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@ -210,7 +210,8 @@ static int derive_temporal_colocated_mvs(HEVCContext *s, MvField temp_col, |
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tab_mvf[(y) * min_pu_width + x] |
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#define TAB_MVF_PU(v) \ |
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TAB_MVF(x ## v ## _pu, y ## v ## _pu) |
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TAB_MVF(((x ## v) >> s->sps->log2_min_pu_size), \
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((y ## v) >> s->sps->log2_min_pu_size)) |
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#define DERIVE_TEMPORAL_COLOCATED_MVS \ |
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derive_temporal_colocated_mvs(s, temp_col, \
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@ -304,28 +305,18 @@ static void derive_spatial_merge_candidates(HEVCContext *s, int x0, int y0, |
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const int xA1 = x0 - 1; |
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const int yA1 = y0 + nPbH - 1; |
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const int xA1_pu = xA1 >> s->sps->log2_min_pu_size; |
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const int yA1_pu = yA1 >> s->sps->log2_min_pu_size; |
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const int xB1 = x0 + nPbW - 1; |
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const int yB1 = y0 - 1; |
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const int xB1_pu = xB1 >> s->sps->log2_min_pu_size; |
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const int yB1_pu = yB1 >> s->sps->log2_min_pu_size; |
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const int xB0 = x0 + nPbW; |
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const int yB0 = y0 - 1; |
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const int xB0_pu = xB0 >> s->sps->log2_min_pu_size; |
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const int yB0_pu = yB0 >> s->sps->log2_min_pu_size; |
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const int xA0 = x0 - 1; |
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const int yA0 = y0 + nPbH; |
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const int xA0_pu = xA0 >> s->sps->log2_min_pu_size; |
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const int yA0_pu = yA0 >> s->sps->log2_min_pu_size; |
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const int xB2 = x0 - 1; |
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const int yB2 = y0 - 1; |
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const int xB2_pu = xB2 >> s->sps->log2_min_pu_size; |
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const int yB2_pu = yB2 >> s->sps->log2_min_pu_size; |
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const int nb_refs = (s->sh.slice_type == P_SLICE) ? |
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s->sh.nb_refs[0] : FFMIN(s->sh.nb_refs[0], s->sh.nb_refs[1]); |
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@ -575,12 +566,16 @@ static int mv_mp_mode_mx_lt(HEVCContext *s, int x, int y, int pred_flag_index, |
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} |
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#define MP_MX(v, pred, mx) \ |
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mv_mp_mode_mx(s, x ## v ## _pu, y ## v ## _pu, pred, \
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&mx, ref_idx_curr, ref_idx) |
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mv_mp_mode_mx(s, \
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(x ## v) >> s->sps->log2_min_pu_size, \
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(y ## v) >> s->sps->log2_min_pu_size, \
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pred, &mx, ref_idx_curr, ref_idx) |
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#define MP_MX_LT(v, pred, mx) \ |
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mv_mp_mode_mx_lt(s, x ## v ## _pu, y ## v ## _pu, pred, \
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&mx, ref_idx_curr, ref_idx) |
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mv_mp_mode_mx_lt(s, \
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(x ## v) >> s->sps->log2_min_pu_size, \
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(y ## v) >> s->sps->log2_min_pu_size, \
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pred, &mx, ref_idx_curr, ref_idx) |
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void ff_hevc_luma_mv_mvp_mode(HEVCContext *s, int x0, int y0, int nPbW, |
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int nPbH, int log2_cb_size, int part_idx, |
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@ -590,30 +585,22 @@ void ff_hevc_luma_mv_mvp_mode(HEVCContext *s, int x0, int y0, int nPbW, |
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HEVCLocalContext *lc = s->HEVClc; |
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MvField *tab_mvf = s->ref->tab_mvf; |
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int isScaledFlag_L0 = 0; |
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int availableFlagLXA0 = 0; |
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int availableFlagLXB0 = 0; |
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int availableFlagLXA0 = 1; |
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int availableFlagLXB0 = 1; |
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int numMVPCandLX = 0; |
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int min_pu_width = s->sps->min_pu_width; |
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int xA0, yA0; |
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int xA0_pu, yA0_pu; |
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int is_available_a0; |
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int xA1, yA1; |
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int xA1_pu, yA1_pu; |
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int is_available_a1; |
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int xB0, yB0; |
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int xB0_pu, yB0_pu; |
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int is_available_b0; |
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int xB1, yB1; |
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int xB1_pu = 0, yB1_pu = 0; |
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int is_available_b1 = 0; |
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int is_available_b1; |
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int xB2, yB2; |
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int xB2_pu = 0, yB2_pu = 0; |
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int is_available_b2 = 0; |
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int is_available_b2; |
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Mv mvpcand_list[2] = { { 0 } }; |
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Mv mxA; |
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Mv mxB; |
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@ -621,19 +608,12 @@ void ff_hevc_luma_mv_mvp_mode(HEVCContext *s, int x0, int y0, int nPbW, |
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int ref_idx = 0; |
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int pred_flag_index_l0; |
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int pred_flag_index_l1; |
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int x0b = x0 & ((1 << s->sps->log2_ctb_size) - 1); |
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int y0b = y0 & ((1 << s->sps->log2_ctb_size) - 1); |
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int cand_up = (lc->ctb_up_flag || y0b); |
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int cand_left = (lc->ctb_left_flag || x0b); |
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int cand_up_left = |
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(!x0b && !y0b) ? lc->ctb_up_left_flag : cand_left && cand_up; |
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int cand_up_right = |
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(x0b + nPbW == (1 << s->sps->log2_ctb_size) || |
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x0 + nPbW >= lc->end_of_tiles_x) ? lc->ctb_up_right_flag && !y0b |
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: cand_up; |
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int cand_bottom_left = (y0 + nPbH >= lc->end_of_tiles_y) ? 0 : cand_left; |
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const int cand_bottom_left = lc->na.cand_bottom_left; |
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const int cand_left = lc->na.cand_left; |
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const int cand_up_left = lc->na.cand_up_left; |
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const int cand_up = lc->na.cand_up; |
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const int cand_up_right = lc->na.cand_up_right_sap; |
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ref_idx_curr = LX; |
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ref_idx = mv->ref_idx[LX]; |
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pred_flag_index_l0 = LX; |
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@ -642,8 +622,6 @@ void ff_hevc_luma_mv_mvp_mode(HEVCContext *s, int x0, int y0, int nPbW, |
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// left bottom spatial candidate
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xA0 = x0 - 1; |
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yA0 = y0 + nPbH; |
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xA0_pu = xA0 >> s->sps->log2_min_pu_size; |
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yA0_pu = yA0 >> s->sps->log2_min_pu_size; |
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is_available_a0 = AVAILABLE(cand_bottom_left, A0) && |
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yA0 < s->sps->height && |
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@ -652,89 +630,99 @@ void ff_hevc_luma_mv_mvp_mode(HEVCContext *s, int x0, int y0, int nPbW, |
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//left spatial merge candidate
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xA1 = x0 - 1; |
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yA1 = y0 + nPbH - 1; |
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xA1_pu = xA1 >> s->sps->log2_min_pu_size; |
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yA1_pu = yA1 >> s->sps->log2_min_pu_size; |
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is_available_a1 = AVAILABLE(cand_left, A1); |
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if (is_available_a0 || is_available_a1) |
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isScaledFlag_L0 = 1; |
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if (is_available_a0) { |
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availableFlagLXA0 = MP_MX(A0, pred_flag_index_l0, mxA); |
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if (!availableFlagLXA0) |
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availableFlagLXA0 = MP_MX(A0, pred_flag_index_l1, mxA); |
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} |
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if (is_available_a1 && !availableFlagLXA0) { |
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availableFlagLXA0 = MP_MX(A1, pred_flag_index_l0, mxA); |
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if (!availableFlagLXA0) |
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availableFlagLXA0 = MP_MX(A1, pred_flag_index_l1, mxA); |
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if (MP_MX(A0, pred_flag_index_l0, mxA)) { |
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goto b_candidates; |
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} |
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if (MP_MX(A0, pred_flag_index_l1, mxA)) { |
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goto b_candidates; |
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} |
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} |
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if (is_available_a0 && !availableFlagLXA0) { |
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availableFlagLXA0 = MP_MX_LT(A0, pred_flag_index_l0, mxA); |
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if (!availableFlagLXA0) |
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availableFlagLXA0 = MP_MX_LT(A0, pred_flag_index_l1, mxA); |
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if (is_available_a1) { |
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if (MP_MX(A1, pred_flag_index_l0, mxA)) { |
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goto b_candidates; |
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} |
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if (MP_MX(A1, pred_flag_index_l1, mxA)) { |
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goto b_candidates; |
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} |
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} |
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if (is_available_a1 && !availableFlagLXA0) { |
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availableFlagLXA0 = MP_MX_LT(A1, pred_flag_index_l0, mxA); |
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if (!availableFlagLXA0) |
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availableFlagLXA0 = MP_MX_LT(A1, pred_flag_index_l1, mxA); |
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if (is_available_a0) { |
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if (MP_MX_LT(A0, pred_flag_index_l0, mxA)) { |
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goto b_candidates; |
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} |
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if (MP_MX_LT(A0, pred_flag_index_l1, mxA)) { |
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goto b_candidates; |
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} |
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} |
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if(availableFlagLXA0 && !mvp_lx_flag) { |
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mv->mv[LX] = mxA; |
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return; |
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if (is_available_a1) { |
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if (MP_MX_LT(A1, pred_flag_index_l0, mxA)) { |
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goto b_candidates; |
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} |
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if (MP_MX_LT(A1, pred_flag_index_l1, mxA)) { |
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goto b_candidates; |
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} |
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} |
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availableFlagLXA0 = 0; |
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b_candidates: |
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// B candidates
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// above right spatial merge candidate
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xB0 = x0 + nPbW; |
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yB0 = y0 - 1; |
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xB0_pu = xB0 >> s->sps->log2_min_pu_size; |
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yB0_pu = yB0 >> s->sps->log2_min_pu_size; |
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is_available_b0 = PRED_BLOCK_AVAILABLE(B0) && AVAILABLE(cand_up_right, B0); |
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is_available_b0 = AVAILABLE(cand_up_right, B0) && |
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xB0 < s->sps->width && |
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PRED_BLOCK_AVAILABLE(B0); |
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if (is_available_b0) { |
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availableFlagLXB0 = MP_MX(B0, pred_flag_index_l0, mxB); |
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if (!availableFlagLXB0) |
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availableFlagLXB0 = MP_MX(B0, pred_flag_index_l1, mxB); |
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if (MP_MX(B0, pred_flag_index_l0, mxB)) { |
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goto scalef; |
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} |
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if (MP_MX(B0, pred_flag_index_l1, mxB)) { |
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goto scalef; |
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} |
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} |
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if (!availableFlagLXB0) { |
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// above spatial merge candidate
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xB1 = x0 + nPbW - 1; |
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yB1 = y0 - 1; |
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xB1_pu = xB1 >> s->sps->log2_min_pu_size; |
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yB1_pu = yB1 >> s->sps->log2_min_pu_size; |
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// above spatial merge candidate
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xB1 = x0 + nPbW - 1; |
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yB1 = y0 - 1; |
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is_available_b1 = AVAILABLE(cand_up, B1); |
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is_available_b1 = AVAILABLE(cand_up, B1); |
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if (is_available_b1) { |
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availableFlagLXB0 = MP_MX(B1, pred_flag_index_l0, mxB); |
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if (!availableFlagLXB0) |
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availableFlagLXB0 = MP_MX(B1, pred_flag_index_l1, mxB); |
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if (is_available_b1) { |
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if (MP_MX(B1, pred_flag_index_l0, mxB)) { |
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goto scalef; |
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} |
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if (MP_MX(B1, pred_flag_index_l1, mxB)) { |
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goto scalef; |
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} |
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} |
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if (!availableFlagLXB0) { |
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// above left spatial merge candidate
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xB2 = x0 - 1; |
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yB2 = y0 - 1; |
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xB2_pu = xB2 >> s->sps->log2_min_pu_size; |
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yB2_pu = yB2 >> s->sps->log2_min_pu_size; |
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is_available_b2 = AVAILABLE(cand_up_left, B2); |
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// above left spatial merge candidate
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xB2 = x0 - 1; |
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yB2 = y0 - 1; |
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is_available_b2 = AVAILABLE(cand_up_left, B2); |
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if (is_available_b2) { |
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availableFlagLXB0 = MP_MX(B2, pred_flag_index_l0, mxB); |
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if (!availableFlagLXB0) |
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availableFlagLXB0 = MP_MX(B2, pred_flag_index_l1, mxB); |
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if (is_available_b2) { |
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if (MP_MX(B2, pred_flag_index_l0, mxB)) { |
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goto scalef; |
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} |
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if (MP_MX(B2, pred_flag_index_l1, mxB)) { |
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goto scalef; |
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} |
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} |
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availableFlagLXB0 = 0; |
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if (isScaledFlag_L0 == 0) { |
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scalef: |
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if (!isScaledFlag_L0) { |
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if (availableFlagLXB0) { |
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availableFlagLXA0 = 1; |
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mxA = mxB; |
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