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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 TComMotionInfo.h \brief motion information handling classes (header) \todo TComMvField seems to be better to be inherited from TComMv */ #ifndef __TCOMMOTIONINFO__ #define __TCOMMOTIONINFO__ #include #include "CommonDef.h" #include "TComMv.h" //! \ingroup TLibCommon //! \{ // ==================================================================================================================== // Type definition // ==================================================================================================================== #if NH_3D_SPIVMP class TComDataCU; #endif /// parameters for AMVP typedef struct _AMVPInfo { TComMv m_acMvCand[ AMVP_MAX_NUM_CANDS_MEM ]; ///< array of motion vector predictor candidates Int iN; ///< number of motion vector predictor candidates } AMVPInfo; #if NH_3D_NBDV typedef struct _DisCand { TComMv m_acNBDV; // DV from NBDV #if NH_3D_NBDV_REF TComMv m_acDoNBDV; // DV from DoNBDV #endif Int m_aVIdxCan; // View order index (the same with the NBDV and the DoNBDV) } DisInfo; typedef struct _IDVCand // IDV { TComMv m_acMvCand[2][ IDV_CANDS ]; Int m_aVIdxCan[2][ IDV_CANDS ]; Bool m_bAvailab[2][ IDV_CANDS ]; Bool m_bFound; } IDVInfo; #endif // ==================================================================================================================== // Class definition // ==================================================================================================================== /// class for motion vector with reference index class TComMvField { private: TComMv m_acMv; Int m_iRefIdx; public: TComMvField() : m_iRefIdx( NOT_VALID ) {} Void setMvField( TComMv const & cMv, Int iRefIdx ) { m_acMv = cMv; m_iRefIdx = iRefIdx; } Void setRefIdx( Int refIdx ) { m_iRefIdx = refIdx; } TComMv const & getMv() const { return m_acMv; } TComMv & getMv() { return m_acMv; } Int getRefIdx() const { return m_iRefIdx; } Int getHor () const { return m_acMv.getHor(); } Int getVer () const { return m_acMv.getVer(); } #if NH_3D_IV_MERGE Bool operator== ( const TComMvField& rcMv ) const { return (m_acMv.getHor()==rcMv.getHor() && m_acMv.getVer()==rcMv.getVer() && m_iRefIdx == rcMv.getRefIdx()); } #endif }; /// class for motion information in one CU class TComCUMvField { private: TComMv* m_pcMv; TComMv* m_pcMvd; Char* m_piRefIdx; UInt m_uiNumPartition; AMVPInfo m_cAMVPInfo; template Void setAll( T *p, T const & val, PartSize eCUMode, Int iPartAddr, UInt uiDepth, Int iPartIdx ); public: TComCUMvField() : m_pcMv(NULL), m_pcMvd(NULL), m_piRefIdx(NULL), m_uiNumPartition(0) {} ~TComCUMvField() {} // ------------------------------------------------------------------------------------------------------------------ // create / destroy // ------------------------------------------------------------------------------------------------------------------ Void create( UInt uiNumPartition ); Void destroy(); // ------------------------------------------------------------------------------------------------------------------ // clear / copy // ------------------------------------------------------------------------------------------------------------------ Void clearMvField(); Void copyFrom( TComCUMvField const * pcCUMvFieldSrc, Int iNumPartSrc, Int iPartAddrDst ); Void copyTo ( TComCUMvField* pcCUMvFieldDst, Int iPartAddrDst ) const; Void copyTo ( TComCUMvField* pcCUMvFieldDst, Int iPartAddrDst, UInt uiOffset, UInt uiNumPart ) const; // ------------------------------------------------------------------------------------------------------------------ // get // ------------------------------------------------------------------------------------------------------------------ TComMv const & getMv ( Int iIdx ) const { return m_pcMv [iIdx]; } TComMv const & getMvd ( Int iIdx ) const { return m_pcMvd [iIdx]; } Int getRefIdx( Int iIdx ) const { return m_piRefIdx[iIdx]; } AMVPInfo* getAMVPInfo () { return &m_cAMVPInfo; } // ------------------------------------------------------------------------------------------------------------------ // set // ------------------------------------------------------------------------------------------------------------------ Void setAllMv ( TComMv const & rcMv, PartSize eCUMode, Int iPartAddr, UInt uiDepth, Int iPartIdx=0 ); Void setAllMvd ( TComMv const & rcMvd, PartSize eCUMode, Int iPartAddr, UInt uiDepth, Int iPartIdx=0 ); Void setAllRefIdx ( Int iRefIdx, PartSize eMbMode, Int iPartAddr, UInt uiDepth, Int iPartIdx=0 ); Void setAllMvField( TComMvField const & mvField, PartSize eMbMode, Int iPartAddr, UInt uiDepth, Int iPartIdx=0 ); #if NH_3D_SPIVMP Void setMvFieldSP ( TComDataCU* pcCU, UInt uiAbsPartIdx, TComMvField cMvField, Int iWidth, Int iHeight ); #endif #if NH_3D_VSP Void setMv ( Int iIdx, TComMv const & rcMv ) { m_pcMv[iIdx] = rcMv; } Void setRefIdx ( Int iIdx, Int iRefIdx ) { m_piRefIdx[iIdx] = iRefIdx; } #endif Void setNumPartition( Int iNumPart ) { m_uiNumPartition = iNumPart; } Void linkToWithOffset( TComCUMvField const * src, Int offset ) { m_pcMv = src->m_pcMv + offset; m_pcMvd = src->m_pcMvd + offset; m_piRefIdx = src->m_piRefIdx + offset; } Void compress(Char* pePredMode, Int scale); #if NH_MV Void print (Char* pePredMode); #endif }; //! \} #if NH_3D_MLC /// class for container of merge candidate class TComMotionCand { public: Bool m_bAvailable; TComMvField m_cMvField[2]; UChar m_uDir; #if NH_3D_VSP Int m_iVspFlag; #endif #if NH_3D_SPIVMP Bool m_bSPIVMPFlag; #endif public: TComMotionCand() { m_bAvailable = false; m_uDir = 0; #if NH_3D_VSP m_iVspFlag = 0; #endif #if NH_3D_SPIVMP m_bSPIVMPFlag = false; #endif } ~TComMotionCand() { } Void init() { TComMv cZeroMv; m_bAvailable = false; m_uDir = 0; #if NH_3D_VSP m_iVspFlag = 0; #endif #if NH_3D_SPIVMP m_bSPIVMPFlag = false; #endif m_cMvField[0].setMvField(cZeroMv, NOT_VALID); m_cMvField[1].setMvField(cZeroMv, NOT_VALID); } Void setCand(TComMvField* pcMvFieldNeighbours, UChar uhInterDirNeighbours #if NH_3D_VSP , Int vspFlag #endif #if NH_3D_SPIVMP , Bool bSPIVMPFlag #endif ) { m_bAvailable = true; m_cMvField[0] = pcMvFieldNeighbours[0]; m_cMvField[1] = pcMvFieldNeighbours[1]; m_uDir = uhInterDirNeighbours; #if NH_3D_VSP m_iVspFlag = vspFlag; #endif #if NH_3D_SPIVMP m_bSPIVMPFlag = bSPIVMPFlag; #endif } Void getCand(Int iCount, TComMvField* pcMvFieldNeighbours, UChar* puhInterDirNeighbours #if NH_3D_VSP , Int* vspFlag #endif #if NH_3D_SPIVMP , Bool* pbSPIVMPFlag #endif ) { pcMvFieldNeighbours[iCount<<1] = m_cMvField[0]; pcMvFieldNeighbours[(iCount<<1) + 1] = m_cMvField[1]; puhInterDirNeighbours[iCount] = m_uDir; #if NH_3D_VSP vspFlag[iCount] = m_iVspFlag; #endif #if NH_3D_SPIVMP pbSPIVMPFlag[iCount] = m_bSPIVMPFlag; #endif } Void print( Int i ); }; #endif #endif // __TCOMMOTIONINFO__