Merge "Adding encode_loopfilter function." into experimental
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3cd8897623
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@ -1618,6 +1618,62 @@ static void segment_reference_frames(VP9_COMP *cpi) {
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}
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}
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static void encode_loopfilter(MACROBLOCKD *xd, vp9_writer *w) {
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int i;
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// Write out loop filter deltas applied at the MB level based on mode or
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// ref frame (if they are enabled).
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vp9_write_bit(w, xd->mode_ref_lf_delta_enabled);
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if (xd->mode_ref_lf_delta_enabled) {
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// Do the deltas need to be updated
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vp9_write_bit(w, xd->mode_ref_lf_delta_update);
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if (xd->mode_ref_lf_delta_update) {
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// Send update
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for (i = 0; i < MAX_REF_LF_DELTAS; i++) {
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const int delta = xd->ref_lf_deltas[i];
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// Frame level data
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if (delta != xd->last_ref_lf_deltas[i]) {
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xd->last_ref_lf_deltas[i] = delta;
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vp9_write_bit(w, 1);
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if (delta > 0) {
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vp9_write_literal(w, delta & 0x3F, 6);
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vp9_write_bit(w, 0); // sign
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} else {
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assert(delta < 0);
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vp9_write_literal(w, (-delta) & 0x3F, 6);
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vp9_write_bit(w, 1); // sign
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}
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} else {
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vp9_write_bit(w, 0);
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}
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}
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// Send update
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for (i = 0; i < MAX_MODE_LF_DELTAS; i++) {
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const int delta = xd->mode_lf_deltas[i];
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if (delta != xd->last_mode_lf_deltas[i]) {
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xd->last_mode_lf_deltas[i] = delta;
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vp9_write_bit(w, 1);
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if (delta > 0) {
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vp9_write_literal(w, delta & 0x3F, 6);
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vp9_write_bit(w, 0); // sign
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} else {
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assert(delta < 0);
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vp9_write_literal(w, (-delta) & 0x3F, 6);
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vp9_write_bit(w, 1); // sign
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}
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} else {
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vp9_write_bit(w, 0);
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}
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}
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}
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}
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}
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static void encode_segmentation(VP9_COMP *cpi, vp9_writer *w) {
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int i, j;
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VP9_COMMON *const pc = &cpi->common;
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@ -1772,57 +1828,7 @@ void vp9_pack_bitstream(VP9_COMP *cpi, uint8_t *dest, unsigned long *size) {
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}
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#endif
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// Write out loop filter deltas applied at the MB level based on mode or ref frame (if they are enabled).
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vp9_write_bit(&header_bc, (xd->mode_ref_lf_delta_enabled) ? 1 : 0);
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if (xd->mode_ref_lf_delta_enabled) {
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// Do the deltas need to be updated
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vp9_write_bit(&header_bc, xd->mode_ref_lf_delta_update);
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if (xd->mode_ref_lf_delta_update) {
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// Send update
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for (i = 0; i < MAX_REF_LF_DELTAS; i++) {
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const int delta = xd->ref_lf_deltas[i];
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// Frame level data
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if (delta != xd->last_ref_lf_deltas[i]) {
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xd->last_ref_lf_deltas[i] = delta;
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vp9_write_bit(&header_bc, 1);
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if (delta > 0) {
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vp9_write_literal(&header_bc, delta & 0x3F, 6);
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vp9_write_bit(&header_bc, 0); // sign
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} else {
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assert(delta < 0);
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vp9_write_literal(&header_bc, (-delta) & 0x3F, 6);
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vp9_write_bit(&header_bc, 1); // sign
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}
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} else {
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vp9_write_bit(&header_bc, 0);
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}
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}
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// Send update
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for (i = 0; i < MAX_MODE_LF_DELTAS; i++) {
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const int delta = xd->mode_lf_deltas[i];
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if (delta != xd->last_mode_lf_deltas[i]) {
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xd->last_mode_lf_deltas[i] = delta;
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vp9_write_bit(&header_bc, 1);
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if (delta > 0) {
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vp9_write_literal(&header_bc, delta & 0x3F, 6);
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vp9_write_bit(&header_bc, 0); // sign
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} else {
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assert(delta < 0);
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vp9_write_literal(&header_bc, (-delta) & 0x3F, 6);
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vp9_write_bit(&header_bc, 1); // sign
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}
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} else {
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vp9_write_bit(&header_bc, 0);
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}
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}
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}
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}
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encode_loopfilter(xd, &header_bc);
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// Frame Q baseline quantizer index
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vp9_write_literal(&header_bc, pc->base_qindex, QINDEX_BITS);
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