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{
xConfirmPara( m_kneeSEIInputKneePoint[i] < 1 || m_kneeSEIInputKneePoint[i] > 999, "SEIKneeFunctionInputKneePointValue must be in the range of 1 to 999");
xConfirmPara( m_kneeSEIOutputKneePoint[i] < 0 || m_kneeSEIOutputKneePoint[i] > 1000, "SEIKneeFunctionInputKneePointValue must be in the range of 0 to 1000");
if ( i > 0 )
{
xConfirmPara( m_kneeSEIInputKneePoint[i-1] >= m_kneeSEIInputKneePoint[i], "The i-th SEIKneeFunctionInputKneePointValue must be greater than the (i-1)-th value");
xConfirmPara( m_kneeSEIOutputKneePoint[i-1] > m_kneeSEIOutputKneePoint[i], "The i-th SEIKneeFunctionOutputKneePointValue must be greater than or equal to the (i-1)-th value");
}
}
}
if (m_chromaResamplingFilterSEIenabled)
{
xConfirmPara( (m_chromaFormatIDC == CHROMA_400 ), "chromaResamplingFilterSEI is not allowed to be present when ChromaFormatIDC is equal to zero (4:0:0)" );
xConfirmPara(m_vuiParametersPresentFlag && m_chromaLocInfoPresentFlag && (m_chromaSampleLocTypeTopField != m_chromaSampleLocTypeBottomField ), "When chromaResamplingFilterSEI is enabled, ChromaSampleLocTypeTopField has to be equal to ChromaSampleLocTypeBottomField" );
}
if ( m_RCEnableRateControl )
{
if ( m_RCForceIntraQP )
{
if ( m_RCInitialQP == 0 )
{
msg( WARNING, "\nInitial QP for rate control is not specified. Reset not to use force intra QP!" );
m_RCForceIntraQP = false;
}
}
xConfirmPara( m_uiDeltaQpRD > 0, "Rate control cannot be used together with slice level multiple-QP optimization!\n" );
#if U0132_TARGET_BITS_SATURATION
if ((m_RCCpbSaturationEnabled) && (m_level!=Level::NONE) && (m_profile!=Profile::NONE))
{
uint32_t uiLevelIdx = (m_level / 10) + (uint32_t)((m_level % 10) / 3); // (m_level / 30)*3 + ((m_level % 10) / 3);
xConfirmPara(m_RCCpbSize > g_uiMaxCpbSize[m_levelTier][uiLevelIdx], "RCCpbSize should be smaller than or equal to Max CPB size according to tier and level");
xConfirmPara(m_RCInitialCpbFullness > 1, "RCInitialCpbFullness should be smaller than or equal to 1");
}
#endif
}
#if U0132_TARGET_BITS_SATURATION
else
{
xConfirmPara( m_RCCpbSaturationEnabled != 0, "Target bits saturation cannot be processed without Rate control" );
}
#endif
xConfirmPara(!m_TransquantBypassEnabledFlag && m_CUTransquantBypassFlagForce, "CUTransquantBypassFlagForce cannot be 1 when TransquantBypassEnableFlag is 0");
xConfirmPara(m_log2ParallelMergeLevel < 2, "Log2ParallelMergeLevel should be larger than or equal to 2");
if (m_framePackingSEIEnabled)
{
xConfirmPara(m_framePackingSEIType < 3 || m_framePackingSEIType > 5 , "SEIFramePackingType must be in rage 3 to 5");
}
if (m_segmentedRectFramePackingSEIEnabled)
{
xConfirmPara(m_framePackingSEIEnabled , "SEISegmentedRectFramePacking must be 0 when SEIFramePacking is 1");
}
if((m_numTileColumnsMinus1 <= 0) && (m_numTileRowsMinus1 <= 0) && m_tmctsSEIEnabled)
{
msg( WARNING, "Warning: SEITempMotionConstrainedTileSets is set to false to disable temporal motion-constrained tile sets SEI message because there are no tiles enabled.\n");
m_tmctsSEIEnabled = false;
}
if(m_timeCodeSEIEnabled)
{
xConfirmPara(m_timeCodeSEINumTs > MAX_TIMECODE_SEI_SETS, "Number of time sets cannot exceed 3");
}
#if U0033_ALTERNATIVE_TRANSFER_CHARACTERISTICS_SEI
xConfirmPara(m_preferredTransferCharacteristics > 255, "transfer_characteristics_idc should not be greater than 255.");
#endif
xConfirmPara( unsigned(m_ImvMode) > 1, "ImvMode exceeds range (0 to 1)" );

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xConfirmPara( m_decodeBitstreams[0] == m_bitstreamFileName, "Debug bitstream and the output bitstream cannot be equal.\n" );
xConfirmPara( m_decodeBitstreams[1] == m_bitstreamFileName, "Decode2 bitstream and the output bitstream cannot be equal.\n" );
xConfirmPara(unsigned(m_LMChroma) > 1, "LMMode exceeds range (0 to 1)");
#if EXTENSION_360_VIDEO
check_failed |= m_ext360.verifyParameters();
#endif
#undef xConfirmPara
return check_failed;
}
const char *profileToString(const Profile::Name profile)
{
static const uint32_t numberOfProfiles = sizeof(strToProfile)/sizeof(*strToProfile);
for (uint32_t profileIndex = 0; profileIndex < numberOfProfiles; profileIndex++)
{
if (strToProfile[profileIndex].value == profile)
{
return strToProfile[profileIndex].str;
}
}
//if we get here, we didn't find this profile in the list - so there is an error
EXIT( "ERROR: Unknown profile \"" << profile << "\" in profileToString" );
return "";
}
void EncAppCfg::xPrintParameter()
{
//msg( DETAILS, "\n" );
msg( DETAILS, "Input File : %s\n", m_inputFileName.c_str() );
msg( DETAILS, "Bitstream File : %s\n", m_bitstreamFileName.c_str() );
msg( DETAILS, "Reconstruction File : %s\n", m_reconFileName.c_str() );
msg( DETAILS, "Real Format : %dx%d %gHz\n", m_iSourceWidth - m_confWinLeft - m_confWinRight, m_iSourceHeight - m_confWinTop - m_confWinBottom, (double)m_iFrameRate / m_temporalSubsampleRatio );
msg( DETAILS, "Internal Format : %dx%d %gHz\n", m_iSourceWidth, m_iSourceHeight, (double)m_iFrameRate / m_temporalSubsampleRatio );
msg( DETAILS, "Sequence PSNR output : %s\n", ( m_printMSEBasedSequencePSNR ? "Linear average, MSE-based" : "Linear average only" ) );
msg( DETAILS, "Hexadecimal PSNR output : %s\n", ( m_printHexPsnr ? "Enabled" : "Disabled" ) );

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msg( DETAILS, "Sequence MSE output : %s\n", ( m_printSequenceMSE ? "Enabled" : "Disabled" ) );
msg( DETAILS, "Frame MSE output : %s\n", ( m_printFrameMSE ? "Enabled" : "Disabled" ) );
msg( DETAILS, "Cabac-zero-word-padding : %s\n", ( m_cabacZeroWordPaddingEnabled ? "Enabled" : "Disabled" ) );
if (m_isField)
{
msg( DETAILS, "Frame/Field : Field based coding\n" );
msg( DETAILS, "Field index : %u - %d (%d fields)\n", m_FrameSkip, m_FrameSkip + m_framesToBeEncoded - 1, m_framesToBeEncoded );
msg( DETAILS, "Field Order : %s field first\n", m_isTopFieldFirst ? "Top" : "Bottom" );
}
else
{
msg( DETAILS, "Frame/Field : Frame based coding\n" );
msg( DETAILS, "Frame index : %u - %d (%d frames)\n", m_FrameSkip, m_FrameSkip + m_framesToBeEncoded - 1, m_framesToBeEncoded );
}
if (m_profile == Profile::MAINREXT)
{
ExtendedProfileName validProfileName;
if (m_onePictureOnlyConstraintFlag)
{
validProfileName = m_bitDepthConstraint == 8 ? MAIN_444_STILL_PICTURE : (m_bitDepthConstraint == 16 ? MAIN_444_16_STILL_PICTURE : NONE);
}
else
{
const uint32_t intraIdx = m_intraConstraintFlag ? 1:0;
const uint32_t bitDepthIdx = (m_bitDepthConstraint == 8 ? 0 : (m_bitDepthConstraint ==10 ? 1 : (m_bitDepthConstraint == 12 ? 2 : (m_bitDepthConstraint == 16 ? 3 : 4 ))));
const uint32_t chromaFormatIdx = uint32_t(m_chromaFormatConstraint);
validProfileName = (bitDepthIdx > 3 || chromaFormatIdx>3) ? NONE : validRExtProfileNames[intraIdx][bitDepthIdx][chromaFormatIdx];
}
std::string rextSubProfile;
if (validProfileName!=NONE)
{
rextSubProfile=enumToString(strToExtendedProfile, sizeof(strToExtendedProfile)/sizeof(*strToExtendedProfile), validProfileName);
}
if (rextSubProfile == "main_444_16")
{
rextSubProfile="main_444_16 [NON STANDARD]";
}
msg( DETAILS, "Profile : %s (%s)\n", profileToString(m_profile), (rextSubProfile.empty())?"INVALID REXT PROFILE":rextSubProfile.c_str() );
}
else
{
msg( DETAILS, "Profile : %s\n", profileToString(m_profile) );
}
msg( DETAILS, "CU size / depth / total-depth : %d / %d / %d\n", m_uiMaxCUWidth, m_uiMaxCUDepth, m_uiMaxCodingDepth );
#if MAX_TB_SIZE_SIGNALLING
msg( DETAILS, "Max TB size : %d \n", 1 << m_log2MaxTbSize );
#endif

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msg( DETAILS, "Min PCM size : %d\n", 1 << m_uiPCMLog2MinSize);
msg( DETAILS, "Motion search range : %d\n", m_iSearchRange );
msg( DETAILS, "Intra period : %d\n", m_iIntraPeriod );
msg( DETAILS, "Decoding refresh type : %d\n", m_iDecodingRefreshType );
#if QP_SWITCHING_FOR_PARALLEL
if (m_qpIncrementAtSourceFrame.bPresent)
{
msg( DETAILS, "QP : %d (incrementing internal QP at source frame %d)\n", m_iQP, m_qpIncrementAtSourceFrame.value);
}
else
{
msg( DETAILS, "QP : %d\n", m_iQP);
}
#else
msg( DETAILS, "QP : %5.2f\n", m_fQP );
#endif
msg( DETAILS, "Max dQP signaling subdiv : %d\n", m_cuQpDeltaSubdiv);

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msg( DETAILS, "Cb QP Offset (dual tree) : %d (%d)\n", m_cbQpOffset, m_cbQpOffsetDualTree);
msg( DETAILS, "Cr QP Offset (dual tree) : %d (%d)\n", m_crQpOffset, m_crQpOffsetDualTree);
msg( DETAILS, "QP adaptation : %d (range=%d)\n", m_bUseAdaptiveQP, (m_bUseAdaptiveQP ? m_iQPAdaptationRange : 0) );
msg( DETAILS, "GOP size : %d\n", m_iGOPSize );
msg( DETAILS, "Input bit depth : (Y:%d, C:%d)\n", m_inputBitDepth[CHANNEL_TYPE_LUMA], m_inputBitDepth[CHANNEL_TYPE_CHROMA] );
msg( DETAILS, "MSB-extended bit depth : (Y:%d, C:%d)\n", m_MSBExtendedBitDepth[CHANNEL_TYPE_LUMA], m_MSBExtendedBitDepth[CHANNEL_TYPE_CHROMA] );
msg( DETAILS, "Internal bit depth : (Y:%d, C:%d)\n", m_internalBitDepth[CHANNEL_TYPE_LUMA], m_internalBitDepth[CHANNEL_TYPE_CHROMA] );
msg( DETAILS, "PCM sample bit depth : (Y:%d, C:%d)\n", m_bPCMInputBitDepthFlag ? m_MSBExtendedBitDepth[CHANNEL_TYPE_LUMA] : m_internalBitDepth[CHANNEL_TYPE_LUMA],
m_bPCMInputBitDepthFlag ? m_MSBExtendedBitDepth[CHANNEL_TYPE_CHROMA] : m_internalBitDepth[CHANNEL_TYPE_CHROMA] );
msg( DETAILS, "Intra reference smoothing : %s\n", (m_enableIntraReferenceSmoothing ? "Enabled" : "Disabled") );
msg( DETAILS, "cu_chroma_qp_offset_subdiv : %d\n", m_cuChromaQpOffsetSubdiv);

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msg( DETAILS, "extended_precision_processing_flag : %s\n", (m_extendedPrecisionProcessingFlag ? "Enabled" : "Disabled") );
msg( DETAILS, "implicit_rdpcm_enabled_flag : %s\n", (m_rdpcmEnabledFlag[RDPCM_SIGNAL_IMPLICIT] ? "Enabled" : "Disabled") );
msg( DETAILS, "explicit_rdpcm_enabled_flag : %s\n", (m_rdpcmEnabledFlag[RDPCM_SIGNAL_EXPLICIT] ? "Enabled" : "Disabled") );
msg( DETAILS, "transform_skip_rotation_enabled_flag : %s\n", (m_transformSkipRotationEnabledFlag ? "Enabled" : "Disabled") );
msg( DETAILS, "transform_skip_context_enabled_flag : %s\n", (m_transformSkipContextEnabledFlag ? "Enabled" : "Disabled") );
msg( DETAILS, "cross_component_prediction_enabled_flag: %s\n", (m_crossComponentPredictionEnabledFlag ? (m_reconBasedCrossCPredictionEstimate ? "Enabled (reconstructed-residual-based estimate)" : "Enabled (encoder-side-residual-based estimate)") : "Disabled") );
msg( DETAILS, "high_precision_offsets_enabled_flag : %s\n", (m_highPrecisionOffsetsEnabledFlag ? "Enabled" : "Disabled") );
msg( DETAILS, "persistent_rice_adaptation_enabled_flag: %s\n", (m_persistentRiceAdaptationEnabledFlag ? "Enabled" : "Disabled") );
msg( DETAILS, "cabac_bypass_alignment_enabled_flag : %s\n", (m_cabacBypassAlignmentEnabledFlag ? "Enabled" : "Disabled") );
if (m_bUseSAO)
{
msg( DETAILS, "log2_sao_offset_scale_luma : %d\n", m_log2SaoOffsetScale[CHANNEL_TYPE_LUMA] );
msg( DETAILS, "log2_sao_offset_scale_chroma : %d\n", m_log2SaoOffsetScale[CHANNEL_TYPE_CHROMA] );
}
switch (m_costMode)
{
case COST_STANDARD_LOSSY: msg( DETAILS, "Cost function: : Lossy coding (default)\n"); break;
case COST_SEQUENCE_LEVEL_LOSSLESS: msg( DETAILS, "Cost function: : Sequence_level_lossless coding\n"); break;
case COST_LOSSLESS_CODING: msg( DETAILS, "Cost function: : Lossless coding with fixed QP of %d\n", LOSSLESS_AND_MIXED_LOSSLESS_RD_COST_TEST_QP); break;
case COST_MIXED_LOSSLESS_LOSSY_CODING: msg( DETAILS, "Cost function: : Mixed_lossless_lossy coding with QP'=%d for lossless evaluation\n", LOSSLESS_AND_MIXED_LOSSLESS_RD_COST_TEST_QP_PRIME); break;
default: msg( DETAILS, "Cost function: : Unknown\n"); break;
}
msg( DETAILS, "RateControl : %d\n", m_RCEnableRateControl );
msg( DETAILS, "WPMethod : %d\n", int(m_weightedPredictionMethod));
if(m_RCEnableRateControl)
{
msg( DETAILS, "TargetBitrate : %d\n", m_RCTargetBitrate );
msg( DETAILS, "KeepHierarchicalBit : %d\n", m_RCKeepHierarchicalBit );
msg( DETAILS, "LCULevelRC : %d\n", m_RCLCULevelRC );
msg( DETAILS, "UseLCUSeparateModel : %d\n", m_RCUseLCUSeparateModel );
msg( DETAILS, "InitialQP : %d\n", m_RCInitialQP );
msg( DETAILS, "ForceIntraQP : %d\n", m_RCForceIntraQP );
#if U0132_TARGET_BITS_SATURATION
msg( DETAILS, "CpbSaturation : %d\n", m_RCCpbSaturationEnabled );
if (m_RCCpbSaturationEnabled)
{
msg( DETAILS, "CpbSize : %d\n", m_RCCpbSize);
msg( DETAILS, "InitalCpbFullness : %.2f\n", m_RCInitialCpbFullness);
}
#endif
}
msg( DETAILS, "Max Num Merge Candidates : %d\n", m_maxNumMergeCand );
msg( DETAILS, "Max Num Affine Merge Candidates : %d\n", m_maxNumAffineMergeCand );
msg( DETAILS, "Max Num Triangle Merge Candidates : %d\n", m_maxNumTriangleCand );

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msg( DETAILS, "\n");
msg( VERBOSE, "TOOL CFG: ");
msg( VERBOSE, "IBD:%d ", ((m_internalBitDepth[CHANNEL_TYPE_LUMA] > m_MSBExtendedBitDepth[CHANNEL_TYPE_LUMA]) || (m_internalBitDepth[CHANNEL_TYPE_CHROMA] > m_MSBExtendedBitDepth[CHANNEL_TYPE_CHROMA])));
msg( VERBOSE, "HAD:%d ", m_bUseHADME );
msg( VERBOSE, "RDQ:%d ", m_useRDOQ );
msg( VERBOSE, "RDQTS:%d ", m_useRDOQTS );
msg( VERBOSE, "RDpenalty:%d ", m_rdPenalty );
#if SHARP_LUMA_DELTA_QP
msg( VERBOSE, "LQP:%d ", m_lumaLevelToDeltaQPMapping.mode );
#endif
msg( VERBOSE, "SQP:%d ", m_uiDeltaQpRD );
msg( VERBOSE, "ASR:%d ", m_bUseASR );
msg( VERBOSE, "MinSearchWindow:%d ", m_minSearchWindow );
msg( VERBOSE, "RestrictMESampling:%d ", m_bRestrictMESampling );
msg( VERBOSE, "FEN:%d ", int(m_fastInterSearchMode) );
msg( VERBOSE, "ECU:%d ", m_bUseEarlyCU );
msg( VERBOSE, "FDM:%d ", m_useFastDecisionForMerge );
msg( VERBOSE, "CFM:%d ", m_bUseCbfFastMode );
msg( VERBOSE, "ESD:%d ", m_useEarlySkipDetection );
msg( VERBOSE, "TransformSkip:%d ", m_useTransformSkip );
msg( VERBOSE, "TransformSkipFast:%d ", m_useTransformSkipFast );
msg( VERBOSE, "TransformSkipLog2MaxSize:%d ", m_log2MaxTransformSkipBlockSize);
#if JVET_O1136_TS_BDPCM_SIGNALLING
msg( VERBOSE, "BDPCM:%d ", m_useBDPCM );
#endif

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msg( VERBOSE, "Slice: M=%d ", int(m_sliceMode));
if (m_sliceMode!=NO_SLICES)
{
msg( VERBOSE, "A=%d ", m_sliceArgument);
}
msg( VERBOSE, "Tiles:%dx%d ", m_numTileColumnsMinus1 + 1, m_numTileRowsMinus1 + 1 );
msg( VERBOSE, "MCTS:%d ", m_MCTSEncConstraint );

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msg( VERBOSE, "CIP:%d ", m_bUseConstrainedIntraPred);
msg( VERBOSE, "SAO:%d ", (m_bUseSAO)?(1):(0));
msg( VERBOSE, "ALF:%d ", m_alf ? 1 : 0 );
msg( VERBOSE, "PCM:%d ", (m_usePCM && (1<<m_uiPCMLog2MinSize) <= m_uiMaxCUWidth)? 1 : 0);
if (m_TransquantBypassEnabledFlag && m_CUTransquantBypassFlagForce)
{
msg( VERBOSE, "TransQuantBypassEnabled: =1");
}
else
{
msg( VERBOSE, "TransQuantBypassEnabled:%d ", (m_TransquantBypassEnabledFlag)? 1:0 );
}
msg( VERBOSE, "WPP:%d ", (int)m_useWeightedPred);
msg( VERBOSE, "WPB:%d ", (int)m_useWeightedBiPred);
msg( VERBOSE, "PME:%d ", m_log2ParallelMergeLevel);
const int iWaveFrontSubstreams = m_entropyCodingSyncEnabledFlag ? (m_iSourceHeight + m_uiMaxCUHeight - 1) / m_uiMaxCUHeight : 1;
msg( VERBOSE, " WaveFrontSynchro:%d WaveFrontSubstreams:%d", m_entropyCodingSyncEnabledFlag?1:0, iWaveFrontSubstreams);
msg( VERBOSE, " ScalingList:%d ", m_useScalingListId );
msg( VERBOSE, "TMVPMode:%d ", m_TMVPModeId );
msg( VERBOSE, " DQ:%d ", m_depQuantEnabledFlag);
msg( VERBOSE, " SignBitHidingFlag:%d ", m_signDataHidingEnabledFlag);
msg( VERBOSE, "RecalQP:%d ", m_recalculateQPAccordingToLambda ? 1 : 0 );
if( m_profile == Profile::NEXT )
{
msg( VERBOSE, "\nNEXT TOOL CFG: " );
msg( VERBOSE, "LFNST:%d ", m_LFNST );

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msg( VERBOSE, "Affine:%d ", m_Affine );
if ( m_Affine )
{
msg( VERBOSE, "AffineType:%d ", m_AffineType );
}
msg(VERBOSE, "SubPuMvp:%d+%d ", m_SubPuMvpMode & 1, (m_SubPuMvpMode & 2) == 2);

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msg( VERBOSE, "IMV:%d ", m_ImvMode );
msg( VERBOSE, "BIO:%d ", m_BIO );

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msg( VERBOSE, "LMChroma:%d ", m_LMChroma );
if( m_LMChroma && m_chromaFormatIDC == CHROMA_420 )
{
msg( VERBOSE, "CclmCollocatedChroma:%d ", m_cclmCollocatedChromaFlag );
}
msg( VERBOSE, "MTS: %1d(intra) %1d(inter) ", m_MTS & 1, ( m_MTS >> 1 ) & 1 );
msg( VERBOSE, "SBT:%d ", m_SBT );
msg( VERBOSE, "ISP:%d ", m_ISP );
msg( VERBOSE, "CompositeLTReference:%d ", m_compositeRefEnabled);
msg( VERBOSE, "GBi:%d ", m_GBi );
msg( VERBOSE, "GBiFast:%d ", m_GBiFast );
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#if LUMA_ADAPTIVE_DEBLOCKING_FILTER_QP_OFFSET
msg( VERBOSE, "LADF:%d ", m_LadfEnabed );
#endif
msg(VERBOSE, "MHIntra:%d ", m_MHIntra);
msg( VERBOSE, "Triangle:%d ", m_Triangle );
m_allowDisFracMMVD = m_MMVD ? m_allowDisFracMMVD : false;
if ( m_MMVD )
msg(VERBOSE, "AllowDisFracMMVD:%d ", m_allowDisFracMMVD);
msg( VERBOSE, "AffineAmvr:%d ", m_AffineAmvr );
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m_AffineAmvrEncOpt = m_AffineAmvr ? m_AffineAmvrEncOpt : false;
msg( VERBOSE, "AffineAmvrEncOpt:%d ", m_AffineAmvrEncOpt );
msg(VERBOSE, "DMVR:%d ", m_DMVR);
msg(VERBOSE, "MmvdDisNum:%d ", m_MmvdDisNum);
msg(VERBOSE, "RDPCM:%d ", m_RdpcmMode );

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}
msg( VERBOSE, "HashME:%d ", m_HashME );
msg( VERBOSE, "WrapAround:%d ", m_wrapAround);
if( m_wrapAround )
msg( VERBOSE, "WrapAroundOffset:%d ", m_wrapAroundOffset );

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// ADD_NEW_TOOL (add some output indicating the usage of tools)
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msg(VERBOSE, "LoopFilterAcrossVirtualBoundaries:%d ", m_loopFilterAcrossVirtualBoundariesDisabledFlag);
if ( m_loopFilterAcrossVirtualBoundariesDisabledFlag )
{
msg(VERBOSE, "vertical virtual boundaries:[");
for (unsigned i = 0; i < m_numVerVirtualBoundaries; i++)
{
msg(VERBOSE, " %d", m_virtualBoundariesPosX[i]);
}
msg(VERBOSE, " ] horizontal virtual boundaries:[");
for (unsigned i = 0; i < m_numHorVirtualBoundaries; i++)
{
msg(VERBOSE, " %d", m_virtualBoundariesPosY[i]);
}
msg(VERBOSE, " ] ");
}
msg(VERBOSE, "Reshape:%d ", m_lumaReshapeEnable);
if (m_lumaReshapeEnable)
msg(VERBOSE, "(Sigal:%s ", m_reshapeSignalType==0? "SDR" : "HDR-PQ");
msg(VERBOSE, "MIP:%d ", m_MIP);

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msg( VERBOSE, "\nFAST TOOL CFG: " );
msg( VERBOSE, "LCTUFast:%d ", m_useFastLCTU );

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msg( VERBOSE, "FastMrg:%d ", m_useFastMrg );
msg( VERBOSE, "PBIntraFast:%d ", m_usePbIntraFast );
if( m_ImvMode ) msg( VERBOSE, "IMV4PelFast:%d ", m_Imv4PelFast );
if( m_MTS ) msg( VERBOSE, "MTSMaxCand: %1d(intra) %1d(inter) ", m_MTSIntraMaxCand, m_MTSInterMaxCand );
if( m_ISP ) msg( VERBOSE, "ISPFast:%d ", m_useFastISP );
if( m_LFNST ) msg( VERBOSE, "FastLFNST:%d ", m_useFastLFNST );
msg( VERBOSE, "AMaxBT:%d ", m_useAMaxBT );
msg( VERBOSE, "E0023FastEnc:%d ", m_e0023FastEnc );
msg( VERBOSE, "ContentBasedFastQtbt:%d ", m_contentBasedFastQtbt );
msg( VERBOSE, "UseNonLinearALFLuma:%d ", m_useNonLinearAlfLuma );
msg( VERBOSE, "UseNonLinearALFChroma:%d ", m_useNonLinearAlfChroma );
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if( m_MIP ) msg(VERBOSE, "FastMIP:%d ", m_useFastMIP);

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msg( VERBOSE, "NumSplitThreads:%d ", m_numSplitThreads );
if( m_numSplitThreads > 1 )
{
msg( VERBOSE, "ForceSingleSplitThread:%d ", m_forceSplitSequential );
}
msg( VERBOSE, "NumWppThreads:%d+%d ", m_numWppThreads, m_numWppExtraLines );
msg( VERBOSE, "EnsureWppBitEqual:%d ", m_ensureWppBitEqual );
#if EXTENSION_360_VIDEO
m_ext360.outputConfigurationSummary();
#endif
msg( VERBOSE, "\n\n");
msg( NOTICE, "\n");
fflush( stdout );
}
bool confirmPara(bool bflag, const char* message)
{
if (!bflag)
{
return false;
}
msg( ERROR, "Error: %s\n",message);
return true;
}
//! \}