Cleaning up vp9_aq_cyclicrefresh.{c, h}.
Change-Id: I288e5ffade508fc3c803986d47ccf06df8d784dd
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2128f714aa
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6bfcb269a5
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@ -21,31 +21,27 @@
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// Check if we should turn off cyclic refresh based on bitrate condition.
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static int apply_cyclic_refresh_bitrate(VP9_COMP *const cpi) {
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static int apply_cyclic_refresh_bitrate(const VP9_COMMON *cm,
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const RATE_CONTROL *rc) {
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// Turn off cyclic refresh if bits available per frame is not sufficiently
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// larger than bit cost of segmentation. Segment map bit cost should scale
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// with number of seg blocks, so compare available bits to number of blocks.
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// Average bits available per frame = av_per_frame_bandwidth
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// Number of (8x8) blocks in frame = mi_rows * mi_cols;
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float factor = 0.5;
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int number_blocks = cpi->common.mi_rows * cpi->common.mi_cols;
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const float factor = 0.5;
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const int number_blocks = cm->mi_rows * cm->mi_cols;
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// The condition below corresponds to turning off at target bitrates:
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// ~24kbps for CIF, 72kbps for VGA (at 30fps).
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if (cpi->rc.av_per_frame_bandwidth < factor * number_blocks)
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return 0;
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else
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return 1;
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return rc->av_per_frame_bandwidth >= factor * number_blocks;
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}
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// Check if this coding block, of size bsize, should be considered for refresh
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// (lower-qp coding). Decision can be based on various factors, such as
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// size of the coding block (i.e., below min_block size rejected), coding
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// mode, and rate/distortion.
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static int candidate_refresh_aq(VP9_COMP *const cpi,
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MODE_INFO *const mi,
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int bsize,
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int use_rd) {
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CYCLIC_REFRESH *const cr = &cpi->cyclic_refresh;
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static int candidate_refresh_aq(const CYCLIC_REFRESH *cr,
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const MB_MODE_INFO *mbmi,
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BLOCK_SIZE bsize, int use_rd) {
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if (use_rd) {
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// If projected rate is below the thresh_rate (well below target,
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// so undershoot expected), accept it for lower-qp coding.
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@ -56,18 +52,18 @@ static int candidate_refresh_aq(VP9_COMP *const cpi,
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// 2) mode is non-zero mv and projected distortion is above thresh_dist
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// 3) mode is an intra-mode (we may want to allow some of this under
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// another thresh_dist)
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else if ((bsize < cr->min_block_size) ||
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(mi->mbmi.mv[0].as_int != 0 &&
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cr->projected_dist_sb > cr->thresh_dist_sb) ||
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!is_inter_block(&mi->mbmi))
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else if (bsize < cr->min_block_size ||
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(mbmi->mv[0].as_int != 0 &&
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cr->projected_dist_sb > cr->thresh_dist_sb) ||
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!is_inter_block(mbmi))
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return 0;
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else
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return 1;
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} else {
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// Rate/distortion not used for update.
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if ((bsize < cr->min_block_size) ||
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(mi->mbmi.mv[0].as_int != 0) ||
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!is_inter_block(&mi->mbmi))
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if (bsize < cr->min_block_size ||
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mbmi->mv[0].as_int != 0 ||
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!is_inter_block(mbmi))
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return 0;
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else
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return 1;
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@ -78,32 +74,32 @@ static int candidate_refresh_aq(VP9_COMP *const cpi,
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// check if we should reset the segment_id, and update the cyclic_refresh map
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// and segmentation map.
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void vp9_update_segment_aq(VP9_COMP *const cpi,
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MODE_INFO *const mi,
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MB_MODE_INFO *const mbmi,
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int mi_row,
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int mi_col,
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int bsize,
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BLOCK_SIZE bsize,
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int use_rd) {
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const VP9_COMMON *const cm = &cpi->common;
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CYCLIC_REFRESH *const cr = &cpi->cyclic_refresh;
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VP9_COMMON *const cm = &cpi->common;
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const int bw = num_8x8_blocks_wide_lookup[bsize];
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const int bh = num_8x8_blocks_high_lookup[bsize];
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const int xmis = MIN(cm->mi_cols - mi_col, bw);
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const int ymis = MIN(cm->mi_rows - mi_row, bh);
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const int block_index = mi_row * cm->mi_cols + mi_col;
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const int refresh_this_block = candidate_refresh_aq(cr, mbmi, bsize, use_rd);
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// Default is to not update the refresh map.
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int new_map_value = cr->map[block_index];
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int x = 0; int y = 0;
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int current_segment = mi->mbmi.segment_id;
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int refresh_this_block = candidate_refresh_aq(cpi, mi, bsize, use_rd);
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// Check if we should reset the segment_id for this block.
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if (current_segment && !refresh_this_block)
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mi->mbmi.segment_id = 0;
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if (mbmi->segment_id > 0 && !refresh_this_block)
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mbmi->segment_id = 0;
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// Update the cyclic refresh map, to be used for setting segmentation map
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// for the next frame. If the block will be refreshed this frame, mark it
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// as clean. The magnitude of the -ve influences how long before we consider
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// it for refresh again.
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if (mi->mbmi.segment_id == 1) {
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if (mbmi->segment_id == 1) {
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new_map_value = -cr->time_for_refresh;
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} else if (refresh_this_block) {
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// Else if it is accepted as candidate for refresh, and has not already
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@ -121,39 +117,40 @@ void vp9_update_segment_aq(VP9_COMP *const cpi,
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for (x = 0; x < xmis; x++) {
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cr->map[block_index + y * cm->mi_cols + x] = new_map_value;
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cpi->segmentation_map[block_index + y * cm->mi_cols + x] =
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mi->mbmi.segment_id;
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mbmi->segment_id;
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}
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// Keep track of actual number (in units of 8x8) of blocks in segment 1 used
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// for encoding this frame.
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if (mi->mbmi.segment_id)
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if (mbmi->segment_id)
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cr->num_seg_blocks += xmis * ymis;
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}
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// Setup cyclic background refresh: set delta q and segmentation map.
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void vp9_setup_cyclic_refresh_aq(VP9_COMP *const cpi) {
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VP9_COMMON *const cm = &cpi->common;
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const RATE_CONTROL *const rc = &cpi->rc;
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CYCLIC_REFRESH *const cr = &cpi->cyclic_refresh;
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struct segmentation *const seg = &cm->seg;
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unsigned char *seg_map = cpi->segmentation_map;
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int apply_cyclic_refresh = apply_cyclic_refresh_bitrate(cpi);
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unsigned char *const seg_map = cpi->segmentation_map;
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const int apply_cyclic_refresh = apply_cyclic_refresh_bitrate(cm, rc);
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// Don't apply refresh on key frame or enhancement layer frames.
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if (!apply_cyclic_refresh ||
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(cpi->common.frame_type == KEY_FRAME) ||
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(cm->frame_type == KEY_FRAME) ||
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(cpi->svc.temporal_layer_id > 0)) {
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// Set segmentation map to 0 and disable.
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vpx_memset(seg_map, 0, cm->mi_rows * cm->mi_cols);
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vp9_disable_segmentation(&cm->seg);
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if (cpi->common.frame_type == KEY_FRAME)
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if (cm->frame_type == KEY_FRAME)
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cr->mb_index = 0;
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return;
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} else {
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const int mbs_in_frame = cm->mi_rows * cm->mi_cols;
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int qindex_delta = 0;
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int mbs_in_frame = cm->mi_rows * cm->mi_cols;
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int i, x, y, block_count, bl_index, bl_index2;
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int sum_map, mi_row, mi_col, xmis, ymis, qindex2;
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int i, x, y, block_count;
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int mi_row, mi_col, qindex2;
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// Rate target ratio to set q delta.
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float rate_ratio_qdelta = 2.0;
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const float rate_ratio_qdelta = 2.0;
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vp9_clear_system_state();
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// Some of these parameters may be set via codec-control function later.
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cr->max_mbs_perframe = 10;
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@ -161,14 +158,14 @@ void vp9_setup_cyclic_refresh_aq(VP9_COMP *const cpi) {
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cr->min_block_size = BLOCK_16X16;
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cr->time_for_refresh = 1;
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// Set rate threshold to some fraction of target (and scaled by 256).
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cr->thresh_rate_sb = (cpi->rc.sb64_target_rate * 256) >> 2;
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cr->thresh_rate_sb = (rc->sb64_target_rate * 256) >> 2;
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// Distortion threshold, quadratic in Q, scale factor to be adjusted.
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cr->thresh_dist_sb = 8 * (int)(vp9_convert_qindex_to_q(cm->base_qindex) *
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vp9_convert_qindex_to_q(cm->base_qindex));
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if (cpi->sf.use_nonrd_pick_mode) {
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// May want to be more conservative with thresholds in non-rd mode for now
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// as rate/distortion are derived from model based on prediction residual.
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cr->thresh_rate_sb = (cpi->rc.sb64_target_rate * 256) >> 3;
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cr->thresh_rate_sb = (rc->sb64_target_rate * 256) >> 3;
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cr->thresh_dist_sb = 4 * (int)(vp9_convert_qindex_to_q(cm->base_qindex) *
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vp9_convert_qindex_to_q(cm->base_qindex));
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}
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@ -200,9 +197,8 @@ void vp9_setup_cyclic_refresh_aq(VP9_COMP *const cpi) {
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rate_ratio_qdelta);
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// TODO(marpan): Incorporate the actual-vs-target rate over/undershoot from
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// previous encoded frame.
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if ((-qindex_delta) > cr->max_qdelta_perc * cm->base_qindex / 100) {
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if (-qindex_delta > cr->max_qdelta_perc * cm->base_qindex / 100)
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qindex_delta = -cr->max_qdelta_perc * cm->base_qindex / 100;
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}
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// Compute rd-mult for segment 1.
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qindex2 = clamp(cm->base_qindex + cm->y_dc_delta_q + qindex_delta, 0, MAXQ);
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@ -238,29 +234,21 @@ void vp9_setup_cyclic_refresh_aq(VP9_COMP *const cpi) {
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// Enforce constant segment map over superblock.
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for (mi_row = 0; mi_row < cm->mi_rows; mi_row += MI_BLOCK_SIZE)
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for (mi_col = 0; mi_col < cm->mi_cols; mi_col += MI_BLOCK_SIZE) {
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bl_index = mi_row * cm->mi_cols + mi_col;
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xmis = num_8x8_blocks_wide_lookup[BLOCK_64X64];
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ymis = num_8x8_blocks_high_lookup[BLOCK_64X64];
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xmis = MIN(cm->mi_cols - mi_col, xmis);
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ymis = MIN(cm->mi_rows - mi_row, ymis);
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sum_map = 0;
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const int bl_index = mi_row * cm->mi_cols + mi_col;
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const int xmis = MIN(cm->mi_cols - mi_col,
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num_8x8_blocks_wide_lookup[BLOCK_64X64]);
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const int ymis = MIN(cm->mi_rows - mi_row,
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num_8x8_blocks_high_lookup[BLOCK_64X64]);
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int sum_map = 0;
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for (y = 0; y < ymis; y++)
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for (x = 0; x < xmis; x++) {
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bl_index2 = bl_index + y * cm->mi_cols + x;
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sum_map += seg_map[bl_index2];
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}
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for (x = 0; x < xmis; x++)
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sum_map += seg_map[bl_index + y * cm->mi_cols + x];
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// If segment is partial over superblock, reset.
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if (sum_map > 0 && sum_map < xmis * ymis) {
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int new_value;
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if (sum_map < xmis * ymis / 2)
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new_value = 0;
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else
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new_value = 1;
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const int new_value = (sum_map >= xmis * ymis / 2);
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for (y = 0; y < ymis; y++)
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for (x = 0; x < xmis; x++) {
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bl_index2 = bl_index + y * cm->mi_cols + x;
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seg_map[bl_index2] = new_value;
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}
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for (x = 0; x < xmis; x++)
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seg_map[bl_index + y * cm->mi_cols + x] = new_value;
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}
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}
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}
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@ -51,10 +51,10 @@ struct VP9_COMP;
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// check if we should reset the segment_id, and update the cyclic_refresh map
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// and segmentation map.
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void vp9_update_segment_aq(struct VP9_COMP *const cpi,
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MODE_INFO *const mi,
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MB_MODE_INFO *const mbmi,
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int mi_row,
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int mi_col,
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int bsize,
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BLOCK_SIZE bsize,
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int use_rd);
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// Setup cyclic background refresh: set delta q and segmentation map.
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@ -903,7 +903,8 @@ static void update_state(VP9_COMP *cpi, PICK_MODE_CONTEXT *ctx,
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output_enabled) {
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// Check for reseting segment_id and update cyclic map.
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if (cpi->oxcf.aq_mode == CYCLIC_REFRESH_AQ && seg->enabled) {
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vp9_update_segment_aq(cpi, xd->mi_8x8[0], mi_row, mi_col, bsize, 1);
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vp9_update_segment_aq(cpi, &xd->mi_8x8[0]->mbmi,
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mi_row, mi_col, bsize, 1);
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vp9_init_plane_quantizers(cpi, x);
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}
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mi->mbmi.segment_id = xd->mi_8x8[0]->mbmi.segment_id;
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@ -1470,7 +1471,7 @@ static void update_state_rt(VP9_COMP *cpi, const PICK_MODE_CONTEXT *ctx,
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// Check for reseting segment_id and update cyclic map.
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if (cpi->oxcf.aq_mode == CYCLIC_REFRESH_AQ && seg->enabled) {
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vp9_update_segment_aq(cpi, xd->mi_8x8[0], mi_row, mi_col, bsize, 1);
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vp9_update_segment_aq(cpi, &xd->mi_8x8[0]->mbmi, mi_row, mi_col, bsize, 1);
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vp9_init_plane_quantizers(cpi, x);
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}
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