This source file includes following definitions.
- zero
 
- wait
 
- post
 
- _sem
 
- lineOffsetsPosition
 
- getLineBuffer
 
- writeLineOffsets
 
- writePixelData
 
- writePixelData
 
- convertToXdr
 
- _lineBuffer
 
- execute
 
- initialize
 
- fileName
 
- header
 
- setFrameBuffer
 
- frameBuffer
 
- writePixels
 
- currentScanLine
 
- copyPixels
 
- updatePreviewImage
 
- breakScanLine
 
#include <ImfOutputFile.h>
#include <ImfInputFile.h>
#include <ImfChannelList.h>
#include <ImfMisc.h>
#include <ImfStdIO.h>
#include <ImfCompressor.h>
#include "ImathBox.h"
#include "ImathFun.h"
#include <ImfArray.h>
#include <ImfXdr.h>
#include <ImfPreviewImageAttribute.h>
#include "IlmThreadPool.h"
#include "IlmThreadSemaphore.h"
#include "IlmThreadMutex.h"
#include "Iex.h"
#include <string>
#include <vector>
#include <fstream>
#include <assert.h>
#include <algorithm> 
namespace Imf {
using Imath::Box2i;
using Imath::divp;
using Imath::modp;
using std::string;
using std::vector;
using std::ofstream;
using std::min;
using std::max;
using IlmThread::Mutex;
using IlmThread::Lock;
using IlmThread::Semaphore;
using IlmThread::Task;
using IlmThread::TaskGroup;
using IlmThread::ThreadPool;
namespace {
struct OutSliceInfo
{
    PixelType           type;
    const char *        base;
    size_t              xStride;
    size_t              yStride;
    int                 xSampling;
    int                 ySampling;
    bool                zero;
    OutSliceInfo (PixelType type = HALF,
              const char *base = 0,
              size_t xStride = 0,
              size_t yStride = 0,
              int xSampling = 1,
              int ySampling = 1,
              bool zero = false);
};
OutSliceInfo::OutSliceInfo (PixelType t,
                    const char *b,
                    size_t xs, size_t ys,
                    int xsm, int ysm,
                    bool z)
:
    type (t),
    base (b),
    xStride (xs),
    yStride (ys),
    xSampling (xsm),
    ySampling (ysm),
    zero (z)
{
    
}
struct LineBuffer
{
    Array<char>         buffer;
    const char *        dataPtr;
    int                 dataSize;
    char *              endOfLineBufferData;
    int                 minY;
    int                 maxY;
    int                 scanLineMin;
    int                 scanLineMax;
    Compressor *        compressor;
    bool                partiallyFull;        
    bool                hasException;
    string              exception;
    LineBuffer (Compressor *comp);
    ~LineBuffer ();
    void                wait () {_sem.wait();}
    void                post () {_sem.post();}
  private:
    Semaphore           _sem;
};
LineBuffer::LineBuffer (Compressor *comp) :
    dataPtr (0),
    dataSize (0),
    compressor (comp),
    partiallyFull (false),
    hasException (false),
    exception (),
    _sem (1)
{
    
}
LineBuffer::~LineBuffer ()
{
    delete compressor;
}
} 
struct OutputFile::Data: public Mutex
{
    Header               header;                
    int                  version;               
    Int64                previewPosition;       
    FrameBuffer          frameBuffer;           
    int                  currentScanLine;       
    int                  missingScanLines;      
    LineOrder            lineOrder;             
    int                  minX;                  
    int                  maxX;                  
    int                  minY;                  
    int                  maxY;                  
    vector<Int64>        lineOffsets;           
                        
    vector<size_t>       bytesPerLine;          
                                                
    vector<size_t>       offsetInLineBuffer;    
                                                
    Compressor::Format   format;                
    vector<OutSliceInfo> slices;                
    OStream *            os;                    
    bool                 deleteStream;
    Int64                lineOffsetsPosition;   
                                                
    Int64                currentPosition;       
    vector<LineBuffer*>  lineBuffers;           
    int                  linesInBuffer;         
                                                
    size_t               lineBufferSize;        
     Data (bool deleteStream, int numThreads);
    ~Data ();
    inline LineBuffer * getLineBuffer (int number); 
                                
                            
};
OutputFile::Data::Data (bool deleteStream, int numThreads):
    os (0),
    deleteStream (deleteStream),
    lineOffsetsPosition (0)
{
    
    
    
    
    lineBuffers.resize (max (1, 2 * numThreads));
}
OutputFile::Data::~Data ()
{
    if (deleteStream)
    delete os;
    for (size_t i = 0; i < lineBuffers.size(); i++)
        delete lineBuffers[i];
}
LineBuffer*
OutputFile::Data::getLineBuffer (int number)
{
    return lineBuffers[number % lineBuffers.size()];
}
namespace {
Int64
writeLineOffsets (OStream &os, const vector<Int64> &lineOffsets)
{
    Int64 pos = os.tellp();
    if (pos == -1)
    Iex::throwErrnoExc ("Cannot determine current file position (%T).");
    for (unsigned int i = 0; i < lineOffsets.size(); i++)
    Xdr::write <StreamIO> (os, lineOffsets[i]);
    return pos;
}
void
writePixelData (OutputFile::Data *ofd,
                int lineBufferMinY,
        const char pixelData[],
        int pixelDataSize)
{
    
    
    
    
    
    Int64 currentPosition = ofd->currentPosition;
    ofd->currentPosition = 0;
    if (currentPosition == 0)
    currentPosition = ofd->os->tellp();
    ofd->lineOffsets[(ofd->currentScanLine - ofd->minY) / ofd->linesInBuffer] =
    currentPosition;
    #ifdef DEBUG
    assert (ofd->os->tellp() == currentPosition);
    #endif
    Xdr::write <StreamIO> (*ofd->os, lineBufferMinY);
    Xdr::write <StreamIO> (*ofd->os, pixelDataSize);
    ofd->os->write (pixelData, pixelDataSize);
    ofd->currentPosition = currentPosition +
               Xdr::size<int>() +
               Xdr::size<int>() +
               pixelDataSize;
}
inline void
writePixelData (OutputFile::Data *ofd, const LineBuffer *lineBuffer)
{
    writePixelData (ofd,
            lineBuffer->minY,
                    lineBuffer->dataPtr,
            lineBuffer->dataSize);
}
void
convertToXdr (OutputFile::Data *ofd,
              Array<char> &lineBuffer,
              int lineBufferMinY,
              int lineBufferMaxY,
              int )
{
    
    
    
    
    
    
    
    
    
    
    
    
    
    int startY, endY;           
                    
    int step;
    if (ofd->lineOrder == INCREASING_Y)
    {
    startY = max (lineBufferMinY, ofd->minY);
    endY = min (lineBufferMaxY, ofd->maxY) + 1;
        step = 1;
    }
    else
    {
    startY = min (lineBufferMaxY, ofd->maxY);
    endY = max (lineBufferMinY, ofd->minY) - 1;
        step = -1;
    }
    
    
    
    for (int y = startY; y != endY; y += step)
    {
    
        
        
    
        char *writePtr = lineBuffer + ofd->offsetInLineBuffer[y - ofd->minY];
        const char *readPtr = writePtr;
    
        
    
        for (unsigned int i = 0; i < ofd->slices.size(); ++i)
        {
            
            
            
            
            
            const OutSliceInfo &slice = ofd->slices[i];
            if (modp (y, slice.ySampling) != 0)
                continue;
            
            
        
            
            
            int dMinX = divp (ofd->minX, slice.xSampling);
            int dMaxX = divp (ofd->maxX, slice.xSampling);
        
            
        
            convertInPlace (writePtr, readPtr, slice.type, dMaxX - dMinX + 1);
        }
    }
}
class LineBufferTask: public Task
{
  public:
    LineBufferTask (TaskGroup *group,
                    OutputFile::Data *ofd,
            int number,
                    int scanLineMin,
            int scanLineMax);
    virtual ~LineBufferTask ();
    virtual void        execute ();
  private:
    OutputFile::Data *  _ofd;
    LineBuffer *        _lineBuffer;
};
LineBufferTask::LineBufferTask
    (TaskGroup *group,
     OutputFile::Data *ofd,
     int number,
     int scanLineMin,
     int scanLineMax)
:
    Task (group),
    _ofd (ofd),
    _lineBuffer (_ofd->getLineBuffer(number))
{
    
    
    
    _lineBuffer->wait ();
    
    
    
    if (!_lineBuffer->partiallyFull)
    {
        _lineBuffer->endOfLineBufferData = _lineBuffer->buffer;
        _lineBuffer->minY = _ofd->minY + number * _ofd->linesInBuffer;
        _lineBuffer->maxY = min (_lineBuffer->minY + _ofd->linesInBuffer - 1,
                 _ofd->maxY);
        _lineBuffer->partiallyFull = true;
    }
    _lineBuffer->scanLineMin = max (_lineBuffer->minY, scanLineMin);
    _lineBuffer->scanLineMax = min (_lineBuffer->maxY, scanLineMax);
}
LineBufferTask::~LineBufferTask ()
{
    
    
    
    _lineBuffer->post ();
}
void
LineBufferTask::execute ()
{
    try
    {
        
        
    
        
        int yStart, yStop, dy;
        if (_ofd->lineOrder == INCREASING_Y)
        {
            yStart = _lineBuffer->scanLineMin;
            yStop = _lineBuffer->scanLineMax + 1;
            dy = 1;
        }
        else
        {
            yStart = _lineBuffer->scanLineMax;
            yStop = _lineBuffer->scanLineMin - 1;
            dy = -1;
        }
    int y;
        for (y = yStart; y != yStop; y += dy)
        {
            
            
            
            
            char *writePtr = _lineBuffer->buffer +
                             _ofd->offsetInLineBuffer[y - _ofd->minY];
            
            
            
            for (unsigned int i = 0; i < _ofd->slices.size(); ++i)
            {
                
                
        
                
                const OutSliceInfo &slice = _ofd->slices[i];
                if (modp (y, slice.ySampling) != 0)
                    continue;
                
                
                
                
                
                int dMinX = divp (_ofd->minX, slice.xSampling);
                int dMaxX = divp (_ofd->maxX, slice.xSampling);
                
        
                
                if (slice.zero)
                {
                    
                    
                    
                    
                    fillChannelWithZeroes (writePtr, _ofd->format, slice.type,
                                           dMaxX - dMinX + 1);
                }
                else
                {
                    
                    
            
                    
                    const char *linePtr = slice.base +
                                          divp (y, slice.ySampling) *
                                          slice.yStride;
                    const char *readPtr = linePtr + dMinX * slice.xStride;
                    const char *endPtr  = linePtr + dMaxX * slice.xStride;
                    copyFromFrameBuffer (writePtr, readPtr, endPtr,
                                         slice.xStride, _ofd->format,
                                         slice.type);
                }
            }
            if (_lineBuffer->endOfLineBufferData < writePtr)
                _lineBuffer->endOfLineBufferData = writePtr;
            #ifdef DEBUG
                assert (writePtr - (_lineBuffer->buffer +
                        _ofd->offsetInLineBuffer[y - _ofd->minY]) ==
                        (int) _ofd->bytesPerLine[y - _ofd->minY]);
            #endif
        }
        
        
        
        
        if (y >= _lineBuffer->minY && y <= _lineBuffer->maxY)
            return;
        _lineBuffer->dataPtr = _lineBuffer->buffer;
        _lineBuffer->dataSize = _lineBuffer->endOfLineBufferData -
                                _lineBuffer->buffer;
    
        
    
        Compressor *compressor = _lineBuffer->compressor;
        if (compressor)
        {
            const char *compPtr;
            int compSize = compressor->compress (_lineBuffer->dataPtr,
                                                 _lineBuffer->dataSize,
                                                 _lineBuffer->minY, compPtr);
            if (compSize < _lineBuffer->dataSize)
            {
                _lineBuffer->dataSize = compSize;
                _lineBuffer->dataPtr = compPtr;
            }
            else if (_ofd->format == Compressor::NATIVE)
            {
                
                
                
                
                
                
                convertToXdr (_ofd, _lineBuffer->buffer, _lineBuffer->minY,
                              _lineBuffer->maxY, _lineBuffer->dataSize);
            }
        }
        _lineBuffer->partiallyFull = false;
    }
    catch (std::exception &e)
    {
        if (!_lineBuffer->hasException)
        {
            _lineBuffer->exception = e.what ();
            _lineBuffer->hasException = true;
        }
    }
    catch (...)
    {
        if (!_lineBuffer->hasException)
        {
            _lineBuffer->exception = "unrecognized exception";
            _lineBuffer->hasException = true;
        }
    }
}
} 
OutputFile::OutputFile
    (const char fileName[],
     const Header &header,
     int numThreads)
:
    _data (new Data (true, numThreads))
{
    try
    {
    header.sanityCheck();
    _data->os = new StdOFStream (fileName);
    initialize (header);
    }
    catch (Iex::BaseExc &e)
    {
    delete _data;
    REPLACE_EXC (e, "Cannot open image file "
            "\"" << fileName << "\". " << e);
    throw;
    }
    catch (...)
    {
    delete _data;
        throw;
    }
}
OutputFile::OutputFile
    (OStream &os,
     const Header &header,
     int numThreads)
:
    _data (new Data (false, numThreads))
{
    try
    {
    header.sanityCheck();
    _data->os = &os;
    initialize (header);
    }
    catch (Iex::BaseExc &e)
    {
    delete _data;
    REPLACE_EXC (e, "Cannot open image file "
            "\"" << os.fileName() << "\". " << e);
    throw;
    }
    catch (...)
    {
    delete _data;
        throw;
    }
}
void
OutputFile::initialize (const Header &header)
{
    _data->header = header;
    const Box2i &dataWindow = header.dataWindow();
    _data->currentScanLine = (header.lineOrder() == INCREASING_Y)?
                 dataWindow.min.y: dataWindow.max.y;
    _data->missingScanLines = dataWindow.max.y - dataWindow.min.y + 1;
    _data->lineOrder = header.lineOrder();
    _data->minX = dataWindow.min.x;
    _data->maxX = dataWindow.max.x;
    _data->minY = dataWindow.min.y;
    _data->maxY = dataWindow.max.y;
    size_t maxBytesPerLine = bytesPerLineTable (_data->header,
                        _data->bytesPerLine);
    for (size_t i = 0; i < _data->lineBuffers.size(); ++i)
    {
        _data->lineBuffers[i] =
        new LineBuffer (newCompressor (_data->header.compression(),
                       maxBytesPerLine,
                       _data->header));
    }
    LineBuffer *lineBuffer = _data->lineBuffers[0];
    _data->format = defaultFormat (lineBuffer->compressor);
    _data->linesInBuffer = numLinesInBuffer (lineBuffer->compressor);
    _data->lineBufferSize = maxBytesPerLine * _data->linesInBuffer;
    for (size_t i = 0; i < _data->lineBuffers.size(); i++)
        _data->lineBuffers[i]->buffer.resizeErase(_data->lineBufferSize);
    int lineOffsetSize = (dataWindow.max.y - dataWindow.min.y +
              _data->linesInBuffer) / _data->linesInBuffer;
    _data->lineOffsets.resize (lineOffsetSize);
    offsetInLineBufferTable (_data->bytesPerLine,
                 _data->linesInBuffer,
                 _data->offsetInLineBuffer);
    _data->previewPosition =
    _data->header.writeTo (*_data->os);
    _data->lineOffsetsPosition =
    writeLineOffsets (*_data->os, _data->lineOffsets);
    _data->currentPosition = _data->os->tellp();
}
OutputFile::~OutputFile ()
{
    if (_data)
    {
        {
            if (_data->lineOffsetsPosition > 0)
            {
                try
                {
                    _data->os->seekp (_data->lineOffsetsPosition);
                    writeLineOffsets (*_data->os, _data->lineOffsets);
                }
                catch (...)
                {
                    
                    
                    
                    
                    
                    
                }
            }
        }
    delete _data;
    }
}
const char *
OutputFile::fileName () const
{
    return _data->os->fileName();
}
const Header &
OutputFile::header () const
{
    return _data->header;
}
void
OutputFile::setFrameBuffer (const FrameBuffer &frameBuffer)
{
    Lock lock (*_data);
    
    
    
    
    const ChannelList &channels = _data->header.channels();
    for (ChannelList::ConstIterator i = channels.begin();
     i != channels.end();
     ++i)
    {
    FrameBuffer::ConstIterator j = frameBuffer.find (i.name());
    if (j == frameBuffer.end())
        continue;
    if (i.channel().type != j.slice().type)
    {
        THROW (Iex::ArgExc, "Pixel type of \"" << i.name() << "\" channel "
                    "of output file \"" << fileName() << "\" is "
                    "not compatible with the frame buffer's "
                    "pixel type.");
    }
    if (i.channel().xSampling != j.slice().xSampling ||
        i.channel().ySampling != j.slice().ySampling)
    {
        THROW (Iex::ArgExc, "X and/or y subsampling factors "
                "of \"" << i.name() << "\" channel "
                "of output file \"" << fileName() << "\" are "
                "not compatible with the frame buffer's "
                "subsampling factors.");
    }
    }
    
    
    
    vector<OutSliceInfo> slices;
    for (ChannelList::ConstIterator i = channels.begin();
     i != channels.end();
     ++i)
    {
    FrameBuffer::ConstIterator j = frameBuffer.find (i.name());
    if (j == frameBuffer.end())
    {
        
        
        
        
        slices.push_back (OutSliceInfo (i.channel().type,
                        0, 
                        0, 
                        0, 
                        i.channel().xSampling,
                        i.channel().ySampling,
                        true)); 
    }
    else
    {
        
        
        
        slices.push_back (OutSliceInfo (j.slice().type,
                        j.slice().base,
                        j.slice().xStride,
                        j.slice().yStride,
                        j.slice().xSampling,
                        j.slice().ySampling,
                        false)); 
    }
    }
    
    
    
    _data->frameBuffer = frameBuffer;
    _data->slices = slices;
}
const FrameBuffer &
OutputFile::frameBuffer () const
{
    Lock lock (*_data);
    return _data->frameBuffer;
}
void
OutputFile::writePixels (int numScanLines)
{
    try
    {
        Lock lock (*_data);
    if (_data->slices.size() == 0)
        throw Iex::ArgExc ("No frame buffer specified "
                   "as pixel data source.");
        
        
        
        
        
        int first = (_data->currentScanLine - _data->minY) /
                         _data->linesInBuffer;
        int nextWriteBuffer = first;
        int nextCompressBuffer;
        int stop;
        int step;
        int scanLineMin;
        int scanLineMax;
        {
            
            
            
        
            
            TaskGroup taskGroup;
            
            
        
        
        
            
            if (_data->lineOrder == INCREASING_Y)
            {
                int last = (_data->currentScanLine + (numScanLines - 1) -
                            _data->minY) / _data->linesInBuffer;
                scanLineMin = _data->currentScanLine;
                scanLineMax = _data->currentScanLine + numScanLines - 1;
                int numTasks = max (min ((int)_data->lineBuffers.size(),
                                         last - first + 1),
                    1);
                for (int i = 0; i < numTasks; i++)
        {
                    ThreadPool::addGlobalTask
                        (new LineBufferTask (&taskGroup, _data, first + i,
                                             scanLineMin, scanLineMax));
        }
                nextCompressBuffer = first + numTasks;
                stop = last + 1;
                step = 1;
            }
            else
            {
                int last = (_data->currentScanLine - (numScanLines - 1) -
                            _data->minY) / _data->linesInBuffer;
                scanLineMax = _data->currentScanLine;
                scanLineMin = _data->currentScanLine - numScanLines + 1;
                int numTasks = max (min ((int)_data->lineBuffers.size(),
                                         first - last + 1),
                    1);
                for (int i = 0; i < numTasks; i++)
        {
                    ThreadPool::addGlobalTask
                        (new LineBufferTask (&taskGroup, _data, first - i,
                                             scanLineMin, scanLineMax));
        }
                nextCompressBuffer = first - numTasks;
                stop = last - 1;
                step = -1;
            }
            while (true)
            {
                if (_data->missingScanLines <= 0)
                {
                    throw Iex::ArgExc ("Tried to write more scan lines "
                                       "than specified by the data window.");
                }
        
                
        
                LineBuffer *writeBuffer =
            _data->getLineBuffer (nextWriteBuffer);
                writeBuffer->wait();
                int numLines = writeBuffer->scanLineMax -
                               writeBuffer->scanLineMin + 1;
                _data->missingScanLines -= numLines;
        
                
        
        
                if (writeBuffer->partiallyFull)
                {
                    _data->currentScanLine = _data->currentScanLine +
                                             step * numLines;
                    writeBuffer->post();
                    return;
                }
        
                
        
                writePixelData (_data, writeBuffer);
                nextWriteBuffer += step;
                _data->currentScanLine = _data->currentScanLine +
                                         step * numLines;
                #ifdef DEBUG
                    assert (_data->currentScanLine ==
                            ((_data->lineOrder == INCREASING_Y) ?
                             writeBuffer->scanLineMax + 1:
                             writeBuffer->scanLineMin - 1));
                #endif
        
                
        
                writeBuffer->post();
        
                
        
                if (nextWriteBuffer == stop)
                    break;
        
                
                
        
                if (nextCompressBuffer == stop)
                    continue;
        
                
        
                ThreadPool::addGlobalTask
                    (new LineBufferTask (&taskGroup, _data, nextCompressBuffer,
                                         scanLineMin, scanLineMax));
        
                
        
                nextCompressBuffer += step;
            }
        
            
        
        }
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    const string *exception = 0;
        for (int i = 0; i < _data->lineBuffers.size(); ++i)
    {
            LineBuffer *lineBuffer = _data->lineBuffers[i];
        if (lineBuffer->hasException && !exception)
        exception = &lineBuffer->exception;
        lineBuffer->hasException = false;
    }
    if (exception)
        throw Iex::IoExc (*exception);
    }
    catch (Iex::BaseExc &e)
    {
    REPLACE_EXC (e, "Failed to write pixel data to image "
                "file \"" << fileName() << "\". " << e);
    throw;
    }
}
int
OutputFile::currentScanLine () const
{
    Lock lock (*_data);
    return _data->currentScanLine;
}
void
OutputFile::copyPixels (InputFile &in)
{
    Lock lock (*_data);
    
    
    
    
    const Header &hdr = _data->header;
    const Header &inHdr = in.header();
    if (inHdr.find("tiles") != inHdr.end())
    THROW (Iex::ArgExc, "Cannot copy pixels from image "
                "file \"" << in.fileName() << "\" to image "
                "file \"" << fileName() << "\". "
                            "The input file is tiled, but the output file is "
                            "not. Try using TiledOutputFile::copyPixels "
                            "instead.");
    if (!(hdr.dataWindow() == inHdr.dataWindow()))
    THROW (Iex::ArgExc, "Cannot copy pixels from image "
                "file \"" << in.fileName() << "\" to image "
                "file \"" << fileName() << "\". "
                            "The files have different data windows.");
    if (!(hdr.lineOrder() == inHdr.lineOrder()))
    THROW (Iex::ArgExc, "Quick pixel copy from image "
                "file \"" << in.fileName() << "\" to image "
                "file \"" << fileName() << "\" failed. "
                "The files have different line orders.");
    if (!(hdr.compression() == inHdr.compression()))
    THROW (Iex::ArgExc, "Quick pixel copy from image "
                "file \"" << in.fileName() << "\" to image "
                "file \"" << fileName() << "\" failed. "
                "The files use different compression methods.");
    if (!(hdr.channels() == inHdr.channels()))
    THROW (Iex::ArgExc, "Quick pixel copy from image "
                "file \"" << in.fileName() << "\" to image "
                "file \"" << fileName() << "\" failed.  "
                "The files have different channel lists.");
    
    
    
    const Box2i &dataWindow = hdr.dataWindow();
    if (_data->missingScanLines != dataWindow.max.y - dataWindow.min.y + 1)
    THROW (Iex::LogicExc, "Quick pixel copy from image "
                  "file \"" << in.fileName() << "\" to image "
                  "file \"" << fileName() << "\" failed. "
                  "\"" << fileName() << "\" already contains "
                  "pixel data.");
    
    
    
    while (_data->missingScanLines > 0)
    {
    const char *pixelData;
    int pixelDataSize;
    in.rawPixelData (_data->currentScanLine, pixelData, pixelDataSize);
    writePixelData (_data, lineBufferMinY (_data->currentScanLine,
                               _data->minY,
                               _data->linesInBuffer),
                        pixelData, pixelDataSize);
    _data->currentScanLine += (_data->lineOrder == INCREASING_Y)?
                   _data->linesInBuffer: -_data->linesInBuffer;
    _data->missingScanLines -= _data->linesInBuffer;
    }
}
void
OutputFile::updatePreviewImage (const PreviewRgba newPixels[])
{
    Lock lock (*_data);
    if (_data->previewPosition <= 0)
    THROW (Iex::LogicExc, "Cannot update preview image pixels. "
                  "File \"" << fileName() << "\" does not "
                  "contain a preview image.");
    
    
    
    PreviewImageAttribute &pia =
    _data->header.typedAttribute <PreviewImageAttribute> ("preview");
    PreviewImage &pi = pia.value();
    PreviewRgba *pixels = pi.pixels();
    int numPixels = pi.width() * pi.height();
    for (int i = 0; i < numPixels; ++i)
    pixels[i] = newPixels[i];
    
    
    
    
    
    Int64 savedPosition = _data->os->tellp();
    try
    {
    _data->os->seekp (_data->previewPosition);
    pia.writeValueTo (*_data->os, _data->version);
    _data->os->seekp (savedPosition);
    }
    catch (Iex::BaseExc &e)
    {
    REPLACE_EXC (e, "Cannot update preview image pixels for "
            "file \"" << fileName() << "\". " << e);
    throw;
    }
}
void
OutputFile::breakScanLine  (int y, int offset, int length, char c)
{
    Lock lock (*_data);
    Int64 position =
    _data->lineOffsets[(y - _data->minY) / _data->linesInBuffer];
    if (!position)
    THROW (Iex::ArgExc, "Cannot overwrite scan line " << y << ". "
                "The scan line has not yet been stored in "
                "file \"" << fileName() << "\".");
    _data->currentPosition = 0;
    _data->os->seekp (position + offset);
    for (int i = 0; i < length; ++i)
    _data->os->write (&c, 1);
}
}