/* The copyright in this software is being made available under the BSD * License, included below. This software may be subject to other third party * and contributor rights, including patent rights, and no such rights are * granted under this license. * * Copyright (c) 2010-2015, ITU/ISO/IEC * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions are met: * * * Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * Redistributions in binary form must reproduce the above copyright notice, * this list of conditions and the following disclaimer in the documentation * and/or other materials provided with the distribution. * * Neither the name of the ITU/ISO/IEC nor the names of its contributors may * be used to endorse or promote products derived from this software without * specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF * THE POSSIBILITY OF SUCH DAMAGE. */ /** \file TDecGop.cpp \brief GOP decoder class */ #include "TDecGop.h" #include "TDecCAVLC.h" #include "TDecSbac.h" #include "TDecBinCoder.h" #include "TDecBinCoderCABAC.h" #include "libmd5/MD5.h" #include "TLibCommon/SEI.h" #include //! \ingroup TLibDecoder //! \{ static Void calcAndPrintHashStatus(TComPicYuv& pic, const SEIDecodedPictureHash* pictureHashSEI, const BitDepths &bitDepths, UInt &numChecksumErrors); // ==================================================================================================================== // Constructor / destructor / initialization / destroy // ==================================================================================================================== TDecGop::TDecGop() : m_numberOfChecksumErrorsDetected(0) { m_dDecTime = 0; } TDecGop::~TDecGop() { } Void TDecGop::create() { } Void TDecGop::destroy() { } Void TDecGop::init( TDecEntropy* pcEntropyDecoder, TDecSbac* pcSbacDecoder, TDecBinCABAC* pcBinCABAC, TDecCavlc* pcCavlcDecoder, TDecSlice* pcSliceDecoder, TComLoopFilter* pcLoopFilter, TComSampleAdaptiveOffset* pcSAO ) { m_pcEntropyDecoder = pcEntropyDecoder; m_pcSbacDecoder = pcSbacDecoder; m_pcBinCABAC = pcBinCABAC; m_pcCavlcDecoder = pcCavlcDecoder; m_pcSliceDecoder = pcSliceDecoder; m_pcLoopFilter = pcLoopFilter; m_pcSAO = pcSAO; m_numberOfChecksumErrorsDetected = 0; } // ==================================================================================================================== // Private member functions // ==================================================================================================================== // ==================================================================================================================== // Public member functions // ==================================================================================================================== Void TDecGop::decompressSlice(TComInputBitstream* pcBitstream, TComPic* pcPic) { TComSlice* pcSlice = pcPic->getSlice(pcPic->getCurrSliceIdx()); // Table of extracted substreams. // These must be deallocated AND their internal fifos, too. TComInputBitstream **ppcSubstreams = NULL; //-- For time output for each slice clock_t iBeforeTime = clock(); m_pcSbacDecoder->init( (TDecBinIf*)m_pcBinCABAC ); m_pcEntropyDecoder->setEntropyDecoder (m_pcSbacDecoder); const UInt uiNumSubstreams = pcSlice->getNumberOfSubstreamSizes()+1; // init each couple {EntropyDecoder, Substream} ppcSubstreams = new TComInputBitstream*[uiNumSubstreams]; for ( UInt ui = 0 ; ui < uiNumSubstreams ; ui++ ) { ppcSubstreams[ui] = pcBitstream->extractSubstream(ui+1 < uiNumSubstreams ? (pcSlice->getSubstreamSize(ui)<<3) : pcBitstream->getNumBitsLeft()); } #if H_3D_NBDV if(pcSlice->getViewIndex() && !pcSlice->getIsDepth()) //Notes from QC: this condition shall be changed once the configuration is completed, e.g. in pcSlice->getSPS()->getMultiviewMvPredMode() || ARP in prev. HTM. Remove this comment once it is done. { Int iColPoc = pcSlice->getRefPOC(RefPicList(1-pcSlice->getColFromL0Flag()), pcSlice->getColRefIdx()); rpcPic->setNumDdvCandPics(rpcPic->getDisCandRefPictures(iColPoc)); } if(pcSlice->getViewIndex() && !pcSlice->getIsDepth() && !pcSlice->isIntra()) //Notes from QC: this condition shall be changed once the configuration is completed, e.g. in pcSlice->getSPS()->getMultiviewMvPredMode() || ARP in prev. HTM. Remove this comment once it is done. { rpcPic->checkTemporalIVRef(); } if(pcSlice->getIsDepth()) { rpcPic->checkTextureRef(); } #endif #if NH_3D pcSlice->setDepthToDisparityLUTs(); #endif m_pcSliceDecoder->decompressSlice( ppcSubstreams, pcPic, m_pcSbacDecoder); // deallocate all created substreams, including internal buffers. for (UInt ui = 0; ui < uiNumSubstreams; ui++) { delete ppcSubstreams[ui]; } delete[] ppcSubstreams; m_dDecTime += (Double)(clock()-iBeforeTime) / CLOCKS_PER_SEC; } Void TDecGop::filterPicture(TComPic* pcPic) { TComSlice* pcSlice = pcPic->getSlice(pcPic->getCurrSliceIdx()); //-- For time output for each slice clock_t iBeforeTime = clock(); // deblocking filter Bool bLFCrossTileBoundary = pcSlice->getPPS()->getLoopFilterAcrossTilesEnabledFlag(); m_pcLoopFilter->setCfg(bLFCrossTileBoundary); m_pcLoopFilter->loopFilterPic( pcPic ); if( pcSlice->getSPS()->getUseSAO() ) { m_pcSAO->reconstructBlkSAOParams(pcPic, pcPic->getPicSym()->getSAOBlkParam()); m_pcSAO->SAOProcess(pcPic); m_pcSAO->PCMLFDisableProcess(pcPic); } #if NH_3D pcPic->compressMotion(2); #else pcPic->compressMotion(); #endif Char c = (pcSlice->isIntra() ? 'I' : pcSlice->isInterP() ? 'P' : 'B'); if (!pcSlice->isReferenced()) { c += 32; } //-- For time output for each slice #if NH_MV printf("Layer %2d POC %4d TId: %1d ( %c-SLICE, QP%3d ) ", pcSlice->getLayerId(), pcSlice->getPOC(), pcSlice->getTLayer(), c, pcSlice->getSliceQp() ); #else printf("POC %4d TId: %1d ( %c-SLICE, QP%3d ) ", pcSlice->getPOC(), pcSlice->getTLayer(), c, pcSlice->getSliceQp() ); #endif m_dDecTime += (Double)(clock()-iBeforeTime) / CLOCKS_PER_SEC; printf ("[DT %6.3f] ", m_dDecTime ); m_dDecTime = 0; for (Int iRefList = 0; iRefList < 2; iRefList++) { printf ("[L%d ", iRefList); for (Int iRefIndex = 0; iRefIndex < pcSlice->getNumRefIdx(RefPicList(iRefList)); iRefIndex++) { #if NH_MV if( pcSlice->getLayerId() != pcSlice->getRefLayerId( RefPicList(iRefList), iRefIndex ) ) { printf( "V%d ", pcSlice->getRefLayerId( RefPicList(iRefList), iRefIndex ) ); } else { #endif printf ("%d ", pcSlice->getRefPOC(RefPicList(iRefList), iRefIndex)); #if NH_MV } #endif } printf ("] "); } if (m_decodedPictureHashSEIEnabled) { SEIMessages pictureHashes = getSeisByType(pcPic->getSEIs(), SEI::DECODED_PICTURE_HASH ); const SEIDecodedPictureHash *hash = ( pictureHashes.size() > 0 ) ? (SEIDecodedPictureHash*) *(pictureHashes.begin()) : NULL; if (pictureHashes.size() > 1) { printf ("Warning: Got multiple decoded picture hash SEI messages. Using first."); } calcAndPrintHashStatus(*(pcPic->getPicYuvRec()), hash, pcSlice->getSPS()->getBitDepths(), m_numberOfChecksumErrorsDetected); } printf("\n"); #if !NH_MV pcPic->setOutputMark(pcPic->getSlice(0)->getPicOutputFlag() ? true : false); pcPic->setReconMark(true); #endif } /** * Calculate and print hash for pic, compare to picture_digest SEI if * present in seis. seis may be NULL. Hash is printed to stdout, in * a manner suitable for the status line. Theformat is: * [Hash_type:xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx,(yyy)] * Where, x..x is the hash * yyy has the following meanings: * OK - calculated hash matches the SEI message * ***ERROR*** - calculated hash does not match the SEI message * unk - no SEI message was available for comparison */ static Void calcAndPrintHashStatus(TComPicYuv& pic, const SEIDecodedPictureHash* pictureHashSEI, const BitDepths &bitDepths, UInt &numChecksumErrors) { /* calculate MD5sum for entire reconstructed picture */ TComPictureHash recon_digest; Int numChar=0; const Char* hashType = "\0"; if (pictureHashSEI) { switch (pictureHashSEI->method) { case SEIDecodedPictureHash::MD5: { hashType = "MD5"; numChar = calcMD5(pic, recon_digest, bitDepths); break; } case SEIDecodedPictureHash::CRC: { hashType = "CRC"; numChar = calcCRC(pic, recon_digest, bitDepths); break; } case SEIDecodedPictureHash::CHECKSUM: { hashType = "Checksum"; numChar = calcChecksum(pic, recon_digest, bitDepths); break; } default: { assert (!"unknown hash type"); break; } } } /* compare digest against received version */ const Char* ok = "(unk)"; Bool mismatch = false; if (pictureHashSEI) { ok = "(OK)"; if (recon_digest != pictureHashSEI->m_pictureHash) { ok = "(***ERROR***)"; mismatch = true; } } printf("[%s:%s,%s] ", hashType, hashToString(recon_digest, numChar).c_str(), ok); if (mismatch) { numChecksumErrors++; printf("[rx%s:%s] ", hashType, hashToString(pictureHashSEI->m_pictureHash, numChar).c_str()); } } //! \}