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1 /*
2 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3 %                                                                             %
4 %                                                                             %
5 %                                                                             %
6 %                        FFFFF  IIIII  TTTTT  SSSSS                           %
7 %                        F        I      T    SS                              %
8 %                        FFF      I      T     SSS                            %
9 %                        F        I      T       SS                           %
10 %                        F      IIIII    T    SSSSS                           %
11 %                                                                             %
12 %                                                                             %
13 %            Read/Write Flexible Image Transport System Images.               %
14 %                                                                             %
15 %                              Software Design                                %
16 %                                John Cristy                                  %
17 %                                 July 1992                                   %
18 %                                                                             %
19 %                                                                             %
20 %  Copyright 1999-2011 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/attribute.h"
44 #include "MagickCore/blob.h"
45 #include "MagickCore/blob-private.h"
46 #include "MagickCore/cache.h"
47 #include "MagickCore/color-private.h"
48 #include "MagickCore/colorspace.h"
49 #include "MagickCore/colorspace-private.h"
50 #include "MagickCore/constitute.h"
51 #include "MagickCore/exception.h"
52 #include "MagickCore/exception-private.h"
53 #include "MagickCore/image.h"
54 #include "MagickCore/image-private.h"
55 #include "MagickCore/list.h"
56 #include "MagickCore/magick.h"
57 #include "MagickCore/memory_.h"
58 #include "MagickCore/module.h"
59 #include "MagickCore/monitor.h"
60 #include "MagickCore/monitor-private.h"
61 #include "MagickCore/pixel-accessor.h"
62 #include "MagickCore/property.h"
63 #include "MagickCore/quantum-private.h"
64 #include "MagickCore/static.h"
65 #include "MagickCore/statistic.h"
66 #include "MagickCore/string_.h"
67 #include "MagickCore/string-private.h"
68 #include "MagickCore/module.h"
69 \f
70 /*
71   Forward declarations.
72 */
73 #define FITSBlocksize  2880UL
74 \f
75 /*
76   Forward declarations.
77 */
78 static MagickBooleanType
79   WriteFITSImage(const ImageInfo *,Image *,ExceptionInfo *);
80 \f
81 /*
82 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
83 %                                                                             %
84 %                                                                             %
85 %                                                                             %
86 %   I s F I T S                                                               %
87 %                                                                             %
88 %                                                                             %
89 %                                                                             %
90 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
91 %
92 %  IsFITS() returns MagickTrue if the image format type, identified by the
93 %  magick string, is FITS.
94 %
95 %  The format of the IsFITS method is:
96 %
97 %      MagickBooleanType IsFITS(const unsigned char *magick,const size_t length)
98 %
99 %  A description of each parameter follows:
100 %
101 %    o magick: compare image format pattern against these bytes.
102 %
103 %    o length: Specifies the length of the magick string.
104 %
105 */
106 static MagickBooleanType IsFITS(const unsigned char *magick,const size_t length)
107 {
108   if (length < 6)
109     return(MagickFalse);
110   if (LocaleNCompare((const char *) magick,"IT0",3) == 0)
111     return(MagickTrue);
112   if (LocaleNCompare((const char *) magick,"SIMPLE",6) == 0)
113     return(MagickTrue);
114   return(MagickFalse);
115 }
116 \f
117 /*
118 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
119 %                                                                             %
120 %                                                                             %
121 %                                                                             %
122 %   R e a d F I T S I m a g e                                                 %
123 %                                                                             %
124 %                                                                             %
125 %                                                                             %
126 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
127 %
128 %  ReadFITSImage() reads a FITS image file and returns it.  It allocates the
129 %  memory necessary for the new Image structure and returns a pointer to the
130 %  new image.
131 %
132 %  The format of the ReadFITSImage method is:
133 %
134 %      Image *ReadFITSImage(const ImageInfo *image_info,
135 %        ExceptionInfo *exception)
136 %
137 %  A description of each parameter follows:
138 %
139 %    o image_info: the image info.
140 %
141 %    o exception: return any errors or warnings in this structure.
142 %
143 */
144
145 static inline double GetFITSPixel(Image *image,int bits_per_pixel)
146 {
147   switch (image->depth >> 3)
148   {
149     case 1:
150       return((double) ReadBlobByte(image));
151     case 2:
152       return((double) ((short) ReadBlobShort(image)));
153     case 4:
154     {
155       if (bits_per_pixel > 0)
156         return((double) ((int) ReadBlobLong(image)));
157       return((double) ReadBlobFloat(image));
158     }
159     case 8:
160     {
161       if (bits_per_pixel > 0)
162         return((double) ((MagickOffsetType) ReadBlobLongLong(image)));
163     }
164     default:
165       break;
166   }
167   return(ReadBlobDouble(image));
168 }
169
170 static void GetFITSPixelExtrema(Image *image,const int bits_per_pixel,
171   double *minima,double *maxima)
172 {
173   double
174     pixel;
175
176   MagickOffsetType
177     offset;
178
179   MagickSizeType
180     number_pixels;
181
182   register MagickOffsetType
183     i;
184
185   offset=TellBlob(image);
186   number_pixels=(MagickSizeType) image->columns*image->rows;
187   *minima=GetFITSPixel(image,bits_per_pixel);
188   *maxima=(*minima);
189   for (i=1; i < (MagickOffsetType) number_pixels; i++)
190   {
191     pixel=GetFITSPixel(image,bits_per_pixel);
192     if (pixel < *minima)
193       *minima=pixel;
194     if (pixel > *maxima)
195       *maxima=pixel;
196   }
197   (void) SeekBlob(image,offset,SEEK_SET);
198 }
199
200 static inline double GetFITSPixelRange(const size_t depth)
201 {
202   return((double) ((MagickOffsetType) GetQuantumRange(depth)));
203 }
204
205 static void SetFITSUnsignedPixels(const size_t length,
206   const size_t bits_per_pixel,unsigned char *pixels)
207 {
208   register ssize_t
209     i;
210
211   for (i=0; i < (ssize_t) length; i++)
212   {
213     *pixels^=0x80;
214     pixels+=bits_per_pixel >> 3;
215   }
216 }
217
218 static Image *ReadFITSImage(const ImageInfo *image_info,
219   ExceptionInfo *exception)
220 {
221   typedef struct _FITSInfo
222   {
223     MagickBooleanType
224       extend,
225       simple;
226
227     int
228       bits_per_pixel,
229       columns,
230       rows,
231       number_axes,
232       number_planes;
233
234     double
235       min_data,
236       max_data,
237       zero,
238       scale;
239
240     EndianType
241       endian;
242   } FITSInfo;
243
244   char
245     *comment,
246     keyword[9],
247     property[MaxTextExtent],
248     value[73];
249
250   double
251     pixel,
252     scale;
253
254   FITSInfo
255     fits_info;
256
257   Image
258     *image;
259
260   int
261     c;
262
263   MagickBooleanType
264     status;
265
266   MagickSizeType
267     number_pixels;
268
269   register ssize_t
270     i,
271     x;
272
273   register Quantum
274     *q;
275
276   ssize_t
277     count,
278     scene,
279     y;
280
281   /*
282     Open image file.
283   */
284   assert(image_info != (const ImageInfo *) NULL);
285   assert(image_info->signature == MagickSignature);
286   if (image_info->debug != MagickFalse)
287     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",
288       image_info->filename);
289   assert(exception != (ExceptionInfo *) NULL);
290   assert(exception->signature == MagickSignature);
291   image=AcquireImage(image_info);
292   status=OpenBlob(image_info,image,ReadBinaryBlobMode,exception);
293   if (status == MagickFalse)
294     {
295       image=DestroyImageList(image);
296       return((Image *) NULL);
297     }
298   /*
299     Initialize image header.
300   */
301   (void) ResetMagickMemory(&fits_info,0,sizeof(fits_info));
302   fits_info.extend=MagickFalse;
303   fits_info.simple=MagickFalse;
304   fits_info.bits_per_pixel=8;
305   fits_info.columns=1;
306   fits_info.rows=1;
307   fits_info.rows=1;
308   fits_info.number_planes=1;
309   fits_info.min_data=0.0;
310   fits_info.max_data=0.0;
311   fits_info.zero=0.0;
312   fits_info.scale=1.0;
313   fits_info.endian=MSBEndian;
314   /*
315     Decode image header.
316   */
317   for (comment=(char *) NULL; EOFBlob(image) == MagickFalse; )
318   {
319     for ( ; EOFBlob(image) == MagickFalse; )
320     {
321       register char
322         *p;
323
324       count=ReadBlob(image,8,(unsigned char *) keyword);
325       if (count != 8)
326         break;
327       for (i=0; i < 8; i++)
328       {
329         if (isspace((int) ((unsigned char) keyword[i])) != 0)
330           break;
331         keyword[i]=tolower((int) ((unsigned char) keyword[i]));
332       }
333       keyword[i]='\0';
334       count=ReadBlob(image,72,(unsigned char *) value);
335       if (count != 72)
336         break;
337       value[72]='\0';
338       p=value;
339       if (*p == '=')
340         {
341           p+=2;
342           while (isspace((int) ((unsigned char) *p)) != 0)
343             p++;
344         }
345       if (LocaleCompare(keyword,"end") == 0)
346         break;
347       if (LocaleCompare(keyword,"extend") == 0)
348         fits_info.extend=(*p == 'T') || (*p == 't') ? MagickTrue : MagickFalse;
349       if (LocaleCompare(keyword,"simple") == 0)
350         fits_info.simple=(*p == 'T') || (*p == 't') ? MagickTrue : MagickFalse;
351       if (LocaleCompare(keyword,"bitpix") == 0)
352         fits_info.bits_per_pixel=StringToLong(p);
353       if (LocaleCompare(keyword,"naxis") == 0)
354         fits_info.number_axes=StringToLong(p);
355       if (LocaleCompare(keyword,"naxis1") == 0)
356         fits_info.columns=StringToLong(p);
357       if (LocaleCompare(keyword,"naxis2") == 0)
358         fits_info.rows=StringToLong(p);
359       if (LocaleCompare(keyword,"naxis3") == 0)
360         fits_info.number_planes=StringToLong(p);
361       if (LocaleCompare(keyword,"datamax") == 0)
362         fits_info.max_data=InterpretLocaleValue(p,(char **) NULL);
363       if (LocaleCompare(keyword,"datamin") == 0)
364         fits_info.min_data=InterpretLocaleValue(p,(char **) NULL);
365       if (LocaleCompare(keyword,"bzero") == 0)
366         fits_info.zero=InterpretLocaleValue(p,(char **) NULL);
367       if (LocaleCompare(keyword,"bscale") == 0)
368         fits_info.scale=InterpretLocaleValue(p,(char **) NULL);
369       if (LocaleCompare(keyword,"comment") == 0)
370         {
371           if (comment == (char *) NULL)
372             comment=ConstantString(p);
373           else
374             (void) ConcatenateString(&comment,p);
375         }
376       if (LocaleCompare(keyword,"xendian") == 0)
377         {
378           if (LocaleNCompare(p,"big",3) == 0)
379             fits_info.endian=MSBEndian;
380           else
381             fits_info.endian=LSBEndian;
382         }
383       (void) FormatLocaleString(property,MaxTextExtent,"fits:%s",keyword);
384       (void) SetImageProperty(image,property,p);
385     }
386     c=0;
387     while (((TellBlob(image) % FITSBlocksize) != 0) && (c != EOF))
388       c=ReadBlobByte(image);
389     if (fits_info.extend == MagickFalse)
390       break;
391     number_pixels=(MagickSizeType) fits_info.columns*fits_info.rows;
392     if ((fits_info.simple != MagickFalse) && (fits_info.number_axes >= 1) &&
393         (fits_info.number_axes <= 4) && (number_pixels != 0))
394       break;
395   }
396   /*
397     Verify that required image information is defined.
398   */
399   if (comment != (char *) NULL)
400     {
401       (void) SetImageProperty(image,"comment",comment);
402       comment=DestroyString(comment);
403     }
404   if (EOFBlob(image) != MagickFalse)
405     ThrowFileException(exception,CorruptImageError,"UnexpectedEndOfFile",
406       image->filename);
407   number_pixels=(MagickSizeType) fits_info.columns*fits_info.rows;
408   if ((fits_info.simple == MagickFalse) || (fits_info.number_axes < 1) ||
409       (fits_info.number_axes > 4) || (number_pixels == 0))
410     ThrowReaderException(CorruptImageError,"ImageTypeNotSupported");
411   for (scene=0; scene < (ssize_t) fits_info.number_planes; scene++)
412   {
413     image->columns=(size_t) fits_info.columns;
414     image->rows=(size_t) fits_info.rows;
415     image->depth=(size_t) (fits_info.bits_per_pixel < 0 ? -1 : 1)*
416       fits_info.bits_per_pixel;
417     image->endian=fits_info.endian;
418     image->scene=(size_t) scene;
419     if ((image_info->ping != MagickFalse) && (image_info->number_scenes != 0))
420       if (image->scene >= (image_info->scene+image_info->number_scenes-1))
421         break;
422     /*
423       Initialize image structure.
424     */
425     if ((fits_info.min_data != 0.0) || (fits_info.max_data != 0.0))
426       {
427         if ((fits_info.bits_per_pixel != 0) && (fits_info.max_data == 0.0))
428           fits_info.max_data=GetFITSPixelRange((size_t)
429             fits_info.bits_per_pixel);
430       }
431     else
432       GetFITSPixelExtrema(image,fits_info.bits_per_pixel,&fits_info.min_data,
433         &fits_info.max_data);
434     /*
435       Convert FITS pixels to pixel packets.
436     */
437     scale=(double) QuantumRange/(fits_info.scale*(fits_info.max_data-
438       fits_info.min_data)+fits_info.zero);
439     for (y=(ssize_t) image->rows-1; y >= 0; y--)
440     {
441       q=QueueAuthenticPixels(image,0,y,image->columns,1,exception);
442       if (q == (Quantum *) NULL)
443         break;
444       for (x=0; x < (ssize_t) image->columns; x++)
445       {
446         pixel=GetFITSPixel(image,fits_info.bits_per_pixel);
447         SetPixelRed(image,ClampToQuantum(scale*(fits_info.scale*
448           (pixel-fits_info.min_data)+fits_info.zero)),q);
449         SetPixelGreen(image,GetPixelRed(image,q),q);
450         SetPixelBlue(image,GetPixelRed(image,q),q);
451         q+=GetPixelChannels(image);
452       }
453       if (SyncAuthenticPixels(image,exception) == MagickFalse)
454         break;
455       if (image->previous == (Image *) NULL)
456         {
457           status=SetImageProgress(image,LoadImageTag,(MagickOffsetType) y,
458             image->rows);
459           if (status == MagickFalse)
460             break;
461         }
462     }
463     if (EOFBlob(image) != MagickFalse)
464       {
465         ThrowFileException(exception,CorruptImageError,"UnexpectedEndOfFile",
466           image->filename);
467         break;
468       }
469     /*
470       Proceed to next image.
471     */
472     if (image_info->number_scenes != 0)
473       if (image->scene >= (image_info->scene+image_info->number_scenes-1))
474         break;
475     if (scene < (ssize_t) (fits_info.number_planes-1))
476       {
477         /*
478           Allocate next image structure.
479         */
480         AcquireNextImage(image_info,image);
481         if (GetNextImageInList(image) == (Image *) NULL)
482           {
483             image=DestroyImageList(image);
484             return((Image *) NULL);
485           }
486         image=SyncNextImageInList(image);
487         status=SetImageProgress(image,LoadImagesTag,TellBlob(image),
488           GetBlobSize(image));
489         if (status == MagickFalse)
490           break;
491       }
492   }
493   (void) CloseBlob(image);
494   return(GetFirstImageInList(image));
495 }
496 \f
497 /*
498 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
499 %                                                                             %
500 %                                                                             %
501 %                                                                             %
502 %   R e g i s t e r F I T S I m a g e                                         %
503 %                                                                             %
504 %                                                                             %
505 %                                                                             %
506 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
507 %
508 %  RegisterFITSImage() adds attributes for the FITS image format to
509 %  the list of supported formats.  The attributes include the image format
510 %  tag, a method to read and/or write the format, whether the format
511 %  supports the saving of more than one frame to the same file or blob,
512 %  whether the format supports native in-memory I/O, and a brief
513 %  description of the format.
514 %
515 %  The format of the RegisterFITSImage method is:
516 %
517 %      size_t RegisterFITSImage(void)
518 %
519 */
520 ModuleExport size_t RegisterFITSImage(void)
521 {
522   MagickInfo
523     *entry;
524
525   entry=SetMagickInfo("FITS");
526   entry->decoder=(DecodeImageHandler *) ReadFITSImage;
527   entry->encoder=(EncodeImageHandler *) WriteFITSImage;
528   entry->magick=(IsImageFormatHandler *) IsFITS;
529   entry->adjoin=MagickFalse;
530   entry->seekable_stream=MagickTrue;
531   entry->description=ConstantString("Flexible Image Transport System");
532   entry->module=ConstantString("FITS");
533   (void) RegisterMagickInfo(entry);
534   entry=SetMagickInfo("FTS");
535   entry->decoder=(DecodeImageHandler *) ReadFITSImage;
536   entry->encoder=(EncodeImageHandler *) WriteFITSImage;
537   entry->magick=(IsImageFormatHandler *) IsFITS;
538   entry->adjoin=MagickFalse;
539   entry->seekable_stream=MagickTrue;
540   entry->description=ConstantString("Flexible Image Transport System");
541   entry->module=ConstantString("FTS");
542   (void) RegisterMagickInfo(entry);
543   return(MagickImageCoderSignature);
544 }
545 \f
546 /*
547 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
548 %                                                                             %
549 %                                                                             %
550 %                                                                             %
551 %   U n r e g i s t e r F I T S I m a g e                                     %
552 %                                                                             %
553 %                                                                             %
554 %                                                                             %
555 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
556 %
557 %  UnregisterFITSImage() removes format registrations made by the
558 %  FITS module from the list of supported formats.
559 %
560 %  The format of the UnregisterFITSImage method is:
561 %
562 %      UnregisterFITSImage(void)
563 %
564 */
565 ModuleExport void UnregisterFITSImage(void)
566 {
567   (void) UnregisterMagickInfo("FITS");
568   (void) UnregisterMagickInfo("FTS");
569 }
570 \f
571 /*
572 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
573 %                                                                             %
574 %                                                                             %
575 %                                                                             %
576 %   W r i t e F I T S I m a g e                                               %
577 %                                                                             %
578 %                                                                             %
579 %                                                                             %
580 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
581 %
582 %  WriteFITSImage() writes a Flexible Image Transport System image to a
583 %  file as gray scale intensities [0..255].
584 %
585 %  The format of the WriteFITSImage method is:
586 %
587 %      MagickBooleanType WriteFITSImage(const ImageInfo *image_info,
588 %        Image *image,ExceptionInfo *exception)
589 %
590 %  A description of each parameter follows.
591 %
592 %    o image_info: the image info.
593 %
594 %    o image:  The image.
595 %
596 %    o exception: return any errors or warnings in this structure.
597 %
598 */
599 static MagickBooleanType WriteFITSImage(const ImageInfo *image_info,
600   Image *image,ExceptionInfo *exception)
601 {
602   char
603     header[FITSBlocksize],
604     *fits_info;
605
606   MagickBooleanType
607     status;
608
609   QuantumInfo
610     *quantum_info;
611
612   register const Quantum
613     *p;
614
615   size_t
616     length;
617
618   ssize_t
619     count,
620     offset,
621     y;
622
623   unsigned char
624     *pixels;
625
626   /*
627     Open output image file.
628   */
629   assert(image_info != (const ImageInfo *) NULL);
630   assert(image_info->signature == MagickSignature);
631   assert(image != (Image *) NULL);
632   assert(image->signature == MagickSignature);
633   if (image->debug != MagickFalse)
634     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
635   assert(exception != (ExceptionInfo *) NULL);
636   assert(exception->signature == MagickSignature);
637   status=OpenBlob(image_info,image,WriteBinaryBlobMode,exception);
638   if (status == MagickFalse)
639     return(status);
640   if (IsRGBColorspace(image->colorspace) == MagickFalse)
641     (void) TransformImageColorspace(image,RGBColorspace);
642   /*
643     Allocate image memory.
644   */
645   fits_info=(char *) AcquireQuantumMemory(FITSBlocksize,sizeof(*fits_info));
646   if (fits_info == (char *) NULL)
647     ThrowWriterException(ResourceLimitError,"MemoryAllocationFailed");
648   (void) ResetMagickMemory(fits_info,' ',FITSBlocksize*sizeof(*fits_info));
649   /*
650     Initialize image header.
651   */
652   image->depth=GetImageQuantumDepth(image,MagickFalse);
653   quantum_info=AcquireQuantumInfo((const ImageInfo *) NULL,image);
654   if (quantum_info == (QuantumInfo *) NULL)
655     ThrowWriterException(ResourceLimitError,"MemoryAllocationFailed");
656   offset=0;
657   (void) FormatLocaleString(header,FITSBlocksize,
658     "SIMPLE  =                    T");
659   (void) strncpy(fits_info+offset,header,strlen(header));
660   offset+=80;
661   (void) FormatLocaleString(header,FITSBlocksize,"BITPIX  =           %10ld",
662     (long) (quantum_info->format == FloatingPointQuantumFormat ? -1 : 1)*
663     image->depth);
664   (void) strncpy(fits_info+offset,header,strlen(header));
665   offset+=80;
666   (void) FormatLocaleString(header,FITSBlocksize,"NAXIS   =           %10lu",
667     IsImageGray(image,exception) != MagickFalse ? 2UL : 3UL);
668   (void) strncpy(fits_info+offset,header,strlen(header));
669   offset+=80;
670   (void) FormatLocaleString(header,FITSBlocksize,"NAXIS1  =           %10lu",
671     (unsigned long) image->columns);
672   (void) strncpy(fits_info+offset,header,strlen(header));
673   offset+=80;
674   (void) FormatLocaleString(header,FITSBlocksize,"NAXIS2  =           %10lu",
675     (unsigned long) image->rows);
676   (void) strncpy(fits_info+offset,header,strlen(header));
677   offset+=80;
678   if (IsImageGray(image,exception) == MagickFalse)
679     {
680       (void) FormatLocaleString(header,FITSBlocksize,
681         "NAXIS3  =           %10lu",3UL);
682       (void) strncpy(fits_info+offset,header,strlen(header));
683       offset+=80;
684     }
685   (void) FormatLocaleString(header,FITSBlocksize,"BSCALE  =         %E",1.0);
686   (void) strncpy(fits_info+offset,header,strlen(header));
687   offset+=80;
688   (void) FormatLocaleString(header,FITSBlocksize,"BZERO   =         %E",
689     image->depth > 8 ? GetFITSPixelRange(image->depth) : 0.0);
690   (void) strncpy(fits_info+offset,header,strlen(header));
691   offset+=80;
692   (void) FormatLocaleString(header,FITSBlocksize,"DATAMAX =         %E",
693     1.0*((MagickOffsetType) GetQuantumRange(image->depth)));
694   (void) strncpy(fits_info+offset,header,strlen(header));
695   offset+=80;
696   (void) FormatLocaleString(header,FITSBlocksize,"DATAMIN =         %E",0.0);
697   (void) strncpy(fits_info+offset,header,strlen(header));
698   offset+=80;
699   if (image->endian == LSBEndian)
700     {
701       (void) FormatLocaleString(header,FITSBlocksize,"XENDIAN = 'SMALL'");
702       (void) strncpy(fits_info+offset,header,strlen(header));
703       offset+=80;
704     }
705   (void) FormatLocaleString(header,FITSBlocksize,"HISTORY %.72s",
706     GetMagickVersion((size_t *) NULL));
707   (void) strncpy(fits_info+offset,header,strlen(header));
708   offset+=80;
709   (void) strncpy(header,"END",FITSBlocksize);
710   (void) strncpy(fits_info+offset,header,strlen(header));
711   offset+=80;
712   (void) WriteBlob(image,FITSBlocksize,(unsigned char *) fits_info);
713   /*
714     Convert image to fits scale PseudoColor class.
715   */
716   pixels=GetQuantumPixels(quantum_info);
717   if (IsImageGray(image,exception) != MagickFalse)
718     {
719       length=GetQuantumExtent(image,quantum_info,GrayQuantum);
720       for (y=(ssize_t) image->rows-1; y >= 0; y--)
721       {
722         p=GetVirtualPixels(image,0,y,image->columns,1,exception);
723         if (p == (const Quantum *) NULL)
724           break;
725         length=ExportQuantumPixels(image,(CacheView *) NULL,quantum_info,
726           GrayQuantum,pixels,exception);
727         if (image->depth == 16)
728           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
729         if (((image->depth == 32) || (image->depth == 64)) &&
730             (quantum_info->format != FloatingPointQuantumFormat))
731           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
732         count=WriteBlob(image,length,pixels);
733         if (count != (ssize_t) length)
734           break;
735         status=SetImageProgress(image,SaveImageTag,(MagickOffsetType) y,
736           image->rows);
737         if (status == MagickFalse)
738           break;
739       }
740     }
741   else
742     {
743       length=GetQuantumExtent(image,quantum_info,RedQuantum);
744       for (y=(ssize_t) image->rows-1; y >= 0; y--)
745       {
746         p=GetVirtualPixels(image,0,y,image->columns,1,exception);
747         if (p == (const Quantum *) NULL)
748           break;
749         length=ExportQuantumPixels(image,(CacheView *) NULL,quantum_info,
750           RedQuantum,pixels,exception);
751         if (image->depth == 16)
752           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
753         if (((image->depth == 32) || (image->depth == 64)) &&
754             (quantum_info->format != FloatingPointQuantumFormat))
755           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
756         count=WriteBlob(image,length,pixels);
757         if (count != (ssize_t) length)
758           break;
759         status=SetImageProgress(image,SaveImageTag,(MagickOffsetType) y,
760           image->rows);
761         if (status == MagickFalse)
762           break;
763       }
764       length=GetQuantumExtent(image,quantum_info,GreenQuantum);
765       for (y=(ssize_t) image->rows-1; y >= 0; y--)
766       {
767         p=GetVirtualPixels(image,0,y,image->columns,1,exception);
768         if (p == (const Quantum *) NULL)
769           break;
770         length=ExportQuantumPixels(image,(CacheView *) NULL,quantum_info,
771           GreenQuantum,pixels,exception);
772         if (image->depth == 16)
773           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
774         if (((image->depth == 32) || (image->depth == 64)) &&
775             (quantum_info->format != FloatingPointQuantumFormat))
776           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
777         count=WriteBlob(image,length,pixels);
778         if (count != (ssize_t) length)
779           break;
780         status=SetImageProgress(image,SaveImageTag,(MagickOffsetType) y,
781           image->rows);
782         if (status == MagickFalse)
783           break;
784       }
785       length=GetQuantumExtent(image,quantum_info,BlueQuantum);
786       for (y=(ssize_t) image->rows-1; y >= 0; y--)
787       {
788         p=GetVirtualPixels(image,0,y,image->columns,1,exception);
789         if (p == (const Quantum *) NULL)
790           break;
791         length=ExportQuantumPixels(image,(CacheView *) NULL,quantum_info,
792           BlueQuantum,pixels,exception);
793         if (image->depth == 16)
794           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
795         if (((image->depth == 32) || (image->depth == 64)) &&
796             (quantum_info->format != FloatingPointQuantumFormat))
797           SetFITSUnsignedPixels(image->columns,image->depth,pixels);
798         count=WriteBlob(image,length,pixels);
799         if (count != (ssize_t) length)
800           break;
801         status=SetImageProgress(image,SaveImageTag,(MagickOffsetType) y,
802           image->rows);
803         if (status == MagickFalse)
804           break;
805       }
806     }
807   quantum_info=DestroyQuantumInfo(quantum_info);
808   length=(size_t) (FITSBlocksize-TellBlob(image) % FITSBlocksize);
809   if (length != 0)
810     {
811       (void) ResetMagickMemory(fits_info,0,length*sizeof(*fits_info));
812       (void) WriteBlob(image,length,(unsigned char *) fits_info);
813     }
814   fits_info=DestroyString(fits_info);
815   (void) CloseBlob(image);
816   return(MagickTrue);
817 }