Coverage Report

Created: 2025-06-13 06:50

/src/freeimage-svn/FreeImage/trunk/Source/OpenEXR/IlmImf/ImfTiledInputFile.cpp
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///////////////////////////////////////////////////////////////////////////
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//
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// Copyright (c) 2004, Industrial Light & Magic, a division of Lucas
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// Digital Ltd. LLC
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// 
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// All rights reserved.
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// 
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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// *       Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// *       Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following disclaimer
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// in the documentation and/or other materials provided with the
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// distribution.
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// *       Neither the name of Industrial Light & Magic nor the names of
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// its contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission. 
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// 
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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///////////////////////////////////////////////////////////////////////////
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35
//-----------------------------------------------------------------------------
36
//
37
//  class TiledInputFile
38
//
39
//-----------------------------------------------------------------------------
40
41
#include "ImfTiledInputFile.h"
42
#include "ImfTileDescriptionAttribute.h"
43
#include "ImfChannelList.h"
44
#include "ImfMisc.h"
45
#include "ImfTiledMisc.h"
46
#include "ImfStdIO.h"
47
#include "ImfCompressor.h"
48
#include "ImfXdr.h"
49
#include "ImfConvert.h"
50
#include "ImfVersion.h"
51
#include "ImfTileOffsets.h"
52
#include "ImfThreading.h"
53
#include "ImfPartType.h"
54
#include "ImfMultiPartInputFile.h"
55
#include "ImfInputStreamMutex.h"
56
#include "IlmThreadPool.h"
57
#include "IlmThreadSemaphore.h"
58
#include "IlmThreadMutex.h"
59
#include "ImathVec.h"
60
#include "Iex.h"
61
#include <string>
62
#include <vector>
63
#include <algorithm>
64
#include <assert.h>
65
#include "ImfInputPartData.h"
66
#include "ImfNamespace.h"
67
68
OPENEXR_IMF_INTERNAL_NAMESPACE_SOURCE_ENTER
69
70
using IMATH_NAMESPACE::Box2i;
71
using IMATH_NAMESPACE::V2i;
72
using std::string;
73
using std::vector;
74
using std::min;
75
using std::max;
76
using ILMTHREAD_NAMESPACE::Mutex;
77
using ILMTHREAD_NAMESPACE::Lock;
78
using ILMTHREAD_NAMESPACE::Semaphore;
79
using ILMTHREAD_NAMESPACE::Task;
80
using ILMTHREAD_NAMESPACE::TaskGroup;
81
using ILMTHREAD_NAMESPACE::ThreadPool;
82
83
namespace {
84
85
struct TInSliceInfo
86
{
87
    PixelType   typeInFrameBuffer;
88
    PixelType   typeInFile;
89
    char *      base;
90
    size_t      xStride;
91
    size_t      yStride;
92
    bool        fill;
93
    bool        skip;
94
    double      fillValue;
95
    int         xTileCoords;
96
    int         yTileCoords;
97
98
    TInSliceInfo (PixelType typeInFrameBuffer = HALF,
99
                  PixelType typeInFile = HALF,
100
                  char *base = 0,
101
                  size_t xStride = 0,
102
                  size_t yStride = 0,
103
                  bool fill = false,
104
                  bool skip = false,
105
                  double fillValue = 0.0,
106
                  int xTileCoords = 0,
107
                  int yTileCoords = 0);
108
};
109
110
111
TInSliceInfo::TInSliceInfo (PixelType tifb,
112
                            PixelType tifl,
113
                            char *b,
114
                            size_t xs, size_t ys,
115
                            bool f, bool s,
116
                            double fv,
117
                            int xtc,
118
                            int ytc)
119
:
120
0
    typeInFrameBuffer (tifb),
121
0
    typeInFile (tifl),
122
0
    base (b),
123
0
    xStride (xs),
124
0
    yStride (ys),
125
0
    fill (f),
126
0
    skip (s),
127
0
    fillValue (fv),
128
0
    xTileCoords (xtc),
129
0
    yTileCoords (ytc)
130
0
{
131
    // empty
132
0
}
133
134
135
struct TileBuffer
136
{
137
    const char *  uncompressedData;
138
    char *    buffer;
139
    int     dataSize;
140
    Compressor *  compressor;
141
    Compressor::Format  format;
142
    int     dx;
143
    int     dy;
144
    int     lx;
145
    int     ly;
146
    bool    hasException;
147
    string    exception;
148
149
     TileBuffer (Compressor * const comp);
150
    ~TileBuffer ();
151
152
0
    inline void   wait () {_sem.wait();}
153
0
    inline void   post () {_sem.post();}
154
155
 protected:
156
157
    Semaphore _sem;
158
};
159
160
161
TileBuffer::TileBuffer (Compressor *comp):
162
0
    uncompressedData (0),
163
0
    buffer (0),
164
0
    dataSize (0),
165
0
    compressor (comp),
166
0
    format (defaultFormat (compressor)),
167
0
    dx (-1),
168
0
    dy (-1),
169
0
    lx (-1),
170
0
    ly (-1),
171
0
    hasException (false),
172
0
    exception (),
173
0
    _sem (1)
174
0
{
175
    // empty
176
0
}
177
178
179
TileBuffer::~TileBuffer ()
180
0
{
181
0
    delete compressor;
182
0
}
183
184
} // namespace
185
186
187
class MultiPartInputFile;
188
189
190
//
191
// struct TiledInputFile::Data stores things that will be
192
// needed between calls to readTile()
193
//
194
195
struct TiledInputFile::Data: public Mutex
196
{
197
    Header      header;               // the image header
198
    TileDescription tileDesc;               // describes the tile layout
199
    int       version;                // file's version
200
    FrameBuffer     frameBuffer;              // framebuffer to write into
201
    LineOrder     lineOrder;                // the file's lineorder
202
    int       minX;               // data window's min x coord
203
    int       maxX;               // data window's max x coord
204
    int       minY;               // data window's min y coord
205
    int       maxY;               // data window's max x coord
206
207
    int       numXLevels;               // number of x levels
208
    int       numYLevels;               // number of y levels
209
    int *     numXTiles;                // number of x tiles at a level
210
    int *     numYTiles;                // number of y tiles at a level
211
212
    TileOffsets     tileOffsets;              // stores offsets in file for
213
    // each tile
214
215
    bool      fileIsComplete;             // True if no tiles are missing
216
                                                    // in the file
217
218
    vector<TInSliceInfo> slices;              // info about channels in file
219
220
    size_t      bytesPerPixel;                  // size of an uncompressed pixel
221
222
    size_t      maxBytesPerTileLine;            // combined size of a line
223
                                                    // over all channels
224
225
    int             partNumber;                     // part number
226
227
    bool            multiPartBackwardSupport;       // if we are reading a multipart file
228
                                                    // using OpenEXR 1.7 API
229
230
    int             numThreads;                     // number of threads
231
232
    MultiPartInputFile* multiPartFile;              // the MultiPartInputFile used to
233
                                                    // support backward compatibility
234
    
235
    vector<TileBuffer*> tileBuffers;                // each holds a single tile
236
    size_t          tileBufferSize;             // size of the tile buffers
237
238
    bool            memoryMapped;                   // if the stream is memory mapped
239
240
    InputStreamMutex * _streamData;
241
    bool                _deleteStream;
242
243
     Data (int numThreads);
244
    ~Data ();
245
246
    inline TileBuffer * getTileBuffer (int number);
247
              // hash function from tile indices
248
              // into our vector of tile buffers
249
};
250
251
252
TiledInputFile::Data::Data (int numThreads):
253
0
    numXTiles (0),
254
0
    numYTiles (0),
255
0
    partNumber (-1),
256
0
    multiPartBackwardSupport(false),
257
0
    numThreads(numThreads),
258
0
    memoryMapped(false),
259
    _streamData(NULL),
260
0
    _deleteStream(false)
261
0
{
262
    //
263
    // We need at least one tileBuffer, but if threading is used,
264
    // to keep n threads busy we need 2*n tileBuffers
265
    //
266
267
0
    tileBuffers.resize (max (1, 2 * numThreads));
268
0
}
269
270
271
TiledInputFile::Data::~Data ()
272
0
{
273
0
    delete [] numXTiles;
274
0
    delete [] numYTiles;
275
276
0
    for (size_t i = 0; i < tileBuffers.size(); i++)
277
0
        delete tileBuffers[i];
278
279
0
    if (multiPartBackwardSupport)
280
0
        delete multiPartFile;
281
0
}
282
283
284
TileBuffer*
285
TiledInputFile::Data::getTileBuffer (int number)
286
0
{
287
0
    return tileBuffers[number % tileBuffers.size()];
288
0
}
289
290
291
namespace {
292
293
void
294
readTileData (InputStreamMutex *streamData,
295
              TiledInputFile::Data *ifd,
296
        int dx, int dy,
297
        int lx, int ly,
298
              char *&buffer,
299
              int &dataSize)
300
0
{
301
    //
302
    // Read a single tile block from the file and into the array pointed
303
    // to by buffer.  If the file is memory-mapped, then we change where
304
    // buffer points instead of writing into the array (hence buffer needs
305
    // to be a reference to a char *).
306
    //
307
308
    //
309
    // Look up the location for this tile in the Index and
310
    // seek to that position if necessary
311
    //
312
    
313
0
    Int64 tileOffset = ifd->tileOffsets (dx, dy, lx, ly);
314
315
0
    if (tileOffset == 0)
316
0
    {
317
0
        THROW (IEX_NAMESPACE::InputExc, "Tile (" << dx << ", " << dy << ", " <<
318
0
            lx << ", " << ly << ") is missing.");
319
0
    }
320
321
322
    //
323
    // In a multi-part file, the next chunk does not need to
324
    // belong to the same part, so we have to compare the
325
    // offset here.
326
    //
327
328
0
    if (!isMultiPart(ifd->version))
329
0
    {
330
0
        if (streamData->currentPosition != tileOffset)
331
0
            streamData->is->seekg (tileOffset);
332
0
    }
333
0
    else
334
0
    {
335
        //
336
        // In a multi-part file, the file pointer may be moved by other
337
        // parts, so we have to ask tellg() where we are.
338
        //
339
0
        if (streamData->is->tellg() != tileOffset)
340
0
            streamData->is->seekg (tileOffset);
341
0
    }
342
343
    //
344
    // Read the first few bytes of the tile (the header).
345
    // Verify that the tile coordinates and the level number
346
    // are correct.
347
    //
348
    
349
0
    int tileXCoord, tileYCoord, levelX, levelY;
350
351
0
    if (isMultiPart(ifd->version))
352
0
    {
353
0
        int partNumber;
354
0
        Xdr::read <StreamIO> (*streamData->is, partNumber);
355
0
        if (partNumber != ifd->partNumber)
356
0
        {
357
0
            THROW (IEX_NAMESPACE::ArgExc, "Unexpected part number " << partNumber
358
0
                   << ", should be " << ifd->partNumber << ".");
359
0
        }
360
0
    }
361
362
0
    OPENEXR_IMF_INTERNAL_NAMESPACE::Xdr::read <OPENEXR_IMF_INTERNAL_NAMESPACE::StreamIO> (*streamData->is, tileXCoord);
363
0
    OPENEXR_IMF_INTERNAL_NAMESPACE::Xdr::read <OPENEXR_IMF_INTERNAL_NAMESPACE::StreamIO> (*streamData->is, tileYCoord);
364
0
    OPENEXR_IMF_INTERNAL_NAMESPACE::Xdr::read <OPENEXR_IMF_INTERNAL_NAMESPACE::StreamIO> (*streamData->is, levelX);
365
0
    OPENEXR_IMF_INTERNAL_NAMESPACE::Xdr::read <OPENEXR_IMF_INTERNAL_NAMESPACE::StreamIO> (*streamData->is, levelY);
366
0
    OPENEXR_IMF_INTERNAL_NAMESPACE::Xdr::read <OPENEXR_IMF_INTERNAL_NAMESPACE::StreamIO> (*streamData->is, dataSize);
367
368
0
    if (tileXCoord != dx)
369
0
        throw IEX_NAMESPACE::InputExc ("Unexpected tile x coordinate.");
370
371
0
    if (tileYCoord != dy)
372
0
        throw IEX_NAMESPACE::InputExc ("Unexpected tile y coordinate.");
373
374
0
    if (levelX != lx)
375
0
        throw IEX_NAMESPACE::InputExc ("Unexpected tile x level number coordinate.");
376
377
0
    if (levelY != ly)
378
0
        throw IEX_NAMESPACE::InputExc ("Unexpected tile y level number coordinate.");
379
380
0
    if (dataSize > (int) ifd->tileBufferSize)
381
0
        throw IEX_NAMESPACE::InputExc ("Unexpected tile block length.");
382
383
    //
384
    // Read the pixel data.
385
    //
386
387
0
    if (streamData->is->isMemoryMapped ())
388
0
        buffer = streamData->is->readMemoryMapped (dataSize);
389
0
    else
390
0
        streamData->is->read (buffer, dataSize);
391
392
    //
393
    // Keep track of which tile is the next one in
394
    // the file, so that we can avoid redundant seekg()
395
    // operations (seekg() can be fairly expensive).
396
    //
397
    
398
0
    streamData->currentPosition = tileOffset + 5 * Xdr::size<int>() + dataSize;
399
0
}
400
401
402
void
403
readNextTileData (InputStreamMutex *streamData,
404
                  TiledInputFile::Data *ifd,
405
      int &dx, int &dy,
406
      int &lx, int &ly,
407
                  char * & buffer,
408
      int &dataSize)
409
0
{
410
    //
411
    // Read the next tile block from the file
412
    //
413
414
0
    if(isMultiPart(ifd->version))
415
0
    {
416
0
        int part;
417
0
        Xdr::read <StreamIO> (*streamData->is, part);
418
0
        if(part!=ifd->partNumber)
419
0
        {
420
0
           throw IEX_NAMESPACE::InputExc("Unexpected part number in readNextTileData");
421
0
        }
422
0
    }
423
424
    //
425
    // Read the first few bytes of the tile (the header).
426
    //
427
428
0
    Xdr::read <StreamIO> (*streamData->is, dx);
429
0
    Xdr::read <StreamIO> (*streamData->is, dy);
430
0
    Xdr::read <StreamIO> (*streamData->is, lx);
431
0
    Xdr::read <StreamIO> (*streamData->is, ly);
432
0
    Xdr::read <StreamIO> (*streamData->is, dataSize);
433
434
0
    if (dataSize > (int) ifd->tileBufferSize)
435
0
        throw IEX_NAMESPACE::InputExc ("Unexpected tile block length.");
436
    
437
    //
438
    // Read the pixel data.
439
    //
440
441
0
    streamData->is->read (buffer, dataSize);
442
    
443
    //
444
    // Keep track of which tile is the next one in
445
    // the file, so that we can avoid redundant seekg()
446
    // operations (seekg() can be fairly expensive).
447
    //
448
449
0
    streamData->currentPosition += 5 * Xdr::size<int>() + dataSize;
450
0
}
451
452
453
//
454
// A TileBufferTask encapsulates the task of uncompressing
455
// a single tile and copying it into the frame buffer.
456
//
457
458
class TileBufferTask : public Task
459
{
460
  public:
461
462
    TileBufferTask (TaskGroup *group,
463
                    TiledInputFile::Data *ifd,
464
        TileBuffer *tileBuffer);
465
                    
466
    virtual ~TileBufferTask ();
467
468
    virtual void    execute ();
469
    
470
  private:
471
472
    TiledInputFile::Data *  _ifd;
473
    TileBuffer *    _tileBuffer;
474
};
475
476
477
TileBufferTask::TileBufferTask
478
    (TaskGroup *group,
479
     TiledInputFile::Data *ifd,
480
     TileBuffer *tileBuffer)
481
:
482
0
    Task (group),
483
0
    _ifd (ifd),
484
0
    _tileBuffer (tileBuffer)
485
0
{
486
    // empty
487
0
}
488
489
490
TileBufferTask::~TileBufferTask ()
491
0
{
492
    //
493
    // Signal that the tile buffer is now free
494
    //
495
496
0
    _tileBuffer->post ();
497
0
}
498
499
500
void
501
TileBufferTask::execute ()
502
0
{
503
0
    try
504
0
    {
505
        //
506
        // Calculate information about the tile
507
        //
508
    
509
0
        Box2i tileRange =  OPENEXR_IMF_INTERNAL_NAMESPACE::dataWindowForTile (
510
0
                _ifd->tileDesc,
511
0
                _ifd->minX, _ifd->maxX,
512
0
                _ifd->minY, _ifd->maxY,
513
0
                _tileBuffer->dx,
514
0
                _tileBuffer->dy,
515
0
                _tileBuffer->lx,
516
0
                _tileBuffer->ly);
517
518
0
        int numPixelsPerScanLine = tileRange.max.x - tileRange.min.x + 1;
519
    
520
0
        int numPixelsInTile = numPixelsPerScanLine *
521
0
                            (tileRange.max.y - tileRange.min.y + 1);
522
    
523
0
        int sizeOfTile = _ifd->bytesPerPixel * numPixelsInTile;
524
    
525
    
526
        //
527
        // Uncompress the data, if necessary
528
        //
529
    
530
0
        if (_tileBuffer->compressor && _tileBuffer->dataSize < sizeOfTile)
531
0
        {
532
0
            _tileBuffer->format = _tileBuffer->compressor->format();
533
534
0
            _tileBuffer->dataSize = _tileBuffer->compressor->uncompressTile
535
0
    (_tileBuffer->buffer, _tileBuffer->dataSize,
536
0
     tileRange, _tileBuffer->uncompressedData);
537
0
        }
538
0
        else
539
0
        {
540
            //
541
            // If the line is uncompressed, it's in XDR format,
542
            // regardless of the compressor's output format.
543
            //
544
    
545
0
            _tileBuffer->format = Compressor::XDR;
546
0
            _tileBuffer->uncompressedData = _tileBuffer->buffer;
547
0
        }
548
    
549
        //
550
        // Convert the tile of pixel data back from the machine-independent
551
  // representation, and store the result in the frame buffer.
552
        //
553
    
554
0
        const char *readPtr = _tileBuffer->uncompressedData;
555
                                                        // points to where we
556
                                                        // read from in the
557
                                                        // tile block
558
        
559
        //
560
        // Iterate over the scan lines in the tile.
561
        //
562
    
563
0
        for (int y = tileRange.min.y; y <= tileRange.max.y; ++y)
564
0
        {
565
            //
566
            // Iterate over all image channels.
567
            //
568
            
569
0
            for (unsigned int i = 0; i < _ifd->slices.size(); ++i)
570
0
            {
571
0
                const TInSliceInfo &slice = _ifd->slices[i];
572
    
573
                //
574
                // These offsets are used to facilitate both
575
                // absolute and tile-relative pixel coordinates.
576
                //
577
            
578
0
                int xOffset = slice.xTileCoords * tileRange.min.x;
579
0
                int yOffset = slice.yTileCoords * tileRange.min.y;
580
    
581
                //
582
                // Fill the frame buffer with pixel data.
583
                //
584
    
585
0
                if (slice.skip)
586
0
                {
587
                    //
588
                    // The file contains data for this channel, but
589
                    // the frame buffer contains no slice for this channel.
590
                    //
591
    
592
0
                    skipChannel (readPtr, slice.typeInFile,
593
0
                                 numPixelsPerScanLine);
594
0
                }
595
0
                else
596
0
                {
597
                    //
598
                    // The frame buffer contains a slice for this channel.
599
                    //
600
    
601
0
                    char *writePtr = slice.base +
602
0
                                     (y - yOffset) * slice.yStride +
603
0
                                     (tileRange.min.x - xOffset) *
604
0
                                     slice.xStride;
605
606
0
                    char *endPtr = writePtr +
607
0
                                   (numPixelsPerScanLine - 1) * slice.xStride;
608
                                    
609
0
                    copyIntoFrameBuffer (readPtr, writePtr, endPtr,
610
0
                                         slice.xStride,
611
0
                                         slice.fill, slice.fillValue,
612
0
                                         _tileBuffer->format,
613
0
                                         slice.typeInFrameBuffer,
614
0
                                         slice.typeInFile);
615
0
                }
616
0
            }
617
0
        }
618
0
    }
619
0
    catch (std::exception &e)
620
0
    {
621
0
        if (!_tileBuffer->hasException)
622
0
        {
623
0
            _tileBuffer->exception = e.what ();
624
0
            _tileBuffer->hasException = true;
625
0
        }
626
0
    }
627
0
    catch (...)
628
0
    {
629
0
        if (!_tileBuffer->hasException)
630
0
        {
631
0
            _tileBuffer->exception = "unrecognized exception";
632
0
            _tileBuffer->hasException = true;
633
0
        }
634
0
    }
635
0
}
636
637
638
TileBufferTask *
639
newTileBufferTask
640
    (TaskGroup *group,
641
     InputStreamMutex *streamData,
642
     TiledInputFile::Data *ifd,
643
     int number,
644
     int dx, int dy,
645
     int lx, int ly)
646
0
{
647
    //
648
    // Wait for a tile buffer to become available,
649
    // fill the buffer with raw data from the file,
650
    // and create a new TileBufferTask whose execute()
651
    // method will uncompress the tile and copy the
652
    // tile's pixels into the frame buffer.
653
    //
654
655
0
    TileBuffer *tileBuffer = ifd->getTileBuffer (number);
656
657
0
    try
658
0
    {
659
0
  tileBuffer->wait();
660
  
661
0
  tileBuffer->dx = dx;
662
0
  tileBuffer->dy = dy;
663
0
  tileBuffer->lx = lx;
664
0
  tileBuffer->ly = ly;
665
666
0
  tileBuffer->uncompressedData = 0;
667
668
0
  readTileData (streamData, ifd, dx, dy, lx, ly,
669
0
          tileBuffer->buffer,
670
0
          tileBuffer->dataSize);
671
0
    }
672
0
    catch (...)
673
0
    {
674
  //
675
  // Reading from the file caused an exception.
676
  // Signal that the tile buffer is free, and
677
  // re-throw the exception.
678
  //
679
680
0
  tileBuffer->post();
681
0
  throw;
682
0
    }
683
684
0
    return new TileBufferTask (group, ifd, tileBuffer);
685
0
}
686
687
688
} // namespace
689
690
691
TiledInputFile::TiledInputFile (const char fileName[], int numThreads):
692
0
    _data (new Data (numThreads))
693
0
{
694
0
    _data->_streamData=NULL;
695
0
    _data->_deleteStream=true;
696
    
697
    //
698
    // This constructor is called when a user
699
    // explicitly wants to read a tiled file.
700
    //
701
702
703
0
    IStream* is = 0;
704
0
    try
705
0
    {
706
0
        is = new StdIFStream (fileName);
707
0
  readMagicNumberAndVersionField(*is, _data->version);
708
709
  //
710
        // Backward compatibility to read multpart file.
711
        //
712
0
  if (isMultiPart(_data->version))
713
0
  {
714
0
      compatibilityInitialize(*is);
715
0
      return;
716
0
  }
717
718
0
  _data->_streamData = new InputStreamMutex();
719
0
  _data->_streamData->is = is;
720
0
  _data->header.readFrom (*_data->_streamData->is, _data->version);
721
0
  initialize();
722
        //read tile offsets - we are not multipart or deep
723
0
        _data->tileOffsets.readFrom (*(_data->_streamData->is), _data->fileIsComplete,false,false);
724
0
  _data->_streamData->currentPosition = _data->_streamData->is->tellg();
725
0
    }
726
0
    catch (IEX_NAMESPACE::BaseExc &e)
727
0
    {
728
0
        if (_data->_streamData != 0)
729
0
        {
730
0
            if (_data->_streamData->is != 0)
731
0
            {
732
0
                delete _data->_streamData->is;
733
0
                _data->_streamData->is = is = 0;
734
0
            }
735
736
0
            delete _data->_streamData;
737
0
        }
738
739
0
        if (is != 0)
740
0
            delete is;
741
742
0
  REPLACE_EXC (e, "Cannot open image file "
743
0
      "\"" << fileName << "\". " << e);
744
0
  throw;
745
0
    }
746
0
    catch (...)
747
0
    {
748
0
        if ( _data->_streamData != 0)
749
0
        {
750
0
            if ( _data->_streamData->is != 0)
751
0
            {
752
0
                delete _data->_streamData->is;
753
0
                _data->_streamData->is = is = 0;
754
0
            }
755
756
0
            delete _data->_streamData;
757
0
        }
758
759
0
        if (is != 0)
760
0
            delete is;
761
0
        throw;
762
0
    }
763
0
}
764
765
766
TiledInputFile::TiledInputFile (OPENEXR_IMF_INTERNAL_NAMESPACE::IStream &is, int numThreads):
767
0
    _data (new Data (numThreads))
768
0
{
769
0
    _data->_deleteStream=false;
770
    //
771
    // This constructor is called when a user
772
    // explicitly wants to read a tiled file.
773
    //
774
775
0
    bool streamDataCreated = false;
776
777
0
    try
778
0
    {
779
0
  readMagicNumberAndVersionField(is, _data->version);
780
781
  //
782
  // Backward compatibility to read multpart file.
783
  //
784
0
  if (isMultiPart(_data->version))
785
0
        {
786
0
      compatibilityInitialize(is);
787
0
            return;
788
0
        }
789
790
0
  streamDataCreated = true;
791
0
  _data->_streamData = new InputStreamMutex();
792
0
  _data->_streamData->is = &is;
793
0
  _data->header.readFrom (*_data->_streamData->is, _data->version);
794
0
  initialize();
795
        // file is guaranteed to be single part, regular image
796
0
        _data->tileOffsets.readFrom (*(_data->_streamData->is), _data->fileIsComplete,false,false);
797
0
  _data->memoryMapped = _data->_streamData->is->isMemoryMapped();
798
0
  _data->_streamData->currentPosition = _data->_streamData->is->tellg();
799
0
    }
800
0
    catch (IEX_NAMESPACE::BaseExc &e)
801
0
    {
802
0
        if (streamDataCreated) delete _data->_streamData;
803
0
  delete _data;
804
805
0
  REPLACE_EXC (e, "Cannot open image file "
806
0
      "\"" << is.fileName() << "\". " << e);
807
0
  throw;
808
0
    }
809
0
    catch (...)
810
0
    {
811
0
        if (streamDataCreated) delete _data->_streamData;
812
0
  delete _data;
813
0
        throw;
814
0
    }
815
0
}
816
817
818
TiledInputFile::TiledInputFile (const Header &header,
819
                                OPENEXR_IMF_INTERNAL_NAMESPACE::IStream *is,
820
                                int version,
821
                                int numThreads) :
822
0
    _data (new Data (numThreads))
823
0
{
824
0
    _data->_deleteStream=false;
825
0
    _data->_streamData = new InputStreamMutex();
826
    //
827
    // This constructor called by class Imf::InputFile
828
    // when a user wants to just read an image file, and
829
    // doesn't care or know if the file is tiled.
830
    // No need to have backward compatibility here, because
831
    // we have somehow got the header.
832
    //
833
834
0
    _data->_streamData->is = is;
835
0
    _data->header = header;
836
0
    _data->version = version;
837
0
    initialize();
838
0
    _data->tileOffsets.readFrom (*(_data->_streamData->is),_data->fileIsComplete,false,false);
839
0
    _data->memoryMapped = is->isMemoryMapped();
840
0
    _data->_streamData->currentPosition = _data->_streamData->is->tellg();
841
0
}
842
843
844
TiledInputFile::TiledInputFile (InputPartData* part) 
845
0
{
846
0
    _data = new Data (part->numThreads);
847
0
    _data->_deleteStream=false;
848
0
    multiPartInitialize(part);
849
0
}
850
851
852
void
853
TiledInputFile::compatibilityInitialize(OPENEXR_IMF_INTERNAL_NAMESPACE::IStream& is)
854
0
{
855
0
    is.seekg(0);
856
    //
857
    // Construct a MultiPartInputFile, initialize TiledInputFile
858
    // with the part 0 data.
859
    // (TODO) maybe change the third parameter of the constructor of MultiPartInputFile later.
860
    //
861
0
    _data->multiPartBackwardSupport = true;
862
0
    _data->multiPartFile = new MultiPartInputFile(is, _data->numThreads);
863
0
    InputPartData* part = _data->multiPartFile->getPart(0);
864
865
0
    multiPartInitialize(part);
866
0
}
867
868
869
void
870
TiledInputFile::multiPartInitialize(InputPartData* part)
871
0
{
872
0
    if (part->header.type() != TILEDIMAGE)
873
0
        throw IEX_NAMESPACE::ArgExc("Can't build a TiledInputFile from a type-mismatched part.");
874
875
0
    _data->_streamData = part->mutex;
876
0
    _data->header = part->header;
877
0
    _data->version = part->version;
878
0
    _data->partNumber = part->partNumber;
879
0
    _data->memoryMapped = _data->_streamData->is->isMemoryMapped();
880
0
    initialize();
881
0
    _data->tileOffsets.readFrom(part->chunkOffsets,_data->fileIsComplete);
882
0
    _data->_streamData->currentPosition = _data->_streamData->is->tellg();
883
0
}
884
885
886
void
887
TiledInputFile::initialize ()
888
0
{
889
    // fix bad types in header (arises when a tool built against an older version of
890
    // OpenEXR converts a scanline image to tiled)
891
    // only applies when file is a single part, regular image, tiled file
892
    //
893
0
    if(!isMultiPart(_data->version) &&
894
0
       !isNonImage(_data->version) && 
895
0
       isTiled(_data->version) && 
896
0
       _data->header.hasType() )
897
0
    {
898
0
        _data->header.setType(TILEDIMAGE);
899
0
    }
900
    
901
0
    if (_data->partNumber == -1)
902
0
    {
903
0
        if (!isTiled (_data->version))
904
0
            throw IEX_NAMESPACE::ArgExc ("Expected a tiled file but the file is not tiled.");
905
        
906
0
    }
907
0
    else
908
0
    {
909
0
        if(_data->header.hasType() && _data->header.type()!=TILEDIMAGE)
910
0
        {
911
0
            throw IEX_NAMESPACE::ArgExc ("TiledInputFile used for non-tiledimage part.");
912
0
        }
913
0
    }
914
    
915
0
    _data->header.sanityCheck (true);
916
917
0
    _data->tileDesc = _data->header.tileDescription();
918
0
    _data->lineOrder = _data->header.lineOrder();
919
920
    //
921
    // Save the dataWindow information
922
    //
923
    
924
0
    const Box2i &dataWindow = _data->header.dataWindow();
925
0
    _data->minX = dataWindow.min.x;
926
0
    _data->maxX = dataWindow.max.x;
927
0
    _data->minY = dataWindow.min.y;
928
0
    _data->maxY = dataWindow.max.y;
929
930
    //
931
    // Precompute level and tile information to speed up utility functions
932
    //
933
934
0
    precalculateTileInfo (_data->tileDesc,
935
0
        _data->minX, _data->maxX,
936
0
        _data->minY, _data->maxY,
937
0
        _data->numXTiles, _data->numYTiles,
938
0
        _data->numXLevels, _data->numYLevels);    
939
940
0
    _data->bytesPerPixel = calculateBytesPerPixel (_data->header);
941
942
0
    _data->maxBytesPerTileLine = _data->bytesPerPixel * _data->tileDesc.xSize;
943
944
0
    _data->tileBufferSize = _data->maxBytesPerTileLine * _data->tileDesc.ySize;
945
946
    //
947
    // Create all the TileBuffers and allocate their internal buffers
948
    //
949
950
0
    for (size_t i = 0; i < _data->tileBuffers.size(); i++)
951
0
    {
952
0
        _data->tileBuffers[i] = new TileBuffer (newTileCompressor
953
0
              (_data->header.compression(),
954
0
               _data->maxBytesPerTileLine,
955
0
               _data->tileDesc.ySize,
956
0
               _data->header));
957
958
0
        if (!_data->_streamData->is->isMemoryMapped ())
959
0
            _data->tileBuffers[i]->buffer = new char [_data->tileBufferSize];
960
0
    }
961
962
0
    _data->tileOffsets = TileOffsets (_data->tileDesc.mode,
963
0
              _data->numXLevels,
964
0
              _data->numYLevels,
965
0
              _data->numXTiles,
966
0
              _data->numYTiles);
967
0
}
968
969
970
TiledInputFile::~TiledInputFile ()
971
0
{
972
0
    if (!_data->memoryMapped)
973
0
        for (size_t i = 0; i < _data->tileBuffers.size(); i++)
974
0
            delete [] _data->tileBuffers[i]->buffer;
975
976
0
    if (_data->_deleteStream)
977
0
        delete _data->_streamData->is;
978
979
0
    if (_data->partNumber == -1)
980
0
        delete _data->_streamData;
981
982
0
    delete _data;
983
0
}
984
985
986
const char *
987
TiledInputFile::fileName () const
988
0
{
989
0
    return _data->_streamData->is->fileName();
990
0
}
991
992
993
const Header &
994
TiledInputFile::header () const
995
0
{
996
0
    return _data->header;
997
0
}
998
999
1000
int
1001
TiledInputFile::version () const
1002
0
{
1003
0
    return _data->version;
1004
0
}
1005
1006
1007
void  
1008
TiledInputFile::setFrameBuffer (const FrameBuffer &frameBuffer)
1009
0
{
1010
0
    Lock lock (*_data->_streamData);
1011
1012
    //
1013
    // Set the frame buffer
1014
    //
1015
1016
    //
1017
    // Check if the new frame buffer descriptor is
1018
    // compatible with the image file header.
1019
    //
1020
1021
0
    const ChannelList &channels = _data->header.channels();
1022
1023
0
    for (FrameBuffer::ConstIterator j = frameBuffer.begin();
1024
0
         j != frameBuffer.end();
1025
0
         ++j)
1026
0
    {
1027
0
        ChannelList::ConstIterator i = channels.find (j.name());
1028
1029
0
        if (i == channels.end())
1030
0
            continue;
1031
1032
0
        if (i.channel().xSampling != j.slice().xSampling ||
1033
0
            i.channel().ySampling != j.slice().ySampling)
1034
0
            THROW (IEX_NAMESPACE::ArgExc, "X and/or y subsampling factors "
1035
0
        "of \"" << i.name() << "\" channel "
1036
0
        "of input file \"" << fileName() << "\" are "
1037
0
        "not compatible with the frame buffer's "
1038
0
        "subsampling factors.");
1039
0
    }
1040
1041
    //
1042
    // Initialize the slice table for readPixels().
1043
    //
1044
1045
0
    vector<TInSliceInfo> slices;
1046
0
    ChannelList::ConstIterator i = channels.begin();
1047
1048
0
    for (FrameBuffer::ConstIterator j = frameBuffer.begin();
1049
0
         j != frameBuffer.end();
1050
0
         ++j)
1051
0
    {
1052
0
        while (i != channels.end() && strcmp (i.name(), j.name()) < 0)
1053
0
        {
1054
            //
1055
            // Channel i is present in the file but not
1056
            // in the frame buffer; data for channel i
1057
            // will be skipped during readPixels().
1058
            //
1059
1060
0
            slices.push_back (TInSliceInfo (i.channel().type,
1061
0
              i.channel().type,
1062
0
              0,      // base
1063
0
              0,      // xStride
1064
0
              0,      // yStride
1065
0
              false,  // fill
1066
0
              true,   // skip
1067
0
              0.0));  // fillValue
1068
0
            ++i;
1069
0
        }
1070
1071
0
        bool fill = false;
1072
1073
0
        if (i == channels.end() || strcmp (i.name(), j.name()) > 0)
1074
0
        {
1075
            //
1076
            // Channel i is present in the frame buffer, but not in the file.
1077
            // In the frame buffer, slice j will be filled with a default value.
1078
            //
1079
1080
0
            fill = true;
1081
0
        }
1082
1083
0
        slices.push_back (TInSliceInfo (j.slice().type,
1084
0
                                        fill? j.slice().type: i.channel().type,
1085
0
                                        j.slice().base,
1086
0
                                        j.slice().xStride,
1087
0
                                        j.slice().yStride,
1088
0
                                        fill,
1089
0
                                        false, // skip
1090
0
                                        j.slice().fillValue,
1091
0
                                        (j.slice().xTileCoords)? 1: 0,
1092
0
                                        (j.slice().yTileCoords)? 1: 0));
1093
1094
0
        if (i != channels.end() && !fill)
1095
0
            ++i;
1096
0
    }
1097
1098
0
    while (i != channels.end())
1099
0
    {
1100
  //
1101
  // Channel i is present in the file but not
1102
  // in the frame buffer; data for channel i
1103
  // will be skipped during readPixels().
1104
  //
1105
1106
0
  slices.push_back (TInSliceInfo (i.channel().type,
1107
0
          i.channel().type,
1108
0
          0, // base
1109
0
          0, // xStride
1110
0
          0, // yStride
1111
0
          false,  // fill
1112
0
          true, // skip
1113
0
          0.0)); // fillValue
1114
0
  ++i;
1115
0
    }
1116
1117
    //
1118
    // Store the new frame buffer.
1119
    //
1120
1121
0
    _data->frameBuffer = frameBuffer;
1122
0
    _data->slices = slices;
1123
0
}
1124
1125
1126
const FrameBuffer &
1127
TiledInputFile::frameBuffer () const
1128
0
{
1129
0
    Lock lock (*_data->_streamData);
1130
0
    return _data->frameBuffer;
1131
0
}
1132
1133
1134
bool
1135
TiledInputFile::isComplete () const
1136
0
{
1137
0
    return _data->fileIsComplete;
1138
0
}
1139
1140
1141
void
1142
TiledInputFile::readTiles (int dx1, int dx2, int dy1, int dy2, int lx, int ly)
1143
0
{
1144
    //
1145
    // Read a range of tiles from the file into the framebuffer
1146
    //
1147
1148
0
    try
1149
0
    {
1150
0
        Lock lock (*_data->_streamData);
1151
1152
0
        if (_data->slices.size() == 0)
1153
0
            throw IEX_NAMESPACE::ArgExc ("No frame buffer specified "
1154
0
             "as pixel data destination.");
1155
        
1156
0
        if (!isValidLevel (lx, ly))
1157
0
            THROW (IEX_NAMESPACE::ArgExc,
1158
0
                   "Level coordinate "
1159
0
                   "(" << lx << ", " << ly << ") "
1160
0
                   "is invalid.");
1161
1162
        //
1163
        // Determine the first and last tile coordinates in both dimensions.
1164
        // We always attempt to read the range of tiles in the order that
1165
        // they are stored in the file.
1166
        //
1167
                               
1168
0
        if (dx1 > dx2)
1169
0
            std::swap (dx1, dx2);
1170
        
1171
0
        if (dy1 > dy2)
1172
0
            std::swap (dy1, dy2);
1173
        
1174
0
        int dyStart = dy1;
1175
0
  int dyStop  = dy2 + 1;
1176
0
  int dY      = 1;
1177
1178
0
        if (_data->lineOrder == DECREASING_Y)
1179
0
        {
1180
0
            dyStart = dy2;
1181
0
            dyStop  = dy1 - 1;
1182
0
            dY      = -1;
1183
0
        }
1184
1185
        //
1186
        // Create a task group for all tile buffer tasks.  When the
1187
  // task group goes out of scope, the destructor waits until
1188
  // all tasks are complete.
1189
        //
1190
        
1191
0
        {
1192
0
            TaskGroup taskGroup;
1193
0
            int tileNumber = 0;
1194
    
1195
0
            for (int dy = dyStart; dy != dyStop; dy += dY)
1196
0
            {
1197
0
                for (int dx = dx1; dx <= dx2; dx++)
1198
0
                {
1199
0
                    if (!isValidTile (dx, dy, lx, ly))
1200
0
                        THROW (IEX_NAMESPACE::ArgExc,
1201
0
             "Tile (" << dx << ", " << dy << ", " <<
1202
0
             lx << "," << ly << ") is not a valid tile.");
1203
                    
1204
0
                    ThreadPool::addGlobalTask (newTileBufferTask (&taskGroup,
1205
0
                                                                  _data->_streamData,
1206
0
                                                                  _data,
1207
0
                                                                  tileNumber++,
1208
0
                                                                  dx, dy,
1209
0
                                                                  lx, ly));
1210
0
                }
1211
0
            }
1212
1213
      //
1214
            // finish all tasks
1215
      //
1216
0
        }
1217
1218
  //
1219
  // Exeption handling:
1220
  //
1221
  // TileBufferTask::execute() may have encountered exceptions, but
1222
  // those exceptions occurred in another thread, not in the thread
1223
  // that is executing this call to TiledInputFile::readTiles().
1224
  // TileBufferTask::execute() has caught all exceptions and stored
1225
  // the exceptions' what() strings in the tile buffers.
1226
  // Now we check if any tile buffer contains a stored exception; if
1227
  // this is the case then we re-throw the exception in this thread.
1228
  // (It is possible that multiple tile buffers contain stored
1229
  // exceptions.  We re-throw the first exception we find and
1230
  // ignore all others.)
1231
  //
1232
1233
0
  const string *exception = 0;
1234
1235
0
        for (size_t i = 0; i < _data->tileBuffers.size(); ++i)
1236
0
  {
1237
0
            TileBuffer *tileBuffer = _data->tileBuffers[i];
1238
1239
0
      if (tileBuffer->hasException && !exception)
1240
0
    exception = &tileBuffer->exception;
1241
1242
0
      tileBuffer->hasException = false;
1243
0
  }
1244
1245
0
  if (exception)
1246
0
      throw IEX_NAMESPACE::IoExc (*exception);
1247
0
    }
1248
0
    catch (IEX_NAMESPACE::BaseExc &e)
1249
0
    {
1250
0
        REPLACE_EXC (e, "Error reading pixel data from image "
1251
0
                        "file \"" << fileName() << "\". " << e);
1252
0
        throw;
1253
0
    }
1254
0
}
1255
1256
1257
void  
1258
TiledInputFile::readTiles (int dx1, int dx2, int dy1, int dy2, int l)
1259
0
{
1260
0
    readTiles (dx1, dx2, dy1, dy2, l, l);
1261
0
}
1262
1263
1264
void  
1265
TiledInputFile::readTile (int dx, int dy, int lx, int ly)
1266
0
{
1267
0
    readTiles (dx, dx, dy, dy, lx, ly);
1268
0
}
1269
1270
1271
void  
1272
TiledInputFile::readTile (int dx, int dy, int l)
1273
0
{
1274
0
    readTile (dx, dy, l, l);
1275
0
}
1276
1277
1278
void
1279
TiledInputFile::rawTileData (int &dx, int &dy,
1280
           int &lx, int &ly,
1281
                             const char *&pixelData,
1282
           int &pixelDataSize)
1283
0
{
1284
0
    try
1285
0
    {
1286
0
        Lock lock (*_data->_streamData);
1287
1288
0
        if (!isValidTile (dx, dy, lx, ly))
1289
0
            throw IEX_NAMESPACE::ArgExc ("Tried to read a tile outside "
1290
0
             "the image file's data window.");
1291
1292
0
        TileBuffer *tileBuffer = _data->getTileBuffer (0);
1293
1294
        //
1295
        // if file is a multipart file, we have to seek to the required tile
1296
        // since we don't know where the file pointer is
1297
        //
1298
0
        int old_dx=dx;
1299
0
        int old_dy=dy;
1300
0
        int old_lx=lx;
1301
0
        int old_ly=ly;
1302
0
        if(isMultiPart(version()))
1303
0
        {
1304
0
            _data->_streamData->is->seekg(_data->tileOffsets(dx,dy,lx,ly));
1305
0
        }
1306
0
        readNextTileData (_data->_streamData, _data, dx, dy, lx, ly,
1307
0
        tileBuffer->buffer,
1308
0
                          pixelDataSize);
1309
0
        if(isMultiPart(version()))
1310
0
        {
1311
0
            if (old_dx!=dx || old_dy !=dy || old_lx!=lx || old_ly!=ly)
1312
0
            {
1313
0
                throw IEX_NAMESPACE::ArgExc ("rawTileData read the wrong tile");
1314
0
            }
1315
0
        }
1316
0
        pixelData = tileBuffer->buffer;
1317
0
    }
1318
0
    catch (IEX_NAMESPACE::BaseExc &e)
1319
0
    {
1320
0
        REPLACE_EXC (e, "Error reading pixel data from image "
1321
0
      "file \"" << fileName() << "\". " << e);
1322
0
        throw;
1323
0
    }
1324
0
}
1325
1326
1327
unsigned int
1328
TiledInputFile::tileXSize () const
1329
0
{
1330
0
    return _data->tileDesc.xSize;
1331
0
}
1332
1333
1334
unsigned int
1335
TiledInputFile::tileYSize () const
1336
0
{
1337
0
    return _data->tileDesc.ySize;
1338
0
}
1339
1340
1341
LevelMode
1342
TiledInputFile::levelMode () const
1343
0
{
1344
0
    return _data->tileDesc.mode;
1345
0
}
1346
1347
1348
LevelRoundingMode
1349
TiledInputFile::levelRoundingMode () const
1350
0
{
1351
0
    return _data->tileDesc.roundingMode;
1352
0
}
1353
1354
1355
int
1356
TiledInputFile::numLevels () const
1357
0
{
1358
0
    if (levelMode() == RIPMAP_LEVELS)
1359
0
  THROW (IEX_NAMESPACE::LogicExc, "Error calling numLevels() on image "
1360
0
            "file \"" << fileName() << "\" "
1361
0
            "(numLevels() is not defined for files "
1362
0
            "with RIPMAP level mode).");
1363
1364
0
    return _data->numXLevels;
1365
0
}
1366
1367
1368
int
1369
TiledInputFile::numXLevels () const
1370
0
{
1371
0
    return _data->numXLevels;
1372
0
}
1373
1374
1375
int
1376
TiledInputFile::numYLevels () const
1377
0
{
1378
0
    return _data->numYLevels;
1379
0
}
1380
1381
1382
bool  
1383
TiledInputFile::isValidLevel (int lx, int ly) const
1384
0
{
1385
0
    if (lx < 0 || ly < 0)
1386
0
  return false;
1387
1388
0
    if (levelMode() == MIPMAP_LEVELS && lx != ly)
1389
0
  return false;
1390
1391
0
    if (lx >= numXLevels() || ly >= numYLevels())
1392
0
  return false;
1393
1394
0
    return true;
1395
0
}
1396
1397
1398
int
1399
TiledInputFile::levelWidth (int lx) const
1400
0
{
1401
0
    try
1402
0
    {
1403
0
        return levelSize (_data->minX, _data->maxX, lx,
1404
0
        _data->tileDesc.roundingMode);
1405
0
    }
1406
0
    catch (IEX_NAMESPACE::BaseExc &e)
1407
0
    {
1408
0
  REPLACE_EXC (e, "Error calling levelWidth() on image "
1409
0
      "file \"" << fileName() << "\". " << e);
1410
0
  throw;
1411
0
    }
1412
0
}
1413
1414
1415
int
1416
TiledInputFile::levelHeight (int ly) const
1417
0
{
1418
0
    try
1419
0
    {
1420
0
        return levelSize (_data->minY, _data->maxY, ly,
1421
0
                          _data->tileDesc.roundingMode);
1422
0
    }
1423
0
    catch (IEX_NAMESPACE::BaseExc &e)
1424
0
    {
1425
0
  REPLACE_EXC (e, "Error calling levelHeight() on image "
1426
0
      "file \"" << fileName() << "\". " << e);
1427
0
  throw;
1428
0
    }
1429
0
}
1430
1431
1432
int
1433
TiledInputFile::numXTiles (int lx) const
1434
0
{
1435
0
    if (lx < 0 || lx >= _data->numXLevels)
1436
0
    {
1437
0
        THROW (IEX_NAMESPACE::ArgExc, "Error calling numXTiles() on image "
1438
0
          "file \"" << _data->_streamData->is->fileName() << "\" "
1439
0
          "(Argument is not in valid range).");
1440
1441
0
    }
1442
    
1443
0
    return _data->numXTiles[lx];
1444
0
}
1445
1446
1447
int
1448
TiledInputFile::numYTiles (int ly) const
1449
0
{
1450
0
    if (ly < 0 || ly >= _data->numYLevels)
1451
0
    {
1452
0
        THROW (IEX_NAMESPACE::ArgExc, "Error calling numYTiles() on image "
1453
0
          "file \"" << _data->_streamData->is->fileName() << "\" "
1454
0
          "(Argument is not in valid range).");
1455
0
    }
1456
    
1457
0
    return _data->numYTiles[ly];
1458
0
}
1459
1460
1461
Box2i
1462
TiledInputFile::dataWindowForLevel (int l) const
1463
0
{
1464
0
    return dataWindowForLevel (l, l);
1465
0
}
1466
1467
1468
Box2i
1469
TiledInputFile::dataWindowForLevel (int lx, int ly) const
1470
0
{
1471
0
    try
1472
0
    {
1473
0
  return OPENEXR_IMF_INTERNAL_NAMESPACE::dataWindowForLevel (
1474
0
          _data->tileDesc,
1475
0
          _data->minX, _data->maxX,
1476
0
          _data->minY, _data->maxY,
1477
0
          lx, ly);
1478
0
    }
1479
0
    catch (IEX_NAMESPACE::BaseExc &e)
1480
0
    {
1481
0
  REPLACE_EXC (e, "Error calling dataWindowForLevel() on image "
1482
0
      "file \"" << fileName() << "\". " << e);
1483
0
  throw;
1484
0
    }
1485
0
}
1486
1487
1488
Box2i
1489
TiledInputFile::dataWindowForTile (int dx, int dy, int l) const
1490
0
{
1491
0
    return dataWindowForTile (dx, dy, l, l);
1492
0
}
1493
1494
1495
Box2i
1496
TiledInputFile::dataWindowForTile (int dx, int dy, int lx, int ly) const
1497
0
{
1498
0
    try
1499
0
    {
1500
0
  if (!isValidTile (dx, dy, lx, ly))
1501
0
      throw IEX_NAMESPACE::ArgExc ("Arguments not in valid range.");
1502
1503
0
        return OPENEXR_IMF_INTERNAL_NAMESPACE::dataWindowForTile (
1504
0
                _data->tileDesc,
1505
0
                _data->minX, _data->maxX,
1506
0
                _data->minY, _data->maxY,
1507
0
                dx, dy, lx, ly);
1508
0
    }
1509
0
    catch (IEX_NAMESPACE::BaseExc &e)
1510
0
    {
1511
0
  REPLACE_EXC (e, "Error calling dataWindowForTile() on image "
1512
0
      "file \"" << fileName() << "\". " << e);
1513
0
  throw;
1514
0
    }
1515
0
}
1516
1517
1518
bool
1519
TiledInputFile::isValidTile (int dx, int dy, int lx, int ly) const
1520
0
{
1521
0
    return ((lx < _data->numXLevels && lx >= 0) &&
1522
0
            (ly < _data->numYLevels && ly >= 0) &&
1523
0
            (dx < _data->numXTiles[lx] && dx >= 0) &&
1524
0
            (dy < _data->numYTiles[ly] && dy >= 0));
1525
0
}
1526
1527
void TiledInputFile::tileOrder(int dx[], int dy[], int lx[], int ly[]) const
1528
0
{
1529
0
   return _data->tileOffsets.getTileOrder(dx,dy,lx,ly);
1530
0
}
1531
1532
1533
OPENEXR_IMF_INTERNAL_NAMESPACE_SOURCE_EXIT