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1 /*
2 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3 %                                                                             %
4 %                                                                             %
5 %                                                                             %
6 %                        DDDD   RRRR    AAA   W   W                           %
7 %                        D   D  R   R  A   A  W   W                           %
8 %                        D   D  RRRR   AAAAA  W W W                           %
9 %                        D   D  R RN   A   A  WW WW                           %
10 %                        DDDD   R  R   A   A  W   W                           %
11 %                                                                             %
12 %                                                                             %
13 %                     MagickCore Image Drawing Methods                        %
14 %                                                                             %
15 %                                                                             %
16 %                              Software Design                                %
17 %                                John Cristy                                  %
18 %                                 July 1998                                   %
19 %                                                                             %
20 %                                                                             %
21 %  Copyright 1999-2010 ImageMagick Studio LLC, a non-profit organization      %
22 %  dedicated to making software imaging solutions freely available.           %
23 %                                                                             %
24 %  You may not use this file except in compliance with the License.  You may  %
25 %  obtain a copy of the License at                                            %
26 %                                                                             %
27 %    http://www.imagemagick.org/script/license.php                            %
28 %                                                                             %
29 %  Unless required by applicable law or agreed to in writing, software        %
30 %  distributed under the License is distributed on an "AS IS" BASIS,          %
31 %  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.   %
32 %  See the License for the specific language governing permissions and        %
33 %  limitations under the License.                                             %
34 %                                                                             %
35 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
36 %
37 % Bill Radcliffe of Corbis (www.corbis.com) contributed the polygon
38 % rendering code based on Paul Heckbert's "Concave Polygon Scan Conversion",
39 % Graphics Gems, 1990.  Leonard Rosenthal and David Harr of Appligent
40 % (www.appligent.com) contributed the dash pattern, linecap stroking
41 % algorithm, and minor rendering improvements.
42 %
43 */
44 \f
45 /*
46   Include declarations.
47 */
48 #include "magick/studio.h"
49 #include "magick/annotate.h"
50 #include "magick/artifact.h"
51 #include "magick/blob.h"
52 #include "magick/cache.h"
53 #include "magick/cache-view.h"
54 #include "magick/color.h"
55 #include "magick/composite.h"
56 #include "magick/composite-private.h"
57 #include "magick/constitute.h"
58 #include "magick/draw.h"
59 #include "magick/draw-private.h"
60 #include "magick/enhance.h"
61 #include "magick/exception.h"
62 #include "magick/exception-private.h"
63 #include "magick/gem.h"
64 #include "magick/geometry.h"
65 #include "magick/image-private.h"
66 #include "magick/list.h"
67 #include "magick/log.h"
68 #include "magick/monitor.h"
69 #include "magick/monitor-private.h"
70 #include "magick/option.h"
71 #include "magick/paint.h"
72 #include "magick/pixel-private.h"
73 #include "magick/property.h"
74 #include "magick/resample.h"
75 #include "magick/resample-private.h"
76 #include "magick/string_.h"
77 #include "magick/string-private.h"
78 #include "magick/thread-private.h"
79 #include "magick/token.h"
80 #include "magick/transform.h"
81 #include "magick/utility.h"
82 \f
83 /*
84   Define declarations.
85 */
86 #define BezierQuantum  200
87 \f
88 /*
89   Typedef declarations.
90 */
91 typedef struct _EdgeInfo
92 {
93   SegmentInfo
94     bounds;
95
96   MagickRealType
97     scanline;
98
99   PointInfo
100     *points;
101
102   size_t
103     number_points;
104
105   ssize_t
106     direction;
107
108   MagickBooleanType
109     ghostline;
110
111   size_t
112     highwater;
113 } EdgeInfo;
114
115 typedef struct _ElementInfo
116 {
117   MagickRealType
118     cx,
119     cy,
120     major,
121     minor,
122     angle;
123 } ElementInfo;
124
125 typedef struct _PolygonInfo
126 {
127   EdgeInfo
128     *edges;
129
130   size_t
131     number_edges;
132 } PolygonInfo;
133
134 typedef enum
135 {
136   MoveToCode,
137   OpenCode,
138   GhostlineCode,
139   LineToCode,
140   EndCode
141 } PathInfoCode;
142
143 typedef struct _PathInfo
144 {
145   PointInfo
146     point;
147
148   PathInfoCode
149     code;
150 } PathInfo;
151 \f
152 /*
153   Forward declarations.
154 */
155 static MagickBooleanType
156   DrawStrokePolygon(Image *,const DrawInfo *,const PrimitiveInfo *);
157
158 static PrimitiveInfo
159   *TraceStrokePolygon(const DrawInfo *,const PrimitiveInfo *);
160
161 static size_t
162   TracePath(PrimitiveInfo *,const char *);
163
164 static void
165   TraceArc(PrimitiveInfo *,const PointInfo,const PointInfo,const PointInfo),
166   TraceArcPath(PrimitiveInfo *,const PointInfo,const PointInfo,const PointInfo,
167     const MagickRealType,const MagickBooleanType,const MagickBooleanType),
168   TraceBezier(PrimitiveInfo *,const size_t),
169   TraceCircle(PrimitiveInfo *,const PointInfo,const PointInfo),
170   TraceEllipse(PrimitiveInfo *,const PointInfo,const PointInfo,const PointInfo),
171   TraceLine(PrimitiveInfo *,const PointInfo,const PointInfo),
172   TraceRectangle(PrimitiveInfo *,const PointInfo,const PointInfo),
173   TraceRoundRectangle(PrimitiveInfo *,const PointInfo,const PointInfo,
174     PointInfo),
175   TraceSquareLinecap(PrimitiveInfo *,const size_t,const MagickRealType);
176 \f
177 /*
178 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
179 %                                                                             %
180 %                                                                             %
181 %                                                                             %
182 %   A c q u i r e D r a w I n f o                                             %
183 %                                                                             %
184 %                                                                             %
185 %                                                                             %
186 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
187 %
188 %  AcquireDrawInfo() returns a DrawInfo structure properly initialized.
189 %
190 %  The format of the AcquireDrawInfo method is:
191 %
192 %      DrawInfo *AcquireDrawInfo(void)
193 %
194 */
195 MagickExport DrawInfo *AcquireDrawInfo(void)
196 {
197   DrawInfo
198     *draw_info;
199
200   draw_info=(DrawInfo *) AcquireMagickMemory(sizeof(*draw_info));
201   if (draw_info == (DrawInfo *) NULL)
202     ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
203   GetDrawInfo((ImageInfo *) NULL,draw_info);
204   return(draw_info);
205 }
206 \f
207 /*
208 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
209 %                                                                             %
210 %                                                                             %
211 %                                                                             %
212 %   C l o n e D r a w I n f o                                                 %
213 %                                                                             %
214 %                                                                             %
215 %                                                                             %
216 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
217 %
218 %  CloneDrawInfo() makes a copy of the given draw info structure.  If NULL
219 %  is specified, a new image info structure is created initialized to
220 %  default values.
221 %
222 %  The format of the CloneDrawInfo method is:
223 %
224 %      DrawInfo *CloneDrawInfo(const ImageInfo *image_info,
225 %        const DrawInfo *draw_info)
226 %
227 %  A description of each parameter follows:
228 %
229 %    o image_info: the image info.
230 %
231 %    o draw_info: the draw info.
232 %
233 */
234 MagickExport DrawInfo *CloneDrawInfo(const ImageInfo *image_info,
235   const DrawInfo *draw_info)
236 {
237   DrawInfo
238     *clone_info;
239
240   clone_info=(DrawInfo *) AcquireMagickMemory(sizeof(*clone_info));
241   if (clone_info == (DrawInfo *) NULL)
242     ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
243   GetDrawInfo(image_info,clone_info);
244   if (draw_info == (DrawInfo *) NULL)
245     return(clone_info);
246   if (clone_info->primitive != (char *) NULL)
247     (void) CloneString(&clone_info->primitive,draw_info->primitive);
248   if (draw_info->geometry != (char *) NULL)
249     (void) CloneString(&clone_info->geometry,draw_info->geometry);
250   clone_info->viewbox=draw_info->viewbox;
251   clone_info->affine=draw_info->affine;
252   clone_info->gravity=draw_info->gravity;
253   clone_info->fill=draw_info->fill;
254   clone_info->stroke=draw_info->stroke;
255   clone_info->stroke_width=draw_info->stroke_width;
256   if (draw_info->fill_pattern != (Image *) NULL)
257     clone_info->fill_pattern=CloneImage(draw_info->fill_pattern,0,0,MagickTrue,
258       &draw_info->fill_pattern->exception);
259   else
260     if (draw_info->tile != (Image *) NULL)
261       clone_info->fill_pattern=CloneImage(draw_info->tile,0,0,MagickTrue,
262         &draw_info->tile->exception);
263   clone_info->tile=NewImageList();  /* tile is deprecated */
264   if (draw_info->stroke_pattern != (Image *) NULL)
265     clone_info->stroke_pattern=CloneImage(draw_info->stroke_pattern,0,0,
266       MagickTrue,&draw_info->stroke_pattern->exception);
267   clone_info->stroke_antialias=draw_info->stroke_antialias;
268   clone_info->text_antialias=draw_info->text_antialias;
269   clone_info->fill_rule=draw_info->fill_rule;
270   clone_info->linecap=draw_info->linecap;
271   clone_info->linejoin=draw_info->linejoin;
272   clone_info->miterlimit=draw_info->miterlimit;
273   clone_info->dash_offset=draw_info->dash_offset;
274   clone_info->decorate=draw_info->decorate;
275   clone_info->compose=draw_info->compose;
276   if (draw_info->text != (char *) NULL)
277     (void) CloneString(&clone_info->text,draw_info->text);
278   if (draw_info->font != (char *) NULL)
279     (void) CloneString(&clone_info->font,draw_info->font);
280   if (draw_info->metrics != (char *) NULL)
281     (void) CloneString(&clone_info->metrics,draw_info->metrics);
282   if (draw_info->family != (char *) NULL)
283     (void) CloneString(&clone_info->family,draw_info->family);
284   clone_info->style=draw_info->style;
285   clone_info->stretch=draw_info->stretch;
286   clone_info->weight=draw_info->weight;
287   if (draw_info->encoding != (char *) NULL)
288     (void) CloneString(&clone_info->encoding,draw_info->encoding);
289   clone_info->pointsize=draw_info->pointsize;
290   clone_info->kerning=draw_info->kerning;
291   clone_info->interline_spacing=draw_info->interline_spacing;
292   clone_info->interword_spacing=draw_info->interword_spacing;
293   clone_info->direction=draw_info->direction;
294   if (draw_info->density != (char *) NULL)
295     (void) CloneString(&clone_info->density,draw_info->density);
296   clone_info->align=draw_info->align;
297   clone_info->undercolor=draw_info->undercolor;
298   clone_info->border_color=draw_info->border_color;
299   if (draw_info->server_name != (char *) NULL)
300     (void) CloneString(&clone_info->server_name,draw_info->server_name);
301   if (draw_info->dash_pattern != (double *) NULL)
302     {
303       register ssize_t
304         x;
305
306       for (x=0; draw_info->dash_pattern[x] != 0.0; x++) ;
307       clone_info->dash_pattern=(double *) AcquireQuantumMemory((size_t) x+1UL,
308         sizeof(*clone_info->dash_pattern));
309       if (clone_info->dash_pattern == (double *) NULL)
310         ThrowFatalException(ResourceLimitFatalError,
311           "UnableToAllocateDashPattern");
312       (void) CopyMagickMemory(clone_info->dash_pattern,draw_info->dash_pattern,
313         (size_t) (x+1)*sizeof(*clone_info->dash_pattern));
314     }
315   clone_info->gradient=draw_info->gradient;
316   if (draw_info->gradient.stops != (StopInfo *) NULL)
317     {
318       size_t
319         number_stops;
320
321       number_stops=clone_info->gradient.number_stops;
322       clone_info->gradient.stops=(StopInfo *) AcquireQuantumMemory((size_t)
323         number_stops,sizeof(*clone_info->gradient.stops));
324       if (clone_info->gradient.stops == (StopInfo *) NULL)
325         ThrowFatalException(ResourceLimitFatalError,
326           "UnableToAllocateDashPattern");
327       (void) CopyMagickMemory(clone_info->gradient.stops,
328         draw_info->gradient.stops,(size_t) number_stops*
329         sizeof(*clone_info->gradient.stops));
330     }
331   if (draw_info->clip_mask != (char *) NULL)
332     (void) CloneString(&clone_info->clip_mask,draw_info->clip_mask);
333   clone_info->bounds=draw_info->bounds;
334   clone_info->clip_units=draw_info->clip_units;
335   clone_info->render=draw_info->render;
336   clone_info->opacity=draw_info->opacity;
337   clone_info->element_reference=draw_info->element_reference;
338   clone_info->debug=IsEventLogging();
339   return(clone_info);
340 }
341 \f
342 /*
343 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
344 %                                                                             %
345 %                                                                             %
346 %                                                                             %
347 +   C o n v e r t P a t h T o P o l y g o n                                   %
348 %                                                                             %
349 %                                                                             %
350 %                                                                             %
351 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
352 %
353 %  ConvertPathToPolygon() converts a path to the more efficient sorted
354 %  rendering form.
355 %
356 %  The format of the ConvertPathToPolygon method is:
357 %
358 %      PolygonInfo *ConvertPathToPolygon(const DrawInfo *draw_info,
359 %        const PathInfo *path_info)
360 %
361 %  A description of each parameter follows:
362 %
363 %    o Method ConvertPathToPolygon returns the path in a more efficient sorted
364 %      rendering form of type PolygonInfo.
365 %
366 %    o draw_info: Specifies a pointer to an DrawInfo structure.
367 %
368 %    o path_info: Specifies a pointer to an PathInfo structure.
369 %
370 %
371 */
372
373 #if defined(__cplusplus) || defined(c_plusplus)
374 extern "C" {
375 #endif
376
377 static int CompareEdges(const void *x,const void *y)
378 {
379   register const EdgeInfo
380     *p,
381     *q;
382
383   /*
384     Compare two edges.
385   */
386   p=(const EdgeInfo *) x;
387   q=(const EdgeInfo *) y;
388   if ((p->points[0].y-MagickEpsilon) > q->points[0].y)
389     return(1);
390   if ((p->points[0].y+MagickEpsilon) < q->points[0].y)
391     return(-1);
392   if ((p->points[0].x-MagickEpsilon) > q->points[0].x)
393     return(1);
394   if ((p->points[0].x+MagickEpsilon) < q->points[0].x)
395     return(-1);
396   if (((p->points[1].x-p->points[0].x)*(q->points[1].y-q->points[0].y)-
397        (p->points[1].y-p->points[0].y)*(q->points[1].x-q->points[0].x)) > 0.0)
398     return(1);
399   return(-1);
400 }
401
402 #if defined(__cplusplus) || defined(c_plusplus)
403 }
404 #endif
405
406 static void LogPolygonInfo(const PolygonInfo *polygon_info)
407 {
408   register EdgeInfo
409     *p;
410
411   register ssize_t
412     i,
413     j;
414
415   (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    begin active-edge");
416   p=polygon_info->edges;
417   for (i=0; i < (ssize_t) polygon_info->number_edges; i++)
418   {
419     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"      edge %.20g:",
420       (double) i);
421     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"      direction: %s",
422       p->direction != MagickFalse ? "down" : "up");
423     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"      ghostline: %s",
424       p->ghostline != MagickFalse ? "transparent" : "opaque");
425     (void) LogMagickEvent(DrawEvent,GetMagickModule(),
426       "      bounds: %g,%g - %g,%g",p->bounds.x1,p->bounds.y1,
427       p->bounds.x2,p->bounds.y2);
428     for (j=0; j < (ssize_t) p->number_points; j++)
429       (void) LogMagickEvent(DrawEvent,GetMagickModule(),"        %g,%g",
430         p->points[j].x,p->points[j].y);
431     p++;
432   }
433   (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    end active-edge");
434 }
435
436 static void ReversePoints(PointInfo *points,const size_t number_points)
437 {
438   PointInfo
439     point;
440
441   register ssize_t
442     i;
443
444   for (i=0; i < (ssize_t) (number_points >> 1); i++)
445   {
446     point=points[i];
447     points[i]=points[number_points-(i+1)];
448     points[number_points-(i+1)]=point;
449   }
450 }
451
452 static PolygonInfo *ConvertPathToPolygon(
453   const DrawInfo *magick_unused(draw_info),const PathInfo *path_info)
454 {
455   long
456     direction,
457     next_direction;
458
459   PointInfo
460     point,
461     *points;
462
463   PolygonInfo
464     *polygon_info;
465
466   SegmentInfo
467     bounds;
468
469   register ssize_t
470     i,
471     n;
472
473   MagickBooleanType
474     ghostline;
475
476   size_t
477     edge,
478     number_edges,
479     number_points;
480
481   /*
482     Convert a path to the more efficient sorted rendering form.
483   */
484   polygon_info=(PolygonInfo *) AcquireMagickMemory(sizeof(*polygon_info));
485   if (polygon_info == (PolygonInfo *) NULL)
486     return((PolygonInfo *) NULL);
487   number_edges=16;
488   polygon_info->edges=(EdgeInfo *) AcquireQuantumMemory((size_t) number_edges,
489     sizeof(*polygon_info->edges));
490   if (polygon_info->edges == (EdgeInfo *) NULL)
491     return((PolygonInfo *) NULL);
492   direction=0;
493   edge=0;
494   ghostline=MagickFalse;
495   n=0;
496   number_points=0;
497   points=(PointInfo *) NULL;
498   (void) ResetMagickMemory(&point,0,sizeof(point));
499   (void) ResetMagickMemory(&bounds,0,sizeof(bounds));
500   for (i=0; path_info[i].code != EndCode; i++)
501   {
502     if ((path_info[i].code == MoveToCode) || (path_info[i].code == OpenCode) ||
503         (path_info[i].code == GhostlineCode))
504       {
505         /*
506           Move to.
507         */
508         if ((points != (PointInfo *) NULL) && (n >= 2))
509           {
510             if (edge == number_edges)
511               {
512                 number_edges<<=1;
513                 polygon_info->edges=(EdgeInfo *) ResizeQuantumMemory(
514                   polygon_info->edges,(size_t) number_edges,
515                   sizeof(*polygon_info->edges));
516                 if (polygon_info->edges == (EdgeInfo *) NULL)
517                   return((PolygonInfo *) NULL);
518               }
519             polygon_info->edges[edge].number_points=(size_t) n;
520             polygon_info->edges[edge].scanline=(-1.0);
521             polygon_info->edges[edge].highwater=0;
522             polygon_info->edges[edge].ghostline=ghostline;
523             polygon_info->edges[edge].direction=(ssize_t) (direction > 0);
524             if (direction < 0)
525               ReversePoints(points,(size_t) n);
526             polygon_info->edges[edge].points=points;
527             polygon_info->edges[edge].bounds=bounds;
528             polygon_info->edges[edge].bounds.y1=points[0].y;
529             polygon_info->edges[edge].bounds.y2=points[n-1].y;
530             points=(PointInfo *) NULL;
531             ghostline=MagickFalse;
532             edge++;
533           }
534         if (points == (PointInfo *) NULL)
535           {
536             number_points=16;
537             points=(PointInfo *) AcquireQuantumMemory((size_t) number_points,
538               sizeof(*points));
539             if (points == (PointInfo *) NULL)
540               return((PolygonInfo *) NULL);
541           }
542         ghostline=path_info[i].code == GhostlineCode ? MagickTrue : MagickFalse;
543         point=path_info[i].point;
544         points[0]=point;
545         bounds.x1=point.x;
546         bounds.x2=point.x;
547         direction=0;
548         n=1;
549         continue;
550       }
551     /*
552       Line to.
553     */
554     next_direction=((path_info[i].point.y > point.y) ||
555       ((path_info[i].point.y == point.y) &&
556        (path_info[i].point.x > point.x))) ? 1 : -1;
557     if ((direction != 0) && (direction != next_direction))
558       {
559         /*
560           New edge.
561         */
562         point=points[n-1];
563         if (edge == number_edges)
564           {
565             number_edges<<=1;
566             polygon_info->edges=(EdgeInfo *) ResizeQuantumMemory(
567               polygon_info->edges,(size_t) number_edges,
568               sizeof(*polygon_info->edges));
569             if (polygon_info->edges == (EdgeInfo *) NULL)
570               return((PolygonInfo *) NULL);
571           }
572         polygon_info->edges[edge].number_points=(size_t) n;
573         polygon_info->edges[edge].scanline=(-1.0);
574         polygon_info->edges[edge].highwater=0;
575         polygon_info->edges[edge].ghostline=ghostline;
576         polygon_info->edges[edge].direction=(ssize_t) (direction > 0);
577         if (direction < 0)
578           ReversePoints(points,(size_t) n);
579         polygon_info->edges[edge].points=points;
580         polygon_info->edges[edge].bounds=bounds;
581         polygon_info->edges[edge].bounds.y1=points[0].y;
582         polygon_info->edges[edge].bounds.y2=points[n-1].y;
583         number_points=16;
584         points=(PointInfo *) AcquireQuantumMemory((size_t) number_points,
585           sizeof(*points));
586         if (points == (PointInfo *) NULL)
587           return((PolygonInfo *) NULL);
588         n=1;
589         ghostline=MagickFalse;
590         points[0]=point;
591         bounds.x1=point.x;
592         bounds.x2=point.x;
593         edge++;
594       }
595     direction=next_direction;
596     if (points == (PointInfo *) NULL)
597       continue;
598     if (n == (ssize_t) number_points)
599       {
600         number_points<<=1;
601         points=(PointInfo *) ResizeQuantumMemory(points,(size_t) number_points,
602           sizeof(*points));
603         if (points == (PointInfo *) NULL)
604           return((PolygonInfo *) NULL);
605       }
606     point=path_info[i].point;
607     points[n]=point;
608     if (point.x < bounds.x1)
609       bounds.x1=point.x;
610     if (point.x > bounds.x2)
611       bounds.x2=point.x;
612     n++;
613   }
614   if (points != (PointInfo *) NULL)
615     {
616       if (n < 2)
617         points=(PointInfo *) RelinquishMagickMemory(points);
618       else
619         {
620           if (edge == number_edges)
621             {
622               number_edges<<=1;
623               polygon_info->edges=(EdgeInfo *) ResizeQuantumMemory(
624                 polygon_info->edges,(size_t) number_edges,
625                 sizeof(*polygon_info->edges));
626               if (polygon_info->edges == (EdgeInfo *) NULL)
627                 return((PolygonInfo *) NULL);
628             }
629           polygon_info->edges[edge].number_points=(size_t) n;
630           polygon_info->edges[edge].scanline=(-1.0);
631           polygon_info->edges[edge].highwater=0;
632           polygon_info->edges[edge].ghostline=ghostline;
633           polygon_info->edges[edge].direction=(ssize_t) (direction > 0);
634           if (direction < 0)
635             ReversePoints(points,(size_t) n);
636           polygon_info->edges[edge].points=points;
637           polygon_info->edges[edge].bounds=bounds;
638           polygon_info->edges[edge].bounds.y1=points[0].y;
639           polygon_info->edges[edge].bounds.y2=points[n-1].y;
640           ghostline=MagickFalse;
641           edge++;
642         }
643     }
644   polygon_info->number_edges=edge;
645   qsort(polygon_info->edges,(size_t) polygon_info->number_edges,
646     sizeof(*polygon_info->edges),CompareEdges);
647   if (IsEventLogging() != MagickFalse)
648     LogPolygonInfo(polygon_info);
649   return(polygon_info);
650 }
651 \f
652 /*
653 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
654 %                                                                             %
655 %                                                                             %
656 %                                                                             %
657 +   C o n v e r t P r i m i t i v e T o P a t h                               %
658 %                                                                             %
659 %                                                                             %
660 %                                                                             %
661 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
662 %
663 %  ConvertPrimitiveToPath() converts a PrimitiveInfo structure into a vector
664 %  path structure.
665 %
666 %  The format of the ConvertPrimitiveToPath method is:
667 %
668 %      PathInfo *ConvertPrimitiveToPath(const DrawInfo *draw_info,
669 %        const PrimitiveInfo *primitive_info)
670 %
671 %  A description of each parameter follows:
672 %
673 %    o Method ConvertPrimitiveToPath returns a vector path structure of type
674 %      PathInfo.
675 %
676 %    o draw_info: a structure of type DrawInfo.
677 %
678 %    o primitive_info: Specifies a pointer to an PrimitiveInfo structure.
679 %
680 %
681 */
682
683 static void LogPathInfo(const PathInfo *path_info)
684 {
685   register const PathInfo
686     *p;
687
688   (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    begin vector-path");
689   for (p=path_info; p->code != EndCode; p++)
690     (void) LogMagickEvent(DrawEvent,GetMagickModule(),
691       "      %g,%g %s",p->point.x,p->point.y,p->code == GhostlineCode ?
692       "moveto ghostline" : p->code == OpenCode ? "moveto open" :
693       p->code == MoveToCode ? "moveto" : p->code == LineToCode ? "lineto" :
694       "?");
695   (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    end vector-path");
696 }
697
698 static PathInfo *ConvertPrimitiveToPath(
699   const DrawInfo *magick_unused(draw_info),const PrimitiveInfo *primitive_info)
700 {
701   PathInfo
702     *path_info;
703
704   PathInfoCode
705     code;
706
707   PointInfo
708     p,
709     q;
710
711   register ssize_t
712     i,
713     n;
714
715   ssize_t
716     coordinates,
717     start;
718
719   /*
720     Converts a PrimitiveInfo structure into a vector path structure.
721   */
722   switch (primitive_info->primitive)
723   {
724     case PointPrimitive:
725     case ColorPrimitive:
726     case MattePrimitive:
727     case TextPrimitive:
728     case ImagePrimitive:
729       return((PathInfo *) NULL);
730     default:
731       break;
732   }
733   for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++) ;
734   path_info=(PathInfo *) AcquireQuantumMemory((size_t) (2UL*i+3UL),
735     sizeof(*path_info));
736   if (path_info == (PathInfo *) NULL)
737     return((PathInfo *) NULL);
738   coordinates=0;
739   n=0;
740   p.x=(-1.0);
741   p.y=(-1.0);
742   q.x=(-1.0);
743   q.y=(-1.0);
744   start=0;
745   for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
746   {
747     code=LineToCode;
748     if (coordinates <= 0)
749       {
750         coordinates=(ssize_t) primitive_info[i].coordinates;
751         p=primitive_info[i].point;
752         start=n;
753         code=MoveToCode;
754       }
755     coordinates--;
756     /*
757       Eliminate duplicate points.
758     */
759     if ((i == 0) || (fabs(q.x-primitive_info[i].point.x) > MagickEpsilon) ||
760         (fabs(q.y-primitive_info[i].point.y) > MagickEpsilon))
761       {
762         path_info[n].code=code;
763         path_info[n].point=primitive_info[i].point;
764         q=primitive_info[i].point;
765         n++;
766       }
767     if (coordinates > 0)
768       continue;
769     if ((fabs(p.x-primitive_info[i].point.x) <= MagickEpsilon) &&
770         (fabs(p.y-primitive_info[i].point.y) <= MagickEpsilon))
771       continue;
772     /*
773       Mark the p point as open if it does not match the q.
774     */
775     path_info[start].code=OpenCode;
776     path_info[n].code=GhostlineCode;
777     path_info[n].point=primitive_info[i].point;
778     n++;
779     path_info[n].code=LineToCode;
780     path_info[n].point=p;
781     n++;
782   }
783   path_info[n].code=EndCode;
784   path_info[n].point.x=0.0;
785   path_info[n].point.y=0.0;
786   if (IsEventLogging() != MagickFalse)
787     LogPathInfo(path_info);
788   return(path_info);
789 }
790 \f
791 /*
792 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
793 %                                                                             %
794 %                                                                             %
795 %                                                                             %
796 %   D e s t r o y D r a w I n f o                                             %
797 %                                                                             %
798 %                                                                             %
799 %                                                                             %
800 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
801 %
802 %  DestroyDrawInfo() deallocates memory associated with an DrawInfo
803 %  structure.
804 %
805 %  The format of the DestroyDrawInfo method is:
806 %
807 %      DrawInfo *DestroyDrawInfo(DrawInfo *draw_info)
808 %
809 %  A description of each parameter follows:
810 %
811 %    o draw_info: the draw info.
812 %
813 */
814 MagickExport DrawInfo *DestroyDrawInfo(DrawInfo *draw_info)
815 {
816   if (draw_info->debug != MagickFalse)
817     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
818   assert(draw_info != (DrawInfo *) NULL);
819   assert(draw_info->signature == MagickSignature);
820   if (draw_info->primitive != (char *) NULL)
821     draw_info->primitive=DestroyString(draw_info->primitive);
822   if (draw_info->text != (char *) NULL)
823     draw_info->text=DestroyString(draw_info->text);
824   if (draw_info->geometry != (char *) NULL)
825     draw_info->geometry=DestroyString(draw_info->geometry);
826   if (draw_info->tile != (Image *) NULL)
827     draw_info->tile=DestroyImage(draw_info->tile);
828   if (draw_info->fill_pattern != (Image *) NULL)
829     draw_info->fill_pattern=DestroyImage(draw_info->fill_pattern);
830   if (draw_info->stroke_pattern != (Image *) NULL)
831     draw_info->stroke_pattern=DestroyImage(draw_info->stroke_pattern);
832   if (draw_info->font != (char *) NULL)
833     draw_info->font=DestroyString(draw_info->font);
834   if (draw_info->metrics != (char *) NULL)
835     draw_info->metrics=DestroyString(draw_info->metrics);
836   if (draw_info->family != (char *) NULL)
837     draw_info->family=DestroyString(draw_info->family);
838   if (draw_info->encoding != (char *) NULL)
839     draw_info->encoding=DestroyString(draw_info->encoding);
840   if (draw_info->density != (char *) NULL)
841     draw_info->density=DestroyString(draw_info->density);
842   if (draw_info->server_name != (char *) NULL)
843     draw_info->server_name=(char *)
844      RelinquishMagickMemory(draw_info->server_name);
845   if (draw_info->dash_pattern != (double *) NULL)
846     draw_info->dash_pattern=(double *) RelinquishMagickMemory(
847       draw_info->dash_pattern);
848   if (draw_info->gradient.stops != (StopInfo *) NULL)
849     draw_info->gradient.stops=(StopInfo *) RelinquishMagickMemory(
850       draw_info->gradient.stops);
851   if (draw_info->clip_mask != (char *) NULL)
852     draw_info->clip_mask=DestroyString(draw_info->clip_mask);
853   draw_info->signature=(~MagickSignature);
854   draw_info=(DrawInfo *) RelinquishMagickMemory(draw_info);
855   return(draw_info);
856 }
857 \f
858 /*
859 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
860 %                                                                             %
861 %                                                                             %
862 %                                                                             %
863 +   D e s t r o y E d g e                                                     %
864 %                                                                             %
865 %                                                                             %
866 %                                                                             %
867 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
868 %
869 %  DestroyEdge() destroys the specified polygon edge.
870 %
871 %  The format of the DestroyEdge method is:
872 %
873 %      ssize_t DestroyEdge(PolygonInfo *polygon_info,const int edge)
874 %
875 %  A description of each parameter follows:
876 %
877 %    o polygon_info: Specifies a pointer to an PolygonInfo structure.
878 %
879 %    o edge: the polygon edge number to destroy.
880 %
881 */
882 static size_t DestroyEdge(PolygonInfo *polygon_info,
883   const size_t edge)
884 {
885   assert(edge < polygon_info->number_edges);
886   polygon_info->edges[edge].points=(PointInfo *) RelinquishMagickMemory(
887     polygon_info->edges[edge].points);
888   polygon_info->number_edges--;
889   if (edge < polygon_info->number_edges)
890     (void) CopyMagickMemory(polygon_info->edges+edge,polygon_info->edges+edge+1,
891       (size_t) (polygon_info->number_edges-edge)*sizeof(*polygon_info->edges));
892   return(polygon_info->number_edges);
893 }
894 \f
895 /*
896 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
897 %                                                                             %
898 %                                                                             %
899 %                                                                             %
900 +   D e s t r o y P o l y g o n I n f o                                       %
901 %                                                                             %
902 %                                                                             %
903 %                                                                             %
904 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
905 %
906 %  DestroyPolygonInfo() destroys the PolygonInfo data structure.
907 %
908 %  The format of the DestroyPolygonInfo method is:
909 %
910 %      PolygonInfo *DestroyPolygonInfo(PolygonInfo *polygon_info)
911 %
912 %  A description of each parameter follows:
913 %
914 %    o polygon_info: Specifies a pointer to an PolygonInfo structure.
915 %
916 */
917 static PolygonInfo *DestroyPolygonInfo(PolygonInfo *polygon_info)
918 {
919   register ssize_t
920     i;
921
922   for (i=0; i < (ssize_t) polygon_info->number_edges; i++)
923     polygon_info->edges[i].points=(PointInfo *)
924       RelinquishMagickMemory(polygon_info->edges[i].points);
925   polygon_info->edges=(EdgeInfo *) RelinquishMagickMemory(polygon_info->edges);
926   return((PolygonInfo *) RelinquishMagickMemory(polygon_info));
927 }
928 \f
929 /*
930 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
931 %                                                                             %
932 %                                                                             %
933 %                                                                             %
934 %     D r a w A f f i n e I m a g e                                           %
935 %                                                                             %
936 %                                                                             %
937 %                                                                             %
938 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
939 %
940 %  DrawAffineImage() composites the source over the destination image as
941 %  dictated by the affine transform.
942 %
943 %  The format of the DrawAffineImage method is:
944 %
945 %      MagickBooleanType DrawAffineImage(Image *image,const Image *source,
946 %        const AffineMatrix *affine)
947 %
948 %  A description of each parameter follows:
949 %
950 %    o image: the image.
951 %
952 %    o source: the source image.
953 %
954 %    o affine: the affine transform.
955 %
956 */
957 static SegmentInfo AffineEdge(const Image *image,const AffineMatrix *affine,
958   const double y,const SegmentInfo *edge)
959 {
960   double
961     intercept,
962     z;
963
964   register double
965     x;
966
967   SegmentInfo
968     inverse_edge;
969
970   /*
971     Determine left and right edges.
972   */
973   inverse_edge.x1=edge->x1;
974   inverse_edge.y1=edge->y1;
975   inverse_edge.x2=edge->x2;
976   inverse_edge.y2=edge->y2;
977   z=affine->ry*y+affine->tx;
978   if (affine->sx > MagickEpsilon)
979     {
980       intercept=(-z/affine->sx);
981       x=intercept+MagickEpsilon;
982       if (x > inverse_edge.x1)
983         inverse_edge.x1=x;
984       intercept=(-z+(double) image->columns)/affine->sx;
985       x=intercept-MagickEpsilon;
986       if (x < inverse_edge.x2)
987         inverse_edge.x2=x;
988     }
989   else
990     if (affine->sx < -MagickEpsilon)
991       {
992         intercept=(-z+(double) image->columns)/affine->sx;
993         x=intercept+MagickEpsilon;
994         if (x > inverse_edge.x1)
995           inverse_edge.x1=x;
996         intercept=(-z/affine->sx);
997         x=intercept-MagickEpsilon;
998         if (x < inverse_edge.x2)
999           inverse_edge.x2=x;
1000       }
1001     else
1002       if ((z < 0.0) || ((size_t) floor(z+0.5) >= image->columns))
1003         {
1004           inverse_edge.x2=edge->x1;
1005           return(inverse_edge);
1006         }
1007   /*
1008     Determine top and bottom edges.
1009   */
1010   z=affine->sy*y+affine->ty;
1011   if (affine->rx > MagickEpsilon)
1012     {
1013       intercept=(-z/affine->rx);
1014       x=intercept+MagickEpsilon;
1015       if (x > inverse_edge.x1)
1016         inverse_edge.x1=x;
1017       intercept=(-z+(double) image->rows)/affine->rx;
1018       x=intercept-MagickEpsilon;
1019       if (x < inverse_edge.x2)
1020         inverse_edge.x2=x;
1021     }
1022   else
1023     if (affine->rx < -MagickEpsilon)
1024       {
1025         intercept=(-z+(double) image->rows)/affine->rx;
1026         x=intercept+MagickEpsilon;
1027         if (x > inverse_edge.x1)
1028           inverse_edge.x1=x;
1029         intercept=(-z/affine->rx);
1030         x=intercept-MagickEpsilon;
1031         if (x < inverse_edge.x2)
1032           inverse_edge.x2=x;
1033       }
1034     else
1035       if ((z < 0.0) || ((size_t) floor(z+0.5) >= image->rows))
1036         {
1037           inverse_edge.x2=edge->x2;
1038           return(inverse_edge);
1039         }
1040   return(inverse_edge);
1041 }
1042
1043 static AffineMatrix InverseAffineMatrix(const AffineMatrix *affine)
1044 {
1045   AffineMatrix
1046     inverse_affine;
1047
1048   double
1049     determinant;
1050
1051   determinant=1.0/(affine->sx*affine->sy-affine->rx*affine->ry);
1052   inverse_affine.sx=determinant*affine->sy;
1053   inverse_affine.rx=determinant*(-affine->rx);
1054   inverse_affine.ry=determinant*(-affine->ry);
1055   inverse_affine.sy=determinant*affine->sx;
1056   inverse_affine.tx=(-affine->tx)*inverse_affine.sx-affine->ty*
1057     inverse_affine.ry;
1058   inverse_affine.ty=(-affine->tx)*inverse_affine.rx-affine->ty*
1059     inverse_affine.sy;
1060   return(inverse_affine);
1061 }
1062
1063 static inline ssize_t MagickAbsoluteValue(const ssize_t x)
1064 {
1065   if (x < 0)
1066     return(-x);
1067   return(x);
1068 }
1069
1070 static inline double MagickMax(const double x,const double y)
1071 {
1072   if (x > y)
1073     return(x);
1074   return(y);
1075 }
1076
1077 static inline double MagickMin(const double x,const double y)
1078 {
1079   if (x < y)
1080     return(x);
1081   return(y);
1082 }
1083
1084 MagickExport MagickBooleanType DrawAffineImage(Image *image,
1085   const Image *source,const AffineMatrix *affine)
1086 {
1087   AffineMatrix
1088     inverse_affine;
1089
1090   CacheView
1091     *image_view,
1092     *source_view;
1093
1094   ExceptionInfo
1095     *exception;
1096
1097   MagickBooleanType
1098     status;
1099
1100   MagickPixelPacket
1101     zero;
1102
1103   PointInfo
1104     extent[4],
1105     min,
1106     max,
1107     point;
1108
1109   register ssize_t
1110     i;
1111
1112   ResampleFilter
1113     **restrict resample_filter;
1114
1115   SegmentInfo
1116     edge;
1117
1118   ssize_t
1119     y;
1120
1121   /*
1122     Determine bounding box.
1123   */
1124   assert(image != (Image *) NULL);
1125   assert(image->signature == MagickSignature);
1126   if (image->debug != MagickFalse)
1127     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1128   assert(source != (const Image *) NULL);
1129   assert(source->signature == MagickSignature);
1130   assert(affine != (AffineMatrix *) NULL);
1131   extent[0].x=0.0;
1132   extent[0].y=0.0;
1133   extent[1].x=(double) source->columns-1.0;
1134   extent[1].y=0.0;
1135   extent[2].x=(double) source->columns-1.0;
1136   extent[2].y=(double) source->rows-1.0;
1137   extent[3].x=0.0;
1138   extent[3].y=(double) source->rows-1.0;
1139   for (i=0; i < 4; i++)
1140   {
1141     point=extent[i];
1142     extent[i].x=point.x*affine->sx+point.y*affine->ry+affine->tx;
1143     extent[i].y=point.x*affine->rx+point.y*affine->sy+affine->ty;
1144   }
1145   min=extent[0];
1146   max=extent[0];
1147   for (i=1; i < 4; i++)
1148   {
1149     if (min.x > extent[i].x)
1150       min.x=extent[i].x;
1151     if (min.y > extent[i].y)
1152       min.y=extent[i].y;
1153     if (max.x < extent[i].x)
1154       max.x=extent[i].x;
1155     if (max.y < extent[i].y)
1156       max.y=extent[i].y;
1157   }
1158   /*
1159     Affine transform image.
1160   */
1161   if (SetImageStorageClass(image,DirectClass) == MagickFalse)
1162     return(MagickFalse);
1163   status=MagickTrue;
1164   edge.x1=MagickMax(min.x,0.0);
1165   edge.y1=MagickMax(min.y,0.0);
1166   edge.x2=MagickMin(max.x,(double) image->columns-1.0);
1167   edge.y2=MagickMin(max.y,(double) image->rows-1.0);
1168   inverse_affine=InverseAffineMatrix(affine);
1169   GetMagickPixelPacket(image,&zero);
1170   exception=(&image->exception);
1171   resample_filter=AcquireResampleFilterThreadSet(source,
1172     UndefinedVirtualPixelMethod,MagickTrue,exception);
1173   image_view=AcquireCacheView(image);
1174   source_view=AcquireCacheView(source);
1175 #if defined(MAGICKCORE_OPENMP_SUPPORT)
1176   #pragma omp parallel for schedule(dynamic,4) shared(status)
1177 #endif
1178   for (y=(ssize_t) ceil(edge.y1-0.5); y <= (ssize_t) floor(edge.y2+0.5); y++)
1179   {
1180     const int
1181       id = GetOpenMPThreadId();
1182
1183     MagickPixelPacket
1184       composite,
1185       pixel;
1186
1187     PointInfo
1188       point;
1189
1190     register IndexPacket
1191       *restrict indexes;
1192
1193     register ssize_t
1194       x;
1195
1196     register PixelPacket
1197       *restrict q;
1198
1199     SegmentInfo
1200       inverse_edge;
1201
1202     ssize_t
1203       x_offset;
1204
1205     inverse_edge=AffineEdge(source,&inverse_affine,(double) y,&edge);
1206     if (inverse_edge.x2 < inverse_edge.x1)
1207       continue;
1208     q=GetCacheViewAuthenticPixels(image_view,(ssize_t) ceil(inverse_edge.x1-
1209       0.5),y,(size_t) ((ssize_t) floor(inverse_edge.x2+0.5)-(ssize_t) floor(
1210       inverse_edge.x1+0.5)+1),1,exception);
1211     if (q == (PixelPacket *) NULL)
1212       continue;
1213     indexes=GetCacheViewAuthenticIndexQueue(image_view);
1214     pixel=zero;
1215     composite=zero;
1216     x_offset=0;
1217     for (x=(ssize_t) ceil(inverse_edge.x1-0.5); x <= (ssize_t) floor(inverse_edge.x2+0.5); x++)
1218     {
1219       point.x=(double) x*inverse_affine.sx+y*inverse_affine.ry+
1220         inverse_affine.tx;
1221       point.y=(double) x*inverse_affine.rx+y*inverse_affine.sy+
1222         inverse_affine.ty;
1223       (void) ResamplePixelColor(resample_filter[id],point.x,point.y,&pixel);
1224       SetMagickPixelPacket(image,q,indexes+x_offset,&composite);
1225       MagickPixelCompositeOver(&pixel,pixel.opacity,&composite,
1226         composite.opacity,&composite);
1227       SetPixelPacket(image,&composite,q,indexes+x_offset);
1228       x_offset++;
1229       q++;
1230     }
1231     if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
1232       status=MagickFalse;
1233   }
1234   resample_filter=DestroyResampleFilterThreadSet(resample_filter);
1235   source_view=DestroyCacheView(source_view);
1236   image_view=DestroyCacheView(image_view);
1237   return(status);
1238 }
1239 \f
1240 /*
1241 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1242 %                                                                             %
1243 %                                                                             %
1244 %                                                                             %
1245 +   D r a w B o u n d i n g R e c t a n g l e s                               %
1246 %                                                                             %
1247 %                                                                             %
1248 %                                                                             %
1249 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1250 %
1251 %  DrawBoundingRectangles() draws the bounding rectangles on the image.  This
1252 %  is only useful for developers debugging the rendering algorithm.
1253 %
1254 %  The format of the DrawBoundingRectangles method is:
1255 %
1256 %      void DrawBoundingRectangles(Image *image,const DrawInfo *draw_info,
1257 %        PolygonInfo *polygon_info)
1258 %
1259 %  A description of each parameter follows:
1260 %
1261 %    o image: the image.
1262 %
1263 %    o draw_info: the draw info.
1264 %
1265 %    o polygon_info: Specifies a pointer to a PolygonInfo structure.
1266 %
1267 */
1268 static void DrawBoundingRectangles(Image *image,const DrawInfo *draw_info,
1269   const PolygonInfo *polygon_info)
1270 {
1271   DrawInfo
1272     *clone_info;
1273
1274   MagickRealType
1275     mid;
1276
1277   PointInfo
1278     end,
1279     resolution,
1280     start;
1281
1282   PrimitiveInfo
1283     primitive_info[6];
1284
1285   register ssize_t
1286     i;
1287
1288   SegmentInfo
1289     bounds;
1290
1291   ssize_t
1292     coordinates;
1293
1294   clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1295   (void) QueryColorDatabase("#0000",&clone_info->fill,&image->exception);
1296   resolution.x=DefaultResolution;
1297   resolution.y=DefaultResolution;
1298   if (clone_info->density != (char *) NULL)
1299     {
1300       GeometryInfo
1301         geometry_info;
1302
1303       MagickStatusType
1304         flags;
1305
1306       flags=ParseGeometry(clone_info->density,&geometry_info);
1307       resolution.x=geometry_info.rho;
1308       resolution.y=geometry_info.sigma;
1309       if ((flags & SigmaValue) == MagickFalse)
1310         resolution.y=resolution.x;
1311     }
1312   mid=(resolution.x/72.0)*ExpandAffine(&clone_info->affine)*
1313     clone_info->stroke_width/2.0;
1314   bounds.x1=0.0;
1315   bounds.y1=0.0;
1316   bounds.x2=0.0;
1317   bounds.y2=0.0;
1318   if (polygon_info != (PolygonInfo *) NULL)
1319     {
1320       bounds=polygon_info->edges[0].bounds;
1321       for (i=1; i < (ssize_t) polygon_info->number_edges; i++)
1322       {
1323         if (polygon_info->edges[i].bounds.x1 < (double) bounds.x1)
1324           bounds.x1=polygon_info->edges[i].bounds.x1;
1325         if (polygon_info->edges[i].bounds.y1 < (double) bounds.y1)
1326           bounds.y1=polygon_info->edges[i].bounds.y1;
1327         if (polygon_info->edges[i].bounds.x2 > (double) bounds.x2)
1328           bounds.x2=polygon_info->edges[i].bounds.x2;
1329         if (polygon_info->edges[i].bounds.y2 > (double) bounds.y2)
1330           bounds.y2=polygon_info->edges[i].bounds.y2;
1331       }
1332       bounds.x1-=mid;
1333       bounds.x1=bounds.x1 < 0.0 ? 0.0 : bounds.x1 >= (double)
1334         image->columns ? (double) image->columns-1 : bounds.x1;
1335       bounds.y1-=mid;
1336       bounds.y1=bounds.y1 < 0.0 ? 0.0 : bounds.y1 >= (double)
1337         image->rows ? (double) image->rows-1 : bounds.y1;
1338       bounds.x2+=mid;
1339       bounds.x2=bounds.x2 < 0.0 ? 0.0 : bounds.x2 >= (double)
1340         image->columns ? (double) image->columns-1 : bounds.x2;
1341       bounds.y2+=mid;
1342       bounds.y2=bounds.y2 < 0.0 ? 0.0 : bounds.y2 >= (double)
1343         image->rows ? (double) image->rows-1 : bounds.y2;
1344       for (i=0; i < (ssize_t) polygon_info->number_edges; i++)
1345       {
1346         if (polygon_info->edges[i].direction != 0)
1347           (void) QueryColorDatabase("red",&clone_info->stroke,
1348             &image->exception);
1349         else
1350           (void) QueryColorDatabase("green",&clone_info->stroke,
1351             &image->exception);
1352         start.x=(double) (polygon_info->edges[i].bounds.x1-mid);
1353         start.y=(double) (polygon_info->edges[i].bounds.y1-mid);
1354         end.x=(double) (polygon_info->edges[i].bounds.x2+mid);
1355         end.y=(double) (polygon_info->edges[i].bounds.y2+mid);
1356         primitive_info[0].primitive=RectanglePrimitive;
1357         TraceRectangle(primitive_info,start,end);
1358         primitive_info[0].method=ReplaceMethod;
1359         coordinates=(ssize_t) primitive_info[0].coordinates;
1360         primitive_info[coordinates].primitive=UndefinedPrimitive;
1361         (void) DrawPrimitive(image,clone_info,primitive_info);
1362       }
1363     }
1364   (void) QueryColorDatabase("blue",&clone_info->stroke,&image->exception);
1365   start.x=(double) (bounds.x1-mid);
1366   start.y=(double) (bounds.y1-mid);
1367   end.x=(double) (bounds.x2+mid);
1368   end.y=(double) (bounds.y2+mid);
1369   primitive_info[0].primitive=RectanglePrimitive;
1370   TraceRectangle(primitive_info,start,end);
1371   primitive_info[0].method=ReplaceMethod;
1372   coordinates=(ssize_t) primitive_info[0].coordinates;
1373   primitive_info[coordinates].primitive=UndefinedPrimitive;
1374   (void) DrawPrimitive(image,clone_info,primitive_info);
1375   clone_info=DestroyDrawInfo(clone_info);
1376 }
1377 \f
1378 /*
1379 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1380 %                                                                             %
1381 %                                                                             %
1382 %                                                                             %
1383 %   D r a w C l i p P a t h                                                   %
1384 %                                                                             %
1385 %                                                                             %
1386 %                                                                             %
1387 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1388 %
1389 %  DrawClipPath() draws the clip path on the image mask.
1390 %
1391 %  The format of the DrawClipPath method is:
1392 %
1393 %      MagickBooleanType DrawClipPath(Image *image,const DrawInfo *draw_info,
1394 %        const char *name)
1395 %
1396 %  A description of each parameter follows:
1397 %
1398 %    o image: the image.
1399 %
1400 %    o draw_info: the draw info.
1401 %
1402 %    o name: the name of the clip path.
1403 %
1404 */
1405 MagickExport MagickBooleanType DrawClipPath(Image *image,
1406   const DrawInfo *draw_info,const char *name)
1407 {
1408   char
1409     clip_mask[MaxTextExtent];
1410
1411   const char
1412     *value;
1413
1414   DrawInfo
1415     *clone_info;
1416
1417   MagickStatusType
1418     status;
1419
1420   assert(image != (Image *) NULL);
1421   assert(image->signature == MagickSignature);
1422   if (image->debug != MagickFalse)
1423     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1424   assert(draw_info != (const DrawInfo *) NULL);
1425   (void) FormatMagickString(clip_mask,MaxTextExtent,"%s",name);
1426   value=GetImageArtifact(image,clip_mask);
1427   if (value == (const char *) NULL)
1428     return(MagickFalse);
1429   if (image->clip_mask == (Image *) NULL)
1430     {
1431       Image
1432         *clip_mask;
1433
1434       clip_mask=CloneImage(image,image->columns,image->rows,MagickTrue,
1435         &image->exception);
1436       if (clip_mask == (Image *) NULL)
1437         return(MagickFalse);
1438       (void) SetImageClipMask(image,clip_mask);
1439       clip_mask=DestroyImage(clip_mask);
1440     }
1441   (void) QueryColorDatabase("#00000000",&image->clip_mask->background_color,
1442     &image->exception);
1443   image->clip_mask->background_color.opacity=(Quantum) TransparentOpacity;
1444   (void) SetImageBackgroundColor(image->clip_mask);
1445   if (image->debug != MagickFalse)
1446     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"\nbegin clip-path %s",
1447       draw_info->clip_mask);
1448   clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1449   (void) CloneString(&clone_info->primitive,value);
1450   (void) QueryColorDatabase("#ffffff",&clone_info->fill,&image->exception);
1451   clone_info->clip_mask=(char *) NULL;
1452   status=DrawImage(image->clip_mask,clone_info);
1453   status|=NegateImage(image->clip_mask,MagickFalse);
1454   clone_info=DestroyDrawInfo(clone_info);
1455   if (image->debug != MagickFalse)
1456     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"end clip-path");
1457   return(status != 0 ? MagickTrue : MagickFalse);
1458 }
1459 \f
1460 /*
1461 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1462 %                                                                             %
1463 %                                                                             %
1464 %                                                                             %
1465 +   D r a w D a s h P o l y g o n                                             %
1466 %                                                                             %
1467 %                                                                             %
1468 %                                                                             %
1469 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1470 %
1471 %  DrawDashPolygon() draws a dashed polygon (line, rectangle, ellipse) on the
1472 %  image while respecting the dash offset and dash pattern attributes.
1473 %
1474 %  The format of the DrawDashPolygon method is:
1475 %
1476 %      MagickBooleanType DrawDashPolygon(const DrawInfo *draw_info,
1477 %        const PrimitiveInfo *primitive_info,Image *image)
1478 %
1479 %  A description of each parameter follows:
1480 %
1481 %    o draw_info: the draw info.
1482 %
1483 %    o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
1484 %
1485 %    o image: the image.
1486 %
1487 %
1488 */
1489 static MagickBooleanType DrawDashPolygon(const DrawInfo *draw_info,
1490   const PrimitiveInfo *primitive_info,Image *image)
1491 {
1492   DrawInfo
1493     *clone_info;
1494
1495   MagickRealType
1496     length,
1497     maximum_length,
1498     offset,
1499     scale,
1500     total_length;
1501
1502   MagickStatusType
1503     status;
1504
1505   PrimitiveInfo
1506     *dash_polygon;
1507
1508   register ssize_t
1509     i;
1510
1511   register MagickRealType
1512     dx,
1513     dy;
1514
1515   size_t
1516     number_vertices;
1517
1518   ssize_t
1519     j,
1520     n;
1521
1522   assert(draw_info != (const DrawInfo *) NULL);
1523   if (image->debug != MagickFalse)
1524     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    begin draw-dash");
1525   clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1526   clone_info->miterlimit=0;
1527   for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++) ;
1528   number_vertices=(size_t) i;
1529   dash_polygon=(PrimitiveInfo *) AcquireQuantumMemory((size_t)
1530     (2UL*number_vertices+1UL),sizeof(*dash_polygon));
1531   if (dash_polygon == (PrimitiveInfo *) NULL)
1532     return(MagickFalse);
1533   dash_polygon[0]=primitive_info[0];
1534   scale=ExpandAffine(&draw_info->affine);
1535   length=scale*(draw_info->dash_pattern[0]-0.5);
1536   offset=draw_info->dash_offset != 0.0 ? scale*draw_info->dash_offset : 0.0;
1537   j=1;
1538   for (n=0; offset > 0.0; j=0)
1539   {
1540     if (draw_info->dash_pattern[n] <= 0.0)
1541       break;
1542     length=scale*(draw_info->dash_pattern[n]+(n == 0 ? -0.5 : 0.5));
1543     if (offset > length)
1544       {
1545         offset-=length;
1546         n++;
1547         length=scale*(draw_info->dash_pattern[n]+(n == 0 ? -0.5 : 0.5));
1548         continue;
1549       }
1550     if (offset < length)
1551       {
1552         length-=offset;
1553         offset=0.0;
1554         break;
1555       }
1556     offset=0.0;
1557     n++;
1558   }
1559   status=MagickTrue;
1560   maximum_length=0.0;
1561   total_length=0.0;
1562   for (i=1; i < (ssize_t) number_vertices; i++)
1563   {
1564     dx=primitive_info[i].point.x-primitive_info[i-1].point.x;
1565     dy=primitive_info[i].point.y-primitive_info[i-1].point.y;
1566     maximum_length=hypot((double) dx,dy);
1567     if (length == 0.0)
1568       {
1569         n++;
1570         if (draw_info->dash_pattern[n] == 0.0)
1571           n=0;
1572         length=scale*(draw_info->dash_pattern[n]+(n == 0 ? -0.5 : 0.5));
1573       }
1574     for (total_length=0.0; (total_length+length) < maximum_length; )
1575     {
1576       total_length+=length;
1577       if ((n & 0x01) != 0)
1578         {
1579           dash_polygon[0]=primitive_info[0];
1580           dash_polygon[0].point.x=(double) (primitive_info[i-1].point.x+dx*
1581             total_length/maximum_length);
1582           dash_polygon[0].point.y=(double) (primitive_info[i-1].point.y+dy*
1583             total_length/maximum_length);
1584           j=1;
1585         }
1586       else
1587         {
1588           if ((j+1) > (ssize_t) (2*number_vertices))
1589             break;
1590           dash_polygon[j]=primitive_info[i-1];
1591           dash_polygon[j].point.x=(double) (primitive_info[i-1].point.x+dx*
1592             total_length/maximum_length);
1593           dash_polygon[j].point.y=(double) (primitive_info[i-1].point.y+dy*
1594             total_length/maximum_length);
1595           dash_polygon[j].coordinates=1;
1596           j++;
1597           dash_polygon[0].coordinates=(size_t) j;
1598           dash_polygon[j].primitive=UndefinedPrimitive;
1599           status|=DrawStrokePolygon(image,clone_info,dash_polygon);
1600         }
1601       n++;
1602       if (draw_info->dash_pattern[n] == 0.0)
1603         n=0;
1604       length=scale*(draw_info->dash_pattern[n]+(n == 0 ? -0.5 : 0.5));
1605     }
1606     length-=(maximum_length-total_length);
1607     if ((n & 0x01) != 0)
1608       continue;
1609     dash_polygon[j]=primitive_info[i];
1610     dash_polygon[j].coordinates=1;
1611     j++;
1612   }
1613   if ((total_length < maximum_length) && ((n & 0x01) == 0) && (j > 1))
1614     {
1615       dash_polygon[j]=primitive_info[i-1];
1616       dash_polygon[j].point.x+=MagickEpsilon;
1617       dash_polygon[j].point.y+=MagickEpsilon;
1618       dash_polygon[j].coordinates=1;
1619       j++;
1620       dash_polygon[0].coordinates=(size_t) j;
1621       dash_polygon[j].primitive=UndefinedPrimitive;
1622       status|=DrawStrokePolygon(image,clone_info,dash_polygon);
1623     }
1624   dash_polygon=(PrimitiveInfo *) RelinquishMagickMemory(dash_polygon);
1625   clone_info=DestroyDrawInfo(clone_info);
1626   if (image->debug != MagickFalse)
1627     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    end draw-dash");
1628   return(status != 0 ? MagickTrue : MagickFalse);
1629 }
1630 \f
1631 /*
1632 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1633 %                                                                             %
1634 %                                                                             %
1635 %                                                                             %
1636 %   D r a w I m a g e                                                         %
1637 %                                                                             %
1638 %                                                                             %
1639 %                                                                             %
1640 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1641 %
1642 %  DrawImage() draws a graphic primitive on your image.  The primitive
1643 %  may be represented as a string or filename.  Precede the filename with an
1644 %  "at" sign (@) and the contents of the file are drawn on the image.  You
1645 %  can affect how text is drawn by setting one or more members of the draw
1646 %  info structure.
1647 %
1648 %  The format of the DrawImage method is:
1649 %
1650 %      MagickBooleanType DrawImage(Image *image,const DrawInfo *draw_info)
1651 %
1652 %  A description of each parameter follows:
1653 %
1654 %    o image: the image.
1655 %
1656 %    o draw_info: the draw info.
1657 %
1658 */
1659
1660 static inline MagickBooleanType IsPoint(const char *point)
1661 {
1662   char
1663     *p;
1664
1665   double
1666     value;
1667
1668   value=strtod(point,&p);
1669   return((value == 0.0) && (p == point) ? MagickFalse : MagickTrue);
1670 }
1671
1672 static inline void TracePoint(PrimitiveInfo *primitive_info,
1673   const PointInfo point)
1674 {
1675   primitive_info->coordinates=1;
1676   primitive_info->point=point;
1677 }
1678
1679 MagickExport MagickBooleanType DrawImage(Image *image,const DrawInfo *draw_info)
1680 {
1681 #define RenderImageTag  "Render/Image"
1682
1683   AffineMatrix
1684     affine,
1685     current;
1686
1687   char
1688     key[2*MaxTextExtent],
1689     keyword[MaxTextExtent],
1690     geometry[MaxTextExtent],
1691     name[MaxTextExtent],
1692     pattern[MaxTextExtent],
1693     *primitive,
1694     *token;
1695
1696   const char
1697     *q;
1698
1699   DrawInfo
1700     **graphic_context;
1701
1702   MagickBooleanType
1703     proceed,
1704     status;
1705
1706   MagickRealType
1707     angle,
1708     factor,
1709     primitive_extent;
1710
1711   PointInfo
1712     point;
1713
1714   PixelPacket
1715     start_color;
1716
1717   PrimitiveInfo
1718     *primitive_info;
1719
1720   PrimitiveType
1721     primitive_type;
1722
1723   register const char
1724     *p;
1725
1726   register ssize_t
1727     i,
1728     x;
1729
1730   SegmentInfo
1731     bounds;
1732
1733   size_t
1734     length,
1735     number_points;
1736
1737   ssize_t
1738     j,
1739     k,
1740     n;
1741
1742   /*
1743     Ensure the annotation info is valid.
1744   */
1745   assert(image != (Image *) NULL);
1746   assert(image->signature == MagickSignature);
1747   if (image->debug != MagickFalse)
1748     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1749   assert(draw_info != (DrawInfo *) NULL);
1750   assert(draw_info->signature == MagickSignature);
1751   if (image->debug != MagickFalse)
1752     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
1753   if ((draw_info->primitive == (char *) NULL) ||
1754       (*draw_info->primitive == '\0'))
1755     return(MagickFalse);
1756   if (image->debug != MagickFalse)
1757     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"begin draw-image");
1758   if (*draw_info->primitive != '@')
1759     primitive=AcquireString(draw_info->primitive);
1760   else
1761     primitive=FileToString(draw_info->primitive+1,~0,&image->exception);
1762   if (primitive == (char *) NULL)
1763     return(MagickFalse);
1764   primitive_extent=(MagickRealType) strlen(primitive);
1765   (void) SetImageArtifact(image,"MVG",primitive);
1766   n=0;
1767   /*
1768     Allocate primitive info memory.
1769   */
1770   graphic_context=(DrawInfo **) AcquireMagickMemory(
1771     sizeof(*graphic_context));
1772   if (graphic_context == (DrawInfo **) NULL)
1773     {
1774       primitive=DestroyString(primitive);
1775       ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
1776         image->filename);
1777     }
1778   number_points=2047;
1779   primitive_info=(PrimitiveInfo *) AcquireQuantumMemory((size_t) number_points,
1780     sizeof(*primitive_info));
1781   if (primitive_info == (PrimitiveInfo *) NULL)
1782     {
1783       primitive=DestroyString(primitive);
1784       for ( ; n >= 0; n--)
1785         graphic_context[n]=DestroyDrawInfo(graphic_context[n]);
1786       graphic_context=(DrawInfo **) RelinquishMagickMemory(graphic_context);
1787       ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
1788         image->filename);
1789     }
1790   graphic_context[n]=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1791   graphic_context[n]->viewbox=image->page;
1792   if ((image->page.width == 0) || (image->page.height == 0))
1793     {
1794       graphic_context[n]->viewbox.width=image->columns;
1795       graphic_context[n]->viewbox.height=image->rows;
1796     }
1797   token=AcquireString(primitive);
1798   (void) QueryColorDatabase("#000000",&start_color,&image->exception);
1799   if (SetImageStorageClass(image,DirectClass) == MagickFalse)
1800     return(MagickFalse);
1801   status=MagickTrue;
1802   for (q=primitive; *q != '\0'; )
1803   {
1804     /*
1805       Interpret graphic primitive.
1806     */
1807     GetMagickToken(q,&q,keyword);
1808     if (*keyword == '\0')
1809       break;
1810     if (*keyword == '#')
1811       {
1812         /*
1813           Comment.
1814         */
1815         while ((*q != '\n') && (*q != '\0'))
1816           q++;
1817         continue;
1818       }
1819     p=q-strlen(keyword)-1;
1820     primitive_type=UndefinedPrimitive;
1821     current=graphic_context[n]->affine;
1822     GetAffineMatrix(&affine);
1823     switch (*keyword)
1824     {
1825       case ';':
1826         break;
1827       case 'a':
1828       case 'A':
1829       {
1830         if (LocaleCompare("affine",keyword) == 0)
1831           {
1832             GetMagickToken(q,&q,token);
1833             affine.sx=StringToDouble(token);
1834             GetMagickToken(q,&q,token);
1835             if (*token == ',')
1836               GetMagickToken(q,&q,token);
1837             affine.rx=StringToDouble(token);
1838             GetMagickToken(q,&q,token);
1839             if (*token == ',')
1840               GetMagickToken(q,&q,token);
1841             affine.ry=StringToDouble(token);
1842             GetMagickToken(q,&q,token);
1843             if (*token == ',')
1844               GetMagickToken(q,&q,token);
1845             affine.sy=StringToDouble(token);
1846             GetMagickToken(q,&q,token);
1847             if (*token == ',')
1848               GetMagickToken(q,&q,token);
1849             affine.tx=StringToDouble(token);
1850             GetMagickToken(q,&q,token);
1851             if (*token == ',')
1852               GetMagickToken(q,&q,token);
1853             affine.ty=StringToDouble(token);
1854             break;
1855           }
1856         if (LocaleCompare("arc",keyword) == 0)
1857           {
1858             primitive_type=ArcPrimitive;
1859             break;
1860           }
1861         status=MagickFalse;
1862         break;
1863       }
1864       case 'b':
1865       case 'B':
1866       {
1867         if (LocaleCompare("bezier",keyword) == 0)
1868           {
1869             primitive_type=BezierPrimitive;
1870             break;
1871           }
1872         if (LocaleCompare("border-color",keyword) == 0)
1873           {
1874             GetMagickToken(q,&q,token);
1875             (void) QueryColorDatabase(token,&graphic_context[n]->border_color,
1876               &image->exception);
1877             break;
1878           }
1879         status=MagickFalse;
1880         break;
1881       }
1882       case 'c':
1883       case 'C':
1884       {
1885         if (LocaleCompare("clip-path",keyword) == 0)
1886           {
1887             /*
1888               Create clip mask.
1889             */
1890             GetMagickToken(q,&q,token);
1891             (void) CloneString(&graphic_context[n]->clip_mask,token);
1892             (void) DrawClipPath(image,graphic_context[n],
1893               graphic_context[n]->clip_mask);
1894             break;
1895           }
1896         if (LocaleCompare("clip-rule",keyword) == 0)
1897           {
1898             ssize_t
1899               fill_rule;
1900
1901             GetMagickToken(q,&q,token);
1902             fill_rule=ParseMagickOption(MagickFillRuleOptions,MagickFalse,
1903               token);
1904             if (fill_rule == -1)
1905               {
1906                 status=MagickFalse;
1907                 break;
1908               }
1909             graphic_context[n]->fill_rule=(FillRule) fill_rule;
1910             break;
1911           }
1912         if (LocaleCompare("clip-units",keyword) == 0)
1913           {
1914             ssize_t
1915               clip_units;
1916
1917             GetMagickToken(q,&q,token);
1918             clip_units=ParseMagickOption(MagickClipPathOptions,MagickFalse,
1919               token);
1920             if (clip_units == -1)
1921               {
1922                 status=MagickFalse;
1923                 break;
1924               }
1925             graphic_context[n]->clip_units=(ClipPathUnits) clip_units;
1926             if (clip_units == ObjectBoundingBox)
1927               {
1928                 GetAffineMatrix(&current);
1929                 affine.sx=draw_info->bounds.x2;
1930                 affine.sy=draw_info->bounds.y2;
1931                 affine.tx=draw_info->bounds.x1;
1932                 affine.ty=draw_info->bounds.y1;
1933                 break;
1934               }
1935             break;
1936           }
1937         if (LocaleCompare("circle",keyword) == 0)
1938           {
1939             primitive_type=CirclePrimitive;
1940             break;
1941           }
1942         if (LocaleCompare("color",keyword) == 0)
1943           {
1944             primitive_type=ColorPrimitive;
1945             break;
1946           }
1947         status=MagickFalse;
1948         break;
1949       }
1950       case 'd':
1951       case 'D':
1952       {
1953         if (LocaleCompare("decorate",keyword) == 0)
1954           {
1955             ssize_t
1956               decorate;
1957
1958             GetMagickToken(q,&q,token);
1959             decorate=ParseMagickOption(MagickDecorateOptions,MagickFalse,
1960               token);
1961             if (decorate == -1)
1962               {
1963                 status=MagickFalse;
1964                 break;
1965               }
1966             graphic_context[n]->decorate=(DecorationType) decorate;
1967             break;
1968           }
1969         status=MagickFalse;
1970         break;
1971       }
1972       case 'e':
1973       case 'E':
1974       {
1975         if (LocaleCompare("ellipse",keyword) == 0)
1976           {
1977             primitive_type=EllipsePrimitive;
1978             break;
1979           }
1980         if (LocaleCompare("encoding",keyword) == 0)
1981           {
1982             GetMagickToken(q,&q,token);
1983             (void) CloneString(&graphic_context[n]->encoding,token);
1984             break;
1985           }
1986         status=MagickFalse;
1987         break;
1988       }
1989       case 'f':
1990       case 'F':
1991       {
1992         if (LocaleCompare("fill",keyword) == 0)
1993           {
1994             GetMagickToken(q,&q,token);
1995             (void) FormatMagickString(pattern,MaxTextExtent,"%s",token);
1996             if (GetImageArtifact(image,pattern) != (const char *) NULL)
1997               (void) DrawPatternPath(image,draw_info,token,
1998                 &graphic_context[n]->fill_pattern);
1999             else
2000               {
2001                 status=QueryColorDatabase(token,&graphic_context[n]->fill,
2002                   &image->exception);
2003                 if (status == MagickFalse)
2004                   {
2005                     ImageInfo
2006                       *pattern_info;
2007
2008                     pattern_info=AcquireImageInfo();
2009                     (void) CopyMagickString(pattern_info->filename,token,
2010                       MaxTextExtent);
2011                     graphic_context[n]->fill_pattern=
2012                       ReadImage(pattern_info,&image->exception);
2013                     CatchException(&image->exception);
2014                     pattern_info=DestroyImageInfo(pattern_info);
2015                   }
2016               }
2017             break;
2018           }
2019         if (LocaleCompare("fill-opacity",keyword) == 0)
2020           {
2021             GetMagickToken(q,&q,token);
2022             factor=strchr(token,'%') != (char *) NULL ? 0.01 : 1.0;
2023             graphic_context[n]->fill.opacity=ClampToQuantum((MagickRealType)
2024               QuantumRange*(1.0-factor*StringToDouble(token)));
2025             break;
2026           }
2027         if (LocaleCompare("fill-rule",keyword) == 0)
2028           {
2029             ssize_t
2030               fill_rule;
2031
2032             GetMagickToken(q,&q,token);
2033             fill_rule=ParseMagickOption(MagickFillRuleOptions,MagickFalse,
2034               token);
2035             if (fill_rule == -1)
2036               {
2037                 status=MagickFalse;
2038                 break;
2039               }
2040             graphic_context[n]->fill_rule=(FillRule) fill_rule;
2041             break;
2042           }
2043         if (LocaleCompare("font",keyword) == 0)
2044           {
2045             GetMagickToken(q,&q,token);
2046             (void) CloneString(&graphic_context[n]->font,token);
2047             if (LocaleCompare("none",token) == 0)
2048               graphic_context[n]->font=(char *)
2049                 RelinquishMagickMemory(graphic_context[n]->font);
2050             break;
2051           }
2052         if (LocaleCompare("font-family",keyword) == 0)
2053           {
2054             GetMagickToken(q,&q,token);
2055             (void) CloneString(&graphic_context[n]->family,token);
2056             break;
2057           }
2058         if (LocaleCompare("font-size",keyword) == 0)
2059           {
2060             GetMagickToken(q,&q,token);
2061             graphic_context[n]->pointsize=StringToDouble(token);
2062             break;
2063           }
2064         if (LocaleCompare("font-stretch",keyword) == 0)
2065           {
2066             ssize_t
2067               stretch;
2068
2069             GetMagickToken(q,&q,token);
2070             stretch=ParseMagickOption(MagickStretchOptions,MagickFalse,token);
2071             if (stretch == -1)
2072               {
2073                 status=MagickFalse;
2074                 break;
2075               }
2076             graphic_context[n]->stretch=(StretchType) stretch;
2077             break;
2078           }
2079         if (LocaleCompare("font-style",keyword) == 0)
2080           {
2081             ssize_t
2082               style;
2083
2084             GetMagickToken(q,&q,token);
2085             style=ParseMagickOption(MagickStyleOptions,MagickFalse,token);
2086             if (style == -1)
2087               {
2088                 status=MagickFalse;
2089                 break;
2090               }
2091             graphic_context[n]->style=(StyleType) style;
2092             break;
2093           }
2094         if (LocaleCompare("font-weight",keyword) == 0)
2095           {
2096             GetMagickToken(q,&q,token);
2097             graphic_context[n]->weight=StringToUnsignedLong(token);
2098             if (LocaleCompare(token,"all") == 0)
2099               graphic_context[n]->weight=0;
2100             if (LocaleCompare(token,"bold") == 0)
2101               graphic_context[n]->weight=700;
2102             if (LocaleCompare(token,"bolder") == 0)
2103               if (graphic_context[n]->weight <= 800)
2104                 graphic_context[n]->weight+=100;
2105             if (LocaleCompare(token,"lighter") == 0)
2106               if (graphic_context[n]->weight >= 100)
2107                 graphic_context[n]->weight-=100;
2108             if (LocaleCompare(token,"normal") == 0)
2109               graphic_context[n]->weight=400;
2110             break;
2111           }
2112         status=MagickFalse;
2113         break;
2114       }
2115       case 'g':
2116       case 'G':
2117       {
2118         if (LocaleCompare("gradient-units",keyword) == 0)
2119           {
2120             GetMagickToken(q,&q,token);
2121             break;
2122           }
2123         if (LocaleCompare("gravity",keyword) == 0)
2124           {
2125             ssize_t
2126               gravity;
2127
2128             GetMagickToken(q,&q,token);
2129             gravity=ParseMagickOption(MagickGravityOptions,MagickFalse,token);
2130             if (gravity == -1)
2131               {
2132                 status=MagickFalse;
2133                 break;
2134               }
2135             graphic_context[n]->gravity=(GravityType) gravity;
2136             break;
2137           }
2138         status=MagickFalse;
2139         break;
2140       }
2141       case 'i':
2142       case 'I':
2143       {
2144         if (LocaleCompare("image",keyword) == 0)
2145           {
2146             ssize_t
2147               compose;
2148
2149             primitive_type=ImagePrimitive;
2150             GetMagickToken(q,&q,token);
2151             compose=ParseMagickOption(MagickComposeOptions,MagickFalse,token);
2152             if (compose == -1)
2153               {
2154                 status=MagickFalse;
2155                 break;
2156               }
2157             graphic_context[n]->compose=(CompositeOperator) compose;
2158             break;
2159           }
2160         if (LocaleCompare("interline-spacing",keyword) == 0)
2161           {
2162             GetMagickToken(q,&q,token);
2163             graphic_context[n]->interline_spacing=StringToDouble(token);
2164             break;
2165           }
2166         if (LocaleCompare("interword-spacing",keyword) == 0)
2167           {
2168             GetMagickToken(q,&q,token);
2169             graphic_context[n]->interword_spacing=StringToDouble(token);
2170             break;
2171           }
2172         status=MagickFalse;
2173         break;
2174       }
2175       case 'k':
2176       case 'K':
2177       {
2178         if (LocaleCompare("kerning",keyword) == 0)
2179           {
2180             GetMagickToken(q,&q,token);
2181             graphic_context[n]->kerning=StringToDouble(token);
2182             break;
2183           }
2184         status=MagickFalse;
2185         break;
2186       }
2187       case 'l':
2188       case 'L':
2189       {
2190         if (LocaleCompare("line",keyword) == 0)
2191           {
2192             primitive_type=LinePrimitive;
2193             break;
2194           }
2195         status=MagickFalse;
2196         break;
2197       }
2198       case 'm':
2199       case 'M':
2200       {
2201         if (LocaleCompare("matte",keyword) == 0)
2202           {
2203             primitive_type=MattePrimitive;
2204             break;
2205           }
2206         status=MagickFalse;
2207         break;
2208       }
2209       case 'o':
2210       case 'O':
2211       {
2212         if (LocaleCompare("offset",keyword) == 0)
2213           {
2214             GetMagickToken(q,&q,token);
2215             break;
2216           }
2217         if (LocaleCompare("opacity",keyword) == 0)
2218           {
2219             GetMagickToken(q,&q,token);
2220             factor=strchr(token,'%') != (char *) NULL ? 0.01 : 1.0;
2221             graphic_context[n]->opacity=ClampToQuantum((MagickRealType)
2222               QuantumRange*(1.0-((1.0-QuantumScale*graphic_context[n]->opacity)*
2223               factor*StringToDouble(token))));
2224             graphic_context[n]->fill.opacity=graphic_context[n]->opacity;
2225             graphic_context[n]->stroke.opacity=graphic_context[n]->opacity;
2226             break;
2227           }
2228         status=MagickFalse;
2229         break;
2230       }
2231       case 'p':
2232       case 'P':
2233       {
2234         if (LocaleCompare("path",keyword) == 0)
2235           {
2236             primitive_type=PathPrimitive;
2237             break;
2238           }
2239         if (LocaleCompare("point",keyword) == 0)
2240           {
2241             primitive_type=PointPrimitive;
2242             break;
2243           }
2244         if (LocaleCompare("polyline",keyword) == 0)
2245           {
2246             primitive_type=PolylinePrimitive;
2247             break;
2248           }
2249         if (LocaleCompare("polygon",keyword) == 0)
2250           {
2251             primitive_type=PolygonPrimitive;
2252             break;
2253           }
2254         if (LocaleCompare("pop",keyword) == 0)
2255           {
2256             GetMagickToken(q,&q,token);
2257             if (LocaleCompare("clip-path",token) == 0)
2258               break;
2259             if (LocaleCompare("defs",token) == 0)
2260               break;
2261             if (LocaleCompare("gradient",token) == 0)
2262               break;
2263             if (LocaleCompare("graphic-context",token) == 0)
2264               {
2265                 if (n <= 0)
2266                   {
2267                     (void) ThrowMagickException(&image->exception,
2268                       GetMagickModule(),DrawError,
2269                       "UnbalancedGraphicContextPushPop","`%s'",token);
2270                     n=0;
2271                     break;
2272                   }
2273                 if (graphic_context[n]->clip_mask != (char *) NULL)
2274                   if (LocaleCompare(graphic_context[n]->clip_mask,
2275                       graphic_context[n-1]->clip_mask) != 0)
2276                     (void) SetImageClipMask(image,(Image *) NULL);
2277                 graphic_context[n]=DestroyDrawInfo(graphic_context[n]);
2278                 n--;
2279                 break;
2280               }
2281             if (LocaleCompare("pattern",token) == 0)
2282               break;
2283             status=MagickFalse;
2284             break;
2285           }
2286         if (LocaleCompare("push",keyword) == 0)
2287           {
2288             GetMagickToken(q,&q,token);
2289             if (LocaleCompare("clip-path",token) == 0)
2290               {
2291                 char
2292                   name[MaxTextExtent];
2293
2294                 GetMagickToken(q,&q,token);
2295                 (void) FormatMagickString(name,MaxTextExtent,"%s",token);
2296                 for (p=q; *q != '\0'; )
2297                 {
2298                   GetMagickToken(q,&q,token);
2299                   if (LocaleCompare(token,"pop") != 0)
2300                     continue;
2301                   GetMagickToken(q,(const char **) NULL,token);
2302                   if (LocaleCompare(token,"clip-path") != 0)
2303                     continue;
2304                   break;
2305                 }
2306                 (void) CopyMagickString(token,p,(size_t) (q-p-4+1));
2307                 (void) SetImageArtifact(image,name,token);
2308                 GetMagickToken(q,&q,token);
2309                 break;
2310               }
2311             if (LocaleCompare("gradient",token) == 0)
2312               {
2313                 char
2314                   key[2*MaxTextExtent],
2315                   name[MaxTextExtent],
2316                   type[MaxTextExtent];
2317
2318                 ElementInfo
2319                   element;
2320
2321                 SegmentInfo
2322                   segment;
2323
2324                 GetMagickToken(q,&q,token);
2325                 (void) CopyMagickString(name,token,MaxTextExtent);
2326                 GetMagickToken(q,&q,token);
2327                 (void) CopyMagickString(type,token,MaxTextExtent);
2328                 GetMagickToken(q,&q,token);
2329                 segment.x1=StringToDouble(token);
2330                 element.cx=StringToDouble(token);
2331                 GetMagickToken(q,&q,token);
2332                 if (*token == ',')
2333                   GetMagickToken(q,&q,token);
2334                 segment.y1=StringToDouble(token);
2335                 element.cy=StringToDouble(token);
2336                 GetMagickToken(q,&q,token);
2337                 if (*token == ',')
2338                   GetMagickToken(q,&q,token);
2339                 segment.x2=StringToDouble(token);
2340                 element.major=StringToDouble(token);
2341                 GetMagickToken(q,&q,token);
2342                 if (*token == ',')
2343                   GetMagickToken(q,&q,token);
2344                 segment.y2=StringToDouble(token);
2345                 element.minor=StringToDouble(token);
2346                 if (LocaleCompare(type,"radial") == 0)
2347                   {
2348                     GetMagickToken(q,&q,token);
2349                     if (*token == ',')
2350                       GetMagickToken(q,&q,token);
2351                     element.angle=StringToDouble(token);
2352                   }
2353                 for (p=q; *q != '\0'; )
2354                 {
2355                   GetMagickToken(q,&q,token);
2356                   if (LocaleCompare(token,"pop") != 0)
2357                     continue;
2358                   GetMagickToken(q,(const char **) NULL,token);
2359                   if (LocaleCompare(token,"gradient") != 0)
2360                     continue;
2361                   break;
2362                 }
2363                 (void) CopyMagickString(token,p,(size_t) (q-p-4+1));
2364                 bounds.x1=graphic_context[n]->affine.sx*segment.x1+
2365                   graphic_context[n]->affine.ry*segment.y1+
2366                   graphic_context[n]->affine.tx;
2367                 bounds.y1=graphic_context[n]->affine.rx*segment.x1+
2368                   graphic_context[n]->affine.sy*segment.y1+
2369                   graphic_context[n]->affine.ty;
2370                 bounds.x2=graphic_context[n]->affine.sx*segment.x2+
2371                   graphic_context[n]->affine.ry*segment.y2+
2372                   graphic_context[n]->affine.tx;
2373                 bounds.y2=graphic_context[n]->affine.rx*segment.x2+
2374                   graphic_context[n]->affine.sy*segment.y2+
2375                   graphic_context[n]->affine.ty;
2376                 (void) FormatMagickString(key,MaxTextExtent,"%s",name);
2377                 (void) SetImageArtifact(image,key,token);
2378                 (void) FormatMagickString(key,MaxTextExtent,"%s-geometry",name);
2379                 (void) FormatMagickString(geometry,MaxTextExtent,
2380                   "%gx%g%+.15g%+.15g",
2381                   MagickMax(fabs(bounds.x2-bounds.x1+1.0),1.0),
2382                   MagickMax(fabs(bounds.y2-bounds.y1+1.0),1.0),
2383                   bounds.x1,bounds.y1);
2384                 (void) SetImageArtifact(image,key,geometry);
2385                 GetMagickToken(q,&q,token);
2386                 break;
2387               }
2388             if (LocaleCompare("pattern",token) == 0)
2389               {
2390                 RectangleInfo
2391                   bounds;
2392
2393                 GetMagickToken(q,&q,token);
2394                 (void) CopyMagickString(name,token,MaxTextExtent);
2395                 GetMagickToken(q,&q,token);
2396                 bounds.x=(ssize_t) ceil(StringToDouble(token)-0.5);
2397                 GetMagickToken(q,&q,token);
2398                 if (*token == ',')
2399                   GetMagickToken(q,&q,token);
2400                 bounds.y=(ssize_t) ceil(StringToDouble(token)-0.5);
2401                 GetMagickToken(q,&q,token);
2402                 if (*token == ',')
2403                   GetMagickToken(q,&q,token);
2404                 bounds.width=(size_t) floor(StringToDouble(token)+0.5);
2405                 GetMagickToken(q,&q,token);
2406                 if (*token == ',')
2407                   GetMagickToken(q,&q,token);
2408                 bounds.height=(size_t) floor(StringToDouble(token)+0.5);
2409                 for (p=q; *q != '\0'; )
2410                 {
2411                   GetMagickToken(q,&q,token);
2412                   if (LocaleCompare(token,"pop") != 0)
2413                     continue;
2414                   GetMagickToken(q,(const char **) NULL,token);
2415                   if (LocaleCompare(token,"pattern") != 0)
2416                     continue;
2417                   break;
2418                 }
2419                 (void) CopyMagickString(token,p,(size_t) (q-p-4+1));
2420                 (void) FormatMagickString(key,MaxTextExtent,"%s",name);
2421                 (void) SetImageArtifact(image,key,token);
2422                 (void) FormatMagickString(key,MaxTextExtent,"%s-geometry",name);
2423                 (void) FormatMagickString(geometry,MaxTextExtent,
2424                   "%.20gx%.20g%+.20g%+.20g",(double) bounds.width,(double)
2425                   bounds.height,(double) bounds.x,(double) bounds.y);
2426                 (void) SetImageArtifact(image,key,geometry);
2427                 GetMagickToken(q,&q,token);
2428                 break;
2429               }
2430             if (LocaleCompare("graphic-context",token) == 0)
2431               {
2432                 n++;
2433                 graphic_context=(DrawInfo **) ResizeQuantumMemory(
2434                   graphic_context,(size_t) (n+1),sizeof(*graphic_context));
2435                 if (graphic_context == (DrawInfo **) NULL)
2436                   {
2437                     (void) ThrowMagickException(&image->exception,
2438                       GetMagickModule(),ResourceLimitError,
2439                       "MemoryAllocationFailed","`%s'",image->filename);
2440                     break;
2441                   }
2442                 graphic_context[n]=CloneDrawInfo((ImageInfo *) NULL,
2443                   graphic_context[n-1]);
2444                 break;
2445               }
2446             if (LocaleCompare("defs",token) == 0)
2447               break;
2448             status=MagickFalse;
2449             break;
2450           }
2451         status=MagickFalse;
2452         break;
2453       }
2454       case 'r':
2455       case 'R':
2456       {
2457         if (LocaleCompare("rectangle",keyword) == 0)
2458           {
2459             primitive_type=RectanglePrimitive;
2460             break;
2461           }
2462         if (LocaleCompare("rotate",keyword) == 0)
2463           {
2464             GetMagickToken(q,&q,token);
2465             angle=StringToDouble(token);
2466             affine.sx=cos(DegreesToRadians(fmod((double) angle,360.0)));
2467             affine.rx=sin(DegreesToRadians(fmod((double) angle,360.0)));
2468             affine.ry=(-sin(DegreesToRadians(fmod((double) angle,360.0))));
2469             affine.sy=cos(DegreesToRadians(fmod((double) angle,360.0)));
2470             break;
2471           }
2472         if (LocaleCompare("roundRectangle",keyword) == 0)
2473           {
2474             primitive_type=RoundRectanglePrimitive;
2475             break;
2476           }
2477         status=MagickFalse;
2478         break;
2479       }
2480       case 's':
2481       case 'S':
2482       {
2483         if (LocaleCompare("scale",keyword) == 0)
2484           {
2485             GetMagickToken(q,&q,token);
2486             affine.sx=StringToDouble(token);
2487             GetMagickToken(q,&q,token);
2488             if (*token == ',')
2489               GetMagickToken(q,&q,token);
2490             affine.sy=StringToDouble(token);
2491             break;
2492           }
2493         if (LocaleCompare("skewX",keyword) == 0)
2494           {
2495             GetMagickToken(q,&q,token);
2496             angle=StringToDouble(token);
2497             affine.ry=sin(DegreesToRadians(angle));
2498             break;
2499           }
2500         if (LocaleCompare("skewY",keyword) == 0)
2501           {
2502             GetMagickToken(q,&q,token);
2503             angle=StringToDouble(token);
2504             affine.rx=(-tan(DegreesToRadians(angle)/2.0));
2505             break;
2506           }
2507         if (LocaleCompare("stop-color",keyword) == 0)
2508           {
2509             PixelPacket
2510               stop_color;
2511
2512             GetMagickToken(q,&q,token);
2513             (void) QueryColorDatabase(token,&stop_color,&image->exception);
2514             (void) GradientImage(image,LinearGradient,ReflectSpread,
2515               &start_color,&stop_color);
2516             start_color=stop_color;
2517             GetMagickToken(q,&q,token);
2518             break;
2519           }
2520         if (LocaleCompare("stroke",keyword) == 0)
2521           {
2522             GetMagickToken(q,&q,token);
2523             (void) FormatMagickString(pattern,MaxTextExtent,"%s",token);
2524             if (GetImageArtifact(image,pattern) != (const char *) NULL)
2525               (void) DrawPatternPath(image,draw_info,token,
2526                 &graphic_context[n]->stroke_pattern);
2527             else
2528               {
2529                 status=QueryColorDatabase(token,&graphic_context[n]->stroke,
2530                   &image->exception);
2531                 if (status == MagickFalse)
2532                   {
2533                     ImageInfo
2534                       *pattern_info;
2535
2536                     pattern_info=AcquireImageInfo();
2537                     (void) CopyMagickString(pattern_info->filename,token,
2538                       MaxTextExtent);
2539                     graphic_context[n]->stroke_pattern=
2540                       ReadImage(pattern_info,&image->exception);
2541                     CatchException(&image->exception);
2542                     pattern_info=DestroyImageInfo(pattern_info);
2543                   }
2544               }
2545             break;
2546           }
2547         if (LocaleCompare("stroke-antialias",keyword) == 0)
2548           {
2549             GetMagickToken(q,&q,token);
2550             graphic_context[n]->stroke_antialias=
2551               StringToLong(token) != 0 ? MagickTrue : MagickFalse;
2552             break;
2553           }
2554         if (LocaleCompare("stroke-dasharray",keyword) == 0)
2555           {
2556             if (graphic_context[n]->dash_pattern != (double *) NULL)
2557               graphic_context[n]->dash_pattern=(double *)
2558                 RelinquishMagickMemory(graphic_context[n]->dash_pattern);
2559             if (IsPoint(q) != MagickFalse)
2560               {
2561                 const char
2562                   *p;
2563
2564                 p=q;
2565                 GetMagickToken(p,&p,token);
2566                 if (*token == ',')
2567                   GetMagickToken(p,&p,token);
2568                 for (x=0; IsPoint(token) != MagickFalse; x++)
2569                 {
2570                   GetMagickToken(p,&p,token);
2571                   if (*token == ',')
2572                     GetMagickToken(p,&p,token);
2573                 }
2574                 graphic_context[n]->dash_pattern=(double *)
2575                   AcquireQuantumMemory((size_t) (2UL*x+1UL),
2576                   sizeof(*graphic_context[n]->dash_pattern));
2577                 if (graphic_context[n]->dash_pattern == (double *) NULL)
2578                   {
2579                     (void) ThrowMagickException(&image->exception,
2580                       GetMagickModule(),ResourceLimitError,
2581                       "MemoryAllocationFailed","`%s'",image->filename);
2582                     break;
2583                   }
2584                 for (j=0; j < x; j++)
2585                 {
2586                   GetMagickToken(q,&q,token);
2587                   if (*token == ',')
2588                     GetMagickToken(q,&q,token);
2589                   graphic_context[n]->dash_pattern[j]=StringToDouble(token);
2590                 }
2591                 if ((x & 0x01) != 0)
2592                   for ( ; j < (2*x); j++)
2593                     graphic_context[n]->dash_pattern[j]=
2594                       graphic_context[n]->dash_pattern[j-x];
2595                 graphic_context[n]->dash_pattern[j]=0.0;
2596                 break;
2597               }
2598             GetMagickToken(q,&q,token);
2599             break;
2600           }
2601         if (LocaleCompare("stroke-dashoffset",keyword) == 0)
2602           {
2603             GetMagickToken(q,&q,token);
2604             graphic_context[n]->dash_offset=StringToDouble(token);
2605             break;
2606           }
2607         if (LocaleCompare("stroke-linecap",keyword) == 0)
2608           {
2609             ssize_t
2610               linecap;
2611
2612             GetMagickToken(q,&q,token);
2613             linecap=ParseMagickOption(MagickLineCapOptions,MagickFalse,token);
2614             if (linecap == -1)
2615               {
2616                 status=MagickFalse;
2617                 break;
2618               }
2619             graphic_context[n]->linecap=(LineCap) linecap;
2620             break;
2621           }
2622         if (LocaleCompare("stroke-linejoin",keyword) == 0)
2623           {
2624             ssize_t
2625               linejoin;
2626
2627             GetMagickToken(q,&q,token);
2628             linejoin=ParseMagickOption(MagickLineJoinOptions,MagickFalse,token);
2629             if (linejoin == -1)
2630               {
2631                 status=MagickFalse;
2632                 break;
2633               }
2634             graphic_context[n]->linejoin=(LineJoin) linejoin;
2635             break;
2636           }
2637         if (LocaleCompare("stroke-miterlimit",keyword) == 0)
2638           {
2639             GetMagickToken(q,&q,token);
2640             graphic_context[n]->miterlimit=StringToUnsignedLong(token);
2641             break;
2642           }
2643         if (LocaleCompare("stroke-opacity",keyword) == 0)
2644           {
2645             GetMagickToken(q,&q,token);
2646             factor=strchr(token,'%') != (char *) NULL ? 0.01 : 1.0;
2647             graphic_context[n]->stroke.opacity=ClampToQuantum((MagickRealType)
2648               QuantumRange*(1.0-factor*StringToDouble(token)));
2649             break;
2650           }
2651         if (LocaleCompare("stroke-width",keyword) == 0)
2652           {
2653             GetMagickToken(q,&q,token);
2654             graphic_context[n]->stroke_width=StringToDouble(token);
2655             break;
2656           }
2657         status=MagickFalse;
2658         break;
2659       }
2660       case 't':
2661       case 'T':
2662       {
2663         if (LocaleCompare("text",keyword) == 0)
2664           {
2665             primitive_type=TextPrimitive;
2666             break;
2667           }
2668         if (LocaleCompare("text-align",keyword) == 0)
2669           {
2670             ssize_t
2671               align;
2672
2673             GetMagickToken(q,&q,token);
2674             align=ParseMagickOption(MagickAlignOptions,MagickFalse,token);
2675             if (align == -1)
2676               {
2677                 status=MagickFalse;
2678                 break;
2679               }
2680             graphic_context[n]->align=(AlignType) align;
2681             break;
2682           }
2683         if (LocaleCompare("text-anchor",keyword) == 0)
2684           {
2685             ssize_t
2686               align;
2687
2688             GetMagickToken(q,&q,token);
2689             align=ParseMagickOption(MagickAlignOptions,MagickFalse,token);
2690             if (align == -1)
2691               {
2692                 status=MagickFalse;
2693                 break;
2694               }
2695             graphic_context[n]->align=(AlignType) align;
2696             break;
2697           }
2698         if (LocaleCompare("text-antialias",keyword) == 0)
2699           {
2700             GetMagickToken(q,&q,token);
2701             graphic_context[n]->text_antialias=
2702               StringToLong(token) != 0 ? MagickTrue : MagickFalse;
2703             break;
2704           }
2705         if (LocaleCompare("text-undercolor",keyword) == 0)
2706           {
2707             GetMagickToken(q,&q,token);
2708             (void) QueryColorDatabase(token,&graphic_context[n]->undercolor,
2709               &image->exception);
2710             break;
2711           }
2712         if (LocaleCompare("translate",keyword) == 0)
2713           {
2714             GetMagickToken(q,&q,token);
2715             affine.tx=StringToDouble(token);
2716             GetMagickToken(q,&q,token);
2717             if (*token == ',')
2718               GetMagickToken(q,&q,token);
2719             affine.ty=StringToDouble(token);
2720             break;
2721           }
2722         status=MagickFalse;
2723         break;
2724       }
2725       case 'v':
2726       case 'V':
2727       {
2728         if (LocaleCompare("viewbox",keyword) == 0)
2729           {
2730             GetMagickToken(q,&q,token);
2731             graphic_context[n]->viewbox.x=(ssize_t) ceil(StringToDouble(token)-
2732               0.5);
2733             GetMagickToken(q,&q,token);
2734             if (*token == ',')
2735               GetMagickToken(q,&q,token);
2736             graphic_context[n]->viewbox.y=(ssize_t) ceil(StringToDouble(token)-
2737               0.5);
2738             GetMagickToken(q,&q,token);
2739             if (*token == ',')
2740               GetMagickToken(q,&q,token);
2741             graphic_context[n]->viewbox.width=(size_t) floor(
2742               StringToDouble(token)+0.5);
2743             GetMagickToken(q,&q,token);
2744             if (*token == ',')
2745               GetMagickToken(q,&q,token);
2746             graphic_context[n]->viewbox.height=(size_t) floor(
2747               StringToDouble(token)+0.5);
2748             break;
2749           }
2750         status=MagickFalse;
2751         break;
2752       }
2753       default:
2754       {
2755         status=MagickFalse;
2756         break;
2757       }
2758     }
2759     if (status == MagickFalse)
2760       break;
2761     if ((affine.sx != 1.0) || (affine.rx != 0.0) || (affine.ry != 0.0) ||
2762         (affine.sy != 1.0) || (affine.tx != 0.0) || (affine.ty != 0.0))
2763       {
2764         graphic_context[n]->affine.sx=affine.sx*current.sx+affine.ry*current.rx;
2765         graphic_context[n]->affine.rx=affine.rx*current.sx+affine.sy*current.rx;
2766         graphic_context[n]->affine.ry=affine.sx*current.ry+affine.ry*current.sy;
2767         graphic_context[n]->affine.sy=affine.rx*current.ry+affine.sy*current.sy;
2768         graphic_context[n]->affine.tx=affine.sx*current.tx+affine.ry*current.ty+
2769           affine.tx;
2770         graphic_context[n]->affine.ty=affine.rx*current.tx+affine.sy*current.ty+
2771           affine.ty;
2772       }
2773     if (primitive_type == UndefinedPrimitive)
2774       {
2775         if (image->debug != MagickFalse)
2776           (void) LogMagickEvent(DrawEvent,GetMagickModule(),"  %.*s",
2777             (int) (q-p),p);
2778         continue;
2779       }
2780     /*
2781       Parse the primitive attributes.
2782     */
2783     i=0;
2784     j=0;
2785     primitive_info[0].point.x=0.0;
2786     primitive_info[0].point.y=0.0;
2787     for (x=0; *q != '\0'; x++)
2788     {
2789       /*
2790         Define points.
2791       */
2792       if (IsPoint(q) == MagickFalse)
2793         break;
2794       GetMagickToken(q,&q,token);
2795       point.x=StringToDouble(token);
2796       GetMagickToken(q,&q,token);
2797       if (*token == ',')
2798         GetMagickToken(q,&q,token);
2799       point.y=StringToDouble(token);
2800       GetMagickToken(q,(const char **) NULL,token);
2801       if (*token == ',')
2802         GetMagickToken(q,&q,token);
2803       primitive_info[i].primitive=primitive_type;
2804       primitive_info[i].point=point;
2805       primitive_info[i].coordinates=0;
2806       primitive_info[i].method=FloodfillMethod;
2807       i++;
2808       if (i < (ssize_t) number_points)
2809         continue;
2810       number_points<<=1;
2811       primitive_info=(PrimitiveInfo *) ResizeQuantumMemory(primitive_info,
2812         (size_t) number_points,sizeof(*primitive_info));
2813       if (primitive_info == (PrimitiveInfo *) NULL)
2814         {
2815           (void) ThrowMagickException(&image->exception,GetMagickModule(),
2816             ResourceLimitError,"MemoryAllocationFailed","`%s'",image->filename);
2817           break;
2818         }
2819     }
2820     primitive_info[j].primitive=primitive_type;
2821     primitive_info[j].coordinates=(size_t) x;
2822     primitive_info[j].method=FloodfillMethod;
2823     primitive_info[j].text=(char *) NULL;
2824     /*
2825       Circumscribe primitive within a circle.
2826     */
2827     bounds.x1=primitive_info[j].point.x;
2828     bounds.y1=primitive_info[j].point.y;
2829     bounds.x2=primitive_info[j].point.x;
2830     bounds.y2=primitive_info[j].point.y;
2831     for (k=1; k < (ssize_t) primitive_info[j].coordinates; k++)
2832     {
2833       point=primitive_info[j+k].point;
2834       if (point.x < bounds.x1)
2835         bounds.x1=point.x;
2836       if (point.y < bounds.y1)
2837         bounds.y1=point.y;
2838       if (point.x > bounds.x2)
2839         bounds.x2=point.x;
2840       if (point.y > bounds.y2)
2841         bounds.y2=point.y;
2842     }
2843     /*
2844       Speculate how many points our primitive might consume.
2845     */
2846     length=primitive_info[j].coordinates;
2847     switch (primitive_type)
2848     {
2849       case RectanglePrimitive:
2850       {
2851         length*=5;
2852         break;
2853       }
2854       case RoundRectanglePrimitive:
2855       {
2856         length*=5+8*BezierQuantum;
2857         break;
2858       }
2859       case BezierPrimitive:
2860       {
2861         if (primitive_info[j].coordinates > 107)
2862           (void) ThrowMagickException(&image->exception,GetMagickModule(),
2863             DrawError,"TooManyBezierCoordinates","`%s'",token);
2864         length=BezierQuantum*primitive_info[j].coordinates;
2865         break;
2866       }
2867       case PathPrimitive:
2868       {
2869         char
2870           *s,
2871           *t;
2872
2873         GetMagickToken(q,&q,token);
2874         length=1;
2875         t=token;
2876         for (s=token; *s != '\0'; s=t)
2877         {
2878           double
2879             value;
2880
2881           value=strtod(s,&t);
2882           if (s == t)
2883             {
2884               t++;
2885               continue;
2886             }
2887           length+=BezierQuantum;
2888         }
2889         break;
2890       }
2891       case CirclePrimitive:
2892       case ArcPrimitive:
2893       case EllipsePrimitive:
2894       {
2895         MagickRealType
2896           alpha,
2897           beta,
2898           radius;
2899
2900         alpha=bounds.x2-bounds.x1;
2901         beta=bounds.y2-bounds.y1;
2902         radius=hypot((double) alpha,(double) beta);
2903         length=2*((size_t) (MagickPI*radius))+6*BezierQuantum+360+1;
2904         break;
2905       }
2906       default:
2907         break;
2908     }
2909     if ((size_t) (i+length) >= number_points)
2910       {
2911         /*
2912           Resize based on speculative points required by primitive.
2913         */
2914         number_points+=length+1;
2915         primitive_info=(PrimitiveInfo *) ResizeQuantumMemory(primitive_info,
2916           (size_t) number_points,sizeof(*primitive_info));
2917         if (primitive_info == (PrimitiveInfo *) NULL)
2918           {
2919             (void) ThrowMagickException(&image->exception,GetMagickModule(),
2920               ResourceLimitError,"MemoryAllocationFailed","`%s'",
2921               image->filename);
2922             break;
2923           }
2924       }
2925     switch (primitive_type)
2926     {
2927       case PointPrimitive:
2928       default:
2929       {
2930         if (primitive_info[j].coordinates != 1)
2931           {
2932             status=MagickFalse;
2933             break;
2934           }
2935         TracePoint(primitive_info+j,primitive_info[j].point);
2936         i=(ssize_t) (j+primitive_info[j].coordinates);
2937         break;
2938       }
2939       case LinePrimitive:
2940       {
2941         if (primitive_info[j].coordinates != 2)
2942           {
2943             status=MagickFalse;
2944             break;
2945           }
2946         TraceLine(primitive_info+j,primitive_info[j].point,
2947           primitive_info[j+1].point);
2948         i=(ssize_t) (j+primitive_info[j].coordinates);
2949         break;
2950       }
2951       case RectanglePrimitive:
2952       {
2953         if (primitive_info[j].coordinates != 2)
2954           {
2955             status=MagickFalse;
2956             break;
2957           }
2958         TraceRectangle(primitive_info+j,primitive_info[j].point,
2959           primitive_info[j+1].point);
2960         i=(ssize_t) (j+primitive_info[j].coordinates);
2961         break;
2962       }
2963       case RoundRectanglePrimitive:
2964       {
2965         if (primitive_info[j].coordinates != 3)
2966           {
2967             status=MagickFalse;
2968             break;
2969           }
2970         TraceRoundRectangle(primitive_info+j,primitive_info[j].point,
2971           primitive_info[j+1].point,primitive_info[j+2].point);
2972         i=(ssize_t) (j+primitive_info[j].coordinates);
2973         break;
2974       }
2975       case ArcPrimitive:
2976       {
2977         if (primitive_info[j].coordinates != 3)
2978           {
2979             primitive_type=UndefinedPrimitive;
2980             break;
2981           }
2982         TraceArc(primitive_info+j,primitive_info[j].point,
2983           primitive_info[j+1].point,primitive_info[j+2].point);
2984         i=(ssize_t) (j+primitive_info[j].coordinates);
2985         break;
2986       }
2987       case EllipsePrimitive:
2988       {
2989         if (primitive_info[j].coordinates != 3)
2990           {
2991             status=MagickFalse;
2992             break;
2993           }
2994         TraceEllipse(primitive_info+j,primitive_info[j].point,
2995           primitive_info[j+1].point,primitive_info[j+2].point);
2996         i=(ssize_t) (j+primitive_info[j].coordinates);
2997         break;
2998       }
2999       case CirclePrimitive:
3000       {
3001         if (primitive_info[j].coordinates != 2)
3002           {
3003             status=MagickFalse;
3004             break;
3005           }
3006         TraceCircle(primitive_info+j,primitive_info[j].point,
3007           primitive_info[j+1].point);
3008         i=(ssize_t) (j+primitive_info[j].coordinates);
3009         break;
3010       }
3011       case PolylinePrimitive:
3012         break;
3013       case PolygonPrimitive:
3014       {
3015         primitive_info[i]=primitive_info[j];
3016         primitive_info[i].coordinates=0;
3017         primitive_info[j].coordinates++;
3018         i++;
3019         break;
3020       }
3021       case BezierPrimitive:
3022       {
3023         if (primitive_info[j].coordinates < 3)
3024           {
3025             status=MagickFalse;
3026             break;
3027           }
3028         TraceBezier(primitive_info+j,primitive_info[j].coordinates);
3029         i=(ssize_t) (j+primitive_info[j].coordinates);
3030         break;
3031       }
3032       case PathPrimitive:
3033       {
3034         i=(ssize_t) (j+TracePath(primitive_info+j,token));
3035         break;
3036       }
3037       case ColorPrimitive:
3038       case MattePrimitive:
3039       {
3040         ssize_t
3041           method;
3042
3043         if (primitive_info[j].coordinates != 1)
3044           {
3045             status=MagickFalse;
3046             break;
3047           }
3048         GetMagickToken(q,&q,token);
3049         method=ParseMagickOption(MagickMethodOptions,MagickFalse,token);
3050         if (method == -1)
3051           {
3052             status=MagickFalse;
3053             break;
3054           }
3055         primitive_info[j].method=(PaintMethod) method;
3056         break;
3057       }
3058       case TextPrimitive:
3059       {
3060         if (primitive_info[j].coordinates != 1)
3061           {
3062             status=MagickFalse;
3063             break;
3064           }
3065         if (*token != ',')
3066           GetMagickToken(q,&q,token);
3067         primitive_info[j].text=AcquireString(token);
3068         break;
3069       }
3070       case ImagePrimitive:
3071       {
3072         if (primitive_info[j].coordinates != 2)
3073           {
3074             status=MagickFalse;
3075             break;
3076           }
3077         GetMagickToken(q,&q,token);
3078         primitive_info[j].text=AcquireString(token);
3079         break;
3080       }
3081     }
3082     if (primitive_info == (PrimitiveInfo *) NULL)
3083       break;
3084     if (image->debug != MagickFalse)
3085       (void) LogMagickEvent(DrawEvent,GetMagickModule(),"  %.*s",(int) (q-p),p);
3086     if (status == MagickFalse)
3087       break;
3088     primitive_info[i].primitive=UndefinedPrimitive;
3089     if (i == 0)
3090       continue;
3091     /*
3092       Transform points.
3093     */
3094     for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
3095     {
3096       point=primitive_info[i].point;
3097       primitive_info[i].point.x=graphic_context[n]->affine.sx*point.x+
3098         graphic_context[n]->affine.ry*point.y+graphic_context[n]->affine.tx;
3099       primitive_info[i].point.y=graphic_context[n]->affine.rx*point.x+
3100         graphic_context[n]->affine.sy*point.y+graphic_context[n]->affine.ty;
3101       point=primitive_info[i].point;
3102       if (point.x < graphic_context[n]->bounds.x1)
3103         graphic_context[n]->bounds.x1=point.x;
3104       if (point.y < graphic_context[n]->bounds.y1)
3105         graphic_context[n]->bounds.y1=point.y;
3106       if (point.x > graphic_context[n]->bounds.x2)
3107         graphic_context[n]->bounds.x2=point.x;
3108       if (point.y > graphic_context[n]->bounds.y2)
3109         graphic_context[n]->bounds.y2=point.y;
3110       if (primitive_info[i].primitive == ImagePrimitive)
3111         break;
3112       if (i >= (ssize_t) number_points)
3113         ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
3114     }
3115     if (graphic_context[n]->render != MagickFalse)
3116       {
3117         if ((n != 0) && (graphic_context[n]->clip_mask != (char *) NULL) &&
3118             (LocaleCompare(graphic_context[n]->clip_mask,
3119              graphic_context[n-1]->clip_mask) != 0))
3120           (void) DrawClipPath(image,graphic_context[n],
3121             graphic_context[n]->clip_mask);
3122         (void) DrawPrimitive(image,graphic_context[n],primitive_info);
3123       }
3124     if (primitive_info->text != (char *) NULL)
3125       primitive_info->text=(char *) RelinquishMagickMemory(
3126         primitive_info->text);
3127     proceed=SetImageProgress(image,RenderImageTag,q-primitive,(MagickSizeType)
3128       primitive_extent);
3129     if (proceed == MagickFalse)
3130       break;
3131   }
3132   if (image->debug != MagickFalse)
3133     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"end draw-image");
3134   /*
3135     Relinquish resources.
3136   */
3137   token=DestroyString(token);
3138   if (primitive_info != (PrimitiveInfo *) NULL)
3139     primitive_info=(PrimitiveInfo *) RelinquishMagickMemory(primitive_info);
3140   primitive=DestroyString(primitive);
3141   for ( ; n >= 0; n--)
3142     graphic_context[n]=DestroyDrawInfo(graphic_context[n]);
3143   graphic_context=(DrawInfo **) RelinquishMagickMemory(graphic_context);
3144   if (status == MagickFalse)
3145     ThrowBinaryException(DrawError,"NonconformingDrawingPrimitiveDefinition",
3146       keyword);
3147   return(status);
3148 }
3149 \f
3150 /*
3151 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3152 %                                                                             %
3153 %                                                                             %
3154 %                                                                             %
3155 %     D r a w G r a d i e n t I m a g e                                       %
3156 %                                                                             %
3157 %                                                                             %
3158 %                                                                             %
3159 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3160 %
3161 %  DrawGradientImage() draws a linear gradient on the image.
3162 %
3163 %  The format of the DrawGradientImage method is:
3164 %
3165 %      MagickBooleanType DrawGradientImage(Image *image,
3166 %        const DrawInfo *draw_info)
3167 %
3168 %  A description of each parameter follows:
3169 %
3170 %    o image: the image.
3171 %
3172 %    o _info: the draw info.
3173 %
3174 */
3175
3176 static inline MagickRealType GetStopColorOffset(const GradientInfo *gradient,
3177   const ssize_t x,const ssize_t y)
3178 {
3179   switch (gradient->type)
3180   {
3181     case UndefinedGradient:
3182     case LinearGradient:
3183     {
3184       MagickRealType
3185         gamma,
3186         length,
3187         offset,
3188         scale;
3189
3190       PointInfo
3191         p,
3192         q;
3193
3194       const SegmentInfo
3195         *gradient_vector;
3196
3197       gradient_vector=(&gradient->gradient_vector);
3198       p.x=gradient_vector->x2-gradient_vector->x1;
3199       p.y=gradient_vector->y2-gradient_vector->y1;
3200       q.x=(double) x-gradient_vector->x1;
3201       q.y=(double) y-gradient_vector->y1;
3202       length=sqrt(q.x*q.x+q.y*q.y);
3203       gamma=sqrt(p.x*p.x+p.y*p.y)*length;
3204       gamma=1.0/(gamma <= MagickEpsilon ? 1.0 : gamma);
3205       scale=p.x*q.x+p.y*q.y;
3206       offset=gamma*scale*length;
3207       return(offset);
3208     }
3209     case RadialGradient:
3210     {
3211       MagickRealType
3212         length,
3213         offset;
3214
3215       PointInfo
3216         v;
3217
3218       v.x=(double) x-gradient->center.x;
3219       v.y=(double) y-gradient->center.y;
3220       length=sqrt(v.x*v.x+v.y*v.y);
3221       if (gradient->spread == RepeatSpread)
3222         return(length);
3223       offset=length/gradient->radius;
3224       return(offset);
3225     }
3226   }
3227   return(0.0);
3228 }
3229
3230 MagickExport MagickBooleanType DrawGradientImage(Image *image,
3231   const DrawInfo *draw_info)
3232 {
3233   CacheView
3234     *image_view;
3235
3236   const GradientInfo
3237     *gradient;
3238
3239   const SegmentInfo
3240     *gradient_vector;
3241
3242   ExceptionInfo
3243     *exception;
3244
3245   MagickBooleanType
3246     status;
3247
3248   MagickPixelPacket
3249     zero;
3250
3251   MagickRealType
3252     length;
3253
3254   PointInfo
3255     point;
3256
3257   RectangleInfo
3258     bounding_box;
3259
3260   ssize_t
3261     y;
3262
3263   /*
3264     Draw linear or radial gradient on image.
3265   */
3266   assert(image != (Image *) NULL);
3267   assert(image->signature == MagickSignature);
3268   if (image->debug != MagickFalse)
3269     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
3270   assert(draw_info != (const DrawInfo *) NULL);
3271   gradient=(&draw_info->gradient);
3272   gradient_vector=(&gradient->gradient_vector);
3273   point.x=gradient_vector->x2-gradient_vector->x1;
3274   point.y=gradient_vector->y2-gradient_vector->y1;
3275   length=sqrt(point.x*point.x+point.y*point.y);
3276   bounding_box=gradient->bounding_box;
3277   status=MagickTrue;
3278   exception=(&image->exception);
3279   GetMagickPixelPacket(image,&zero);
3280   image_view=AcquireCacheView(image);
3281 #if defined(MAGICKCORE_OPENMP_SUPPORT)
3282   #pragma omp parallel for schedule(dynamic,4) shared(status)
3283 #endif
3284   for (y=bounding_box.y; y < (ssize_t) bounding_box.height; y++)
3285   {
3286     MagickPixelPacket
3287       composite,
3288       pixel;
3289
3290     MagickRealType
3291       alpha,
3292       offset;
3293
3294     register IndexPacket
3295       *restrict indexes;
3296
3297     register ssize_t
3298       i,
3299       x;
3300
3301     register PixelPacket
3302       *restrict q;
3303
3304     ssize_t
3305       j;
3306
3307     if (status == MagickFalse)
3308       continue;
3309     q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,exception);
3310     if (q == (PixelPacket *) NULL)
3311       {
3312         status=MagickFalse;
3313         continue;
3314       }
3315     indexes=GetCacheViewAuthenticIndexQueue(image_view);
3316     pixel=zero;
3317     composite=zero;
3318     offset=GetStopColorOffset(gradient,0,y);
3319     if (gradient->type != RadialGradient)
3320       offset/=length;
3321     for (x=bounding_box.x; x < (ssize_t) bounding_box.width; x++)
3322     {
3323       SetMagickPixelPacket(image,q,indexes+x,&pixel);
3324       switch (gradient->spread)
3325       {
3326         case UndefinedSpread:
3327         case PadSpread:
3328         {
3329           if ((x != (ssize_t) ceil(gradient_vector->x1-0.5)) ||
3330               (y != (ssize_t) ceil(gradient_vector->y1-0.5)))
3331             {
3332               offset=GetStopColorOffset(gradient,x,y);
3333               if (gradient->type != RadialGradient)
3334                 offset/=length;
3335             }
3336           for (i=0; i < (ssize_t) gradient->number_stops; i++)
3337             if (offset < gradient->stops[i].offset)
3338               break;
3339           if ((offset < 0.0) || (i == 0))
3340             composite=gradient->stops[0].color;
3341           else
3342             if ((offset > 1.0) || (i == (ssize_t) gradient->number_stops))
3343               composite=gradient->stops[gradient->number_stops-1].color;
3344             else
3345               {
3346                 j=i;
3347                 i--;
3348                 alpha=(offset-gradient->stops[i].offset)/
3349                   (gradient->stops[j].offset-gradient->stops[i].offset);
3350                 MagickPixelCompositeBlend(&gradient->stops[i].color,1.0-alpha,
3351                   &gradient->stops[j].color,alpha,&composite);
3352               }
3353           break;
3354         }
3355         case ReflectSpread:
3356         {
3357           if ((x != (ssize_t) ceil(gradient_vector->x1-0.5)) ||
3358               (y != (ssize_t) ceil(gradient_vector->y1-0.5)))
3359             {
3360               offset=GetStopColorOffset(gradient,x,y);
3361               if (gradient->type != RadialGradient)
3362                 offset/=length;
3363             }
3364           if (offset < 0.0)
3365             offset=(-offset);
3366           if ((ssize_t) fmod(offset,2.0) == 0)
3367             offset=fmod(offset,1.0);
3368           else
3369             offset=1.0-fmod(offset,1.0);
3370           for (i=0; i < (ssize_t) gradient->number_stops; i++)
3371             if (offset < gradient->stops[i].offset)
3372               break;
3373           if (i == 0)
3374             composite=gradient->stops[0].color;
3375           else
3376             if (i == (ssize_t) gradient->number_stops)
3377               composite=gradient->stops[gradient->number_stops-1].color;
3378             else
3379               {
3380                 j=i;
3381                 i--;
3382                 alpha=(offset-gradient->stops[i].offset)/
3383                   (gradient->stops[j].offset-gradient->stops[i].offset);
3384                 MagickPixelCompositeBlend(&gradient->stops[i].color,1.0-alpha,
3385                   &gradient->stops[j].color,alpha,&composite);
3386               }
3387           break;
3388         }
3389         case RepeatSpread:
3390         {
3391           MagickBooleanType
3392             antialias;
3393
3394           MagickRealType
3395             repeat;
3396
3397           antialias=MagickFalse;
3398           repeat=0.0;
3399           if ((x != (ssize_t) ceil(gradient_vector->x1-0.5)) ||
3400               (y != (ssize_t) ceil(gradient_vector->y1-0.5)))
3401             {
3402               offset=GetStopColorOffset(gradient,x,y);
3403               if (gradient->type == LinearGradient)
3404                 {
3405                   repeat=fmod(offset,length);
3406                   if (repeat < 0.0)
3407                     repeat=length-fmod(-repeat,length);
3408                   else
3409                     repeat=fmod(offset,length);
3410                   antialias=(repeat < length) && ((repeat+1.0) > length) ?
3411                     MagickTrue : MagickFalse;
3412                   offset=repeat/length;
3413                 }
3414               else
3415                 {
3416                   repeat=fmod(offset,gradient->radius);
3417                   if (repeat < 0.0)
3418                     repeat=gradient->radius-fmod(-repeat,gradient->radius);
3419                   else
3420                     repeat=fmod(offset,gradient->radius);
3421                   antialias=repeat+1.0 > gradient->radius ?
3422                     MagickTrue : MagickFalse;
3423                   offset=repeat/gradient->radius;
3424                 }
3425             }
3426           for (i=0; i < (ssize_t) gradient->number_stops; i++)
3427             if (offset < gradient->stops[i].offset)
3428               break;
3429           if (i == 0)
3430             composite=gradient->stops[0].color;
3431           else
3432             if (i == (ssize_t) gradient->number_stops)
3433               composite=gradient->stops[gradient->number_stops-1].color;
3434             else
3435               {
3436                 j=i;
3437                 i--;
3438                 alpha=(offset-gradient->stops[i].offset)/
3439                   (gradient->stops[j].offset-gradient->stops[i].offset);
3440                 if (antialias != MagickFalse)
3441                   {
3442                     if (gradient->type == LinearGradient)
3443                       alpha=length-repeat;
3444                     else
3445                       alpha=gradient->radius-repeat;
3446                     i=0;
3447                     j=(ssize_t) gradient->number_stops-1L;
3448                   }
3449                 MagickPixelCompositeBlend(&gradient->stops[i].color,1.0-alpha,
3450                   &gradient->stops[j].color,alpha,&composite);
3451               }
3452           break;
3453         }
3454       }
3455       MagickPixelCompositeOver(&composite,composite.opacity,&pixel,
3456         pixel.opacity,&pixel);
3457       SetPixelPacket(image,&pixel,q,indexes+x);
3458       q++;
3459     }
3460     if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
3461       status=MagickFalse;
3462   }
3463   image_view=DestroyCacheView(image_view);
3464   return(status);
3465 }
3466 \f
3467 /*
3468 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3469 %                                                                             %
3470 %                                                                             %
3471 %                                                                             %
3472 %   D r a w P a t t e r n P a t h                                             %
3473 %                                                                             %
3474 %                                                                             %
3475 %                                                                             %
3476 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3477 %
3478 %  DrawPatternPath() draws a pattern.
3479 %
3480 %  The format of the DrawPatternPath method is:
3481 %
3482 %      MagickBooleanType DrawPatternPath(Image *image,const DrawInfo *draw_info,
3483 %        const char *name,Image **pattern)
3484 %
3485 %  A description of each parameter follows:
3486 %
3487 %    o image: the image.
3488 %
3489 %    o draw_info: the draw info.
3490 %
3491 %    o name: the pattern name.
3492 %
3493 %    o image: the image.
3494 %
3495 */
3496 MagickExport MagickBooleanType DrawPatternPath(Image *image,
3497   const DrawInfo *draw_info,const char *name,Image **pattern)
3498 {
3499   char
3500     property[MaxTextExtent];
3501
3502   const char
3503     *geometry,
3504     *path;
3505
3506   DrawInfo
3507     *clone_info;
3508
3509   ImageInfo
3510     *image_info;
3511
3512   MagickBooleanType
3513     status;
3514
3515   assert(image != (Image *) NULL);
3516   assert(image->signature == MagickSignature);
3517   if (image->debug != MagickFalse)
3518     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
3519   assert(draw_info != (const DrawInfo *) NULL);
3520   assert(name != (const char *) NULL);
3521   (void) FormatMagickString(property,MaxTextExtent,"%s",name);
3522   path=GetImageArtifact(image,property);
3523   if (path == (const char *) NULL)
3524     return(MagickFalse);
3525   (void) FormatMagickString(property,MaxTextExtent,"%s-geometry",name);
3526   geometry=GetImageArtifact(image,property);
3527   if (geometry == (const char *) NULL)
3528     return(MagickFalse);
3529   if ((*pattern) != (Image *) NULL)
3530     *pattern=DestroyImage(*pattern);
3531   image_info=AcquireImageInfo();
3532   image_info->size=AcquireString(geometry);
3533   *pattern=AcquireImage(image_info);
3534   image_info=DestroyImageInfo(image_info);
3535   (void) QueryColorDatabase("#00000000",&(*pattern)->background_color,
3536     &image->exception);
3537   (void) SetImageBackgroundColor(*pattern);
3538   if (image->debug != MagickFalse)
3539     (void) LogMagickEvent(DrawEvent,GetMagickModule(),
3540       "begin pattern-path %s %s",name,geometry);
3541   clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
3542   clone_info->fill_pattern=NewImageList();
3543   clone_info->stroke_pattern=NewImageList();
3544   (void) CloneString(&clone_info->primitive,path);
3545   status=DrawImage(*pattern,clone_info);
3546   clone_info=DestroyDrawInfo(clone_info);
3547   if (image->debug != MagickFalse)
3548     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"end pattern-path");
3549   return(status);
3550 }
3551 \f
3552 /*
3553 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3554 %                                                                             %
3555 %                                                                             %
3556 %                                                                             %
3557 +   D r a w P o l y g o n P r i m i t i v e                                   %
3558 %                                                                             %
3559 %                                                                             %
3560 %                                                                             %
3561 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3562 %
3563 %  DrawPolygonPrimitive() draws a polygon on the image.
3564 %
3565 %  The format of the DrawPolygonPrimitive method is:
3566 %
3567 %      MagickBooleanType DrawPolygonPrimitive(Image *image,
3568 %        const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
3569 %
3570 %  A description of each parameter follows:
3571 %
3572 %    o image: the image.
3573 %
3574 %    o draw_info: the draw info.
3575 %
3576 %    o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
3577 %
3578 */
3579
3580 static PolygonInfo **DestroyPolygonThreadSet(PolygonInfo **polygon_info)
3581 {
3582   register ssize_t
3583     i;
3584
3585   assert(polygon_info != (PolygonInfo **) NULL);
3586   for (i=0; i < (ssize_t) GetOpenMPMaximumThreads(); i++)
3587     if (polygon_info[i] != (PolygonInfo *) NULL)
3588       polygon_info[i]=DestroyPolygonInfo(polygon_info[i]);
3589   polygon_info=(PolygonInfo **) RelinquishMagickMemory(polygon_info);
3590   return(polygon_info);
3591 }
3592
3593 static PolygonInfo **AcquirePolygonThreadSet(const DrawInfo *draw_info,
3594   const PrimitiveInfo *primitive_info)
3595 {
3596   PathInfo
3597     *restrict path_info;
3598
3599   PolygonInfo
3600     **polygon_info;
3601
3602   register ssize_t
3603     i;
3604
3605   size_t
3606     number_threads;
3607
3608   number_threads=GetOpenMPMaximumThreads();
3609   polygon_info=(PolygonInfo **) AcquireQuantumMemory(number_threads,
3610     sizeof(*polygon_info));
3611   if (polygon_info == (PolygonInfo **) NULL)
3612     return((PolygonInfo **) NULL);
3613   (void) ResetMagickMemory(polygon_info,0,GetOpenMPMaximumThreads()*
3614     sizeof(*polygon_info));
3615   path_info=ConvertPrimitiveToPath(draw_info,primitive_info);
3616   if (path_info == (PathInfo *) NULL)
3617     return(DestroyPolygonThreadSet(polygon_info));
3618   for (i=0; i < (ssize_t) number_threads; i++)
3619   {
3620     polygon_info[i]=ConvertPathToPolygon(draw_info,path_info);
3621     if (polygon_info[i] == (PolygonInfo *) NULL)
3622       return(DestroyPolygonThreadSet(polygon_info));
3623   }
3624   path_info=(PathInfo *) RelinquishMagickMemory(path_info);
3625   return(polygon_info);
3626 }
3627
3628 static MagickRealType GetPixelOpacity(PolygonInfo *polygon_info,
3629   const MagickRealType mid,const MagickBooleanType fill,
3630   const FillRule fill_rule,const double x,const double y,
3631   MagickRealType *stroke_opacity)
3632 {
3633   MagickRealType
3634     alpha,
3635     beta,
3636     distance,
3637     subpath_opacity;
3638
3639   PointInfo
3640     delta;
3641
3642   register EdgeInfo
3643     *p;
3644
3645   register const PointInfo
3646     *q;
3647
3648   register ssize_t
3649     i;
3650
3651   ssize_t
3652     j,
3653     winding_number;
3654
3655   /*
3656     Compute fill & stroke opacity for this (x,y) point.
3657   */
3658   *stroke_opacity=0.0;
3659   subpath_opacity=0.0;
3660   p=polygon_info->edges;
3661   for (j=0; j < (ssize_t) polygon_info->number_edges; j++, p++)
3662   {
3663     if (y <= (p->bounds.y1-mid-0.5))
3664       break;
3665     if (y > (p->bounds.y2+mid+0.5))
3666       {
3667         (void) DestroyEdge(polygon_info,(size_t) j);
3668         continue;
3669       }
3670     if ((x <= (p->bounds.x1-mid-0.5)) || (x > (p->bounds.x2+mid+0.5)))
3671       continue;
3672     i=(ssize_t) MagickMax((double) p->highwater,1.0);
3673     for ( ; i < (ssize_t) p->number_points; i++)
3674     {
3675       if (y <= (p->points[i-1].y-mid-0.5))
3676         break;
3677       if (y > (p->points[i].y+mid+0.5))
3678         continue;
3679       if (p->scanline != y)
3680         {
3681           p->scanline=y;
3682           p->highwater=(size_t) i;
3683         }
3684       /*
3685         Compute distance between a point and an edge.
3686       */
3687       q=p->points+i-1;
3688       delta.x=(q+1)->x-q->x;
3689       delta.y=(q+1)->y-q->y;
3690       beta=delta.x*(x-q->x)+delta.y*(y-q->y);
3691       if (beta < 0.0)
3692         {
3693           delta.x=x-q->x;
3694           delta.y=y-q->y;
3695           distance=delta.x*delta.x+delta.y*delta.y;
3696         }
3697       else
3698         {
3699           alpha=delta.x*delta.x+delta.y*delta.y;
3700           if (beta > alpha)
3701             {
3702               delta.x=x-(q+1)->x;
3703               delta.y=y-(q+1)->y;
3704               distance=delta.x*delta.x+delta.y*delta.y;
3705             }
3706           else
3707             {
3708               alpha=1.0/alpha;
3709               beta=delta.x*(y-q->y)-delta.y*(x-q->x);
3710               distance=alpha*beta*beta;
3711             }
3712         }
3713       /*
3714         Compute stroke & subpath opacity.
3715       */
3716       beta=0.0;
3717       if (p->ghostline == MagickFalse)
3718         {
3719           alpha=mid+0.5;
3720           if ((*stroke_opacity < 1.0) &&
3721               (distance <= ((alpha+0.25)*(alpha+0.25))))
3722             {
3723               alpha=mid-0.5;
3724               if (distance <= ((alpha+0.25)*(alpha+0.25)))
3725                 *stroke_opacity=1.0;
3726               else
3727                 {
3728                   beta=1.0;
3729                   if (distance != 1.0)
3730                     beta=sqrt((double) distance);
3731                   alpha=beta-mid-0.5;
3732                   if (*stroke_opacity < ((alpha-0.25)*(alpha-0.25)))
3733                     *stroke_opacity=(alpha-0.25)*(alpha-0.25);
3734                 }
3735             }
3736         }
3737       if ((fill == MagickFalse) || (distance > 1.0) || (subpath_opacity >= 1.0))
3738         continue;
3739       if (distance <= 0.0)
3740         {
3741           subpath_opacity=1.0;
3742           continue;
3743         }
3744       if (distance > 1.0)
3745         continue;
3746       if (beta == 0.0)
3747         {
3748           beta=1.0;
3749           if (distance != 1.0)
3750             beta=sqrt(distance);
3751         }
3752       alpha=beta-1.0;
3753       if (subpath_opacity < (alpha*alpha))
3754         subpath_opacity=alpha*alpha;
3755     }
3756   }
3757   /*
3758     Compute fill opacity.
3759   */
3760   if (fill == MagickFalse)
3761     return(0.0);
3762   if (subpath_opacity >= 1.0)
3763     return(1.0);
3764   /*
3765     Determine winding number.
3766   */
3767   winding_number=0;
3768   p=polygon_info->edges;
3769   for (j=0; j < (ssize_t) polygon_info->number_edges; j++, p++)
3770   {
3771     if (y <= p->bounds.y1)
3772       break;
3773     if ((y > p->bounds.y2) || (x <= p->bounds.x1))
3774       continue;
3775     if (x > p->bounds.x2)
3776       {
3777         winding_number+=p->direction ? 1 : -1;
3778         continue;
3779       }
3780     i=(ssize_t) MagickMax((double) p->highwater,1.0);
3781     for ( ; i < (ssize_t) p->number_points; i++)
3782       if (y <= p->points[i].y)
3783         break;
3784     q=p->points+i-1;
3785     if ((((q+1)->x-q->x)*(y-q->y)) <= (((q+1)->y-q->y)*(x-q->x)))
3786       winding_number+=p->direction ? 1 : -1;
3787   }
3788   if (fill_rule != NonZeroRule)
3789     {
3790       if ((MagickAbsoluteValue(winding_number) & 0x01) != 0)
3791         return(1.0);
3792     }
3793   else
3794     if (MagickAbsoluteValue(winding_number) != 0)
3795       return(1.0);
3796   return(subpath_opacity);
3797 }
3798
3799 static MagickBooleanType DrawPolygonPrimitive(Image *image,
3800   const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
3801 {
3802   CacheView
3803     *image_view;
3804
3805   ExceptionInfo
3806     *exception;
3807
3808   MagickBooleanType
3809     fill,
3810     status;
3811
3812   MagickRealType
3813     mid;
3814
3815   PolygonInfo
3816     **restrict polygon_info;
3817
3818   register EdgeInfo
3819     *p;
3820
3821   register ssize_t
3822     i;
3823
3824   SegmentInfo
3825     bounds;
3826
3827   ssize_t
3828     start,
3829     stop,
3830     y;
3831
3832   /*
3833     Compute bounding box.
3834   */
3835   assert(image != (Image *) NULL);
3836   assert(image->signature == MagickSignature);
3837   if (image->debug != MagickFalse)
3838     (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
3839   assert(draw_info != (DrawInfo *) NULL);
3840   assert(draw_info->signature == MagickSignature);
3841   assert(primitive_info != (PrimitiveInfo *) NULL);
3842   if (primitive_info->coordinates == 0)
3843     return(MagickTrue);
3844   polygon_info=AcquirePolygonThreadSet(draw_info,primitive_info);
3845   if (polygon_info == (PolygonInfo **) NULL)
3846     return(MagickFalse);
3847   if (0)
3848     DrawBoundingRectangles(image,draw_info,polygon_info[0]);
3849   if (image->debug != MagickFalse)
3850     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    begin draw-polygon");
3851   fill=(primitive_info->method == FillToBorderMethod) ||
3852     (primitive_info->method == FloodfillMethod) ? MagickTrue : MagickFalse;
3853   mid=ExpandAffine(&draw_info->affine)*draw_info->stroke_width/2.0;
3854   bounds=polygon_info[0]->edges[0].bounds;
3855   for (i=1; i < (ssize_t) polygon_info[0]->number_edges; i++)
3856   {
3857     p=polygon_info[0]->edges+i;
3858     if (p->bounds.x1 < bounds.x1)
3859       bounds.x1=p->bounds.x1;
3860     if (p->bounds.y1 < bounds.y1)
3861       bounds.y1=p->bounds.y1;
3862     if (p->bounds.x2 > bounds.x2)
3863       bounds.x2=p->bounds.x2;
3864     if (p->bounds.y2 > bounds.y2)
3865       bounds.y2=p->bounds.y2;
3866   }
3867   bounds.x1-=(mid+1.0);
3868   bounds.x1=bounds.x1 < 0.0 ? 0.0 : (size_t) ceil(bounds.x1-0.5) >=
3869     image->columns ? (double) image->columns-1.0 : bounds.x1;
3870   bounds.y1-=(mid+1.0);
3871   bounds.y1=bounds.y1 < 0.0 ? 0.0 : (size_t) ceil(bounds.y1-0.5) >=
3872     image->rows ? (double) image->rows-1.0 : bounds.y1;
3873   bounds.x2+=(mid+1.0);
3874   bounds.x2=bounds.x2 < 0.0 ? 0.0 : (size_t) floor(bounds.x2+0.5) >=
3875     image->columns ? (double) image->columns-1.0 : bounds.x2;
3876   bounds.y2+=(mid+1.0);
3877   bounds.y2=bounds.y2 < 0.0 ? 0.0 : (size_t) floor(bounds.y2+0.5) >=
3878     image->rows ? (double) image->rows-1.0 : bounds.y2;
3879   status=MagickTrue;
3880   exception=(&image->exception);
3881   start=(ssize_t) ceil(bounds.x1-0.5);
3882   stop=(ssize_t) floor(bounds.x2+0.5);
3883   image_view=AcquireCacheView(image);
3884   if (primitive_info->coordinates == 1)
3885     {
3886       /*
3887         Draw point.
3888       */
3889 #if defined(MAGICKCORE_OPENMP_SUPPORT)
3890   #pragma omp parallel for schedule(dynamic,4) shared(status)
3891 #endif
3892       for (y=(ssize_t) ceil(bounds.y1-0.5); y <= (ssize_t) floor(bounds.y2+0.5); y++)
3893       {
3894         MagickBooleanType
3895           sync;
3896
3897         register ssize_t
3898           x;
3899
3900         register PixelPacket
3901           *restrict q;
3902
3903         if (status == MagickFalse)
3904           continue;
3905         x=start;
3906         q=GetCacheViewAuthenticPixels(image_view,x,y,(size_t) (stop-x+1),
3907           1,exception);
3908         if (q == (PixelPacket *) NULL)
3909           {
3910             status=MagickFalse;
3911             continue;
3912           }
3913         for ( ; x <= stop; x++)
3914         {
3915           if ((x == (ssize_t) ceil(primitive_info->point.x-0.5)) &&
3916               (y == (ssize_t) ceil(primitive_info->point.y-0.5)))
3917             (void) GetStrokeColor(draw_info,x,y,q);
3918           q++;
3919         }
3920         sync=SyncCacheViewAuthenticPixels(image_view,exception);
3921         if (sync == MagickFalse)
3922           status=MagickFalse;
3923       }
3924       image_view=DestroyCacheView(image_view);
3925       polygon_info=DestroyPolygonThreadSet(polygon_info);
3926       if (image->debug != MagickFalse)
3927         (void) LogMagickEvent(DrawEvent,GetMagickModule(),
3928           "    end draw-polygon");
3929       return(status);
3930     }
3931   /*
3932     Draw polygon or line.
3933   */
3934   if (image->matte == MagickFalse)
3935     (void) SetImageAlphaChannel(image,OpaqueAlphaChannel);
3936 #if defined(MAGICKCORE_OPENMP_SUPPORT)
3937   #pragma omp parallel for schedule(dynamic,4) shared(status)
3938 #endif
3939   for (y=(ssize_t) ceil(bounds.y1-0.5); y <= (ssize_t) floor(bounds.y2+0.5); y++)
3940   {
3941     const int
3942       id = GetOpenMPThreadId();
3943
3944     MagickRealType
3945       fill_opacity,
3946       stroke_opacity;
3947
3948     PixelPacket
3949       fill_color,
3950       stroke_color;
3951
3952     register PixelPacket
3953       *restrict q;
3954
3955     register ssize_t
3956       x;
3957
3958     if (status == MagickFalse)
3959       continue;
3960     q=GetCacheViewAuthenticPixels(image_view,start,y,(size_t) (stop-
3961       start+1),1,exception);
3962     if (q == (PixelPacket *) NULL)
3963       {
3964         status=MagickFalse;
3965         continue;
3966       }
3967     for (x=start; x <= stop; x++)
3968     {
3969       /*
3970         Fill and/or stroke.
3971       */
3972       fill_opacity=GetPixelOpacity(polygon_info[id],mid,fill,
3973         draw_info->fill_rule,(double) x,(double) y,&stroke_opacity);
3974       if (draw_info->stroke_antialias == MagickFalse)
3975         {
3976           fill_opacity=fill_opacity > 0.25 ? 1.0 : 0.0;
3977           stroke_opacity=stroke_opacity > 0.25 ? 1.0 : 0.0;
3978         }
3979       (void) GetFillColor(draw_info,x,y,&fill_color);
3980       fill_opacity=(MagickRealType) (QuantumRange-fill_opacity*(QuantumRange-
3981         fill_color.opacity));
3982       MagickCompositeOver(&fill_color,fill_opacity,q,(MagickRealType)
3983         q->opacity,q);
3984       (void) GetStrokeColor(draw_info,x,y,&stroke_color);
3985       stroke_opacity=(MagickRealType) (QuantumRange-stroke_opacity*
3986         (QuantumRange-stroke_color.opacity));
3987       MagickCompositeOver(&stroke_color,stroke_opacity,q,(MagickRealType)
3988         q->opacity,q);
3989       q++;
3990     }
3991     if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
3992       status=MagickFalse;
3993   }
3994   image_view=DestroyCacheView(image_view);
3995   polygon_info=DestroyPolygonThreadSet(polygon_info);
3996   if (image->debug != MagickFalse)
3997     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    end draw-polygon");
3998   return(status);
3999 }
4000 \f
4001 /*
4002 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4003 %                                                                             %
4004 %                                                                             %
4005 %                                                                             %
4006 %   D r a w P r i m i t i v e                                                 %
4007 %                                                                             %
4008 %                                                                             %
4009 %                                                                             %
4010 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4011 %
4012 %  DrawPrimitive() draws a primitive (line, rectangle, ellipse) on the image.
4013 %
4014 %  The format of the DrawPrimitive method is:
4015 %
4016 %      MagickBooleanType DrawPrimitive(Image *image,const DrawInfo *draw_info,
4017 %        PrimitiveInfo *primitive_info)
4018 %
4019 %  A description of each parameter follows:
4020 %
4021 %    o image: the image.
4022 %
4023 %    o draw_info: the draw info.
4024 %
4025 %    o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
4026 %
4027 */
4028
4029 static void LogPrimitiveInfo(const PrimitiveInfo *primitive_info)
4030 {
4031   const char
4032     *methods[] =
4033     {
4034       "point",
4035       "replace",
4036       "floodfill",
4037       "filltoborder",
4038       "reset",
4039       "?"
4040     };
4041
4042   PointInfo
4043     p,
4044     q,
4045     point;
4046
4047   register ssize_t
4048     i,
4049     x;
4050
4051   ssize_t
4052     coordinates,
4053     y;
4054
4055   x=(ssize_t) ceil(primitive_info->point.x-0.5);
4056   y=(ssize_t) ceil(primitive_info->point.y-0.5);
4057   switch (primitive_info->primitive)
4058   {
4059     case PointPrimitive:
4060     {
4061       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4062         "PointPrimitive %.20g,%.20g %s",(double) x,(double) y,
4063         methods[primitive_info->method]);
4064       return;
4065     }
4066     case ColorPrimitive:
4067     {
4068       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4069         "ColorPrimitive %.20g,%.20g %s",(double) x,(double) y,
4070         methods[primitive_info->method]);
4071       return;
4072     }
4073     case MattePrimitive:
4074     {
4075       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4076         "MattePrimitive %.20g,%.20g %s",(double) x,(double) y,
4077         methods[primitive_info->method]);
4078       return;
4079     }
4080     case TextPrimitive:
4081     {
4082       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4083         "TextPrimitive %.20g,%.20g",(double) x,(double) y);
4084       return;
4085     }
4086     case ImagePrimitive:
4087     {
4088       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4089         "ImagePrimitive %.20g,%.20g",(double) x,(double) y);
4090       return;
4091     }
4092     default:
4093       break;
4094   }
4095   coordinates=0;
4096   p=primitive_info[0].point;
4097   q.x=(-1.0);
4098   q.y=(-1.0);
4099   for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
4100   {
4101     point=primitive_info[i].point;
4102     if (coordinates <= 0)
4103       {
4104         coordinates=(ssize_t) primitive_info[i].coordinates;
4105         (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4106           "    begin open (%.20g)",(double) coordinates);
4107         p=point;
4108       }
4109     point=primitive_info[i].point;
4110     if ((fabs(q.x-point.x) > MagickEpsilon) ||
4111         (fabs(q.y-point.y) > MagickEpsilon))
4112       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4113         "      %.20g: %.18g,%.18g",(double) coordinates,point.x,point.y);
4114     else
4115       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4116         "      %.20g: %g,%g (duplicate)",(double) coordinates,point.x,point.y);
4117     q=point;
4118     coordinates--;
4119     if (coordinates > 0)
4120       continue;
4121     if ((fabs(p.x-point.x) > MagickEpsilon) ||
4122         (fabs(p.y-point.y) > MagickEpsilon))
4123       (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    end last (%.20g)",
4124         (double) coordinates);
4125     else
4126       (void) LogMagickEvent(DrawEvent,GetMagickModule(),"    end open (%.20g)",
4127         (double) coordinates);
4128   }
4129 }
4130
4131 MagickExport MagickBooleanType DrawPrimitive(Image *image,
4132   const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
4133 {
4134   CacheView
4135     *image_view;
4136
4137   ExceptionInfo
4138     *exception;
4139
4140   MagickStatusType
4141     status;
4142
4143   register ssize_t
4144     i,
4145     x;
4146
4147   ssize_t
4148     y;
4149
4150   if (image->debug != MagickFalse)
4151     {
4152       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4153         "  begin draw-primitive");
4154       (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4155         "    affine: %g,%g,%g,%g,%g,%g",draw_info->affine.sx,
4156         draw_info->affine.rx,draw_info->affine.ry,draw_info->affine.sy,
4157         draw_info->affine.tx,draw_info->affine.ty);
4158     }
4159   status=MagickTrue;
4160   exception=(&image->exception);
4161   x=(ssize_t) ceil(primitive_info->point.x-0.5);
4162   y=(ssize_t) ceil(primitive_info->point.y-0.5);
4163   image_view=AcquireCacheView(image);
4164   switch (primitive_info->primitive)
4165   {
4166     case PointPrimitive:
4167     {
4168       PixelPacket
4169         fill_color;
4170
4171       PixelPacket
4172         *q;
4173
4174       if ((y < 0) || (y >= (ssize_t) image->rows))
4175         break;
4176       if ((x < 0) || (x >= (ssize_t) image->columns))
4177         break;
4178       q=GetCacheViewAuthenticPixels(image_view,x,y,1,1,exception);
4179       if (q == (PixelPacket *) NULL)
4180         break;
4181       (void) GetFillColor(draw_info,x,y,&fill_color);
4182       MagickCompositeOver(&fill_color,(MagickRealType) fill_color.opacity,q,
4183         (MagickRealType) q->opacity,q);
4184       (void) SyncCacheViewAuthenticPixels(image_view,exception);
4185       break;
4186     }
4187     case ColorPrimitive:
4188     {
4189       switch (primitive_info->method)
4190       {
4191         case PointMethod:
4192         default:
4193         {
4194           PixelPacket
4195             *q;
4196
4197           q=GetCacheViewAuthenticPixels(image_view,x,y,1,1,exception);
4198           if (q == (PixelPacket *) NULL)
4199             break;
4200           (void) GetFillColor(draw_info,x,y,q);
4201           (void) SyncCacheViewAuthenticPixels(image_view,exception);
4202           break;
4203         }
4204         case ReplaceMethod:
4205         {
4206           MagickBooleanType
4207             sync;
4208
4209           PixelPacket
4210             target;
4211
4212           (void) GetOneCacheViewVirtualPixel(image_view,x,y,&target,exception);
4213           for (y=0; y < (ssize_t) image->rows; y++)
4214           {
4215             register PixelPacket
4216               *restrict q;
4217
4218             q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
4219               exception);
4220             if (q == (PixelPacket *) NULL)
4221               break;
4222             for (x=0; x < (ssize_t) image->columns; x++)
4223             {
4224               if (IsColorSimilar(image,q,&target) == MagickFalse)
4225                 {
4226                   q++;
4227                   continue;
4228                 }
4229               (void) GetFillColor(draw_info,x,y,q);
4230               q++;
4231             }
4232             sync=SyncCacheViewAuthenticPixels(image_view,exception);
4233             if (sync == MagickFalse)
4234               break;
4235           }
4236           break;
4237         }
4238         case FloodfillMethod:
4239         case FillToBorderMethod:
4240         {
4241           MagickPixelPacket
4242             target;
4243
4244           (void) GetOneVirtualMagickPixel(image,x,y,&target,exception);
4245           if (primitive_info->method == FillToBorderMethod)
4246             {
4247               target.red=(MagickRealType) draw_info->border_color.red;
4248               target.green=(MagickRealType) draw_info->border_color.green;
4249               target.blue=(MagickRealType) draw_info->border_color.blue;
4250             }
4251           (void) FloodfillPaintImage(image,DefaultChannels,draw_info,&target,x,
4252             y,primitive_info->method == FloodfillMethod ? MagickFalse :
4253             MagickTrue);
4254           break;
4255         }
4256         case ResetMethod:
4257         {
4258           MagickBooleanType
4259             sync;
4260
4261           for (y=0; y < (ssize_t) image->rows; y++)
4262           {
4263             register PixelPacket
4264               *restrict q;
4265
4266             register ssize_t
4267               x;
4268
4269             q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
4270               exception);
4271             if (q == (PixelPacket *) NULL)
4272               break;
4273             for (x=0; x < (ssize_t) image->columns; x++)
4274             {
4275               (void) GetFillColor(draw_info,x,y,q);
4276               q++;
4277             }
4278             sync=SyncCacheViewAuthenticPixels(image_view,exception);
4279             if (sync == MagickFalse)
4280               break;
4281           }
4282           break;
4283         }
4284       }
4285       break;
4286     }
4287     case MattePrimitive:
4288     {
4289       if (image->matte == MagickFalse)
4290         (void) SetImageAlphaChannel(image,OpaqueAlphaChannel);
4291       switch (primitive_info->method)
4292       {
4293         case PointMethod:
4294         default:
4295         {
4296           PixelPacket
4297             pixel;
4298
4299           PixelPacket
4300             *q;
4301
4302           q=GetCacheViewAuthenticPixels(image_view,x,y,1,1,exception);
4303           if (q == (PixelPacket *) NULL)
4304             break;
4305           (void) GetFillColor(draw_info,x,y,&pixel);
4306           q->opacity=pixel.opacity;
4307           (void) SyncCacheViewAuthenticPixels(image_view,exception);
4308           break;
4309         }
4310         case ReplaceMethod:
4311         {
4312           MagickBooleanType
4313             sync;
4314
4315           PixelPacket
4316             pixel,
4317             target;
4318
4319           (void) GetOneCacheViewVirtualPixel(image_view,x,y,&target,exception);
4320           for (y=0; y < (ssize_t) image->rows; y++)
4321           {
4322             register PixelPacket
4323               *restrict q;
4324
4325             register ssize_t
4326               x;
4327
4328             q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
4329               exception);
4330             if (q == (PixelPacket *) NULL)
4331               break;
4332             for (x=0; x < (ssize_t) image->columns; x++)
4333             {
4334               if (IsColorSimilar(image,q,&target) == MagickFalse)
4335                 {
4336                   q++;
4337                   continue;
4338                 }
4339               (void) GetFillColor(draw_info,x,y,&pixel);
4340               q->opacity=pixel.opacity;
4341               q++;
4342             }
4343             sync=SyncCacheViewAuthenticPixels(image_view,exception);
4344             if (sync == MagickFalse)
4345               break;
4346           }
4347           break;
4348         }
4349         case FloodfillMethod:
4350         case FillToBorderMethod:
4351         {
4352           MagickPixelPacket
4353             target;
4354
4355           (void) GetOneVirtualMagickPixel(image,x,y,&target,exception);
4356           if (primitive_info->method == FillToBorderMethod)
4357             {
4358               target.red=(MagickRealType) draw_info->border_color.red;
4359               target.green=(MagickRealType) draw_info->border_color.green;
4360               target.blue=(MagickRealType) draw_info->border_color.blue;
4361             }
4362           (void) FloodfillPaintImage(image,OpacityChannel,draw_info,&target,x,y,
4363             primitive_info->method == FloodfillMethod ? MagickFalse :
4364             MagickTrue);
4365           break;
4366         }
4367         case ResetMethod:
4368         {
4369           MagickBooleanType
4370             sync;
4371
4372           PixelPacket
4373             pixel;
4374
4375           for (y=0; y < (ssize_t) image->rows; y++)
4376           {
4377             register PixelPacket
4378               *restrict q;
4379
4380             register ssize_t
4381               x;
4382
4383             q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
4384               exception);
4385             if (q == (PixelPacket *) NULL)
4386               break;
4387             for (x=0; x < (ssize_t) image->columns; x++)
4388             {
4389               (void) GetFillColor(draw_info,x,y,&pixel);
4390               q->opacity=pixel.opacity;
4391               q++;
4392             }
4393             sync=SyncCacheViewAuthenticPixels(image_view,exception);
4394             if (sync == MagickFalse)
4395               break;
4396           }
4397           break;
4398         }
4399       }
4400       break;
4401     }
4402     case TextPrimitive:
4403     {
4404       char
4405         geometry[MaxTextExtent];
4406
4407       DrawInfo
4408         *clone_info;
4409
4410       if (primitive_info->text == (char *) NULL)
4411         break;
4412       clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
4413       (void) CloneString(&clone_info->text,primitive_info->text);
4414       (void) FormatMagickString(geometry,MaxTextExtent,"%+f%+f",
4415         primitive_info->point.x,primitive_info->point.y);
4416       (void) CloneString(&clone_info->geometry,geometry);
4417       status=AnnotateImage(image,clone_info);
4418       clone_info=DestroyDrawInfo(clone_info);
4419       break;
4420     }
4421     case ImagePrimitive:
4422     {
4423       AffineMatrix
4424         affine;
4425
4426       char
4427         composite_geometry[MaxTextExtent];
4428
4429       Image
4430         *composite_image;
4431
4432       ImageInfo
4433         *clone_info;
4434
4435       RectangleInfo
4436         geometry;
4437
4438       ssize_t
4439         x1,
4440         y1;
4441
4442       if (primitive_info->text == (char *) NULL)
4443         break;
4444       clone_info=AcquireImageInfo();
4445       if (LocaleNCompare(primitive_info->text,"data:",5) == 0)
4446         composite_image=ReadInlineImage(clone_info,primitive_info->text,
4447           &image->exception);
4448       else
4449         {
4450           (void) CopyMagickString(clone_info->filename,primitive_info->text,
4451             MaxTextExtent);
4452           composite_image=ReadImage(clone_info,&image->exception);
4453         }
4454       clone_info=DestroyImageInfo(clone_info);
4455       if (composite_image == (Image *) NULL)
4456         break;
4457       (void) SetImageProgressMonitor(composite_image,(MagickProgressMonitor)
4458         NULL,(void *) NULL);
4459       x1=(ssize_t) ceil(primitive_info[1].point.x-0.5);
4460       y1=(ssize_t) ceil(primitive_info[1].point.y-0.5);
4461       if (((x1 != 0L) && (x1 != (ssize_t) composite_image->columns)) ||
4462           ((y1 != 0L) && (y1 != (ssize_t) composite_image->rows)))
4463         {
4464           char
4465             geometry[MaxTextExtent];
4466
4467           /*
4468             Resize image.
4469           */
4470           (void) FormatMagickString(geometry,MaxTextExtent,"%gx%g!",
4471             primitive_info[1].point.x,primitive_info[1].point.y);
4472           composite_image->filter=image->filter;
4473           (void) TransformImage(&composite_image,(char *) NULL,geometry);
4474         }
4475       if (composite_image->matte == MagickFalse)
4476         (void) SetImageAlphaChannel(composite_image,OpaqueAlphaChannel);
4477       if (draw_info->opacity != OpaqueOpacity)
4478         (void) SetImageOpacity(composite_image,draw_info->opacity);
4479       SetGeometry(image,&geometry);
4480       image->gravity=draw_info->gravity;
4481       geometry.x=x;
4482       geometry.y=y;
4483       (void) FormatMagickString(composite_geometry,MaxTextExtent,
4484         "%.20gx%.20g%+.20g%+.20g",(double) composite_image->columns,(double)
4485         composite_image->rows,(double) geometry.x,(double) geometry.y);
4486       (void) ParseGravityGeometry(image,composite_geometry,&geometry,
4487         &image->exception);
4488       affine=draw_info->affine;
4489       affine.tx=(double) geometry.x;
4490       affine.ty=(double) geometry.y;
4491       composite_image->interpolate=image->interpolate;
4492       if (draw_info->compose == OverCompositeOp)
4493         (void) DrawAffineImage(image,composite_image,&affine);
4494       else
4495         (void) CompositeImage(image,draw_info->compose,composite_image,
4496           geometry.x,geometry.y);
4497       composite_image=DestroyImage(composite_image);
4498       break;
4499     }
4500     default:
4501     {
4502       MagickRealType
4503         mid,
4504         scale;
4505
4506       DrawInfo
4507         *clone_info;
4508
4509       if (IsEventLogging() != MagickFalse)
4510         LogPrimitiveInfo(primitive_info);
4511       scale=ExpandAffine(&draw_info->affine);
4512       if ((draw_info->dash_pattern != (double *) NULL) &&
4513           (draw_info->dash_pattern[0] != 0.0) &&
4514           ((scale*draw_info->stroke_width) > MagickEpsilon) &&
4515           (draw_info->stroke.opacity != (Quantum) TransparentOpacity))
4516         {
4517           /*
4518             Draw dash polygon.
4519           */
4520           clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
4521           clone_info->stroke_width=0.0;
4522           clone_info->stroke.opacity=(Quantum) TransparentOpacity;
4523           status=DrawPolygonPrimitive(image,clone_info,primitive_info);
4524           clone_info=DestroyDrawInfo(clone_info);
4525           (void) DrawDashPolygon(draw_info,primitive_info,image);
4526           break;
4527         }
4528       mid=ExpandAffine(&draw_info->affine)*draw_info->stroke_width/2.0;
4529       if ((mid > 1.0) &&
4530           (draw_info->stroke.opacity != (Quantum) TransparentOpacity))
4531         {
4532           MagickBooleanType
4533             closed_path;
4534
4535           /*
4536             Draw strokes while respecting line cap/join attributes.
4537           */
4538           for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++) ;
4539           closed_path=
4540             (primitive_info[i-1].point.x == primitive_info[0].point.x) &&
4541             (primitive_info[i-1].point.y == primitive_info[0].point.y) ?
4542             MagickTrue : MagickFalse;
4543           i=(ssize_t) primitive_info[0].coordinates;
4544           if ((((draw_info->linecap == RoundCap) ||
4545                 (closed_path != MagickFalse)) &&
4546                (draw_info->linejoin == RoundJoin)) ||
4547                (primitive_info[i].primitive != UndefinedPrimitive))
4548             {
4549               (void) DrawPolygonPrimitive(image,draw_info,primitive_info);
4550               break;
4551             }
4552           clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
4553           clone_info->stroke_width=0.0;
4554           clone_info->stroke.opacity=(Quantum) TransparentOpacity;
4555           status=DrawPolygonPrimitive(image,clone_info,primitive_info);
4556           clone_info=DestroyDrawInfo(clone_info);
4557           status|=DrawStrokePolygon(image,draw_info,primitive_info);
4558           break;
4559         }
4560       status=DrawPolygonPrimitive(image,draw_info,primitive_info);
4561       break;
4562     }
4563   }
4564   image_view=DestroyCacheView(image_view);
4565   if (image->debug != MagickFalse)
4566     (void) LogMagickEvent(DrawEvent,GetMagickModule(),"  end draw-primitive");
4567   return(status != 0 ? MagickTrue : MagickFalse);
4568 }
4569 \f
4570 /*
4571 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4572 %                                                                             %
4573 %                                                                             %
4574 %                                                                             %
4575 +   D r a w S t r o k e P o l y g o n                                         %
4576 %                                                                             %
4577 %                                                                             %
4578 %                                                                             %
4579 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4580 %
4581 %  DrawStrokePolygon() draws a stroked polygon (line, rectangle, ellipse) on
4582 %  the image while respecting the line cap and join attributes.
4583 %
4584 %  The format of the DrawStrokePolygon method is:
4585 %
4586 %      MagickBooleanType DrawStrokePolygon(Image *image,
4587 %        const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
4588 %
4589 %  A description of each parameter follows:
4590 %
4591 %    o image: the image.
4592 %
4593 %    o draw_info: the draw info.
4594 %
4595 %    o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
4596 %
4597 %
4598 */
4599
4600 static void DrawRoundLinecap(Image *image,const DrawInfo *draw_info,
4601   const PrimitiveInfo *primitive_info)
4602 {
4603   PrimitiveInfo
4604     linecap[5];
4605
4606   register ssize_t
4607     i;
4608
4609   for (i=0; i < 4; i++)
4610     linecap[i]=(*primitive_info);
4611   linecap[0].coordinates=4;
4612   linecap[1].point.x+=(double) (10.0*MagickEpsilon);
4613   linecap[2].point.x+=(double) (10.0*MagickEpsilon);
4614   linecap[2].point.y+=(double) (10.0*MagickEpsilon);
4615   linecap[3].point.y+=(double) (10.0*MagickEpsilon);
4616   linecap[4].primitive=UndefinedPrimitive;
4617   (void) DrawPolygonPrimitive(image,draw_info,linecap);
4618 }
4619
4620 static MagickBooleanType DrawStrokePolygon(Image *image,
4621   const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
4622 {
4623   DrawInfo
4624     *clone_info;
4625
4626   MagickBooleanType
4627     closed_path,
4628     status;
4629
4630   PrimitiveInfo
4631     *stroke_polygon;
4632
4633   register const PrimitiveInfo
4634     *p,
4635     *q;
4636
4637   /*
4638     Draw stroked polygon.
4639   */
4640   if (image->debug != MagickFalse)
4641     (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4642       "    begin draw-stroke-polygon");
4643   clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
4644   clone_info->fill=draw_info->stroke;
4645   clone_info->stroke.opacity=(Quantum) TransparentOpacity;
4646   clone_info->stroke_width=0.0;
4647   clone_info->fill_rule=NonZeroRule;
4648   status=MagickTrue;
4649   for (p=primitive_info; p->primitive != UndefinedPrimitive; p+=p->coordinates)
4650   {
4651     stroke_polygon=TraceStrokePolygon(draw_info,p);
4652     status=DrawPolygonPrimitive(image,clone_info,stroke_polygon);
4653     stroke_polygon=(PrimitiveInfo *) RelinquishMagickMemory(stroke_polygon);
4654     q=p+p->coordinates-1;
4655     closed_path=(q->point.x == p->point.x) && (q->point.y == p->point.y) ?
4656       MagickTrue : MagickFalse;
4657     if ((draw_info->linecap == RoundCap) && (closed_path == MagickFalse))
4658       {
4659         DrawRoundLinecap(image,draw_info,p);
4660         DrawRoundLinecap(image,draw_info,q);
4661       }
4662   }
4663   clone_info=DestroyDrawInfo(clone_info);
4664   if (image->debug != MagickFalse)
4665     (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4666       "    end draw-stroke-polygon");
4667   return(status);
4668 }
4669 \f
4670 /*
4671 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4672 %                                                                             %
4673 %                                                                             %
4674 %                                                                             %
4675 %   G e t A f f i n e M a t r i x                                             %
4676 %                                                                             %
4677 %                                                                             %
4678 %                                                                             %
4679 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4680 %
4681 %  GetAffineMatrix() returns an AffineMatrix initialized to the identity
4682 %  matrix.
4683 %
4684 %  The format of the GetAffineMatrix method is:
4685 %
4686 %      void GetAffineMatrix(AffineMatrix *affine_matrix)
4687 %
4688 %  A description of each parameter follows:
4689 %
4690 %    o affine_matrix: the affine matrix.
4691 %
4692 */
4693 MagickExport void GetAffineMatrix(AffineMatrix *affine_matrix)
4694 {
4695   (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
4696   assert(affine_matrix != (AffineMatrix *) NULL);
4697   (void) ResetMagickMemory(affine_matrix,0,sizeof(*affine_matrix));
4698   affine_matrix->sx=1.0;
4699   affine_matrix->sy=1.0;
4700 }
4701 \f
4702 /*
4703 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4704 %                                                                             %
4705 %                                                                             %
4706 %                                                                             %
4707 +   G e t D r a w I n f o                                                     %
4708 %                                                                             %
4709 %                                                                             %
4710 %                                                                             %
4711 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4712 %
4713 %  GetDrawInfo() initializes draw_info to default values.
4714 %
4715 %  The format of the GetDrawInfo method is:
4716 %
4717 %      void GetDrawInfo(const ImageInfo *image_info,DrawInfo *draw_info)
4718 %
4719 %  A description of each parameter follows:
4720 %
4721 %    o image_info: the image info..
4722 %
4723 %    o draw_info: the draw info.
4724 %
4725 */
4726 MagickExport void GetDrawInfo(const ImageInfo *image_info,DrawInfo *draw_info)
4727 {
4728   const char
4729     *option;
4730
4731   ExceptionInfo
4732     *exception;
4733
4734   ImageInfo
4735     *clone_info;
4736
4737   /*
4738     Initialize draw attributes.
4739   */
4740   (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
4741   assert(draw_info != (DrawInfo *) NULL);
4742   (void) ResetMagickMemory(draw_info,0,sizeof(*draw_info));
4743   clone_info=CloneImageInfo(image_info);
4744   GetAffineMatrix(&draw_info->affine);
4745   exception=AcquireExceptionInfo();
4746   (void) QueryColorDatabase("#000F",&draw_info->fill,exception);
4747   (void) QueryColorDatabase("#FFF0",&draw_info->stroke,exception);
4748   draw_info->stroke_antialias=clone_info->antialias;
4749   draw_info->stroke_width=1.0;
4750   draw_info->opacity=OpaqueOpacity;
4751   draw_info->fill_rule=EvenOddRule;
4752   draw_info->linecap=ButtCap;
4753   draw_info->linejoin=MiterJoin;
4754   draw_info->miterlimit=10;
4755   draw_info->decorate=NoDecoration;
4756   if (clone_info->font != (char *) NULL)
4757     draw_info->font=AcquireString(clone_info->font);
4758   if (clone_info->density != (char *) NULL)
4759     draw_info->density=AcquireString(clone_info->density);
4760   draw_info->text_antialias=clone_info->antialias;
4761   draw_info->pointsize=12.0;
4762   if (clone_info->pointsize != 0.0)
4763     draw_info->pointsize=clone_info->pointsize;
4764   draw_info->undercolor.opacity=(Quantum) TransparentOpacity;
4765   draw_info->border_color=clone_info->border_color;
4766   draw_info->compose=OverCompositeOp;
4767   if (clone_info->server_name != (char *) NULL)
4768     draw_info->server_name=AcquireString(clone_info->server_name);
4769   draw_info->render=MagickTrue;
4770   draw_info->debug=IsEventLogging();
4771   option=GetImageOption(clone_info,"encoding");
4772   if (option != (const char *) NULL)
4773     (void) CloneString(&draw_info->encoding,option);
4774   option=GetImageOption(clone_info,"kerning");
4775   if (option != (const char *) NULL)
4776     draw_info->kerning=StringToDouble(option);
4777   option=GetImageOption(clone_info,"interline-spacing");
4778   if (option != (const char *) NULL)
4779     draw_info->interline_spacing=StringToDouble(option);
4780   draw_info->direction=UndefinedDirection;
4781   option=GetImageOption(clone_info,"interword-spacing");
4782   if (option != (const char *) NULL)
4783     draw_info->interword_spacing=StringToDouble(option);
4784   option=GetImageOption(clone_info,"direction");
4785   if (option != (const char *) NULL)
4786     draw_info->direction=(DirectionType) ParseMagickOption(
4787       MagickDirectionOptions,MagickFalse,option);
4788   option=GetImageOption(clone_info,"fill");
4789   if (option != (const char *) NULL)
4790     (void) QueryColorDatabase(option,&draw_info->fill,exception);
4791   option=GetImageOption(clone_info,"stroke");
4792   if (option != (const char *) NULL)
4793     (void) QueryColorDatabase(option,&draw_info->stroke,exception);
4794   option=GetImageOption(clone_info,"strokewidth");
4795   if (option != (const char *) NULL)
4796     draw_info->stroke_width=StringToDouble(option);
4797   option=GetImageOption(clone_info,"undercolor");
4798   if (option != (const char *) NULL)
4799     (void) QueryColorDatabase(option,&draw_info->undercolor,exception);
4800   option=GetImageOption(clone_info,"gravity");
4801   if (option != (const char *) NULL)
4802     draw_info->gravity=(GravityType) ParseMagickOption(MagickGravityOptions,
4803       MagickFalse,option);
4804   exception=DestroyExceptionInfo(exception);
4805   draw_info->signature=MagickSignature;
4806   clone_info=DestroyImageInfo(clone_info);
4807 }
4808 \f
4809 /*
4810 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4811 %                                                                             %
4812 %                                                                             %
4813 %                                                                             %
4814 +   P e r m u t a t e                                                         %
4815 %                                                                             %
4816 %                                                                             %
4817 %                                                                             %
4818 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4819 %
4820 %  Permutate() returns the permuation of the (n,k).
4821 %
4822 %  The format of the Permutate method is:
4823 %
4824 %      void Permutate(ssize_t n,ssize_t k)
4825 %
4826 %  A description of each parameter follows:
4827 %
4828 %    o n:
4829 %
4830 %    o k:
4831 %
4832 %
4833 */
4834 static inline MagickRealType Permutate(const ssize_t n,const ssize_t k)
4835 {
4836   MagickRealType
4837     r;
4838
4839   register ssize_t
4840     i;
4841
4842   r=1.0;
4843   for (i=k+1; i <= n; i++)
4844     r*=i;
4845   for (i=1; i <= (n-k); i++)
4846     r/=i;
4847   return(r);
4848 }
4849 \f
4850 /*
4851 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4852 %                                                                             %
4853 %                                                                             %
4854 %                                                                             %
4855 +   T r a c e P r i m i t i v e                                               %
4856 %                                                                             %
4857 %                                                                             %
4858 %                                                                             %
4859 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4860 %
4861 %  TracePrimitive is a collection of methods for generating graphic
4862 %  primitives such as arcs, ellipses, paths, etc.
4863 %
4864 */
4865
4866 static void TraceArc(PrimitiveInfo *primitive_info,const PointInfo start,
4867   const PointInfo end,const PointInfo degrees)
4868 {
4869   PointInfo
4870     center,
4871     radii;
4872
4873   center.x=0.5*(end.x+start.x);
4874   center.y=0.5*(end.y+start.y);
4875   radii.x=fabs(center.x-start.x);
4876   radii.y=fabs(center.y-start.y);
4877   TraceEllipse(primitive_info,center,radii,degrees);
4878 }
4879
4880 static void TraceArcPath(PrimitiveInfo *primitive_info,const PointInfo start,
4881   const PointInfo end,const PointInfo arc,const MagickRealType angle,
4882   const MagickBooleanType large_arc,const MagickBooleanType sweep)
4883 {
4884   MagickRealType
4885     alpha,
4886     beta,
4887     delta,
4888     factor,
4889     gamma,
4890     theta;
4891
4892   PointInfo
4893     center,
4894     points[3],
4895     radii;
4896
4897   register MagickRealType
4898     cosine,
4899     sine;
4900
4901   register PrimitiveInfo
4902     *p;
4903
4904   register ssize_t
4905     i;
4906
4907   size_t
4908     arc_segments;
4909
4910   if ((start.x == end.x) && (start.y == end.y))
4911     {
4912       TracePoint(primitive_info,end);
4913       return;
4914     }
4915   radii.x=fabs(arc.x);
4916   radii.y=fabs(arc.y);
4917   if ((radii.x == 0.0) || (radii.y == 0.0))
4918     {
4919       TraceLine(primitive_info,start,end);
4920       return;
4921     }
4922   cosine=cos(DegreesToRadians(fmod((double) angle,360.0)));
4923   sine=sin(DegreesToRadians(fmod((double) angle,360.0)));
4924   center.x=(double) (cosine*(end.x-start.x)/2+sine*(end.y-start.y)/2);
4925   center.y=(double) (cosine*(end.y-start.y)/2-sine*(end.x-start.x)/2);
4926   delta=(center.x*center.x)/(radii.x*radii.x)+(center.y*center.y)/
4927     (radii.y*radii.y);
4928   if (delta < MagickEpsilon)
4929     {
4930       TraceLine(primitive_info,start,end);
4931       return;
4932     }
4933   if (delta > 1.0)
4934     {
4935       radii.x*=sqrt((double) delta);
4936       radii.y*=sqrt((double) delta);
4937     }
4938   points[0].x=(double) (cosine*start.x/radii.x+sine*start.y/radii.x);
4939   points[0].y=(double) (cosine*start.y/radii.y-sine*start.x/radii.y);
4940   points[1].x=(double) (cosine*end.x/radii.x+sine*end.y/radii.x);
4941   points[1].y=(double) (cosine*end.y/radii.y-sine*end.x/radii.y);
4942   alpha=points[1].x-points[0].x;
4943   beta=points[1].y-points[0].y;
4944   factor=1.0/(alpha*alpha+beta*beta)-0.25;
4945   if (factor <= 0.0)
4946     factor=0.0;
4947   else
4948     {
4949       factor=sqrt((double) factor);
4950       if (sweep == large_arc)
4951         factor=(-factor);
4952     }
4953   center.x=(double) ((points[0].x+points[1].x)/2-factor*beta);
4954   center.y=(double) ((points[0].y+points[1].y)/2+factor*alpha);
4955   alpha=atan2(points[0].y-center.y,points[0].x-center.x);
4956   theta=atan2(points[1].y-center.y,points[1].x-center.x)-alpha;
4957   if ((theta < 0.0) && (sweep != MagickFalse))
4958     theta+=(MagickRealType) (2.0*MagickPI);
4959   else
4960     if ((theta > 0.0) && (sweep == MagickFalse))
4961       theta-=(MagickRealType) (2.0*MagickPI);
4962   arc_segments=(size_t) ceil(fabs((double) (theta/(0.5*MagickPI+
4963     MagickEpsilon))));
4964   p=primitive_info;
4965   for (i=0; i < (ssize_t) arc_segments; i++)
4966   {
4967     beta=0.5*((alpha+(i+1)*theta/arc_segments)-(alpha+i*theta/arc_segments));
4968     gamma=(8.0/3.0)*sin(fmod((double) (0.5*beta),DegreesToRadians(360.0)))*
4969       sin(fmod((double) (0.5*beta),DegreesToRadians(360.0)))/
4970       sin(fmod((double) beta,DegreesToRadians(360.0)));
4971     points[0].x=(double) (center.x+cos(fmod((double) (alpha+(double) i*theta/
4972       arc_segments),DegreesToRadians(360.0)))-gamma*sin(fmod((double) (alpha+
4973       (double) i*theta/arc_segments),DegreesToRadians(360.0))));
4974     points[0].y=(double) (center.y+sin(fmod((double) (alpha+(double) i*theta/
4975       arc_segments),DegreesToRadians(360.0)))+gamma*cos(fmod((double) (alpha+
4976       (double) i*theta/arc_segments),DegreesToRadians(360.0))));
4977     points[2].x=(double) (center.x+cos(fmod((double) (alpha+(double) (i+1)*
4978       theta/arc_segments),DegreesToRadians(360.0))));
4979     points[2].y=(double) (center.y+sin(fmod((double) (alpha+(double) (i+1)*
4980       theta/arc_segments),DegreesToRadians(360.0))));
4981     points[1].x=(double) (points[2].x+gamma*sin(fmod((double) (alpha+(double)
4982       (i+1)*theta/arc_segments),DegreesToRadians(360.0))));
4983     points[1].y=(double) (points[2].y-gamma*cos(fmod((double) (alpha+(double)
4984       (i+1)*theta/arc_segments),DegreesToRadians(360.0))));
4985     p->point.x=(p == primitive_info) ? start.x : (p-1)->point.x;
4986     p->point.y=(p == primitive_info) ? start.y : (p-1)->point.y;
4987     (p+1)->point.x=(double) (cosine*radii.x*points[0].x-sine*radii.y*
4988       points[0].y);
4989     (p+1)->point.y=(double) (sine*radii.x*points[0].x+cosine*radii.y*
4990       points[0].y);
4991     (p+2)->point.x=(double) (cosine*radii.x*points[1].x-sine*radii.y*
4992       points[1].y);
4993     (p+2)->point.y=(double) (sine*radii.x*points[1].x+cosine*radii.y*
4994       points[1].y);
4995     (p+3)->point.x=(double) (cosine*radii.x*points[2].x-sine*radii.y*
4996       points[2].y);
4997     (p+3)->point.y=(double) (sine*radii.x*points[2].x+cosine*radii.y*
4998       points[2].y);
4999     if (i == (ssize_t) (arc_segments-1))
5000       (p+3)->point=end;
5001     TraceBezier(p,4);
5002     p+=p->coordinates;
5003   }
5004   primitive_info->coordinates=(size_t) (p-primitive_info);
5005   for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
5006   {
5007     p->primitive=primitive_info->primitive;
5008     p--;
5009   }
5010 }
5011
5012 static void TraceBezier(PrimitiveInfo *primitive_info,
5013   const size_t number_coordinates)
5014 {
5015   MagickRealType
5016     alpha,
5017     *coefficients,
5018     weight;
5019
5020   PointInfo
5021     end,
5022     point,
5023     *points;
5024
5025   register PrimitiveInfo
5026     *p;
5027
5028   register ssize_t
5029     i,
5030     j;
5031
5032   size_t
5033     control_points,
5034     quantum;
5035
5036   /*
5037     Allocate coeficients.
5038   */
5039   quantum=number_coordinates;
5040   for (i=0; i < (ssize_t) number_coordinates; i++)
5041   {
5042     for (j=i+1; j < (ssize_t) number_coordinates; j++)
5043     {
5044       alpha=fabs(primitive_info[j].point.x-primitive_info[i].point.x);
5045       if (alpha > (MagickRealType) quantum)
5046         quantum=(size_t) alpha;
5047       alpha=fabs(primitive_info[j].point.y-primitive_info[i].point.y);
5048       if (alpha > (MagickRealType) quantum)
5049         quantum=(size_t) alpha;
5050     }
5051   }
5052   quantum=(size_t) MagickMin((double) quantum/number_coordinates,
5053     (double) BezierQuantum);
5054   control_points=quantum*number_coordinates;
5055   coefficients=(MagickRealType *) AcquireQuantumMemory((size_t)
5056     number_coordinates,sizeof(*coefficients));
5057   points=(PointInfo *) AcquireQuantumMemory((size_t) control_points,
5058     sizeof(*points));
5059   if ((coefficients == (MagickRealType *) NULL) ||
5060       (points == (PointInfo *) NULL))
5061     ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
5062   /*
5063     Compute bezier points.
5064   */
5065   end=primitive_info[number_coordinates-1].point;
5066   for (i=0; i < (ssize_t) number_coordinates; i++)
5067     coefficients[i]=Permutate((ssize_t) number_coordinates-1,i);
5068   weight=0.0;
5069   for (i=0; i < (ssize_t) control_points; i++)
5070   {
5071     p=primitive_info;
5072     point.x=0.0;
5073     point.y=0.0;
5074     alpha=pow((double) (1.0-weight),(double) number_coordinates-1.0);
5075     for (j=0; j < (ssize_t) number_coordinates; j++)
5076     {
5077       point.x+=alpha*coefficients[j]*p->point.x;
5078       point.y+=alpha*coefficients[j]*p->point.y;
5079       alpha*=weight/(1.0-weight);
5080       p++;
5081     }
5082     points[i]=point;
5083     weight+=1.0/control_points;
5084   }
5085   /*
5086     Bezier curves are just short segmented polys.
5087   */
5088   p=primitive_info;
5089   for (i=0; i < (ssize_t) control_points; i++)
5090   {
5091     TracePoint(p,points[i]);
5092     p+=p->coordinates;
5093   }
5094   TracePoint(p,end);
5095   p+=p->coordinates;
5096   primitive_info->coordinates=(size_t) (p-primitive_info);
5097   for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
5098   {
5099     p->primitive=primitive_info->primitive;
5100     p--;
5101   }
5102   points=(PointInfo *) RelinquishMagickMemory(points);
5103   coefficients=(MagickRealType *) RelinquishMagickMemory(coefficients);
5104 }
5105
5106 static void TraceCircle(PrimitiveInfo *primitive_info,const PointInfo start,
5107   const PointInfo end)
5108 {
5109   MagickRealType
5110     alpha,
5111     beta,
5112     radius;
5113
5114   PointInfo
5115     offset,
5116     degrees;
5117
5118   alpha=end.x-start.x;
5119   beta=end.y-start.y;
5120   radius=hypot((double) alpha,(double) beta);
5121   offset.x=(double) radius;
5122   offset.y=(double) radius;
5123   degrees.x=0.0;
5124   degrees.y=360.0;
5125   TraceEllipse(primitive_info,start,offset,degrees);
5126 }
5127
5128 static void TraceEllipse(PrimitiveInfo *primitive_info,const PointInfo start,
5129   const PointInfo stop,const PointInfo degrees)
5130 {
5131   MagickRealType
5132     delta,
5133     step,
5134     y;
5135
5136   PointInfo
5137     angle,
5138     point;
5139
5140   register PrimitiveInfo
5141     *p;
5142
5143   register ssize_t
5144     i;
5145
5146   /*
5147     Ellipses are just short segmented polys.
5148   */
5149   if ((stop.x == 0.0) && (stop.y == 0.0))
5150     {
5151       TracePoint(primitive_info,start);
5152       return;
5153     }
5154   delta=2.0/MagickMax(stop.x,stop.y);
5155   step=(MagickRealType) (MagickPI/8.0);
5156   if ((delta >= 0.0) && (delta < (MagickPI/8.0)))
5157     step=MagickPI/(4*(MagickPI/delta/2+0.5));
5158   angle.x=DegreesToRadians(degrees.x);
5159   y=degrees.y;
5160   while (y < degrees.x)
5161     y+=360.0;
5162   angle.y=(double) (DegreesToRadians(y)-MagickEpsilon);
5163   for (p=primitive_info; angle.x < angle.y; angle.x+=step)
5164   {
5165     point.x=cos(fmod(angle.x,DegreesToRadians(360.0)))*stop.x+start.x;
5166     point.y=sin(fmod(angle.x,DegreesToRadians(360.0)))*stop.y+start.y;
5167     TracePoint(p,point);
5168     p+=p->coordinates;
5169   }
5170   point.x=cos(fmod(angle.y,DegreesToRadians(360.0)))*stop.x+start.x;
5171   point.y=sin(fmod(angle.y,DegreesToRadians(360.0)))*stop.y+start.y;
5172   TracePoint(p,point);
5173   p+=p->coordinates;
5174   primitive_info->coordinates=(size_t) (p-primitive_info);
5175   for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
5176   {
5177     p->primitive=primitive_info->primitive;
5178     p--;
5179   }
5180 }
5181
5182 static void TraceLine(PrimitiveInfo *primitive_info,const PointInfo start,
5183   const PointInfo end)
5184 {
5185   TracePoint(primitive_info,start);
5186   if ((fabs(start.x-end.x) <= MagickEpsilon) &&
5187       (fabs(start.y-end.y) <= MagickEpsilon))
5188     {
5189       primitive_info->primitive=PointPrimitive;
5190       primitive_info->coordinates=1;
5191       return;
5192     }
5193   TracePoint(primitive_info+1,end);
5194   (primitive_info+1)->primitive=primitive_info->primitive;
5195   primitive_info->coordinates=2;
5196 }
5197
5198 static size_t TracePath(PrimitiveInfo *primitive_info,const char *path)
5199 {
5200   char
5201     token[MaxTextExtent];
5202
5203   const char
5204     *p;
5205
5206   int
5207     attribute,
5208     last_attribute;
5209
5210   MagickRealType
5211     x,
5212     y;
5213
5214   PointInfo
5215     end,
5216     points[4],
5217     point,
5218     start;
5219
5220   PrimitiveType
5221     primitive_type;
5222
5223   register PrimitiveInfo
5224     *q;
5225
5226   register ssize_t
5227     i;
5228
5229   size_t
5230     number_coordinates,
5231     z_count;
5232
5233   attribute=0;
5234   point.x=0.0;
5235   point.y=0.0;
5236   start.x=0.0;
5237   start.y=0.0;
5238   number_coordinates=0;
5239   z_count=0;
5240   primitive_type=primitive_info->primitive;
5241   q=primitive_info;
5242   for (p=path; *p != '\0'; )
5243   {
5244     while (isspace((int) ((unsigned char) *p)) != 0)
5245       p++;
5246     if (*p == '\0')
5247       break;
5248     last_attribute=attribute;
5249     attribute=(int) (*p++);
5250     switch (attribute)
5251     {
5252       case 'a':
5253       case 'A':
5254       {
5255         MagickBooleanType
5256           large_arc,
5257           sweep;
5258
5259         MagickRealType
5260           angle;
5261
5262         PointInfo
5263           arc;
5264
5265         /*
5266           Compute arc points.
5267         */
5268         do
5269         {
5270           GetMagickToken(p,&p,token);
5271           if (*token == ',')
5272             GetMagickToken(p,&p,token);
5273           arc.x=StringToDouble(token);
5274           GetMagickToken(p,&p,token);
5275           if (*token == ',')
5276             GetMagickToken(p,&p,token);
5277           arc.y=StringToDouble(token);
5278           GetMagickToken(p,&p,token);
5279           if (*token == ',')
5280             GetMagickToken(p,&p,token);
5281           angle=StringToDouble(token);
5282           GetMagickToken(p,&p,token);
5283           if (*token == ',')
5284             GetMagickToken(p,&p,token);
5285           large_arc=StringToLong(token) != 0 ? MagickTrue : MagickFalse;
5286           GetMagickToken(p,&p,token);
5287           if (*token == ',')
5288             GetMagickToken(p,&p,token);
5289           sweep=StringToLong(token) != 0 ? MagickTrue : MagickFalse;
5290           GetMagickToken(p,&p,token);
5291           if (*token == ',')
5292             GetMagickToken(p,&p,token);
5293           x=StringToDouble(token);
5294           GetMagickToken(p,&p,token);
5295           if (*token == ',')
5296             GetMagickToken(p,&p,token);
5297           y=StringToDouble(token);
5298           end.x=(double) (attribute == (int) 'A' ? x : point.x+x);
5299           end.y=(double) (attribute == (int) 'A' ? y : point.y+y);
5300           TraceArcPath(q,point,end,arc,angle,large_arc,sweep);
5301           q+=q->coordinates;
5302           point=end;
5303         } while (IsPoint(p) != MagickFalse);
5304         break;
5305       }
5306       case 'c':
5307       case 'C':
5308       {
5309         /*
5310           Compute bezier points.
5311         */
5312         do
5313         {
5314           points[0]=point;
5315           for (i=1; i < 4; i++)
5316           {
5317             GetMagickToken(p,&p,token);
5318             if (*token == ',')
5319               GetMagickToken(p,&p,token);
5320             x=StringToDouble(token);
5321             GetMagickToken(p,&p,token);
5322             if (*token == ',')
5323               GetMagickToken(p,&p,token);
5324             y=StringToDouble(token);
5325             end.x=(double) (attribute == (int) 'C' ? x : point.x+x);
5326             end.y=(double) (attribute == (int) 'C' ? y : point.y+y);
5327             points[i]=end;
5328           }
5329           for (i=0; i < 4; i++)
5330             (q+i)->point=points[i];
5331           TraceBezier(q,4);
5332           q+=q->coordinates;
5333           point=end;
5334         } while (IsPoint(p) != MagickFalse);
5335         break;
5336       }
5337       case 'H':
5338       case 'h':
5339       {
5340         do
5341         {
5342           GetMagickToken(p,&p,token);
5343           if (*token == ',')
5344             GetMagickToken(p,&p,token);
5345           x=StringToDouble(token);
5346           point.x=(double) (attribute == (int) 'H' ? x: point.x+x);
5347           TracePoint(q,point);
5348           q+=q->coordinates;
5349         } while (IsPoint(p) != MagickFalse);
5350         break;
5351       }
5352       case 'l':
5353       case 'L':
5354       {
5355         do
5356         {
5357           GetMagickToken(p,&p,token);
5358           if (*token == ',')
5359             GetMagickToken(p,&p,token);
5360           x=StringToDouble(token);
5361           GetMagickToken(p,&p,token);
5362           if (*token == ',')
5363             GetMagickToken(p,&p,token);
5364           y=StringToDouble(token);
5365           point.x=(double) (attribute == (int) 'L' ? x : point.x+x);
5366           point.y=(double) (attribute == (int) 'L' ? y : point.y+y);
5367           TracePoint(q,point);
5368           q+=q->coordinates;
5369         } while (IsPoint(p) != MagickFalse);
5370         break;
5371       }
5372       case 'M':
5373       case 'm':
5374       {
5375         if (q != primitive_info)
5376           {
5377             primitive_info->coordinates=(size_t) (q-primitive_info);
5378             number_coordinates+=primitive_info->coordinates;
5379             primitive_info=q;
5380           }
5381         i=0;
5382         do
5383         {
5384           GetMagickToken(p,&p,token);
5385           if (*token == ',')
5386             GetMagickToken(p,&p,token);
5387           x=StringToDouble(token);
5388           GetMagickToken(p,&p,token);
5389           if (*token == ',')
5390             GetMagickToken(p,&p,token);
5391           y=StringToDouble(token);
5392           point.x=(double) (attribute == (int) 'M' ? x : point.x+x);
5393           point.y=(double) (attribute == (int) 'M' ? y : point.y+y);
5394           if (i == 0)
5395             start=point;
5396           i++;
5397           TracePoint(q,point);
5398           q+=q->coordinates;
5399           if ((i != 0) && (attribute == (int) 'M'))
5400             {
5401               TracePoint(q,point);
5402               q+=q->coordinates;
5403             }
5404         } while (IsPoint(p) != MagickFalse);
5405         break;
5406       }
5407       case 'q':
5408       case 'Q':
5409       {
5410         /*
5411           Compute bezier points.
5412         */
5413         do
5414         {
5415           points[0]=point;
5416           for (i=1; i < 3; i++)
5417           {
5418             GetMagickToken(p,&p,token);
5419             if (*token == ',')
5420               GetMagickToken(p,&p,token);
5421             x=StringToDouble(token);
5422             GetMagickToken(p,&p,token);
5423             if (*token == ',')
5424               GetMagickToken(p,&p,token);
5425             y=StringToDouble(token);
5426             if (*p == ',')
5427               p++;
5428             end.x=(double) (attribute == (int) 'Q' ? x : point.x+x);
5429             end.y=(double) (attribute == (int) 'Q' ? y : point.y+y);
5430             points[i]=end;
5431           }
5432           for (i=0; i < 3; i++)
5433             (q+i)->point=points[i];
5434           TraceBezier(q,3);
5435           q+=q->coordinates;
5436           point=end;
5437         } while (IsPoint(p) != MagickFalse);
5438         break;
5439       }
5440       case 's':
5441       case 'S':
5442       {
5443         /*
5444           Compute bezier points.
5445         */
5446         do
5447         {
5448           points[0]=points[3];
5449           points[1].x=2.0*points[3].x-points[2].x;
5450           points[1].y=2.0*points[3].y-points[2].y;
5451           for (i=2; i < 4; i++)
5452           {
5453             GetMagickToken(p,&p,token);
5454             if (*token == ',')
5455               GetMagickToken(p,&p,token);
5456             x=StringToDouble(token);
5457             GetMagickToken(p,&p,token);
5458             if (*token == ',')
5459               GetMagickToken(p,&p,token);
5460             y=StringToDouble(token);
5461             if (*p == ',')
5462               p++;
5463             end.x=(double) (attribute == (int) 'S' ? x : point.x+x);
5464             end.y=(double) (attribute == (int) 'S' ? y : point.y+y);
5465             points[i]=end;
5466           }
5467           if (strchr("CcSs",last_attribute) == (char *) NULL)
5468             {
5469               points[0]=points[2];
5470               points[1]=points[3];
5471             }
5472           for (i=0; i < 4; i++)
5473             (q+i)->point=points[i];
5474           TraceBezier(q,4);
5475           q+=q->coordinates;
5476           point=end;
5477         } while (IsPoint(p) != MagickFalse);
5478         break;
5479       }
5480       case 't':
5481       case 'T':
5482       {
5483         /*
5484           Compute bezier points.
5485         */
5486         do
5487         {
5488           points[0]=points[2];
5489           points[1].x=2.0*points[2].x-points[1].x;
5490           points[1].y=2.0*points[2].y-points[1].y;
5491           for (i=2; i < 3; i++)
5492           {
5493             GetMagickToken(p,&p,token);
5494             if (*token == ',')
5495               GetMagickToken(p,&p,token);
5496             x=StringToDouble(token);
5497             GetMagickToken(p,&p,token);
5498             if (*token == ',')
5499               GetMagickToken(p,&p,token);
5500             y=StringToDouble(token);
5501             end.x=(double) (attribute == (int) 'T' ? x : point.x+x);
5502             end.y=(double) (attribute == (int) 'T' ? y : point.y+y);
5503             points[i]=end;
5504           }
5505           if (strchr("QqTt",last_attribute) == (char *) NULL)
5506             {
5507               points[0]=points[2];
5508               points[1]=points[3];
5509             }
5510           for (i=0; i < 3; i++)
5511             (q+i)->point=points[i];
5512           TraceBezier(q,3);
5513           q+=q->coordinates;
5514           point=end;
5515         } while (IsPoint(p) != MagickFalse);
5516         break;
5517       }
5518       case 'v':
5519       case 'V':
5520       {
5521         do
5522         {
5523           GetMagickToken(p,&p,token);
5524           if (*token == ',')
5525             GetMagickToken(p,&p,token);
5526           y=StringToDouble(token);
5527           point.y=(double) (attribute == (int) 'V' ? y : point.y+y);
5528           TracePoint(q,point);
5529           q+=q->coordinates;
5530         } while (IsPoint(p) != MagickFalse);
5531         break;
5532       }
5533       case 'z':
5534       case 'Z':
5535       {
5536         point=start;
5537         TracePoint(q,point);
5538         q+=q->coordinates;
5539         primitive_info->coordinates=(size_t) (q-primitive_info);
5540         number_coordinates+=primitive_info->coordinates;
5541         primitive_info=q;
5542         z_count++;
5543         break;
5544       }
5545       default:
5546       {
5547         if (isalpha((int) ((unsigned char) attribute)) != 0)
5548           (void) fprintf(stderr,"attribute not recognized: %c\n",attribute);
5549         break;
5550       }
5551     }
5552   }
5553   primitive_info->coordinates=(size_t) (q-primitive_info);
5554   number_coordinates+=primitive_info->coordinates;
5555   for (i=0; i < (ssize_t) number_coordinates; i++)
5556   {
5557     q--;
5558     q->primitive=primitive_type;
5559     if (z_count > 1)
5560       q->method=FillToBorderMethod;
5561   }
5562   q=primitive_info;
5563   return(number_coordinates);
5564 }
5565
5566 static void TraceRectangle(PrimitiveInfo *primitive_info,const PointInfo start,
5567   const PointInfo end)
5568 {
5569   PointInfo
5570     point;
5571
5572   register PrimitiveInfo
5573     *p;
5574
5575   register ssize_t
5576     i;
5577
5578   p=primitive_info;
5579   TracePoint(p,start);
5580   p+=p->coordinates;
5581   point.x=start.x;
5582   point.y=end.y;
5583   TracePoint(p,point);
5584   p+=p->coordinates;
5585   TracePoint(p,end);
5586   p+=p->coordinates;
5587   point.x=end.x;
5588   point.y=start.y;
5589   TracePoint(p,point);
5590   p+=p->coordinates;
5591   TracePoint(p,start);
5592   p+=p->coordinates;
5593   primitive_info->coordinates=(size_t) (p-primitive_info);
5594   for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
5595   {
5596     p->primitive=primitive_info->primitive;
5597     p--;
5598   }
5599 }
5600
5601 static void TraceRoundRectangle(PrimitiveInfo *primitive_info,
5602   const PointInfo start,const PointInfo end,PointInfo arc)
5603 {
5604   PointInfo
5605     degrees,
5606     offset,
5607     point;
5608
5609   register PrimitiveInfo
5610     *p;
5611
5612   register ssize_t
5613     i;
5614
5615   p=primitive_info;
5616   offset.x=fabs(end.x-start.x);
5617   offset.y=fabs(end.y-start.y);
5618   if (arc.x > (0.5*offset.x))
5619     arc.x=0.5*offset.x;
5620   if (arc.y > (0.5*offset.y))
5621     arc.y=0.5*offset.y;
5622   point.x=start.x+offset.x-arc.x;
5623   point.y=start.y+arc.y;
5624   degrees.x=270.0;
5625   degrees.y=360.0;
5626   TraceEllipse(p,point,arc,degrees);
5627   p+=p->coordinates;
5628   point.x=start.x+offset.x-arc.x;
5629   point.y=start.y+offset.y-arc.y;
5630   degrees.x=0.0;
5631   degrees.y=90.0;
5632   TraceEllipse(p,point,arc,degrees);
5633   p+=p->coordinates;
5634   point.x=start.x+arc.x;
5635   point.y=start.y+offset.y-arc.y;
5636   degrees.x=90.0;
5637   degrees.y=180.0;
5638   TraceEllipse(p,point,arc,degrees);
5639   p+=p->coordinates;
5640   point.x=start.x+arc.x;
5641   point.y=start.y+arc.y;
5642   degrees.x=180.0;
5643   degrees.y=270.0;
5644   TraceEllipse(p,point,arc,degrees);
5645   p+=p->coordinates;
5646   TracePoint(p,primitive_info->point);
5647   p+=p->coordinates;
5648   primitive_info->coordinates=(size_t) (p-primitive_info);
5649   for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
5650   {
5651     p->primitive=primitive_info->primitive;
5652     p--;
5653   }
5654 }
5655
5656 static void TraceSquareLinecap(PrimitiveInfo *primitive_info,
5657   const size_t number_vertices,const MagickRealType offset)
5658 {
5659   MagickRealType
5660     distance;
5661
5662   register MagickRealType
5663     dx,
5664     dy;
5665
5666   register ssize_t
5667     i;
5668
5669   ssize_t
5670     j;
5671
5672   dx=0.0;
5673   dy=0.0;
5674   for (i=1; i < (ssize_t) number_vertices; i++)
5675   {
5676     dx=primitive_info[0].point.x-primitive_info[i].point.x;
5677     dy=primitive_info[0].point.y-primitive_info[i].point.y;
5678     if ((fabs((double) dx) >= MagickEpsilon) ||
5679         (fabs((double) dy) >= MagickEpsilon))
5680       break;
5681   }
5682   if (i == (ssize_t) number_vertices)
5683     i=(ssize_t) number_vertices-1L;
5684   distance=hypot((double) dx,(double) dy);
5685   primitive_info[0].point.x=(double) (primitive_info[i].point.x+
5686     dx*(distance+offset)/distance);
5687   primitive_info[0].point.y=(double) (primitive_info[i].point.y+
5688     dy*(distance+offset)/distance);
5689   for (j=(ssize_t) number_vertices-2; j >= 0;  j--)
5690   {
5691     dx=primitive_info[number_vertices-1].point.x-primitive_info[j].point.x;
5692     dy=primitive_info[number_vertices-1].point.y-primitive_info[j].point.y;
5693     if ((fabs((double) dx) >= MagickEpsilon) ||
5694         (fabs((double) dy) >= MagickEpsilon))
5695       break;
5696   }
5697   distance=hypot((double) dx,(double) dy);
5698   primitive_info[number_vertices-1].point.x=(double) (primitive_info[j].point.x+
5699     dx*(distance+offset)/distance);
5700   primitive_info[number_vertices-1].point.y=(double) (primitive_info[j].point.y+
5701     dy*(distance+offset)/distance);
5702 }
5703
5704 static PrimitiveInfo *TraceStrokePolygon(const DrawInfo *draw_info,
5705   const PrimitiveInfo *primitive_info)
5706 {
5707   typedef struct _LineSegment
5708   {
5709     double
5710       p,
5711       q;
5712   } LineSegment;
5713
5714   LineSegment
5715     dx,
5716     dy,
5717     inverse_slope,
5718     slope,
5719     theta;
5720
5721   MagickBooleanType
5722     closed_path;
5723
5724   MagickRealType
5725     delta_theta,
5726     dot_product,
5727     mid,
5728     miterlimit;
5729
5730   PointInfo
5731     box_p[5],
5732     box_q[5],
5733     center,
5734     offset,
5735     *path_p,
5736     *path_q;
5737
5738   PrimitiveInfo
5739     *polygon_primitive,
5740     *stroke_polygon;
5741
5742   register ssize_t
5743     i;
5744
5745   size_t
5746     arc_segments,
5747     max_strokes,
5748     number_vertices;
5749
5750   ssize_t
5751     j,
5752     n,
5753     p,
5754     q;
5755
5756   /*
5757     Allocate paths.
5758   */
5759   number_vertices=primitive_info->coordinates;
5760   max_strokes=2*number_vertices+6*BezierQuantum+360;
5761   path_p=(PointInfo *) AcquireQuantumMemory((size_t) max_strokes,
5762     sizeof(*path_p));
5763   path_q=(PointInfo *) AcquireQuantumMemory((size_t) max_strokes,
5764     sizeof(*path_q));
5765   polygon_primitive=(PrimitiveInfo *) AcquireQuantumMemory((size_t)
5766     number_vertices+2UL,sizeof(*polygon_primitive));
5767   if ((path_p == (PointInfo *) NULL) || (path_q == (PointInfo *) NULL) ||
5768       (polygon_primitive == (PrimitiveInfo *) NULL))
5769     return((PrimitiveInfo *) NULL);
5770   (void) CopyMagickMemory(polygon_primitive,primitive_info,(size_t)
5771     number_vertices*sizeof(*polygon_primitive));
5772   closed_path=
5773     (primitive_info[number_vertices-1].point.x == primitive_info[0].point.x) &&
5774     (primitive_info[number_vertices-1].point.y == primitive_info[0].point.y) ?
5775     MagickTrue : MagickFalse;
5776   if ((draw_info->linejoin == RoundJoin) ||
5777       ((draw_info->linejoin == MiterJoin) && (closed_path != MagickFalse)))
5778     {
5779       polygon_primitive[number_vertices]=primitive_info[1];
5780       number_vertices++;
5781     }
5782   polygon_primitive[number_vertices].primitive=UndefinedPrimitive;
5783   /*
5784     Compute the slope for the first line segment, p.
5785   */
5786   dx.p=0.0;
5787   dy.p=0.0;
5788   for (n=1; n < (ssize_t) number_vertices; n++)
5789   {
5790     dx.p=polygon_primitive[n].point.x-polygon_primitive[0].point.x;
5791     dy.p=polygon_primitive[n].point.y-polygon_primitive[0].point.y;
5792     if ((fabs(dx.p) >= MagickEpsilon) || (fabs(dy.p) >= MagickEpsilon))
5793       break;
5794   }
5795   if (n == (ssize_t) number_vertices)
5796     n=(ssize_t) number_vertices-1L;
5797   slope.p=0.0;
5798   inverse_slope.p=0.0;
5799   if (fabs(dx.p) <= MagickEpsilon)
5800     {
5801       if (dx.p >= 0.0)
5802         slope.p=dy.p < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
5803       else
5804         slope.p=dy.p < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
5805     }
5806   else
5807     if (fabs(dy.p) <= MagickEpsilon)
5808       {
5809         if (dy.p >= 0.0)
5810           inverse_slope.p=dx.p < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
5811         else
5812           inverse_slope.p=dx.p < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
5813       }
5814     else
5815       {
5816         slope.p=dy.p/dx.p;
5817         inverse_slope.p=(-1.0/slope.p);
5818       }
5819   mid=ExpandAffine(&draw_info->affine)*draw_info->stroke_width/2.0;
5820   miterlimit=(MagickRealType) (draw_info->miterlimit*draw_info->miterlimit*
5821     mid*mid);
5822   if ((draw_info->linecap == SquareCap) && (closed_path == MagickFalse))
5823     TraceSquareLinecap(polygon_primitive,number_vertices,mid);
5824   offset.x=sqrt((double) (mid*mid/(inverse_slope.p*inverse_slope.p+1.0)));
5825   offset.y=(double) (offset.x*inverse_slope.p);
5826   if ((dy.p*offset.x-dx.p*offset.y) > 0.0)
5827     {
5828       box_p[0].x=polygon_primitive[0].point.x-offset.x;
5829       box_p[0].y=polygon_primitive[0].point.y-offset.x*inverse_slope.p;
5830       box_p[1].x=polygon_primitive[n].point.x-offset.x;
5831       box_p[1].y=polygon_primitive[n].point.y-offset.x*inverse_slope.p;
5832       box_q[0].x=polygon_primitive[0].point.x+offset.x;
5833       box_q[0].y=polygon_primitive[0].point.y+offset.x*inverse_slope.p;
5834       box_q[1].x=polygon_primitive[n].point.x+offset.x;
5835       box_q[1].y=polygon_primitive[n].point.y+offset.x*inverse_slope.p;
5836     }
5837   else
5838     {
5839       box_p[0].x=polygon_primitive[0].point.x+offset.x;
5840       box_p[0].y=polygon_primitive[0].point.y+offset.y;
5841       box_p[1].x=polygon_primitive[n].point.x+offset.x;
5842       box_p[1].y=polygon_primitive[n].point.y+offset.y;
5843       box_q[0].x=polygon_primitive[0].point.x-offset.x;
5844       box_q[0].y=polygon_primitive[0].point.y-offset.y;
5845       box_q[1].x=polygon_primitive[n].point.x-offset.x;
5846       box_q[1].y=polygon_primitive[n].point.y-offset.y;
5847     }
5848   /*
5849     Create strokes for the line join attribute: bevel, miter, round.
5850   */
5851   p=0;
5852   q=0;
5853   path_q[p++]=box_q[0];
5854   path_p[q++]=box_p[0];
5855   for (i=(ssize_t) n+1; i < (ssize_t) number_vertices; i++)
5856   {
5857     /*
5858       Compute the slope for this line segment, q.
5859     */
5860     dx.q=polygon_primitive[i].point.x-polygon_primitive[n].point.x;
5861     dy.q=polygon_primitive[i].point.y-polygon_primitive[n].point.y;
5862     dot_product=dx.q*dx.q+dy.q*dy.q;
5863     if (dot_product < 0.25)
5864       continue;
5865     slope.q=0.0;
5866     inverse_slope.q=0.0;
5867     if (fabs(dx.q) < MagickEpsilon)
5868       {
5869         if (dx.q >= 0.0)
5870           slope.q=dy.q < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
5871         else
5872           slope.q=dy.q < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
5873       }
5874     else
5875       if (fabs(dy.q) <= MagickEpsilon)
5876         {
5877           if (dy.q >= 0.0)
5878             inverse_slope.q=dx.q < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
5879           else
5880             inverse_slope.q=dx.q < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
5881         }
5882       else
5883         {
5884           slope.q=dy.q/dx.q;
5885           inverse_slope.q=(-1.0/slope.q);
5886         }
5887     offset.x=sqrt((double) (mid*mid/(inverse_slope.q*inverse_slope.q+1.0)));
5888     offset.y=(double) (offset.x*inverse_slope.q);
5889     dot_product=dy.q*offset.x-dx.q*offset.y;
5890     if (dot_product > 0.0)
5891       {
5892         box_p[2].x=polygon_primitive[n].point.x-offset.x;
5893         box_p[2].y=polygon_primitive[n].point.y-offset.y;
5894         box_p[3].x=polygon_primitive[i].point.x-offset.x;
5895         box_p[3].y=polygon_primitive[i].point.y-offset.y;
5896         box_q[2].x=polygon_primitive[n].point.x+offset.x;
5897         box_q[2].y=polygon_primitive[n].point.y+offset.y;
5898         box_q[3].x=polygon_primitive[i].point.x+offset.x;
5899         box_q[3].y=polygon_primitive[i].point.y+offset.y;
5900       }
5901     else
5902       {
5903         box_p[2].x=polygon_primitive[n].point.x+offset.x;
5904         box_p[2].y=polygon_primitive[n].point.y+offset.y;
5905         box_p[3].x=polygon_primitive[i].point.x+offset.x;
5906         box_p[3].y=polygon_primitive[i].point.y+offset.y;
5907         box_q[2].x=polygon_primitive[n].point.x-offset.x;
5908         box_q[2].y=polygon_primitive[n].point.y-offset.y;
5909         box_q[3].x=polygon_primitive[i].point.x-offset.x;
5910         box_q[3].y=polygon_primitive[i].point.y-offset.y;
5911       }
5912     if (fabs((double) (slope.p-slope.q)) <= MagickEpsilon)
5913       {
5914         box_p[4]=box_p[1];
5915         box_q[4]=box_q[1];
5916       }
5917     else
5918       {
5919         box_p[4].x=(double) ((slope.p*box_p[0].x-box_p[0].y-slope.q*box_p[3].x+
5920           box_p[3].y)/(slope.p-slope.q));
5921         box_p[4].y=(double) (slope.p*(box_p[4].x-box_p[0].x)+box_p[0].y);
5922         box_q[4].x=(double) ((slope.p*box_q[0].x-box_q[0].y-slope.q*box_q[3].x+
5923           box_q[3].y)/(slope.p-slope.q));
5924         box_q[4].y=(double) (slope.p*(box_q[4].x-box_q[0].x)+box_q[0].y);
5925       }
5926     if (q >= (ssize_t) (max_strokes-6*BezierQuantum-360))
5927       {
5928          max_strokes+=6*BezierQuantum+360;
5929          path_p=(PointInfo *) ResizeQuantumMemory(path_p,(size_t) max_strokes,
5930            sizeof(*path_p));
5931          path_q=(PointInfo *) ResizeQuantumMemory(path_q,(size_t) max_strokes,
5932            sizeof(*path_q));
5933          if ((path_p == (PointInfo *) NULL) || (path_q == (PointInfo *) NULL))
5934            {
5935              polygon_primitive=(PrimitiveInfo *)
5936                RelinquishMagickMemory(polygon_primitive);
5937              return((PrimitiveInfo *) NULL);
5938            }
5939       }
5940     dot_product=dx.q*dy.p-dx.p*dy.q;
5941     if (dot_product <= 0.0)
5942       switch (draw_info->linejoin)
5943       {
5944         case BevelJoin:
5945         {
5946           path_q[q++]=box_q[1];
5947           path_q[q++]=box_q[2];
5948           dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
5949             (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
5950           if (dot_product <= miterlimit)
5951             path_p[p++]=box_p[4];
5952           else
5953             {
5954               path_p[p++]=box_p[1];
5955               path_p[p++]=box_p[2];
5956             }
5957           break;
5958         }
5959         case MiterJoin:
5960         {
5961           dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
5962             (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
5963           if (dot_product <= miterlimit)
5964             {
5965               path_q[q++]=box_q[4];
5966               path_p[p++]=box_p[4];
5967             }
5968           else
5969             {
5970               path_q[q++]=box_q[1];
5971               path_q[q++]=box_q[2];
5972               path_p[p++]=box_p[1];
5973               path_p[p++]=box_p[2];
5974             }
5975           break;
5976         }
5977         case RoundJoin:
5978         {
5979           dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
5980             (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
5981           if (dot_product <= miterlimit)
5982             path_p[p++]=box_p[4];
5983           else
5984             {
5985               path_p[p++]=box_p[1];
5986               path_p[p++]=box_p[2];
5987             }
5988           center=polygon_primitive[n].point;
5989           theta.p=atan2(box_q[1].y-center.y,box_q[1].x-center.x);
5990           theta.q=atan2(box_q[2].y-center.y,box_q[2].x-center.x);
5991           if (theta.q < theta.p)
5992             theta.q+=(MagickRealType) (2.0*MagickPI);
5993           arc_segments=(size_t) ceil((double) ((theta.q-theta.p)/
5994             (2.0*sqrt((double) (1.0/mid)))));
5995           path_q[q].x=box_q[1].x;
5996           path_q[q].y=box_q[1].y;
5997           q++;
5998           for (j=1; j < (ssize_t) arc_segments; j++)
5999           {
6000             delta_theta=(MagickRealType) (j*(theta.q-theta.p)/arc_segments);
6001             path_q[q].x=(double) (center.x+mid*cos(fmod((double)
6002               (theta.p+delta_theta),DegreesToRadians(360.0))));
6003             path_q[q].y=(double) (center.y+mid*sin(fmod((double)
6004               (theta.p+delta_theta),DegreesToRadians(360.0))));
6005             q++;
6006           }
6007           path_q[q++]=box_q[2];
6008           break;
6009         }
6010         default:
6011           break;
6012       }
6013     else
6014       switch (draw_info->linejoin)
6015       {
6016         case BevelJoin:
6017         {
6018           path_p[p++]=box_p[1];
6019           path_p[p++]=box_p[2];
6020           dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
6021             (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
6022           if (dot_product <= miterlimit)
6023             path_q[q++]=box_q[4];
6024           else
6025             {
6026               path_q[q++]=box_q[1];
6027               path_q[q++]=box_q[2];
6028             }
6029           break;
6030         }
6031         case MiterJoin:
6032         {
6033           dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
6034             (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
6035           if (dot_product <= miterlimit)
6036             {
6037               path_q[q++]=box_q[4];
6038               path_p[p++]=box_p[4];
6039             }
6040           else
6041             {
6042               path_q[q++]=box_q[1];
6043               path_q[q++]=box_q[2];
6044               path_p[p++]=box_p[1];
6045               path_p[p++]=box_p[2];
6046             }
6047           break;
6048         }
6049         case RoundJoin:
6050         {
6051           dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
6052             (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
6053           if (dot_product <= miterlimit)
6054             path_q[q++]=box_q[4];
6055           else
6056             {
6057               path_q[q++]=box_q[1];
6058               path_q[q++]=box_q[2];
6059             }
6060           center=polygon_primitive[n].point;
6061           theta.p=atan2(box_p[1].y-center.y,box_p[1].x-center.x);
6062           theta.q=atan2(box_p[2].y-center.y,box_p[2].x-center.x);
6063           if (theta.p < theta.q)
6064             theta.p+=(MagickRealType) (2.0*MagickPI);
6065           arc_segments=(size_t) ceil((double) ((theta.p-theta.q)/
6066             (2.0*sqrt((double) (1.0/mid)))));
6067           path_p[p++]=box_p[1];
6068           for (j=1; j < (ssize_t) arc_segments; j++)
6069           {
6070             delta_theta=(MagickRealType) (j*(theta.q-theta.p)/arc_segments);
6071             path_p[p].x=(double) (center.x+mid*cos(fmod((double)
6072               (theta.p+delta_theta),DegreesToRadians(360.0))));
6073             path_p[p].y=(double) (center.y+mid*sin(fmod((double)
6074               (theta.p+delta_theta),DegreesToRadians(360.0))));
6075             p++;
6076           }
6077           path_p[p++]=box_p[2];
6078           break;
6079         }
6080         default:
6081           break;
6082       }
6083     slope.p=slope.q;
6084     inverse_slope.p=inverse_slope.q;
6085     box_p[0]=box_p[2];
6086     box_p[1]=box_p[3];
6087     box_q[0]=box_q[2];
6088     box_q[1]=box_q[3];
6089     dx.p=dx.q;
6090     dy.p=dy.q;
6091     n=i;
6092   }
6093   path_p[p++]=box_p[1];
6094   path_q[q++]=box_q[1];
6095   /*
6096     Trace stroked polygon.
6097   */
6098   stroke_polygon=(PrimitiveInfo *) AcquireQuantumMemory((size_t)
6099     (p+q+2UL*closed_path+2UL),sizeof(*stroke_polygon));
6100   if (stroke_polygon != (PrimitiveInfo *) NULL)
6101     {
6102       for (i=0; i < (ssize_t) p; i++)
6103       {
6104         stroke_polygon[i]=polygon_primitive[0];
6105         stroke_polygon[i].point=path_p[i];
6106       }
6107       if (closed_path != MagickFalse)
6108         {
6109           stroke_polygon[i]=polygon_primitive[0];
6110           stroke_polygon[i].point=stroke_polygon[0].point;
6111           i++;
6112         }
6113       for ( ; i < (ssize_t) (p+q+closed_path); i++)
6114       {
6115         stroke_polygon[i]=polygon_primitive[0];
6116         stroke_polygon[i].point=path_q[p+q+closed_path-(i+1)];
6117       }
6118       if (closed_path != MagickFalse)
6119         {
6120           stroke_polygon[i]=polygon_primitive[0];
6121           stroke_polygon[i].point=stroke_polygon[p+closed_path].point;
6122           i++;
6123         }
6124       stroke_polygon[i]=polygon_primitive[0];
6125       stroke_polygon[i].point=stroke_polygon[0].point;
6126       i++;
6127       stroke_polygon[i].primitive=UndefinedPrimitive;
6128       stroke_polygon[0].coordinates=(size_t) (p+q+2*closed_path+1);
6129     }
6130   path_p=(PointInfo *) RelinquishMagickMemory(path_p);
6131   path_q=(PointInfo *) RelinquishMagickMemory(path_q);
6132   polygon_primitive=(PrimitiveInfo *) RelinquishMagickMemory(polygon_primitive);
6133   return(stroke_polygon);
6134 }