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https://github.com/ultravideo/uvg266.git
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Move transform coding and chroma cu coding out of encode_intra_coding_unit
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a88553b206
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@ -814,7 +814,7 @@ static void encode_chroma_intra_cu(cabac_data_t* const cabac, const cu_info_t* c
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}
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}
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static void encode_intra_coding_unit(encoder_state_t * const state,
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static void encode_intra_luma_coding_unit(encoder_state_t * const state,
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cabac_data_t * const cabac,
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const cu_info_t * const cur_cu,
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int x, int y, int depth, lcu_t* lcu, lcu_coeff_t* coeff, double* bits_out)
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@ -1063,24 +1063,6 @@ static void encode_intra_coding_unit(encoder_state_t * const state,
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if (cabac->only_count && bits_out) *bits_out += 5;
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}
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}
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// Code chroma prediction mode.
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if (state->encoder_control->chroma_format != KVZ_CSP_400 && depth != 4) {
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encode_chroma_intra_cu(cabac, cur_cu, x, y, frame, cu_width, state->encoder_control->cfg.cclm);
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}
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// if we are counting bits, the cost for transform coeffs is done separately
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// To get the distortion at the same time
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if (!cabac->only_count) {
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encode_transform_coeff(state, x, y, depth, 0, 0, 0, 0, coeff);
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encode_mts_idx(state, cabac, cur_cu);
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if (state->encoder_control->chroma_format != KVZ_CSP_400 && depth == 4 && x % 8 && y % 8) {
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encode_chroma_intra_cu(cabac, cur_cu, x, y, frame, cu_width, state->encoder_control->cfg.cclm);
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encode_transform_coeff(state, x, y, depth, 0, 0, 0, 1, coeff);
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}
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}
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}
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/**
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@ -1511,7 +1493,23 @@ void kvz_encode_coding_tree(encoder_state_t * const state,
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}
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} else if (cur_cu->type == CU_INTRA) {
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encode_intra_coding_unit(state, cabac, cur_cu, x, y, depth, NULL, coeff, NULL);
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encode_intra_luma_coding_unit(state, cabac, cur_cu, x, y, depth, NULL, coeff, NULL);
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// Code chroma prediction mode.
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if (state->encoder_control->chroma_format != KVZ_CSP_400 && depth != 4) {
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encode_chroma_intra_cu(cabac, cur_cu, x, y, frame, cu_width, state->encoder_control->cfg.cclm);
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}
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encode_transform_coeff(state, x, y, depth, 0, 0, 0, 0, coeff);
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encode_mts_idx(state, cabac, cur_cu);
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// For 4x4 the chroma PU/TU is coded after the last
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if (state->encoder_control->chroma_format != KVZ_CSP_400 && depth == 4 && x % 8 && y % 8) {
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encode_chroma_intra_cu(cabac, cur_cu, x, y, frame, cu_width, state->encoder_control->cfg.cclm);
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encode_transform_coeff(state, x, y, depth, 0, 0, 0, 1, coeff);
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}
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}
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else {
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@ -1640,7 +1638,7 @@ double kvz_mock_encode_coding_unit(
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}
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}
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else if (cur_cu->type == CU_INTRA) {
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encode_intra_coding_unit(state, cabac, cur_cu, x, y, depth, lcu, NULL, &bits);
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encode_intra_luma_coding_unit(state, cabac, cur_cu, x, y, depth, lcu, NULL, &bits);
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}
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return bits;
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}
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@ -916,15 +916,19 @@ double kvz_luma_mode_bits(const encoder_state_t *state, int8_t luma_mode, const
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}
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}
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cabac_ctx_t* ctx = &(cabac->ctx.luma_planar_model[1]);
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CABAC_FBITS_UPDATE(cabac, ctx, mode_in_preds, mode_bits, "prev_intra_luma_pred_flag_search");
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CABAC_FBITS_UPDATE(
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cabac,
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ctx,
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mode_in_preds != -1,
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mode_bits,
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"prev_intra_luma_pred_flag_search");
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if (state->search_cabac.update) {
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if (mode_in_preds) {
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CABAC_BIN_EP(cabac, !(luma_mode == intra_preds[0]), "mpm_idx");
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if (luma_mode != intra_preds[0]) {
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CABAC_BIN_EP(cabac, !(luma_mode == intra_preds[1]), "mpm_idx");
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}
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}
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else {
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} else {
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// This value should be transformed for actual coding,
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// but here the value does not actually matter, just that we write 5 bits
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CABAC_BINS_EP(cabac, luma_mode, 5, "rem_intra_luma_pred_mode");
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