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1 /*
2 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3 %                                                                             %
4 %                                                                             %
5 %                                                                             %
6 %           IIIII  DDDD   EEEEE  N   N  TTTTT  IIIII  FFFFF  Y   Y            %
7 %             I    D   D  E      NN  N    T      I    F       Y Y             %
8 %             I    D   D  EEE    N N N    T      I    FFF      Y              %
9 %             I    D   D  E      N  NN    T      I    F        Y              %
10 %           IIIII  DDDD   EEEEE  N   N    T    IIIII  F        Y              %
11 %                                                                             %
12 %                                                                             %
13 %               Identify an Image Format and Characteristics.                 %
14 %                                                                             %
15 %                           Software Design                                   %
16 %                                Cristy                                       %
17 %                            September 1994                                   %
18 %                                                                             %
19 %                                                                             %
20 %  Copyright 1999-2017 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 %  Identify describes the format and characteristics of one or more image
37 %  files.  It will also report if an image is incomplete or corrupt.
38 %
39 %
40 */
41 \f
42 /*
43   Include declarations.
44 */
45 #include "MagickCore/studio.h"
46 #include "MagickCore/annotate.h"
47 #include "MagickCore/artifact.h"
48 #include "MagickCore/attribute.h"
49 #include "MagickCore/blob.h"
50 #include "MagickCore/cache.h"
51 #include "MagickCore/client.h"
52 #include "MagickCore/coder.h"
53 #include "MagickCore/color.h"
54 #include "MagickCore/configure.h"
55 #include "MagickCore/constitute.h"
56 #include "MagickCore/decorate.h"
57 #include "MagickCore/delegate.h"
58 #include "MagickCore/draw.h"
59 #include "MagickCore/effect.h"
60 #include "MagickCore/exception.h"
61 #include "MagickCore/exception-private.h"
62 #include "MagickCore/feature.h"
63 #include "MagickCore/gem.h"
64 #include "MagickCore/geometry.h"
65 #include "MagickCore/histogram.h"
66 #include "MagickCore/identify.h"
67 #include "MagickCore/image.h"
68 #include "MagickCore/image-private.h"
69 #include "MagickCore/list.h"
70 #include "MagickCore/locale_.h"
71 #include "MagickCore/log.h"
72 #include "MagickCore/magic.h"
73 #include "MagickCore/magick.h"
74 #include "MagickCore/memory_.h"
75 #include "MagickCore/module.h"
76 #include "MagickCore/monitor.h"
77 #include "MagickCore/montage.h"
78 #include "MagickCore/option.h"
79 #include "MagickCore/pixel-accessor.h"
80 #include "MagickCore/prepress.h"
81 #include "MagickCore/profile.h"
82 #include "MagickCore/property.h"
83 #include "MagickCore/quantize.h"
84 #include "MagickCore/quantum.h"
85 #include "MagickCore/random_.h"
86 #include "MagickCore/registry.h"
87 #include "MagickCore/resize.h"
88 #include "MagickCore/resource_.h"
89 #include "MagickCore/signature.h"
90 #include "MagickCore/statistic.h"
91 #include "MagickCore/string_.h"
92 #include "MagickCore/string-private.h"
93 #include "MagickCore/timer.h"
94 #include "MagickCore/token.h"
95 #include "MagickCore/utility.h"
96 #include "MagickCore/utility-private.h"
97 #include "MagickCore/version.h"
98 \f
99 /*
100 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
101 %                                                                             %
102 %                                                                             %
103 %                                                                             %
104 %   I d e n t i f y I m a g e                                                 %
105 %                                                                             %
106 %                                                                             %
107 %                                                                             %
108 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
109 %
110 %  IdentifyImage() identifies an image by printing its attributes to the file.
111 %  Attributes include the image width, height, size, and others.
112 %
113 %  The format of the IdentifyImage method is:
114 %
115 %      MagickBooleanType IdentifyImage(Image *image,FILE *file,
116 %        const MagickBooleanType verbose,ExceptionInfo *exception)
117 %
118 %  A description of each parameter follows:
119 %
120 %    o image: the image.
121 %
122 %    o file: the file, typically stdout.
123 %
124 %    o verbose: A value other than zero prints more detailed information
125 %      about the image.
126 %
127 %    o exception: return any errors or warnings in this structure.
128 %
129 */
130
131 static ChannelStatistics *GetLocationStatistics(const Image *image,
132   const StatisticType type,ExceptionInfo *exception)
133 {
134   ChannelStatistics
135     *channel_statistics;
136
137   register ssize_t
138     i;
139
140   ssize_t
141     y;
142
143   assert(image != (Image *) NULL);
144   assert(image->signature == MagickCoreSignature);
145   if (image->debug != MagickFalse)
146     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
147   channel_statistics=(ChannelStatistics *) AcquireQuantumMemory(
148     MaxPixelChannels+1,sizeof(*channel_statistics));
149   if (channel_statistics == (ChannelStatistics *) NULL)
150     ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
151   (void) ResetMagickMemory(channel_statistics,0,(MaxPixelChannels+1)*
152     sizeof(*channel_statistics));
153   for (i=0; i <= (ssize_t) MaxPixelChannels; i++)
154   {
155     switch (type)
156     {
157       case MaximumStatistic:
158       default:
159       {
160         channel_statistics[i].maxima=(-MagickMaximumValue);
161         break;
162       }
163       case MinimumStatistic:
164       {
165         channel_statistics[i].minima=MagickMaximumValue;
166         break;
167       }
168     }
169   }
170   for (y=0; y < (ssize_t) image->rows; y++)
171   {
172     register const Quantum
173       *magick_restrict p;
174
175     register ssize_t
176       x;
177
178     p=GetVirtualPixels(image,0,y,image->columns,1,exception);
179     if (p == (const Quantum *) NULL)
180       break;
181     for (x=0; x < (ssize_t) image->columns; x++)
182     {
183       register ssize_t
184         i;
185
186       if (GetPixelReadMask(image,p) == 0)
187         {
188           p+=GetPixelChannels(image);
189           continue;
190         }
191       for (i=0; i < (ssize_t) GetPixelChannels(image); i++)
192       {
193         PixelChannel channel=GetPixelChannelChannel(image,i);
194         PixelTrait traits=GetPixelChannelTraits(image,channel);
195         if (traits == UndefinedPixelTrait)
196           continue;
197         switch (type)
198         {
199           case MaximumStatistic:
200           default:
201           {
202             if ((double) p[i] > channel_statistics[channel].maxima)
203               channel_statistics[channel].maxima=(double) p[i];
204             break;
205           }
206           case MinimumStatistic:
207           {
208             if ((double) p[i] < channel_statistics[channel].minima)
209               channel_statistics[channel].minima=(double) p[i];
210             break;
211           }
212         }
213       }
214       p+=GetPixelChannels(image);
215     }
216   }
217   return(channel_statistics);
218 }
219
220 static ssize_t PrintChannelFeatures(FILE *file,const PixelChannel channel,
221   const char *name,const ChannelFeatures *channel_features)
222 {
223 #define PrintFeature(feature) \
224   GetMagickPrecision(),(feature)[0], \
225   GetMagickPrecision(),(feature)[1], \
226   GetMagickPrecision(),(feature)[2], \
227   GetMagickPrecision(),(feature)[3], \
228   GetMagickPrecision(),((feature)[0]+(feature)[1]+(feature)[2]+(feature)[3])/4.0 \
229
230 #define FeaturesFormat "    %s:\n" \
231   "      Angular Second Moment:\n" \
232   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
233   "      Contrast:\n" \
234   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
235   "      Correlation:\n" \
236   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
237   "      Sum of Squares Variance:\n" \
238   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
239   "      Inverse Difference Moment:\n" \
240   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
241   "      Sum Average:\n" \
242   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
243   "      Sum Variance:\n" \
244   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
245   "      Sum Entropy:\n" \
246   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
247   "      Entropy:\n" \
248   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
249   "      Difference Variance:\n" \
250   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
251   "      Difference Entropy:\n" \
252   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
253   "      Information Measure of Correlation 1:\n" \
254   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
255   "      Information Measure of Correlation 2:\n" \
256   "        %.*g, %.*g, %.*g, %.*g, %.*g\n" \
257   "      Maximum Correlation Coefficient:\n" \
258   "        %.*g, %.*g, %.*g, %.*g, %.*g\n"
259
260   ssize_t
261     n;
262
263   n=FormatLocaleFile(file,FeaturesFormat,name,
264     PrintFeature(channel_features[channel].angular_second_moment),
265     PrintFeature(channel_features[channel].contrast),
266     PrintFeature(channel_features[channel].correlation),
267     PrintFeature(channel_features[channel].variance_sum_of_squares),
268     PrintFeature(channel_features[channel].inverse_difference_moment),
269     PrintFeature(channel_features[channel].sum_average),
270     PrintFeature(channel_features[channel].sum_variance),
271     PrintFeature(channel_features[channel].sum_entropy),
272     PrintFeature(channel_features[channel].entropy),
273     PrintFeature(channel_features[channel].difference_variance),
274     PrintFeature(channel_features[channel].difference_entropy),
275     PrintFeature(channel_features[channel].measure_of_correlation_1),
276     PrintFeature(channel_features[channel].measure_of_correlation_2),
277     PrintFeature(channel_features[channel].maximum_correlation_coefficient));
278   return(n);
279 }
280
281 static ssize_t PrintChannelLocations(FILE *file,const Image *image,
282   const PixelChannel channel,const char *name,const StatisticType type,
283   const size_t max_locations,const ChannelStatistics *channel_statistics)
284 {
285   double
286     target;
287
288   ExceptionInfo
289     *exception;
290
291   ssize_t
292     n,
293     y;
294
295   switch (type)
296   {
297     case MaximumStatistic:
298     default:
299     {
300       target=channel_statistics[channel].maxima;
301       break;
302     }
303     case MinimumStatistic:
304     {
305       target=channel_statistics[channel].minima;
306       break;
307     }
308   }
309   (void) FormatLocaleFile(file,"  %s: %.*g (%.*g)",name,GetMagickPrecision(),
310     target,GetMagickPrecision(),QuantumScale*target);
311   exception=AcquireExceptionInfo();
312   n=0;
313   for (y=0; y < (ssize_t) image->rows; y++)
314   {
315     register const Quantum
316       *p;
317
318     ssize_t
319       offset,
320       x;
321
322     p=GetVirtualPixels(image,0,y,image->columns,1,exception);
323     if (p == (const Quantum *) NULL)
324       break;
325     for (x=0; x < (ssize_t) image->columns; x++)
326     {
327       MagickBooleanType
328         match;
329
330       PixelTrait traits=GetPixelChannelTraits(image,channel);
331       if (traits == UndefinedPixelTrait)
332         continue;
333       offset=GetPixelChannelOffset(image,channel);
334       match=fabs((double) (p[offset]-target)) < 0.5 ? MagickTrue : MagickFalse;
335       if (match != MagickFalse)
336         {
337           if ((max_locations != 0) && (n >= (ssize_t) max_locations))
338             break;
339           (void) FormatLocaleFile(file," %.20g,%.20g",(double) x,(double) y);
340           n++;
341         }
342       p+=GetPixelChannels(image);
343     }
344     if (x < (ssize_t) image->columns)
345       break;
346   }
347   (void) FormatLocaleFile(file,"\n");
348   return(n);
349 }
350
351 static ssize_t PrintChannelMoments(FILE *file,const PixelChannel channel,
352   const char *name,const double scale,const ChannelMoments *channel_moments)
353 {
354   double
355     powers[MaximumNumberOfImageMoments] =
356       { 1.0, 2.0, 3.0, 3.0, 6.0, 4.0, 6.0, 4.0 };
357
358   register ssize_t
359     i;
360
361   ssize_t
362     n;
363
364   n=FormatLocaleFile(file,"    %s:\n",name);
365   n+=FormatLocaleFile(file,"      Centroid: %.*g,%.*g\n",
366     GetMagickPrecision(),channel_moments[channel].centroid.x,
367     GetMagickPrecision(),channel_moments[channel].centroid.y);
368   n+=FormatLocaleFile(file,"      Ellipse Semi-Major/Minor axis: %.*g,%.*g\n",
369     GetMagickPrecision(),channel_moments[channel].ellipse_axis.x,
370     GetMagickPrecision(),channel_moments[channel].ellipse_axis.y);
371   n+=FormatLocaleFile(file,"      Ellipse angle: %.*g\n",
372     GetMagickPrecision(),channel_moments[channel].ellipse_angle);
373   n+=FormatLocaleFile(file,"      Ellipse eccentricity: %.*g\n",
374     GetMagickPrecision(),channel_moments[channel].ellipse_eccentricity);
375   n+=FormatLocaleFile(file,"      Ellipse intensity: %.*g (%.*g)\n",
376     GetMagickPrecision(),pow(scale,powers[0])*
377     channel_moments[channel].ellipse_intensity,GetMagickPrecision(),
378     channel_moments[channel].ellipse_intensity);
379   for (i=0; i < MaximumNumberOfImageMoments; i++)
380     n+=FormatLocaleFile(file,"      I%.20g: %.*g (%.*g)\n",i+1.0,
381       GetMagickPrecision(),channel_moments[channel].invariant[i]/pow(scale,
382       powers[i]),GetMagickPrecision(),channel_moments[channel].invariant[i]);
383   return(n);
384 }
385
386 static ssize_t PrintChannelPerceptualHash(Image *image,FILE *file,
387   const ChannelPerceptualHash *channel_phash)
388 {
389   register ssize_t
390     i;
391
392   ssize_t
393     n;
394
395   (void) FormatLocaleFile(file,"  Channel perceptual hash: ");
396   for (i=0; i < (ssize_t) channel_phash[0].number_colorspaces; i++)
397   {
398     (void) FormatLocaleFile(file,"%s",CommandOptionToMnemonic(
399       MagickColorspaceOptions,(ssize_t) channel_phash[0].colorspace[i]));
400     if (i < (ssize_t) (channel_phash[0].number_colorspaces-1))
401       (void) FormatLocaleFile(file,", ");
402   }
403   (void) FormatLocaleFile(file,"\n");
404   n=0;
405   for (i=0; i < (ssize_t) GetPixelChannels(image); i++)
406   {
407     register ssize_t
408       j;
409
410     PixelChannel channel=GetPixelChannelChannel(image,i);
411     if (channel == IndexPixelChannel)
412       continue;
413     PixelTrait traits=GetPixelChannelTraits(image,channel);
414     if (traits == UndefinedPixelTrait)
415       continue;
416     n=FormatLocaleFile(file,"    Channel %.20g:\n",(double) channel);
417     for (j=0; j < MaximumNumberOfPerceptualHashes; j++)
418     {
419       register ssize_t
420         k;
421
422       n+=FormatLocaleFile(file,"      PH%.20g: ",(double) j+1);
423       for (k=0; k < (ssize_t) channel_phash[0].number_colorspaces; k++)
424       {
425         n+=FormatLocaleFile(file,"%.*g",GetMagickPrecision(),
426           channel_phash[channel].phash[k][j]);
427         if (k < (ssize_t) (channel_phash[0].number_colorspaces-1))
428           n+=FormatLocaleFile(file,", ");
429       }
430       n+=FormatLocaleFile(file,"\n");
431     }
432   }
433   return(n);
434 }
435
436 static ssize_t PrintChannelStatistics(FILE *file,const PixelChannel channel,
437   const char *name,const double scale,
438   const ChannelStatistics *channel_statistics)
439 {
440 #define StatisticsFormat "    %s:\n      min: " QuantumFormat  \
441   " (%g)\n      max: " QuantumFormat " (%g)\n"  \
442   "      mean: %g (%g)\n      standard deviation: %g (%g)\n"  \
443   "      kurtosis: %g\n      skewness: %g\n      entropy: %g\n"
444
445   ssize_t
446     n;
447
448   n=FormatLocaleFile(file,StatisticsFormat,name,ClampToQuantum((MagickRealType)
449     (scale*channel_statistics[channel].minima)),
450     channel_statistics[channel].minima/(double) QuantumRange,ClampToQuantum(
451     (MagickRealType) (scale*channel_statistics[channel].maxima)),
452     channel_statistics[channel].maxima/(double) QuantumRange,scale*
453     channel_statistics[channel].mean,channel_statistics[channel].mean/(double)
454     QuantumRange,scale*channel_statistics[channel].standard_deviation,
455     channel_statistics[channel].standard_deviation/(double) QuantumRange,
456     channel_statistics[channel].kurtosis,channel_statistics[channel].skewness,
457     channel_statistics[channel].entropy);
458   return(n);
459 }
460
461 MagickExport MagickBooleanType IdentifyImage(Image *image,FILE *file,
462   const MagickBooleanType verbose,ExceptionInfo *exception)
463 {
464   char
465     color[MagickPathExtent],
466     format[MagickPathExtent],
467     key[MagickPathExtent];
468
469   ChannelFeatures
470     *channel_features;
471
472   ChannelMoments
473     *channel_moments;
474
475   ChannelPerceptualHash
476     *channel_phash;
477
478   ChannelStatistics
479     *channel_statistics;
480
481   ColorspaceType
482     colorspace;
483
484   const char
485     *artifact,
486     *locate,
487     *name,
488     *property,
489     *registry,
490     *value;
491
492   const MagickInfo
493     *magick_info;
494
495   double
496     elapsed_time,
497     scale,
498     user_time;
499
500   ImageType
501     base_type,
502     type;
503
504   MagickBooleanType
505     ping;
506
507   register const Quantum
508     *p;
509
510   register ssize_t
511     i,
512     x;
513
514   size_t
515     distance;
516
517   ssize_t
518     y;
519
520   assert(image != (Image *) NULL);
521   assert(image->signature == MagickCoreSignature);
522   if (image->debug != MagickFalse)
523     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
524   if (file == (FILE *) NULL)
525     file=stdout;
526   locate=GetImageArtifact(image,"identify:locate");
527   if (locate != (const char *) NULL)
528     {
529       const char
530         *limit;
531
532       size_t
533         max_locations;
534
535       StatisticType
536         statistic_type;
537
538       /*
539         Display minimum, maximum, or mean pixel locations.
540       */
541       statistic_type=(StatisticType) ParseCommandOption(MagickStatisticOptions,
542         MagickFalse,locate);
543       limit=GetImageArtifact(image,"identify:limit");
544       max_locations=0;
545       if (limit != (const char *) NULL)
546         max_locations=StringToUnsignedLong(limit);
547       channel_statistics=GetLocationStatistics(image,statistic_type,exception);
548       if (channel_statistics == (ChannelStatistics *) NULL)
549         return(MagickFalse);
550       (void) FormatLocaleFile(file,"Channel %s locations:\n",locate);
551       colorspace=image->colorspace;
552       type=IdentifyImageType(image,exception);
553       if ((type == BilevelType) || (type == GrayscaleType) ||
554           (type == GrayscaleAlphaType))
555         colorspace=GRAYColorspace;
556       switch (colorspace)
557       {
558         case RGBColorspace:
559         default:
560         {
561           (void) PrintChannelLocations(file,image,RedPixelChannel,"Red",
562             statistic_type,max_locations,channel_statistics);
563           (void) PrintChannelLocations(file,image,GreenPixelChannel,"Green",
564             statistic_type,max_locations,channel_statistics);
565           (void) PrintChannelLocations(file,image,BluePixelChannel,"Blue",
566             statistic_type,max_locations,channel_statistics);
567           break;
568         }
569         case CMYKColorspace:
570         {
571           (void) PrintChannelLocations(file,image,CyanPixelChannel,"Cyan",
572             statistic_type,max_locations,channel_statistics);
573           (void) PrintChannelLocations(file,image,MagentaPixelChannel,"Magenta",
574             statistic_type,max_locations,channel_statistics);
575           (void) PrintChannelLocations(file,image,YellowPixelChannel,"Yellow",
576             statistic_type,max_locations,channel_statistics);
577           (void) PrintChannelLocations(file,image,BlackPixelChannel,"Black",
578             statistic_type,max_locations,channel_statistics);
579           break;
580         }
581         case GRAYColorspace:
582         {
583           (void) PrintChannelLocations(file,image,GrayPixelChannel,"Gray",
584             statistic_type,max_locations,channel_statistics);
585           break;
586         }
587       }
588       if (image->alpha_trait != UndefinedPixelTrait)
589         (void) PrintChannelLocations(file,image,AlphaPixelChannel,"Alpha",
590           statistic_type,max_locations,channel_statistics);
591       channel_statistics=(ChannelStatistics *) RelinquishMagickMemory(
592         channel_statistics);
593       return(ferror(file) != 0 ? MagickFalse : MagickTrue);
594     }
595   *format='\0';
596   elapsed_time=GetElapsedTime(&image->timer);
597   user_time=GetUserTime(&image->timer);
598   GetTimerInfo(&image->timer);
599   if (verbose == MagickFalse)
600     {
601       /*
602         Display summary info about the image.
603       */
604       if (*image->magick_filename != '\0')
605         if (LocaleCompare(image->magick_filename,image->filename) != 0)
606           (void) FormatLocaleFile(file,"%s=>",image->magick_filename);
607        if ((GetPreviousImageInList(image) == (Image *) NULL) &&
608            (GetNextImageInList(image) == (Image *) NULL) &&
609            (image->scene == 0))
610         (void) FormatLocaleFile(file,"%s ",image->filename);
611       else
612         (void) FormatLocaleFile(file,"%s[%.20g] ",image->filename,(double)
613           image->scene);
614       (void) FormatLocaleFile(file,"%s ",image->magick);
615       if ((image->magick_columns != 0) || (image->magick_rows != 0))
616         if ((image->magick_columns != image->columns) ||
617             (image->magick_rows != image->rows))
618           (void) FormatLocaleFile(file,"%.20gx%.20g=>",(double)
619             image->magick_columns,(double) image->magick_rows);
620       (void) FormatLocaleFile(file,"%.20gx%.20g ",(double) image->columns,
621         (double) image->rows);
622       if ((image->page.width != 0) || (image->page.height != 0) ||
623           (image->page.x != 0) || (image->page.y != 0))
624         (void) FormatLocaleFile(file,"%.20gx%.20g%+.20g%+.20g ",(double)
625           image->page.width,(double) image->page.height,(double) image->page.x,
626           (double) image->page.y);
627       (void) FormatLocaleFile(file,"%.20g-bit ",(double) image->depth);
628       if (image->type != UndefinedType)
629         (void) FormatLocaleFile(file,"%s ",CommandOptionToMnemonic(
630           MagickTypeOptions,(ssize_t) image->type));
631       if (image->colorspace != UndefinedColorspace)
632         (void) FormatLocaleFile(file,"%s ",CommandOptionToMnemonic(
633           MagickColorspaceOptions,(ssize_t) image->colorspace));
634       if (image->storage_class == DirectClass)
635         {
636           if (image->total_colors != 0)
637             {
638               (void) FormatMagickSize(image->total_colors,MagickFalse,"B",
639                 MagickPathExtent,format);
640               (void) FormatLocaleFile(file,"%s ",format);
641             }
642         }
643       else
644         if (image->total_colors <= image->colors)
645           (void) FormatLocaleFile(file,"%.20gc ",(double)
646             image->colors);
647         else
648           (void) FormatLocaleFile(file,"%.20g=>%.20gc ",(double)
649             image->total_colors,(double) image->colors);
650       if (image->error.mean_error_per_pixel != 0.0)
651         (void) FormatLocaleFile(file,"%.20g/%f/%fdb ",(double)
652           (image->error.mean_error_per_pixel+0.5),
653           image->error.normalized_mean_error,
654           image->error.normalized_maximum_error);
655       if (GetBlobSize(image) != 0)
656         {
657           (void) FormatMagickSize(GetBlobSize(image),MagickFalse,"B",
658             MagickPathExtent,format);
659           (void) FormatLocaleFile(file,"%s ",format);
660         }
661       (void) FormatLocaleFile(file,"%0.3fu %lu:%02lu.%03lu",user_time,
662         (unsigned long) (elapsed_time/60.0),(unsigned long) floor(fmod(
663         elapsed_time,60.0)),(unsigned long) (1000.0*(elapsed_time-
664         floor(elapsed_time))));
665       (void) FormatLocaleFile(file,"\n");
666       (void) fflush(file);
667       return(ferror(file) != 0 ? MagickFalse : MagickTrue);
668     }
669   /*
670     Display verbose info about the image.
671   */
672   colorspace=image->colorspace;
673   type=IdentifyImageType(image,exception);
674   if ((type == BilevelType) || (type == GrayscaleType) ||
675       (type == GrayscaleAlphaType))
676     colorspace=GRAYColorspace;
677   p=GetVirtualPixels(image,0,0,1,1,exception);
678   ping=p == (const Quantum *) NULL ? MagickTrue : MagickFalse;
679   (void) SignatureImage(image,exception);
680   (void) FormatLocaleFile(file,"Image: %s\n",image->filename);
681   if (*image->magick_filename != '\0')
682     if (LocaleCompare(image->magick_filename,image->filename) != 0)
683       {
684         char
685           filename[MagickPathExtent];
686
687         GetPathComponent(image->magick_filename,TailPath,filename);
688         (void) FormatLocaleFile(file,"  Base filename: %s\n",filename);
689       }
690   magick_info=GetMagickInfo(image->magick,exception);
691   if ((magick_info == (const MagickInfo *) NULL) ||
692       (GetMagickDescription(magick_info) == (const char *) NULL))
693     (void) FormatLocaleFile(file,"  Format: %s\n",image->magick);
694   else
695     (void) FormatLocaleFile(file,"  Format: %s (%s)\n",image->magick,
696       GetMagickDescription(magick_info));
697   if ((magick_info != (const MagickInfo *) NULL) &&
698       (GetMagickMimeType(magick_info) != (const char *) NULL))
699     (void) FormatLocaleFile(file,"  Mime type: %s\n",GetMagickMimeType(
700       magick_info));
701   (void) FormatLocaleFile(file,"  Class: %s\n",CommandOptionToMnemonic(
702     MagickClassOptions,(ssize_t) image->storage_class));
703   (void) FormatLocaleFile(file,"  Geometry: %.20gx%.20g%+.20g%+.20g\n",(double)
704     image->columns,(double) image->rows,(double) image->tile_offset.x,(double)
705     image->tile_offset.y);
706   if ((image->magick_columns != 0) || (image->magick_rows != 0))
707     if ((image->magick_columns != image->columns) ||
708         (image->magick_rows != image->rows))
709       (void) FormatLocaleFile(file,"  Base geometry: %.20gx%.20g\n",(double)
710         image->magick_columns,(double) image->magick_rows);
711   if ((image->resolution.x != 0.0) && (image->resolution.y != 0.0))
712     {
713       (void) FormatLocaleFile(file,"  Resolution: %gx%g\n",image->resolution.x,
714         image->resolution.y);
715       (void) FormatLocaleFile(file,"  Print size: %gx%g\n",(double)
716         image->columns/image->resolution.x,(double) image->rows/
717         image->resolution.y);
718     }
719   (void) FormatLocaleFile(file,"  Units: %s\n",CommandOptionToMnemonic(
720     MagickResolutionOptions,(ssize_t) image->units));
721   (void) FormatLocaleFile(file,"  Type: %s\n",CommandOptionToMnemonic(
722     MagickTypeOptions,(ssize_t) type));
723   base_type=GetImageType(image);
724   if (type != base_type)
725     (void) FormatLocaleFile(file,"  Base type: %s\n",CommandOptionToMnemonic(
726       MagickTypeOptions,(ssize_t) base_type));
727   (void) FormatLocaleFile(file,"  Endianess: %s\n",CommandOptionToMnemonic(
728     MagickEndianOptions,(ssize_t) image->endian));
729   /*
730     Detail channel depth and extrema.
731   */
732   (void) FormatLocaleFile(file,"  Colorspace: %s\n",CommandOptionToMnemonic(
733     MagickColorspaceOptions,(ssize_t) image->colorspace));
734   channel_statistics=(ChannelStatistics *) NULL;
735   channel_moments=(ChannelMoments *) NULL;
736   channel_phash=(ChannelPerceptualHash *) NULL;
737   channel_features=(ChannelFeatures *) NULL;
738   scale=1.0;
739   if (ping == MagickFalse)
740     {
741       size_t
742         depth;
743
744       channel_statistics=GetImageStatistics(image,exception);
745       if (channel_statistics == (ChannelStatistics *) NULL)
746         return(MagickFalse);
747       artifact=GetImageArtifact(image,"identify:moments");
748       if (artifact != (const char *) NULL)
749         {
750           channel_moments=GetImageMoments(image,exception);
751           channel_phash=GetImagePerceptualHash(image,exception);
752         }
753       artifact=GetImageArtifact(image,"identify:features");
754       if (artifact != (const char *) NULL)
755         {
756           distance=StringToUnsignedLong(artifact);
757           channel_features=GetImageFeatures(image,distance,exception);
758         }
759       depth=GetImageDepth(image,exception);
760       if (image->depth == depth)
761         (void) FormatLocaleFile(file,"  Depth: %.20g-bit\n",(double)
762           image->depth);
763       else
764         (void) FormatLocaleFile(file,"  Depth: %.20g/%.20g-bit\n",(double)
765           image->depth,(double) depth);
766       (void) FormatLocaleFile(file,"  Channel depth:\n");
767       switch (colorspace)
768       {
769         case RGBColorspace:
770         default:
771         {
772           (void) FormatLocaleFile(file,"    Red: %.20g-bit\n",(double)
773             channel_statistics[RedPixelChannel].depth);
774           (void) FormatLocaleFile(file,"    Green: %.20g-bit\n",(double)
775             channel_statistics[GreenPixelChannel].depth);
776           (void) FormatLocaleFile(file,"    Blue: %.20g-bit\n",(double)
777             channel_statistics[BluePixelChannel].depth);
778           break;
779         }
780         case CMYKColorspace:
781         {
782           (void) FormatLocaleFile(file,"    Cyan: %.20g-bit\n",(double)
783             channel_statistics[CyanPixelChannel].depth);
784           (void) FormatLocaleFile(file,"    Magenta: %.20g-bit\n",(double)
785             channel_statistics[MagentaPixelChannel].depth);
786           (void) FormatLocaleFile(file,"    Yellow: %.20g-bit\n",(double)
787             channel_statistics[YellowPixelChannel].depth);
788           (void) FormatLocaleFile(file,"    Black: %.20g-bit\n",(double)
789             channel_statistics[BlackPixelChannel].depth);
790           break;
791         }
792         case GRAYColorspace:
793         {
794           (void) FormatLocaleFile(file,"    Gray: %.20g-bit\n",(double)
795             channel_statistics[GrayPixelChannel].depth);
796           break;
797         }
798       }
799       if (image->alpha_trait != UndefinedPixelTrait)
800         (void) FormatLocaleFile(file,"    Alpha: %.20g-bit\n",(double)
801           channel_statistics[AlphaPixelChannel].depth);
802       scale=1.0;
803       if (image->depth <= MAGICKCORE_QUANTUM_DEPTH)
804         scale=(double) (QuantumRange/((size_t) QuantumRange >> ((size_t)
805           MAGICKCORE_QUANTUM_DEPTH-image->depth)));
806     }
807   if (channel_statistics != (ChannelStatistics *) NULL)
808     {
809       (void) FormatLocaleFile(file,"  Channel statistics:\n");
810       (void) FormatLocaleFile(file,"    Pixels: %.20g\n",(double)
811         image->columns*image->rows);
812       switch (colorspace)
813       {
814         case RGBColorspace:
815         default:
816         {
817           (void) PrintChannelStatistics(file,RedPixelChannel,"Red",1.0/
818             scale,channel_statistics);
819           (void) PrintChannelStatistics(file,GreenPixelChannel,"Green",1.0/
820             scale,channel_statistics);
821           (void) PrintChannelStatistics(file,BluePixelChannel,"Blue",1.0/
822             scale,channel_statistics);
823           break;
824         }
825         case CMYKColorspace:
826         {
827           (void) PrintChannelStatistics(file,CyanPixelChannel,"Cyan",1.0/
828             scale,channel_statistics);
829           (void) PrintChannelStatistics(file,MagentaPixelChannel,"Magenta",1.0/
830             scale,channel_statistics);
831           (void) PrintChannelStatistics(file,YellowPixelChannel,"Yellow",1.0/
832             scale,channel_statistics);
833           (void) PrintChannelStatistics(file,BlackPixelChannel,"Black",1.0/
834             scale,channel_statistics);
835           break;
836         }
837         case GRAYColorspace:
838         {
839           (void) PrintChannelStatistics(file,GrayPixelChannel,"Gray",1.0/
840             scale,channel_statistics);
841           break;
842         }
843       }
844       if (image->alpha_trait != UndefinedPixelTrait)
845         (void) PrintChannelStatistics(file,AlphaPixelChannel,"Alpha",1.0/
846           scale,channel_statistics);
847       if (colorspace != GRAYColorspace)
848         {
849           (void) FormatLocaleFile(file,"  Image statistics:\n");
850           (void) PrintChannelStatistics(file,(PixelChannel) MaxPixelChannels,
851             "Overall",1.0/scale,channel_statistics);
852         }
853       channel_statistics=(ChannelStatistics *) RelinquishMagickMemory(
854         channel_statistics);
855     }
856   if (channel_moments != (ChannelMoments *) NULL)
857     {
858       scale=(double) ((1UL << image->depth)-1);
859       (void) FormatLocaleFile(file,"  Channel moments:\n");
860       switch (colorspace)
861       {
862         case RGBColorspace:
863         default:
864         {
865           (void) PrintChannelMoments(file,RedPixelChannel,"Red",scale,
866             channel_moments);
867           (void) PrintChannelMoments(file,GreenPixelChannel,"Green",scale,
868             channel_moments);
869           (void) PrintChannelMoments(file,BluePixelChannel,"Blue",scale,
870             channel_moments);
871           break;
872         }
873         case CMYKColorspace:
874         {
875           (void) PrintChannelMoments(file,CyanPixelChannel,"Cyan",scale,
876             channel_moments);
877           (void) PrintChannelMoments(file,MagentaPixelChannel,"Magenta",scale,
878             channel_moments);
879           (void) PrintChannelMoments(file,YellowPixelChannel,"Yellow",scale,
880             channel_moments);
881           (void) PrintChannelMoments(file,BlackPixelChannel,"Black",scale,
882             channel_moments);
883           break;
884         }
885         case GRAYColorspace:
886         {
887           (void) PrintChannelMoments(file,GrayPixelChannel,"Gray",scale,
888             channel_moments);
889           break;
890         }
891       }
892       if (image->alpha_trait != UndefinedPixelTrait)
893         (void) PrintChannelMoments(file,AlphaPixelChannel,"Alpha",scale,
894           channel_moments);
895       if (colorspace != GRAYColorspace)
896         {
897           (void) FormatLocaleFile(file,"  Image moments:\n");
898           (void) PrintChannelMoments(file,(PixelChannel) MaxPixelChannels,
899             "Overall",scale,channel_moments);
900         }
901       channel_moments=(ChannelMoments *) RelinquishMagickMemory(
902         channel_moments);
903     }
904   if (channel_phash != (ChannelPerceptualHash *) NULL)
905     {
906       (void) PrintChannelPerceptualHash(image,file,channel_phash);
907       channel_phash=(ChannelPerceptualHash *) RelinquishMagickMemory(
908         channel_phash);
909     }
910   if (channel_features != (ChannelFeatures *) NULL)
911     {
912       (void) FormatLocaleFile(file,"  Channel features (horizontal, vertical, "
913         "left and right diagonals, average):\n");
914       switch (colorspace)
915       {
916         case RGBColorspace:
917         default:
918         {
919           (void) PrintChannelFeatures(file,RedPixelChannel,"Red",
920             channel_features);
921           (void) PrintChannelFeatures(file,GreenPixelChannel,"Green",
922             channel_features);
923           (void) PrintChannelFeatures(file,BluePixelChannel,"Blue",
924             channel_features);
925           break;
926         }
927         case CMYKColorspace:
928         {
929           (void) PrintChannelFeatures(file,CyanPixelChannel,"Cyan",
930             channel_features);
931           (void) PrintChannelFeatures(file,MagentaPixelChannel,"Magenta",
932             channel_features);
933           (void) PrintChannelFeatures(file,YellowPixelChannel,"Yellow",
934             channel_features);
935           (void) PrintChannelFeatures(file,BlackPixelChannel,"Black",
936             channel_features);
937           break;
938         }
939         case GRAYColorspace:
940         {
941           (void) PrintChannelFeatures(file,GrayPixelChannel,"Gray",
942             channel_features);
943           break;
944         }
945       }
946       if (image->alpha_trait != UndefinedPixelTrait)
947         (void) PrintChannelFeatures(file,AlphaPixelChannel,"Alpha",
948           channel_features);
949       channel_features=(ChannelFeatures *) RelinquishMagickMemory(
950         channel_features);
951     }
952   if (ping == MagickFalse)
953     {
954       if (image->colorspace == CMYKColorspace)
955         (void) FormatLocaleFile(file,"  Total ink density: %*g%%\n",
956           GetMagickPrecision(),100.0*GetImageTotalInkDensity(image,exception)/
957           (double) QuantumRange);
958       x=0;
959       if (image->alpha_trait != UndefinedPixelTrait)
960         {
961           register const Quantum
962             *p;
963
964           p=(const Quantum *) NULL;
965           for (y=0; y < (ssize_t) image->rows; y++)
966           {
967             p=GetVirtualPixels(image,0,y,image->columns,1,exception);
968             if (p == (const Quantum *) NULL)
969               break;
970             for (x=0; x < (ssize_t) image->columns; x++)
971             {
972               if (GetPixelAlpha(image,p) == (Quantum) TransparentAlpha)
973                 break;
974               p+=GetPixelChannels(image);
975             }
976             if (x < (ssize_t) image->columns)
977               break;
978           }
979           if ((x < (ssize_t) image->columns) || (y < (ssize_t) image->rows))
980             {
981               char
982                 tuple[MagickPathExtent];
983
984               PixelInfo
985                 pixel;
986
987               GetPixelInfo(image,&pixel);
988               GetPixelInfoPixel(image,p,&pixel);
989               (void) QueryColorname(image,&pixel,SVGCompliance,tuple,
990                 exception);
991               (void) FormatLocaleFile(file,"  Alpha: %s ",tuple);
992               GetColorTuple(&pixel,MagickTrue,tuple);
993               (void) FormatLocaleFile(file,"  %s\n",tuple);
994             }
995         }
996       if (IsHistogramImage(image,exception) != MagickFalse)
997         {
998           (void) FormatLocaleFile(file,"  Colors: %.20g\n",(double)
999             GetNumberColors(image,(FILE *) NULL,exception));
1000           (void) FormatLocaleFile(file,"  Histogram:\n");
1001           (void) GetNumberColors(image,file,exception);
1002         }
1003       else
1004         {
1005           artifact=GetImageArtifact(image,"identify:unique-colors");
1006           if (IsStringTrue(artifact) != MagickFalse)
1007             (void) FormatLocaleFile(file,"  Colors: %.20g\n",(double)
1008               GetNumberColors(image,(FILE *) NULL,exception));
1009         }
1010     }
1011   if (image->storage_class == PseudoClass)
1012     {
1013       (void) FormatLocaleFile(file,"  Colormap entries: %.20g\n",(double)
1014         image->colors);
1015       (void) FormatLocaleFile(file,"  Colormap:\n");
1016       if (image->colors <= 1024)
1017         {
1018           char
1019             color[MagickPathExtent],
1020             hex[MagickPathExtent],
1021             tuple[MagickPathExtent];
1022
1023           PixelInfo
1024             pixel;
1025
1026           register PixelInfo
1027             *magick_restrict p;
1028
1029           GetPixelInfo(image,&pixel);
1030           p=image->colormap;
1031           for (i=0; i < (ssize_t) image->colors; i++)
1032           {
1033             pixel=(*p);
1034             (void) CopyMagickString(tuple,"(",MagickPathExtent);
1035             ConcatenateColorComponent(&pixel,RedPixelChannel,X11Compliance,
1036               tuple);
1037             (void) ConcatenateMagickString(tuple,",",MagickPathExtent);
1038             ConcatenateColorComponent(&pixel,GreenPixelChannel,X11Compliance,
1039               tuple);
1040             (void) ConcatenateMagickString(tuple,",",MagickPathExtent);
1041             ConcatenateColorComponent(&pixel,BluePixelChannel,X11Compliance,
1042               tuple);
1043             if (pixel.colorspace == CMYKColorspace)
1044               {
1045                 (void) ConcatenateMagickString(tuple,",",MagickPathExtent);
1046                 ConcatenateColorComponent(&pixel,BlackPixelChannel,
1047                   X11Compliance,tuple);
1048               }
1049             if (pixel.alpha_trait != UndefinedPixelTrait)
1050               {
1051                 (void) ConcatenateMagickString(tuple,",",MagickPathExtent);
1052                 ConcatenateColorComponent(&pixel,AlphaPixelChannel,
1053                   X11Compliance,tuple);
1054               }
1055             (void) ConcatenateMagickString(tuple,")",MagickPathExtent);
1056             (void) QueryColorname(image,&pixel,SVGCompliance,color,
1057               exception);
1058             GetColorTuple(&pixel,MagickTrue,hex);
1059             (void) FormatLocaleFile(file,"  %8ld: %s %s %s\n",(long) i,tuple,
1060               hex,color);
1061             p++;
1062           }
1063         }
1064     }
1065   if (image->error.mean_error_per_pixel != 0.0)
1066     (void) FormatLocaleFile(file,"  Mean error per pixel: %g\n",
1067       image->error.mean_error_per_pixel);
1068   if (image->error.normalized_mean_error != 0.0)
1069     (void) FormatLocaleFile(file,"  Normalized mean error: %g\n",
1070       image->error.normalized_mean_error);
1071   if (image->error.normalized_maximum_error != 0.0)
1072     (void) FormatLocaleFile(file,"  Normalized maximum error: %g\n",
1073       image->error.normalized_maximum_error);
1074   (void) FormatLocaleFile(file,"  Rendering intent: %s\n",
1075     CommandOptionToMnemonic(MagickIntentOptions,(ssize_t)
1076     image->rendering_intent));
1077   if (image->gamma != 0.0)
1078     (void) FormatLocaleFile(file,"  Gamma: %g\n",image->gamma);
1079   if ((image->chromaticity.red_primary.x != 0.0) ||
1080       (image->chromaticity.green_primary.x != 0.0) ||
1081       (image->chromaticity.blue_primary.x != 0.0) ||
1082       (image->chromaticity.white_point.x != 0.0))
1083     {
1084       /*
1085         Display image chromaticity.
1086       */
1087       (void) FormatLocaleFile(file,"  Chromaticity:\n");
1088       (void) FormatLocaleFile(file,"    red primary: (%g,%g)\n",
1089         image->chromaticity.red_primary.x,image->chromaticity.red_primary.y);
1090       (void) FormatLocaleFile(file,"    green primary: (%g,%g)\n",
1091         image->chromaticity.green_primary.x,
1092         image->chromaticity.green_primary.y);
1093       (void) FormatLocaleFile(file,"    blue primary: (%g,%g)\n",
1094         image->chromaticity.blue_primary.x,image->chromaticity.blue_primary.y);
1095       (void) FormatLocaleFile(file,"    white point: (%g,%g)\n",
1096         image->chromaticity.white_point.x,image->chromaticity.white_point.y);
1097     }
1098   if ((image->extract_info.width*image->extract_info.height) != 0)
1099     (void) FormatLocaleFile(file,"  Tile geometry: %.20gx%.20g%+.20g%+.20g\n",
1100       (double) image->extract_info.width,(double) image->extract_info.height,
1101       (double) image->extract_info.x,(double) image->extract_info.y);
1102   (void) QueryColorname(image,&image->alpha_color,SVGCompliance,color,
1103     exception);
1104   (void) FormatLocaleFile(file,"  Alpha color: %s\n",color);
1105   (void) QueryColorname(image,&image->background_color,SVGCompliance,color,
1106     exception);
1107   (void) FormatLocaleFile(file,"  Background color: %s\n",color);
1108   (void) QueryColorname(image,&image->border_color,SVGCompliance,color,
1109     exception);
1110   (void) FormatLocaleFile(file,"  Border color: %s\n",color);
1111   (void) QueryColorname(image,&image->transparent_color,SVGCompliance,color,
1112     exception);
1113   (void) FormatLocaleFile(file,"  Transparent color: %s\n",color);
1114   (void) FormatLocaleFile(file,"  Interlace: %s\n",CommandOptionToMnemonic(
1115     MagickInterlaceOptions,(ssize_t) image->interlace));
1116   (void) FormatLocaleFile(file,"  Intensity: %s\n",CommandOptionToMnemonic(
1117     MagickPixelIntensityOptions,(ssize_t) image->intensity));
1118   (void) FormatLocaleFile(file,"  Compose: %s\n",CommandOptionToMnemonic(
1119     MagickComposeOptions,(ssize_t) image->compose));
1120   if ((image->page.width != 0) || (image->page.height != 0) ||
1121       (image->page.x != 0) || (image->page.y != 0))
1122     (void) FormatLocaleFile(file,"  Page geometry: %.20gx%.20g%+.20g%+.20g\n",
1123       (double) image->page.width,(double) image->page.height,(double)
1124       image->page.x,(double) image->page.y);
1125   if ((image->page.x != 0) || (image->page.y != 0))
1126     (void) FormatLocaleFile(file,"  Origin geometry: %+.20g%+.20g\n",(double)
1127       image->page.x,(double) image->page.y);
1128   (void) FormatLocaleFile(file,"  Dispose: %s\n",CommandOptionToMnemonic(
1129     MagickDisposeOptions,(ssize_t) image->dispose));
1130   if (image->delay != 0)
1131     (void) FormatLocaleFile(file,"  Delay: %.20gx%.20g\n",(double) image->delay,
1132       (double) image->ticks_per_second);
1133   if (image->iterations != 1)
1134     (void) FormatLocaleFile(file,"  Iterations: %.20g\n",(double)
1135       image->iterations);
1136   if (image->duration != 0)
1137     (void) FormatLocaleFile(file,"  Duration: %.20g\n",(double)
1138       image->duration);
1139   if ((image->next != (Image *) NULL) || (image->previous != (Image *) NULL))
1140     (void) FormatLocaleFile(file,"  Scene: %.20g of %.20g\n",(double)
1141       image->scene,(double) GetImageListLength(image));
1142   else
1143     if (image->scene != 0)
1144       (void) FormatLocaleFile(file,"  Scene: %.20g\n",(double) image->scene);
1145   (void) FormatLocaleFile(file,"  Compression: %s\n",CommandOptionToMnemonic(
1146     MagickCompressOptions,(ssize_t) image->compression));
1147   if (image->quality != UndefinedCompressionQuality)
1148     (void) FormatLocaleFile(file,"  Quality: %.20g\n",(double) image->quality);
1149   (void) FormatLocaleFile(file,"  Orientation: %s\n",CommandOptionToMnemonic(
1150     MagickOrientationOptions,(ssize_t) image->orientation));
1151   if (image->montage != (char *) NULL)
1152     (void) FormatLocaleFile(file,"  Montage: %s\n",image->montage);
1153   if (image->directory != (char *) NULL)
1154     {
1155       Image
1156         *tile;
1157
1158       ImageInfo
1159         *image_info;
1160
1161       register char
1162         *p,
1163         *q;
1164
1165       WarningHandler
1166         handler;
1167
1168       /*
1169         Display visual image directory.
1170       */
1171       image_info=AcquireImageInfo();
1172       (void) CloneString(&image_info->size,"64x64");
1173       (void) FormatLocaleFile(file,"  Directory:\n");
1174       for (p=image->directory; *p != '\0'; p++)
1175       {
1176         q=p;
1177         while ((*q != '\n') && (*q != '\0'))
1178           q++;
1179         (void) CopyMagickString(image_info->filename,p,(size_t) (q-p+1));
1180         p=q;
1181         (void) FormatLocaleFile(file,"    %s",image_info->filename);
1182         handler=SetWarningHandler((WarningHandler) NULL);
1183         tile=ReadImage(image_info,exception);
1184         (void) SetWarningHandler(handler);
1185         if (tile == (Image *) NULL)
1186           {
1187             (void) FormatLocaleFile(file,"\n");
1188             continue;
1189           }
1190         (void) FormatLocaleFile(file," %.20gx%.20g %s\n",(double)
1191           tile->magick_columns,(double) tile->magick_rows,tile->magick);
1192         (void) SignatureImage(tile,exception);
1193         ResetImagePropertyIterator(tile);
1194         property=GetNextImageProperty(tile);
1195         while (property != (const char *) NULL)
1196         {
1197           (void) FormatLocaleFile(file,"  %s:\n",property);
1198           value=GetImageProperty(tile,property,exception);
1199           if (value != (const char *) NULL)
1200             (void) FormatLocaleFile(file,"%s\n",value);
1201           property=GetNextImageProperty(tile);
1202         }
1203         tile=DestroyImage(tile);
1204       }
1205       image_info=DestroyImageInfo(image_info);
1206     }
1207   (void) GetImageProperty(image,"exif:*",exception);
1208   (void) GetImageProperty(image,"icc:*",exception);
1209   (void) GetImageProperty(image,"iptc:*",exception);
1210   (void) GetImageProperty(image,"xmp:*",exception);
1211   ResetImagePropertyIterator(image);
1212   property=GetNextImageProperty(image);
1213   if (property != (const char *) NULL)
1214     {
1215       /*
1216         Display image properties.
1217       */
1218       (void) FormatLocaleFile(file,"  Properties:\n");
1219       while (property != (const char *) NULL)
1220       {
1221         (void) FormatLocaleFile(file,"    %s: ",property);
1222         value=GetImageProperty(image,property,exception);
1223         if (value != (const char *) NULL)
1224           (void) FormatLocaleFile(file,"%s\n",value);
1225         property=GetNextImageProperty(image);
1226       }
1227     }
1228   (void) FormatLocaleString(key,MagickPathExtent,"8BIM:1999,2998:#1");
1229   value=GetImageProperty(image,key,exception);
1230   if (value != (const char *) NULL)
1231     {
1232       /*
1233         Display clipping path.
1234       */
1235       (void) FormatLocaleFile(file,"  Clipping path: ");
1236       if (strlen(value) > 80)
1237         (void) fputc('\n',file);
1238       (void) FormatLocaleFile(file,"%s\n",value);
1239     }
1240   ResetImageProfileIterator(image);
1241   name=GetNextImageProfile(image);
1242   if (name != (char *) NULL)
1243     {
1244       const StringInfo
1245         *profile;
1246
1247       /*
1248         Identify image profiles.
1249       */
1250       (void) FormatLocaleFile(file,"  Profiles:\n");
1251       while (name != (char *) NULL)
1252       {
1253         profile=GetImageProfile(image,name);
1254         if (profile == (StringInfo *) NULL)
1255           continue;
1256         (void) FormatLocaleFile(file,"    Profile-%s: %.20g bytes\n",name,
1257           (double) GetStringInfoLength(profile));
1258         if (LocaleCompare(name,"iptc") == 0)
1259           {
1260             char
1261               *attribute,
1262               **attribute_list;
1263
1264             const char
1265               *tag;
1266
1267             long
1268               dataset,
1269               record,
1270               sentinel;
1271
1272             register ssize_t
1273               j;
1274
1275             size_t
1276               length,
1277               profile_length;
1278
1279             profile_length=GetStringInfoLength(profile);
1280             for (i=0; i < (ssize_t) profile_length; i+=(ssize_t) length)
1281             {
1282               length=1;
1283               sentinel=GetStringInfoDatum(profile)[i++];
1284               if (sentinel != 0x1c)
1285                 continue;
1286               dataset=GetStringInfoDatum(profile)[i++];
1287               record=GetStringInfoDatum(profile)[i++];
1288               switch (record)
1289               {
1290                 case 5: tag="Image Name"; break;
1291                 case 7: tag="Edit Status"; break;
1292                 case 10: tag="Priority"; break;
1293                 case 15: tag="Category"; break;
1294                 case 20: tag="Supplemental Category"; break;
1295                 case 22: tag="Fixture Identifier"; break;
1296                 case 25: tag="Keyword"; break;
1297                 case 30: tag="Release Date"; break;
1298                 case 35: tag="Release Time"; break;
1299                 case 40: tag="Special Instructions"; break;
1300                 case 45: tag="Reference Service"; break;
1301                 case 47: tag="Reference Date"; break;
1302                 case 50: tag="Reference Number"; break;
1303                 case 55: tag="Created Date"; break;
1304                 case 60: tag="Created Time"; break;
1305                 case 65: tag="Originating Program"; break;
1306                 case 70: tag="Program Version"; break;
1307                 case 75: tag="Object Cycle"; break;
1308                 case 80: tag="Byline"; break;
1309                 case 85: tag="Byline Title"; break;
1310                 case 90: tag="City"; break;
1311                 case 92: tag="Sub-Location"; break;
1312                 case 95: tag="Province State"; break;
1313                 case 100: tag="Country Code"; break;
1314                 case 101: tag="Country"; break;
1315                 case 103: tag="Original Transmission Reference"; break;
1316                 case 105: tag="Headline"; break;
1317                 case 110: tag="Credit"; break;
1318                 case 115: tag="Src"; break;
1319                 case 116: tag="Copyright String"; break;
1320                 case 120: tag="Caption"; break;
1321                 case 121: tag="Local Caption"; break;
1322                 case 122: tag="Caption Writer"; break;
1323                 case 200: tag="Custom Field 1"; break;
1324                 case 201: tag="Custom Field 2"; break;
1325                 case 202: tag="Custom Field 3"; break;
1326                 case 203: tag="Custom Field 4"; break;
1327                 case 204: tag="Custom Field 5"; break;
1328                 case 205: tag="Custom Field 6"; break;
1329                 case 206: tag="Custom Field 7"; break;
1330                 case 207: tag="Custom Field 8"; break;
1331                 case 208: tag="Custom Field 9"; break;
1332                 case 209: tag="Custom Field 10"; break;
1333                 case 210: tag="Custom Field 11"; break;
1334                 case 211: tag="Custom Field 12"; break;
1335                 case 212: tag="Custom Field 13"; break;
1336                 case 213: tag="Custom Field 14"; break;
1337                 case 214: tag="Custom Field 15"; break;
1338                 case 215: tag="Custom Field 16"; break;
1339                 case 216: tag="Custom Field 17"; break;
1340                 case 217: tag="Custom Field 18"; break;
1341                 case 218: tag="Custom Field 19"; break;
1342                 case 219: tag="Custom Field 20"; break;
1343                 default: tag="unknown"; break;
1344               }
1345               (void) FormatLocaleFile(file,"      %s[%.20g,%.20g]: ",tag,
1346                 (double) dataset,(double) record);
1347               length=(size_t) (GetStringInfoDatum(profile)[i++] << 8);
1348               length|=GetStringInfoDatum(profile)[i++];
1349               attribute=(char *) NULL;
1350               if (~length >= (MagickPathExtent-1))
1351                 attribute=(char *) AcquireQuantumMemory(length+MagickPathExtent,
1352                   sizeof(*attribute));
1353               if (attribute != (char *) NULL)
1354                 {
1355                   (void) CopyMagickString(attribute,(char *)
1356                     GetStringInfoDatum(profile)+i,length+1);
1357                   attribute_list=StringToList(attribute);
1358                   if (attribute_list != (char **) NULL)
1359                     {
1360                       for (j=0; attribute_list[j] != (char *) NULL; j++)
1361                       {
1362                         (void) fputs(attribute_list[j],file);
1363                         (void) fputs("\n",file);
1364                         attribute_list[j]=(char *) RelinquishMagickMemory(
1365                           attribute_list[j]);
1366                       }
1367                       attribute_list=(char **) RelinquishMagickMemory(
1368                         attribute_list);
1369                     }
1370                   attribute=DestroyString(attribute);
1371                 }
1372             }
1373           }
1374         if (image->debug != MagickFalse)
1375           PrintStringInfo(file,name,profile);
1376         name=GetNextImageProfile(image);
1377       }
1378     }
1379   ResetImageArtifactIterator(image);
1380   artifact=GetNextImageArtifact(image);
1381   if (artifact != (const char *) NULL)
1382     {
1383       /*
1384         Display image artifacts.
1385       */
1386       (void) FormatLocaleFile(file,"  Artifacts:\n");
1387       while (artifact != (const char *) NULL)
1388       {
1389         (void) FormatLocaleFile(file,"    %s: ",artifact);
1390         value=GetImageArtifact(image,artifact);
1391         if (value != (const char *) NULL)
1392           (void) FormatLocaleFile(file,"%s\n",value);
1393         artifact=GetNextImageArtifact(image);
1394       }
1395     }
1396   ResetImageRegistryIterator();
1397   registry=GetNextImageRegistry();
1398   if (registry != (const char *) NULL)
1399     {
1400       /*
1401         Display image registry.
1402       */
1403       (void) FormatLocaleFile(file,"  Registry:\n");
1404       while (registry != (const char *) NULL)
1405       {
1406         (void) FormatLocaleFile(file,"    %s: ",registry);
1407         value=(const char *) GetImageRegistry(StringRegistryType,registry,
1408           exception);
1409         if (value != (const char *) NULL)
1410           (void) FormatLocaleFile(file,"%s\n",value);
1411         registry=GetNextImageRegistry();
1412       }
1413     }
1414   (void) FormatLocaleFile(file,"  Tainted: %s\n",CommandOptionToMnemonic(
1415     MagickBooleanOptions,(ssize_t) image->taint));
1416   (void) FormatMagickSize(GetBlobSize(image),MagickFalse,"B",MagickPathExtent,
1417     format);
1418   (void) FormatLocaleFile(file,"  Filesize: %s\n",format);
1419   (void) FormatMagickSize((MagickSizeType) image->columns*image->rows,
1420     MagickFalse,"B",MagickPathExtent,format);
1421   if (strlen(format) > 1)
1422     format[strlen(format)-1]='\0';
1423   (void) FormatLocaleFile(file,"  Number pixels: %s\n",format);
1424   if (elapsed_time > MagickEpsilon)
1425     {
1426       (void) FormatMagickSize((MagickSizeType) ((double) image->columns*
1427         image->rows/elapsed_time+0.5),MagickFalse,"B",MagickPathExtent,format);
1428       (void) FormatLocaleFile(file,"  Pixels per second: %s\n",format);
1429     }
1430   (void) FormatLocaleFile(file,"  User time: %0.3fu\n",user_time);
1431   (void) FormatLocaleFile(file,"  Elapsed time: %lu:%02lu.%03lu\n",
1432     (unsigned long) (elapsed_time/60.0),(unsigned long) ceil(fmod(elapsed_time,
1433     60.0)),(unsigned long) (1000.0*(elapsed_time-floor(elapsed_time))));
1434   (void) FormatLocaleFile(file,"  Version: %s\n",GetMagickVersion((size_t *)
1435     NULL));
1436   (void) fflush(file);
1437   return(ferror(file) != 0 ? MagickFalse : MagickTrue);
1438 }