Merge "Change non-uniform-quant parameters" into nextgenv2
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485af9e580
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@ -20,8 +20,8 @@
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static void make_qmatrices(qm_val_t *wmatrix[NUM_QM_LEVELS][2][2][TX_SIZES],
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qm_val_t *iwmatrix[NUM_QM_LEVELS][2][2][TX_SIZES]);
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#endif
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#if CONFIG_NEW_QUANT
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#if CONFIG_NEW_QUANT
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// Bin widths expressed as a fraction over 128 of the quant stepsize,
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// for the quantization bins 0-4.
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// So a value x indicates the bin is actually factor x/128 of the
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@ -47,54 +47,54 @@ static const qprofile_type nuq_lossless[COEF_BANDS] = {
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static const qprofile_type nuq[QUANT_PROFILES][QUANT_RANGES][COEF_BANDS] = {
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{ {
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{ { 64, 128, 128 }, 0 }, // dc, band 0
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{ { 64, 128, 128 }, 0 }, // band 1
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{ { 64, 128, 128 }, 0 }, // band 2
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{ { 64, 128, 128 }, 0 }, // band 3
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{ { 64, 128, 128 }, 0 }, // band 4
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{ { 64, 128, 128 }, 0 } // band 5
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{ { 64, 128, 128 }, 8 }, // dc, band 0
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{ { 64, 128, 128 }, 10 }, // band 1
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{ { 64, 128, 128 }, 12 }, // band 2
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{ { 72, 128, 128 }, 14 }, // band 3
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{ { 76, 128, 128 }, 16 }, // band 4
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{ { 80, 128, 128 }, 18 } // band 5
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},
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{
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{ { 64, 128, 128 }, 0 }, // dc, band 0
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{ { 64, 128, 128 }, 0 }, // band 1
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{ { 64, 128, 128 }, 0 }, // band 2
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{ { 64, 128, 128 }, 0 }, // band 3
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{ { 64, 128, 128 }, 0 }, // band 4
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{ { 64, 128, 128 }, 0 } // band 5
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{ { 64, 128, 128 }, 4 }, // dc, band 0
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{ { 64, 128, 128 }, 6 }, // band 1
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{ { 64, 128, 128 }, 8 }, // band 2
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{ { 64, 128, 128 }, 10 }, // band 3
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{ { 72, 128, 128 }, 12 }, // band 4
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{ { 80, 128, 128 }, 14 } // band 5
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} },
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#if QUANT_PROFILES > 1
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{ {
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{ { 64, 128, 128 }, 0 }, // dc, band 0
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{ { 64, 128, 128 }, 0 }, // band 1
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{ { 64, 128, 128 }, 0 }, // band 2
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{ { 64, 128, 128 }, 0 }, // band 3
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{ { 64, 128, 128 }, 0 }, // band 4
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{ { 64, 128, 128 }, 0 } // band 5
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{ { 64, 128, 128 }, 6 }, // dc, band 0
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{ { 64, 128, 128 }, 8 }, // band 1
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{ { 64, 128, 128 }, 10 }, // band 2
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{ { 64, 128, 128 }, 12 }, // band 3
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{ { 72, 128, 128 }, 14 }, // band 4
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{ { 80, 128, 128 }, 16 } // band 5
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},
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{
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{ { 64, 128, 128 }, 0 }, // dc, band 0
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{ { 64, 128, 128 }, 0 }, // band 1
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{ { 64, 128, 128 }, 0 }, // band 2
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{ { 64, 128, 128 }, 0 }, // band 3
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{ { 64, 128, 128 }, 0 }, // band 4
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{ { 64, 128, 128 }, 0 } // band 5
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{ { 64, 128, 128 }, 4 }, // dc, band 0
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{ { 64, 128, 128 }, 6 }, // band 1
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{ { 64, 128, 128 }, 8 }, // band 2
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{ { 64, 128, 128 }, 10 }, // band 3
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{ { 72, 128, 128 }, 12 }, // band 4
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{ { 80, 128, 128 }, 14 } // band 5
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} },
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#if QUANT_PROFILES > 2
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{ {
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{ { 64, 128, 128 }, 0 }, // dc, band 0
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{ { 64, 128, 128 }, 0 }, // band 1
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{ { 64, 128, 128 }, 0 }, // band 2
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{ { 64, 128, 128 }, 0 }, // band 3
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{ { 64, 128, 128 }, 0 }, // band 4
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{ { 64, 128, 128 }, 0 }, // band 5
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{ { 64, 128, 128 }, 6 }, // dc, band 0
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{ { 64, 128, 128 }, 8 }, // band 1
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{ { 64, 128, 128 }, 10 }, // band 2
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{ { 64, 128, 128 }, 12 }, // band 3
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{ { 72, 128, 128 }, 14 }, // band 4
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{ { 80, 128, 128 }, 16 } // band 5
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},
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{
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{ { 64, 128, 128 }, 0 }, // dc, band 0
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{ { 64, 128, 128 }, 0 }, // band 1
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{ { 64, 128, 128 }, 0 }, // band 2
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{ { 64, 128, 128 }, 0 }, // band 3
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{ { 64, 128, 128 }, 0 }, // band 4
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{ { 64, 128, 128 }, 0 }, // band 5
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{ { 64, 128, 128 }, 4 }, // dc, band 0
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{ { 64, 128, 128 }, 6 }, // band 1
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{ { 64, 128, 128 }, 8 }, // band 2
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{ { 64, 128, 128 }, 10 }, // band 3
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{ { 72, 128, 128 }, 12 }, // band 4
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{ { 80, 128, 128 }, 14 } // band 5
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} }
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#endif // QUANT_PROFILES > 2
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#endif // QUANT_PROFILES > 1
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@ -70,7 +70,10 @@ void av1_get_dequant_val_nuq(int q, int qindex, int band, tran_low_t *dq,
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tran_low_t av1_dequant_abscoeff_nuq(int v, int q, const tran_low_t *dq);
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tran_low_t av1_dequant_coeff_nuq(int v, int q, const tran_low_t *dq);
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static INLINE int get_dq_profile_from_ctx(int q_ctx) {
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static INLINE int get_dq_profile_from_ctx(int q_ctx, int is_inter,
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PLANE_TYPE plane_type) {
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if (plane_type == PLANE_TYPE_UV) return 0;
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if (!is_inter) return QUANT_PROFILES - 1;
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return AOMMIN(q_ctx, QUANT_PROFILES - 1);
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}
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#endif // CONFIG_NEW_QUANT
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@ -505,7 +505,8 @@ int av1_decode_block_tokens(MACROBLOCKD *const xd, int plane,
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const int ctx =
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get_entropy_context(tx_size, pd->above_context + x, pd->left_context + y);
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#if CONFIG_NEW_QUANT
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int dq = get_dq_profile_from_ctx(ctx);
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const int ref = is_inter_block(&xd->mi[0]->mbmi);
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int dq = get_dq_profile_from_ctx(ctx, ref, pd->plane_type);
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#endif // CONFIG_NEW_QUANT
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#if !CONFIG_ANS
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@ -96,7 +96,7 @@ int av1_optimize_b(MACROBLOCK *mb, int plane, int block, TX_SIZE tx_size,
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#endif
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const int shift = get_tx_scale(xd, tx_type, tx_size);
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#if CONFIG_NEW_QUANT
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int dq = get_dq_profile_from_ctx(ctx);
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int dq = get_dq_profile_from_ctx(ctx, ref, type);
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const dequant_val_type_nuq *dequant_val = pd->dequant_val_nuq[dq];
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#else
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const int dq_step[2] = { dequant_ptr[0] >> shift, dequant_ptr[1] >> shift };
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@ -517,12 +517,12 @@ void av1_xform_quant_nuq(MACROBLOCK *x, int plane, int block, int blk_row,
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const struct macroblockd_plane *const pd = &xd->plane[plane];
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PLANE_TYPE plane_type = (plane == 0) ? PLANE_TYPE_Y : PLANE_TYPE_UV;
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TX_TYPE tx_type = get_tx_type(plane_type, xd, block, tx_size);
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const scan_order *const scan_order =
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get_scan(tx_size, tx_type, is_inter_block(&xd->mi[0]->mbmi));
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const int is_inter = is_inter_block(&xd->mi[0]->mbmi);
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const scan_order *const scan_order = get_scan(tx_size, tx_type, is_inter);
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tran_low_t *const coeff = BLOCK_OFFSET(p->coeff, block);
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tran_low_t *const qcoeff = BLOCK_OFFSET(p->qcoeff, block);
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tran_low_t *const dqcoeff = BLOCK_OFFSET(pd->dqcoeff, block);
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int dq = get_dq_profile_from_ctx(ctx);
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int dq = get_dq_profile_from_ctx(ctx, is_inter, plane_type);
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uint16_t *const eob = &p->eobs[block];
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const int diff_stride = 4 * num_4x4_blocks_wide_lookup[plane_bsize];
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const int16_t *src_diff;
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@ -584,11 +584,11 @@ void av1_xform_quant_fp_nuq(MACROBLOCK *x, int plane, int block, int blk_row,
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MACROBLOCKD *const xd = &x->e_mbd;
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const struct macroblock_plane *const p = &x->plane[plane];
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const struct macroblockd_plane *const pd = &xd->plane[plane];
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int dq = get_dq_profile_from_ctx(ctx);
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const int is_inter = is_inter_block(&xd->mi[0]->mbmi);
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PLANE_TYPE plane_type = (plane == 0) ? PLANE_TYPE_Y : PLANE_TYPE_UV;
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TX_TYPE tx_type = get_tx_type(plane_type, xd, block, tx_size);
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const scan_order *const scan_order =
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get_scan(tx_size, tx_type, is_inter_block(&xd->mi[0]->mbmi));
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const scan_order *const scan_order = get_scan(tx_size, tx_type, is_inter);
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int dq = get_dq_profile_from_ctx(ctx, is_inter, plane_type);
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tran_low_t *const coeff = BLOCK_OFFSET(p->coeff, block);
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tran_low_t *const qcoeff = BLOCK_OFFSET(p->qcoeff, block);
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tran_low_t *const dqcoeff = BLOCK_OFFSET(pd->dqcoeff, block);
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@ -660,7 +660,8 @@ void av1_xform_quant_dc_nuq(MACROBLOCK *x, int plane, int block, int blk_row,
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uint16_t *const eob = &p->eobs[block];
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const int diff_stride = 4 * num_4x4_blocks_wide_lookup[plane_bsize];
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const int16_t *src_diff;
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int dq = get_dq_profile_from_ctx(ctx);
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const int is_inter = is_inter_block(&xd->mi[0]->mbmi);
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int dq = get_dq_profile_from_ctx(ctx, is_inter, plane_type);
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FWD_TXFM_PARAM fwd_txfm_param;
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@ -720,7 +721,8 @@ void av1_xform_quant_dc_fp_nuq(MACROBLOCK *x, int plane, int block, int blk_row,
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uint16_t *const eob = &p->eobs[block];
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const int diff_stride = 4 * num_4x4_blocks_wide_lookup[plane_bsize];
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const int16_t *src_diff;
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int dq = get_dq_profile_from_ctx(ctx);
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const int is_inter = is_inter_block(&xd->mi[0]->mbmi);
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int dq = get_dq_profile_from_ctx(ctx, is_inter, plane_type);
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FWD_TXFM_PARAM fwd_txfm_param;
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