Unfork ANS decode_coefs
This is less code and more like what we have in aom/master. Change-Id: I3ca2b674e4ad9e2e211d08bb51d78549e8b63a54
This commit is contained in:
		@@ -39,7 +39,6 @@
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    if (counts) ++coef_counts[band][ctx][token]; \
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  } while (0)
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#if !CONFIG_ANS
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static INLINE int read_coeff(const aom_prob *probs, int n, aom_reader *r) {
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  int i, val = 0;
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  for (i = 0; i < n; ++i) val = (val << 1) | aom_read(r, probs[i]);
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@@ -75,6 +74,11 @@ static int decode_coefs(const MACROBLOCKD *xd, PLANE_TYPE type,
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  const aom_prob(*coef_probs)[COEFF_CONTEXTS][UNCONSTRAINED_NODES] =
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      fc->coef_probs[tx_size_ctx][type][ref];
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  const aom_prob *prob;
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#if CONFIG_ANS
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  const rans_lut(*coef_cdfs)[COEFF_CONTEXTS] =
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      fc->coef_cdfs[tx_size_ctx][type][ref];
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  const rans_lut *cdf;
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#endif  // CONFIG_ANS
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  unsigned int(*coef_counts)[COEFF_CONTEXTS][UNCONSTRAINED_NODES + 1];
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  unsigned int(*eob_branch_count)[COEFF_CONTEXTS];
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  uint8_t token_cache[MAX_TX_SQUARE];
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@@ -160,7 +164,52 @@ static int decode_coefs(const MACROBLOCKD *xd, PLANE_TYPE type,
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      dqv_val = &dq_val[band][0];
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#endif  // CONFIG_NEW_QUANT
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    }
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#if CONFIG_ANS
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    cdf = &coef_cdfs[band][ctx];
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    token = ONE_TOKEN + rans_read(r, *cdf);
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    INCREMENT_COUNT(ONE_TOKEN + (token > ONE_TOKEN));
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    switch (token) {
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      case ONE_TOKEN:
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      case TWO_TOKEN:
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      case THREE_TOKEN:
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      case FOUR_TOKEN: val = token; break;
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      case CATEGORY1_TOKEN:
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        val = CAT1_MIN_VAL + read_coeff(cat1_prob, 1, r);
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        break;
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      case CATEGORY2_TOKEN:
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        val = CAT2_MIN_VAL + read_coeff(cat2_prob, 2, r);
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        break;
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      case CATEGORY3_TOKEN:
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        val = CAT3_MIN_VAL + read_coeff(cat3_prob, 3, r);
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        break;
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      case CATEGORY4_TOKEN:
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        val = CAT4_MIN_VAL + read_coeff(cat4_prob, 4, r);
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        break;
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      case CATEGORY5_TOKEN:
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        val = CAT5_MIN_VAL + read_coeff(cat5_prob, 5, r);
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        break;
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      case CATEGORY6_TOKEN: {
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        const int skip_bits = TX_SIZES - 1 - txsize_sqr_up_map[tx_size];
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        const uint8_t *cat6p = cat6_prob + skip_bits;
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#if CONFIG_AOM_HIGHBITDEPTH
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        switch (xd->bd) {
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          case AOM_BITS_8:
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            val = CAT6_MIN_VAL + read_coeff(cat6p, 14 - skip_bits, r);
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            break;
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          case AOM_BITS_10:
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            val = CAT6_MIN_VAL + read_coeff(cat6p, 16 - skip_bits, r);
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            break;
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          case AOM_BITS_12:
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            val = CAT6_MIN_VAL + read_coeff(cat6p, 18 - skip_bits, r);
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            break;
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          default: assert(0); return -1;
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        }
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#else
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        val = CAT6_MIN_VAL + read_coeff(cat6p, 14 - skip_bits, r);
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#endif
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      } break;
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    }
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#else
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    if (!aom_read(r, prob[ONE_CONTEXT_NODE])) {
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      INCREMENT_COUNT(ONE_TOKEN);
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      token = ONE_TOKEN;
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@@ -211,8 +260,8 @@ static int decode_coefs(const MACROBLOCKD *xd, PLANE_TYPE type,
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        }
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      }
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    }
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#endif  // CONFIG_ANS
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#if CONFIG_NEW_QUANT
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    v = av1_dequant_abscoeff_nuq(val, dqv, dqv_val);
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    v = dq_shift ? ROUND_POWER_OF_TWO(v, dq_shift) : v;
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#else
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@@ -240,187 +289,6 @@ static int decode_coefs(const MACROBLOCKD *xd, PLANE_TYPE type,
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  return c;
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}
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#else  // !CONFIG_ANS
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static INLINE int read_coeff(const aom_prob *const probs, int n,
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                             struct AnsDecoder *const ans) {
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  int i, val = 0;
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  for (i = 0; i < n; ++i) val = (val << 1) | uabs_read(ans, probs[i]);
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  return val;
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}
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static int decode_coefs_ans(const MACROBLOCKD *const xd, PLANE_TYPE type,
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                            tran_low_t *dqcoeff, TX_SIZE tx_size,
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                            TX_TYPE tx_type, const int16_t *dq,
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#if CONFIG_NEW_QUANT
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                            dequant_val_type_nuq *dq_val,
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#endif  // CONFIG_NEW_QUANT
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                            int ctx, const int16_t *scan, const int16_t *nb,
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                            struct AnsDecoder *const ans) {
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  FRAME_COUNTS *counts = xd->counts;
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  const int max_eob = get_tx2d_size(tx_size);
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  const FRAME_CONTEXT *const fc = xd->fc;
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  const int ref = is_inter_block(&xd->mi[0]->mbmi);
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  int band, c = 0;
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  const int tx_size_ctx = txsize_sqr_map[tx_size];
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  const aom_prob(*coef_probs)[COEFF_CONTEXTS][UNCONSTRAINED_NODES] =
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      fc->coef_probs[tx_size_ctx][type][ref];
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  const rans_lut(*coef_cdfs)[COEFF_CONTEXTS] =
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      fc->coef_cdfs[tx_size_ctx][type][ref];
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  const aom_prob *prob;
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  const rans_lut *cdf;
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  unsigned int(*coef_counts)[COEFF_CONTEXTS][UNCONSTRAINED_NODES + 1];
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  unsigned int(*eob_branch_count)[COEFF_CONTEXTS];
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  uint8_t token_cache[MAX_TX_SQUARE];
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  const uint8_t *band_translate = get_band_translate(tx_size);
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  int dq_shift;
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  int v, token;
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  int16_t dqv = dq[0];
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#if CONFIG_NEW_QUANT
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  const tran_low_t *dqv_val = &dq_val[0][0];
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#endif  // CONFIG_NEW_QUANT
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  const uint8_t *cat1_prob;
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  const uint8_t *cat2_prob;
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  const uint8_t *cat3_prob;
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  const uint8_t *cat4_prob;
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  const uint8_t *cat5_prob;
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  const uint8_t *cat6_prob;
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  dq_shift = get_tx_scale(xd, tx_type, tx_size);
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  if (counts) {
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    coef_counts = counts->coef[tx_size_ctx][type][ref];
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    eob_branch_count = counts->eob_branch[tx_size_ctx][type][ref];
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  }
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#if CONFIG_AOM_HIGHBITDEPTH
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  if (xd->bd > AOM_BITS_8) {
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    if (xd->bd == AOM_BITS_10) {
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      cat1_prob = av1_cat1_prob_high10;
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      cat2_prob = av1_cat2_prob_high10;
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      cat3_prob = av1_cat3_prob_high10;
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      cat4_prob = av1_cat4_prob_high10;
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      cat5_prob = av1_cat5_prob_high10;
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      cat6_prob = av1_cat6_prob_high10;
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    } else {
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      cat1_prob = av1_cat1_prob_high12;
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      cat2_prob = av1_cat2_prob_high12;
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      cat3_prob = av1_cat3_prob_high12;
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      cat4_prob = av1_cat4_prob_high12;
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      cat5_prob = av1_cat5_prob_high12;
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      cat6_prob = av1_cat6_prob_high12;
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    }
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  } else {
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    cat1_prob = av1_cat1_prob;
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    cat2_prob = av1_cat2_prob;
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    cat3_prob = av1_cat3_prob;
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    cat4_prob = av1_cat4_prob;
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    cat5_prob = av1_cat5_prob;
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    cat6_prob = av1_cat6_prob;
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  }
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#else
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  cat1_prob = av1_cat1_prob;
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  cat2_prob = av1_cat2_prob;
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  cat3_prob = av1_cat3_prob;
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  cat4_prob = av1_cat4_prob;
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  cat5_prob = av1_cat5_prob;
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  cat6_prob = av1_cat6_prob;
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#endif
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  while (c < max_eob) {
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    int val = -1;
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    band = *band_translate++;
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    prob = coef_probs[band][ctx];
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    if (counts) ++eob_branch_count[band][ctx];
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    if (!uabs_read(ans, prob[EOB_CONTEXT_NODE])) {
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      INCREMENT_COUNT(EOB_MODEL_TOKEN);
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      break;
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    }
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#if CONFIG_NEW_QUANT
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    dqv_val = &dq_val[band][0];
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#endif  // CONFIG_NEW_QUANT
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    while (!uabs_read(ans, prob[ZERO_CONTEXT_NODE])) {
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      INCREMENT_COUNT(ZERO_TOKEN);
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      dqv = dq[1];
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      token_cache[scan[c]] = 0;
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      ++c;
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      if (c >= max_eob) return c;  // zero tokens at the end (no eob token)
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      ctx = get_coef_context(nb, token_cache, c);
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      band = *band_translate++;
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      prob = coef_probs[band][ctx];
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    }
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    cdf = &coef_cdfs[band][ctx];
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    token = ONE_TOKEN + rans_read(ans, *cdf);
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    INCREMENT_COUNT(ONE_TOKEN + (token > ONE_TOKEN));
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    switch (token) {
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      case ONE_TOKEN:
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      case TWO_TOKEN:
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      case THREE_TOKEN:
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      case FOUR_TOKEN: val = token; break;
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      case CATEGORY1_TOKEN:
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        val = CAT1_MIN_VAL + read_coeff(cat1_prob, 1, ans);
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        break;
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      case CATEGORY2_TOKEN:
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        val = CAT2_MIN_VAL + read_coeff(cat2_prob, 2, ans);
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        break;
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      case CATEGORY3_TOKEN:
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        val = CAT3_MIN_VAL + read_coeff(cat3_prob, 3, ans);
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        break;
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      case CATEGORY4_TOKEN:
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        val = CAT4_MIN_VAL + read_coeff(cat4_prob, 4, ans);
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        break;
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      case CATEGORY5_TOKEN:
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        val = CAT5_MIN_VAL + read_coeff(cat5_prob, 5, ans);
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        break;
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      case CATEGORY6_TOKEN: {
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        const int skip_bits = TX_SIZES - 1 - txsize_sqr_up_map[tx_size];
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        const uint8_t *cat6p = cat6_prob + skip_bits;
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#if CONFIG_AOM_HIGHBITDEPTH
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        switch (xd->bd) {
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          case AOM_BITS_8:
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            val = CAT6_MIN_VAL + read_coeff(cat6p, 14 - skip_bits, ans);
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            break;
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          case AOM_BITS_10:
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            val = CAT6_MIN_VAL + read_coeff(cat6p, 16 - skip_bits, ans);
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            break;
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          case AOM_BITS_12:
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            val = CAT6_MIN_VAL + read_coeff(cat6p, 18 - skip_bits, ans);
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            break;
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          default: assert(0); return -1;
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        }
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#else
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        val = CAT6_MIN_VAL + read_coeff(cat6p, 14 - skip_bits, ans);
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#endif
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      } break;
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    }
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#if CONFIG_NEW_QUANT
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    v = av1_dequant_abscoeff_nuq(val, dqv, dqv_val);
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    v = dq_shift ? ROUND_POWER_OF_TWO(v, dq_shift) : v;
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#else
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    v = (val * dqv) >> dq_shift;
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#endif  // CONFIG_NEW_QUANT
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#if CONFIG_COEFFICIENT_RANGE_CHECKING
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#if CONFIG_AOM_HIGHBITDEPTH
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    dqcoeff[scan[c]] =
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        highbd_check_range((uabs_read_bit(ans) ? -v : v), xd->bd);
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#else
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    dqcoeff[scan[c]] = check_range(uabs_read_bit(ans) ? -v : v);
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#endif  // CONFIG_AOM_HIGHBITDEPTH
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#else
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    dqcoeff[scan[c]] = uabs_read_bit(ans) ? -v : v;
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#endif  // CONFIG_COEFFICIENT_RANGE_CHECKING
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    token_cache[scan[c]] = av1_pt_energy_class[token];
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    ++c;
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    ctx = get_coef_context(nb, token_cache, c);
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    dqv = dq[1];
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  }
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  return c;
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}
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#endif  // !CONFIG_ANS
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// TODO(slavarnway): Decode version of av1_set_context.  Modify
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// av1_set_context
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@@ -511,7 +379,6 @@ int av1_decode_block_tokens(MACROBLOCKD *const xd, int plane,
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      get_dq_profile_from_ctx(xd->qindex[seg_id], ctx, ref, pd->plane_type);
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#endif  //  CONFIG_NEW_QUANT
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#if !CONFIG_ANS
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#if CONFIG_AOM_QM
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  const int eob =
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      decode_coefs(xd, pd->plane_type, pd->dqcoeff, tx_size, tx_type, dequant,
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@@ -524,14 +391,6 @@ int av1_decode_block_tokens(MACROBLOCKD *const xd, int plane,
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#endif  // CONFIG_NEW_QUANT
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                   ctx, sc->scan, sc->neighbors, r);
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#endif  // CONFIG_AOM_QM
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#else
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  const int eob = decode_coefs_ans(xd, pd->plane_type, pd->dqcoeff, tx_size,
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                                   tx_type, dequant,
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#if CONFIG_NEW_QUANT
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                                   pd->seg_dequant_nuq[seg_id][dq],
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#endif  // CONFIG_NEW_QUANT
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                                   ctx, sc->scan, sc->neighbors, r);
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#endif  // !CONFIG_ANS
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  dec_set_contexts(xd, pd, tx_size, eob > 0, x, y);
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  /*
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  av1_set_contexts(xd, pd,
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