_frac(encoder_state_t * const state,
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unsigned cost = 0;
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vector2d_t halfpel_offset;
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#define FILTER_SIZE 8
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#define HALF_FILTER (FILTER_SIZE>>1)
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kvz_extended_block src = { 0, 0, 0 };
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//destination buffer for interpolation
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int dst_stride = (width + 1) * 4;
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kvz_pixel dst[(LCU_WIDTH+1) * (LCU_WIDTH+1) * 16];
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kvz_pixel* dst_off = &dst[dst_stride*4+4];
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// Buffers for interpolated fractional pixels one
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// for each position excluding the integer position.
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// Has one extra column on left and row on top because
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@ -1063,8 +1053,8 @@ static unsigned search_frac(encoder_state_t * const state,
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state->tile->lcu_offset_y * LCU_WIDTH,
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ref->y, ref->width, ref->height, FILTER_SIZE, width+1, height+1, &src);
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kvz_filter_inter_quarterpel_luma(state->encoder_control, src.orig_topleft, src.stride, width+1,
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height+1, dst, dst_stride, 1, 1);
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kvz_filter_frac_blocks_luma(state->encoder_control, src.orig_topleft, src.stride, width,
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height, fracpel_blocks, fme_level);
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kvz_pixel tmp_pic[LCU_WIDTH*LCU_WIDTH];
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kvz_pixels_blit(pic->y + orig->y*pic->width + orig->x, tmp_pic, width, height, pic->stride, width);
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@ -1084,8 +1074,6 @@ static unsigned search_frac(encoder_state_t * const state,
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mv.x <<= 1;
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mv.y <<= 1;
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kvz_pixel tmp_filtered[LCU_WIDTH*LCU_WIDTH];
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// Search halfpel positions around best integer mv
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for (i = 1; i <= last_hpel_index; ++i) {
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const vector2d_t *pattern = &square[i];
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@ -1093,18 +1081,9 @@ static unsigned search_frac(encoder_state_t * const state,
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continue;
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}
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int y,x;
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for(y = 0; y < height; ++y) {
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int dst_y = y*4+pattern->y*2;
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for(x = 0; x < width; ++x) {
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int dst_x = x*4+pattern->x*2;
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tmp_filtered[y*width+x] = dst_off[dst_y*dst_stride+dst_x];
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}
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}
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cost = kvz_satd_any_size(width, height,
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tmp_pic, width,
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tmp_filtered, width);
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hpel_pos[i - 1], (LCU_WIDTH + 1));
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cost += calc_mvd(state, mv.x + pattern->x, mv.y + pattern->y, 1, mv_cand, merge_cand, num_cand, ref_idx, &bitcost);
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if (cost < best_cost) {
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@ -1115,11 +1094,11 @@ static unsigned search_frac(encoder_state_t * const state,
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}
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}
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unsigned int best_hpel_index = best_index;
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// Move search to best_index
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mv.x += square[best_index].x;
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mv.y += square[best_index].y;
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halfpel_offset.x = square[best_index].x*2;
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halfpel_offset.y = square[best_index].y*2;
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//Set mv to quarterpel precision
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mv.x <<= 1;
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@ -1138,18 +1117,36 @@ static unsigned search_frac(encoder_state_t * const state,
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continue;
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}
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int y, x;
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for (y = 0; y < height; ++y) {
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int dst_y = y * 4 + halfpel_offset.y + pattern->y;
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for (x = 0; x < width; ++x) {
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int dst_x = x * 4 + halfpel_offset.x + pattern->x;
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tmp_filtered[y*width + x] = dst_off[dst_y*dst_stride + dst_x];
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}
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}
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int hpel_offset_x = square[best_hpel_index].x;
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int hpel_offset_y = square[best_hpel_index].y;
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int qpel_offset_x = 2 * hpel_offset_x + pattern->x;
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int qpel_offset_y = 2 * hpel_offset_y + pattern->y;
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unsigned qpel_filter_x = (qpel_offset_x + 4) % 4;
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unsigned qpel_filter_y = (qpel_offset_y + 4) % 4;
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// The first value (-1) is for the integer position and
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// it will not be used
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int filters_to_block_idx[4][4] = {
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{ -1, 3, 0, 4 },
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{ 7, 11, 8, 12 },
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{ 1, 5, 2, 6 },
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{ 9, 13, 10, 14 }
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};
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int qpel_idx = filters_to_block_idx[qpel_filter_y][qpel_filter_x];
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// Select values filtered from correct integer samples
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int int_offset_x = qpel_offset_x >= 0;
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int int_offset_y = qpel_offset_y >= 0;
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kvz_pixel *qpel_pos = fracpel_blocks[qpel_idx] + int_offset_y * (LCU_WIDTH + 1) + int_offset_x;
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cost = kvz_satd_any_size(width, height,
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tmp_pic, width,
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tmp_filtered, width);
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qpel_pos, (LCU_WIDTH + 1));
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cost += calc_mvd(state, mv.x + pattern->x, mv.y + pattern->y, 0, mv_cand, merge_cand, num_cand, ref_idx, &bitcost);
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