Coverage Report

Created: 2026-07-25 06:54

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/dng_sdk/source/dng_image_writer.cpp
Line
Count
Source
1
/*****************************************************************************/
2
// Copyright 2006-2012 Adobe Systems Incorporated
3
// All Rights Reserved.
4
//
5
// NOTICE:  Adobe permits you to use, modify, and distribute this file in
6
// accordance with the terms of the Adobe license agreement accompanying it.
7
/*****************************************************************************/
8
9
/* $Id: //mondo/dng_sdk_1_4/dng_sdk/source/dng_image_writer.cpp#4 $ */ 
10
/* $DateTime: 2012/06/14 20:24:41 $ */
11
/* $Change: 835078 $ */
12
/* $Author: tknoll $ */
13
14
/*****************************************************************************/
15
16
#include "dng_image_writer.h"
17
18
#include "dng_abort_sniffer.h"
19
#include "dng_area_task.h"
20
#include "dng_bottlenecks.h"
21
#include "dng_camera_profile.h"
22
#include "dng_color_space.h"
23
#include "dng_exif.h"
24
#include "dng_flags.h"
25
#include "dng_exceptions.h"
26
#include "dng_host.h"
27
#include "dng_ifd.h"
28
#include "dng_image.h"
29
#include "dng_jpeg_image.h"
30
#include "dng_lossless_jpeg.h"
31
#include "dng_memory.h"
32
#include "dng_memory_stream.h"
33
#include "dng_negative.h"
34
#include "dng_pixel_buffer.h"
35
#include "dng_preview.h"
36
#include "dng_read_image.h"
37
#include "dng_safe_arithmetic.h"
38
#include "dng_stream.h"
39
#include "dng_string_list.h"
40
#include "dng_tag_codes.h"
41
#include "dng_tag_values.h"
42
#include "dng_utils.h"
43
44
#if qDNGUseXMP
45
#include "dng_xmp.h"
46
#endif
47
48
#include "zlib.h"
49
50
#if qDNGUseLibJPEG
51
#include "dng_jpeglib.h"
52
#endif
53
54
/*****************************************************************************/
55
56
// Defines for testing DNG 1.2 features.
57
58
//#define qTestRowInterleave 2
59
60
//#define qTestSubTileBlockRows 2
61
//#define qTestSubTileBlockCols 2
62
63
/*****************************************************************************/
64
65
dng_resolution::dng_resolution ()
66
67
51.2k
  : fXResolution ()
68
51.2k
  , fYResolution ()
69
  
70
51.2k
  , fResolutionUnit (0)
71
  
72
51.2k
  {
73
  
74
51.2k
  }
75
76
/******************************************************************************/
77
78
static void SpoolAdobeData (dng_stream &stream,
79
              const dng_metadata *metadata,
80
              const dng_jpeg_preview *preview,
81
              const dng_memory_block *imageResources)
82
51.2k
  {
83
  
84
51.2k
  TempBigEndian tempEndian (stream);
85
  
86
  #if qDNGUseXMP
87
88
  if (metadata && metadata->GetXMP ())
89
    {
90
    
91
    bool marked = false;
92
    
93
    if (metadata->GetXMP ()->GetBoolean (XMP_NS_XAP_RIGHTS,
94
                       "Marked",
95
                       marked))
96
      {
97
      
98
      stream.Put_uint32 (DNG_CHAR4 ('8','B','I','M'));
99
      stream.Put_uint16 (1034);
100
      stream.Put_uint16 (0);
101
      
102
      stream.Put_uint32 (1);
103
      
104
      stream.Put_uint8 (marked ? 1 : 0);
105
      
106
      stream.Put_uint8 (0);
107
      
108
      }
109
      
110
    dng_string webStatement;
111
    
112
    if (metadata->GetXMP ()->GetString (XMP_NS_XAP_RIGHTS,
113
                      "WebStatement",
114
                      webStatement))
115
      {
116
      
117
      dng_memory_data buffer;
118
      
119
      uint32 size = webStatement.Get_SystemEncoding (buffer);
120
      
121
      if (size > 0)
122
        {
123
        
124
        stream.Put_uint32 (DNG_CHAR4 ('8','B','I','M'));
125
        stream.Put_uint16 (1035);
126
        stream.Put_uint16 (0);
127
        
128
        stream.Put_uint32 (size);
129
        
130
        stream.Put (buffer.Buffer (), size);
131
        
132
        if (size & 1)
133
          stream.Put_uint8 (0);
134
          
135
        }
136
      
137
      }
138
    
139
    }
140
  
141
  #endif
142
  
143
51.2k
  if (preview)
144
0
    {
145
    
146
0
    preview->SpoolAdobeThumbnail (stream);
147
        
148
0
    }
149
    
150
51.2k
  if (metadata && metadata->IPTCLength ())
151
19
    {
152
    
153
19
    dng_fingerprint iptcDigest = metadata->IPTCDigest ();
154
155
19
    if (iptcDigest.IsValid ())
156
19
      {
157
      
158
19
      stream.Put_uint32 (DNG_CHAR4 ('8','B','I','M'));
159
19
      stream.Put_uint16 (1061);
160
19
      stream.Put_uint16 (0);
161
      
162
19
      stream.Put_uint32 (16);
163
      
164
19
      stream.Put (iptcDigest.data, 16);
165
      
166
19
      }
167
      
168
19
    }
169
    
170
51.2k
  if (imageResources)
171
0
    {
172
    
173
0
    uint32 size = imageResources->LogicalSize ();
174
    
175
0
    stream.Put (imageResources->Buffer (), size);
176
    
177
0
    if (size & 1)
178
0
      stream.Put_uint8 (0);
179
    
180
0
    }
181
    
182
51.2k
  }
183
184
/******************************************************************************/
185
186
static dng_memory_block * BuildAdobeData (dng_host &host,
187
                      const dng_metadata *metadata,
188
                      const dng_jpeg_preview *preview,
189
                      const dng_memory_block *imageResources)
190
51.2k
  {
191
  
192
51.2k
  dng_memory_stream stream (host.Allocator ());
193
  
194
51.2k
  SpoolAdobeData (stream,
195
51.2k
          metadata,
196
51.2k
          preview,
197
51.2k
          imageResources);
198
          
199
51.2k
  return stream.AsMemoryBlock (host.Allocator ());
200
  
201
51.2k
  }
202
203
/*****************************************************************************/
204
205
tag_string::tag_string (uint16 code,
206
              const dng_string &s,
207
              bool forceASCII)
208
              
209
2.41M
  : tiff_tag (code, ttAscii, 0)
210
  
211
2.41M
  , fString (s)
212
  
213
2.41M
  {
214
      
215
2.41M
  if (forceASCII)
216
2.14M
    {
217
    
218
    // Metadata working group recommendation - go ahead
219
    // write UTF-8 into ASCII tag strings, rather than
220
    // actually force the strings to ASCII.  There is a matching
221
    // change on the reading side to assume UTF-8 if the string
222
    // contains a valid UTF-8 string.
223
    //
224
    // fString.ForceASCII ();
225
    
226
2.14M
    }
227
    
228
265k
  else if (!fString.IsASCII ())
229
4.41k
    {
230
    
231
4.41k
    fType = ttByte;
232
    
233
4.41k
    }
234
    
235
2.41M
  fCount = fString.Length () + 1;
236
  
237
2.41M
  }
238
239
/*****************************************************************************/
240
241
void tag_string::Put (dng_stream &stream) const
242
130k
  {
243
  
244
130k
  stream.Put (fString.Get (), Size ());
245
  
246
130k
  }
247
248
/*****************************************************************************/
249
250
tag_encoded_text::tag_encoded_text (uint16 code,
251
                  const dng_string &text)
252
  
253
203k
  : tiff_tag (code, ttUndefined, 0)
254
  
255
203k
  , fText (text)
256
  
257
203k
  , fUTF16 ()
258
  
259
203k
  {
260
      
261
203k
  if (fText.IsASCII ())
262
203k
    {
263
  
264
203k
    fCount = 8 + fText.Length ();
265
    
266
203k
    }
267
    
268
312
  else
269
312
    {
270
    
271
312
    fCount = 8 + fText.Get_UTF16 (fUTF16) * 2;
272
    
273
312
    }
274
  
275
203k
  }
276
277
/*****************************************************************************/
278
279
void tag_encoded_text::Put (dng_stream &stream) const
280
678
  {
281
  
282
678
  if (fUTF16.Buffer ())
283
312
    {
284
    
285
312
    stream.Put ("UNICODE\000", 8);
286
    
287
312
    uint32 chars = (fCount - 8) >> 1;
288
    
289
312
    const uint16 *buf = fUTF16.Buffer_uint16 ();
290
    
291
5.22k
    for (uint32 j = 0; j < chars; j++)
292
4.90k
      {
293
      
294
4.90k
      stream.Put_uint16 (buf [j]);
295
      
296
4.90k
      }
297
    
298
312
    }
299
    
300
366
  else
301
366
    {
302
    
303
366
    stream.Put ("ASCII\000\000\000", 8);
304
    
305
366
    stream.Put (fText.Get (), fCount - 8);
306
    
307
366
    }
308
    
309
678
  }
310
  
311
/*****************************************************************************/
312
313
void tag_data_ptr::Put (dng_stream &stream) const
314
1.45M
  {
315
  
316
  // If we are swapping bytes, we need to swap with the right size
317
  // entries.
318
  
319
1.45M
  if (stream.SwapBytes ())
320
0
    {
321
  
322
0
    switch (Type ())
323
0
      {
324
      
325
      // Two byte entries.
326
      
327
0
      case ttShort:
328
0
      case ttSShort:
329
0
      case ttUnicode:
330
0
        {
331
        
332
0
        const uint16 *p = (const uint16 *) fData;
333
        
334
0
        uint32 entries = (Size () >> 1);
335
        
336
0
        for (uint32 j = 0; j < entries; j++)
337
0
          {
338
          
339
0
          stream.Put_uint16 (p [j]);
340
          
341
0
          }
342
        
343
0
        return;
344
        
345
0
        }
346
      
347
      // Four byte entries.
348
      
349
0
      case ttLong:
350
0
      case ttSLong:
351
0
      case ttRational:
352
0
      case ttSRational:
353
0
      case ttIFD:
354
0
      case ttFloat:
355
0
      case ttComplex:
356
0
        {
357
        
358
0
        const uint32 *p = (const uint32 *) fData;
359
        
360
0
        uint32 entries = (Size () >> 2);
361
        
362
0
        for (uint32 j = 0; j < entries; j++)
363
0
          {
364
          
365
0
          stream.Put_uint32 (p [j]);
366
          
367
0
          }
368
        
369
0
        return;
370
        
371
0
        }
372
        
373
      // Eight byte entries.
374
      
375
0
      case ttDouble:
376
0
        {
377
        
378
0
        const real64 *p = (const real64 *) fData;
379
        
380
0
        uint32 entries = (Size () >> 3);
381
        
382
0
        for (uint32 j = 0; j < entries; j++)
383
0
          {
384
          
385
0
          stream.Put_real64 (p [j]);
386
          
387
0
          }
388
        
389
0
        return;
390
        
391
0
        }
392
      
393
      // Entries don't need to be byte swapped.  Fall through
394
      // to non-byte swapped case.
395
        
396
0
      default:
397
0
        {
398
        
399
0
        break;
400
        
401
0
        }
402
403
0
      }
404
      
405
0
    }
406
    
407
  // Non-byte swapped case.
408
    
409
1.45M
  stream.Put (fData, Size ());
410
        
411
1.45M
  }
412
413
/******************************************************************************/
414
415
tag_matrix::tag_matrix (uint16 code,
416
              const dng_matrix &m)
417
             
418
482k
  : tag_srational_ptr (code, fEntry, m.Rows () * m.Cols ())
419
  
420
482k
  {
421
  
422
482k
  uint32 index = 0;
423
  
424
857k
  for (uint32 r = 0; r < m.Rows (); r++)
425
1.49M
    for (uint32 c = 0; c < m.Cols (); c++)
426
1.12M
      {
427
      
428
1.12M
      fEntry [index].Set_real64 (m [r] [c], 10000);
429
      
430
1.12M
      index++;
431
      
432
1.12M
      }
433
  
434
482k
  }
435
436
/******************************************************************************/
437
438
tag_icc_profile::tag_icc_profile (const void *profileData,
439
                  uint32 profileSize)
440
      
441
51.2k
  : tag_data_ptr (tcICCProfile, 
442
51.2k
            ttUndefined,
443
51.2k
            0,
444
51.2k
            NULL)
445
  
446
51.2k
  {
447
  
448
51.2k
  if (profileData && profileSize)
449
3.98k
    {
450
    
451
3.98k
    SetCount (profileSize);
452
3.98k
    SetData  (profileData);
453
    
454
3.98k
    }
455
  
456
51.2k
  }
457
      
458
/******************************************************************************/
459
460
void tag_cfa_pattern::Put (dng_stream &stream) const
461
85
  {
462
  
463
85
  stream.Put_uint16 ((uint16) fCols);
464
85
  stream.Put_uint16 ((uint16) fRows);
465
  
466
170
  for (uint32 col = 0; col < fCols; col++)
467
170
    for (uint32 row = 0; row < fRows; row++)
468
85
      {
469
      
470
85
      stream.Put_uint8 (fPattern [row * kMaxCFAPattern + col]);
471
      
472
85
      }
473
474
85
  }
475
476
/******************************************************************************/
477
478
tag_exif_date_time::tag_exif_date_time (uint16 code,
479
                          const dng_date_time &dt)
480
             
481
203k
  : tag_data_ptr (code, ttAscii, 20, fData)
482
  
483
203k
  {
484
  
485
203k
  if (dt.IsValid ())
486
1.00k
    {
487
  
488
1.00k
    sprintf (fData,
489
1.00k
         "%04d:%02d:%02d %02d:%02d:%02d",
490
1.00k
         (int) dt.fYear,
491
1.00k
         (int) dt.fMonth,
492
1.00k
         (int) dt.fDay,
493
1.00k
         (int) dt.fHour,
494
1.00k
         (int) dt.fMinute,
495
1.00k
         (int) dt.fSecond);
496
         
497
1.00k
    }
498
  
499
203k
  }
500
501
/******************************************************************************/
502
503
tag_iptc::tag_iptc (const void *data,
504
            uint32 length)
505
  
506
51.2k
  : tiff_tag (tcIPTC_NAA, ttLong, (length + 3) >> 2)
507
  
508
51.2k
  , fData   (data  )
509
51.2k
  , fLength (length)
510
  
511
51.2k
  {
512
  
513
51.2k
  }
514
515
/******************************************************************************/
516
517
void tag_iptc::Put (dng_stream &stream) const
518
19
  {
519
  
520
  // Note: For historical compatiblity reasons, the standard TIFF data 
521
  // type for IPTC data is ttLong, but without byte swapping.  This really
522
  // should be ttUndefined, but doing the right thing would break some
523
  // existing readers.
524
  
525
19
  stream.Put (fData, fLength);
526
  
527
  // Pad with zeros to get to long word boundary.
528
  
529
19
  uint32 extra = fCount * 4 - fLength;
530
  
531
56
  while (extra--)
532
37
    {
533
37
    stream.Put_uint8 (0);
534
37
    }
535
536
19
  }
537
538
/******************************************************************************/
539
540
tag_xmp::tag_xmp (const dng_xmp *xmp)
541
  
542
0
  : tag_uint8_ptr (tcXMP, NULL, 0)
543
  
544
0
  , fBuffer ()
545
  
546
0
  {
547
  
548
  #if qDNGUseXMP
549
  
550
  if (xmp)
551
    {
552
    
553
    fBuffer.Reset (xmp->Serialize (true));
554
    
555
    if (fBuffer.Get ())
556
      {
557
      
558
      SetData (fBuffer->Buffer_uint8 ());
559
      
560
      SetCount (fBuffer->LogicalSize ());
561
      
562
      }
563
    
564
    }
565
  
566
  #endif
567
  
568
0
  }
569
570
/******************************************************************************/
571
572
void dng_tiff_directory::Add (const tiff_tag *tag)
573
1.70M
  {
574
  
575
1.70M
  if (fEntries >= kMaxEntries)
576
0
    {
577
0
    ThrowProgramError ();
578
0
    }
579
  
580
  // Tags must be sorted in increasing order of tag code.
581
  
582
1.70M
  uint32 index = fEntries;
583
  
584
13.7M
  for (uint32 j = 0; j < fEntries; j++)
585
12.8M
    {
586
    
587
12.8M
    if (tag->Code () < fTag [j]->Code ())
588
796k
      {
589
796k
      index = j;
590
796k
      break;
591
796k
      }
592
    
593
12.8M
    }
594
    
595
4.81M
  for (uint32 k = fEntries; k > index; k--)
596
3.10M
    {
597
    
598
3.10M
    fTag [k] = fTag [k - 1];
599
    
600
3.10M
    }
601
  
602
1.70M
  fTag [index] = tag;
603
  
604
1.70M
  fEntries++;
605
  
606
1.70M
  }
607
    
608
/******************************************************************************/
609
610
uint32 dng_tiff_directory::Size () const
611
413k
  {
612
  
613
413k
  if (!fEntries) return 0;
614
  
615
101k
  uint32 size = fEntries * 12 + 6;
616
  
617
1.49M
  for (uint32 index = 0; index < fEntries; index++)
618
1.39M
    {
619
    
620
1.39M
    uint32 tagSize = fTag [index]->Size ();
621
    
622
1.39M
    if (tagSize > 4)
623
378k
      {
624
      
625
378k
      size += (tagSize + 1) & ~1;
626
      
627
378k
      }
628
    
629
1.39M
    }
630
    
631
101k
  return size;
632
  
633
413k
  }
634
    
635
/******************************************************************************/
636
637
void dng_tiff_directory::Put (dng_stream &stream,
638
                  OffsetsBase offsetsBase,
639
                  uint32 explicitBase) const
640
232k
  {
641
  
642
232k
  if (!fEntries) return;
643
  
644
130k
  uint32 index;
645
  
646
130k
  uint32 bigData = fEntries * 12 + 6;
647
  
648
130k
  if (offsetsBase == offsetsRelativeToStream)
649
71.4k
    bigData += (uint32) stream.Position ();
650
651
59.2k
  else if (offsetsBase == offsetsRelativeToExplicitBase)
652
59.2k
    bigData += explicitBase;
653
654
130k
  stream.Put_uint16 ((uint16) fEntries);
655
  
656
1.68M
  for (index = 0; index < fEntries; index++)
657
1.55M
    {
658
    
659
1.55M
    const tiff_tag &tag = *fTag [index];
660
    
661
1.55M
    stream.Put_uint16 (tag.Code  ());
662
1.55M
    stream.Put_uint16 (tag.Type  ());
663
1.55M
    stream.Put_uint32 (tag.Count ());
664
    
665
1.55M
    uint32 size = tag.Size ();
666
    
667
1.55M
    if (size <= 4)
668
993k
      {
669
      
670
993k
      tag.Put (stream);
671
      
672
1.92M
      while (size < 4)
673
930k
        {
674
930k
        stream.Put_uint8 (0);
675
930k
        size++;
676
930k
        }
677
        
678
993k
      }
679
      
680
562k
    else
681
562k
      {
682
      
683
562k
      stream.Put_uint32 (bigData);
684
      
685
562k
      bigData += (size + 1) & ~1;
686
            
687
562k
      }
688
    
689
1.55M
    }
690
    
691
130k
  stream.Put_uint32 (fChained);   // Next IFD offset
692
  
693
1.68M
  for (index = 0; index < fEntries; index++)
694
1.55M
    {
695
    
696
1.55M
    const tiff_tag &tag = *fTag [index];
697
    
698
1.55M
    uint32 size = tag.Size ();
699
    
700
1.55M
    if (size > 4)
701
562k
      {
702
      
703
562k
      tag.Put (stream);
704
      
705
562k
      if (size & 1)
706
94.0k
        stream.Put_uint8 (0);
707
      
708
562k
      }
709
    
710
1.55M
    }
711
  
712
130k
  }
713
714
/******************************************************************************/
715
716
dng_basic_tag_set::dng_basic_tag_set (dng_tiff_directory &directory,
717
                    const dng_ifd &info)
718
              
719
73.7k
  : fNewSubFileType (tcNewSubFileType, info.fNewSubFileType)
720
  
721
73.7k
  , fImageWidth  (tcImageWidth , info.fImageWidth )
722
73.7k
  , fImageLength (tcImageLength, info.fImageLength)
723
  
724
73.7k
  , fPhotoInterpretation (tcPhotometricInterpretation,
725
73.7k
                (uint16) info.fPhotometricInterpretation)
726
  
727
73.7k
  , fFillOrder (tcFillOrder, 1)
728
  
729
73.7k
  , fSamplesPerPixel (tcSamplesPerPixel, (uint16) info.fSamplesPerPixel)
730
  
731
73.7k
  , fBitsPerSample (tcBitsPerSample,
732
73.7k
            fBitsPerSampleData,
733
73.7k
            info.fSamplesPerPixel)
734
            
735
73.7k
  , fStrips (info.fUsesStrips)
736
            
737
73.7k
  , fTileWidth (tcTileWidth, info.fTileWidth)
738
  
739
73.7k
  , fTileLength (fStrips ? tcRowsPerStrip : tcTileLength, 
740
73.7k
           info.fTileLength)
741
  
742
73.7k
  , fTileInfoBuffer (info.TilesPerImage (), 8)
743
  
744
73.7k
  , fTileOffsetData (fTileInfoBuffer.Buffer_uint32 ())
745
  
746
73.7k
  , fTileOffsets (fStrips ? tcStripOffsets : tcTileOffsets,
747
73.7k
            fTileOffsetData,
748
73.7k
            info.TilesPerImage ())
749
             
750
73.7k
  , fTileByteCountData (fTileOffsetData + info.TilesPerImage ())
751
  
752
73.7k
  , fTileByteCounts (fStrips ? tcStripByteCounts : tcTileByteCounts,
753
73.7k
             fTileByteCountData,
754
73.7k
             info.TilesPerImage ())
755
              
756
73.7k
  , fPlanarConfiguration (tcPlanarConfiguration, pcInterleaved)
757
  
758
73.7k
  , fCompression (tcCompression, (uint16) info.fCompression)
759
73.7k
  , fPredictor   (tcPredictor  , (uint16) info.fPredictor  )
760
  
761
73.7k
  , fExtraSamples (tcExtraSamples,
762
73.7k
             fExtraSamplesData,
763
73.7k
             info.fExtraSamplesCount)
764
             
765
73.7k
  , fSampleFormat (tcSampleFormat,
766
73.7k
             fSampleFormatData,
767
73.7k
             info.fSamplesPerPixel)
768
             
769
73.7k
  , fRowInterleaveFactor (tcRowInterleaveFactor,
770
73.7k
                (uint16) info.fRowInterleaveFactor)
771
                
772
73.7k
  , fSubTileBlockSize (tcSubTileBlockSize,
773
73.7k
               fSubTileBlockSizeData,
774
73.7k
               2)
775
                 
776
73.7k
  {
777
  
778
73.7k
  uint32 j;
779
  
780
178k
  for (j = 0; j < info.fSamplesPerPixel; j++)
781
104k
    {
782
  
783
104k
    fBitsPerSampleData [j] = (uint16) info.fBitsPerSample [0];
784
    
785
104k
    }
786
  
787
73.7k
  directory.Add (&fNewSubFileType);
788
  
789
73.7k
  directory.Add (&fImageWidth);
790
73.7k
  directory.Add (&fImageLength);
791
  
792
73.7k
  directory.Add (&fPhotoInterpretation);
793
  
794
73.7k
  directory.Add (&fSamplesPerPixel);
795
  
796
73.7k
  directory.Add (&fBitsPerSample);
797
  
798
73.7k
  if (info.fBitsPerSample [0] !=  8 &&
799
58.8k
      info.fBitsPerSample [0] != 16 &&
800
12.5k
      info.fBitsPerSample [0] != 32)
801
40
    {
802
  
803
40
    directory.Add (&fFillOrder);
804
    
805
40
    }
806
    
807
73.7k
  if (!fStrips)
808
16.7k
    {
809
    
810
16.7k
    directory.Add (&fTileWidth);
811
  
812
16.7k
    }
813
814
73.7k
  directory.Add (&fTileLength);
815
  
816
73.7k
  directory.Add (&fTileOffsets);
817
73.7k
  directory.Add (&fTileByteCounts);
818
  
819
73.7k
  directory.Add (&fPlanarConfiguration);
820
  
821
73.7k
  directory.Add (&fCompression);
822
  
823
73.7k
  if (info.fPredictor != cpNullPredictor)
824
26.2k
    {
825
    
826
26.2k
    directory.Add (&fPredictor);
827
    
828
26.2k
    }
829
    
830
73.7k
  if (info.fExtraSamplesCount != 0)
831
907
    {
832
    
833
1.81k
    for (j = 0; j < info.fExtraSamplesCount; j++)
834
907
      {
835
907
      fExtraSamplesData [j] = (uint16) info.fExtraSamples [j];
836
907
      }
837
      
838
907
    directory.Add (&fExtraSamples);
839
    
840
907
    }
841
    
842
73.7k
  if (info.fSampleFormat [0] != sfUnsignedInteger)
843
13.4k
    {
844
    
845
28.7k
    for (j = 0; j < info.fSamplesPerPixel; j++)
846
15.2k
      {
847
15.2k
      fSampleFormatData [j] = (uint16) info.fSampleFormat [j];
848
15.2k
      }
849
      
850
13.4k
    directory.Add (&fSampleFormat);
851
    
852
13.4k
    }
853
    
854
73.7k
  if (info.fRowInterleaveFactor != 1)
855
0
    {
856
    
857
0
    directory.Add (&fRowInterleaveFactor);
858
    
859
0
    }
860
    
861
73.7k
  if (info.fSubTileBlockRows != 1 ||
862
73.7k
    info.fSubTileBlockCols != 1)
863
0
    {
864
    
865
0
    fSubTileBlockSizeData [0] = (uint16) info.fSubTileBlockRows;
866
0
    fSubTileBlockSizeData [1] = (uint16) info.fSubTileBlockCols;
867
    
868
0
    directory.Add (&fSubTileBlockSize);
869
    
870
0
    }
871
  
872
73.7k
  }
873
874
/******************************************************************************/
875
876
exif_tag_set::exif_tag_set (dng_tiff_directory &directory,
877
                const dng_exif &exif,
878
              bool makerNoteSafe,
879
              const void *makerNoteData,
880
              uint32 makerNoteLength,
881
                bool insideDNG)
882
883
67.9k
  : fExifIFD ()
884
67.9k
  , fGPSIFD  ()
885
  
886
67.9k
  , fExifLink (tcExifIFD, 0)
887
67.9k
  , fGPSLink  (tcGPSInfo, 0)
888
  
889
67.9k
  , fAddedExifLink (false)
890
67.9k
  , fAddedGPSLink  (false)
891
  
892
67.9k
  , fExifVersion (tcExifVersion, ttUndefined, 4, fExifVersionData)
893
  
894
67.9k
  , fExposureTime      (tcExposureTime     , exif.fExposureTime     )
895
67.9k
  , fShutterSpeedValue (tcShutterSpeedValue, exif.fShutterSpeedValue)
896
  
897
67.9k
  , fFNumber     (tcFNumber      , exif.fFNumber      )
898
67.9k
  , fApertureValue (tcApertureValue, exif.fApertureValue)
899
  
900
67.9k
  , fBrightnessValue (tcBrightnessValue, exif.fBrightnessValue)
901
  
902
67.9k
  , fExposureBiasValue (tcExposureBiasValue, exif.fExposureBiasValue)
903
  
904
67.9k
  , fMaxApertureValue (tcMaxApertureValue , exif.fMaxApertureValue)
905
  
906
67.9k
  , fSubjectDistance (tcSubjectDistance, exif.fSubjectDistance)
907
  
908
67.9k
  , fFocalLength (tcFocalLength, exif.fFocalLength)
909
  
910
  // Special case: the EXIF 2.2 standard represents ISO speed ratings with 2 bytes,
911
  // which cannot hold ISO speed ratings above 65535 (e.g., 102400). In these
912
  // cases, we write the maximum representable ISO speed rating value in the EXIF
913
  // tag, i.e., 65535.
914
915
67.9k
  , fISOSpeedRatings (tcISOSpeedRatings, 
916
67.9k
              (uint16) Min_uint32 (65535, 
917
67.9k
                         exif.fISOSpeedRatings [0]))
918
919
67.9k
  , fSensitivityType (tcSensitivityType, (uint16) exif.fSensitivityType)
920
921
67.9k
  , fStandardOutputSensitivity (tcStandardOutputSensitivity, exif.fStandardOutputSensitivity)
922
  
923
67.9k
  , fRecommendedExposureIndex (tcRecommendedExposureIndex, exif.fRecommendedExposureIndex)
924
925
67.9k
  , fISOSpeed (tcISOSpeed, exif.fISOSpeed)
926
927
67.9k
  , fISOSpeedLatitudeyyy (tcISOSpeedLatitudeyyy, exif.fISOSpeedLatitudeyyy)
928
929
67.9k
  , fISOSpeedLatitudezzz (tcISOSpeedLatitudezzz, exif.fISOSpeedLatitudezzz)
930
931
67.9k
  , fFlash (tcFlash, (uint16) exif.fFlash)
932
  
933
67.9k
  , fExposureProgram (tcExposureProgram, (uint16) exif.fExposureProgram)
934
  
935
67.9k
  , fMeteringMode (tcMeteringMode, (uint16) exif.fMeteringMode)
936
  
937
67.9k
  , fLightSource (tcLightSource, (uint16) exif.fLightSource)
938
  
939
67.9k
  , fSensingMethod (tcSensingMethodExif, (uint16) exif.fSensingMethod)
940
  
941
67.9k
  , fFocalLength35mm (tcFocalLengthIn35mmFilm, (uint16) exif.fFocalLengthIn35mmFilm)
942
  
943
67.9k
  , fFileSourceData ((uint8) exif.fFileSource)
944
67.9k
  , fFileSource     (tcFileSource, ttUndefined, 1, &fFileSourceData)
945
946
67.9k
  , fSceneTypeData ((uint8) exif.fSceneType)
947
67.9k
  , fSceneType     (tcSceneType, ttUndefined, 1, &fSceneTypeData)
948
  
949
67.9k
  , fCFAPattern (tcCFAPatternExif,
950
67.9k
           exif.fCFARepeatPatternRows,
951
67.9k
           exif.fCFARepeatPatternCols,
952
67.9k
           &exif.fCFAPattern [0] [0])
953
  
954
67.9k
  , fCustomRendered     (tcCustomRendered    , (uint16) exif.fCustomRendered    )
955
67.9k
  , fExposureMode       (tcExposureMode    , (uint16) exif.fExposureMode      )
956
67.9k
  , fWhiteBalance       (tcWhiteBalance    , (uint16) exif.fWhiteBalance      )
957
67.9k
  , fSceneCaptureType     (tcSceneCaptureType  , (uint16) exif.fSceneCaptureType    )
958
67.9k
  , fGainControl      (tcGainControl     , (uint16) exif.fGainControl     )
959
67.9k
  , fContrast         (tcContrast      , (uint16) exif.fContrast        )
960
67.9k
  , fSaturation       (tcSaturation      , (uint16) exif.fSaturation      )
961
67.9k
  , fSharpness        (tcSharpness       , (uint16) exif.fSharpness       )
962
67.9k
  , fSubjectDistanceRange (tcSubjectDistanceRange, (uint16) exif.fSubjectDistanceRange)
963
    
964
67.9k
  , fDigitalZoomRatio (tcDigitalZoomRatio, exif.fDigitalZoomRatio)
965
  
966
67.9k
  , fExposureIndex (tcExposureIndexExif, exif.fExposureIndex)
967
  
968
67.9k
  , fImageNumber (tcImageNumber, exif.fImageNumber)
969
  
970
67.9k
  , fSelfTimerMode (tcSelfTimerMode, (uint16) exif.fSelfTimerMode)
971
  
972
67.9k
  , fBatteryLevelA (tcBatteryLevel, exif.fBatteryLevelA)
973
67.9k
  , fBatteryLevelR (tcBatteryLevel, exif.fBatteryLevelR)
974
  
975
67.9k
  , fFocalPlaneXResolution (tcFocalPlaneXResolutionExif, exif.fFocalPlaneXResolution)
976
67.9k
  , fFocalPlaneYResolution (tcFocalPlaneYResolutionExif, exif.fFocalPlaneYResolution)
977
  
978
67.9k
  , fFocalPlaneResolutionUnit (tcFocalPlaneResolutionUnitExif, (uint16) exif.fFocalPlaneResolutionUnit)
979
  
980
67.9k
  , fSubjectArea (tcSubjectArea, fSubjectAreaData, exif.fSubjectAreaCount)
981
982
67.9k
  , fLensInfo (tcLensInfo, fLensInfoData, 4)
983
  
984
67.9k
  , fDateTime      (tcDateTime       , exif.fDateTime         .DateTime ())
985
67.9k
  , fDateTimeOriginal  (tcDateTimeOriginal , exif.fDateTimeOriginal .DateTime ())
986
67.9k
  , fDateTimeDigitized (tcDateTimeDigitized, exif.fDateTimeDigitized.DateTime ())
987
  
988
67.9k
  , fSubsecTime      (tcSubsecTime,      exif.fDateTime         .Subseconds ())
989
67.9k
  , fSubsecTimeOriginal  (tcSubsecTimeOriginal,  exif.fDateTimeOriginal .Subseconds ())
990
67.9k
  , fSubsecTimeDigitized (tcSubsecTimeDigitized, exif.fDateTimeDigitized.Subseconds ())
991
  
992
67.9k
  , fMake (tcMake, exif.fMake)
993
994
67.9k
  , fModel (tcModel, exif.fModel)
995
  
996
67.9k
  , fArtist (tcArtist, exif.fArtist)
997
  
998
67.9k
  , fSoftware (tcSoftware, exif.fSoftware)
999
  
1000
67.9k
  , fCopyright (tcCopyright, exif.fCopyright)
1001
  
1002
67.9k
  , fMakerNoteSafety (tcMakerNoteSafety, makerNoteSafe ? 1 : 0)
1003
  
1004
67.9k
  , fMakerNote (tcMakerNote, ttUndefined, makerNoteLength, makerNoteData)
1005
          
1006
67.9k
  , fImageDescription (tcImageDescription, exif.fImageDescription)
1007
  
1008
67.9k
  , fSerialNumber (tcCameraSerialNumber, exif.fCameraSerialNumber)
1009
  
1010
67.9k
  , fUserComment (tcUserComment, exif.fUserComment)
1011
  
1012
67.9k
  , fImageUniqueID (tcImageUniqueID, ttAscii, 33, fImageUniqueIDData)
1013
1014
  // EXIF 2.3 tags.
1015
1016
67.9k
  , fCameraOwnerName   (tcCameraOwnerNameExif,    exif.fOwnerName     )
1017
67.9k
  , fBodySerialNumber  (tcCameraSerialNumberExif, exif.fCameraSerialNumber)
1018
67.9k
  , fLensSpecification (tcLensSpecificationExif,  fLensInfoData, 4      )
1019
67.9k
  , fLensMake      (tcLensMakeExif,       exif.fLensMake      )
1020
67.9k
  , fLensModel       (tcLensModelExif,      exif.fLensName      )
1021
67.9k
  , fLensSerialNumber  (tcLensSerialNumberExif,   exif.fLensSerialNumber  )
1022
1023
67.9k
  , fGPSVersionID (tcGPSVersionID, fGPSVersionData, 4)
1024
  
1025
67.9k
  , fGPSLatitudeRef (tcGPSLatitudeRef, exif.fGPSLatitudeRef)
1026
67.9k
  , fGPSLatitude    (tcGPSLatitude,    exif.fGPSLatitude, 3)
1027
  
1028
67.9k
  , fGPSLongitudeRef (tcGPSLongitudeRef, exif.fGPSLongitudeRef)
1029
67.9k
  , fGPSLongitude    (tcGPSLongitude,    exif.fGPSLongitude, 3)
1030
  
1031
67.9k
  , fGPSAltitudeRef (tcGPSAltitudeRef, (uint8) exif.fGPSAltitudeRef)
1032
67.9k
  , fGPSAltitude    (tcGPSAltitude,            exif.fGPSAltitude   )
1033
  
1034
67.9k
  , fGPSTimeStamp (tcGPSTimeStamp, exif.fGPSTimeStamp, 3)
1035
    
1036
67.9k
  , fGPSSatellites  (tcGPSSatellites , exif.fGPSSatellites )
1037
67.9k
  , fGPSStatus      (tcGPSStatus     , exif.fGPSStatus     )
1038
67.9k
  , fGPSMeasureMode (tcGPSMeasureMode, exif.fGPSMeasureMode)
1039
  
1040
67.9k
  , fGPSDOP (tcGPSDOP, exif.fGPSDOP)
1041
    
1042
67.9k
  , fGPSSpeedRef (tcGPSSpeedRef, exif.fGPSSpeedRef)
1043
67.9k
  , fGPSSpeed    (tcGPSSpeed   , exif.fGPSSpeed   )
1044
    
1045
67.9k
  , fGPSTrackRef (tcGPSTrackRef, exif.fGPSTrackRef)
1046
67.9k
  , fGPSTrack    (tcGPSTrack   , exif.fGPSTrack   )
1047
    
1048
67.9k
  , fGPSImgDirectionRef (tcGPSImgDirectionRef, exif.fGPSImgDirectionRef)
1049
67.9k
  , fGPSImgDirection    (tcGPSImgDirection   , exif.fGPSImgDirection   )
1050
  
1051
67.9k
  , fGPSMapDatum (tcGPSMapDatum, exif.fGPSMapDatum)
1052
    
1053
67.9k
  , fGPSDestLatitudeRef (tcGPSDestLatitudeRef, exif.fGPSDestLatitudeRef)
1054
67.9k
  , fGPSDestLatitude    (tcGPSDestLatitude,    exif.fGPSDestLatitude, 3)
1055
  
1056
67.9k
  , fGPSDestLongitudeRef (tcGPSDestLongitudeRef, exif.fGPSDestLongitudeRef)
1057
67.9k
  , fGPSDestLongitude    (tcGPSDestLongitude,    exif.fGPSDestLongitude, 3)
1058
  
1059
67.9k
  , fGPSDestBearingRef (tcGPSDestBearingRef, exif.fGPSDestBearingRef)
1060
67.9k
  , fGPSDestBearing    (tcGPSDestBearing   , exif.fGPSDestBearing   )
1061
    
1062
67.9k
  , fGPSDestDistanceRef (tcGPSDestDistanceRef, exif.fGPSDestDistanceRef)
1063
67.9k
  , fGPSDestDistance    (tcGPSDestDistance   , exif.fGPSDestDistance   )
1064
    
1065
67.9k
  , fGPSProcessingMethod (tcGPSProcessingMethod, exif.fGPSProcessingMethod)
1066
67.9k
  , fGPSAreaInformation  (tcGPSAreaInformation , exif.fGPSAreaInformation )
1067
  
1068
67.9k
  , fGPSDateStamp (tcGPSDateStamp, exif.fGPSDateStamp)
1069
  
1070
67.9k
  , fGPSDifferential (tcGPSDifferential, (uint16) exif.fGPSDifferential)
1071
    
1072
67.9k
  , fGPSHPositioningError (tcGPSHPositioningError, exif.fGPSHPositioningError)
1073
    
1074
67.9k
  {
1075
  
1076
67.9k
  if (exif.fExifVersion)
1077
3.05k
    {
1078
    
1079
3.05k
    fExifVersionData [0] = (uint8) (exif.fExifVersion >> 24);
1080
3.05k
    fExifVersionData [1] = (uint8) (exif.fExifVersion >> 16);
1081
3.05k
    fExifVersionData [2] = (uint8) (exif.fExifVersion >>  8);
1082
3.05k
    fExifVersionData [3] = (uint8) (exif.fExifVersion      );
1083
    
1084
3.05k
    fExifIFD.Add (&fExifVersion);
1085
1086
3.05k
    }
1087
  
1088
67.9k
  if (exif.fExposureTime.IsValid ())
1089
962
    {
1090
962
    fExifIFD.Add (&fExposureTime);
1091
962
    }
1092
    
1093
67.9k
  if (exif.fShutterSpeedValue.IsValid ())
1094
962
    {
1095
962
    fExifIFD.Add (&fShutterSpeedValue);
1096
962
    }
1097
    
1098
67.9k
  if (exif.fFNumber.IsValid ())
1099
1.57k
    {
1100
1.57k
    fExifIFD.Add (&fFNumber);
1101
1.57k
    }
1102
    
1103
67.9k
  if (exif.fApertureValue.IsValid ())
1104
1.06k
    {
1105
1.06k
    fExifIFD.Add (&fApertureValue);
1106
1.06k
    }
1107
    
1108
67.9k
  if (exif.fBrightnessValue.IsValid ())
1109
668
    {
1110
668
    fExifIFD.Add (&fBrightnessValue);
1111
668
    }
1112
    
1113
67.9k
  if (exif.fExposureBiasValue.IsValid ())
1114
1.16k
    {
1115
1.16k
    fExifIFD.Add (&fExposureBiasValue);
1116
1.16k
    }
1117
    
1118
67.9k
  if (exif.fMaxApertureValue.IsValid ())
1119
717
    {
1120
717
    fExifIFD.Add (&fMaxApertureValue);
1121
717
    }
1122
    
1123
67.9k
  if (exif.fSubjectDistance.IsValid ())
1124
483
    {
1125
483
    fExifIFD.Add (&fSubjectDistance);
1126
483
    }
1127
    
1128
67.9k
  if (exif.fFocalLength.IsValid ())
1129
801
    {
1130
801
    fExifIFD.Add (&fFocalLength);
1131
801
    }
1132
  
1133
67.9k
  if (exif.fISOSpeedRatings [0] != 0)
1134
1.68k
    {
1135
1.68k
    fExifIFD.Add (&fISOSpeedRatings);
1136
1.68k
    }
1137
    
1138
67.9k
  if (exif.fFlash <= 0x0FFFF)
1139
743
    {
1140
743
    fExifIFD.Add (&fFlash);
1141
743
    }
1142
    
1143
67.9k
  if (exif.fExposureProgram <= 0x0FFFF)
1144
841
    {
1145
841
    fExifIFD.Add (&fExposureProgram);
1146
841
    }
1147
    
1148
67.9k
  if (exif.fMeteringMode <= 0x0FFFF)
1149
802
    {
1150
802
    fExifIFD.Add (&fMeteringMode);
1151
802
    }
1152
    
1153
67.9k
  if (exif.fLightSource <= 0x0FFFF)
1154
617
    {
1155
617
    fExifIFD.Add (&fLightSource);
1156
617
    }
1157
    
1158
67.9k
  if (exif.fSensingMethod <= 0x0FFFF)
1159
463
    {
1160
463
    fExifIFD.Add (&fSensingMethod);
1161
463
    }
1162
    
1163
67.9k
  if (exif.fFocalLengthIn35mmFilm != 0)
1164
533
    {
1165
533
    fExifIFD.Add (&fFocalLength35mm);
1166
533
    }
1167
    
1168
67.9k
  if (exif.fFileSource <= 0x0FF)
1169
534
    {
1170
534
    fExifIFD.Add (&fFileSource);
1171
534
    }
1172
    
1173
67.9k
  if (exif.fSceneType <= 0x0FF)
1174
1.19k
    {
1175
1.19k
    fExifIFD.Add (&fSceneType);
1176
1.19k
    }
1177
    
1178
67.9k
  if (exif.fCFARepeatPatternRows &&
1179
85
      exif.fCFARepeatPatternCols)
1180
85
    {
1181
85
    fExifIFD.Add (&fCFAPattern);
1182
85
    }
1183
    
1184
67.9k
  if (exif.fCustomRendered <= 0x0FFFF)
1185
446
    {
1186
446
    fExifIFD.Add (&fCustomRendered);
1187
446
    }
1188
    
1189
67.9k
  if (exif.fExposureMode <= 0x0FFFF)
1190
469
    {
1191
469
    fExifIFD.Add (&fExposureMode);
1192
469
    }
1193
    
1194
67.9k
  if (exif.fWhiteBalance <= 0x0FFFF)
1195
512
    {
1196
512
    fExifIFD.Add (&fWhiteBalance);
1197
512
    }
1198
    
1199
67.9k
  if (exif.fSceneCaptureType <= 0x0FFFF)
1200
285
    {
1201
285
    fExifIFD.Add (&fSceneCaptureType);
1202
285
    }
1203
    
1204
67.9k
  if (exif.fGainControl <= 0x0FFFF)
1205
347
    {
1206
347
    fExifIFD.Add (&fGainControl);
1207
347
    }
1208
    
1209
67.9k
  if (exif.fContrast <= 0x0FFFF)
1210
331
    {
1211
331
    fExifIFD.Add (&fContrast);
1212
331
    }
1213
    
1214
67.9k
  if (exif.fSaturation <= 0x0FFFF)
1215
300
    {
1216
300
    fExifIFD.Add (&fSaturation);
1217
300
    }
1218
    
1219
67.9k
  if (exif.fSharpness <= 0x0FFFF)
1220
411
    {
1221
411
    fExifIFD.Add (&fSharpness);
1222
411
    }
1223
    
1224
67.9k
  if (exif.fSubjectDistanceRange <= 0x0FFFF)
1225
389
    {
1226
389
    fExifIFD.Add (&fSubjectDistanceRange);
1227
389
    }
1228
    
1229
67.9k
  if (exif.fDigitalZoomRatio.IsValid ())
1230
489
    {
1231
489
    fExifIFD.Add (&fDigitalZoomRatio);
1232
489
    }
1233
    
1234
67.9k
  if (exif.fExposureIndex.IsValid ())
1235
1.01k
    {
1236
1.01k
    fExifIFD.Add (&fExposureIndex);
1237
1.01k
    }
1238
    
1239
67.9k
  if (insideDNG)  // TIFF-EP only tags
1240
16.7k
    {
1241
    
1242
16.7k
    if (exif.fImageNumber != 0xFFFFFFFF)
1243
473
      {
1244
473
      directory.Add (&fImageNumber);
1245
473
      }
1246
      
1247
16.7k
    if (exif.fSelfTimerMode <= 0x0FFFF)
1248
242
      {
1249
242
      directory.Add (&fSelfTimerMode);
1250
242
      }
1251
      
1252
16.7k
    if (exif.fBatteryLevelA.NotEmpty ())
1253
102
      {
1254
102
      directory.Add (&fBatteryLevelA);
1255
102
      }
1256
      
1257
16.6k
    else if (exif.fBatteryLevelR.IsValid ())
1258
205
      {
1259
205
      directory.Add (&fBatteryLevelR);
1260
205
      }
1261
    
1262
16.7k
    }
1263
    
1264
67.9k
  if (exif.fFocalPlaneXResolution.IsValid ())
1265
1.00k
    {
1266
1.00k
    fExifIFD.Add (&fFocalPlaneXResolution);
1267
1.00k
    }
1268
  
1269
67.9k
  if (exif.fFocalPlaneYResolution.IsValid ())
1270
442
    {
1271
442
    fExifIFD.Add (&fFocalPlaneYResolution);
1272
442
    }
1273
  
1274
67.9k
  if (exif.fFocalPlaneResolutionUnit <= 0x0FFFF)
1275
586
    {
1276
586
    fExifIFD.Add (&fFocalPlaneResolutionUnit);
1277
586
    }
1278
    
1279
67.9k
  if (exif.fSubjectAreaCount)
1280
179
    {
1281
    
1282
179
    fSubjectAreaData [0] = (uint16) exif.fSubjectArea [0];
1283
179
    fSubjectAreaData [1] = (uint16) exif.fSubjectArea [1];
1284
179
    fSubjectAreaData [2] = (uint16) exif.fSubjectArea [2];
1285
179
    fSubjectAreaData [3] = (uint16) exif.fSubjectArea [3];
1286
    
1287
179
    fExifIFD.Add (&fSubjectArea);
1288
    
1289
179
    }
1290
  
1291
67.9k
  if (exif.fLensInfo [0].IsValid () &&
1292
644
    exif.fLensInfo [1].IsValid ())
1293
550
    {
1294
    
1295
550
    fLensInfoData [0] = exif.fLensInfo [0];
1296
550
    fLensInfoData [1] = exif.fLensInfo [1];
1297
550
    fLensInfoData [2] = exif.fLensInfo [2];
1298
550
    fLensInfoData [3] = exif.fLensInfo [3];
1299
1300
550
    if (insideDNG)
1301
476
      {
1302
476
      directory.Add (&fLensInfo);
1303
476
      }
1304
    
1305
550
    }
1306
    
1307
67.9k
  if (exif.fDateTime.IsValid ())
1308
443
    {
1309
    
1310
443
    directory.Add (&fDateTime);
1311
    
1312
443
    if (exif.fDateTime.Subseconds ().NotEmpty ())
1313
132
      {
1314
132
      fExifIFD.Add (&fSubsecTime);
1315
132
      }
1316
    
1317
443
    }
1318
    
1319
67.9k
  if (exif.fDateTimeOriginal.IsValid ())
1320
248
    {
1321
    
1322
248
    fExifIFD.Add (&fDateTimeOriginal);
1323
    
1324
248
    if (exif.fDateTimeOriginal.Subseconds ().NotEmpty ())
1325
117
      {
1326
117
      fExifIFD.Add (&fSubsecTimeOriginal);
1327
117
      }
1328
    
1329
248
    }
1330
    
1331
67.9k
  if (exif.fDateTimeDigitized.IsValid ())
1332
310
    {
1333
    
1334
310
    fExifIFD.Add (&fDateTimeDigitized);
1335
    
1336
310
    if (exif.fDateTimeDigitized.Subseconds ().NotEmpty ())
1337
113
      {
1338
113
      fExifIFD.Add (&fSubsecTimeDigitized);
1339
113
      }
1340
    
1341
310
    }
1342
    
1343
67.9k
  if (exif.fMake.NotEmpty ())
1344
573
    {
1345
573
    directory.Add (&fMake);
1346
573
    }
1347
    
1348
67.9k
  if (exif.fModel.NotEmpty ())
1349
651
    {
1350
651
    directory.Add (&fModel);
1351
651
    }
1352
    
1353
67.9k
  if (exif.fArtist.NotEmpty ())
1354
296
    {
1355
296
    directory.Add (&fArtist);
1356
296
    }
1357
  
1358
67.9k
  if (exif.fSoftware.NotEmpty ())
1359
922
    {
1360
922
    directory.Add (&fSoftware);
1361
922
    }
1362
  
1363
67.9k
  if (exif.fCopyright.NotEmpty ())
1364
432
    {
1365
432
    directory.Add (&fCopyright);
1366
432
    }
1367
  
1368
67.9k
  if (exif.fImageDescription.NotEmpty ())
1369
460
    {
1370
460
    directory.Add (&fImageDescription);
1371
460
    }
1372
  
1373
67.9k
  if (exif.fCameraSerialNumber.NotEmpty () && insideDNG)
1374
500
    {
1375
500
    directory.Add (&fSerialNumber);
1376
500
    }
1377
    
1378
67.9k
  if (makerNoteSafe && makerNoteData)
1379
95
    {
1380
    
1381
95
    directory.Add (&fMakerNoteSafety);
1382
    
1383
95
    fExifIFD.Add (&fMakerNote);
1384
    
1385
95
    }
1386
    
1387
67.9k
  if (exif.fUserComment.NotEmpty ())
1388
512
    {
1389
512
    fExifIFD.Add (&fUserComment);
1390
512
    }
1391
    
1392
67.9k
  if (exif.fImageUniqueID.IsValid ())
1393
105
    {
1394
    
1395
1.78k
    for (uint32 j = 0; j < 16; j++)
1396
1.68k
      {
1397
      
1398
1.68k
      sprintf (fImageUniqueIDData + j * 2,
1399
1.68k
           "%02X",
1400
1.68k
           (unsigned) exif.fImageUniqueID.data [j]);
1401
           
1402
1.68k
      }
1403
    
1404
105
    fExifIFD.Add (&fImageUniqueID);
1405
    
1406
105
    }
1407
1408
67.9k
  if (exif.AtLeastVersion0230 ())
1409
2.83k
    {
1410
1411
2.83k
    if (exif.fSensitivityType != 0)
1412
769
      {
1413
      
1414
769
      fExifIFD.Add (&fSensitivityType);
1415
      
1416
769
      }
1417
1418
    // Sensitivity tags. Do not write these extra tags unless the SensitivityType
1419
    // and PhotographicSensitivity (i.e., ISOSpeedRatings) values are valid.
1420
1421
2.83k
    if (exif.fSensitivityType   != 0 &&
1422
769
      exif.fISOSpeedRatings [0] != 0)
1423
503
      {
1424
1425
      // Standard Output Sensitivity (SOS).
1426
1427
503
      if (exif.fStandardOutputSensitivity != 0)
1428
181
        {
1429
181
        fExifIFD.Add (&fStandardOutputSensitivity); 
1430
181
        }
1431
1432
      // Recommended Exposure Index (REI).
1433
1434
503
      if (exif.fRecommendedExposureIndex != 0)
1435
190
        {
1436
190
        fExifIFD.Add (&fRecommendedExposureIndex);
1437
190
        }
1438
1439
      // ISO Speed.
1440
1441
503
      if (exif.fISOSpeed != 0)
1442
261
        {
1443
1444
261
        fExifIFD.Add (&fISOSpeed);
1445
1446
261
        if (exif.fISOSpeedLatitudeyyy != 0 &&
1447
163
          exif.fISOSpeedLatitudezzz != 0)
1448
118
          {
1449
            
1450
118
          fExifIFD.Add (&fISOSpeedLatitudeyyy);
1451
118
          fExifIFD.Add (&fISOSpeedLatitudezzz);
1452
            
1453
118
          }
1454
1455
261
        }
1456
1457
503
      }
1458
    
1459
2.83k
    if (exif.fOwnerName.NotEmpty ())
1460
131
      {
1461
131
      fExifIFD.Add (&fCameraOwnerName);
1462
131
      }
1463
    
1464
2.83k
    if (exif.fCameraSerialNumber.NotEmpty ())
1465
205
      {
1466
205
      fExifIFD.Add (&fBodySerialNumber);
1467
205
      }
1468
1469
2.83k
    if (exif.fLensInfo [0].IsValid () &&
1470
381
      exif.fLensInfo [1].IsValid ())
1471
347
      {
1472
347
      fExifIFD.Add (&fLensSpecification);
1473
347
      }
1474
    
1475
2.83k
    if (exif.fLensMake.NotEmpty ())
1476
140
      {
1477
140
      fExifIFD.Add (&fLensMake);
1478
140
      }
1479
    
1480
2.83k
    if (exif.fLensName.NotEmpty ())
1481
125
      {
1482
125
      fExifIFD.Add (&fLensModel);
1483
125
      }
1484
    
1485
2.83k
    if (exif.fLensSerialNumber.NotEmpty ())
1486
139
      {
1487
139
      fExifIFD.Add (&fLensSerialNumber);
1488
139
      }
1489
    
1490
2.83k
    }
1491
    
1492
67.9k
  if (exif.fGPSVersionID)
1493
478
    {
1494
    
1495
478
    fGPSVersionData [0] = (uint8) (exif.fGPSVersionID >> 24);
1496
478
    fGPSVersionData [1] = (uint8) (exif.fGPSVersionID >> 16);
1497
478
    fGPSVersionData [2] = (uint8) (exif.fGPSVersionID >>  8);
1498
478
    fGPSVersionData [3] = (uint8) (exif.fGPSVersionID      );
1499
    
1500
478
    fGPSIFD.Add (&fGPSVersionID);
1501
    
1502
478
    }
1503
    
1504
67.9k
  if (exif.fGPSLatitudeRef.NotEmpty () &&
1505
176
    exif.fGPSLatitude [0].IsValid ())
1506
94
    {
1507
94
    fGPSIFD.Add (&fGPSLatitudeRef);
1508
94
    fGPSIFD.Add (&fGPSLatitude   );
1509
94
    }
1510
    
1511
67.9k
  if (exif.fGPSLongitudeRef.NotEmpty () &&
1512
287
    exif.fGPSLongitude [0].IsValid ())
1513
162
    {
1514
162
    fGPSIFD.Add (&fGPSLongitudeRef);
1515
162
    fGPSIFD.Add (&fGPSLongitude   );
1516
162
    }
1517
    
1518
67.9k
  if (exif.fGPSAltitudeRef <= 0x0FF)
1519
169
    {
1520
169
    fGPSIFD.Add (&fGPSAltitudeRef);
1521
169
    }
1522
    
1523
67.9k
  if (exif.fGPSAltitude.IsValid ())
1524
437
    {
1525
437
    fGPSIFD.Add (&fGPSAltitude);
1526
437
    }
1527
    
1528
67.9k
  if (exif.fGPSTimeStamp [0].IsValid ())
1529
107
    {
1530
107
    fGPSIFD.Add (&fGPSTimeStamp);
1531
107
    }
1532
    
1533
67.9k
  if (exif.fGPSSatellites.NotEmpty ())
1534
231
    {
1535
231
    fGPSIFD.Add (&fGPSSatellites);
1536
231
    }
1537
    
1538
67.9k
  if (exif.fGPSStatus.NotEmpty ())
1539
149
    {
1540
149
    fGPSIFD.Add (&fGPSStatus);
1541
149
    }
1542
    
1543
67.9k
  if (exif.fGPSMeasureMode.NotEmpty ())
1544
101
    {
1545
101
    fGPSIFD.Add (&fGPSMeasureMode);
1546
101
    }
1547
    
1548
67.9k
  if (exif.fGPSDOP.IsValid ())
1549
218
    {
1550
218
    fGPSIFD.Add (&fGPSDOP);
1551
218
    }
1552
    
1553
67.9k
  if (exif.fGPSSpeedRef.NotEmpty ())
1554
130
    {
1555
130
    fGPSIFD.Add (&fGPSSpeedRef);
1556
130
    }
1557
    
1558
67.9k
  if (exif.fGPSSpeed.IsValid ())
1559
222
    {
1560
222
    fGPSIFD.Add (&fGPSSpeed);
1561
222
    }
1562
    
1563
67.9k
  if (exif.fGPSTrackRef.NotEmpty ())
1564
194
    {
1565
194
    fGPSIFD.Add (&fGPSTrackRef);
1566
194
    }
1567
    
1568
67.9k
  if (exif.fGPSTrack.IsValid ())
1569
233
    {
1570
233
    fGPSIFD.Add (&fGPSTrack);
1571
233
    }
1572
    
1573
67.9k
  if (exif.fGPSImgDirectionRef.NotEmpty ())
1574
254
    {
1575
254
    fGPSIFD.Add (&fGPSImgDirectionRef);
1576
254
    }
1577
    
1578
67.9k
  if (exif.fGPSImgDirection.IsValid ())
1579
163
    {
1580
163
    fGPSIFD.Add (&fGPSImgDirection);
1581
163
    }
1582
1583
67.9k
  if (exif.fGPSMapDatum.NotEmpty ())
1584
137
    {
1585
137
    fGPSIFD.Add (&fGPSMapDatum);
1586
137
    }
1587
    
1588
67.9k
  if (exif.fGPSDestLatitudeRef.NotEmpty () &&
1589
109
    exif.fGPSDestLatitude [0].IsValid ())
1590
69
    {
1591
69
    fGPSIFD.Add (&fGPSDestLatitudeRef);
1592
69
    fGPSIFD.Add (&fGPSDestLatitude   );
1593
69
    }
1594
    
1595
67.9k
  if (exif.fGPSDestLongitudeRef.NotEmpty () &&
1596
188
    exif.fGPSDestLongitude [0].IsValid ())
1597
88
    {
1598
88
    fGPSIFD.Add (&fGPSDestLongitudeRef);
1599
88
    fGPSIFD.Add (&fGPSDestLongitude   );
1600
88
    }
1601
    
1602
67.9k
  if (exif.fGPSDestBearingRef.NotEmpty ())
1603
161
    {
1604
161
    fGPSIFD.Add (&fGPSDestBearingRef);
1605
161
    }
1606
    
1607
67.9k
  if (exif.fGPSDestBearing.IsValid ())
1608
365
    {
1609
365
    fGPSIFD.Add (&fGPSDestBearing);
1610
365
    }
1611
1612
67.9k
  if (exif.fGPSDestDistanceRef.NotEmpty ())
1613
171
    {
1614
171
    fGPSIFD.Add (&fGPSDestDistanceRef);
1615
171
    }
1616
    
1617
67.9k
  if (exif.fGPSDestDistance.IsValid ())
1618
189
    {
1619
189
    fGPSIFD.Add (&fGPSDestDistance);
1620
189
    }
1621
    
1622
67.9k
  if (exif.fGPSProcessingMethod.NotEmpty ())
1623
85
    {
1624
85
    fGPSIFD.Add (&fGPSProcessingMethod);
1625
85
    }
1626
1627
67.9k
  if (exif.fGPSAreaInformation.NotEmpty ())
1628
81
    {
1629
81
    fGPSIFD.Add (&fGPSAreaInformation);
1630
81
    }
1631
  
1632
67.9k
  if (exif.fGPSDateStamp.NotEmpty ())
1633
144
    {
1634
144
    fGPSIFD.Add (&fGPSDateStamp);
1635
144
    }
1636
  
1637
67.9k
  if (exif.fGPSDifferential <= 0x0FFFF)
1638
111
    {
1639
111
    fGPSIFD.Add (&fGPSDifferential);
1640
111
    }
1641
1642
67.9k
  if (exif.AtLeastVersion0230 ())
1643
2.83k
    {
1644
    
1645
2.83k
    if (exif.fGPSHPositioningError.IsValid ())
1646
101
      {
1647
101
      fGPSIFD.Add (&fGPSHPositioningError);
1648
101
      }
1649
1650
2.83k
    }
1651
    
1652
67.9k
  AddLinks (directory);
1653
  
1654
67.9k
  }
1655
1656
/******************************************************************************/
1657
1658
void exif_tag_set::AddLinks (dng_tiff_directory &directory)
1659
67.9k
  {
1660
  
1661
67.9k
  if (fExifIFD.Size () != 0 && !fAddedExifLink)
1662
8.17k
    {
1663
    
1664
8.17k
    directory.Add (&fExifLink);
1665
    
1666
8.17k
    fAddedExifLink = true;
1667
    
1668
8.17k
    }
1669
  
1670
67.9k
  if (fGPSIFD.Size () != 0 && !fAddedGPSLink)
1671
1.69k
    {
1672
    
1673
1.69k
    directory.Add (&fGPSLink);
1674
    
1675
1.69k
    fAddedGPSLink = true;
1676
    
1677
1.69k
    }
1678
  
1679
67.9k
  }
1680
  
1681
/******************************************************************************/
1682
1683
class range_tag_set
1684
  {
1685
  
1686
  private:
1687
  
1688
    uint32 fActiveAreaData [4];
1689
  
1690
    tag_uint32_ptr fActiveArea;
1691
  
1692
    uint32 fMaskedAreaData [kMaxMaskedAreas * 4];
1693
  
1694
    tag_uint32_ptr fMaskedAreas;
1695
                
1696
    tag_uint16_ptr fLinearizationTable;
1697
  
1698
    uint16 fBlackLevelRepeatDimData [2];
1699
    
1700
    tag_uint16_ptr fBlackLevelRepeatDim;
1701
    
1702
    dng_urational fBlackLevelData [kMaxBlackPattern *
1703
                       kMaxBlackPattern *
1704
                       kMaxSamplesPerPixel];
1705
    
1706
    tag_urational_ptr fBlackLevel;
1707
    
1708
    dng_memory_data fBlackLevelDeltaHData;
1709
    dng_memory_data fBlackLevelDeltaVData;
1710
    
1711
    tag_srational_ptr fBlackLevelDeltaH;
1712
    tag_srational_ptr fBlackLevelDeltaV;
1713
    
1714
    uint16 fWhiteLevelData16 [kMaxSamplesPerPixel];
1715
    uint32 fWhiteLevelData32 [kMaxSamplesPerPixel];
1716
    
1717
    tag_uint16_ptr fWhiteLevel16;
1718
    tag_uint32_ptr fWhiteLevel32;
1719
    
1720
  public:
1721
  
1722
    range_tag_set (dng_tiff_directory &directory,
1723
               const dng_negative &negative);
1724
    
1725
  };
1726
  
1727
/******************************************************************************/
1728
1729
range_tag_set::range_tag_set (dng_tiff_directory &directory,
1730
                    const dng_negative &negative)
1731
                
1732
16.7k
  : fActiveArea (tcActiveArea,
1733
16.7k
           fActiveAreaData,
1734
16.7k
           4)
1735
  
1736
16.7k
  , fMaskedAreas (tcMaskedAreas,
1737
16.7k
            fMaskedAreaData,
1738
16.7k
            0)
1739
  
1740
16.7k
  , fLinearizationTable (tcLinearizationTable,
1741
16.7k
               NULL,
1742
16.7k
               0)
1743
                
1744
16.7k
  , fBlackLevelRepeatDim (tcBlackLevelRepeatDim,
1745
16.7k
                fBlackLevelRepeatDimData,
1746
16.7k
                2)
1747
               
1748
16.7k
  , fBlackLevel (tcBlackLevel,
1749
16.7k
           fBlackLevelData)
1750
           
1751
16.7k
  , fBlackLevelDeltaHData ()
1752
16.7k
  , fBlackLevelDeltaVData ()
1753
           
1754
16.7k
  , fBlackLevelDeltaH (tcBlackLevelDeltaH)
1755
16.7k
  , fBlackLevelDeltaV (tcBlackLevelDeltaV)
1756
 
1757
16.7k
  , fWhiteLevel16 (tcWhiteLevel,
1758
16.7k
             fWhiteLevelData16)
1759
           
1760
16.7k
  , fWhiteLevel32 (tcWhiteLevel,
1761
16.7k
             fWhiteLevelData32)
1762
           
1763
16.7k
  {
1764
  
1765
16.7k
  const dng_image &rawImage (negative.RawImage ());
1766
  
1767
16.7k
  const dng_linearization_info *rangeInfo = negative.GetLinearizationInfo ();
1768
  
1769
16.7k
  if (rangeInfo)
1770
7.58k
    {
1771
    
1772
    // ActiveArea:
1773
    
1774
7.58k
      {
1775
    
1776
7.58k
      const dng_rect &r = rangeInfo->fActiveArea;
1777
      
1778
7.58k
      if (r.NotEmpty ())
1779
687
        {
1780
      
1781
687
        fActiveAreaData [0] = r.t;
1782
687
        fActiveAreaData [1] = r.l;
1783
687
        fActiveAreaData [2] = r.b;
1784
687
        fActiveAreaData [3] = r.r;
1785
        
1786
687
        directory.Add (&fActiveArea);
1787
        
1788
687
        }
1789
        
1790
7.58k
      }
1791
      
1792
    // MaskedAreas:
1793
      
1794
7.58k
    if (rangeInfo->fMaskedAreaCount)
1795
0
      {
1796
      
1797
0
      fMaskedAreas.SetCount (rangeInfo->fMaskedAreaCount * 4);
1798
      
1799
0
      for (uint32 index = 0; index < rangeInfo->fMaskedAreaCount; index++)
1800
0
        {
1801
        
1802
0
        const dng_rect &r = rangeInfo->fMaskedArea [index];
1803
        
1804
0
        fMaskedAreaData [index * 4 + 0] = r.t;
1805
0
        fMaskedAreaData [index * 4 + 1] = r.l;
1806
0
        fMaskedAreaData [index * 4 + 2] = r.b;
1807
0
        fMaskedAreaData [index * 4 + 3] = r.r;
1808
        
1809
0
        }
1810
        
1811
0
      directory.Add (&fMaskedAreas);
1812
      
1813
0
      }
1814
      
1815
    // LinearizationTable:
1816
1817
7.58k
    if (rangeInfo->fLinearizationTable.Get ())
1818
19
      {
1819
      
1820
19
      fLinearizationTable.SetData  (rangeInfo->fLinearizationTable->Buffer_uint16 ()     );
1821
19
      fLinearizationTable.SetCount (rangeInfo->fLinearizationTable->LogicalSize   () >> 1);
1822
      
1823
19
      directory.Add (&fLinearizationTable);
1824
      
1825
19
      }
1826
      
1827
    // BlackLevelRepeatDim:
1828
    
1829
7.58k
      {
1830
    
1831
7.58k
      fBlackLevelRepeatDimData [0] = (uint16) rangeInfo->fBlackLevelRepeatRows;
1832
7.58k
      fBlackLevelRepeatDimData [1] = (uint16) rangeInfo->fBlackLevelRepeatCols;
1833
      
1834
7.58k
      directory.Add (&fBlackLevelRepeatDim);
1835
      
1836
7.58k
      }
1837
    
1838
    // BlackLevel:
1839
    
1840
7.58k
      {
1841
    
1842
7.58k
      uint32 index = 0;
1843
      
1844
15.2k
      for (uint16 v = 0; v < rangeInfo->fBlackLevelRepeatRows; v++)
1845
7.69k
        {
1846
        
1847
15.8k
        for (uint32 h = 0; h < rangeInfo->fBlackLevelRepeatCols; h++)
1848
8.14k
          {
1849
          
1850
18.5k
          for (uint32 c = 0; c < rawImage.Planes (); c++)
1851
10.3k
            {
1852
          
1853
10.3k
            fBlackLevelData [index++] = rangeInfo->BlackLevel (v, h, c);
1854
          
1855
10.3k
            }
1856
            
1857
8.14k
          }
1858
          
1859
7.69k
        }
1860
        
1861
7.58k
      fBlackLevel.SetCount (rangeInfo->fBlackLevelRepeatRows *
1862
7.58k
                  rangeInfo->fBlackLevelRepeatCols * rawImage.Planes ());
1863
      
1864
7.58k
      directory.Add (&fBlackLevel);
1865
      
1866
7.58k
      }
1867
    
1868
    // BlackLevelDeltaH:
1869
        
1870
7.58k
    if (rangeInfo->ColumnBlackCount ())
1871
28
      {
1872
      
1873
28
      uint32 count = rangeInfo->ColumnBlackCount ();
1874
    
1875
28
      fBlackLevelDeltaHData.Allocate (count, sizeof (dng_srational));
1876
                         
1877
28
      dng_srational *blacks = (dng_srational *) fBlackLevelDeltaHData.Buffer ();
1878
      
1879
350
      for (uint32 col = 0; col < count; col++)
1880
322
        {
1881
        
1882
322
        blacks [col] = rangeInfo->ColumnBlack (col);
1883
        
1884
322
        }
1885
                         
1886
28
      fBlackLevelDeltaH.SetData  (blacks);
1887
28
      fBlackLevelDeltaH.SetCount (count );
1888
      
1889
28
      directory.Add (&fBlackLevelDeltaH);
1890
      
1891
28
      }
1892
    
1893
    // BlackLevelDeltaV:
1894
        
1895
7.58k
    if (rangeInfo->RowBlackCount ())
1896
33
      {
1897
      
1898
33
      uint32 count = rangeInfo->RowBlackCount ();
1899
    
1900
33
      fBlackLevelDeltaVData.Allocate (count, sizeof (dng_srational));
1901
                         
1902
33
      dng_srational *blacks = (dng_srational *) fBlackLevelDeltaVData.Buffer ();
1903
      
1904
258
      for (uint32 row = 0; row < count; row++)
1905
225
        {
1906
        
1907
225
        blacks [row] = rangeInfo->RowBlack (row);
1908
        
1909
225
        }
1910
                         
1911
33
      fBlackLevelDeltaV.SetData  (blacks);
1912
33
      fBlackLevelDeltaV.SetCount (count );
1913
      
1914
33
      directory.Add (&fBlackLevelDeltaV);
1915
      
1916
33
      }
1917
      
1918
7.58k
    }
1919
    
1920
  // WhiteLevel:
1921
  
1922
  // Only use the 32-bit data type if we must use it since there
1923
  // are some lazy (non-Adobe) DNG readers out there.
1924
  
1925
16.7k
  bool needs32 = false;
1926
    
1927
16.7k
  fWhiteLevel16.SetCount (rawImage.Planes ());
1928
16.7k
  fWhiteLevel32.SetCount (rawImage.Planes ());
1929
  
1930
39.0k
  for (uint32 c = 0; c < fWhiteLevel16.Count (); c++)
1931
22.3k
    {
1932
    
1933
22.3k
    fWhiteLevelData32 [c] = negative.WhiteLevel (c);
1934
    
1935
22.3k
    if (fWhiteLevelData32 [c] > 0x0FFFF)
1936
105
      {
1937
105
      needs32 = true;
1938
105
      }
1939
      
1940
22.3k
    fWhiteLevelData16 [c] = (uint16) fWhiteLevelData32 [c];
1941
    
1942
22.3k
    }
1943
    
1944
16.7k
  if (needs32)
1945
105
    {
1946
105
    directory.Add (&fWhiteLevel32);
1947
105
    }
1948
    
1949
16.6k
  else
1950
16.6k
    {
1951
16.6k
    directory.Add (&fWhiteLevel16);
1952
16.6k
    }
1953
  
1954
16.7k
  }
1955
1956
/******************************************************************************/
1957
1958
class mosaic_tag_set
1959
  {
1960
  
1961
  private:
1962
  
1963
    uint16 fCFARepeatPatternDimData [2];
1964
    
1965
    tag_uint16_ptr fCFARepeatPatternDim;
1966
                       
1967
    uint8 fCFAPatternData [kMaxCFAPattern *
1968
                 kMaxCFAPattern];
1969
    
1970
    tag_uint8_ptr fCFAPattern;
1971
                 
1972
    uint8 fCFAPlaneColorData [kMaxColorPlanes];
1973
    
1974
    tag_uint8_ptr fCFAPlaneColor;
1975
                  
1976
    tag_uint16 fCFALayout;
1977
    
1978
    tag_uint32 fGreenSplit;
1979
    
1980
  public:
1981
  
1982
    mosaic_tag_set (dng_tiff_directory &directory,
1983
                const dng_mosaic_info &info);
1984
    
1985
  };
1986
  
1987
/******************************************************************************/
1988
1989
mosaic_tag_set::mosaic_tag_set (dng_tiff_directory &directory,
1990
                      const dng_mosaic_info &info)
1991
1992
16.7k
  : fCFARepeatPatternDim (tcCFARepeatPatternDim,
1993
16.7k
                  fCFARepeatPatternDimData,
1994
16.7k
                  2)
1995
                  
1996
16.7k
  , fCFAPattern (tcCFAPattern,
1997
16.7k
           fCFAPatternData)
1998
          
1999
16.7k
  , fCFAPlaneColor (tcCFAPlaneColor,
2000
16.7k
            fCFAPlaneColorData)
2001
            
2002
16.7k
  , fCFALayout (tcCFALayout,
2003
16.7k
          (uint16) info.fCFALayout)
2004
  
2005
16.7k
  , fGreenSplit (tcBayerGreenSplit,
2006
16.7k
           info.fBayerGreenSplit)
2007
  
2008
16.7k
  {
2009
  
2010
16.7k
  if (info.IsColorFilterArray ())
2011
299
    {
2012
  
2013
    // CFARepeatPatternDim:
2014
    
2015
299
    fCFARepeatPatternDimData [0] = (uint16) info.fCFAPatternSize.v;
2016
299
    fCFARepeatPatternDimData [1] = (uint16) info.fCFAPatternSize.h;
2017
        
2018
299
    directory.Add (&fCFARepeatPatternDim);
2019
    
2020
    // CFAPattern:
2021
    
2022
299
    fCFAPattern.SetCount (info.fCFAPatternSize.v *
2023
299
                info.fCFAPatternSize.h);
2024
                
2025
876
    for (int32 r = 0; r < info.fCFAPatternSize.v; r++)
2026
577
      {
2027
      
2028
1.77k
      for (int32 c = 0; c < info.fCFAPatternSize.h; c++)
2029
1.19k
        {
2030
        
2031
1.19k
        fCFAPatternData [r * info.fCFAPatternSize.h + c] = info.fCFAPattern [r] [c];
2032
        
2033
1.19k
        }
2034
        
2035
577
      }
2036
        
2037
299
    directory.Add (&fCFAPattern);
2038
    
2039
    // CFAPlaneColor:
2040
    
2041
299
    fCFAPlaneColor.SetCount (info.fColorPlanes);
2042
    
2043
1.23k
    for (uint32 j = 0; j < info.fColorPlanes; j++)
2044
935
      {
2045
    
2046
935
      fCFAPlaneColorData [j] = info.fCFAPlaneColor [j];
2047
      
2048
935
      }
2049
    
2050
299
    directory.Add (&fCFAPlaneColor);
2051
    
2052
    // CFALayout:
2053
    
2054
299
    fCFALayout.Set ((uint16) info.fCFALayout);
2055
    
2056
299
    directory.Add (&fCFALayout);
2057
    
2058
    // BayerGreenSplit:  (only include if the pattern is a Bayer pattern)
2059
      
2060
299
    if (info.fCFAPatternSize == dng_point (2, 2) &&
2061
272
      info.fColorPlanes    == 3)
2062
231
      {
2063
      
2064
231
      directory.Add (&fGreenSplit);
2065
      
2066
231
      }
2067
      
2068
299
    }
2069
2070
16.7k
  }
2071
  
2072
/******************************************************************************/
2073
2074
class color_tag_set
2075
  {
2076
  
2077
  private:
2078
  
2079
    uint32 fColorChannels;
2080
    
2081
    tag_matrix fCameraCalibration1;
2082
    tag_matrix fCameraCalibration2;
2083
                     
2084
    tag_string fCameraCalibrationSignature;
2085
    
2086
    tag_string fAsShotProfileName;
2087
2088
    dng_urational fAnalogBalanceData [4];
2089
  
2090
    tag_urational_ptr fAnalogBalance;
2091
                    
2092
    dng_urational fAsShotNeutralData [4];
2093
    
2094
    tag_urational_ptr fAsShotNeutral;
2095
                      
2096
    dng_urational fAsShotWhiteXYData [2];
2097
    
2098
    tag_urational_ptr fAsShotWhiteXY;
2099
                      
2100
    tag_urational fLinearResponseLimit;
2101
                      
2102
  public:
2103
  
2104
    color_tag_set (dng_tiff_directory &directory,
2105
               const dng_negative &negative);
2106
    
2107
  };
2108
  
2109
/******************************************************************************/
2110
2111
color_tag_set::color_tag_set (dng_tiff_directory &directory,
2112
                    const dng_negative &negative)
2113
                
2114
12.3k
  : fColorChannels (negative.ColorChannels ())
2115
  
2116
12.3k
  , fCameraCalibration1 (tcCameraCalibration1,
2117
12.3k
                 negative.CameraCalibration1 ())
2118
            
2119
12.3k
  , fCameraCalibration2 (tcCameraCalibration2,
2120
12.3k
                 negative.CameraCalibration2 ())
2121
               
2122
12.3k
  , fCameraCalibrationSignature (tcCameraCalibrationSignature,
2123
12.3k
                   negative.CameraCalibrationSignature ())
2124
                   
2125
12.3k
  , fAsShotProfileName (tcAsShotProfileName,
2126
12.3k
              negative.AsShotProfileName ())
2127
2128
12.3k
  , fAnalogBalance (tcAnalogBalance,
2129
12.3k
            fAnalogBalanceData,
2130
12.3k
            fColorChannels)
2131
            
2132
12.3k
  , fAsShotNeutral (tcAsShotNeutral,
2133
12.3k
            fAsShotNeutralData,
2134
12.3k
            fColorChannels)
2135
            
2136
12.3k
  , fAsShotWhiteXY (tcAsShotWhiteXY,
2137
12.3k
            fAsShotWhiteXYData,
2138
12.3k
            2)
2139
                    
2140
12.3k
  , fLinearResponseLimit (tcLinearResponseLimit,
2141
12.3k
                  negative.LinearResponseLimitR ())
2142
                  
2143
12.3k
  {
2144
  
2145
12.3k
  if (fColorChannels > 1)
2146
12.3k
    {
2147
    
2148
12.3k
    uint32 channels2 = fColorChannels * fColorChannels;
2149
    
2150
12.3k
    if (fCameraCalibration1.Count () == channels2)
2151
78
      {
2152
      
2153
78
      directory.Add (&fCameraCalibration1);
2154
    
2155
78
      }
2156
      
2157
12.3k
    if (fCameraCalibration2.Count () == channels2)
2158
85
      {
2159
      
2160
85
      directory.Add (&fCameraCalibration2);
2161
    
2162
85
      }
2163
      
2164
12.3k
    if (fCameraCalibration1.Count () == channels2 ||
2165
12.2k
      fCameraCalibration2.Count () == channels2)
2166
145
      {
2167
      
2168
145
      if (negative.CameraCalibrationSignature ().NotEmpty ())
2169
53
        {
2170
        
2171
53
        directory.Add (&fCameraCalibrationSignature);
2172
        
2173
53
        }
2174
      
2175
145
      }
2176
      
2177
12.3k
    if (negative.AsShotProfileName ().NotEmpty ())
2178
245
      {
2179
      
2180
245
      directory.Add (&fAsShotProfileName);
2181
        
2182
245
      }
2183
      
2184
53.6k
    for (uint32 j = 0; j < fColorChannels; j++)
2185
41.3k
      {
2186
      
2187
41.3k
      fAnalogBalanceData [j] = negative.AnalogBalanceR (j);
2188
      
2189
41.3k
      }
2190
      
2191
12.3k
    directory.Add (&fAnalogBalance);
2192
    
2193
12.3k
    if (negative.HasCameraNeutral ())
2194
186
      {
2195
      
2196
774
      for (uint32 k = 0; k < fColorChannels; k++)
2197
588
        {
2198
        
2199
588
        fAsShotNeutralData [k] = negative.CameraNeutralR (k);
2200
        
2201
588
        }
2202
      
2203
186
      directory.Add (&fAsShotNeutral);
2204
      
2205
186
      }
2206
      
2207
12.1k
    else if (negative.HasCameraWhiteXY ())
2208
511
      {
2209
      
2210
511
      negative.GetCameraWhiteXY (fAsShotWhiteXYData [0],
2211
511
                     fAsShotWhiteXYData [1]);
2212
                     
2213
511
      directory.Add (&fAsShotWhiteXY);
2214
      
2215
511
      }
2216
    
2217
12.3k
    directory.Add (&fLinearResponseLimit);
2218
    
2219
12.3k
    }
2220
  
2221
12.3k
  }
2222
2223
/******************************************************************************/
2224
2225
class profile_tag_set
2226
  {
2227
  
2228
  private:
2229
  
2230
    tag_uint16 fCalibrationIlluminant1;
2231
    tag_uint16 fCalibrationIlluminant2;
2232
    
2233
    tag_matrix fColorMatrix1;
2234
    tag_matrix fColorMatrix2;
2235
    
2236
    tag_matrix fForwardMatrix1;
2237
    tag_matrix fForwardMatrix2;
2238
2239
    tag_matrix fReductionMatrix1;
2240
    tag_matrix fReductionMatrix2;
2241
    
2242
    tag_string fProfileName;
2243
    
2244
    tag_string fProfileCalibrationSignature;
2245
    
2246
    tag_uint32 fEmbedPolicyTag;
2247
    
2248
    tag_string fCopyrightTag;
2249
    
2250
    uint32 fHueSatMapDimData [3];
2251
    
2252
    tag_uint32_ptr fHueSatMapDims;
2253
2254
    tag_data_ptr fHueSatData1;
2255
    tag_data_ptr fHueSatData2;
2256
    
2257
    tag_uint32 fHueSatMapEncodingTag;
2258
    
2259
    uint32 fLookTableDimData [3];
2260
    
2261
    tag_uint32_ptr fLookTableDims;
2262
2263
    tag_data_ptr fLookTableData;
2264
    
2265
    tag_uint32 fLookTableEncodingTag;
2266
2267
    tag_srational fBaselineExposureOffsetTag;
2268
    
2269
    tag_uint32 fDefaultBlackRenderTag;
2270
2271
    dng_memory_data fToneCurveBuffer;
2272
    
2273
    tag_data_ptr fToneCurveTag;
2274
2275
  public:
2276
  
2277
    profile_tag_set (dng_tiff_directory &directory,
2278
             const dng_camera_profile &profile);
2279
    
2280
  };
2281
  
2282
/******************************************************************************/
2283
2284
profile_tag_set::profile_tag_set (dng_tiff_directory &directory,
2285
                        const dng_camera_profile &profile)
2286
                
2287
71.6k
  : fCalibrationIlluminant1 (tcCalibrationIlluminant1,
2288
71.6k
                 (uint16) profile.CalibrationIlluminant1 ())
2289
                 
2290
71.6k
  , fCalibrationIlluminant2 (tcCalibrationIlluminant2,
2291
71.6k
                 (uint16) profile.CalibrationIlluminant2 ())
2292
  
2293
71.6k
  , fColorMatrix1 (tcColorMatrix1,
2294
71.6k
             profile.ColorMatrix1 ())
2295
            
2296
71.6k
  , fColorMatrix2 (tcColorMatrix2,
2297
71.6k
             profile.ColorMatrix2 ())
2298
2299
71.6k
  , fForwardMatrix1 (tcForwardMatrix1,
2300
71.6k
             profile.ForwardMatrix1 ())
2301
            
2302
71.6k
  , fForwardMatrix2 (tcForwardMatrix2,
2303
71.6k
             profile.ForwardMatrix2 ())
2304
            
2305
71.6k
  , fReductionMatrix1 (tcReductionMatrix1,
2306
71.6k
               profile.ReductionMatrix1 ())
2307
            
2308
71.6k
  , fReductionMatrix2 (tcReductionMatrix2,
2309
71.6k
               profile.ReductionMatrix2 ())
2310
               
2311
71.6k
  , fProfileName (tcProfileName,
2312
71.6k
            profile.Name (),
2313
71.6k
            false)
2314
               
2315
71.6k
  , fProfileCalibrationSignature (tcProfileCalibrationSignature,
2316
71.6k
                    profile.ProfileCalibrationSignature (),
2317
71.6k
                    false)
2318
            
2319
71.6k
  , fEmbedPolicyTag (tcProfileEmbedPolicy,
2320
71.6k
             profile.EmbedPolicy ())
2321
             
2322
71.6k
  , fCopyrightTag (tcProfileCopyright,
2323
71.6k
             profile.Copyright (),
2324
71.6k
             false)
2325
             
2326
71.6k
  , fHueSatMapDims (tcProfileHueSatMapDims, 
2327
71.6k
            fHueSatMapDimData,
2328
71.6k
            3)
2329
    
2330
71.6k
  , fHueSatData1 (tcProfileHueSatMapData1,
2331
71.6k
            ttFloat,
2332
71.6k
            profile.HueSatDeltas1 ().DeltasCount () * 3,
2333
71.6k
            profile.HueSatDeltas1 ().GetConstDeltas ())
2334
            
2335
71.6k
  , fHueSatData2 (tcProfileHueSatMapData2,
2336
71.6k
            ttFloat,
2337
71.6k
            profile.HueSatDeltas2 ().DeltasCount () * 3,
2338
71.6k
            profile.HueSatDeltas2 ().GetConstDeltas ())
2339
            
2340
71.6k
  , fHueSatMapEncodingTag (tcProfileHueSatMapEncoding,
2341
71.6k
                 profile.HueSatMapEncoding ())
2342
             
2343
71.6k
  , fLookTableDims (tcProfileLookTableDims,
2344
71.6k
            fLookTableDimData,
2345
71.6k
            3)
2346
            
2347
71.6k
  , fLookTableData (tcProfileLookTableData,
2348
71.6k
            ttFloat,
2349
71.6k
            profile.LookTable ().DeltasCount () * 3,
2350
71.6k
              profile.LookTable ().GetConstDeltas ())
2351
            
2352
71.6k
  , fLookTableEncodingTag (tcProfileLookTableEncoding,
2353
71.6k
                 profile.LookTableEncoding ())
2354
             
2355
71.6k
  , fBaselineExposureOffsetTag (tcBaselineExposureOffset,
2356
71.6k
                  profile.BaselineExposureOffset ())
2357
             
2358
71.6k
  , fDefaultBlackRenderTag (tcDefaultBlackRender,
2359
71.6k
                profile.DefaultBlackRender ())
2360
             
2361
71.6k
  , fToneCurveBuffer ()
2362
            
2363
71.6k
  , fToneCurveTag (tcProfileToneCurve,
2364
71.6k
             ttFloat,
2365
71.6k
             0,
2366
71.6k
             NULL)
2367
2368
71.6k
  {
2369
  
2370
71.6k
  if (profile.HasColorMatrix1 ())
2371
62.5k
    {
2372
  
2373
62.5k
    uint32 colorChannels = profile.ColorMatrix1 ().Rows ();
2374
    
2375
62.5k
    directory.Add (&fCalibrationIlluminant1);
2376
    
2377
62.5k
    directory.Add (&fColorMatrix1);
2378
    
2379
62.5k
    if (fForwardMatrix1.Count () == colorChannels * 3)
2380
13
      {
2381
      
2382
13
      directory.Add (&fForwardMatrix1);
2383
2384
13
      }
2385
    
2386
62.5k
    if (colorChannels > 3 && fReductionMatrix1.Count () == colorChannels * 3)
2387
0
      {
2388
      
2389
0
      directory.Add (&fReductionMatrix1);
2390
      
2391
0
      }
2392
      
2393
62.5k
    if (profile.HasColorMatrix2 ())
2394
25.5k
      {
2395
    
2396
25.5k
      directory.Add (&fCalibrationIlluminant2);
2397
    
2398
25.5k
      directory.Add (&fColorMatrix2);
2399
        
2400
25.5k
      if (fForwardMatrix2.Count () == colorChannels * 3)
2401
2
        {
2402
        
2403
2
        directory.Add (&fForwardMatrix2);
2404
2405
2
        }
2406
    
2407
25.5k
      if (colorChannels > 3 && fReductionMatrix2.Count () == colorChannels * 3)
2408
0
        {
2409
        
2410
0
        directory.Add (&fReductionMatrix2);
2411
        
2412
0
        }
2413
  
2414
25.5k
      }
2415
      
2416
62.5k
    if (profile.Name ().NotEmpty ())
2417
62.5k
      {
2418
      
2419
62.5k
      directory.Add (&fProfileName);
2420
2421
62.5k
      }
2422
      
2423
62.5k
    if (profile.ProfileCalibrationSignature ().NotEmpty ())
2424
9.35k
      {
2425
      
2426
9.35k
      directory.Add (&fProfileCalibrationSignature);
2427
      
2428
9.35k
      }
2429
      
2430
62.5k
    directory.Add (&fEmbedPolicyTag);
2431
    
2432
62.5k
    if (profile.Copyright ().NotEmpty ())
2433
10.3k
      {
2434
      
2435
10.3k
      directory.Add (&fCopyrightTag);
2436
      
2437
10.3k
      }
2438
    
2439
62.5k
    bool haveHueSat1 = profile.HueSatDeltas1 ().IsValid ();
2440
    
2441
62.5k
    bool haveHueSat2 = profile.HueSatDeltas2 ().IsValid () &&
2442
2.12k
               profile.HasColorMatrix2 ();
2443
2444
62.5k
    if (haveHueSat1 || haveHueSat2)
2445
4.98k
      {
2446
      
2447
4.98k
      uint32 hueDivs = 0;
2448
4.98k
      uint32 satDivs = 0;
2449
4.98k
      uint32 valDivs = 0;
2450
2451
4.98k
      if (haveHueSat1)
2452
3.85k
        {
2453
2454
3.85k
        profile.HueSatDeltas1 ().GetDivisions (hueDivs,
2455
3.85k
                             satDivs,
2456
3.85k
                             valDivs);
2457
2458
3.85k
        }
2459
2460
1.12k
      else
2461
1.12k
        {
2462
2463
1.12k
        profile.HueSatDeltas2 ().GetDivisions (hueDivs,
2464
1.12k
                             satDivs,
2465
1.12k
                             valDivs);
2466
2467
1.12k
        }
2468
        
2469
4.98k
      fHueSatMapDimData [0] = hueDivs;
2470
4.98k
      fHueSatMapDimData [1] = satDivs;
2471
4.98k
      fHueSatMapDimData [2] = valDivs;
2472
      
2473
4.98k
      directory.Add (&fHueSatMapDims);
2474
2475
      // Don't bother including the ProfileHueSatMapEncoding tag unless it's
2476
      // non-linear.
2477
2478
4.98k
      if (profile.HueSatMapEncoding () != encoding_Linear)
2479
5
        {
2480
2481
5
        directory.Add (&fHueSatMapEncodingTag);
2482
2483
5
        }
2484
    
2485
4.98k
      }
2486
      
2487
62.5k
    if (haveHueSat1)
2488
3.85k
      {
2489
      
2490
3.85k
      directory.Add (&fHueSatData1);
2491
      
2492
3.85k
      }
2493
      
2494
62.5k
    if (haveHueSat2)
2495
1.12k
      {
2496
      
2497
1.12k
      directory.Add (&fHueSatData2);
2498
      
2499
1.12k
      }
2500
      
2501
62.5k
    if (profile.HasLookTable ())
2502
18.1k
      {
2503
      
2504
18.1k
      uint32 hueDivs = 0;
2505
18.1k
      uint32 satDivs = 0;
2506
18.1k
      uint32 valDivs = 0;
2507
2508
18.1k
      profile.LookTable ().GetDivisions (hueDivs,
2509
18.1k
                         satDivs,
2510
18.1k
                         valDivs);
2511
2512
18.1k
      fLookTableDimData [0] = hueDivs;
2513
18.1k
      fLookTableDimData [1] = satDivs;
2514
18.1k
      fLookTableDimData [2] = valDivs;
2515
      
2516
18.1k
      directory.Add (&fLookTableDims);
2517
      
2518
18.1k
      directory.Add (&fLookTableData);
2519
      
2520
      // Don't bother including the ProfileLookTableEncoding tag unless it's
2521
      // non-linear.
2522
2523
18.1k
      if (profile.LookTableEncoding () != encoding_Linear)
2524
364
        {
2525
2526
364
        directory.Add (&fLookTableEncodingTag);
2527
2528
364
        }
2529
    
2530
18.1k
      }
2531
2532
    // Don't bother including the BaselineExposureOffset tag unless it's both
2533
    // valid and non-zero.
2534
2535
62.5k
    if (profile.BaselineExposureOffset ().IsValid ())
2536
62.5k
      {
2537
2538
62.5k
      if (profile.BaselineExposureOffset ().As_real64 () != 0.0)
2539
7.40k
        {
2540
      
2541
7.40k
        directory.Add (&fBaselineExposureOffsetTag);
2542
2543
7.40k
        }
2544
        
2545
62.5k
      }
2546
      
2547
62.5k
    if (profile.DefaultBlackRender () != defaultBlackRender_Auto)
2548
10.0k
      {
2549
2550
10.0k
      directory.Add (&fDefaultBlackRenderTag);
2551
2552
10.0k
      }
2553
    
2554
62.5k
    if (profile.ToneCurve ().IsValid ())
2555
9.59k
      {
2556
      
2557
      // Tone curve stored as pairs of 32-bit coordinates.  Probably could do with
2558
      // 16-bits here, but should be small number of points so...
2559
      
2560
9.59k
      uint32 toneCurvePoints = (uint32) (profile.ToneCurve ().fCoord.size ());
2561
2562
9.59k
      fToneCurveBuffer.Allocate (SafeUint32Mult(toneCurvePoints, 2),
2563
9.59k
                     sizeof (real32));
2564
2565
9.59k
      real32 *points = fToneCurveBuffer.Buffer_real32 ();
2566
      
2567
9.59k
      fToneCurveTag.SetCount (toneCurvePoints * 2);
2568
9.59k
      fToneCurveTag.SetData  (points);
2569
      
2570
32.5k
      for (uint32 i = 0; i < toneCurvePoints; i++)
2571
22.9k
        {
2572
2573
        // Transpose coordinates so they are in a more expected
2574
        // order (domain -> range).
2575
2576
22.9k
        points [i * 2    ] = (real32) profile.ToneCurve ().fCoord [i].h;
2577
22.9k
        points [i * 2 + 1] = (real32) profile.ToneCurve ().fCoord [i].v;
2578
2579
22.9k
        }
2580
2581
9.59k
      directory.Add (&fToneCurveTag);
2582
2583
9.59k
      }
2584
2585
62.5k
    }
2586
  
2587
71.6k
  }
2588
2589
/******************************************************************************/
2590
2591
tiff_dng_extended_color_profile::tiff_dng_extended_color_profile 
2592
                 (const dng_camera_profile &profile)
2593
2594
59.2k
  : fProfile (profile)
2595
2596
59.2k
  {
2597
  
2598
59.2k
  }
2599
2600
/******************************************************************************/
2601
2602
void tiff_dng_extended_color_profile::Put (dng_stream &stream,
2603
                       bool includeModelRestriction)
2604
59.2k
  {
2605
  
2606
  // Profile header.
2607
2608
59.2k
  stream.Put_uint16 (stream.BigEndian () ? byteOrderMM : byteOrderII);
2609
2610
59.2k
  stream.Put_uint16 (magicExtendedProfile);
2611
2612
59.2k
  stream.Put_uint32 (8);
2613
  
2614
  // Profile tags.
2615
  
2616
59.2k
  profile_tag_set tagSet (*this, fProfile);
2617
2618
  // Camera this profile is for.
2619
2620
59.2k
  tag_string cameraModelTag (tcUniqueCameraModel, 
2621
59.2k
                 fProfile.UniqueCameraModelRestriction ());
2622
                 
2623
59.2k
  if (includeModelRestriction)
2624
0
    {
2625
    
2626
0
    if (fProfile.UniqueCameraModelRestriction ().NotEmpty ())
2627
0
      {
2628
      
2629
0
      Add (&cameraModelTag);
2630
      
2631
0
      }
2632
      
2633
0
    }
2634
2635
  // Write it all out.
2636
2637
59.2k
  dng_tiff_directory::Put (stream, offsetsRelativeToExplicitBase, 8);
2638
2639
59.2k
  }
2640
2641
/*****************************************************************************/
2642
2643
tag_dng_noise_profile::tag_dng_noise_profile (const dng_noise_profile &profile)
2644
2645
16.7k
  : tag_data_ptr (tcNoiseProfile,
2646
16.7k
            ttDouble,
2647
16.7k
            2 * profile.NumFunctions (),
2648
16.7k
            fValues)
2649
2650
16.7k
  {
2651
2652
16.7k
  DNG_REQUIRE (profile.NumFunctions () <= kMaxColorPlanes,
2653
16.7k
         "Too many noise functions in tag_dng_noise_profile.");
2654
2655
17.3k
  for (uint32 i = 0; i < profile.NumFunctions (); i++)
2656
612
    {
2657
2658
612
    fValues [(2 * i)  ] = profile.NoiseFunction (i).Scale  ();
2659
612
    fValues [(2 * i) + 1] = profile.NoiseFunction (i).Offset ();
2660
2661
612
    }
2662
  
2663
16.7k
  }
2664
    
2665
/*****************************************************************************/
2666
2667
dng_image_writer::dng_image_writer ()
2668
80.7k
  {
2669
  
2670
80.7k
  }
2671
2672
/*****************************************************************************/
2673
2674
dng_image_writer::~dng_image_writer ()
2675
80.7k
  {
2676
  
2677
80.7k
  }
2678
                
2679
/*****************************************************************************/
2680
2681
uint32 dng_image_writer::CompressedBufferSize (const dng_ifd &ifd,
2682
                         uint32 uncompressedSize)
2683
65.8k
  {
2684
  
2685
65.8k
  switch (ifd.fCompression)
2686
65.8k
    {
2687
    
2688
12.2k
    case ccLZW:
2689
12.2k
      {
2690
      
2691
      // Add lots of slop for LZW to expand data.
2692
        
2693
12.2k
      return SafeUint32Add (SafeUint32Mult (uncompressedSize, 2), 1024);
2694
      
2695
0
      }
2696
      
2697
4.29k
    case ccDeflate:
2698
4.29k
      {
2699
    
2700
      // ZLib says maximum is source size + 0.1% + 12 bytes.
2701
      
2702
4.29k
      return SafeUint32Add (SafeUint32Add (uncompressedSize,
2703
4.29k
                         uncompressedSize >> 8), 64);
2704
      
2705
0
      }
2706
      
2707
8.04k
    case ccJPEG:
2708
8.04k
      {
2709
      
2710
      // If we are saving lossless JPEG from an 8-bit image, reserve
2711
      // space to pad the data out to 16-bits.
2712
      
2713
8.04k
      if (ifd.fBitsPerSample [0] <= 8)
2714
61
        {
2715
        
2716
61
        return SafeUint32Mult (uncompressedSize, 2);
2717
        
2718
61
        }
2719
        
2720
7.98k
      break;
2721
  
2722
8.04k
      }
2723
      
2724
41.2k
    default:
2725
41.2k
      break;
2726
    
2727
65.8k
    }
2728
  
2729
49.2k
  return 0;
2730
  
2731
65.8k
  }
2732
                
2733
/******************************************************************************/
2734
2735
static void EncodeDelta8 (uint8 *dPtr,
2736
              uint32 rows,
2737
              uint32 cols,
2738
              uint32 channels)
2739
0
  {
2740
  
2741
0
  const uint32 dRowStep = cols * channels;
2742
  
2743
0
  for (uint32 row = 0; row < rows; row++)
2744
0
    {
2745
    
2746
0
    for (uint32 col = cols - 1; col > 0; col--)
2747
0
      {
2748
      
2749
0
      for (uint32 channel = 0; channel < channels; channel++)
2750
0
        {
2751
        
2752
0
        dPtr [col * channels + channel] -= dPtr [(col - 1) * channels + channel];
2753
        
2754
0
        }
2755
      
2756
0
      }
2757
    
2758
0
    dPtr += dRowStep;
2759
    
2760
0
    }
2761
2762
0
  }
2763
2764
/******************************************************************************/
2765
2766
static void EncodeDelta16 (uint16 *dPtr,
2767
               uint32 rows,
2768
               uint32 cols,
2769
               uint32 channels)
2770
26.8k
  {
2771
  
2772
26.8k
  const uint32 dRowStep = cols * channels;
2773
  
2774
20.3M
  for (uint32 row = 0; row < rows; row++)
2775
20.3M
    {
2776
    
2777
766M
    for (uint32 col = cols - 1; col > 0; col--)
2778
746M
      {
2779
      
2780
1.70G
      for (uint32 channel = 0; channel < channels; channel++)
2781
961M
        {
2782
        
2783
961M
        dPtr [col * channels + channel] -= dPtr [(col - 1) * channels + channel];
2784
        
2785
961M
        }
2786
      
2787
746M
      }
2788
    
2789
20.3M
    dPtr += dRowStep;
2790
    
2791
20.3M
    }
2792
2793
26.8k
  }
2794
  
2795
/******************************************************************************/
2796
2797
static void EncodeDelta32 (uint32 *dPtr,
2798
               uint32 rows,
2799
               uint32 cols,
2800
               uint32 channels)
2801
933
  {
2802
  
2803
933
  const uint32 dRowStep = cols * channels;
2804
  
2805
510k
  for (uint32 row = 0; row < rows; row++)
2806
509k
    {
2807
    
2808
23.7M
    for (uint32 col = cols - 1; col > 0; col--)
2809
23.2M
      {
2810
      
2811
47.8M
      for (uint32 channel = 0; channel < channels; channel++)
2812
24.6M
        {
2813
        
2814
24.6M
        dPtr [col * channels + channel] -= dPtr [(col - 1) * channels + channel];
2815
        
2816
24.6M
        }
2817
      
2818
23.2M
      }
2819
    
2820
509k
    dPtr += dRowStep;
2821
    
2822
509k
    }
2823
2824
933
  }
2825
  
2826
/*****************************************************************************/
2827
2828
inline void EncodeDeltaBytes (uint8 *bytePtr, int32 cols, int32 channels)
2829
3.39M
  {
2830
  
2831
3.39M
  if (channels == 1)
2832
2.85M
    {
2833
    
2834
2.85M
    bytePtr += (cols - 1);
2835
    
2836
2.85M
    uint8 this0 = bytePtr [0];
2837
    
2838
1.55G
    for (int32 col = 1; col < cols; col++)
2839
1.54G
      {
2840
      
2841
1.54G
      uint8 prev0 = bytePtr [-1];
2842
      
2843
1.54G
      this0 -= prev0;
2844
      
2845
1.54G
      bytePtr [0] = this0;
2846
      
2847
1.54G
      this0 = prev0;
2848
      
2849
1.54G
      bytePtr -= 1;
2850
2851
1.54G
      }
2852
  
2853
2.85M
    }
2854
    
2855
540k
  else if (channels == 3)
2856
96.3k
    {
2857
    
2858
96.3k
    bytePtr += (cols - 1) * 3;
2859
    
2860
96.3k
    uint8 this0 = bytePtr [0];
2861
96.3k
    uint8 this1 = bytePtr [1];
2862
96.3k
    uint8 this2 = bytePtr [2];
2863
    
2864
23.3M
    for (int32 col = 1; col < cols; col++)
2865
23.2M
      {
2866
      
2867
23.2M
      uint8 prev0 = bytePtr [-3];
2868
23.2M
      uint8 prev1 = bytePtr [-2];
2869
23.2M
      uint8 prev2 = bytePtr [-1];
2870
      
2871
23.2M
      this0 -= prev0;
2872
23.2M
      this1 -= prev1;
2873
23.2M
      this2 -= prev2;
2874
      
2875
23.2M
      bytePtr [0] = this0;
2876
23.2M
      bytePtr [1] = this1;
2877
23.2M
      bytePtr [2] = this2;
2878
      
2879
23.2M
      this0 = prev0;
2880
23.2M
      this1 = prev1;
2881
23.2M
      this2 = prev2;
2882
      
2883
23.2M
      bytePtr -= 3;
2884
2885
23.2M
      }
2886
  
2887
96.3k
    }
2888
    
2889
443k
  else
2890
443k
    {
2891
  
2892
443k
    uint32 rowBytes = cols * channels;
2893
    
2894
443k
    bytePtr += rowBytes - 1;
2895
    
2896
141M
    for (uint32 col = channels; col < rowBytes; col++)
2897
141M
      {
2898
      
2899
141M
      bytePtr [0] -= bytePtr [-channels];
2900
        
2901
141M
      bytePtr--;
2902
2903
141M
      }
2904
      
2905
443k
    }
2906
2907
3.39M
  }
2908
2909
/*****************************************************************************/
2910
2911
static void EncodeFPDelta (uint8 *buffer,
2912
               uint8 *temp,
2913
               int32 cols,
2914
               int32 channels,
2915
               int32 bytesPerSample)
2916
3.39M
  {
2917
  
2918
3.39M
  int32 rowIncrement = cols * channels;
2919
  
2920
3.39M
  if (bytesPerSample == 2)
2921
1.45M
    {
2922
    
2923
1.45M
    const uint8 *src = buffer;
2924
    
2925
    #if qDNGBigEndian
2926
    uint8 *dst0 = temp;
2927
    uint8 *dst1 = temp + rowIncrement;
2928
    #else
2929
1.45M
    uint8 *dst1 = temp;
2930
1.45M
    uint8 *dst0 = temp + rowIncrement;
2931
1.45M
    #endif
2932
        
2933
193M
    for (int32 col = 0; col < rowIncrement; ++col)
2934
191M
      {
2935
      
2936
191M
      dst0 [col] = src [0];
2937
191M
      dst1 [col] = src [1];
2938
      
2939
191M
      src += 2;
2940
      
2941
191M
      }
2942
      
2943
1.45M
    }
2944
    
2945
1.94M
  else if (bytesPerSample == 3)
2946
15.2k
    {
2947
    
2948
15.2k
    const uint8 *src = buffer;
2949
    
2950
15.2k
    uint8 *dst0 = temp;
2951
15.2k
    uint8 *dst1 = temp + rowIncrement;
2952
15.2k
    uint8 *dst2 = temp + rowIncrement * 2;
2953
        
2954
5.97M
    for (int32 col = 0; col < rowIncrement; ++col)
2955
5.95M
      {
2956
      
2957
5.95M
      dst0 [col] = src [0];
2958
5.95M
      dst1 [col] = src [1];
2959
5.95M
      dst2 [col] = src [2];
2960
      
2961
5.95M
      src += 3;
2962
      
2963
5.95M
      }
2964
      
2965
15.2k
    }
2966
    
2967
1.93M
  else
2968
1.93M
    {
2969
    
2970
1.93M
    const uint8 *src = buffer;
2971
    
2972
    #if qDNGBigEndian
2973
    uint8 *dst0 = temp;
2974
    uint8 *dst1 = temp + rowIncrement;
2975
    uint8 *dst2 = temp + rowIncrement * 2;
2976
    uint8 *dst3 = temp + rowIncrement * 3;
2977
    #else
2978
1.93M
    uint8 *dst3 = temp;
2979
1.93M
    uint8 *dst2 = temp + rowIncrement;
2980
1.93M
    uint8 *dst1 = temp + rowIncrement * 2;
2981
1.93M
    uint8 *dst0 = temp + rowIncrement * 3;
2982
1.93M
    #endif
2983
        
2984
342M
    for (int32 col = 0; col < rowIncrement; ++col)
2985
340M
      {
2986
      
2987
340M
      dst0 [col] = src [0];
2988
340M
      dst1 [col] = src [1];
2989
340M
      dst2 [col] = src [2];
2990
340M
      dst3 [col] = src [3];
2991
      
2992
340M
      src += 4;
2993
      
2994
340M
      }
2995
      
2996
1.93M
    }
2997
    
2998
3.39M
  EncodeDeltaBytes (temp, cols*bytesPerSample, channels);
2999
  
3000
3.39M
  memcpy (buffer, temp, cols*bytesPerSample*channels);
3001
  
3002
3.39M
  }
3003
3004
/*****************************************************************************/
3005
3006
void dng_image_writer::EncodePredictor (dng_host &host,
3007
                      const dng_ifd &ifd,
3008
                          dng_pixel_buffer &buffer,
3009
                    AutoPtr<dng_memory_block> &tempBuffer)
3010
361k
  {
3011
  
3012
361k
  switch (ifd.fPredictor)
3013
361k
    {
3014
    
3015
29.8k
    case cpHorizontalDifference:
3016
30.2k
    case cpHorizontalDifferenceX2:
3017
30.3k
    case cpHorizontalDifferenceX4:
3018
30.3k
      {
3019
      
3020
30.3k
      int32 xFactor = 1;
3021
      
3022
30.3k
      if (ifd.fPredictor == cpHorizontalDifferenceX2)
3023
409
        {
3024
409
        xFactor = 2;
3025
409
        }
3026
        
3027
29.8k
      else if (ifd.fPredictor == cpHorizontalDifferenceX4)
3028
8
        {
3029
8
        xFactor = 4;
3030
8
        }
3031
      
3032
30.3k
      switch (buffer.fPixelType)
3033
30.3k
        {
3034
        
3035
0
        case ttByte:
3036
0
          {
3037
          
3038
0
          EncodeDelta8 ((uint8 *) buffer.fData,
3039
0
                  buffer.fArea.H (),
3040
0
                  buffer.fArea.W () / xFactor,
3041
0
                  buffer.fPlanes    * xFactor);
3042
          
3043
0
          return;
3044
          
3045
0
          }
3046
          
3047
26.8k
        case ttShort:
3048
26.8k
          {
3049
          
3050
26.8k
          EncodeDelta16 ((uint16 *) buffer.fData,
3051
26.8k
                   buffer.fArea.H (),
3052
26.8k
                   buffer.fArea.W () / xFactor,
3053
26.8k
                   buffer.fPlanes    * xFactor);
3054
          
3055
26.8k
          return;
3056
          
3057
0
          }
3058
          
3059
933
        case ttLong:
3060
933
          {
3061
          
3062
933
          EncodeDelta32 ((uint32 *) buffer.fData,
3063
933
                   buffer.fArea.H (),
3064
933
                   buffer.fArea.W () / xFactor,
3065
933
                   buffer.fPlanes    * xFactor);
3066
          
3067
933
          return;
3068
          
3069
0
          }
3070
          
3071
2.51k
        default:
3072
2.51k
          break;
3073
          
3074
30.3k
        }
3075
      
3076
2.51k
      break;
3077
      
3078
30.3k
      }
3079
      
3080
13.9k
    case cpFloatingPoint:
3081
14.7k
    case cpFloatingPointX2:
3082
14.7k
    case cpFloatingPointX4:
3083
14.7k
      {
3084
      
3085
14.7k
      int32 xFactor = 1;
3086
      
3087
14.7k
      if (ifd.fPredictor == cpFloatingPointX2)
3088
815
        {
3089
815
        xFactor = 2;
3090
815
        }
3091
        
3092
13.9k
      else if (ifd.fPredictor == cpFloatingPointX4)
3093
2
        {
3094
2
        xFactor = 4;
3095
2
        }
3096
      
3097
14.7k
      if (buffer.fRowStep < 0)
3098
0
        {
3099
0
        ThrowProgramError ("Row step may not be negative");
3100
0
        }
3101
14.7k
      uint32 tempBufferSize = SafeUint32Mult (
3102
14.7k
        static_cast<uint32>(buffer.fRowStep),
3103
14.7k
        buffer.fPixelSize);
3104
      
3105
14.7k
      if (!tempBuffer.Get () || tempBuffer->LogicalSize () < tempBufferSize)
3106
4.20k
        {
3107
        
3108
4.20k
        tempBuffer.Reset (host.Allocate (tempBufferSize));
3109
        
3110
4.20k
        }
3111
        
3112
3.41M
      for (int32 row = buffer.fArea.t; row < buffer.fArea.b; row++)
3113
3.39M
        {
3114
        
3115
3.39M
        EncodeFPDelta ((uint8 *) buffer.DirtyPixel (row, buffer.fArea.l, buffer.fPlane),
3116
3.39M
                 tempBuffer->Buffer_uint8 (),
3117
3.39M
                 buffer.fArea.W () / xFactor,
3118
3.39M
                 buffer.fPlanes    * xFactor,
3119
3.39M
                 buffer.fPixelSize);
3120
        
3121
3.39M
        }
3122
      
3123
14.7k
      return;
3124
      
3125
14.7k
      }
3126
      
3127
316k
    default:
3128
316k
      break;
3129
    
3130
361k
    }
3131
  
3132
318k
  if (ifd.fPredictor != cpNullPredictor)
3133
2.51k
    {
3134
    
3135
2.51k
    ThrowProgramError ();
3136
    
3137
2.51k
    }
3138
  
3139
318k
  }
3140
                
3141
/*****************************************************************************/
3142
3143
void dng_image_writer::ByteSwapBuffer (dng_host & /* host */,
3144
                     dng_pixel_buffer &buffer)
3145
0
  {
3146
  
3147
0
  uint32 pixels = buffer.fRowStep * buffer.fArea.H ();
3148
  
3149
0
  switch (buffer.fPixelSize)
3150
0
    {
3151
    
3152
0
    case 2:
3153
0
      {
3154
      
3155
0
      DoSwapBytes16 ((uint16 *) buffer.fData,
3156
0
               pixels);
3157
               
3158
0
      break;
3159
      
3160
0
      }
3161
      
3162
0
    case 4:
3163
0
      {
3164
      
3165
0
      DoSwapBytes32 ((uint32 *) buffer.fData,
3166
0
               pixels);
3167
               
3168
0
      break;
3169
      
3170
0
      }
3171
      
3172
0
    default:
3173
0
      break;
3174
      
3175
0
    }
3176
3177
0
  }
3178
                
3179
/*****************************************************************************/
3180
3181
void dng_image_writer::ReorderSubTileBlocks (const dng_ifd &ifd,
3182
                       dng_pixel_buffer &buffer,
3183
                       AutoPtr<dng_memory_block> &uncompressedBuffer,
3184
                       AutoPtr<dng_memory_block> &subTileBlockBuffer)
3185
0
  {
3186
  
3187
0
  uint32 blockRows = ifd.fSubTileBlockRows;
3188
0
  uint32 blockCols = ifd.fSubTileBlockCols;
3189
  
3190
0
  uint32 rowBlocks = buffer.fArea.H () / blockRows;
3191
0
  uint32 colBlocks = buffer.fArea.W () / blockCols;
3192
  
3193
0
  int32 rowStep = buffer.fRowStep * buffer.fPixelSize;
3194
0
  int32 colStep = buffer.fColStep * buffer.fPixelSize;
3195
  
3196
0
  int32 rowBlockStep = rowStep * blockRows;
3197
0
  int32 colBlockStep = colStep * blockCols;
3198
  
3199
0
  uint32 blockColBytes = blockCols * buffer.fPlanes * buffer.fPixelSize;
3200
  
3201
0
  const uint8 *s0 = uncompressedBuffer->Buffer_uint8 ();
3202
0
        uint8 *d0 = subTileBlockBuffer->Buffer_uint8 ();
3203
  
3204
0
  for (uint32 rowBlock = 0; rowBlock < rowBlocks; rowBlock++)
3205
0
    {
3206
    
3207
0
    const uint8 *s1 = s0;
3208
    
3209
0
    for (uint32 colBlock = 0; colBlock < colBlocks; colBlock++)
3210
0
      {
3211
      
3212
0
      const uint8 *s2 = s1;
3213
      
3214
0
      for (uint32 blockRow = 0; blockRow < blockRows; blockRow++)
3215
0
        {
3216
        
3217
0
        for (uint32 j = 0; j < blockColBytes; j++)
3218
0
          {
3219
          
3220
0
          d0 [j] = s2 [j];
3221
          
3222
0
          }
3223
          
3224
0
        d0 += blockColBytes;
3225
        
3226
0
        s2 += rowStep;
3227
        
3228
0
        }
3229
      
3230
0
      s1 += colBlockStep;
3231
      
3232
0
      }
3233
      
3234
0
    s0 += rowBlockStep;
3235
    
3236
0
    }
3237
    
3238
  // Copy back reordered pixels.
3239
    
3240
0
  DoCopyBytes (subTileBlockBuffer->Buffer      (),
3241
0
         uncompressedBuffer->Buffer      (),
3242
0
         uncompressedBuffer->LogicalSize ());
3243
  
3244
0
  }
3245
                
3246
/******************************************************************************/
3247
3248
class dng_lzw_compressor
3249
  {
3250
  
3251
  private:
3252
  
3253
    enum
3254
      {
3255
      kResetCode = 256,
3256
      kEndCode   = 257,
3257
      kTableSize = 4096
3258
      };
3259
3260
    // Compressor nodes have two son pointers.  The low order bit of
3261
    // the next code determines which pointer is used.  This cuts the
3262
    // number of nodes searched for the next code by two on average.
3263
3264
    struct LZWCompressorNode
3265
      {
3266
      int16 final;
3267
      int16 son0;
3268
      int16 son1;
3269
      int16 brother;
3270
      };
3271
      
3272
    dng_memory_data fBuffer;
3273
3274
    LZWCompressorNode *fTable;
3275
    
3276
    uint8 *fDstPtr;
3277
    
3278
    int32 fDstCount;
3279
    
3280
    int32 fBitOffset;
3281
3282
    int32 fNextCode;
3283
    
3284
    int32 fCodeSize;
3285
    
3286
  public:
3287
  
3288
    dng_lzw_compressor ();
3289
    
3290
    void Compress (const uint8 *sPtr,
3291
             uint8 *dPtr,
3292
             uint32 sCount,
3293
             uint32 &dCount);
3294
 
3295
  private:
3296
    
3297
    void InitTable ();
3298
  
3299
    int32 SearchTable (int32 w, int32 k) const
3300
1.63G
      {
3301
      
3302
1.63G
      DNG_ASSERT ((w >= 0) && (w <= kTableSize),
3303
1.63G
            "Bad w value in dng_lzw_compressor::SearchTable");
3304
      
3305
1.63G
      int32 son0 = fTable [w] . son0;
3306
1.63G
      int32 son1 = fTable [w] . son1;
3307
      
3308
      // Branchless version of:
3309
      // int32 code = (k & 1) ? son1 : son0;
3310
      
3311
1.63G
      int32 code = son0 + ((-((int32) (k & 1))) & (son1 - son0));
3312
3313
3.98G
      while (code > 0 && fTable [code].final != k)
3314
2.34G
        {
3315
2.34G
        code = fTable [code].brother;
3316
2.34G
        }
3317
3318
1.63G
      return code;
3319
3320
1.63G
      }
3321
3322
    void AddTable (int32 w, int32 k);
3323
    
3324
    void PutCodeWord (int32 code);
3325
3326
    // Hidden copy constructor and assignment operator.
3327
  
3328
    dng_lzw_compressor (const dng_lzw_compressor &compressor);
3329
    
3330
    dng_lzw_compressor & operator= (const dng_lzw_compressor &compressor);
3331
3332
  };
3333
3334
/******************************************************************************/
3335
3336
dng_lzw_compressor::dng_lzw_compressor ()
3337
3338
17.1k
  : fBuffer    ()
3339
17.1k
  , fTable     (NULL)
3340
17.1k
  , fDstPtr    (NULL)
3341
17.1k
  , fDstCount  (0)
3342
17.1k
  , fBitOffset (0)
3343
17.1k
  , fNextCode  (0)
3344
17.1k
  , fCodeSize  (0)
3345
  
3346
17.1k
  {
3347
  
3348
17.1k
  fBuffer.Allocate (kTableSize, sizeof (LZWCompressorNode));
3349
  
3350
17.1k
  fTable = (LZWCompressorNode *) fBuffer.Buffer ();
3351
  
3352
17.1k
  }
3353
3354
/******************************************************************************/
3355
3356
void dng_lzw_compressor::InitTable ()
3357
149k
  {
3358
3359
149k
  fCodeSize = 9;
3360
3361
149k
  fNextCode = 258;
3362
    
3363
149k
  LZWCompressorNode *node = &fTable [0];
3364
  
3365
38.4M
  for (int32 code = 0; code < 256; ++code)
3366
38.2M
    {
3367
    
3368
38.2M
    node->final   = (int16) code;
3369
38.2M
    node->son0    = -1;
3370
38.2M
    node->son1    = -1;
3371
38.2M
    node->brother = -1;
3372
    
3373
38.2M
    node++;
3374
    
3375
38.2M
    }
3376
    
3377
149k
  }
3378
3379
/******************************************************************************/
3380
3381
void dng_lzw_compressor::AddTable (int32 w, int32 k)
3382
526M
  {
3383
  
3384
526M
  DNG_ASSERT ((w >= 0) && (w <= kTableSize),
3385
526M
        "Bad w value in dng_lzw_compressor::AddTable");
3386
3387
526M
  LZWCompressorNode *node = &fTable [w];
3388
3389
526M
  int32 nextCode = fNextCode;
3390
3391
526M
  DNG_ASSERT ((nextCode >= 0) && (nextCode <= kTableSize),
3392
526M
        "Bad fNextCode value in dng_lzw_compressor::AddTable");
3393
  
3394
526M
  LZWCompressorNode *node2 = &fTable [nextCode];
3395
  
3396
526M
  fNextCode++;
3397
  
3398
526M
  int32 oldSon;
3399
  
3400
526M
  if( k&1 )
3401
256M
    {
3402
256M
    oldSon = node->son1;
3403
256M
    node->son1 = (int16) nextCode;
3404
256M
    }
3405
269M
  else
3406
269M
    {
3407
269M
    oldSon = node->son0;
3408
269M
    node->son0 = (int16) nextCode;
3409
269M
    }
3410
  
3411
526M
  node2->final   = (int16) k;
3412
526M
  node2->son0    = -1;
3413
526M
  node2->son1    = -1;
3414
526M
  node2->brother = (int16) oldSon;
3415
  
3416
526M
  if (nextCode == (1 << fCodeSize) - 1)
3417
422k
    {
3418
422k
    if (fCodeSize != 12)
3419
422k
      fCodeSize++;
3420
422k
    }
3421
    
3422
526M
  }
3423
3424
/******************************************************************************/
3425
3426
void dng_lzw_compressor::PutCodeWord (int32 code)
3427
526M
  {
3428
  
3429
526M
  int32 bit = (int32) (fBitOffset & 7);
3430
  
3431
526M
  int32 offset1 = fBitOffset >> 3;
3432
526M
  int32 offset2 = (fBitOffset + fCodeSize - 1) >> 3;
3433
    
3434
526M
  int32 shift1 = (fCodeSize + bit) -  8;
3435
526M
  int32 shift2 = (fCodeSize + bit) - 16;
3436
  
3437
526M
  uint8 byte1 = (uint8) (code >> shift1);
3438
  
3439
526M
  uint8 *dstPtr1 = fDstPtr + offset1;
3440
526M
  uint8 *dstPtr3 = fDstPtr + offset2;
3441
  
3442
526M
  if (offset1 + 1 == offset2)
3443
335M
    {
3444
    
3445
335M
    uint8 byte2 = (uint8) (code << (-shift2));
3446
    
3447
335M
    if (bit)
3448
313M
      *dstPtr1 |= byte1;
3449
22.3M
    else
3450
22.3M
      *dstPtr1 = byte1;
3451
    
3452
335M
    *dstPtr3 = byte2;
3453
    
3454
335M
    }
3455
3456
191M
  else
3457
191M
    {
3458
    
3459
191M
    int32 shift3 = (fCodeSize + bit) - 24;
3460
    
3461
191M
    uint8 byte2 = (uint8) (code >> shift2);
3462
191M
    uint8 byte3 = (uint8) (code << (-shift3));
3463
    
3464
191M
    uint8 *dstPtr2 = fDstPtr + (offset1 + 1);
3465
    
3466
191M
    if (bit)
3467
191M
      *dstPtr1 |= byte1;
3468
0
    else
3469
0
      *dstPtr1 = byte1;
3470
    
3471
191M
    *dstPtr2 = byte2;
3472
    
3473
191M
    *dstPtr3 = byte3;
3474
    
3475
191M
    }
3476
    
3477
526M
  fBitOffset += fCodeSize;
3478
  
3479
526M
  }
3480
3481
/******************************************************************************/
3482
3483
void dng_lzw_compressor::Compress (const uint8 *sPtr,
3484
                       uint8 *dPtr,
3485
                       uint32 sCount,
3486
                       uint32 &dCount)
3487
17.1k
  {
3488
  
3489
17.1k
  fDstPtr = dPtr;
3490
  
3491
17.1k
  fBitOffset = 0;
3492
  
3493
17.1k
  InitTable ();
3494
  
3495
17.1k
  PutCodeWord (kResetCode);
3496
  
3497
17.1k
  int32 code = -1;
3498
  
3499
17.1k
  int32 pixel;
3500
  
3501
17.1k
  if (sCount > 0)
3502
17.1k
    {
3503
    
3504
17.1k
    pixel = *sPtr;
3505
17.1k
    sPtr = sPtr + 1;
3506
17.1k
    code = pixel;
3507
3508
17.1k
    sCount--;
3509
3510
1.63G
    while (sCount--)
3511
1.63G
      {
3512
3513
1.63G
      pixel = *sPtr;
3514
1.63G
      sPtr = sPtr + 1;
3515
      
3516
1.63G
      int32 newCode = SearchTable (code, pixel);
3517
      
3518
1.63G
      if (newCode == -1)
3519
526M
        {
3520
        
3521
526M
        PutCodeWord (code);
3522
        
3523
526M
        if (fNextCode < 4093)
3524
526M
          {
3525
526M
          AddTable (code, pixel);
3526
526M
          }
3527
132k
        else
3528
132k
          {
3529
132k
          PutCodeWord (kResetCode);
3530
132k
          InitTable ();
3531
132k
          }
3532
          
3533
526M
        code = pixel;
3534
        
3535
526M
        }
3536
        
3537
1.10G
      else
3538
1.10G
        code = newCode;
3539
        
3540
1.63G
      }
3541
    
3542
17.1k
    }
3543
    
3544
17.1k
  if (code != -1)
3545
17.1k
    {
3546
17.1k
    PutCodeWord (code);
3547
17.1k
    AddTable (code, 0);
3548
17.1k
    }
3549
    
3550
17.1k
  PutCodeWord (kEndCode);
3551
3552
17.1k
  dCount = (fBitOffset + 7) >> 3;
3553
3554
17.1k
  }
3555
3556
/*****************************************************************************/
3557
3558
#if qDNGUseLibJPEG
3559
3560
/*****************************************************************************/
3561
3562
static void dng_error_exit (j_common_ptr cinfo)
3563
0
  {
3564
  
3565
  // Output message.
3566
  
3567
0
  (*cinfo->err->output_message) (cinfo);
3568
  
3569
  // Convert to a dng_exception.
3570
3571
0
  switch (cinfo->err->msg_code)
3572
0
    {
3573
    
3574
0
    case JERR_OUT_OF_MEMORY:
3575
0
      {
3576
0
      ThrowMemoryFull ();
3577
0
      break;
3578
0
      }
3579
      
3580
0
    default:
3581
0
      {
3582
0
      ThrowBadFormat ();
3583
0
      }
3584
      
3585
0
    }
3586
      
3587
0
  }
3588
3589
/*****************************************************************************/
3590
3591
static void dng_output_message (j_common_ptr cinfo)
3592
0
  {
3593
  
3594
  // Format message to string.
3595
  
3596
0
  char buffer [JMSG_LENGTH_MAX];
3597
3598
0
  (*cinfo->err->format_message) (cinfo, buffer);
3599
  
3600
  // Report the libjpeg message as a warning.
3601
  
3602
0
  ReportWarning ("libjpeg", buffer);
3603
3604
0
  }
3605
3606
/*****************************************************************************/
3607
3608
struct dng_jpeg_stream_dest
3609
  {
3610
  
3611
  struct jpeg_destination_mgr pub;
3612
  
3613
  dng_stream *fStream;
3614
  
3615
  uint8 fBuffer [4096];
3616
  
3617
  };
3618
3619
/*****************************************************************************/
3620
3621
static void dng_init_destination (j_compress_ptr cinfo)
3622
18.9k
  {
3623
  
3624
18.9k
  dng_jpeg_stream_dest *dest = (dng_jpeg_stream_dest *) cinfo->dest;
3625
3626
18.9k
  dest->pub.next_output_byte = dest->fBuffer;
3627
18.9k
  dest->pub.free_in_buffer   = sizeof (dest->fBuffer);
3628
  
3629
18.9k
  }
3630
3631
/*****************************************************************************/
3632
3633
static boolean dng_empty_output_buffer (j_compress_ptr cinfo)
3634
24.4k
  {
3635
  
3636
24.4k
  dng_jpeg_stream_dest *dest = (dng_jpeg_stream_dest *) cinfo->dest;
3637
  
3638
24.4k
  dest->fStream->Put (dest->fBuffer, sizeof (dest->fBuffer));
3639
3640
24.4k
  dest->pub.next_output_byte = dest->fBuffer;
3641
24.4k
  dest->pub.free_in_buffer   = sizeof (dest->fBuffer);
3642
3643
24.4k
  return TRUE;
3644
  
3645
24.4k
  }
3646
3647
/*****************************************************************************/
3648
3649
static void dng_term_destination (j_compress_ptr cinfo)
3650
18.9k
  {
3651
  
3652
18.9k
  dng_jpeg_stream_dest *dest = (dng_jpeg_stream_dest *) cinfo->dest;
3653
  
3654
18.9k
  uint32 datacount = sizeof (dest->fBuffer) -
3655
18.9k
             (uint32) dest->pub.free_in_buffer;
3656
  
3657
18.9k
  if (datacount)
3658
18.9k
    {
3659
18.9k
    dest->fStream->Put (dest->fBuffer, datacount);
3660
18.9k
    }
3661
3662
18.9k
  }
3663
3664
/*****************************************************************************/
3665
3666
static void jpeg_set_adobe_quality (struct jpeg_compress_struct *cinfo,
3667
                  int32 quality)
3668
18.9k
  {
3669
  
3670
  // If out of range, map to default.
3671
    
3672
18.9k
  if (quality < 0 || quality > 12)
3673
0
    {
3674
0
    quality = 10;
3675
0
    }
3676
    
3677
  // Adobe turns off chroma downsampling at high quality levels.
3678
  
3679
18.9k
  bool useChromaDownsampling = (quality <= 6);
3680
    
3681
  // Approximate mapping from Adobe quality levels to LibJPEG levels.
3682
  
3683
18.9k
  const int kLibJPEGQuality [13] =
3684
18.9k
    {
3685
18.9k
    5, 11, 23, 34, 46, 63, 76, 77, 86, 90, 94, 97, 99
3686
18.9k
    };
3687
    
3688
18.9k
  quality = kLibJPEGQuality [quality];
3689
  
3690
18.9k
  jpeg_set_quality (cinfo, quality, TRUE);
3691
  
3692
  // LibJPEG defaults to always using chroma downsampling.  Turn if off
3693
  // if we need it off to match Adobe.
3694
  
3695
18.9k
  if (!useChromaDownsampling)
3696
17.5k
    {
3697
    
3698
17.5k
    cinfo->comp_info [0].h_samp_factor = 1;
3699
17.5k
    cinfo->comp_info [0].h_samp_factor = 1;
3700
    
3701
17.5k
    }
3702
        
3703
18.9k
  }
3704
3705
/*****************************************************************************/
3706
3707
#endif
3708
3709
/*****************************************************************************/
3710
3711
void dng_image_writer::WriteData (dng_host &host,
3712
                  const dng_ifd &ifd,
3713
                      dng_stream &stream,
3714
                      dng_pixel_buffer &buffer,
3715
                  AutoPtr<dng_memory_block> &compressedBuffer)
3716
358k
  {
3717
  
3718
358k
  switch (ifd.fCompression)
3719
358k
    {
3720
    
3721
169k
    case ccUncompressed:
3722
169k
      {
3723
      
3724
      // Special case support for when we save to 8-bits from
3725
      // 16-bit data.
3726
      
3727
169k
      if (ifd.fBitsPerSample [0] == 8 && buffer.fPixelType == ttShort)
3728
0
        {
3729
        
3730
0
        uint32 count = buffer.fRowStep *
3731
0
                 buffer.fArea.H ();
3732
                 
3733
0
        const uint16 *sPtr = (const uint16 *) buffer.fData;
3734
        
3735
0
        for (uint32 j = 0; j < count; j++)
3736
0
          {
3737
          
3738
0
          stream.Put_uint8 ((uint8) sPtr [j]);
3739
          
3740
0
          }
3741
        
3742
0
        }
3743
        
3744
169k
      else
3745
169k
        {
3746
  
3747
        // Swap bytes if required.
3748
        
3749
169k
        if (stream.SwapBytes ())
3750
0
          {
3751
          
3752
0
          ByteSwapBuffer (host, buffer);
3753
                    
3754
0
          }
3755
      
3756
        // Write the bytes.
3757
        
3758
169k
        stream.Put (buffer.fData, buffer.fRowStep *
3759
169k
                      buffer.fArea.H () *
3760
169k
                      buffer.fPixelSize);
3761
                      
3762
169k
        }
3763
      
3764
169k
      break;
3765
      
3766
0
      }
3767
      
3768
17.1k
    case ccLZW:
3769
32.8k
    case ccDeflate:
3770
32.8k
      {
3771
      
3772
      // Both these compression algorithms are byte based.  The floating
3773
      // point predictor already does byte ordering, so don't ever swap
3774
      // when using it.
3775
      
3776
32.8k
      if (stream.SwapBytes () && ifd.fPredictor != cpFloatingPoint)
3777
0
        {
3778
        
3779
0
        ByteSwapBuffer (host,
3780
0
                buffer);
3781
                
3782
0
        }
3783
      
3784
      // Run the compression algorithm.
3785
        
3786
32.8k
      uint32 sBytes = buffer.fRowStep *
3787
32.8k
              buffer.fArea.H () *
3788
32.8k
              buffer.fPixelSize;
3789
        
3790
32.8k
      uint8 *sBuffer = (uint8 *) buffer.fData;
3791
        
3792
32.8k
      uint32 dBytes = 0;
3793
        
3794
32.8k
      uint8 *dBuffer = compressedBuffer->Buffer_uint8 ();
3795
      
3796
32.8k
      if (ifd.fCompression == ccLZW)
3797
17.1k
        {
3798
        
3799
17.1k
        dng_lzw_compressor lzwCompressor;
3800
        
3801
17.1k
        lzwCompressor.Compress (sBuffer,
3802
17.1k
                    dBuffer,
3803
17.1k
                    sBytes,
3804
17.1k
                    dBytes);
3805
                    
3806
17.1k
        }
3807
        
3808
15.7k
      else
3809
15.7k
        {
3810
        
3811
15.7k
        uLongf dCount = compressedBuffer->LogicalSize ();
3812
        
3813
15.7k
        int32 level = Z_DEFAULT_COMPRESSION;
3814
        
3815
15.7k
        if (ifd.fCompressionQuality >= Z_BEST_SPEED &&
3816
0
          ifd.fCompressionQuality <= Z_BEST_COMPRESSION)
3817
0
          {
3818
          
3819
0
          level = ifd.fCompressionQuality;
3820
          
3821
0
          }
3822
        
3823
15.7k
        int zResult = ::compress2 (dBuffer,
3824
15.7k
                       &dCount,
3825
15.7k
                       sBuffer,
3826
15.7k
                       sBytes,
3827
15.7k
                       level);
3828
                      
3829
15.7k
        if (zResult != Z_OK)
3830
0
          {
3831
          
3832
0
          ThrowMemoryFull ();
3833
          
3834
0
          }
3835
3836
15.7k
        dBytes = (uint32) dCount;
3837
        
3838
15.7k
        }
3839
                    
3840
32.8k
      if (dBytes > compressedBuffer->LogicalSize ())
3841
0
        {
3842
        
3843
0
        DNG_REPORT ("Compression output buffer overflow");
3844
        
3845
0
        ThrowProgramError ();
3846
        
3847
0
        }
3848
                    
3849
32.8k
      stream.Put (dBuffer, dBytes);
3850
        
3851
32.8k
      return;
3852
3853
17.1k
      }
3854
      
3855
130k
    case ccJPEG:
3856
130k
      {
3857
      
3858
130k
      dng_pixel_buffer temp (buffer);
3859
        
3860
130k
      if (buffer.fPixelType == ttByte)
3861
618
        {
3862
        
3863
        // The lossless JPEG encoder needs 16-bit data, so if we are
3864
        // are saving 8 bit data, we need to pad it out to 16-bits.
3865
        
3866
618
        temp.fData = compressedBuffer->Buffer ();
3867
        
3868
618
        temp.fPixelType = ttShort;
3869
618
        temp.fPixelSize = 2;
3870
        
3871
618
        temp.CopyArea (buffer,
3872
618
                 buffer.fArea,
3873
618
                 buffer.fPlane,
3874
618
                 buffer.fPlanes);
3875
        
3876
618
        }
3877
        
3878
130k
      EncodeLosslessJPEG ((const uint16 *) temp.fData,
3879
130k
                temp.fArea.H (),
3880
130k
                temp.fArea.W (),
3881
130k
                temp.fPlanes,
3882
130k
                ifd.fBitsPerSample [0],
3883
130k
                temp.fRowStep,
3884
130k
                temp.fColStep,
3885
130k
                stream);
3886
                    
3887
130k
      break;
3888
      
3889
17.1k
      }
3890
      
3891
0
    #if qDNGUseLibJPEG
3892
    
3893
15.3k
    case ccLossyJPEG:
3894
15.3k
      {
3895
      
3896
15.3k
      struct jpeg_compress_struct cinfo;
3897
  
3898
      // Setup the error manager.
3899
      
3900
15.3k
      struct jpeg_error_mgr jerr;
3901
3902
15.3k
      cinfo.err = jpeg_std_error (&jerr);
3903
      
3904
15.3k
      jerr.error_exit     = dng_error_exit;
3905
15.3k
      jerr.output_message = dng_output_message;
3906
  
3907
15.3k
      try
3908
15.3k
        {
3909
        
3910
        // Create the compression context.
3911
3912
15.3k
        jpeg_create_compress (&cinfo);
3913
        
3914
        // Setup the destination manager to write to stream.
3915
        
3916
15.3k
        dng_jpeg_stream_dest dest;
3917
        
3918
15.3k
        dest.fStream = &stream;
3919
        
3920
15.3k
        dest.pub.init_destination    = dng_init_destination;
3921
15.3k
        dest.pub.empty_output_buffer = dng_empty_output_buffer;
3922
15.3k
        dest.pub.term_destination    = dng_term_destination;
3923
        
3924
15.3k
        cinfo.dest = &dest.pub;
3925
        
3926
        // Setup basic image info.
3927
        
3928
15.3k
        cinfo.image_width      = buffer.fArea.W ();
3929
15.3k
        cinfo.image_height     = buffer.fArea.H ();
3930
15.3k
        cinfo.input_components = buffer.fPlanes;
3931
        
3932
15.3k
        switch (buffer.fPlanes)
3933
15.3k
          {
3934
          
3935
9.98k
          case 1:
3936
9.98k
            cinfo.in_color_space = JCS_GRAYSCALE;
3937
9.98k
            break;
3938
            
3939
4.41k
          case 3:
3940
4.41k
            cinfo.in_color_space = JCS_RGB;
3941
4.41k
            break;
3942
            
3943
960
          case 4:
3944
960
            cinfo.in_color_space = JCS_CMYK;
3945
960
            break;
3946
            
3947
19
          default:
3948
19
            ThrowProgramError ();
3949
            
3950
15.3k
          }
3951
          
3952
        // Setup the compression parameters.
3953
3954
15.3k
        jpeg_set_defaults (&cinfo);
3955
        
3956
15.3k
        jpeg_set_adobe_quality (&cinfo, ifd.fCompressionQuality);
3957
        
3958
        // Write the JPEG header.
3959
        
3960
15.3k
        jpeg_start_compress (&cinfo, TRUE);
3961
        
3962
        // Write the scanlines.
3963
        
3964
3.37M
        for (int32 row = buffer.fArea.t; row < buffer.fArea.b; row++)
3965
3.35M
          {
3966
          
3967
3.35M
          uint8 *sampArray [1];
3968
    
3969
3.35M
          sampArray [0] = buffer.DirtyPixel_uint8 (row,
3970
3.35M
                               buffer.fArea.l,
3971
3.35M
                               0);
3972
3973
3.35M
          jpeg_write_scanlines (&cinfo, sampArray, 1);
3974
          
3975
3.35M
          }
3976
3977
        // Cleanup.
3978
          
3979
15.3k
        jpeg_finish_compress (&cinfo);
3980
3981
15.3k
        jpeg_destroy_compress (&cinfo);
3982
          
3983
15.3k
        }
3984
        
3985
15.3k
      catch (...)
3986
15.3k
        {
3987
        
3988
19
        jpeg_destroy_compress (&cinfo);
3989
        
3990
19
        throw;
3991
        
3992
19
        }
3993
        
3994
15.3k
      return;
3995
      
3996
15.3k
      }
3997
      
3998
0
    #endif
3999
      
4000
9.71k
    default:
4001
9.71k
      {
4002
      
4003
9.71k
      ThrowProgramError ();
4004
      
4005
9.71k
      }
4006
      
4007
358k
    }
4008
  
4009
358k
  }
4010
                
4011
/******************************************************************************/
4012
4013
void dng_image_writer::EncodeJPEGPreview (dng_host &host,
4014
                      const dng_image &image,
4015
                      dng_jpeg_preview &preview,
4016
                      int32 quality)
4017
3.56k
  {
4018
  
4019
3.56k
  #if qDNGUseLibJPEG
4020
    
4021
3.56k
  dng_memory_stream stream (host.Allocator ());
4022
  
4023
3.56k
  struct jpeg_compress_struct cinfo;
4024
4025
  // Setup the error manager.
4026
  
4027
3.56k
  struct jpeg_error_mgr jerr;
4028
4029
3.56k
  cinfo.err = jpeg_std_error (&jerr);
4030
  
4031
3.56k
  jerr.error_exit     = dng_error_exit;
4032
3.56k
  jerr.output_message = dng_output_message;
4033
4034
3.56k
  try
4035
3.56k
    {
4036
    
4037
    // Create the compression context.
4038
4039
3.56k
    jpeg_create_compress (&cinfo);
4040
    
4041
    // Setup the destination manager to write to stream.
4042
    
4043
3.56k
    dng_jpeg_stream_dest dest;
4044
    
4045
3.56k
    dest.fStream = &stream;
4046
    
4047
3.56k
    dest.pub.init_destination    = dng_init_destination;
4048
3.56k
    dest.pub.empty_output_buffer = dng_empty_output_buffer;
4049
3.56k
    dest.pub.term_destination    = dng_term_destination;
4050
    
4051
3.56k
    cinfo.dest = &dest.pub;
4052
    
4053
    // Setup basic image info.
4054
    
4055
3.56k
    cinfo.image_width      = image.Bounds ().W ();
4056
3.56k
    cinfo.image_height     = image.Bounds ().H ();
4057
3.56k
    cinfo.input_components = image.Planes ();
4058
    
4059
3.56k
    switch (image.Planes ())
4060
3.56k
      {
4061
      
4062
2.71k
      case 1:
4063
2.71k
        cinfo.in_color_space = JCS_GRAYSCALE;
4064
2.71k
        break;
4065
        
4066
850
      case 3:
4067
850
        cinfo.in_color_space = JCS_RGB;
4068
850
        break;
4069
        
4070
0
      default:
4071
0
        ThrowProgramError ();
4072
        
4073
3.56k
      }
4074
      
4075
    // Setup the compression parameters.
4076
4077
3.56k
    jpeg_set_defaults (&cinfo);
4078
    
4079
3.56k
    jpeg_set_adobe_quality (&cinfo, quality);
4080
    
4081
    // Find some preview information based on the compression settings.
4082
    
4083
3.56k
    preview.fPreviewSize = image.Size ();
4084
  
4085
3.56k
    if (image.Planes () == 1)
4086
2.71k
      {
4087
      
4088
2.71k
      preview.fPhotometricInterpretation = piBlackIsZero;
4089
      
4090
2.71k
      }
4091
      
4092
850
    else
4093
850
      {
4094
      
4095
850
      preview.fPhotometricInterpretation = piYCbCr;
4096
      
4097
850
      preview.fYCbCrSubSampling.h  = cinfo.comp_info [0].h_samp_factor;
4098
850
      preview.fYCbCrSubSampling.v  = cinfo.comp_info [0].v_samp_factor;
4099
      
4100
850
      }
4101
    
4102
    // Write the JPEG header.
4103
    
4104
3.56k
    jpeg_start_compress (&cinfo, TRUE);
4105
    
4106
    // Write the scanlines.
4107
    
4108
3.56k
    dng_pixel_buffer buffer (image.Bounds (), 0, image.Planes (), ttByte,
4109
3.56k
       pcInterleaved, NULL);
4110
    
4111
3.56k
    AutoPtr<dng_memory_block> bufferData (host.Allocate (buffer.fRowStep));
4112
    
4113
3.56k
    buffer.fData = bufferData->Buffer ();
4114
    
4115
842k
    for (uint32 row = 0; row < cinfo.image_height; row++)
4116
838k
      {
4117
      
4118
838k
      buffer.fArea.t = row;
4119
838k
      buffer.fArea.b = row + 1;
4120
      
4121
838k
      image.Get (buffer);
4122
      
4123
838k
      uint8 *sampArray [1];
4124
4125
838k
      sampArray [0] = buffer.DirtyPixel_uint8 (row,
4126
838k
                           buffer.fArea.l,
4127
838k
                           0);
4128
4129
838k
      jpeg_write_scanlines (&cinfo, sampArray, 1);
4130
      
4131
838k
      }
4132
4133
    // Cleanup.
4134
      
4135
3.56k
    jpeg_finish_compress (&cinfo);
4136
4137
3.56k
    jpeg_destroy_compress (&cinfo);
4138
      
4139
3.56k
    }
4140
    
4141
3.56k
  catch (...)
4142
3.56k
    {
4143
    
4144
0
    jpeg_destroy_compress (&cinfo);
4145
    
4146
0
    throw;
4147
    
4148
0
    }
4149
           
4150
3.56k
  preview.fCompressedData.Reset (stream.AsMemoryBlock (host.Allocator ()));
4151
4152
  #else
4153
  
4154
  (void) host;
4155
  (void) image;
4156
  (void) preview;
4157
  (void) quality;
4158
  
4159
  ThrowProgramError ("No JPEG encoder");
4160
  
4161
  #endif
4162
    
4163
3.56k
  }
4164
                
4165
/*****************************************************************************/
4166
4167
void dng_image_writer::WriteTile (dng_host &host,
4168
                      const dng_ifd &ifd,
4169
                      dng_stream &stream,
4170
                      const dng_image &image,
4171
                      const dng_rect &tileArea,
4172
                      uint32 fakeChannels,
4173
                  AutoPtr<dng_memory_block> &compressedBuffer,
4174
                  AutoPtr<dng_memory_block> &uncompressedBuffer,
4175
                  AutoPtr<dng_memory_block> &subTileBlockBuffer,
4176
                  AutoPtr<dng_memory_block> &tempBuffer)
4177
361k
  {
4178
  
4179
  // Create pixel buffer to hold uncompressed tile.
4180
  
4181
361k
  dng_pixel_buffer buffer (tileArea, 0, ifd.fSamplesPerPixel,
4182
361k
     image.PixelType(), pcInterleaved, uncompressedBuffer->Buffer());
4183
  
4184
  // Get the uncompressed data.
4185
  
4186
361k
  image.Get (buffer, dng_image::edge_zero);
4187
  
4188
  // Deal with sub-tile blocks.
4189
  
4190
361k
  if (ifd.fSubTileBlockRows > 1)
4191
0
    {
4192
    
4193
0
    ReorderSubTileBlocks (ifd,
4194
0
                buffer,
4195
0
                uncompressedBuffer,
4196
0
                subTileBlockBuffer);
4197
    
4198
0
    }
4199
    
4200
  // Floating point depth conversion.
4201
  
4202
361k
  if (ifd.fSampleFormat [0] == sfFloatingPoint)
4203
52.5k
    {
4204
    
4205
52.5k
    if (ifd.fBitsPerSample [0] == 16)
4206
7.74k
      {
4207
      
4208
7.74k
      uint32 *srcPtr = (uint32 *) buffer.fData;
4209
7.74k
      uint16 *dstPtr = (uint16 *) buffer.fData;
4210
      
4211
7.74k
      uint32 pixels = tileArea.W () * tileArea.H () * buffer.fPlanes;
4212
      
4213
191M
      for (uint32 j = 0; j < pixels; j++)
4214
191M
        {
4215
        
4216
191M
        dstPtr [j] = DNG_FloatToHalf (srcPtr [j]);
4217
        
4218
191M
        }
4219
        
4220
7.74k
      buffer.fPixelSize = 2;
4221
      
4222
7.74k
      }
4223
      
4224
52.5k
    if (ifd.fBitsPerSample [0] == 24)
4225
835
      {
4226
      
4227
835
      uint32 *srcPtr = (uint32 *) buffer.fData;
4228
835
      uint8  *dstPtr = (uint8  *) buffer.fData;
4229
      
4230
835
      uint32 pixels = tileArea.W () * tileArea.H () * buffer.fPlanes;
4231
      
4232
835
      if (stream.BigEndian () || ifd.fPredictor == cpFloatingPoint   ||
4233
384
                     ifd.fPredictor == cpFloatingPointX2 ||
4234
2
                     ifd.fPredictor == cpFloatingPointX4)
4235
835
        {
4236
      
4237
5.95M
        for (uint32 j = 0; j < pixels; j++)
4238
5.95M
          {
4239
          
4240
5.95M
          DNG_FloatToFP24 (srcPtr [j], dstPtr);
4241
          
4242
5.95M
          dstPtr += 3;
4243
          
4244
5.95M
          }
4245
          
4246
835
        }
4247
        
4248
0
      else
4249
0
        {
4250
      
4251
0
        for (uint32 j = 0; j < pixels; j++)
4252
0
          {
4253
          
4254
0
          uint8 output [3];
4255
          
4256
0
          DNG_FloatToFP24 (srcPtr [j], output);
4257
          
4258
0
          dstPtr [0] = output [2];
4259
0
          dstPtr [1] = output [1];
4260
0
          dstPtr [2] = output [0];
4261
          
4262
0
          dstPtr += 3;
4263
          
4264
0
          }
4265
          
4266
0
        }
4267
        
4268
835
      buffer.fPixelSize = 3;
4269
      
4270
835
      }
4271
    
4272
52.5k
    }
4273
  
4274
  // Run predictor.
4275
  
4276
361k
  EncodePredictor (host,
4277
361k
           ifd,
4278
361k
           buffer,
4279
361k
           tempBuffer);
4280
    
4281
  // Adjust pixel buffer for fake channels.
4282
  
4283
361k
  if (fakeChannels > 1)
4284
10.4k
    {
4285
    
4286
10.4k
    buffer.fPlanes  *= fakeChannels;
4287
10.4k
    buffer.fColStep *= fakeChannels;
4288
    
4289
10.4k
    buffer.fArea.r = buffer.fArea.l + (buffer.fArea.W () / fakeChannels);
4290
    
4291
10.4k
    }
4292
    
4293
  // Compress (if required) and write out the data.
4294
  
4295
361k
  WriteData (host,
4296
361k
         ifd,
4297
361k
         stream,
4298
361k
         buffer,
4299
361k
         compressedBuffer);
4300
         
4301
361k
  }
4302
4303
/*****************************************************************************/
4304
4305
class dng_write_tiles_task : public dng_area_task
4306
  {
4307
  
4308
  private:
4309
  
4310
    dng_image_writer &fImageWriter;
4311
    
4312
    dng_host &fHost;
4313
    
4314
    const dng_ifd &fIFD;
4315
    
4316
    dng_basic_tag_set &fBasic;
4317
    
4318
    dng_stream &fStream;
4319
    
4320
    const dng_image &fImage;
4321
    
4322
    uint32 fFakeChannels;
4323
    
4324
    uint32 fTilesDown;
4325
    
4326
    uint32 fTilesAcross;
4327
    
4328
    uint32 fCompressedSize;
4329
    
4330
    uint32 fUncompressedSize;
4331
    
4332
    dng_mutex fMutex1;
4333
    
4334
    uint32 fNextTileIndex;
4335
    
4336
    dng_mutex fMutex2;
4337
    
4338
    dng_condition fCondition;
4339
    
4340
    bool fTaskFailed;
4341
4342
    uint32 fWriteTileIndex;
4343
    
4344
  public:
4345
  
4346
    dng_write_tiles_task (dng_image_writer &imageWriter,
4347
                dng_host &host,
4348
                const dng_ifd &ifd,
4349
                dng_basic_tag_set &basic,
4350
                dng_stream &stream,
4351
                const dng_image &image,
4352
                uint32 fakeChannels,
4353
                uint32 tilesDown,
4354
                uint32 tilesAcross,
4355
                uint32 compressedSize,
4356
                uint32 uncompressedSize)
4357
    
4358
0
      : fImageWriter      (imageWriter)
4359
0
      , fHost         (host)
4360
0
      , fIFD          (ifd)
4361
0
      , fBasic        (basic)
4362
0
      , fStream         (stream)
4363
0
      , fImage          (image)
4364
0
      , fFakeChannels   (fakeChannels)
4365
0
      , fTilesDown        (tilesDown)
4366
0
      , fTilesAcross    (tilesAcross)
4367
0
      , fCompressedSize   (compressedSize)
4368
0
      , fUncompressedSize (uncompressedSize)
4369
0
      , fMutex1       ("dng_write_tiles_task_1")
4370
0
      , fNextTileIndex    (0)
4371
0
      , fMutex2       ("dng_write_tiles_task_2")
4372
0
      , fCondition      ()
4373
0
      , fTaskFailed     (false)
4374
0
      , fWriteTileIndex   (0)
4375
      
4376
0
      {
4377
      
4378
0
      fMinTaskArea = 16 * 16;
4379
0
      fUnitCell    = dng_point (16, 16);
4380
0
      fMaxTileSize = dng_point (16, 16);
4381
      
4382
0
      }
4383
  
4384
    void Process (uint32 /* threadIndex */,
4385
            const dng_rect & /* tile */,
4386
            dng_abort_sniffer *sniffer)
4387
0
      {
4388
      
4389
0
      try
4390
0
        {
4391
      
4392
0
        AutoPtr<dng_memory_block> compressedBuffer;
4393
0
        AutoPtr<dng_memory_block> uncompressedBuffer;
4394
0
        AutoPtr<dng_memory_block> subTileBlockBuffer;
4395
0
        AutoPtr<dng_memory_block> tempBuffer;
4396
        
4397
0
        if (fCompressedSize)
4398
0
          {
4399
0
          compressedBuffer.Reset (fHost.Allocate (fCompressedSize));
4400
0
          }
4401
        
4402
0
        if (fUncompressedSize)
4403
0
          {
4404
0
          uncompressedBuffer.Reset (fHost.Allocate (fUncompressedSize));
4405
0
          }
4406
        
4407
0
        if (fIFD.fSubTileBlockRows > 1 && fUncompressedSize)
4408
0
          {
4409
0
          subTileBlockBuffer.Reset (fHost.Allocate (fUncompressedSize));
4410
0
          }
4411
        
4412
0
        while (true)
4413
0
          {
4414
          
4415
          // Find tile index to compress.
4416
          
4417
0
          uint32 tileIndex;
4418
          
4419
0
            {
4420
            
4421
0
            dng_lock_mutex lock (&fMutex1);
4422
            
4423
0
            if (fNextTileIndex == fTilesDown * fTilesAcross)
4424
0
              {
4425
0
              return;
4426
0
              }
4427
              
4428
0
            tileIndex = fNextTileIndex++;
4429
            
4430
0
            }
4431
            
4432
0
          dng_abort_sniffer::SniffForAbort (sniffer);
4433
          
4434
          // Compress tile.
4435
          
4436
0
          uint32 rowIndex = tileIndex / fTilesAcross;
4437
          
4438
0
          uint32 colIndex = tileIndex - rowIndex * fTilesAcross;
4439
          
4440
0
          dng_rect tileArea = fIFD.TileArea (rowIndex, colIndex);
4441
          
4442
0
          dng_memory_stream tileStream (fHost.Allocator ());
4443
                       
4444
0
          tileStream.SetLittleEndian (fStream.LittleEndian ());
4445
          
4446
0
          dng_host host (&fHost.Allocator (),
4447
0
                   sniffer);
4448
                
4449
0
          fImageWriter.WriteTile (host,
4450
0
                      fIFD,
4451
0
                      tileStream,
4452
0
                      fImage,
4453
0
                      tileArea,
4454
0
                      fFakeChannels,
4455
0
                      compressedBuffer,
4456
0
                      uncompressedBuffer,
4457
0
                      subTileBlockBuffer,
4458
0
                      tempBuffer);
4459
                      
4460
0
          tileStream.Flush ();
4461
                      
4462
0
          uint32 tileByteCount = (uint32) tileStream.Length ();
4463
          
4464
0
          tileStream.SetReadPosition (0);
4465
          
4466
          // Wait until it is our turn to write tile.
4467
4468
0
            {
4469
          
4470
0
            dng_lock_mutex lock (&fMutex2);
4471
          
4472
0
            while (!fTaskFailed &&
4473
0
                 fWriteTileIndex != tileIndex)
4474
0
              {
4475
4476
0
              fCondition.Wait (fMutex2);
4477
              
4478
0
              }
4479
4480
            // If the task failed in another thread, that thread already threw an exception.
4481
4482
0
            if (fTaskFailed)
4483
0
              return;
4484
4485
0
            }           
4486
          
4487
0
          dng_abort_sniffer::SniffForAbort (sniffer);
4488
          
4489
          // Remember this offset.
4490
        
4491
0
          uint32 tileOffset = (uint32) fStream.Position ();
4492
        
4493
0
          fBasic.SetTileOffset (tileIndex, tileOffset);
4494
            
4495
          // Copy tile stream for tile into main stream.
4496
              
4497
0
          tileStream.CopyToStream (fStream, tileByteCount);
4498
              
4499
          // Update tile count.
4500
            
4501
0
          fBasic.SetTileByteCount (tileIndex, tileByteCount);
4502
          
4503
          // Keep the tiles on even byte offsets.
4504
                             
4505
0
          if (tileByteCount & 1)
4506
0
            {
4507
0
            fStream.Put_uint8 (0);
4508
0
            }
4509
              
4510
          // Let other threads know it is safe to write to stream.
4511
          
4512
0
            {
4513
            
4514
0
            dng_lock_mutex lock (&fMutex2);
4515
            
4516
            // If the task failed in another thread, that thread already threw an exception.
4517
4518
0
            if (fTaskFailed)
4519
0
              return;
4520
4521
0
            fWriteTileIndex++;
4522
            
4523
0
            fCondition.Broadcast ();
4524
            
4525
0
            }
4526
            
4527
0
          }
4528
          
4529
0
        }
4530
        
4531
0
      catch (...)
4532
0
        {
4533
        
4534
        // If first to fail, wake up any threads waiting on condition.
4535
        
4536
0
        bool needBroadcast = false;
4537
4538
0
          {
4539
          
4540
0
          dng_lock_mutex lock (&fMutex2);
4541
4542
0
          needBroadcast = !fTaskFailed;
4543
0
          fTaskFailed = true;
4544
          
4545
0
          }
4546
4547
0
        if (needBroadcast)
4548
0
          fCondition.Broadcast ();
4549
        
4550
0
        throw;
4551
        
4552
0
        }
4553
      
4554
0
      }
4555
    
4556
  private:
4557
4558
    // Hidden copy constructor and assignment operator.
4559
4560
    dng_write_tiles_task (const dng_write_tiles_task &);
4561
4562
    dng_write_tiles_task & operator= (const dng_write_tiles_task &);
4563
    
4564
  };
4565
4566
/*****************************************************************************/
4567
4568
void dng_image_writer::WriteImage (dng_host &host,
4569
                       const dng_ifd &ifd,
4570
                       dng_basic_tag_set &basic,
4571
                       dng_stream &stream,
4572
                       const dng_image &image,
4573
                       uint32 fakeChannels)
4574
65.8k
  {
4575
  
4576
  // Deal with row interleaved images.
4577
  
4578
65.8k
  if (ifd.fRowInterleaveFactor > 1 &&
4579
0
    ifd.fRowInterleaveFactor < ifd.fImageLength)
4580
0
    {
4581
    
4582
0
    dng_ifd tempIFD (ifd);
4583
    
4584
0
    tempIFD.fRowInterleaveFactor = 1;
4585
    
4586
0
    dng_row_interleaved_image tempImage (*((dng_image *) &image),
4587
0
                       ifd.fRowInterleaveFactor);
4588
    
4589
0
    WriteImage (host,
4590
0
          tempIFD,
4591
0
          basic,
4592
0
          stream,
4593
0
          tempImage,
4594
0
          fakeChannels);
4595
        
4596
0
    return;
4597
    
4598
0
    }
4599
  
4600
  // Compute basic information.
4601
  
4602
65.8k
  uint32 bytesPerSample = TagTypeSize (image.PixelType ());
4603
  
4604
65.8k
  uint32 bytesPerPixel = SafeUint32Mult (ifd.fSamplesPerPixel,
4605
65.8k
                       bytesPerSample);
4606
  
4607
65.8k
  uint32 tileRowBytes = SafeUint32Mult (ifd.fTileWidth, bytesPerPixel);
4608
  
4609
  // If we can compute the number of bytes needed to store the
4610
  // data, we can split the write for each tile into sub-tiles.
4611
  
4612
65.8k
  uint32 subTileLength = ifd.fTileLength;
4613
  
4614
65.8k
  if (ifd.TileByteCount (ifd.TileArea (0, 0)) != 0)
4615
31.5k
    {
4616
    
4617
31.5k
    subTileLength = Pin_uint32 (ifd.fSubTileBlockRows,
4618
31.5k
                  kImageBufferSize / tileRowBytes, 
4619
31.5k
                  ifd.fTileLength);
4620
          
4621
    // Don't split sub-tiles across subTileBlocks.
4622
    
4623
31.5k
    subTileLength = subTileLength / ifd.fSubTileBlockRows
4624
31.5k
                    * ifd.fSubTileBlockRows;
4625
                  
4626
31.5k
    }
4627
    
4628
  // Find size of uncompressed buffer.
4629
  
4630
65.8k
  uint32 uncompressedSize = SafeUint32Mult(subTileLength, tileRowBytes);
4631
  
4632
  // Find size of compressed buffer, if required.
4633
  
4634
65.8k
  uint32 compressedSize = CompressedBufferSize (ifd, uncompressedSize);
4635
      
4636
  // See if we can do this write using multiple threads.
4637
  
4638
65.8k
  uint32 tilesAcross = ifd.TilesAcross ();
4639
65.8k
  uint32 tilesDown   = ifd.TilesDown   ();
4640
                 
4641
65.8k
  bool useMultipleThreads = (tilesDown * tilesAcross >= 2) &&
4642
5.00k
                (host.PerformAreaTaskThreads () > 1) &&
4643
0
                (subTileLength == ifd.fTileLength) &&
4644
0
                (ifd.fCompression != ccUncompressed);
4645
  
4646
    
4647
#if qImagecore
4648
  useMultipleThreads = false; 
4649
#endif
4650
    
4651
65.8k
  if (useMultipleThreads)
4652
0
    {
4653
    
4654
0
    uint32 threadCount = Min_uint32 (tilesDown * tilesAcross,
4655
0
                     host.PerformAreaTaskThreads ());
4656
                     
4657
0
    dng_write_tiles_task task (*this,
4658
0
                   host,
4659
0
                   ifd,
4660
0
                   basic,
4661
0
                   stream,
4662
0
                   image,
4663
0
                   fakeChannels,
4664
0
                   tilesDown,
4665
0
                   tilesAcross,
4666
0
                   compressedSize,
4667
0
                   uncompressedSize);
4668
                  
4669
0
    host.PerformAreaTask (task,
4670
0
                dng_rect (0, 0, 16, 16 * threadCount));
4671
    
4672
0
    }
4673
    
4674
65.8k
  else
4675
65.8k
    {
4676
                  
4677
65.8k
    AutoPtr<dng_memory_block> compressedBuffer;
4678
65.8k
    AutoPtr<dng_memory_block> uncompressedBuffer;
4679
65.8k
    AutoPtr<dng_memory_block> subTileBlockBuffer;
4680
65.8k
    AutoPtr<dng_memory_block> tempBuffer;
4681
    
4682
65.8k
    if (compressedSize)
4683
16.5k
      {
4684
16.5k
      compressedBuffer.Reset (host.Allocate (compressedSize));
4685
16.5k
      }
4686
    
4687
65.8k
    if (uncompressedSize)
4688
65.8k
      {
4689
65.8k
      uncompressedBuffer.Reset (host.Allocate (uncompressedSize));
4690
65.8k
      }
4691
    
4692
65.8k
    if (ifd.fSubTileBlockRows > 1 && uncompressedSize)
4693
0
      {
4694
0
      subTileBlockBuffer.Reset (host.Allocate (uncompressedSize));
4695
0
      }
4696
        
4697
    // Write out each tile.
4698
    
4699
65.8k
    uint32 tileIndex = 0;
4700
    
4701
148k
    for (uint32 rowIndex = 0; rowIndex < tilesDown; rowIndex++)
4702
82.4k
      {
4703
      
4704
290k
      for (uint32 colIndex = 0; colIndex < tilesAcross; colIndex++)
4705
207k
        {
4706
        
4707
        // Remember this offset.
4708
        
4709
207k
        uint32 tileOffset = (uint32) stream.Position ();
4710
      
4711
207k
        basic.SetTileOffset (tileIndex, tileOffset);
4712
        
4713
        // Split tile into sub-tiles if possible.
4714
        
4715
207k
        dng_rect tileArea = ifd.TileArea (rowIndex, colIndex);
4716
        
4717
207k
        uint32 subTileCount = (tileArea.H () + subTileLength - 1) /
4718
207k
                    subTileLength;
4719
                    
4720
553k
        for (uint32 subIndex = 0; subIndex < subTileCount; subIndex++)
4721
345k
          {
4722
          
4723
345k
          host.SniffForAbort ();
4724
        
4725
345k
          dng_rect subArea (tileArea);
4726
          
4727
345k
          subArea.t = tileArea.t + subIndex * subTileLength;
4728
          
4729
345k
          subArea.b = Min_int32 (subArea.t + subTileLength,
4730
345k
                       tileArea.b);
4731
                       
4732
          // Write the sub-tile.
4733
          
4734
345k
          WriteTile (host,
4735
345k
                 ifd,
4736
345k
                 stream,
4737
345k
                 image,
4738
345k
                 subArea,
4739
345k
                 fakeChannels,
4740
345k
                 compressedBuffer,
4741
345k
                 uncompressedBuffer,
4742
345k
                 subTileBlockBuffer,
4743
345k
                 tempBuffer);
4744
                 
4745
345k
          }
4746
          
4747
        // Update tile count.
4748
          
4749
207k
        uint32 tileByteCount = (uint32) stream.Position () - tileOffset;
4750
          
4751
207k
        basic.SetTileByteCount (tileIndex, tileByteCount);
4752
        
4753
207k
        tileIndex++;
4754
        
4755
        // Keep the tiles on even byte offsets.
4756
                           
4757
207k
        if (tileByteCount & 1)
4758
90.9k
          {
4759
90.9k
          stream.Put_uint8 (0);
4760
90.9k
          }
4761
          
4762
207k
        }
4763
4764
82.4k
      }
4765
      
4766
65.8k
    }
4767
    
4768
65.8k
  }
4769
4770
/*****************************************************************************/
4771
4772
#if qDNGUseXMP
4773
4774
static void CopyString (const dng_xmp &oldXMP,
4775
            dng_xmp &newXMP,
4776
            const char *ns,
4777
            const char *path,
4778
            dng_string *exif = NULL)
4779
  {
4780
  
4781
  dng_string s;
4782
  
4783
  if (oldXMP.GetString (ns, path, s))
4784
    {
4785
    
4786
    if (s.NotEmpty ())
4787
      {
4788
      
4789
      newXMP.SetString (ns, path, s);
4790
      
4791
      if (exif)
4792
        {
4793
        
4794
        *exif = s;
4795
        
4796
        }
4797
      
4798
      }
4799
      
4800
    }
4801
  
4802
  }
4803
                 
4804
/*****************************************************************************/
4805
4806
static void CopyStringList (const dng_xmp &oldXMP,
4807
              dng_xmp &newXMP,
4808
              const char *ns,
4809
              const char *path,
4810
              bool isBag)
4811
  {
4812
  
4813
  dng_string_list list;
4814
  
4815
  if (oldXMP.GetStringList (ns, path, list))
4816
    {
4817
    
4818
    if (list.Count ())
4819
      {
4820
      
4821
      newXMP.SetStringList (ns, path, list, isBag);
4822
            
4823
      }
4824
      
4825
    }
4826
  
4827
  }
4828
                 
4829
/*****************************************************************************/
4830
4831
static void CopyAltLangDefault (const dng_xmp &oldXMP,
4832
                dng_xmp &newXMP,
4833
                const char *ns,
4834
                const char *path,
4835
                dng_string *exif = NULL)
4836
  {
4837
  
4838
  dng_string s;
4839
  
4840
  if (oldXMP.GetAltLangDefault (ns, path, s))
4841
    {
4842
    
4843
    if (s.NotEmpty ())
4844
      {
4845
      
4846
      newXMP.SetAltLangDefault (ns, path, s);
4847
      
4848
      if (exif)
4849
        {
4850
        
4851
        *exif = s;
4852
        
4853
        }
4854
      
4855
      }
4856
      
4857
    }
4858
  
4859
  }
4860
                 
4861
/*****************************************************************************/
4862
4863
static void CopyStructField (const dng_xmp &oldXMP,
4864
               dng_xmp &newXMP,
4865
               const char *ns,
4866
               const char *path,
4867
               const char *field)
4868
  {
4869
  
4870
  dng_string s;
4871
  
4872
  if (oldXMP.GetStructField (ns, path, ns, field, s))
4873
    {
4874
    
4875
    if (s.NotEmpty ())
4876
      {
4877
      
4878
      newXMP.SetStructField (ns, path, ns, field, s);
4879
      
4880
      }
4881
      
4882
    }
4883
  
4884
  }
4885
4886
/*****************************************************************************/
4887
4888
static void CopyBoolean (const dng_xmp &oldXMP,
4889
             dng_xmp &newXMP,
4890
             const char *ns,
4891
             const char *path)
4892
  {
4893
  
4894
  bool b;
4895
  
4896
  if (oldXMP.GetBoolean (ns, path, b))
4897
    {
4898
    
4899
    newXMP.SetBoolean (ns, path, b);
4900
            
4901
    }
4902
  
4903
  }
4904
  
4905
#endif
4906
               
4907
/*****************************************************************************/
4908
4909
void dng_image_writer::CleanUpMetadata (dng_host &host,
4910
                    dng_metadata &metadata,
4911
                    dng_metadata_subset metadataSubset,
4912
                    const char *dstMIMI,
4913
                    const char *software)
4914
20.7k
  {
4915
  
4916
  #if qDNGUseXMP
4917
  
4918
  if (metadata.GetXMP () && metadata.GetExif ())
4919
    {
4920
    
4921
    dng_xmp  &newXMP  (*metadata.GetXMP  ());
4922
    dng_exif &newEXIF (*metadata.GetExif ());
4923
    
4924
    // Update software tag.
4925
    
4926
    if (software)
4927
      {
4928
  
4929
      newEXIF.fSoftware.Set (software);
4930
      
4931
      newXMP.Set (XMP_NS_XAP,
4932
            "CreatorTool",
4933
            software);
4934
      
4935
      }
4936
    
4937
    #if qDNGXMPDocOps
4938
    
4939
    newXMP.DocOpsPrepareForSave (metadata.SourceMIMI ().Get (),
4940
                   dstMIMI);
4941
                          
4942
    #else
4943
    
4944
    metadata.UpdateDateTimeToNow ();
4945
    
4946
    #endif
4947
    
4948
    // Update EXIF version to at least 2.3 so all the exif tags
4949
    // can be written.
4950
    
4951
    if (newEXIF.fExifVersion < DNG_CHAR4 ('0','2','3','0'))
4952
      {
4953
    
4954
      newEXIF.fExifVersion = DNG_CHAR4 ('0','2','3','0');
4955
      
4956
      newXMP.Set (XMP_NS_EXIF, "ExifVersion", "0230");
4957
      
4958
      }
4959
      
4960
    // Resync EXIF, remove EXIF tags from XMP.
4961
  
4962
    newXMP.SyncExif (newEXIF,
4963
             metadata.GetOriginalExif (),
4964
             false,
4965
             true);
4966
                    
4967
    // Deal with ImageIngesterPro bug.  This program is adding lots of
4968
    // empty metadata strings into the XMP, which is screwing up Adobe CS4.
4969
    // We are saving a new file, so this is a chance to clean up this mess.
4970
    
4971
    newXMP.RemoveEmptyStringsAndArrays (XMP_NS_DC);
4972
    newXMP.RemoveEmptyStringsAndArrays (XMP_NS_XAP);
4973
    newXMP.RemoveEmptyStringsAndArrays (XMP_NS_PHOTOSHOP);
4974
    newXMP.RemoveEmptyStringsAndArrays (XMP_NS_IPTC);
4975
    newXMP.RemoveEmptyStringsAndArrays (XMP_NS_XAP_RIGHTS);
4976
    newXMP.RemoveEmptyStringsAndArrays ("http://ns.iview-multimedia.com/mediapro/1.0/");
4977
4978
    // Process metadata subset.
4979
    
4980
    if (metadataSubset == kMetadataSubset_CopyrightOnly ||
4981
      metadataSubset == kMetadataSubset_CopyrightAndContact)
4982
      {
4983
      
4984
      dng_xmp  oldXMP  (newXMP );
4985
      dng_exif oldEXIF (newEXIF);
4986
      
4987
      // For these options, we start from nothing, and only fill in the
4988
      // fields that we absolutely need.
4989
      
4990
      newXMP.RemoveProperties (NULL);
4991
      
4992
      newEXIF.SetEmpty ();
4993
      
4994
      metadata.ClearMakerNote ();
4995
      
4996
      // Move copyright related fields over.
4997
      
4998
      CopyAltLangDefault (oldXMP,
4999
                newXMP,
5000
                XMP_NS_DC,
5001
                "rights",
5002
                &newEXIF.fCopyright);
5003
                        
5004
      CopyAltLangDefault (oldXMP,
5005
                newXMP,
5006
                XMP_NS_XAP_RIGHTS,
5007
                "UsageTerms");
5008
                
5009
      CopyString (oldXMP,
5010
            newXMP,
5011
            XMP_NS_XAP_RIGHTS,
5012
            "WebStatement");
5013
            
5014
      CopyBoolean (oldXMP,
5015
             newXMP,
5016
             XMP_NS_XAP_RIGHTS,
5017
             "Marked");
5018
             
5019
      #if qDNGXMPDocOps
5020
      
5021
      // Include basic DocOps fields, but not the full history.
5022
      
5023
      CopyString (oldXMP,
5024
            newXMP,
5025
            XMP_NS_MM,
5026
            "OriginalDocumentID");
5027
            
5028
      CopyString (oldXMP,
5029
            newXMP,
5030
            XMP_NS_MM,
5031
            "DocumentID");
5032
      
5033
      CopyString (oldXMP,
5034
            newXMP,
5035
            XMP_NS_MM,
5036
            "InstanceID");
5037
      
5038
      CopyString (oldXMP,
5039
            newXMP,
5040
            XMP_NS_XAP,
5041
            "MetadataDate");
5042
      
5043
      #endif
5044
      
5045
      // Copyright and Contact adds the contact info fields.
5046
      
5047
      if (metadataSubset == kMetadataSubset_CopyrightAndContact)
5048
        {
5049
        
5050
        // Note: Save for Web is not including the dc:creator list, but it
5051
        // is part of the IPTC contract info metadata panel, so I 
5052
        // think it should be copied as part of the contact info.
5053
        
5054
        CopyStringList (oldXMP,
5055
                newXMP,
5056
                XMP_NS_DC,
5057
                "creator",
5058
                false);
5059
                
5060
        // The first string dc:creator list is mirrored to the
5061
        // the exif artist tag, so copy that also.
5062
                
5063
        newEXIF.fArtist = oldEXIF.fArtist;
5064
        
5065
        // Copy other contact fields.
5066
        
5067
        CopyString (oldXMP,
5068
              newXMP,
5069
              XMP_NS_PHOTOSHOP,
5070
              "AuthorsPosition");
5071
              
5072
        CopyStructField (oldXMP,
5073
                 newXMP,
5074
                 XMP_NS_IPTC,
5075
                 "CreatorContactInfo",
5076
                 "CiEmailWork");
5077
              
5078
        CopyStructField (oldXMP,
5079
                 newXMP,
5080
                 XMP_NS_IPTC,
5081
                 "CreatorContactInfo",
5082
                 "CiAdrExtadr");
5083
              
5084
        CopyStructField (oldXMP,
5085
                 newXMP,
5086
                 XMP_NS_IPTC,
5087
                 "CreatorContactInfo",
5088
                 "CiAdrCity");
5089
              
5090
        CopyStructField (oldXMP,
5091
                 newXMP,
5092
                 XMP_NS_IPTC,
5093
                 "CreatorContactInfo",
5094
                 "CiAdrRegion");
5095
              
5096
        CopyStructField (oldXMP,
5097
                 newXMP,
5098
                 XMP_NS_IPTC,
5099
                 "CreatorContactInfo",
5100
                 "CiAdrPcode");
5101
              
5102
        CopyStructField (oldXMP,
5103
                 newXMP,
5104
                 XMP_NS_IPTC,
5105
                 "CreatorContactInfo",
5106
                 "CiAdrCtry");
5107
              
5108
        CopyStructField (oldXMP,
5109
                 newXMP,
5110
                 XMP_NS_IPTC,
5111
                 "CreatorContactInfo",
5112
                 "CiTelWork");
5113
              
5114
        CopyStructField (oldXMP,
5115
                 newXMP,
5116
                 XMP_NS_IPTC,
5117
                 "CreatorContactInfo",
5118
                 "CiUrlWork");
5119
                 
5120
        CopyAltLangDefault (oldXMP,
5121
                  newXMP,
5122
                  XMP_NS_DC,
5123
                  "title");
5124
                        
5125
        }
5126
5127
      }
5128
      
5129
    else if (metadataSubset == kMetadataSubset_AllExceptCameraInfo        ||
5130
         metadataSubset == kMetadataSubset_AllExceptCameraAndLocation ||
5131
         metadataSubset == kMetadataSubset_AllExceptLocationInfo)
5132
      {
5133
      
5134
      dng_xmp  oldXMP  (newXMP );
5135
      dng_exif oldEXIF (newEXIF);
5136
      
5137
      if (metadataSubset == kMetadataSubset_AllExceptCameraInfo ||
5138
        metadataSubset == kMetadataSubset_AllExceptCameraAndLocation)
5139
        {
5140
      
5141
        // This removes most of the EXIF info, so just copy the fields
5142
        // we are not deleting.
5143
        
5144
        newEXIF.SetEmpty ();
5145
        
5146
        newEXIF.fImageDescription  = oldEXIF.fImageDescription;   // Note: Differs from SFW
5147
        newEXIF.fSoftware          = oldEXIF.fSoftware;
5148
        newEXIF.fArtist            = oldEXIF.fArtist;
5149
        newEXIF.fCopyright         = oldEXIF.fCopyright;
5150
        newEXIF.fCopyright2        = oldEXIF.fCopyright2;
5151
        newEXIF.fDateTime          = oldEXIF.fDateTime;
5152
        newEXIF.fDateTimeOriginal  = oldEXIF.fDateTimeOriginal;
5153
        newEXIF.fDateTimeDigitized = oldEXIF.fDateTimeDigitized;
5154
        newEXIF.fExifVersion       = oldEXIF.fExifVersion;
5155
        newEXIF.fImageUniqueID     = oldEXIF.fImageUniqueID;
5156
        
5157
        newEXIF.CopyGPSFrom (oldEXIF);
5158
        
5159
        // Remove exif info from XMP.
5160
        
5161
        newXMP.RemoveProperties (XMP_NS_EXIF);
5162
        newXMP.RemoveProperties (XMP_NS_AUX);
5163
        
5164
        // Remove Camera Raw info
5165
        
5166
        newXMP.RemoveProperties (XMP_NS_CRS);
5167
        newXMP.RemoveProperties (XMP_NS_CRSS);
5168
        newXMP.RemoveProperties (XMP_NS_CRX);
5169
        
5170
        // Remove DocOps history, since it contains the original
5171
        // camera format.
5172
        
5173
        newXMP.Remove (XMP_NS_MM, "History");
5174
        
5175
        // MakerNote contains camera info.
5176
        
5177
        metadata.ClearMakerNote ();
5178
      
5179
        }
5180
        
5181
      if (metadataSubset == kMetadataSubset_AllExceptLocationInfo ||
5182
        metadataSubset == kMetadataSubset_AllExceptCameraAndLocation)
5183
        {
5184
        
5185
        // Remove GPS fields.
5186
        
5187
        dng_exif blankExif;
5188
        
5189
        newEXIF.CopyGPSFrom (blankExif);
5190
        
5191
        // Remove MakerNote just in case, because we don't know
5192
        // all of what is in it.
5193
        
5194
        metadata.ClearMakerNote ();
5195
        
5196
        // Remove XMP & IPTC location fields.
5197
        
5198
        newXMP.Remove (XMP_NS_PHOTOSHOP, "City");
5199
        newXMP.Remove (XMP_NS_PHOTOSHOP, "State");
5200
        newXMP.Remove (XMP_NS_PHOTOSHOP, "Country");
5201
        newXMP.Remove (XMP_NS_IPTC, "Location");
5202
        newXMP.Remove (XMP_NS_IPTC, "CountryCode");
5203
        newXMP.Remove (XMP_NS_IPTC_EXT, "LocationCreated");
5204
        newXMP.Remove (XMP_NS_IPTC_EXT, "LocationShown");
5205
        
5206
        }
5207
      
5208
      }
5209
                    
5210
    // Rebuild the legacy IPTC block, if needed.
5211
    
5212
    bool isTIFF = (strcmp (dstMIMI, "image/tiff") == 0);
5213
    bool isDNG  = (strcmp (dstMIMI, "image/dng" ) == 0);
5214
5215
    if (!isDNG)
5216
      {
5217
    
5218
      metadata.RebuildIPTC (host.Allocator (),
5219
                  isTIFF);
5220
                  
5221
      }
5222
      
5223
    else
5224
      {
5225
      
5226
      metadata.ClearIPTC ();
5227
      
5228
      }
5229
  
5230
    // Clear format related XMP.
5231
                    
5232
    newXMP.ClearOrientation ();
5233
    
5234
    newXMP.ClearImageInfo ();
5235
    
5236
    newXMP.RemoveProperties (XMP_NS_DNG);
5237
    
5238
    // All the formats we care about already keep the IPTC digest
5239
    // elsewhere, do we don't need to write it to the XMP.
5240
    
5241
    newXMP.ClearIPTCDigest ();
5242
    
5243
    // Make sure that sidecar specific tags never get written to files.
5244
    
5245
    newXMP.Remove (XMP_NS_PHOTOSHOP, "SidecarForExtension");
5246
    newXMP.Remove (XMP_NS_PHOTOSHOP, "EmbeddedXMPDigest");
5247
    
5248
    }
5249
  
5250
  #endif
5251
  
5252
20.7k
  }
5253
5254
/*****************************************************************************/
5255
5256
void dng_image_writer::WriteTIFF (dng_host &host,
5257
                  dng_stream &stream,
5258
                  const dng_image &image,
5259
                  uint32 photometricInterpretation,
5260
                  uint32 compression,
5261
                  dng_negative *negative,
5262
                  const dng_color_space *space,
5263
                  const dng_resolution *resolution,
5264
                  const dng_jpeg_preview *thumbnail,
5265
                  const dng_memory_block *imageResources,
5266
                  dng_metadata_subset metadataSubset)
5267
3.98k
  {
5268
  
5269
3.98k
  WriteTIFF (host,
5270
3.98k
         stream,
5271
3.98k
         image,
5272
3.98k
         photometricInterpretation,
5273
3.98k
         compression,
5274
3.98k
         negative ? &(negative->Metadata ()) : NULL,
5275
3.98k
         space,
5276
3.98k
         resolution,
5277
3.98k
         thumbnail,
5278
3.98k
         imageResources,
5279
3.98k
         metadataSubset);
5280
  
5281
3.98k
  }
5282
  
5283
/*****************************************************************************/
5284
5285
void dng_image_writer::WriteTIFF (dng_host &host,
5286
                  dng_stream &stream,
5287
                  const dng_image &image,
5288
                  uint32 photometricInterpretation,
5289
                  uint32 compression,
5290
                  const dng_metadata *metadata,
5291
                  const dng_color_space *space,
5292
                  const dng_resolution *resolution,
5293
                  const dng_jpeg_preview *thumbnail,
5294
                  const dng_memory_block *imageResources,
5295
                  dng_metadata_subset metadataSubset)
5296
51.2k
  {
5297
  
5298
51.2k
  const void *profileData = NULL;
5299
51.2k
  uint32 profileSize = 0;
5300
  
5301
51.2k
  const uint8 *data = NULL;
5302
51.2k
  uint32 size = 0;
5303
  
5304
51.2k
  if (space && space->ICCProfile (size, data))
5305
3.98k
    {
5306
    
5307
3.98k
    profileData = data;
5308
3.98k
    profileSize = size;
5309
    
5310
3.98k
    }
5311
    
5312
51.2k
  WriteTIFFWithProfile (host,
5313
51.2k
              stream,
5314
51.2k
              image,
5315
51.2k
              photometricInterpretation,
5316
51.2k
              compression,
5317
51.2k
              metadata,
5318
51.2k
              profileData,
5319
51.2k
              profileSize,
5320
51.2k
              resolution,
5321
51.2k
              thumbnail,
5322
51.2k
              imageResources,
5323
51.2k
              metadataSubset);
5324
  
5325
51.2k
  }
5326
5327
/*****************************************************************************/
5328
5329
void dng_image_writer::WriteTIFFWithProfile (dng_host &host,
5330
                       dng_stream &stream,
5331
                       const dng_image &image,
5332
                       uint32 photometricInterpretation,
5333
                       uint32 compression,
5334
                       dng_negative *negative,
5335
                       const void *profileData,
5336
                       uint32 profileSize,
5337
                       const dng_resolution *resolution,
5338
                       const dng_jpeg_preview *thumbnail,
5339
                       const dng_memory_block *imageResources,
5340
                       dng_metadata_subset metadataSubset)
5341
0
  {
5342
  
5343
0
  WriteTIFFWithProfile (host,
5344
0
              stream,
5345
0
              image,
5346
0
              photometricInterpretation,
5347
0
              compression,
5348
0
              negative ? &(negative->Metadata ()) : NULL,
5349
0
              profileData,
5350
0
              profileSize,
5351
0
              resolution,
5352
0
              thumbnail,
5353
0
              imageResources,
5354
0
              metadataSubset);
5355
  
5356
0
  }
5357
  
5358
/*****************************************************************************/
5359
5360
void dng_image_writer::WriteTIFFWithProfile (dng_host &host,
5361
                       dng_stream &stream,
5362
                       const dng_image &image,
5363
                       uint32 photometricInterpretation,
5364
                       uint32 compression,
5365
                       const dng_metadata *constMetadata,
5366
                       const void *profileData,
5367
                       uint32 profileSize,
5368
                       const dng_resolution *resolution,
5369
                       const dng_jpeg_preview *thumbnail,
5370
                       const dng_memory_block *imageResources,
5371
                       dng_metadata_subset metadataSubset)
5372
51.2k
  {
5373
  
5374
51.2k
  uint32 j;
5375
  
5376
51.2k
  AutoPtr<dng_metadata> metadata;
5377
  
5378
51.2k
  if (constMetadata)
5379
3.98k
    {
5380
    
5381
3.98k
    metadata.Reset (constMetadata->Clone (host.Allocator ()));
5382
    
5383
3.98k
    CleanUpMetadata (host, 
5384
3.98k
             *metadata,
5385
3.98k
             metadataSubset,
5386
3.98k
             "image/tiff");
5387
    
5388
3.98k
    }
5389
  
5390
51.2k
  dng_ifd ifd;
5391
  
5392
51.2k
  ifd.fNewSubFileType = sfMainImage;
5393
  
5394
51.2k
  ifd.fImageWidth  = image.Bounds ().W ();
5395
51.2k
  ifd.fImageLength = image.Bounds ().H ();
5396
  
5397
51.2k
  ifd.fSamplesPerPixel = image.Planes ();
5398
  
5399
51.2k
  ifd.fBitsPerSample [0] = TagTypeSize (image.PixelType ()) * 8;
5400
  
5401
73.3k
  for (j = 1; j < ifd.fSamplesPerPixel; j++)
5402
22.1k
    {
5403
22.1k
    ifd.fBitsPerSample [j] = ifd.fBitsPerSample [0];
5404
22.1k
    }
5405
    
5406
51.2k
  ifd.fPhotometricInterpretation = photometricInterpretation;
5407
  
5408
51.2k
  ifd.fCompression = compression;
5409
  
5410
51.2k
  if (ifd.fCompression == ccUncompressed)
5411
29.3k
    {
5412
    
5413
29.3k
    ifd.SetSingleStrip ();
5414
    
5415
29.3k
    }
5416
    
5417
21.9k
  else
5418
21.9k
    {
5419
    
5420
21.9k
    ifd.FindStripSize (128 * 1024);
5421
    
5422
21.9k
    ifd.fPredictor = cpHorizontalDifference;
5423
    
5424
21.9k
    }
5425
5426
51.2k
  uint32 extraSamples = 0;
5427
  
5428
51.2k
  switch (photometricInterpretation)
5429
51.2k
    {
5430
    
5431
40.6k
    case piBlackIsZero:
5432
40.6k
      {
5433
40.6k
      extraSamples = image.Planes () - 1;
5434
40.6k
      break;
5435
0
      }
5436
      
5437
10.6k
    case piRGB:
5438
10.6k
      {
5439
10.6k
      extraSamples = image.Planes () - 3;
5440
10.6k
      break;
5441
0
      }
5442
      
5443
0
    default:
5444
0
      break;
5445
      
5446
51.2k
    }
5447
    
5448
51.2k
  ifd.fExtraSamplesCount = extraSamples;
5449
  
5450
51.2k
  if (image.PixelType () == ttFloat)
5451
9.27k
    {
5452
    
5453
19.6k
    for (j = 0; j < ifd.fSamplesPerPixel; j++)
5454
10.3k
      {
5455
10.3k
      ifd.fSampleFormat [j] = sfFloatingPoint;
5456
10.3k
      }
5457
      
5458
9.27k
    }
5459
  
5460
51.2k
  dng_tiff_directory mainIFD;
5461
  
5462
51.2k
  dng_basic_tag_set basic (mainIFD, ifd);
5463
  
5464
  // Resolution.
5465
  
5466
51.2k
  dng_resolution res;
5467
  
5468
51.2k
  if (resolution)
5469
0
    {
5470
0
    res = *resolution;
5471
0
    }
5472
  
5473
51.2k
  tag_urational tagXResolution (tcXResolution, res.fXResolution);
5474
51.2k
  tag_urational tagYResolution (tcYResolution, res.fYResolution);
5475
  
5476
51.2k
  tag_uint16 tagResolutionUnit (tcResolutionUnit, res.fResolutionUnit);
5477
  
5478
51.2k
  if (resolution)
5479
0
    {
5480
0
    mainIFD.Add (&tagXResolution   );
5481
0
    mainIFD.Add (&tagYResolution   );
5482
0
    mainIFD.Add (&tagResolutionUnit);
5483
0
    }
5484
5485
  // ICC Profile.
5486
  
5487
51.2k
  tag_icc_profile iccProfileTag (profileData, profileSize);
5488
  
5489
51.2k
  if (iccProfileTag.Count ())
5490
3.98k
    {
5491
3.98k
    mainIFD.Add (&iccProfileTag);
5492
3.98k
    }
5493
    
5494
  // XMP metadata.
5495
  
5496
  #if qDNGUseXMP
5497
  
5498
  tag_xmp tagXMP (metadata.Get () ? metadata->GetXMP () : NULL);
5499
  
5500
  if (tagXMP.Count ())
5501
    {
5502
    mainIFD.Add (&tagXMP);
5503
    }
5504
    
5505
  #endif
5506
  
5507
  // IPTC metadata.
5508
  
5509
51.2k
  tag_iptc tagIPTC (metadata.Get () ? metadata->IPTCData   () : NULL,
5510
51.2k
            metadata.Get () ? metadata->IPTCLength () : 0);
5511
    
5512
51.2k
  if (tagIPTC.Count ())
5513
19
    {
5514
19
    mainIFD.Add (&tagIPTC);
5515
19
    }
5516
    
5517
  // Adobe data (thumbnail and IPTC digest)
5518
  
5519
51.2k
  AutoPtr<dng_memory_block> adobeData (BuildAdobeData (host,
5520
51.2k
                             metadata.Get (),
5521
51.2k
                             thumbnail,
5522
51.2k
                             imageResources));
5523
                             
5524
51.2k
  tag_uint8_ptr tagAdobe (tcAdobeData,
5525
51.2k
              adobeData->Buffer_uint8 (),
5526
51.2k
              adobeData->LogicalSize ());
5527
                   
5528
51.2k
  if (tagAdobe.Count ())
5529
19
    {
5530
19
    mainIFD.Add (&tagAdobe);
5531
19
    }
5532
    
5533
  // Exif metadata.
5534
  
5535
51.2k
  exif_tag_set exifSet (mainIFD,
5536
51.2k
              metadata.Get () && metadata->GetExif () ? *metadata->GetExif () 
5537
51.2k
                                  : dng_exif (),
5538
51.2k
              metadata.Get () ? metadata->IsMakerNoteSafe () : false,
5539
51.2k
              metadata.Get () ? metadata->MakerNoteData   () : NULL,
5540
51.2k
              metadata.Get () ? metadata->MakerNoteLength () : 0,
5541
51.2k
              false);
5542
5543
  // Find offset to main image data.
5544
  
5545
51.2k
  uint32 offsetMainIFD = 8;
5546
  
5547
51.2k
  uint32 offsetExifData = offsetMainIFD + mainIFD.Size ();
5548
  
5549
51.2k
  exifSet.Locate (offsetExifData);
5550
  
5551
51.2k
  uint32 offsetMainData = offsetExifData + exifSet.Size ();
5552
    
5553
51.2k
  stream.SetWritePosition (offsetMainData);
5554
  
5555
  // Write the main image data.
5556
  
5557
51.2k
  WriteImage (host,
5558
51.2k
        ifd,
5559
51.2k
        basic,
5560
51.2k
        stream,
5561
51.2k
        image);
5562
        
5563
  // Trim the file to this length.
5564
  
5565
51.2k
  stream.SetLength (stream.Position ());
5566
  
5567
  // TIFF has a 4G size limit.
5568
  
5569
51.2k
  if (stream.Length () > 0x0FFFFFFFFL)
5570
0
    {
5571
0
    ThrowImageTooBigTIFF ();
5572
0
    }
5573
  
5574
  // Write TIFF Header.
5575
  
5576
51.2k
  stream.SetWritePosition (0);
5577
  
5578
51.2k
  stream.Put_uint16 (stream.BigEndian () ? byteOrderMM : byteOrderII);
5579
  
5580
51.2k
  stream.Put_uint16 (42);
5581
  
5582
51.2k
  stream.Put_uint32 (offsetMainIFD);
5583
  
5584
  // Write the IFDs.
5585
  
5586
51.2k
  mainIFD.Put (stream);
5587
  
5588
51.2k
  exifSet.Put (stream);
5589
  
5590
51.2k
  stream.Flush ();
5591
  
5592
51.2k
  }
5593
                 
5594
/*****************************************************************************/
5595
5596
void dng_image_writer::WriteDNG (dng_host &host,
5597
                   dng_stream &stream,
5598
                   dng_negative &negative,
5599
                   const dng_preview_list *previewList,
5600
                 uint32 maxBackwardVersion,
5601
                   bool uncompressed)
5602
16.7k
  {
5603
  
5604
16.7k
  WriteDNG (host,
5605
16.7k
        stream,
5606
16.7k
        negative,
5607
16.7k
        negative.Metadata (),
5608
16.7k
        previewList,
5609
16.7k
        maxBackwardVersion,
5610
16.7k
        uncompressed);
5611
  
5612
16.7k
  }
5613
  
5614
/*****************************************************************************/
5615
5616
void dng_image_writer::WriteDNG (dng_host &host,
5617
                   dng_stream &stream,
5618
                   const dng_negative &negative,
5619
                 const dng_metadata &constMetadata,
5620
                 const dng_preview_list *previewList,
5621
                 uint32 maxBackwardVersion,
5622
                   bool uncompressed)
5623
16.7k
  {
5624
5625
16.7k
  uint32 j;
5626
  
5627
  // Clean up metadata per MWG recommendations.
5628
  
5629
16.7k
  AutoPtr<dng_metadata> metadata (constMetadata.Clone (host.Allocator ()));
5630
5631
16.7k
  CleanUpMetadata (host, 
5632
16.7k
           *metadata,
5633
16.7k
           kMetadataSubset_All,
5634
16.7k
           "image/dng");
5635
           
5636
  // Figure out the compression to use.  Most of the time this is lossless
5637
  // JPEG.
5638
  
5639
16.7k
  uint32 compression = uncompressed ? ccUncompressed : ccJPEG;
5640
    
5641
  // Was the the original file lossy JPEG compressed?
5642
  
5643
16.7k
  const dng_jpeg_image *rawJPEGImage = negative.RawJPEGImage ();
5644
  
5645
  // If so, can we save it using the requested compression and DNG version?
5646
  
5647
16.7k
  if (uncompressed || maxBackwardVersion < dngVersion_1_4_0_0)
5648
7.25k
    {
5649
    
5650
7.25k
    if (rawJPEGImage || negative.RawJPEGImageDigest ().IsValid ())
5651
0
      {
5652
      
5653
0
      rawJPEGImage = NULL;
5654
      
5655
0
      negative.ClearRawJPEGImageDigest ();
5656
      
5657
0
      negative.ClearRawImageDigest ();
5658
      
5659
0
      }
5660
    
5661
7.25k
    }
5662
    
5663
9.54k
  else if (rawJPEGImage)
5664
4.36k
    {
5665
    
5666
4.36k
    compression = ccLossyJPEG;
5667
    
5668
4.36k
    }
5669
    
5670
  // Are we saving the original size tags?
5671
  
5672
16.7k
  bool saveOriginalDefaultFinalSize     = false;
5673
16.7k
  bool saveOriginalBestQualityFinalSize = false;
5674
16.7k
  bool saveOriginalDefaultCropSize      = false;
5675
  
5676
16.7k
    {
5677
    
5678
    // See if we are saving a proxy image.
5679
    
5680
16.7k
    dng_point defaultFinalSize (negative.DefaultFinalHeight (),
5681
16.7k
                  negative.DefaultFinalWidth  ());
5682
                  
5683
16.7k
    saveOriginalDefaultFinalSize = (negative.OriginalDefaultFinalSize () !=
5684
16.7k
                    defaultFinalSize);
5685
    
5686
16.7k
    if (saveOriginalDefaultFinalSize)
5687
3.42k
      {
5688
      
5689
      // If the save OriginalDefaultFinalSize tag, this changes the defaults
5690
      // for the OriginalBestQualityFinalSize and OriginalDefaultCropSize tags.
5691
      
5692
3.42k
      saveOriginalBestQualityFinalSize = (negative.OriginalBestQualityFinalSize () != 
5693
3.42k
                        defaultFinalSize);
5694
                        
5695
3.42k
      saveOriginalDefaultCropSize = (negative.OriginalDefaultCropSizeV () !=
5696
3.42k
                       dng_urational (defaultFinalSize.v, 1)) ||
5697
390
                      (negative.OriginalDefaultCropSizeH () !=
5698
390
                       dng_urational (defaultFinalSize.h, 1));
5699
5700
3.42k
      }
5701
      
5702
13.3k
    else
5703
13.3k
      {
5704
      
5705
      // Else these two tags default to the normal non-proxy size image values.
5706
      
5707
13.3k
      dng_point bestQualityFinalSize (negative.BestQualityFinalHeight (),
5708
13.3k
                      negative.BestQualityFinalWidth  ());
5709
                      
5710
13.3k
      saveOriginalBestQualityFinalSize = (negative.OriginalBestQualityFinalSize () != 
5711
13.3k
                        bestQualityFinalSize);
5712
                        
5713
13.3k
      saveOriginalDefaultCropSize = (negative.OriginalDefaultCropSizeV () !=
5714
13.3k
                       negative.DefaultCropSizeV ()) ||
5715
13.1k
                      (negative.OriginalDefaultCropSizeH () !=
5716
13.1k
                       negative.DefaultCropSizeH ());
5717
      
5718
13.3k
      }
5719
    
5720
16.7k
    }
5721
    
5722
  // Is this a floating point image that we are saving?
5723
  
5724
16.7k
  bool isFloatingPoint = (negative.RawImage ().PixelType () == ttFloat);
5725
  
5726
  // Does this image have a transparency mask?
5727
  
5728
16.7k
  bool hasTransparencyMask = (negative.RawTransparencyMask () != NULL);
5729
  
5730
  // Should we save a compressed 32-bit integer file?
5731
  
5732
16.7k
  bool isCompressed32BitInteger = (negative.RawImage ().PixelType () == ttLong) &&
5733
86
                    (maxBackwardVersion >= dngVersion_1_4_0_0) &&
5734
86
                  (!uncompressed);
5735
  
5736
  // Figure out what main version to use.
5737
  
5738
16.7k
  uint32 dngVersion = dngVersion_Current;
5739
  
5740
  // Don't write version 1.4 files unless we actually use some feature of the 1.4 spec.
5741
  
5742
16.7k
  if (dngVersion == dngVersion_1_4_0_0)
5743
16.7k
    {
5744
    
5745
16.7k
    if (!rawJPEGImage                     &&
5746
12.3k
      !isFloatingPoint          &&
5747
8.15k
      !hasTransparencyMask        &&
5748
8.15k
      !isCompressed32BitInteger      &&
5749
8.07k
      !saveOriginalDefaultFinalSize     &&
5750
8.01k
      !saveOriginalBestQualityFinalSize &&
5751
7.97k
      !saveOriginalDefaultCropSize      )
5752
7.88k
      {
5753
        
5754
7.88k
      dngVersion = dngVersion_1_3_0_0;
5755
        
5756
7.88k
      }
5757
      
5758
16.7k
    }
5759
  
5760
  // Figure out what backward version to use.
5761
  
5762
16.7k
  uint32 dngBackwardVersion = dngVersion_1_1_0_0;
5763
  
5764
  #if defined(qTestRowInterleave) || defined(qTestSubTileBlockRows) || defined(qTestSubTileBlockCols)
5765
  dngBackwardVersion = Max_uint32 (dngBackwardVersion, dngVersion_1_2_0_0);
5766
  #endif
5767
  
5768
16.7k
  dngBackwardVersion = Max_uint32 (dngBackwardVersion,
5769
16.7k
                   negative.OpcodeList1 ().MinVersion (false));
5770
5771
16.7k
  dngBackwardVersion = Max_uint32 (dngBackwardVersion,
5772
16.7k
                   negative.OpcodeList2 ().MinVersion (false));
5773
5774
16.7k
  dngBackwardVersion = Max_uint32 (dngBackwardVersion,
5775
16.7k
                   negative.OpcodeList3 ().MinVersion (false));
5776
                   
5777
16.7k
  if (negative.GetMosaicInfo () &&
5778
322
    negative.GetMosaicInfo ()->fCFALayout >= 6)
5779
4
    {
5780
4
    dngBackwardVersion = Max_uint32 (dngBackwardVersion, dngVersion_1_3_0_0);
5781
4
    }
5782
    
5783
16.7k
  if (rawJPEGImage || isFloatingPoint || hasTransparencyMask || isCompressed32BitInteger)
5784
8.65k
    {
5785
8.65k
    dngBackwardVersion = Max_uint32 (dngBackwardVersion, dngVersion_1_4_0_0);
5786
8.65k
    }
5787
                   
5788
16.7k
  if (dngBackwardVersion > dngVersion)
5789
27
    {
5790
27
    ThrowProgramError ();
5791
27
    }
5792
    
5793
  // Find best thumbnail from preview list, if any.
5794
5795
16.7k
  const dng_preview *thumbnail = NULL;
5796
  
5797
16.7k
  if (previewList)
5798
16.7k
    {
5799
    
5800
16.7k
    uint32 thumbArea = 0;
5801
    
5802
22.5k
    for (j = 0; j < previewList->Count (); j++)
5803
5.80k
      {
5804
      
5805
5.80k
      const dng_image_preview *imagePreview = dynamic_cast<const dng_image_preview *>(&previewList->Preview (j));
5806
      
5807
5.80k
      if (imagePreview)
5808
2.24k
        {
5809
        
5810
2.24k
        uint32 thisArea = imagePreview->fImage->Bounds ().W () *
5811
2.24k
                  imagePreview->fImage->Bounds ().H ();
5812
                  
5813
2.24k
        if (!thumbnail || thisArea < thumbArea)
5814
2.24k
          {
5815
          
5816
2.24k
          thumbnail = &previewList->Preview (j);
5817
          
5818
2.24k
          thumbArea = thisArea;
5819
          
5820
2.24k
          }
5821
      
5822
2.24k
        }
5823
        
5824
5.80k
      const dng_jpeg_preview *jpegPreview = dynamic_cast<const dng_jpeg_preview *>(&previewList->Preview (j));
5825
      
5826
5.80k
      if (jpegPreview)
5827
3.56k
        {
5828
        
5829
3.56k
        uint32 thisArea = jpegPreview->fPreviewSize.h *
5830
3.56k
                  jpegPreview->fPreviewSize.v;
5831
                  
5832
3.56k
        if (!thumbnail || thisArea < thumbArea)
5833
2.23k
          {
5834
          
5835
2.23k
          thumbnail = &previewList->Preview (j);
5836
          
5837
2.23k
          thumbArea = thisArea;
5838
          
5839
2.23k
          }
5840
        
5841
3.56k
        }
5842
        
5843
5.80k
      }
5844
    
5845
16.7k
    }
5846
    
5847
  // Create the main IFD
5848
                     
5849
16.7k
  dng_tiff_directory mainIFD;
5850
  
5851
  // Create the IFD for the raw data. If there is no thumnail, this is
5852
  // just a reference the main IFD.  Otherwise allocate a new one.
5853
  
5854
16.7k
  AutoPtr<dng_tiff_directory> rawIFD_IfNotMain;
5855
  
5856
16.7k
  if (thumbnail)
5857
4.47k
    {
5858
4.47k
    rawIFD_IfNotMain.Reset (new dng_tiff_directory);
5859
4.47k
    }
5860
5861
16.7k
  dng_tiff_directory &rawIFD (thumbnail ? *rawIFD_IfNotMain : mainIFD);
5862
  
5863
  // Include DNG version tags.
5864
  
5865
16.7k
  uint8 dngVersionData [4];
5866
  
5867
16.7k
  dngVersionData [0] = (uint8) (dngVersion >> 24);
5868
16.7k
  dngVersionData [1] = (uint8) (dngVersion >> 16);
5869
16.7k
  dngVersionData [2] = (uint8) (dngVersion >>  8);
5870
16.7k
  dngVersionData [3] = (uint8) (dngVersion      );
5871
  
5872
16.7k
  tag_uint8_ptr tagDNGVersion (tcDNGVersion, dngVersionData, 4);
5873
  
5874
16.7k
  mainIFD.Add (&tagDNGVersion);
5875
  
5876
16.7k
  uint8 dngBackwardVersionData [4];
5877
5878
16.7k
  dngBackwardVersionData [0] = (uint8) (dngBackwardVersion >> 24);
5879
16.7k
  dngBackwardVersionData [1] = (uint8) (dngBackwardVersion >> 16);
5880
16.7k
  dngBackwardVersionData [2] = (uint8) (dngBackwardVersion >>  8);
5881
16.7k
  dngBackwardVersionData [3] = (uint8) (dngBackwardVersion      );
5882
  
5883
16.7k
  tag_uint8_ptr tagDNGBackwardVersion (tcDNGBackwardVersion, dngBackwardVersionData, 4);
5884
  
5885
16.7k
  mainIFD.Add (&tagDNGBackwardVersion);
5886
  
5887
  // The main IFD contains the thumbnail, if there is a thumbnail.
5888
                
5889
16.7k
  AutoPtr<dng_basic_tag_set> thmBasic;
5890
  
5891
16.7k
  if (thumbnail)
5892
4.47k
    {
5893
4.47k
    thmBasic.Reset (thumbnail->AddTagSet (mainIFD));
5894
4.47k
    }
5895
              
5896
  // Get the raw image we are writing.
5897
  
5898
16.7k
  const dng_image &rawImage (negative.RawImage ());
5899
  
5900
  // For floating point, we only support ZIP compression.
5901
  
5902
16.7k
  if (isFloatingPoint && !uncompressed)
5903
4.20k
    {
5904
    
5905
4.20k
    compression = ccDeflate;
5906
    
5907
4.20k
    }
5908
  
5909
  // For 32-bit integer images, we only support ZIP and uncompressed.
5910
  
5911
16.7k
  if (rawImage.PixelType () == ttLong)
5912
86
    {
5913
    
5914
86
    if (isCompressed32BitInteger)
5915
86
      {
5916
86
      compression = ccDeflate;
5917
86
      }
5918
      
5919
0
    else
5920
0
      {
5921
0
      compression = ccUncompressed;
5922
0
      }
5923
  
5924
86
    }
5925
  
5926
  // Get a copy of the mosaic info.
5927
  
5928
16.7k
  dng_mosaic_info mosaicInfo;
5929
  
5930
16.7k
  if (negative.GetMosaicInfo ())
5931
322
    {
5932
322
    mosaicInfo = *(negative.GetMosaicInfo ());
5933
322
    }
5934
    
5935
  // Create a dng_ifd record for the raw image.
5936
  
5937
16.7k
  dng_ifd info;
5938
  
5939
16.7k
  info.fImageWidth  = rawImage.Width  ();
5940
16.7k
  info.fImageLength = rawImage.Height ();
5941
  
5942
16.7k
  info.fSamplesPerPixel = rawImage.Planes ();
5943
  
5944
16.7k
  info.fPhotometricInterpretation = mosaicInfo.IsColorFilterArray () ? piCFA
5945
16.7k
                                     : piLinearRaw;
5946
      
5947
16.7k
  info.fCompression = compression;
5948
  
5949
16.7k
  if (isFloatingPoint && compression == ccDeflate)
5950
4.20k
    {
5951
    
5952
4.20k
    info.fPredictor = cpFloatingPoint;
5953
    
5954
4.20k
    if (mosaicInfo.IsColorFilterArray ())
5955
40
      {
5956
      
5957
40
      if (mosaicInfo.fCFAPatternSize.h == 2)
5958
37
        {
5959
37
        info.fPredictor = cpFloatingPointX2;
5960
37
        }
5961
        
5962
3
      else if (mosaicInfo.fCFAPatternSize.h == 4)
5963
2
        {
5964
2
        info.fPredictor = cpFloatingPointX4;
5965
2
        }
5966
        
5967
40
      }
5968
      
5969
4.20k
    } 
5970
    
5971
16.7k
  if (isCompressed32BitInteger)
5972
86
    {
5973
    
5974
86
    info.fPredictor = cpHorizontalDifference;
5975
    
5976
86
    if (mosaicInfo.IsColorFilterArray ())
5977
32
      {
5978
      
5979
32
      if (mosaicInfo.fCFAPatternSize.h == 2)
5980
27
        {
5981
27
        info.fPredictor = cpHorizontalDifferenceX2;
5982
27
        }
5983
        
5984
5
      else if (mosaicInfo.fCFAPatternSize.h == 4)
5985
4
        {
5986
4
        info.fPredictor = cpHorizontalDifferenceX4;
5987
4
        }
5988
        
5989
32
      }
5990
      
5991
86
    }
5992
  
5993
16.7k
  uint32 rawPixelType = rawImage.PixelType ();
5994
  
5995
16.7k
  if (rawPixelType == ttShort)
5996
7.99k
    {
5997
    
5998
    // See if we are using a linearization table with <= 256 entries, in which
5999
    // case the useful data will all fit within 8-bits.
6000
    
6001
7.99k
    const dng_linearization_info *rangeInfo = negative.GetLinearizationInfo ();
6002
  
6003
7.99k
    if (rangeInfo)
6004
410
      {
6005
6006
410
      if (rangeInfo->fLinearizationTable.Get ())
6007
19
        {
6008
        
6009
19
        uint32 entries = rangeInfo->fLinearizationTable->LogicalSize () >> 1;
6010
        
6011
19
        if (entries <= 256)
6012
11
          {
6013
          
6014
11
          rawPixelType = ttByte;
6015
          
6016
11
          }
6017
                        
6018
19
        }
6019
        
6020
410
      }
6021
6022
7.99k
    }
6023
  
6024
16.7k
  switch (rawPixelType)
6025
16.7k
    {
6026
    
6027
4.42k
    case ttByte:
6028
4.42k
      {
6029
4.42k
      info.fBitsPerSample [0] = 8;
6030
4.42k
      break;
6031
0
      }
6032
    
6033
7.98k
    case ttShort:
6034
7.98k
      {
6035
7.98k
      info.fBitsPerSample [0] = 16;
6036
7.98k
      break;
6037
0
      }
6038
      
6039
86
    case ttLong:
6040
86
      {
6041
86
      info.fBitsPerSample [0] = 32;
6042
86
      break;
6043
0
      }
6044
      
6045
4.20k
    case ttFloat:
6046
4.20k
      {
6047
      
6048
4.20k
      if (negative.RawFloatBitDepth () == 16)
6049
2.61k
        {
6050
2.61k
        info.fBitsPerSample [0] = 16;
6051
2.61k
        }
6052
        
6053
1.59k
      else if (negative.RawFloatBitDepth () == 24)
6054
40
        {
6055
40
        info.fBitsPerSample [0] = 24;
6056
40
        }
6057
        
6058
1.55k
      else
6059
1.55k
        {
6060
1.55k
        info.fBitsPerSample [0] = 32;
6061
1.55k
        }
6062
6063
9.12k
      for (j = 0; j < info.fSamplesPerPixel; j++)
6064
4.91k
        {
6065
4.91k
        info.fSampleFormat [j] = sfFloatingPoint;
6066
4.91k
        }
6067
6068
4.20k
      break;
6069
      
6070
0
      }
6071
      
6072
0
    default:
6073
0
      {
6074
0
      ThrowProgramError ();
6075
0
      }
6076
      
6077
16.7k
    }
6078
  
6079
  // For lossless JPEG compression, we often lie about the
6080
  // actual channel count to get the predictors to work across
6081
  // same color mosaic pixels.
6082
  
6083
16.7k
  uint32 fakeChannels = 1;
6084
  
6085
16.7k
  if (info.fCompression == ccJPEG)
6086
8.04k
    {
6087
    
6088
8.04k
    if (mosaicInfo.IsColorFilterArray ())
6089
227
      {
6090
      
6091
227
      if (mosaicInfo.fCFAPatternSize.h == 4)
6092
18
        {
6093
18
        fakeChannels = 4;
6094
18
        }
6095
        
6096
209
      else if (mosaicInfo.fCFAPatternSize.h == 2)
6097
209
        {
6098
209
        fakeChannels = 2;
6099
209
        }
6100
      
6101
      // However, lossless JEPG is limited to four channels,
6102
      // so compromise might be required.
6103
      
6104
227
      while (fakeChannels * info.fSamplesPerPixel > 4 &&
6105
0
           fakeChannels > 1)
6106
0
        {
6107
        
6108
0
        fakeChannels >>= 1;
6109
        
6110
0
        }
6111
      
6112
227
      }
6113
  
6114
8.04k
    }
6115
    
6116
  // Figure out tile sizes.
6117
  
6118
16.7k
  if (rawJPEGImage)
6119
4.36k
    {
6120
    
6121
4.36k
    DNG_ASSERT (rawPixelType == ttByte,
6122
4.36k
          "Unexpected jpeg pixel type");
6123
    
6124
4.36k
    DNG_ASSERT (info.fImageWidth  == (uint32) rawJPEGImage->fImageSize.h &&
6125
4.36k
          info.fImageLength == (uint32) rawJPEGImage->fImageSize.v,
6126
4.36k
          "Unexpected jpeg image size");
6127
          
6128
4.36k
    info.fTileWidth  = rawJPEGImage->fTileSize.h;
6129
4.36k
    info.fTileLength = rawJPEGImage->fTileSize.v;
6130
6131
4.36k
    info.fUsesStrips = rawJPEGImage->fUsesStrips;
6132
    
6133
4.36k
    info.fUsesTiles = !info.fUsesStrips;
6134
    
6135
4.36k
    }
6136
  
6137
12.3k
  else if (info.fCompression == ccJPEG)
6138
8.04k
    {
6139
    
6140
8.04k
    info.FindTileSize (128 * 1024);
6141
    
6142
8.04k
    }
6143
    
6144
4.29k
  else if (info.fCompression == ccDeflate)
6145
4.29k
    {
6146
    
6147
4.29k
    info.FindTileSize (512 * 1024);
6148
    
6149
4.29k
    }
6150
    
6151
0
  else if (info.fCompression == ccLossyJPEG)
6152
0
    {
6153
    
6154
0
    ThrowProgramError ("No JPEG compressed image");
6155
        
6156
0
    }
6157
    
6158
  // Don't use tiles for uncompressed images.
6159
    
6160
0
  else
6161
0
    {
6162
    
6163
0
    info.SetSingleStrip ();
6164
    
6165
0
    }
6166
    
6167
  #ifdef qTestRowInterleave
6168
  
6169
  info.fRowInterleaveFactor = qTestRowInterleave;
6170
  
6171
  #endif
6172
      
6173
  #if defined(qTestSubTileBlockRows) && defined(qTestSubTileBlockCols)
6174
  
6175
  info.fSubTileBlockRows = qTestSubTileBlockRows;
6176
  info.fSubTileBlockCols = qTestSubTileBlockCols;
6177
  
6178
  if (fakeChannels == 2)
6179
    fakeChannels = 4;
6180
  
6181
  #endif
6182
  
6183
  // Basic information.
6184
  
6185
16.7k
  dng_basic_tag_set rawBasic (rawIFD, info);
6186
  
6187
  // JPEG tables, if any.
6188
  
6189
16.7k
  tag_data_ptr tagJPEGTables (tcJPEGTables,
6190
16.7k
                ttUndefined,
6191
16.7k
                0,
6192
16.7k
                NULL);
6193
                
6194
16.7k
  if (rawJPEGImage && rawJPEGImage->fJPEGTables.Get ())
6195
0
    {
6196
    
6197
0
    tagJPEGTables.SetData (rawJPEGImage->fJPEGTables->Buffer ());
6198
    
6199
0
    tagJPEGTables.SetCount (rawJPEGImage->fJPEGTables->LogicalSize ());
6200
    
6201
0
    rawIFD.Add (&tagJPEGTables);
6202
    
6203
0
    }
6204
              
6205
  // DefaultScale tag.
6206
6207
16.7k
  dng_urational defaultScaleData [2];
6208
  
6209
16.7k
  defaultScaleData [0] = negative.DefaultScaleH ();
6210
16.7k
  defaultScaleData [1] = negative.DefaultScaleV ();
6211
                        
6212
16.7k
  tag_urational_ptr tagDefaultScale (tcDefaultScale,
6213
16.7k
                       defaultScaleData,
6214
16.7k
                       2);
6215
6216
16.7k
  rawIFD.Add (&tagDefaultScale);
6217
  
6218
  // Best quality scale tag.
6219
  
6220
16.7k
  tag_urational tagBestQualityScale (tcBestQualityScale,
6221
16.7k
                     negative.BestQualityScale ());
6222
                    
6223
16.7k
  rawIFD.Add (&tagBestQualityScale);
6224
  
6225
  // DefaultCropOrigin tag.
6226
6227
16.7k
  dng_urational defaultCropOriginData [2];
6228
  
6229
16.7k
  defaultCropOriginData [0] = negative.DefaultCropOriginH ();
6230
16.7k
  defaultCropOriginData [1] = negative.DefaultCropOriginV ();
6231
                        
6232
16.7k
  tag_urational_ptr tagDefaultCropOrigin (tcDefaultCropOrigin,
6233
16.7k
                            defaultCropOriginData,
6234
16.7k
                            2);
6235
6236
16.7k
  rawIFD.Add (&tagDefaultCropOrigin);
6237
  
6238
  // DefaultCropSize tag.
6239
6240
16.7k
  dng_urational defaultCropSizeData [2];
6241
  
6242
16.7k
  defaultCropSizeData [0] = negative.DefaultCropSizeH ();
6243
16.7k
  defaultCropSizeData [1] = negative.DefaultCropSizeV ();
6244
                        
6245
16.7k
  tag_urational_ptr tagDefaultCropSize (tcDefaultCropSize,
6246
16.7k
                          defaultCropSizeData,
6247
16.7k
                          2);
6248
6249
16.7k
  rawIFD.Add (&tagDefaultCropSize);
6250
  
6251
  // DefaultUserCrop tag.
6252
6253
16.7k
  dng_urational defaultUserCropData [4];
6254
  
6255
16.7k
  defaultUserCropData [0] = negative.DefaultUserCropT ();
6256
16.7k
  defaultUserCropData [1] = negative.DefaultUserCropL ();
6257
16.7k
  defaultUserCropData [2] = negative.DefaultUserCropB ();
6258
16.7k
  defaultUserCropData [3] = negative.DefaultUserCropR ();
6259
                        
6260
16.7k
  tag_urational_ptr tagDefaultUserCrop (tcDefaultUserCrop,
6261
16.7k
                      defaultUserCropData,
6262
16.7k
                      4);
6263
6264
16.7k
  rawIFD.Add (&tagDefaultUserCrop);
6265
  
6266
  // Range mapping tag set.
6267
  
6268
16.7k
  range_tag_set rangeSet (rawIFD, negative);
6269
              
6270
  // Mosaic pattern information.
6271
  
6272
16.7k
  mosaic_tag_set mosaicSet (rawIFD, mosaicInfo);
6273
      
6274
  // Chroma blur radius.
6275
  
6276
16.7k
  tag_urational tagChromaBlurRadius (tcChromaBlurRadius,
6277
16.7k
                     negative.ChromaBlurRadius ());
6278
                    
6279
16.7k
  if (negative.ChromaBlurRadius ().IsValid ())
6280
1.94k
    {
6281
    
6282
1.94k
    rawIFD.Add (&tagChromaBlurRadius);
6283
    
6284
1.94k
    }
6285
  
6286
  // Anti-alias filter strength.
6287
  
6288
16.7k
  tag_urational tagAntiAliasStrength (tcAntiAliasStrength,
6289
16.7k
                      negative.AntiAliasStrength ());
6290
                    
6291
16.7k
  if (negative.AntiAliasStrength ().IsValid ())
6292
16.6k
    {
6293
    
6294
16.6k
    rawIFD.Add (&tagAntiAliasStrength);
6295
    
6296
16.6k
    }
6297
    
6298
  // Profile and other color related tags.
6299
  
6300
16.7k
  AutoPtr<profile_tag_set> profileSet;
6301
  
6302
16.7k
  AutoPtr<color_tag_set> colorSet;
6303
  
6304
16.7k
  dng_std_vector<uint32> extraProfileIndex;
6305
  
6306
16.7k
  if (!negative.IsMonochrome ())
6307
12.3k
    {
6308
    
6309
12.3k
    const dng_camera_profile &mainProfile (*negative.ComputeCameraProfileToEmbed (constMetadata));
6310
    
6311
12.3k
    profileSet.Reset (new profile_tag_set (mainIFD,
6312
12.3k
                         mainProfile));
6313
    
6314
12.3k
    colorSet.Reset (new color_tag_set (mainIFD,
6315
12.3k
                       negative));
6316
                       
6317
    // Build list of profile indices to include in extra profiles tag.
6318
                       
6319
12.3k
    uint32 profileCount = negative.ProfileCount ();
6320
    
6321
86.1k
    for (uint32 index = 0; index < profileCount; index++)
6322
73.7k
      {
6323
      
6324
73.7k
      const dng_camera_profile &profile (negative.ProfileByIndex (index));
6325
      
6326
73.7k
      if (&profile != &mainProfile)
6327
61.4k
        {
6328
        
6329
61.4k
        if (profile.WasReadFromDNG ())
6330
59.2k
          {
6331
          
6332
59.2k
          extraProfileIndex.push_back (index);
6333
          
6334
59.2k
          }
6335
        
6336
61.4k
        }
6337
        
6338
73.7k
      }
6339
                       
6340
12.3k
    }
6341
    
6342
  // Extra camera profiles tag.
6343
  
6344
16.7k
  uint32 extraProfileCount = (uint32) extraProfileIndex.size ();
6345
  
6346
16.7k
  dng_memory_data extraProfileOffsets (extraProfileCount, sizeof (uint32));
6347
  
6348
16.7k
  tag_uint32_ptr extraProfileTag (tcExtraCameraProfiles,
6349
16.7k
                  extraProfileOffsets.Buffer_uint32 (),
6350
16.7k
                  extraProfileCount);
6351
                  
6352
16.7k
  if (extraProfileCount)
6353
1.01k
    {
6354
    
6355
1.01k
    mainIFD.Add (&extraProfileTag);
6356
6357
1.01k
    }
6358
      
6359
  // Other tags.
6360
  
6361
16.7k
  tag_uint16 tagOrientation (tcOrientation,
6362
16.7k
                   (uint16) negative.ComputeOrientation (constMetadata).GetTIFF ());
6363
                 
6364
16.7k
  mainIFD.Add (&tagOrientation);
6365
6366
16.7k
  tag_srational tagBaselineExposure (tcBaselineExposure,
6367
16.7k
                       negative.BaselineExposureR ());
6368
                      
6369
16.7k
  mainIFD.Add (&tagBaselineExposure);
6370
6371
16.7k
  tag_urational tagBaselineNoise (tcBaselineNoise,
6372
16.7k
                      negative.BaselineNoiseR ());
6373
                      
6374
16.7k
  mainIFD.Add (&tagBaselineNoise);
6375
  
6376
16.7k
  tag_urational tagNoiseReductionApplied (tcNoiseReductionApplied,
6377
16.7k
                      negative.NoiseReductionApplied ());
6378
                      
6379
16.7k
  if (negative.NoiseReductionApplied ().IsValid ())
6380
771
    {
6381
    
6382
771
    mainIFD.Add (&tagNoiseReductionApplied);
6383
  
6384
771
    }
6385
6386
16.7k
  tag_dng_noise_profile tagNoiseProfile (negative.NoiseProfile ());
6387
    
6388
16.7k
  if (negative.NoiseProfile ().IsValidForNegative (negative))
6389
103
    {
6390
6391
103
    mainIFD.Add (&tagNoiseProfile);
6392
    
6393
103
    }
6394
6395
16.7k
  tag_urational tagBaselineSharpness (tcBaselineSharpness,
6396
16.7k
                        negative.BaselineSharpnessR ());
6397
                      
6398
16.7k
  mainIFD.Add (&tagBaselineSharpness);
6399
6400
16.7k
  tag_string tagUniqueName (tcUniqueCameraModel,
6401
16.7k
                  negative.ModelName (),
6402
16.7k
                  true);
6403
                
6404
16.7k
  mainIFD.Add (&tagUniqueName);
6405
  
6406
16.7k
  tag_string tagLocalName (tcLocalizedCameraModel,
6407
16.7k
                 negative.LocalName (),
6408
16.7k
                 false);
6409
               
6410
16.7k
  if (negative.LocalName ().NotEmpty ())
6411
418
    {
6412
    
6413
418
    mainIFD.Add (&tagLocalName);
6414
  
6415
418
    }
6416
  
6417
16.7k
  tag_urational tagShadowScale (tcShadowScale,
6418
16.7k
                    negative.ShadowScaleR ());
6419
                      
6420
16.7k
  mainIFD.Add (&tagShadowScale);
6421
  
6422
16.7k
  tag_uint16 tagColorimetricReference (tcColorimetricReference,
6423
16.7k
                     (uint16) negative.ColorimetricReference ());
6424
                     
6425
16.7k
  if (negative.ColorimetricReference () != crSceneReferred)
6426
2.32k
    {
6427
    
6428
2.32k
    mainIFD.Add (&tagColorimetricReference);
6429
    
6430
2.32k
    }
6431
    
6432
16.7k
  bool useNewDigest = (maxBackwardVersion >= dngVersion_1_4_0_0);
6433
    
6434
16.7k
  if (compression == ccLossyJPEG)
6435
4.36k
    {
6436
    
6437
4.36k
    negative.FindRawJPEGImageDigest (host);
6438
    
6439
4.36k
    }
6440
    
6441
12.3k
  else
6442
12.3k
    {
6443
    
6444
12.3k
    if (useNewDigest)
6445
5.13k
      {
6446
5.13k
      negative.FindNewRawImageDigest (host);
6447
5.13k
      }
6448
7.20k
    else
6449
7.20k
      {
6450
7.20k
      negative.FindRawImageDigest (host);
6451
7.20k
      }
6452
    
6453
12.3k
    }
6454
  
6455
16.7k
  tag_uint8_ptr tagRawImageDigest (useNewDigest ? tcNewRawImageDigest : tcRawImageDigest,
6456
16.7k
                   compression == ccLossyJPEG ?
6457
4.36k
                   negative.RawJPEGImageDigest ().data :
6458
16.7k
                   (useNewDigest ? negative.NewRawImageDigest ().data
6459
12.3k
                           : negative.RawImageDigest    ().data),
6460
16.7k
                     16);
6461
                      
6462
16.7k
  mainIFD.Add (&tagRawImageDigest);
6463
  
6464
16.7k
  negative.FindRawDataUniqueID (host);
6465
  
6466
16.7k
  tag_uint8_ptr tagRawDataUniqueID (tcRawDataUniqueID,
6467
16.7k
                      negative.RawDataUniqueID ().data,
6468
16.7k
                      16);
6469
                      
6470
16.7k
  if (negative.RawDataUniqueID ().IsValid ())
6471
16.7k
    {
6472
                 
6473
16.7k
    mainIFD.Add (&tagRawDataUniqueID);
6474
    
6475
16.7k
    }
6476
  
6477
16.7k
  tag_string tagOriginalRawFileName (tcOriginalRawFileName,
6478
16.7k
                       negative.OriginalRawFileName (),
6479
16.7k
                       false);
6480
               
6481
16.7k
  if (negative.HasOriginalRawFileName ())
6482
243
    {
6483
    
6484
243
    mainIFD.Add (&tagOriginalRawFileName);
6485
  
6486
243
    }
6487
    
6488
16.7k
  negative.FindOriginalRawFileDigest ();
6489
    
6490
16.7k
  tag_data_ptr tagOriginalRawFileData (tcOriginalRawFileData,
6491
16.7k
                     ttUndefined,
6492
16.7k
                     negative.OriginalRawFileDataLength (),
6493
16.7k
                     negative.OriginalRawFileData       ());
6494
                     
6495
16.7k
  tag_uint8_ptr tagOriginalRawFileDigest (tcOriginalRawFileDigest,
6496
16.7k
                      negative.OriginalRawFileDigest ().data,
6497
16.7k
                      16);
6498
                     
6499
16.7k
  if (negative.OriginalRawFileData ())
6500
204
    {
6501
    
6502
204
    mainIFD.Add (&tagOriginalRawFileData);
6503
    
6504
204
    mainIFD.Add (&tagOriginalRawFileDigest);
6505
  
6506
204
    }
6507
6508
  // XMP metadata.
6509
6510
  #if qDNGUseXMP
6511
    
6512
  tag_xmp tagXMP (metadata->GetXMP ());
6513
  
6514
  if (tagXMP.Count ())
6515
    {
6516
    
6517
    mainIFD.Add (&tagXMP);
6518
    
6519
    }
6520
    
6521
  #endif
6522
  
6523
  // Exif tags.
6524
  
6525
16.7k
  exif_tag_set exifSet (mainIFD,
6526
16.7k
              *metadata->GetExif (),
6527
16.7k
              metadata->IsMakerNoteSafe (),
6528
16.7k
              metadata->MakerNoteData   (),
6529
16.7k
              metadata->MakerNoteLength (),
6530
16.7k
              true);
6531
            
6532
  // Private data.
6533
  
6534
16.7k
  tag_uint8_ptr tagPrivateData (tcDNGPrivateData,
6535
16.7k
                    negative.PrivateData (),
6536
16.7k
                    negative.PrivateLength ());
6537
               
6538
16.7k
  if (negative.PrivateLength ())
6539
242
    {
6540
    
6541
242
    mainIFD.Add (&tagPrivateData);
6542
    
6543
242
    }
6544
    
6545
  // Proxy size tags.
6546
  
6547
16.7k
  uint32 originalDefaultFinalSizeData [2];
6548
  
6549
16.7k
  originalDefaultFinalSizeData [0] = negative.OriginalDefaultFinalSize ().h;
6550
16.7k
  originalDefaultFinalSizeData [1] = negative.OriginalDefaultFinalSize ().v;
6551
  
6552
16.7k
  tag_uint32_ptr tagOriginalDefaultFinalSize (tcOriginalDefaultFinalSize,
6553
16.7k
                        originalDefaultFinalSizeData,
6554
16.7k
                        2);
6555
  
6556
16.7k
  if (saveOriginalDefaultFinalSize)
6557
3.42k
    {
6558
    
6559
3.42k
    mainIFD.Add (&tagOriginalDefaultFinalSize);
6560
    
6561
3.42k
    }
6562
    
6563
16.7k
  uint32 originalBestQualityFinalSizeData [2];
6564
  
6565
16.7k
  originalBestQualityFinalSizeData [0] = negative.OriginalBestQualityFinalSize ().h;
6566
16.7k
  originalBestQualityFinalSizeData [1] = negative.OriginalBestQualityFinalSize ().v;
6567
  
6568
16.7k
  tag_uint32_ptr tagOriginalBestQualityFinalSize (tcOriginalBestQualityFinalSize,
6569
16.7k
                          originalBestQualityFinalSizeData,
6570
16.7k
                          2);
6571
  
6572
16.7k
  if (saveOriginalBestQualityFinalSize)
6573
3.52k
    {
6574
    
6575
3.52k
    mainIFD.Add (&tagOriginalBestQualityFinalSize);
6576
    
6577
3.52k
    }
6578
    
6579
16.7k
  dng_urational originalDefaultCropSizeData [2];
6580
  
6581
16.7k
  originalDefaultCropSizeData [0] = negative.OriginalDefaultCropSizeH ();
6582
16.7k
  originalDefaultCropSizeData [1] = negative.OriginalDefaultCropSizeV ();
6583
  
6584
16.7k
  tag_urational_ptr tagOriginalDefaultCropSize (tcOriginalDefaultCropSize,
6585
16.7k
                          originalDefaultCropSizeData,
6586
16.7k
                          2);
6587
  
6588
16.7k
  if (saveOriginalDefaultCropSize)
6589
3.64k
    {
6590
    
6591
3.64k
    mainIFD.Add (&tagOriginalDefaultCropSize);
6592
    
6593
3.64k
    }
6594
    
6595
  // Opcode list 1.
6596
  
6597
16.7k
  AutoPtr<dng_memory_block> opcodeList1Data (negative.OpcodeList1 ().Spool (host));
6598
  
6599
16.7k
  tag_data_ptr tagOpcodeList1 (tcOpcodeList1,
6600
16.7k
                 ttUndefined,
6601
16.7k
                 opcodeList1Data.Get () ? opcodeList1Data->LogicalSize () : 0,
6602
16.7k
                 opcodeList1Data.Get () ? opcodeList1Data->Buffer      () : NULL);
6603
                 
6604
16.7k
  if (opcodeList1Data.Get ())
6605
0
    {
6606
    
6607
0
    rawIFD.Add (&tagOpcodeList1);
6608
    
6609
0
    }
6610
    
6611
  // Opcode list 2.
6612
  
6613
16.7k
  AutoPtr<dng_memory_block> opcodeList2Data (negative.OpcodeList2 ().Spool (host));
6614
  
6615
16.7k
  tag_data_ptr tagOpcodeList2 (tcOpcodeList2,
6616
16.7k
                 ttUndefined,
6617
16.7k
                 opcodeList2Data.Get () ? opcodeList2Data->LogicalSize () : 0,
6618
16.7k
                 opcodeList2Data.Get () ? opcodeList2Data->Buffer      () : NULL);
6619
                 
6620
16.7k
  if (opcodeList2Data.Get ())
6621
4.36k
    {
6622
    
6623
4.36k
    rawIFD.Add (&tagOpcodeList2);
6624
    
6625
4.36k
    }
6626
    
6627
  // Opcode list 3.
6628
  
6629
16.7k
  AutoPtr<dng_memory_block> opcodeList3Data (negative.OpcodeList3 ().Spool (host));
6630
  
6631
16.7k
  tag_data_ptr tagOpcodeList3 (tcOpcodeList3,
6632
16.7k
                 ttUndefined,
6633
16.7k
                 opcodeList3Data.Get () ? opcodeList3Data->LogicalSize () : 0,
6634
16.7k
                 opcodeList3Data.Get () ? opcodeList3Data->Buffer      () : NULL);
6635
                 
6636
16.7k
  if (opcodeList3Data.Get ())
6637
38
    {
6638
    
6639
38
    rawIFD.Add (&tagOpcodeList3);
6640
    
6641
38
    }
6642
    
6643
  // Transparency mask, if any.
6644
  
6645
16.7k
  AutoPtr<dng_ifd> maskInfo;
6646
  
6647
16.7k
  AutoPtr<dng_tiff_directory> maskIFD;
6648
  
6649
16.7k
  AutoPtr<dng_basic_tag_set> maskBasic;
6650
  
6651
16.7k
  if (hasTransparencyMask)
6652
0
    {
6653
    
6654
    // Create mask IFD.
6655
    
6656
0
    maskInfo.Reset (new dng_ifd);
6657
    
6658
0
    maskInfo->fNewSubFileType = sfTransparencyMask;
6659
    
6660
0
    maskInfo->fImageWidth  = negative.RawTransparencyMask ()->Bounds ().W ();
6661
0
    maskInfo->fImageLength = negative.RawTransparencyMask ()->Bounds ().H ();
6662
    
6663
0
    maskInfo->fSamplesPerPixel = 1;
6664
    
6665
0
    maskInfo->fBitsPerSample [0] = negative.RawTransparencyMaskBitDepth ();
6666
    
6667
0
    maskInfo->fPhotometricInterpretation = piTransparencyMask;
6668
    
6669
0
    maskInfo->fCompression = uncompressed ? ccUncompressed  : ccDeflate;
6670
0
    maskInfo->fPredictor   = uncompressed ? cpNullPredictor : cpHorizontalDifference;
6671
    
6672
0
    if (negative.RawTransparencyMask ()->PixelType () == ttFloat)
6673
0
      {
6674
      
6675
0
      maskInfo->fSampleFormat [0] = sfFloatingPoint;
6676
      
6677
0
      if (maskInfo->fCompression == ccDeflate)
6678
0
        {
6679
0
        maskInfo->fPredictor = cpFloatingPoint;
6680
0
        }
6681
      
6682
0
      }
6683
        
6684
0
    if (maskInfo->fCompression == ccDeflate)
6685
0
      {
6686
0
      maskInfo->FindTileSize (512 * 1024);
6687
0
      }
6688
0
    else
6689
0
      {
6690
0
      maskInfo->SetSingleStrip ();
6691
0
      }
6692
      
6693
    // Create mask tiff directory.
6694
      
6695
0
    maskIFD.Reset (new dng_tiff_directory);
6696
    
6697
    // Add mask basic tag set.
6698
    
6699
0
    maskBasic.Reset (new dng_basic_tag_set (*maskIFD, *maskInfo));
6700
        
6701
0
    }
6702
    
6703
  // Add other subfiles.
6704
    
6705
16.7k
  uint32 subFileCount = thumbnail ? 1 : 0;
6706
  
6707
16.7k
  if (hasTransparencyMask)
6708
0
    {
6709
0
    subFileCount++;
6710
0
    }
6711
  
6712
  // Add previews.
6713
  
6714
16.7k
  uint32 previewCount = previewList ? previewList->Count () : 0;
6715
  
6716
16.7k
  AutoPtr<dng_tiff_directory> previewIFD [kMaxDNGPreviews];
6717
  
6718
16.7k
  AutoPtr<dng_basic_tag_set> previewBasic [kMaxDNGPreviews];
6719
  
6720
22.5k
  for (j = 0; j < previewCount; j++)
6721
5.80k
    {
6722
    
6723
5.80k
    if (thumbnail != &previewList->Preview (j))
6724
1.33k
      {
6725
    
6726
1.33k
      previewIFD [j] . Reset (new dng_tiff_directory);
6727
      
6728
1.33k
      previewBasic [j] . Reset (previewList->Preview (j).AddTagSet (*previewIFD [j]));
6729
        
6730
1.33k
      subFileCount++;
6731
      
6732
1.33k
      }
6733
    
6734
5.80k
    }
6735
    
6736
  // And a link to the raw and JPEG image IFDs.
6737
  
6738
16.7k
  uint32 subFileData [kMaxDNGPreviews + 2];
6739
  
6740
16.7k
  tag_uint32_ptr tagSubFile (tcSubIFDs,
6741
16.7k
                 subFileData,
6742
16.7k
                 subFileCount);
6743
                 
6744
16.7k
  if (subFileCount)
6745
4.47k
    {
6746
  
6747
4.47k
    mainIFD.Add (&tagSubFile);
6748
    
6749
4.47k
    }
6750
  
6751
  // Skip past the header and IFDs for now.
6752
  
6753
16.7k
  uint32 currentOffset = 8;
6754
  
6755
16.7k
  currentOffset += mainIFD.Size ();
6756
  
6757
16.7k
  uint32 subFileIndex = 0;
6758
  
6759
16.7k
  if (thumbnail)
6760
4.47k
    {
6761
  
6762
4.47k
    subFileData [subFileIndex++] = currentOffset;
6763
  
6764
4.47k
    currentOffset += rawIFD.Size ();
6765
    
6766
4.47k
    }
6767
    
6768
16.7k
  if (hasTransparencyMask)
6769
0
    {
6770
    
6771
0
    subFileData [subFileIndex++] = currentOffset;
6772
    
6773
0
    currentOffset += maskIFD->Size ();
6774
    
6775
0
    }
6776
  
6777
22.5k
  for (j = 0; j < previewCount; j++)
6778
5.80k
    {
6779
    
6780
5.80k
    if (thumbnail != &previewList->Preview (j))
6781
1.33k
      {
6782
  
6783
1.33k
      subFileData [subFileIndex++] = currentOffset;
6784
6785
1.33k
      currentOffset += previewIFD [j]->Size ();
6786
      
6787
1.33k
      }
6788
    
6789
5.80k
    }
6790
    
6791
16.7k
  exifSet.Locate (currentOffset);
6792
  
6793
16.7k
  currentOffset += exifSet.Size ();
6794
  
6795
16.7k
  stream.SetWritePosition (currentOffset);
6796
  
6797
  // Write the extra profiles.
6798
  
6799
16.7k
  if (extraProfileCount)
6800
1.01k
    {
6801
    
6802
60.3k
    for (j = 0; j < extraProfileCount; j++)
6803
59.2k
      {
6804
      
6805
59.2k
      extraProfileOffsets.Buffer_uint32 () [j] = (uint32) stream.Position ();
6806
      
6807
59.2k
      uint32 index = extraProfileIndex [j];
6808
      
6809
59.2k
      const dng_camera_profile &profile (negative.ProfileByIndex (index));
6810
      
6811
59.2k
      tiff_dng_extended_color_profile extraWriter (profile);
6812
      
6813
59.2k
      extraWriter.Put (stream, false);
6814
      
6815
59.2k
      }
6816
    
6817
1.01k
    }
6818
  
6819
  // Write the thumbnail data.
6820
  
6821
16.7k
  if (thumbnail)
6822
4.47k
    {
6823
  
6824
4.47k
    thumbnail->WriteData (host,
6825
4.47k
                *this,
6826
4.47k
                *thmBasic,
6827
4.47k
                stream);
6828
               
6829
4.47k
    }
6830
  
6831
  // Write the preview data.
6832
  
6833
22.5k
  for (j = 0; j < previewCount; j++)
6834
5.80k
    {
6835
    
6836
5.80k
    if (thumbnail != &previewList->Preview (j))
6837
1.33k
      {
6838
  
6839
1.33k
      previewList->Preview (j).WriteData (host,
6840
1.33k
                        *this,
6841
1.33k
                        *previewBasic [j],
6842
1.33k
                        stream);
6843
                        
6844
1.33k
      }
6845
      
6846
5.80k
    }
6847
    
6848
  // Write the raw data.
6849
  
6850
16.7k
  if (rawJPEGImage)
6851
4.36k
    {
6852
    
6853
4.36k
    uint32 tileCount = info.TilesAcross () *
6854
4.36k
               info.TilesDown   ();
6855
              
6856
19.6k
    for (uint32 tileIndex = 0; tileIndex < tileCount; tileIndex++)
6857
15.3k
      {
6858
      
6859
      // Remember this offset.
6860
      
6861
15.3k
      uint32 tileOffset = (uint32) stream.Position ();
6862
    
6863
15.3k
      rawBasic.SetTileOffset (tileIndex, tileOffset);
6864
      
6865
      // Write JPEG data.
6866
      
6867
15.3k
      stream.Put (rawJPEGImage->fJPEGData [tileIndex]->Buffer      (),
6868
15.3k
            rawJPEGImage->fJPEGData [tileIndex]->LogicalSize ());
6869
              
6870
      // Update tile count.
6871
        
6872
15.3k
      uint32 tileByteCount = (uint32) stream.Position () - tileOffset;
6873
        
6874
15.3k
      rawBasic.SetTileByteCount (tileIndex, tileByteCount);
6875
      
6876
      // Keep the tiles on even byte offsets.
6877
                         
6878
15.3k
      if (tileByteCount & 1)
6879
8.09k
        {
6880
8.09k
        stream.Put_uint8 (0);
6881
8.09k
        }
6882
6883
15.3k
      }
6884
    
6885
4.36k
    }
6886
    
6887
12.3k
  else
6888
12.3k
    {
6889
    
6890
    #if qDNGValidate
6891
    dng_timer timer ("Write raw image time");
6892
    #endif
6893
  
6894
12.3k
    WriteImage (host,
6895
12.3k
          info,
6896
12.3k
          rawBasic,
6897
12.3k
          stream,
6898
12.3k
          rawImage,
6899
12.3k
          fakeChannels);
6900
          
6901
12.3k
    }
6902
    
6903
  // Write transparency mask image.
6904
  
6905
16.7k
  if (hasTransparencyMask)
6906
0
    {
6907
    
6908
    #if qDNGValidate
6909
    dng_timer timer ("Write transparency mask time");
6910
    #endif
6911
  
6912
0
    WriteImage (host,
6913
0
          *maskInfo,
6914
0
          *maskBasic,
6915
0
          stream,
6916
0
          *negative.RawTransparencyMask ());
6917
          
6918
0
    }
6919
          
6920
  // Trim the file to this length.
6921
  
6922
16.7k
  stream.SetLength (stream.Position ());
6923
  
6924
  // DNG has a 4G size limit.
6925
  
6926
16.7k
  if (stream.Length () > 0x0FFFFFFFFL)
6927
0
    {
6928
0
    ThrowImageTooBigDNG ();
6929
0
    }
6930
  
6931
  // Write TIFF Header.
6932
  
6933
16.7k
  stream.SetWritePosition (0);
6934
  
6935
16.7k
  stream.Put_uint16 (stream.BigEndian () ? byteOrderMM : byteOrderII);
6936
  
6937
16.7k
  stream.Put_uint16 (42);
6938
  
6939
16.7k
  stream.Put_uint32 (8);
6940
  
6941
  // Write the IFDs.
6942
  
6943
16.7k
  mainIFD.Put (stream);
6944
  
6945
16.7k
  if (thumbnail)
6946
4.47k
    {
6947
  
6948
4.47k
    rawIFD.Put (stream);
6949
    
6950
4.47k
    }
6951
  
6952
16.7k
  if (hasTransparencyMask)
6953
0
    {
6954
    
6955
0
    maskIFD->Put (stream);
6956
    
6957
0
    }
6958
    
6959
22.5k
  for (j = 0; j < previewCount; j++)
6960
5.80k
    {
6961
    
6962
5.80k
    if (thumbnail != &previewList->Preview (j))
6963
1.33k
      {
6964
  
6965
1.33k
      previewIFD [j]->Put (stream);
6966
      
6967
1.33k
      }
6968
    
6969
5.80k
    }
6970
    
6971
16.7k
  exifSet.Put (stream);
6972
  
6973
16.7k
  stream.Flush ();
6974
  
6975
16.7k
  }
6976
                 
6977
/*****************************************************************************/