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https://github.com/ultravideo/uvg266.git
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Remove consts and fix wrong types
This commit is contained in:
parent
64b2806cc8
commit
951a845f08
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@ -271,8 +271,7 @@ static INLINE uint32_t get_coeff_cabac_cost(
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scan_mode,
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0);
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if(cabac_copy.update) {
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memcpy(&state->search_cabac, &cabac_copy, sizeof(cabac_copy));
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memcpy((cabac_data_t *)&state->search_cabac, &cabac_copy, sizeof(cabac_copy));
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}
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return (bits_left - cabac_copy.bits_left) + ((cabac_copy.num_buffered_bytes - num_buffered_bytes) << 3);
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}
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@ -1036,7 +1035,7 @@ double kvz_calc_mvd_cost_cabac(const encoder_state_t * state,
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inter_merge_cand_t merge_cand[MRG_MAX_NUM_CANDS],
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int16_t num_cand,
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int32_t ref_idx,
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uint32_t *bitcost)
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double* bitcost)
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{
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cabac_data_t state_cabac_copy;
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cabac_data_t* cabac;
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14
src/sao.c
14
src/sao.c
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@ -53,7 +53,7 @@ static double sao_mode_bits_none(const encoder_state_t * const state, sao_info_t
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{
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double mode_bits = 0.0;
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cabac_data_t * cabac = (cabac_data_t*)&state->search_cabac;
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const cabac_ctx_t *ctx = NULL;
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cabac_ctx_t *ctx = NULL;
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// FL coded merges.
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if (sao_left != NULL) {
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ctx = &(cabac->ctx.sao_merge_flag_model);
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@ -74,8 +74,8 @@ static double sao_mode_bits_none(const encoder_state_t * const state, sao_info_t
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static double sao_mode_bits_merge(const encoder_state_t * const state,
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int8_t merge_cand) {
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double mode_bits = 0.0;
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cabac_data_t * const cabac = (cabac_data_t*)&state->search_cabac;
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const cabac_ctx_t *ctx = NULL;
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cabac_data_t * cabac = (cabac_data_t*)&state->search_cabac;
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cabac_ctx_t *ctx = NULL;
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// FL coded merges.
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ctx = &(cabac->ctx.sao_merge_flag_model);
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@ -91,8 +91,8 @@ static double sao_mode_bits_edge(const encoder_state_t * const state,
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sao_info_t *sao_top, sao_info_t *sao_left, unsigned buf_cnt)
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{
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double mode_bits = 0.0;
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cabac_data_t * const cabac = (cabac_data_t*)&state->search_cabac;
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const cabac_ctx_t *ctx = NULL;
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cabac_data_t * cabac = (cabac_data_t*)&state->search_cabac;
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cabac_ctx_t *ctx = NULL;
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// FL coded merges.
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if (sao_left != NULL) {
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ctx = &(cabac->ctx.sao_merge_flag_model);
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@ -132,8 +132,8 @@ static double sao_mode_bits_band(const encoder_state_t * const state,
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sao_info_t *sao_top, sao_info_t *sao_left, unsigned buf_cnt)
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{
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double mode_bits = 0.0;
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cabac_data_t * const cabac = (cabac_data_t*)&state->search_cabac;
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const cabac_ctx_t *ctx = NULL;
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cabac_data_t * cabac = (cabac_data_t*)&state->search_cabac;
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cabac_ctx_t *ctx = NULL;
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// FL coded merges.
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if (sao_left != NULL) {
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ctx = &(cabac->ctx.sao_merge_flag_model);
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@ -269,7 +269,7 @@ static double search_intra_trdepth(encoder_state_t * const state,
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// Add bits for split_transform_flag = 1, because transform depth search bypasses
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// the normal recursion in the cost functions.
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if (depth >= 1 && depth <= 3) {
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const cabac_ctx_t *ctx = &(state->search_cabac.ctx.trans_subdiv_model[5 - (6 - depth)]);
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cabac_ctx_t *ctx = &(state->search_cabac.ctx.trans_subdiv_model[5 - (6 - depth)]);
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CABAC_FBITS_UPDATE(&state->search_cabac, ctx, 1, tr_split_bit, "tr_split");
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*bit_cost += tr_split_bit;
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}
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@ -283,7 +283,7 @@ static double search_intra_trdepth(encoder_state_t * const state,
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if (state->encoder_control->chroma_format != KVZ_CSP_400) {
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const uint8_t 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_ctx_t *ctx = &(state->search_cabac.ctx.qt_cbf_model_chroma[tr_depth]);
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if (tr_depth == 0 || cbf_is_set(pred_cu->cbf, depth - 1, COLOR_U)) {
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CABAC_FBITS_UPDATE(&state->search_cabac, ctx, cbf_is_set(pred_cu->cbf, depth, COLOR_U), cbf_bits, "cbf_cb");
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}
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@ -647,9 +647,9 @@ static int8_t search_intra_rdo(encoder_state_t * const state,
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}
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double kvz_luma_mode_bits(encoder_state_t *state, int8_t luma_mode, const int8_t *intra_preds)
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double kvz_luma_mode_bits(const encoder_state_t *state, int8_t luma_mode, const int8_t *intra_preds)
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{
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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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double mode_bits = 0;
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bool mode_in_preds = false;
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@ -659,7 +659,7 @@ double kvz_luma_mode_bits(encoder_state_t *state, int8_t luma_mode, const int8_t
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}
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}
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const cabac_ctx_t *ctx = &(cabac->ctx.intra_mode_model);
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cabac_ctx_t *ctx = &(cabac->ctx.intra_mode_model);
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CABAC_FBITS_UPDATE(cabac, ctx, mode_in_preds, mode_bits, "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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@ -688,7 +688,7 @@ double kvz_luma_mode_bits(encoder_state_t *state, int8_t luma_mode, const int8_t
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double kvz_chroma_mode_bits(const encoder_state_t *state, int8_t chroma_mode, int8_t luma_mode)
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{
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cabac_data_t* cabac = (cabac_data_t*)&state->search_cabac;
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const cabac_ctx_t *ctx = &(cabac->ctx.chroma_pred_model[0]);
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cabac_ctx_t *ctx = &(cabac->ctx.chroma_pred_model[0]);
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double mode_bits = 0;
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CABAC_FBITS_UPDATE(cabac, ctx, chroma_mode != luma_mode, mode_bits, "intra_chroma_pred_mode");
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