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1 /*
2 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3 %                                                                             %
4 %                                                                             %
5 %                                                                             %
6 %                              JJJ  PPPP    222                               %
7 %                               J   P   P  2   2                              %
8 %                               J   PPPP     22                               %
9 %                            J  J   P       2                                 %
10 %                             JJ    P      22222                              %
11 %                                                                             %
12 %                                                                             %
13 %                     Read/Write JPEG-2000 Image Format                       %
14 %                                                                             %
15 %                                   Cristy                                    %
16 %                                Nathan Brown                                 %
17 %                                 June 2001                                   %
18 %                                                                             %
19 %                                                                             %
20 %  Copyright 1999-2015 ImageMagick Studio LLC, a non-profit organization      %
21 %  dedicated to making software imaging solutions freely available.           %
22 %                                                                             %
23 %  You may not use this file except in compliance with the License.  You may  %
24 %  obtain a copy of the License at                                            %
25 %                                                                             %
26 %    http://www.imagemagick.org/script/license.php                            %
27 %                                                                             %
28 %  Unless required by applicable law or agreed to in writing, software        %
29 %  distributed under the License is distributed on an "AS IS" BASIS,          %
30 %  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.   %
31 %  See the License for the specific language governing permissions and        %
32 %  limitations under the License.                                             %
33 %                                                                             %
34 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
35 %
36 %
37 */
38 \f
39 /*
40   Include declarations.
41 */
42 #include "MagickCore/studio.h"
43 #include "MagickCore/artifact.h"
44 #include "MagickCore/attribute.h"
45 #include "MagickCore/blob.h"
46 #include "MagickCore/blob-private.h"
47 #include "MagickCore/cache.h"
48 #include "MagickCore/colorspace.h"
49 #include "MagickCore/colorspace-private.h"
50 #include "MagickCore/color.h"
51 #include "MagickCore/color-private.h"
52 #include "MagickCore/exception.h"
53 #include "MagickCore/exception-private.h"
54 #include "MagickCore/image.h"
55 #include "MagickCore/image-private.h"
56 #include "MagickCore/list.h"
57 #include "MagickCore/magick.h"
58 #include "MagickCore/memory_.h"
59 #include "MagickCore/monitor.h"
60 #include "MagickCore/monitor-private.h"
61 #include "MagickCore/option.h"
62 #include "MagickCore/pixel-accessor.h"
63 #include "MagickCore/profile.h"
64 #include "MagickCore/property.h"
65 #include "MagickCore/quantum-private.h"
66 #include "MagickCore/semaphore.h"
67 #include "MagickCore/static.h"
68 #include "MagickCore/statistic.h"
69 #include "MagickCore/string_.h"
70 #include "MagickCore/string-private.h"
71 #include "MagickCore/module.h"
72 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
73 #include <openjpeg.h>
74 #endif
75 \f
76 /*
77   Forward declarations.
78 */
79 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
80 static MagickBooleanType
81   WriteJP2Image(const ImageInfo *,Image *,ExceptionInfo *);
82 #endif
83 \f
84 /*
85 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
86 %                                                                             %
87 %                                                                             %
88 %                                                                             %
89 %   I s J 2 K                                                                 %
90 %                                                                             %
91 %                                                                             %
92 %                                                                             %
93 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
94 %
95 %  IsJ2K() returns MagickTrue if the image format type, identified by the
96 %  magick string, is J2K.
97 %
98 %  The format of the IsJ2K method is:
99 %
100 %      MagickBooleanType IsJ2K(const unsigned char *magick,const size_t length)
101 %
102 %  A description of each parameter follows:
103 %
104 %    o magick: compare image format pattern against these bytes.
105 %
106 %    o length: Specifies the length of the magick string.
107 %
108 */
109 static MagickBooleanType IsJ2K(const unsigned char *magick,const size_t length)
110 {
111   if (length < 4)
112     return(MagickFalse);
113   if (memcmp(magick,"\xff\x4f\xff\x51",4) == 0)
114     return(MagickTrue);
115   return(MagickFalse);
116 }
117 \f
118 /*
119 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
120 %                                                                             %
121 %                                                                             %
122 %                                                                             %
123 %   I s J P 2                                                                 %
124 %                                                                             %
125 %                                                                             %
126 %                                                                             %
127 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
128 %
129 %  IsJP2() returns MagickTrue if the image format type, identified by the
130 %  magick string, is JP2.
131 %
132 %  The format of the IsJP2 method is:
133 %
134 %      MagickBooleanType IsJP2(const unsigned char *magick,const size_t length)
135 %
136 %  A description of each parameter follows:
137 %
138 %    o magick: compare image format pattern against these bytes.
139 %
140 %    o length: Specifies the length of the magick string.
141 %
142 */
143 static MagickBooleanType IsJP2(const unsigned char *magick,const size_t length)
144 {
145   if (length < 4)
146     return(MagickFalse);
147   if (memcmp(magick,"\x0d\x0a\x87\x0a",4) == 0)
148     return(MagickTrue);
149   if (length < 12)
150     return(MagickFalse);
151   if (memcmp(magick,"\x00\x00\x00\x0c\x6a\x50\x20\x20\x0d\x0a\x87\x0a",12) == 0)
152     return(MagickTrue);
153   return(MagickFalse);
154 }
155 \f
156 /*
157 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
158 %                                                                             %
159 %                                                                             %
160 %                                                                             %
161 %   R e a d J P 2 I m a g e                                                   %
162 %                                                                             %
163 %                                                                             %
164 %                                                                             %
165 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
166 %
167 %  ReadJP2Image() reads a JPEG 2000 Image file (JP2) or JPEG 2000
168 %  codestream (JPC) image file and returns it.  It allocates the memory
169 %  necessary for the new Image structure and returns a pointer to the new
170 %  image or set of images.
171 %
172 %  JP2 support is originally written by Nathan Brown, nathanbrown@letu.edu.
173 %
174 %  The format of the ReadJP2Image method is:
175 %
176 %      Image *ReadJP2Image(const ImageInfo *image_info,
177 %        ExceptionInfo *exception)
178 %
179 %  A description of each parameter follows:
180 %
181 %    o image_info: the image info.
182 %
183 %    o exception: return any errors or warnings in this structure.
184 %
185 */
186 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
187 static void JP2ErrorHandler(const char *message,void *client_data)
188 {
189   ExceptionInfo
190     *exception;
191
192   exception=(ExceptionInfo *) client_data;
193   (void) ThrowMagickException(exception,GetMagickModule(),CoderError,
194     message,"`%s'","OpenJP2");
195 }
196
197 static OPJ_SIZE_T JP2ReadHandler(void *buffer,OPJ_SIZE_T length,void *context)
198 {
199   Image
200     *image;
201
202   ssize_t
203     count;
204
205   image=(Image *) context;
206   count=ReadBlob(image,(ssize_t) length,(unsigned char *) buffer);
207   if (count == 0)
208     return((OPJ_SIZE_T) -1);
209   return((OPJ_SIZE_T) count);
210 }
211
212 static OPJ_BOOL JP2SeekHandler(OPJ_OFF_T offset,void *context)
213 {
214   Image
215     *image;
216
217   image=(Image *) context;
218   return(SeekBlob(image,offset,SEEK_SET) < 0 ? OPJ_FALSE : OPJ_TRUE);
219 }
220
221 static OPJ_OFF_T JP2SkipHandler(OPJ_OFF_T offset,void *context)
222 {
223   Image
224     *image;
225
226   image=(Image *) context;
227   return(SeekBlob(image,offset,SEEK_CUR) < 0 ? -1 : offset);
228 }
229
230 static void JP2WarningHandler(const char *message,void *client_data)
231 {
232   ExceptionInfo
233     *exception;
234
235   exception=(ExceptionInfo *) client_data;
236   (void) ThrowMagickException(exception,GetMagickModule(),CoderWarning,
237     message,"`%s'","OpenJP2");
238 }
239
240 static OPJ_SIZE_T JP2WriteHandler(void *buffer,OPJ_SIZE_T length,void *context)
241 {
242   Image
243     *image;
244
245   ssize_t
246     count;
247
248   image=(Image *) context;
249   count=WriteBlob(image,(ssize_t) length,(unsigned char *) buffer);
250   return((OPJ_SIZE_T) count);
251 }
252
253 static Image *ReadJP2Image(const ImageInfo *image_info,ExceptionInfo *exception)
254 {
255   const char
256     *option;
257
258   Image
259     *image;
260
261   int
262     jp2_status;
263
264   MagickBooleanType
265     status;
266
267   opj_codec_t
268     *jp2_codec;
269
270   opj_codestream_index_t
271     *codestream_index = (opj_codestream_index_t *) NULL;
272
273   opj_dparameters_t
274     parameters;
275
276   opj_image_t
277     *jp2_image;
278
279   opj_stream_t
280     *jp2_stream;
281
282   register ssize_t
283     i;
284
285   ssize_t
286     y;
287
288   unsigned char
289     sans[4];
290
291   /*
292     Open image file.
293   */
294   assert(image_info != (const ImageInfo *) NULL);
295   assert(image_info->signature == MagickCoreSignature);
296   if (image_info->debug != MagickFalse)
297     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",
298       image_info->filename);
299   assert(exception != (ExceptionInfo *) NULL);
300   assert(exception->signature == MagickCoreSignature);
301   image=AcquireImage(image_info,exception);
302   status=OpenBlob(image_info,image,ReadBinaryBlobMode,exception);
303   if (status == MagickFalse)
304     {
305       image=DestroyImageList(image);
306       return((Image *) NULL);
307     }
308   /*
309     Initialize JP2 codec.
310   */
311   if (ReadBlob(image,4,sans) != 4)
312     {
313       image=DestroyImageList(image);
314       return((Image *) NULL);
315     }
316   (void) SeekBlob(image,SEEK_SET,0);
317   if (LocaleCompare(image_info->magick,"JPT") == 0)
318     jp2_codec=opj_create_decompress(OPJ_CODEC_JPT);
319   else
320     if (IsJ2K(sans,4) != MagickFalse)
321       jp2_codec=opj_create_decompress(OPJ_CODEC_J2K);
322     else
323       jp2_codec=opj_create_decompress(OPJ_CODEC_JP2);
324   opj_set_warning_handler(jp2_codec,JP2WarningHandler,exception);
325   opj_set_error_handler(jp2_codec,JP2ErrorHandler,exception);
326   opj_set_default_decoder_parameters(&parameters);
327   option=GetImageOption(image_info,"jp2:reduce-factor");
328   if (option != (const char *) NULL)
329     parameters.cp_reduce=StringToInteger(option);
330   option=GetImageOption(image_info,"jp2:quality-layers");
331   if (option != (const char *) NULL)
332     parameters.cp_layer=StringToInteger(option);
333   if (opj_setup_decoder(jp2_codec,&parameters) == 0)
334     {
335       opj_destroy_codec(jp2_codec);
336       ThrowReaderException(DelegateError,"UnableToManageJP2Stream");
337     }
338   jp2_stream=opj_stream_create(OPJ_J2K_STREAM_CHUNK_SIZE,1);
339   opj_stream_set_read_function(jp2_stream,JP2ReadHandler);
340   opj_stream_set_write_function(jp2_stream,JP2WriteHandler);
341   opj_stream_set_seek_function(jp2_stream,JP2SeekHandler);
342   opj_stream_set_skip_function(jp2_stream,JP2SkipHandler);
343   opj_stream_set_user_data(jp2_stream,image,NULL);
344   opj_stream_set_user_data_length(jp2_stream,GetBlobSize(image));
345   if (opj_read_header(jp2_stream,jp2_codec,&jp2_image) == 0)
346     {
347       opj_stream_destroy(jp2_stream);
348       opj_destroy_codec(jp2_codec);
349       ThrowReaderException(DelegateError,"UnableToDecodeImageFile");
350     }
351   jp2_status=1;
352   if ((image->columns != 0) && (image->rows != 0))
353     {
354       /*
355         Extract an area from the image.
356       */
357       jp2_status=opj_set_decode_area(jp2_codec,jp2_image,
358         (OPJ_INT32) image->extract_info.x,(OPJ_INT32) image->extract_info.y,
359         (OPJ_INT32) (image->extract_info.x+(ssize_t) image->columns),
360         (OPJ_INT32) (image->extract_info.y+(ssize_t) image->rows));
361       if (jp2_status == 0)
362         {
363           opj_stream_destroy(jp2_stream);
364           opj_destroy_codec(jp2_codec);
365           opj_image_destroy(jp2_image);
366           ThrowReaderException(DelegateError,"UnableToDecodeImageFile");
367         }
368     }
369   if (image_info->number_scenes != 0)
370     jp2_status=opj_get_decoded_tile(jp2_codec,jp2_stream,jp2_image,
371       (unsigned int) image_info->scene);
372   else
373     if (image->ping == MagickFalse)
374       {
375         jp2_status=opj_decode(jp2_codec,jp2_stream,jp2_image);
376         if (jp2_status != 0)
377           jp2_status=opj_end_decompress(jp2_codec,jp2_stream);
378       }
379   if (jp2_status == 0)
380     {
381       opj_stream_destroy(jp2_stream);
382       opj_destroy_codec(jp2_codec);
383       opj_image_destroy(jp2_image);
384       ThrowReaderException(DelegateError,"UnableToDecodeImageFile");
385     }
386   opj_stream_destroy(jp2_stream);
387   for (i=0; i < (ssize_t) jp2_image->numcomps; i++)
388   {
389     if ((jp2_image->comps[i].dx == 0) || (jp2_image->comps[i].dy == 0))
390       {
391         opj_destroy_codec(jp2_codec);
392         opj_image_destroy(jp2_image);
393         ThrowReaderException(CoderError,"IrregularChannelGeometryNotSupported")
394       }
395   }
396   /*
397     Convert JP2 image.
398   */
399   image->columns=(size_t) jp2_image->comps[0].w;
400   image->rows=(size_t) jp2_image->comps[0].h;
401   image->depth=jp2_image->comps[0].prec;
402   status=SetImageExtent(image,image->columns,image->rows,exception);
403   if (status == MagickFalse)
404     return(DestroyImageList(image));
405   image->compression=JPEG2000Compression;
406   if (jp2_image->numcomps <= 2)
407     {
408       SetImageColorspace(image,GRAYColorspace,exception);
409       if (jp2_image->numcomps > 1)
410         image->alpha_trait=BlendPixelTrait;
411     }
412   if (jp2_image->numcomps > 3)
413     image->alpha_trait=BlendPixelTrait;
414   for (i=0; i < (ssize_t) jp2_image->numcomps; i++)
415     if ((jp2_image->comps[i].dx > 1) || (jp2_image->comps[i].dy > 1))
416       SetImageColorspace(image,YUVColorspace,exception);
417   if (jp2_image->icc_profile_buf != (unsigned char *) NULL)
418     {
419       StringInfo
420         *profile;
421
422       profile=BlobToStringInfo(jp2_image->icc_profile_buf,
423         jp2_image->icc_profile_len);
424       if (profile != (StringInfo *) NULL)
425         SetImageProfile(image,"icc",profile,exception);
426     }
427   if (image->ping != MagickFalse)
428     {
429       opj_destroy_codec(jp2_codec);
430       opj_image_destroy(jp2_image);
431       opj_destroy_cstr_index(&codestream_index);
432       return(GetFirstImageInList(image));
433     }
434   for (y=0; y < (ssize_t) image->rows; y++)
435   {
436     register Quantum
437       *restrict q;
438
439     register ssize_t
440       x;
441
442     q=GetAuthenticPixels(image,0,y,image->columns,1,exception);
443     if (q == (Quantum *) NULL)
444       break;
445     for (x=0; x < (ssize_t) image->columns; x++)
446     {
447       register ssize_t
448         i;
449
450       for (i=0; i < (ssize_t) jp2_image->numcomps; i++)
451       {
452         double
453           pixel,
454           scale;
455
456         scale=QuantumRange/(double) ((1UL << jp2_image->comps[i].prec)-1);
457         pixel=scale*(jp2_image->comps[i].data[y/jp2_image->comps[i].dy*
458           image->columns/jp2_image->comps[i].dx+x/jp2_image->comps[i].dx]+
459           (jp2_image->comps[i].sgnd ? 1UL << (jp2_image->comps[i].prec-1) : 0));
460         switch (i)
461         {
462            case 0:
463            {
464              SetPixelRed(image,ClampToQuantum(pixel),q);
465              SetPixelGreen(image,ClampToQuantum(pixel),q);
466              SetPixelBlue(image,ClampToQuantum(pixel),q);
467              SetPixelAlpha(image,OpaqueAlpha,q);
468              break;
469            }
470            case 1:
471            {
472              if (jp2_image->numcomps == 2)
473                {
474                  SetPixelAlpha(image,ClampToQuantum(pixel),q);
475                  break;
476                }
477              SetPixelGreen(image,ClampToQuantum(pixel),q);
478              break;
479            }
480            case 2:
481            {
482              SetPixelBlue(image,ClampToQuantum(pixel),q);
483              break;
484            }
485            case 3:
486            {
487              SetPixelAlpha(image,ClampToQuantum(pixel),q);
488              break;
489            }
490         }
491       }
492       q+=GetPixelChannels(image);
493     }
494     if (SyncAuthenticPixels(image,exception) == MagickFalse)
495       break;
496     status=SetImageProgress(image,LoadImageTag,(MagickOffsetType) y,
497       image->rows);
498     if (status == MagickFalse)
499       break;
500   }
501   /*
502     Free resources.
503   */
504   opj_destroy_codec(jp2_codec);
505   opj_image_destroy(jp2_image);
506   opj_destroy_cstr_index(&codestream_index);
507   return(GetFirstImageInList(image));
508 }
509 #endif
510 \f
511 /*
512 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
513 %                                                                             %
514 %                                                                             %
515 %                                                                             %
516 %   R e g i s t e r J P 2 I m a g e                                           %
517 %                                                                             %
518 %                                                                             %
519 %                                                                             %
520 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
521 %
522 %  RegisterJP2Image() adds attributes for the JP2 image format to the list of
523 %  supported formats.  The attributes include the image format tag, a method
524 %  method to read and/or write the format, whether the format supports the
525 %  saving of more than one frame to the same file or blob, whether the format
526 %  supports native in-memory I/O, and a brief description of the format.
527 %
528 %  The format of the RegisterJP2Image method is:
529 %
530 %      size_t RegisterJP2Image(void)
531 %
532 */
533 ModuleExport size_t RegisterJP2Image(void)
534 {
535   char
536     version[MagickPathExtent];
537
538   MagickInfo
539     *entry;
540
541   *version='\0';
542 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
543   (void) FormatLocaleString(version,MagickPathExtent,"%s",opj_version());
544 #endif
545   entry=AcquireMagickInfo("JP2","JP2","JPEG-2000 File Format Syntax");
546   if (*version != '\0')
547     entry->version=ConstantString(version);
548   entry->mime_type=ConstantString("image/jp2");
549   entry->magick=(IsImageFormatHandler *) IsJP2;
550   entry->flags^=CoderAdjoinFlag;
551   entry->flags|=CoderSeekableStreamFlag;
552 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
553   entry->decoder=(DecodeImageHandler *) ReadJP2Image;
554   entry->encoder=(EncodeImageHandler *) WriteJP2Image;
555 #endif
556   (void) RegisterMagickInfo(entry);
557   entry=AcquireMagickInfo("JP2","J2C","JPEG-2000 Code Stream Syntax");
558   if (*version != '\0')
559     entry->version=ConstantString(version);
560   entry->mime_type=ConstantString("image/jp2");
561   entry->magick=(IsImageFormatHandler *) IsJ2K;
562   entry->flags^=CoderAdjoinFlag;
563   entry->flags|=CoderSeekableStreamFlag;
564 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
565   entry->decoder=(DecodeImageHandler *) ReadJP2Image;
566   entry->encoder=(EncodeImageHandler *) WriteJP2Image;
567 #endif
568   (void) RegisterMagickInfo(entry);
569   entry=AcquireMagickInfo("JP2","J2K","JPEG-2000 Code Stream Syntax");
570   if (*version != '\0')
571     entry->version=ConstantString(version);
572   entry->mime_type=ConstantString("image/jp2");
573   entry->magick=(IsImageFormatHandler *) IsJ2K;
574   entry->flags^=CoderAdjoinFlag;
575   entry->flags|=CoderSeekableStreamFlag;
576 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
577   entry->decoder=(DecodeImageHandler *) ReadJP2Image;
578   entry->encoder=(EncodeImageHandler *) WriteJP2Image;
579 #endif
580   (void) RegisterMagickInfo(entry);
581   entry=AcquireMagickInfo("JP2","JPM","JPEG-2000 File Format Syntax");
582   if (*version != '\0')
583     entry->version=ConstantString(version);
584   entry->mime_type=ConstantString("image/jp2");
585   entry->magick=(IsImageFormatHandler *) IsJP2;
586   entry->flags^=CoderAdjoinFlag;
587   entry->flags|=CoderSeekableStreamFlag;
588 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
589   entry->decoder=(DecodeImageHandler *) ReadJP2Image;
590   entry->encoder=(EncodeImageHandler *) WriteJP2Image;
591 #endif
592   (void) RegisterMagickInfo(entry);
593   entry=AcquireMagickInfo("JP2","JPT","JPEG-2000 File Format Syntax");
594   if (*version != '\0')
595     entry->version=ConstantString(version);
596   entry->mime_type=ConstantString("image/jp2");
597   entry->magick=(IsImageFormatHandler *) IsJP2;
598   entry->flags^=CoderAdjoinFlag;
599   entry->flags|=CoderSeekableStreamFlag;
600 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
601   entry->decoder=(DecodeImageHandler *) ReadJP2Image;
602   entry->encoder=(EncodeImageHandler *) WriteJP2Image;
603 #endif
604   (void) RegisterMagickInfo(entry);
605   entry=AcquireMagickInfo("JP2","JPC","JPEG-2000 Code Stream Syntax");
606   if (*version != '\0')
607     entry->version=ConstantString(version);
608   entry->mime_type=ConstantString("image/jp2");
609   entry->magick=(IsImageFormatHandler *) IsJP2;
610   entry->flags^=CoderAdjoinFlag;
611   entry->flags|=CoderSeekableStreamFlag;
612 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
613   entry->decoder=(DecodeImageHandler *) ReadJP2Image;
614   entry->encoder=(EncodeImageHandler *) WriteJP2Image;
615 #endif
616   (void) RegisterMagickInfo(entry);
617   return(MagickImageCoderSignature);
618 }
619 \f
620 /*
621 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
622 %                                                                             %
623 %                                                                             %
624 %                                                                             %
625 %   U n r e g i s t e r J P 2 I m a g e                                       %
626 %                                                                             %
627 %                                                                             %
628 %                                                                             %
629 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
630 %
631 %  UnregisterJP2Image() removes format registrations made by the JP2 module
632 %  from the list of supported formats.
633 %
634 %  The format of the UnregisterJP2Image method is:
635 %
636 %      UnregisterJP2Image(void)
637 %
638 */
639 ModuleExport void UnregisterJP2Image(void)
640 {
641   (void) UnregisterMagickInfo("JPC");
642   (void) UnregisterMagickInfo("JPT");
643   (void) UnregisterMagickInfo("JPM");
644   (void) UnregisterMagickInfo("JP2");
645   (void) UnregisterMagickInfo("J2K");
646 }
647 \f
648 #if defined(MAGICKCORE_LIBOPENJP2_DELEGATE)
649 /*
650 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
651 %                                                                             %
652 %                                                                             %
653 %                                                                             %
654 %   W r i t e J P 2 I m a g e                                                 %
655 %                                                                             %
656 %                                                                             %
657 %                                                                             %
658 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
659 %
660 %  WriteJP2Image() writes an image in the JPEG 2000 image format.
661 %
662 %  JP2 support originally written by Nathan Brown, nathanbrown@letu.edu
663 %
664 %  The format of the WriteJP2Image method is:
665 %
666 %      MagickBooleanType WriteJP2Image(const ImageInfo *image_info,Image *image,
667 %        ExceptionInfo *exception)
668 %
669 %  A description of each parameter follows.
670 %
671 %    o image_info: the image info.
672 %
673 %    o image:  The image.
674 %
675 */
676
677 static void CinemaProfileCompliance(const opj_image_t *jp2_image,
678   opj_cparameters_t *parameters)
679 {
680   /*
681     Digital Cinema 4K profile compliant codestream.
682   */
683   parameters->tile_size_on=OPJ_FALSE;
684   parameters->cp_tdx=1;
685   parameters->cp_tdy=1;
686   parameters->tp_flag='C';
687   parameters->tp_on=1;
688   parameters->cp_tx0=0;
689   parameters->cp_ty0=0;
690   parameters->image_offset_x0=0;
691   parameters->image_offset_y0=0;
692   parameters->cblockw_init=32;
693   parameters->cblockh_init=32;
694   parameters->csty|=0x01;
695   parameters->prog_order=OPJ_CPRL;
696   parameters->roi_compno=(-1);
697   parameters->subsampling_dx=1;
698   parameters->subsampling_dy=1;
699   parameters->irreversible=1;
700   if ((jp2_image->comps[0].w == 2048) || (jp2_image->comps[0].h == 1080))
701     {
702       /*
703         Digital Cinema 2K.
704       */
705       parameters->cp_cinema=OPJ_CINEMA2K_24;
706       parameters->cp_rsiz=OPJ_CINEMA2K;
707       parameters->max_comp_size=1041666;
708       if (parameters->numresolution > 6)
709         parameters->numresolution=6;
710
711     }
712   if ((jp2_image->comps[0].w == 4096) || (jp2_image->comps[0].h == 2160))
713     {
714       /*
715         Digital Cinema 4K.
716       */
717       parameters->cp_cinema=OPJ_CINEMA4K_24;
718       parameters->cp_rsiz=OPJ_CINEMA4K;
719       parameters->max_comp_size=1041666;
720       if (parameters->numresolution < 1)
721         parameters->numresolution=1;
722       if (parameters->numresolution > 7)
723         parameters->numresolution=7;
724       parameters->numpocs=2;
725       parameters->POC[0].tile=1;
726       parameters->POC[0].resno0=0;
727       parameters->POC[0].compno0=0;
728       parameters->POC[0].layno1=1;
729       parameters->POC[0].resno1=parameters->numresolution-1;
730       parameters->POC[0].compno1=3;
731       parameters->POC[0].prg1=OPJ_CPRL;
732       parameters->POC[1].tile=1;
733       parameters->POC[1].resno0=parameters->numresolution-1;
734       parameters->POC[1].compno0=0;
735       parameters->POC[1].layno1=1;
736       parameters->POC[1].resno1=parameters->numresolution;
737       parameters->POC[1].compno1=3;
738       parameters->POC[1].prg1=OPJ_CPRL;
739     }
740   parameters->tcp_numlayers=1;
741   parameters->tcp_rates[0]=((float) (jp2_image->numcomps*jp2_image->comps[0].w*
742     jp2_image->comps[0].h*jp2_image->comps[0].prec))/(parameters->max_comp_size*
743     8*jp2_image->comps[0].dx*jp2_image->comps[0].dy);
744   parameters->cp_disto_alloc=1;
745 }
746
747 static MagickBooleanType WriteJP2Image(const ImageInfo *image_info,Image *image,
748   ExceptionInfo *exception)
749 {
750   const char
751     *option,
752     *property;
753
754   int
755     jp2_status;
756
757   MagickBooleanType
758     status;
759
760   opj_codec_t
761     *jp2_codec;
762
763   OPJ_COLOR_SPACE
764     jp2_colorspace;
765
766   opj_cparameters_t
767     parameters;
768
769   opj_image_cmptparm_t
770     jp2_info[5];
771
772   opj_image_t
773     *jp2_image;
774
775   opj_stream_t
776     *jp2_stream;
777
778   register ssize_t
779     i;
780
781   ssize_t
782     y;
783
784   unsigned int
785     channels;
786
787   /*
788     Open image file.
789   */
790   assert(image_info != (const ImageInfo *) NULL);
791   assert(image_info->signature == MagickCoreSignature);
792   assert(image != (Image *) NULL);
793   assert(image->signature == MagickCoreSignature);
794   if (image->debug != MagickFalse)
795     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
796   assert(exception != (ExceptionInfo *) NULL);
797   assert(exception->signature == MagickCoreSignature);
798   status=OpenBlob(image_info,image,WriteBinaryBlobMode,exception);
799   if (status == MagickFalse)
800     return(status);
801   /*
802     Initialize JPEG 2000 API.
803   */
804   opj_set_default_encoder_parameters(&parameters);
805   for (i=1; i < 6; i++)
806     if (((1 << (i+2)) > (ssize_t) image->columns) &&
807         ((1 << (i+2)) > (ssize_t) image->rows))
808       break;
809   parameters.numresolution=i;
810   option=GetImageOption(image_info,"jp2:number-resolutions");
811   if (option != (const char *) NULL)
812     parameters.numresolution=StringToInteger(option);
813   parameters.tcp_numlayers=1;
814   parameters.tcp_rates[0]=0;  /* lossless */
815   parameters.cp_disto_alloc=1;
816   if ((image_info->quality != 0) && (image_info->quality != 100))
817     {
818       parameters.tcp_distoratio[0]=(double) image_info->quality;
819       parameters.cp_fixed_quality=OPJ_TRUE;
820     }
821   if (image_info->extract != (char *) NULL)
822     {
823       RectangleInfo
824         geometry;
825
826       int
827         flags;
828
829       /*
830         Set tile size.
831       */
832       flags=ParseAbsoluteGeometry(image_info->extract,&geometry);
833       parameters.cp_tdx=(int) geometry.width;
834       parameters.cp_tdy=(int) geometry.width;
835       if ((flags & HeightValue) != 0)
836         parameters.cp_tdy=(int) geometry.height;
837       if ((flags & XValue) != 0)
838         parameters.cp_tx0=geometry.x;
839       if ((flags & YValue) != 0)
840         parameters.cp_ty0=geometry.y;
841       parameters.tile_size_on=OPJ_TRUE;
842     }
843   option=GetImageOption(image_info,"jp2:quality");
844   if (option != (const char *) NULL)
845     {
846       register const char
847         *p;
848
849       /*
850         Set quality PSNR.
851       */
852       p=option;
853       for (i=0; sscanf(p,"%f",&parameters.tcp_distoratio[i]) == 1; i++)
854       {
855         if (i > 100)
856           break;
857         while ((*p != '\0') && (*p != ','))
858           p++;
859         if (*p == '\0')
860           break;
861         p++;
862       }
863       parameters.tcp_numlayers=i+1;
864       parameters.cp_fixed_quality=OPJ_TRUE;
865     }
866   option=GetImageOption(image_info,"jp2:progression-order");
867   if (option != (const char *) NULL)
868     {
869       if (LocaleCompare(option,"LRCP") == 0)
870         parameters.prog_order=OPJ_LRCP;
871       if (LocaleCompare(option,"RLCP") == 0)
872         parameters.prog_order=OPJ_RLCP;
873       if (LocaleCompare(option,"RPCL") == 0)
874         parameters.prog_order=OPJ_RPCL;
875       if (LocaleCompare(option,"PCRL") == 0)
876         parameters.prog_order=OPJ_PCRL;
877       if (LocaleCompare(option,"CPRL") == 0)
878         parameters.prog_order=OPJ_CPRL;
879     }
880   option=GetImageOption(image_info,"jp2:rate");
881   if (option != (const char *) NULL)
882     {
883       register const char
884         *p;
885
886       /*
887         Set compression rate.
888       */
889       p=option;
890       for (i=0; sscanf(p,"%f",&parameters.tcp_rates[i]) == 1; i++)
891       {
892         if (i >= 100)
893           break;
894         while ((*p != '\0') && (*p != ','))
895           p++;
896         if (*p == '\0')
897           break;
898         p++;
899       }
900       parameters.tcp_numlayers=i+1;
901       parameters.cp_disto_alloc=OPJ_TRUE;
902     }
903   if (image_info->sampling_factor != (const char *) NULL)
904     (void) sscanf(image_info->sampling_factor,"%d,%d",
905       &parameters.subsampling_dx,&parameters.subsampling_dy);
906   property=GetImageProperty(image,"comment",exception);
907   if (property != (const char *) NULL)
908     parameters.cp_comment=ConstantString(property);
909   channels=3;
910   jp2_colorspace=OPJ_CLRSPC_SRGB;
911   if (image->colorspace == YUVColorspace)
912     {
913       jp2_colorspace=OPJ_CLRSPC_SYCC;
914       parameters.subsampling_dx=2;
915     }
916   else
917     {
918       (void) TransformImageColorspace(image,sRGBColorspace,exception);
919       if (IsGrayColorspace(image->colorspace) != MagickFalse)
920         {
921           channels=1;
922           jp2_colorspace=OPJ_CLRSPC_GRAY;
923         }
924       if (image->alpha_trait != UndefinedPixelTrait)
925         channels++;
926     }
927   parameters.tcp_mct=channels == 3 ? 1 : 0;
928   ResetMagickMemory(jp2_info,0,sizeof(jp2_info));
929   for (i=0; i < (ssize_t) channels; i++)
930   {
931     jp2_info[i].prec=(OPJ_UINT32) image->depth;
932     jp2_info[i].bpp=(OPJ_UINT32) image->depth;
933     if ((image->depth == 1) &&
934         ((LocaleCompare(image_info->magick,"JPT") == 0) ||
935          (LocaleCompare(image_info->magick,"JP2") == 0)))
936       {
937         jp2_info[i].prec++;  /* OpenJPEG returns exception for depth @ 1 */
938         jp2_info[i].bpp++;
939       }
940     jp2_info[i].sgnd=0;
941     jp2_info[i].dx=parameters.subsampling_dx;
942     jp2_info[i].dy=parameters.subsampling_dy;
943     jp2_info[i].w=(OPJ_UINT32) image->columns;
944     jp2_info[i].h=(OPJ_UINT32) image->rows;
945   }
946   jp2_image=opj_image_create((OPJ_UINT32) channels,jp2_info,jp2_colorspace);
947   if (jp2_image == (opj_image_t *) NULL)
948     ThrowWriterException(DelegateError,"UnableToEncodeImageFile");
949   jp2_image->x0=parameters.image_offset_x0;
950   jp2_image->y0=parameters.image_offset_y0;
951   jp2_image->x1=(unsigned int) (2*parameters.image_offset_x0+(image->columns-1)*
952     parameters.subsampling_dx+1);
953   jp2_image->y1=(unsigned int) (2*parameters.image_offset_y0+(image->rows-1)*
954     parameters.subsampling_dx+1);
955   if ((image->depth == 12) &&
956       ((image->columns == 2048) || (image->rows == 1080) ||
957        (image->columns == 4096) || (image->rows == 2160)))
958     CinemaProfileCompliance(jp2_image,&parameters);
959   if (channels == 4)
960     jp2_image->comps[3].alpha=1;
961   else
962    if ((channels == 2) && (jp2_colorspace == OPJ_CLRSPC_GRAY))
963      jp2_image->comps[1].alpha=1;
964   /*
965     Convert to JP2 pixels.
966   */
967   for (y=0; y < (ssize_t) image->rows; y++)
968   {
969     register const Quantum
970       *p;
971
972     ssize_t
973       x;
974
975     p=GetVirtualPixels(image,0,y,image->columns,1,exception);
976     if (p == (const Quantum *) NULL)
977       break;
978     for (x=0; x < (ssize_t) image->columns; x++)
979     {
980       for (i=0; i < (ssize_t) channels; i++)
981       {
982         double
983           scale;
984
985         register int
986           *q;
987
988         scale=(double) ((1UL << jp2_image->comps[i].prec)-1)/QuantumRange;
989         q=jp2_image->comps[i].data+(y/jp2_image->comps[i].dy*
990           image->columns/jp2_image->comps[i].dx+x/jp2_image->comps[i].dx);
991         switch (i)
992         {
993           case 0:
994           {
995             if (jp2_colorspace == OPJ_CLRSPC_GRAY)
996               {
997                 *q=(int) (scale*GetPixelLuma(image,p));
998                 break;
999               }
1000             *q=(int) (scale*GetPixelRed(image,p));
1001             break;
1002           }
1003           case 1:
1004           {
1005             if (jp2_colorspace == OPJ_CLRSPC_GRAY)
1006               {
1007                 *q=(int) (scale*GetPixelAlpha(image,p));
1008                 break;
1009               }
1010             *q=(int) (scale*GetPixelGreen(image,p));
1011             break;
1012           }
1013           case 2:
1014           {
1015             *q=(int) (scale*GetPixelBlue(image,p));
1016             break;
1017           }
1018           case 3:
1019           {
1020             *q=(int) (scale*GetPixelAlpha(image,p));
1021             break;
1022           }
1023         }
1024       }
1025       p+=GetPixelChannels(image);
1026     }
1027     status=SetImageProgress(image,SaveImageTag,(MagickOffsetType) y,
1028       image->rows);
1029     if (status == MagickFalse)
1030       break;
1031   }
1032   if (LocaleCompare(image_info->magick,"JPT") == 0)
1033     jp2_codec=opj_create_compress(OPJ_CODEC_JPT);
1034   else
1035     if (LocaleCompare(image_info->magick,"J2K") == 0)
1036       jp2_codec=opj_create_compress(OPJ_CODEC_J2K);
1037     else
1038       jp2_codec=opj_create_compress(OPJ_CODEC_JP2);
1039   opj_set_warning_handler(jp2_codec,JP2WarningHandler,exception);
1040   opj_set_error_handler(jp2_codec,JP2ErrorHandler,exception);
1041   opj_setup_encoder(jp2_codec,&parameters,jp2_image);
1042   jp2_stream=opj_stream_create(OPJ_J2K_STREAM_CHUNK_SIZE,OPJ_FALSE);
1043   opj_stream_set_read_function(jp2_stream,JP2ReadHandler);
1044   opj_stream_set_write_function(jp2_stream,JP2WriteHandler);
1045   opj_stream_set_seek_function(jp2_stream,JP2SeekHandler);
1046   opj_stream_set_skip_function(jp2_stream,JP2SkipHandler);
1047   opj_stream_set_user_data(jp2_stream,image,NULL);
1048   if (jp2_stream == (opj_stream_t *) NULL)
1049     ThrowWriterException(DelegateError,"UnableToEncodeImageFile");
1050   jp2_status=opj_start_compress(jp2_codec,jp2_image,jp2_stream);
1051   if (jp2_status == 0)
1052     ThrowWriterException(DelegateError,"UnableToEncodeImageFile");
1053   if ((opj_encode(jp2_codec,jp2_stream) == 0) ||
1054       (opj_end_compress(jp2_codec,jp2_stream) == 0))
1055     {
1056       opj_stream_destroy(jp2_stream);
1057       opj_destroy_codec(jp2_codec);
1058       opj_image_destroy(jp2_image);
1059       ThrowWriterException(DelegateError,"UnableToEncodeImageFile");
1060     }
1061   /*
1062     Free resources.
1063   */
1064   opj_stream_destroy(jp2_stream);
1065   opj_destroy_codec(jp2_codec);
1066   opj_image_destroy(jp2_image);
1067   (void) CloseBlob(image);
1068   return(MagickTrue);
1069 }
1070 #endif