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https://github.com/ultravideo/uvg266.git
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Correctly calculate bits for transform split, however updating is done incorrectly, but cannot be fixed easily unfortunately
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parent
dacc15f33b
commit
de3a76d874
32
src/search.c
32
src/search.c
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@ -245,7 +245,7 @@ static double cu_zero_coeff_cost(const encoder_state_t *state, lcu_t *work_tree,
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* Takes into account SSD of reconstruction and the cost of encoding whatever
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* prediction unit data needs to be coded.
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*/
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double kvz_cu_rd_cost_luma(encoder_state_t *const state,
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double kvz_cu_rd_cost_luma(const encoder_state_t *const state,
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const int x_px, const int y_px, const int depth,
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const cu_info_t *const pred_cu,
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lcu_t *const lcu,
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@ -265,7 +265,7 @@ double kvz_cu_rd_cost_luma(encoder_state_t *const state,
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const uint8_t tr_depth = tr_cu->tr_depth - depth;
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cabac_data_t* cabac = &state->search_cabac;
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cabac_data_t* cabac = (cabac_data_t *)&state->search_cabac;
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// Add transform_tree split_transform_flag bit cost.
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bool intra_split_flag = pred_cu->type == CU_INTRA && pred_cu->part_size == SIZE_NxN && depth == 3;
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@ -308,9 +308,9 @@ double kvz_cu_rd_cost_luma(encoder_state_t *const state,
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cbf_is_set(tr_cu->cbf, depth, COLOR_U) ||
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cbf_is_set(tr_cu->cbf, depth, COLOR_V))
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{
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const cabac_ctx_t *ctx = &(cabac->ctx.qt_cbf_model_luma[!tr_depth]);
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cabac_ctx_t *ctx = &(cabac->ctx.qt_cbf_model_luma[!tr_depth]);
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int is_set = cbf_is_set(pred_cu->cbf, depth, COLOR_Y);
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if (cabac->update) {
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if (cabac->update && tr_cu->tr_depth == 0) {
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// Because these need to be coded before the luma cbf they also need to be counted
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// before the cabac state changes. However, since this branch is only executed when
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// calculating the last RD cost it is not problem to include the chroma cbf costs in
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@ -325,10 +325,12 @@ double kvz_cu_rd_cost_luma(encoder_state_t *const state,
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tr_tree_bits += CTX_ENTROPY_FBITS(cr_ctx, v_is_set);
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CABAC_BIN(cabac, v_is_set, "cbf_cr_search");
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}
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tr_tree_bits += CTX_ENTROPY_FBITS(ctx, is_set);
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*bit_cost += tr_tree_bits;
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state->search_cabac.cur_ctx = ctx;
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CABAC_BIN(&state->search_cabac, is_set, "luma_cbf_search");
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}
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tr_tree_bits += CTX_ENTROPY_FBITS(ctx, is_set);
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*bit_cost += tr_tree_bits;
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if(cabac->update) {
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cabac->cur_ctx = ctx;
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CABAC_BIN(cabac, is_set, "luma_cbf_search");
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}
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}
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@ -378,14 +380,20 @@ double kvz_cu_rd_cost_chroma(const encoder_state_t *const state,
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}
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// See luma for why the second condition
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if (depth < MAX_PU_DEPTH && !state->search_cabac.update) {
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if (depth < MAX_PU_DEPTH && (!state->search_cabac.update || tr_cu->tr_depth)) {
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const int tr_depth = depth - pred_cu->depth;
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const cabac_ctx_t *ctx = &(state->search_cabac.ctx.qt_cbf_model_chroma[tr_depth]);
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cabac_data_t* cabac = (cabac_data_t*)&state->search_cabac;
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cabac_ctx_t *ctx = &(cabac->ctx.qt_cbf_model_chroma[tr_depth]);
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cabac->cur_ctx = ctx;
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if (tr_depth == 0 || cbf_is_set(pred_cu->cbf, depth - 1, COLOR_U)) {
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tr_tree_bits += CTX_ENTROPY_FBITS(ctx, cbf_is_set(pred_cu->cbf, depth, COLOR_U));
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int u_is_set = cbf_is_set(pred_cu->cbf, depth, COLOR_U);
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tr_tree_bits += CTX_ENTROPY_FBITS(ctx, u_is_set);
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if(state->search_cabac.update) CABAC_BIN(cabac, u_is_set, "cbf_cb_search");
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}
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if (tr_depth == 0 || cbf_is_set(pred_cu->cbf, depth - 1, COLOR_V)) {
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tr_tree_bits += CTX_ENTROPY_FBITS(ctx, cbf_is_set(pred_cu->cbf, depth, COLOR_V));
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int v_is_set = cbf_is_set(pred_cu->cbf, depth, COLOR_V);
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tr_tree_bits += CTX_ENTROPY_FBITS(ctx, v_is_set);
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if (state->search_cabac.update) CABAC_BIN(cabac, v_is_set, "cbf_cb_search");
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}
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*bit_cost += tr_tree_bits;
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}
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