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147 lines
4.3 KiB
C++
147 lines
4.3 KiB
C++
//========= Copyright Valve Corporation, All rights reserved. ============//
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//
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// Purpose: sheet code for particles and other sprite functions
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//
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//===========================================================================//
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#include "psheet.h"
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#include "tier1/UtlStringMap.h"
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#include "tier1/utlbuffer.h"
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#include "tier2/fileutils.h"
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// memdbgon must be the last include file in a .cpp file!!!
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#include "tier0/memdbgon.h"
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CSheet::CSheet( void )
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{
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memset( m_pSamples, 0, sizeof( m_pSamples ) );
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memset( m_bClamp, 0, sizeof( m_bClamp ) );
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}
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CSheet::CSheet( CUtlBuffer &buf )
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{
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memset( m_pSamples, 0, sizeof( m_pSamples ) );
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memset( m_bClamp, 0, sizeof( m_bClamp ) );
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memset( m_bSequenceIsCopyOfAnotherSequence, 0, sizeof( m_bSequenceIsCopyOfAnotherSequence ) );
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// lets read a sheet
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buf.ActivateByteSwappingIfBigEndian();
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int nVersion = buf.GetInt(); // version#
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int nNumCoordsPerFrame = (nVersion)?MAX_IMAGES_PER_FRAME_ON_DISK:1;
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int nNumSequences = buf.GetInt();
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while ( nNumSequences-- )
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{
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int nSequenceNumber = buf.GetInt();
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if ( ( nSequenceNumber < 0 ) || (nSequenceNumber >= MAX_SEQUENCES ) )
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{
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Warning("sequence number %d too high in sheet file!!!\n", nSequenceNumber);
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return;
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}
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m_bClamp[ nSequenceNumber ] = ( buf.GetInt() != 0 );
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int nFrameCount = buf.GetInt();
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// Save off how many frames we have for this sequence
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m_nNumFrames[ nSequenceNumber ] = nFrameCount;
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bool bSingleFrameSequence = ( nFrameCount == 1 );
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int nTimeSamples = bSingleFrameSequence ? 1 : SEQUENCE_SAMPLE_COUNT;
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m_pSamples[ nSequenceNumber ] =
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new SheetSequenceSample_t[ nTimeSamples ];
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int fTotalSequenceTime = buf.GetFloat();
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float InterpKnot[SEQUENCE_SAMPLE_COUNT];
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float InterpValue[SEQUENCE_SAMPLE_COUNT];
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SheetSequenceSample_t Samples[SEQUENCE_SAMPLE_COUNT];
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float fCurTime = 0.;
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for( int nFrm = 0 ; nFrm < nFrameCount; nFrm++ )
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{
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float fThisDuration = buf.GetFloat();
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InterpValue[ nFrm ] = nFrm;
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InterpKnot [ nFrm ] = SEQUENCE_SAMPLE_COUNT*( fCurTime/ fTotalSequenceTime );
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SheetSequenceSample_t &seq = Samples[ nFrm ];
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seq.m_fBlendFactor = 0.0f;
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for(int nImage = 0 ; nImage< nNumCoordsPerFrame; nImage++ )
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{
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SequenceSampleTextureCoords_t &s=seq.m_TextureCoordData[nImage];
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s.m_fLeft_U0 = buf.GetFloat();
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s.m_fTop_V0 = buf.GetFloat();
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s.m_fRight_U0 = buf.GetFloat();
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s.m_fBottom_V0 = buf.GetFloat();
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}
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if ( nNumCoordsPerFrame == 1 )
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seq.CopyFirstFrameToOthers();
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fCurTime += fThisDuration;
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m_flFrameSpan[nSequenceNumber] = fCurTime;
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}
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// now, fill in the whole table
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for( int nIdx = 0; nIdx < nTimeSamples; nIdx++ )
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{
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float flIdxA, flIdxB, flInterp;
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GetInterpolationData( InterpKnot, InterpValue, nFrameCount,
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SEQUENCE_SAMPLE_COUNT,
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nIdx,
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! ( m_bClamp[nSequenceNumber] ),
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&flIdxA, &flIdxB, &flInterp );
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SheetSequenceSample_t sA = Samples[(int) flIdxA];
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SheetSequenceSample_t sB = Samples[(int) flIdxB];
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SheetSequenceSample_t &oseq = m_pSamples[nSequenceNumber][nIdx];
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oseq.m_fBlendFactor = flInterp;
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for(int nImage = 0 ; nImage< MAX_IMAGES_PER_FRAME_IN_MEMORY; nImage++ )
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{
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SequenceSampleTextureCoords_t &src0=sA.m_TextureCoordData[nImage];
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SequenceSampleTextureCoords_t &src1=sB.m_TextureCoordData[nImage];
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SequenceSampleTextureCoords_t &o=oseq.m_TextureCoordData[nImage];
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o.m_fLeft_U0 = src0.m_fLeft_U0;
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o.m_fTop_V0 = src0.m_fTop_V0;
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o.m_fRight_U0 = src0.m_fRight_U0;
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o.m_fBottom_V0 = src0.m_fBottom_V0;
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o.m_fLeft_U1 = src1.m_fLeft_U0;
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o.m_fTop_V1 = src1.m_fTop_V0;
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o.m_fRight_U1 = src1.m_fRight_U0;
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o.m_fBottom_V1 = src1.m_fBottom_V0;
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}
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}
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}
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// now, fill in all unseen sequences with copies of the first seen sequence to prevent crashes
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// while editing
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int nFirstSequence = -1;
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for(int i=0 ; i<MAX_SEQUENCES ; i++)
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{
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if ( m_pSamples[i] )
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{
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nFirstSequence = i;
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break;
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}
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}
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if ( nFirstSequence != -1 )
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{
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for(int i=0 ; i<MAX_SEQUENCES ; i++)
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{
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if ( m_pSamples[i] == NULL )
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{
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m_pSamples[i] = m_pSamples[nFirstSequence];
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m_bClamp[i]= m_bClamp[nFirstSequence];
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m_nNumFrames[i] = m_nNumFrames[nFirstSequence];
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m_bSequenceIsCopyOfAnotherSequence[i] = true;
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}
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}
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}
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}
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CSheet::~CSheet( void )
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{
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for( int i=0; i<NELEMS(m_pSamples); i++ )
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{
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if ( m_pSamples[i] && ( ! m_bSequenceIsCopyOfAnotherSequence[i] ) )
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{
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delete[] m_pSamples[i];
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}
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}
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}
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