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https://github.com/ultravideo/uvg266.git
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[DepQuant] Working but not necessarily improving
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5236bc93be
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5abe9e57c6
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@ -729,7 +729,7 @@ static void xDecide(
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}
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unsigned templateAbsCompare(coeff_t sum)
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static INLINE unsigned templateAbsCompare(coeff_t sum)
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{
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int rangeIdx = 0;
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if (sum < g_riceT[0])
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@ -758,9 +758,11 @@ unsigned templateAbsCompare(coeff_t sum)
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static INLINE void update_common_context(
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common_context * cc,
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const uint32_t scan_pos,
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const uint32_t cg_pos,
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const uint32_t width_in_sbb,
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const uint32_t height_in_sbb,
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const int sigNSbb,
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const uint32_t next_sbb_right,
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const uint32_t next_sbb_below,
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const depquant_state* prevState,
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depquant_state *currState)
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{
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@ -776,9 +778,10 @@ static INLINE void update_common_context(
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memset(sbbFlags, 0, numSbb * sizeof(uint8_t));
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memset(levels + scan_pos, 0, setCpSize);
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}
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sbbFlags[scan_pos >> 4] = !!currState->m_numSigSbb;
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sbbFlags[cg_pos] = !!currState->m_numSigSbb;
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memcpy(levels + scan_pos, currState->m_absLevelsAndCtxInit, 16 * sizeof(uint8_t));
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const int sigNSbb = ((next_sbb_right ? sbbFlags[next_sbb_right] : false) || (next_sbb_below ? sbbFlags[next_sbb_below] : false) ? 1 : 0);
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currState->m_numSigSbb = 0;
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if (prevState) {
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currState->m_remRegBins = prevState->m_remRegBins;
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@ -829,11 +832,13 @@ static INLINE void update_common_context(
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static INLINE void updateStateEOS(
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depquant_state * state,
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const uint32_t scan_pos,
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const uint32_t cg_pos,
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const uint32_t sigCtxOffsetNext,
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const uint32_t gtxCtxOffsetNext,
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const uint32_t width_in_sbb,
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const uint32_t height_in_sbb,
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const uint32_t sigNSbb,
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const uint32_t next_sbb_right,
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const uint32_t next_sbb_below,
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const depquant_state* prevStates,
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const depquant_state* skipStates,
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const Decision *decision)
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@ -862,7 +867,7 @@ static INLINE void updateStateEOS(
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uint8_t* temp = (uint8_t*)(&state->m_absLevelsAndCtxInit[scan_pos & 15]);
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*temp = (uint8_t)MIN(255, decision->absLevel);
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update_common_context(state->m_commonCtx, scan_pos, width_in_sbb, height_in_sbb, sigNSbb, prvState, state);
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update_common_context(state->m_commonCtx, scan_pos, cg_pos, width_in_sbb, height_in_sbb, next_sbb_right, next_sbb_below,prvState, state);
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coeff_t tinit = state->m_absLevelsAndCtxInit[8 + ((scan_pos - 1) & 15)];
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coeff_t sumNum = tinit & 7;
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@ -1063,13 +1068,15 @@ static void xDecideAndUpdate(
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context_store* ctxs,
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const coeff_t absCoeff,
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const uint32_t scan_pos,
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const uint32_t cg_pos,
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const uint32_t pos_x,
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const uint32_t pos_y,
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const uint32_t sigCtxOffsetNext,
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const uint32_t gtxCtxOffsetNext,
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const uint32_t width_in_sbb,
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const uint32_t height_in_sbb,
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const uint32_t sigNSbb,
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const uint32_t next_sbb_right,
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const uint32_t next_sbb_below,
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const NbInfoSbb next_nb_info_ssb,
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bool zeroOut,
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coeff_t quantCoeff,
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@ -1094,10 +1101,10 @@ static void xDecideAndUpdate(
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if (scan_pos) {
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if (!(scan_pos & 15)) {
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SWAP(ctxs->m_common_context.m_currSbbCtx, ctxs->m_common_context.m_prevSbbCtx, SbbCtx*);
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updateStateEOS(&ctxs->m_currStates[0], scan_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, sigNSbb, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[0]);
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updateStateEOS(&ctxs->m_currStates[1], scan_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, sigNSbb, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[1]);
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updateStateEOS(&ctxs->m_currStates[2], scan_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, sigNSbb, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[2]);
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updateStateEOS(&ctxs->m_currStates[3], scan_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, sigNSbb, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[3]);
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updateStateEOS(&ctxs->m_currStates[0], scan_pos, cg_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, next_sbb_right, next_sbb_below, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[0]);
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updateStateEOS(&ctxs->m_currStates[1], scan_pos, cg_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, next_sbb_right, next_sbb_below, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[1]);
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updateStateEOS(&ctxs->m_currStates[2], scan_pos, cg_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, next_sbb_right, next_sbb_below, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[2]);
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updateStateEOS(&ctxs->m_currStates[3], scan_pos, cg_pos, sigCtxOffsetNext, gtxCtxOffsetNext, width_in_sbb, height_in_sbb, next_sbb_right, next_sbb_below, ctxs->m_prevStates, ctxs->m_skipStates, &decisions[3]);
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memcpy(decisions + 4, decisions, 4 * sizeof(Decision));
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} else if (!zeroOut) {
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@ -1218,10 +1225,9 @@ int uvg_dep_quant(
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dep_quant_context.m_allStates[k].effHeight = effectHeight;
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dep_quant_context.m_allStates[k].effWidth = effectWidth;
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dep_quant_context.m_allStates[k].m_commonCtx = &dep_quant_context.m_common_context;
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int i1 = (k & 3) ? (k & 3) - 1 : 0;
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dep_quant_context.m_allStates[k].m_stateId = i1;
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dep_quant_context.m_allStates[k].m_stateId = k & 3;
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for (int i = 0; i < (compID == COLOR_Y ? 12 : 8); ++i) {
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dep_quant_context.m_allStates[k].m_sigFracBitsArray[i] = rate_estimator.m_sigFracBits[i1][i];
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dep_quant_context.m_allStates[k].m_sigFracBitsArray[i] = rate_estimator.m_sigFracBits[(k & 3 ? (k & 3) - 1 : 0)][i];
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}
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for (int i = 0; i < (compID == COLOR_Y ? 21 : 11); ++i) {
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dep_quant_context.m_allStates[k].m_gtxFracBitsArray[i] = rate_estimator.m_gtxFracBits[i];
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@ -1247,17 +1253,21 @@ int uvg_dep_quant(
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uint32_t blkpos = scan[scanIdx];
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uint32_t pos_y = blkpos >> log2_tr_width;
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uint32_t pos_x = blkpos - (pos_y << log2_tr_width);
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uint32_t cg_pos = cg_scan[scanIdx >> 4];
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uint32_t cg_blockpos = scanIdx ? cg_scan[(scanIdx -1) >> 4] : 0;
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uint32_t cg_pos_y = cg_blockpos / height_in_sbb;
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uint32_t cg_pos_x = cg_blockpos - (cg_pos_y * height_in_sbb);
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uint32_t diag = cg_pos_y + cg_pos_x;
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uint32_t blkpos_next = scan[scanIdx ? scanIdx - 1 : 0];
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uint32_t pos_y_next = blkpos_next >> log2_tr_width;
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uint32_t pos_x_next = blkpos_next - (pos_y << log2_tr_width);
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uint32_t cg_blockpos_next = scanIdx ? cg_scan[(scanIdx -1) >> 4] : 0;
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uint32_t cg_pos_y_next = cg_blockpos_next / height_in_sbb;
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uint32_t cg_pos_x_next = cg_blockpos_next - (cg_pos_y_next * height_in_sbb);
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uint32_t diag = pos_y_next + pos_x_next;
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uint32_t sig_ctx_offset = compID == COLOR_Y ? (diag < 2 ? 8 : diag < 5 ? 4 : 0) : (diag < 2 ? 4 : 0);
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uint32_t gtx_ctx_offset = compID == COLOR_Y ? (diag < 1 ? 16 : diag < 3 ? 11 : diag < 10 ? 6 : 1) : (diag < 1 ? 6 : 1);
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uint32_t nextSbbRight = (cg_pos_x < width_in_sbb - 1 ? cg_blockpos + 1 : 0);
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uint32_t nextSbbBelow = (cg_pos_y < height_in_sbb - 1 ? cg_blockpos + width_in_sbb : 0);
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uint32_t nextSbbRight = (cg_pos_x_next < width_in_sbb - 1 ? cg_blockpos_next + 1 : 0);
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uint32_t nextSbbBelow = (cg_pos_y_next < height_in_sbb - 1 ? cg_blockpos_next + width_in_sbb : 0);
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if (enableScalingLists) {
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init_quant_block(state, &dep_quant_context.m_quant, cur_tu, log2_tr_width, log2_tr_height, compID, needs_block_size_trafo_scale, q_coeff[blkpos]);
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@ -1267,38 +1277,47 @@ int uvg_dep_quant(
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&dep_quant_context,
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abs(srcCoeff[blkpos]),
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scanIdx,
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cg_pos,
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pos_x,
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pos_y,
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sig_ctx_offset,
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gtx_ctx_offset,
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width_in_sbb,
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height_in_sbb,
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nextSbbRight || nextSbbBelow,
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nextSbbRight,
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nextSbbBelow,
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encoder->m_scanId2NbInfoSbbArray[log2_tr_width][log2_tr_height][scanIdx ? scanIdx - 1 : 0],
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(zeroOut && (pos_x >= effWidth || pos_y >= effHeight)),
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q_coeff[blkpos],
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effectWidth,
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effectHeight
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); //tu.cu->slice->getReverseLastSigCoeffFlag());
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} else {
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}
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else {
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xDecideAndUpdate(
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&rate_estimator,
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&dep_quant_context,
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abs(srcCoeff[blkpos]),
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scanIdx,
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cg_pos,
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pos_x,
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pos_y,
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sig_ctx_offset,
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gtx_ctx_offset,
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width_in_sbb,
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height_in_sbb,
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nextSbbRight || nextSbbBelow,
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nextSbbRight,
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nextSbbBelow,
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encoder->m_scanId2NbInfoSbbArray[log2_tr_width][log2_tr_height][scanIdx ? scanIdx - 1 : 0],
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(zeroOut && (pos_x >= effWidth || pos_y >= effHeight)),
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default_quant_coeff,
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effectWidth,
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effectHeight); //tu.cu->slice->getReverseLastSigCoeffFlag());
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}
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Decision* d = dep_quant_context.m_trellis[scanIdx];
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Decision temp[8];
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memcpy(temp, d, sizeof(Decision) * 8);
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d++;
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}
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//===== find best path =====
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@ -1361,7 +1380,7 @@ void uvg_dep_quant_dequant(
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}
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//----- set dequant parameters -----
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const int qpDQ = uvg_get_scaled_qp(compID, state->qp, (encoder->bitdepth - 8) * 6, encoder->qp_map[0]); + 1;
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const int qpDQ = uvg_get_scaled_qp(compID, state->qp, (encoder->bitdepth - 8) * 6, encoder->qp_map[0]) + 1;
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const int qpPer = qpDQ / 6;
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const int qpRem = qpDQ - 6 * qpPer;
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const int channelBitDepth = encoder->bitdepth;
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@ -133,7 +133,7 @@ void uvg_encode_coeff_nxn_generic(encoder_state_t * const state,
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uint32_t quant_state_transition_table = 0; //ToDo: dep quant enable changes this
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uint32_t quant_state_transition_table = state->encoder_control->cfg.dep_quant ? 32040 : 0;
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int32_t quant_state = 0;
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uint8_t ctx_offset[16];
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int32_t temp_diag = -1;
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