MagickCore  6.9.13-42
Convert, Edit, Or Compose Bitmap Images
draw.c
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 % Cristy %
18 % July 1998 %
19 % %
20 % %
21 % Copyright 1999 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 % https://imagemagick.org/license/ %
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 ␌
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-private.h"
54 #include "magick/cache-view.h"
55 #include "magick/channel.h"
56 #include "magick/color.h"
57 #include "magick/color-private.h"
58 #include "magick/colorspace.h"
59 #include "magick/colorspace-private.h"
60 #include "magick/composite.h"
61 #include "magick/composite-private.h"
62 #include "magick/constitute.h"
63 #include "magick/draw.h"
64 #include "magick/draw-private.h"
65 #include "magick/enhance.h"
66 #include "magick/exception.h"
67 #include "magick/exception-private.h"
68 #include "magick/gem.h"
69 #include "magick/geometry.h"
70 #include "magick/image-private.h"
71 #include "magick/list.h"
72 #include "magick/log.h"
73 #include "magick/magick.h"
74 #include "magick/memory-private.h"
75 #include "magick/monitor.h"
76 #include "magick/monitor-private.h"
77 #include "magick/option.h"
78 #include "magick/paint.h"
79 #include "magick/pixel-accessor.h"
80 #include "magick/pixel-private.h"
81 #include "magick/property.h"
82 #include "magick/resample.h"
83 #include "magick/resample-private.h"
84 #include "magick/resource_.h"
85 #include "magick/splay-tree.h"
86 #include "magick/string_.h"
87 #include "magick/string-private.h"
88 #include "magick/thread-private.h"
89 #include "magick/token.h"
90 #include "magick/transform.h"
91 #include "magick/utility.h"
92 ␌
93 /*
94  Define declarations.
95 */
96 #define AntialiasThreshold (1.0/3.0)
97 #define BezierQuantum 200
98 #define PrimitiveExtentPad 4296.0
99 #define MaxBezierCoordinates 67108864
100 #define ThrowPointExpectedException(image,token) \
101 { \
102  (void) ThrowMagickException(&(image)->exception,GetMagickModule(),DrawError, \
103  "NonconformingDrawingPrimitiveDefinition","`%s'",token); \
104  status=MagickFalse; \
105  break; \
106 }
107 ␌
108 /*
109  Typedef declarations.
110 */
111 typedef struct _EdgeInfo
112 {
114  bounds;
115 
116  double
117  scanline;
118 
119  PointInfo
120  *points;
121 
122  size_t
123  number_points;
124 
125  ssize_t
126  direction;
127 
128  MagickBooleanType
129  ghostline;
130 
131  size_t
132  highwater;
133 } EdgeInfo;
134 
135 typedef struct _ElementInfo
136 {
137  double
138  cx,
139  cy,
140  major,
141  minor,
142  angle;
143 } ElementInfo;
144 
145 typedef struct _MVGInfo
146 {
148  **primitive_info;
149 
150  size_t
151  *extent;
152 
153  ssize_t
154  offset;
155 
156  PointInfo
157  point;
158 
160  *exception;
161 } MVGInfo;
162 
163 typedef struct _PolygonInfo
164 {
165  EdgeInfo
166  *edges;
167 
168  size_t
169  number_edges;
170 } PolygonInfo;
171 
172 typedef enum
173 {
174  MoveToCode,
175  OpenCode,
176  GhostlineCode,
177  LineToCode,
178  EndCode
179 } PathInfoCode;
180 
181 typedef struct _PathInfo
182 {
183  PointInfo
184  point;
185 
186  PathInfoCode
187  code;
188 } PathInfo;
189 ␌
190 /*
191  Forward declarations.
192 */
193 static Image
194  *DrawClippingMask(Image *,const DrawInfo *,const char *,const char *,
195  ExceptionInfo *);
196 
197 static MagickBooleanType
198  DrawStrokePolygon(Image *,const DrawInfo *,const PrimitiveInfo *),
199  RenderMVGContent(Image *,const DrawInfo *,const size_t),
200  TraceArc(MVGInfo *,const PointInfo,const PointInfo,const PointInfo),
201  TraceArcPath(MVGInfo *,const PointInfo,const PointInfo,const PointInfo,
202  const double,const MagickBooleanType,const MagickBooleanType),
203  TraceBezier(MVGInfo *,const size_t),
204  TraceCircle(MVGInfo *,const PointInfo,const PointInfo),
205  TraceEllipse(MVGInfo *,const PointInfo,const PointInfo,const PointInfo),
206  TraceLine(PrimitiveInfo *,const PointInfo,const PointInfo),
207  TraceRectangle(PrimitiveInfo *,const PointInfo,const PointInfo),
208  TraceRoundRectangle(MVGInfo *,const PointInfo,const PointInfo,PointInfo),
209  TraceSquareLinecap(PrimitiveInfo *,const size_t,const double);
210 
211 static PrimitiveInfo
212  *TraceStrokePolygon(const DrawInfo *,const PrimitiveInfo *,ExceptionInfo *);
213 
214 static ssize_t
215  TracePath(Image *,MVGInfo *,const char *);
216 ␌
217 /*
218 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
219 % %
220 % %
221 % %
222 % A c q u i r e D r a w I n f o %
223 % %
224 % %
225 % %
226 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
227 %
228 % AcquireDrawInfo() returns a DrawInfo structure properly initialized.
229 %
230 % The format of the AcquireDrawInfo method is:
231 %
232 % DrawInfo *AcquireDrawInfo(void)
233 %
234 */
235 MagickExport DrawInfo *AcquireDrawInfo(void)
236 {
237  DrawInfo
238  *draw_info;
239 
240  draw_info=(DrawInfo *) AcquireCriticalMemory(sizeof(*draw_info));
241  GetDrawInfo((ImageInfo *) NULL,draw_info);
242  return(draw_info);
243 }
244 ␌
245 /*
246 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
247 % %
248 % %
249 % %
250 % C l o n e D r a w I n f o %
251 % %
252 % %
253 % %
254 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
255 %
256 % CloneDrawInfo() makes a copy of the given draw_info structure. If NULL
257 % is specified, a new DrawInfo structure is created initialized to default
258 % values.
259 %
260 % The format of the CloneDrawInfo method is:
261 %
262 % DrawInfo *CloneDrawInfo(const ImageInfo *image_info,
263 % const DrawInfo *draw_info)
264 %
265 % A description of each parameter follows:
266 %
267 % o image_info: the image info.
268 %
269 % o draw_info: the draw info.
270 %
271 */
272 MagickExport DrawInfo *CloneDrawInfo(const ImageInfo *image_info,
273  const DrawInfo *draw_info)
274 {
275  DrawInfo
276  *clone_info;
277 
278  clone_info=(DrawInfo *) AcquireCriticalMemory(sizeof(*clone_info));
279  GetDrawInfo(image_info,clone_info);
280  if (draw_info == (DrawInfo *) NULL)
281  return(clone_info);
282  if (draw_info->id != (char *) NULL)
283  (void) CloneString(&clone_info->id,draw_info->id);
284  if (draw_info->primitive != (char *) NULL)
285  (void) CloneString(&clone_info->primitive,draw_info->primitive);
286  if (draw_info->geometry != (char *) NULL)
287  (void) CloneString(&clone_info->geometry,draw_info->geometry);
288  clone_info->compliance=draw_info->compliance;
289  clone_info->viewbox=draw_info->viewbox;
290  clone_info->affine=draw_info->affine;
291  clone_info->gravity=draw_info->gravity;
292  clone_info->fill=draw_info->fill;
293  clone_info->stroke=draw_info->stroke;
294  clone_info->stroke_width=draw_info->stroke_width;
295  if (draw_info->fill_pattern != (Image *) NULL)
296  clone_info->fill_pattern=CloneImage(draw_info->fill_pattern,0,0,MagickTrue,
297  &draw_info->fill_pattern->exception);
298  else
299  if (draw_info->tile != (Image *) NULL)
300  clone_info->fill_pattern=CloneImage(draw_info->tile,0,0,MagickTrue,
301  &draw_info->tile->exception);
302  clone_info->tile=NewImageList(); /* tile is deprecated */
303  if (draw_info->stroke_pattern != (Image *) NULL)
304  clone_info->stroke_pattern=CloneImage(draw_info->stroke_pattern,0,0,
305  MagickTrue,&draw_info->stroke_pattern->exception);
306  clone_info->stroke_antialias=draw_info->stroke_antialias;
307  clone_info->text_antialias=draw_info->text_antialias;
308  clone_info->fill_rule=draw_info->fill_rule;
309  clone_info->linecap=draw_info->linecap;
310  clone_info->linejoin=draw_info->linejoin;
311  clone_info->miterlimit=draw_info->miterlimit;
312  clone_info->dash_offset=draw_info->dash_offset;
313  clone_info->decorate=draw_info->decorate;
314  clone_info->compose=draw_info->compose;
315  if (draw_info->text != (char *) NULL)
316  (void) CloneString(&clone_info->text,draw_info->text);
317  if (draw_info->font != (char *) NULL)
318  (void) CloneString(&clone_info->font,draw_info->font);
319  if (draw_info->metrics != (char *) NULL)
320  (void) CloneString(&clone_info->metrics,draw_info->metrics);
321  if (draw_info->family != (char *) NULL)
322  (void) CloneString(&clone_info->family,draw_info->family);
323  clone_info->style=draw_info->style;
324  clone_info->stretch=draw_info->stretch;
325  clone_info->weight=draw_info->weight;
326  if (draw_info->encoding != (char *) NULL)
327  (void) CloneString(&clone_info->encoding,draw_info->encoding);
328  clone_info->pointsize=draw_info->pointsize;
329  clone_info->kerning=draw_info->kerning;
330  clone_info->interline_spacing=draw_info->interline_spacing;
331  clone_info->interword_spacing=draw_info->interword_spacing;
332  clone_info->direction=draw_info->direction;
333  if (draw_info->density != (char *) NULL)
334  (void) CloneString(&clone_info->density,draw_info->density);
335  clone_info->align=draw_info->align;
336  clone_info->undercolor=draw_info->undercolor;
337  clone_info->border_color=draw_info->border_color;
338  if (draw_info->server_name != (char *) NULL)
339  (void) CloneString(&clone_info->server_name,draw_info->server_name);
340  if (draw_info->dash_pattern != (double *) NULL)
341  {
342  ssize_t
343  x;
344 
345  for (x=0; fabs(draw_info->dash_pattern[x]) >= MagickEpsilon; x++) ;
346  clone_info->dash_pattern=(double *) AcquireQuantumMemory((size_t) (2*x+2),
347  sizeof(*clone_info->dash_pattern));
348  if (clone_info->dash_pattern == (double *) NULL)
349  ThrowFatalException(ResourceLimitFatalError,
350  "UnableToAllocateDashPattern");
351  (void) memset(clone_info->dash_pattern,0,(size_t) (2*x+2)*
352  sizeof(*clone_info->dash_pattern));
353  (void) memcpy(clone_info->dash_pattern,draw_info->dash_pattern,(size_t)
354  (x+1)*sizeof(*clone_info->dash_pattern));
355  }
356  clone_info->gradient=draw_info->gradient;
357  if (draw_info->gradient.stops != (StopInfo *) NULL)
358  {
359  size_t
360  number_stops;
361 
362  number_stops=clone_info->gradient.number_stops;
363  clone_info->gradient.stops=(StopInfo *) AcquireQuantumMemory((size_t)
364  number_stops,sizeof(*clone_info->gradient.stops));
365  if (clone_info->gradient.stops == (StopInfo *) NULL)
366  ThrowFatalException(ResourceLimitFatalError,
367  "UnableToAllocateDashPattern");
368  (void) memcpy(clone_info->gradient.stops,draw_info->gradient.stops,
369  (size_t) number_stops*sizeof(*clone_info->gradient.stops));
370  }
371  clone_info->bounds=draw_info->bounds;
372  clone_info->fill_opacity=draw_info->fill_opacity;
373  clone_info->stroke_opacity=draw_info->stroke_opacity;
374  clone_info->element_reference=draw_info->element_reference;
375  clone_info->clip_path=draw_info->clip_path;
376  clone_info->clip_units=draw_info->clip_units;
377  if (draw_info->clip_mask != (char *) NULL)
378  (void) CloneString(&clone_info->clip_mask,draw_info->clip_mask);
379  if (draw_info->clipping_mask != (Image *) NULL)
380  clone_info->clipping_mask=CloneImage(draw_info->clipping_mask,0,0,
381  MagickTrue,&draw_info->clipping_mask->exception);
382  if (draw_info->composite_mask != (Image *) NULL)
383  clone_info->composite_mask=CloneImage(draw_info->composite_mask,0,0,
384  MagickTrue,&draw_info->composite_mask->exception);
385  clone_info->render=draw_info->render;
386  clone_info->debug=draw_info->debug;
387  return(clone_info);
388 }
389 ␌
390 /*
391 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
392 % %
393 % %
394 % %
395 + C o n v e r t P a t h T o P o l y g o n %
396 % %
397 % %
398 % %
399 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
400 %
401 % ConvertPathToPolygon() converts a path to the more efficient sorted
402 % rendering form.
403 %
404 % The format of the ConvertPathToPolygon method is:
405 %
406 % PolygonInfo *ConvertPathToPolygon(const PathInfo *path_info,
407 % ExceptionInfo *exception)
408 %
409 % A description of each parameter follows:
410 %
411 % o ConvertPathToPolygon() returns the path in a more efficient sorted
412 % rendering form of type PolygonInfo.
413 %
414 % o draw_info: Specifies a pointer to an DrawInfo structure.
415 %
416 % o path_info: Specifies a pointer to an PathInfo structure.
417 %
418 % o exception: return any errors or warnings in this structure.
419 %
420 */
421 
422 static PolygonInfo *DestroyPolygonInfo(PolygonInfo *polygon_info)
423 {
424  ssize_t
425  i;
426 
427  if (polygon_info->edges != (EdgeInfo *) NULL)
428  {
429  for (i=0; i < (ssize_t) polygon_info->number_edges; i++)
430  if (polygon_info->edges[i].points != (PointInfo *) NULL)
431  polygon_info->edges[i].points=(PointInfo *)
432  RelinquishMagickMemory(polygon_info->edges[i].points);
433  polygon_info->edges=(EdgeInfo *) RelinquishMagickMemory(
434  polygon_info->edges);
435  }
436  return((PolygonInfo *) RelinquishMagickMemory(polygon_info));
437 }
438 
439 #if defined(__cplusplus) || defined(c_plusplus)
440 extern "C" {
441 #endif
442 
443 static int DrawCompareEdges(const void *p_edge,const void *q_edge)
444 {
445 #define DrawCompareEdge(p,q) \
446 { \
447  if (((p)-(q)) < 0.0) \
448  return(-1); \
449  if (((p)-(q)) > 0.0) \
450  return(1); \
451 }
452 
453  const PointInfo
454  *p,
455  *q;
456 
457  /*
458  Edge sorting for right-handed coordinate system.
459  */
460  p=((const EdgeInfo *) p_edge)->points;
461  q=((const EdgeInfo *) q_edge)->points;
462  DrawCompareEdge(p[0].y,q[0].y);
463  DrawCompareEdge(p[0].x,q[0].x);
464  DrawCompareEdge((p[1].x-p[0].x)*(q[1].y-q[0].y),(p[1].y-p[0].y)*
465  (q[1].x-q[0].x));
466  DrawCompareEdge(p[1].y,q[1].y);
467  DrawCompareEdge(p[1].x,q[1].x);
468  return(0);
469 }
470 
471 #if defined(__cplusplus) || defined(c_plusplus)
472 }
473 #endif
474 
475 static void LogPolygonInfo(const PolygonInfo *polygon_info)
476 {
477  EdgeInfo
478  *p;
479 
480  ssize_t
481  i,
482  j;
483 
484  (void) LogMagickEvent(DrawEvent,GetMagickModule()," begin active-edge");
485  p=polygon_info->edges;
486  for (i=0; i < (ssize_t) polygon_info->number_edges; i++)
487  {
488  (void) LogMagickEvent(DrawEvent,GetMagickModule()," edge %.20g:",
489  (double) i);
490  (void) LogMagickEvent(DrawEvent,GetMagickModule()," direction: %s",
491  p->direction != MagickFalse ? "down" : "up");
492  (void) LogMagickEvent(DrawEvent,GetMagickModule()," ghostline: %s",
493  p->ghostline != MagickFalse ? "transparent" : "opaque");
494  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
495  " bounds: %g,%g - %g,%g",p->bounds.x1,p->bounds.y1,
496  p->bounds.x2,p->bounds.y2);
497  for (j=0; j < (ssize_t) p->number_points; j++)
498  (void) LogMagickEvent(DrawEvent,GetMagickModule()," %g,%g",
499  p->points[j].x,p->points[j].y);
500  p++;
501  }
502  (void) LogMagickEvent(DrawEvent,GetMagickModule()," end active-edge");
503 }
504 
505 static void ReversePoints(PointInfo *points,const size_t number_points)
506 {
507  PointInfo
508  point;
509 
510  ssize_t
511  i;
512 
513  for (i=0; i < (ssize_t) (number_points >> 1); i++)
514  {
515  point=points[i];
516  points[i]=points[number_points-(i+1)];
517  points[number_points-(i+1)]=point;
518  }
519 }
520 
521 static PolygonInfo *ConvertPathToPolygon(const PathInfo *path_info,
522  ExceptionInfo *exception)
523 {
524  long
525  direction,
526  next_direction;
527 
528  PointInfo
529  point,
530  *points;
531 
533  *polygon_info;
534 
536  bounds;
537 
538  ssize_t
539  i,
540  n;
541 
542  MagickBooleanType
543  ghostline;
544 
545  size_t
546  edge,
547  number_edges,
548  number_points;
549 
550  /*
551  Convert a path to the more efficient sorted rendering form.
552  */
553  polygon_info=(PolygonInfo *) AcquireMagickMemory(sizeof(*polygon_info));
554  if (polygon_info == (PolygonInfo *) NULL)
555  {
556  (void) ThrowMagickException(exception,GetMagickModule(),
557  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
558  return((PolygonInfo *) NULL);
559  }
560  number_edges=16;
561  polygon_info->edges=(EdgeInfo *) AcquireQuantumMemory(number_edges,
562  sizeof(*polygon_info->edges));
563  if (polygon_info->edges == (EdgeInfo *) NULL)
564  {
565  (void) ThrowMagickException(exception,GetMagickModule(),
566  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
567  return(DestroyPolygonInfo(polygon_info));
568  }
569  (void) memset(polygon_info->edges,0,number_edges*
570  sizeof(*polygon_info->edges));
571  direction=0;
572  edge=0;
573  ghostline=MagickFalse;
574  n=0;
575  number_points=0;
576  points=(PointInfo *) NULL;
577  (void) memset(&point,0,sizeof(point));
578  (void) memset(&bounds,0,sizeof(bounds));
579  polygon_info->edges[edge].number_points=(size_t) n;
580  polygon_info->edges[edge].scanline=0.0;
581  polygon_info->edges[edge].highwater=0;
582  polygon_info->edges[edge].ghostline=ghostline;
583  polygon_info->edges[edge].direction=(ssize_t) direction;
584  polygon_info->edges[edge].points=points;
585  polygon_info->edges[edge].bounds=bounds;
586  polygon_info->number_edges=0;
587  for (i=0; path_info[i].code != EndCode; i++)
588  {
589  if ((path_info[i].code == MoveToCode) || (path_info[i].code == OpenCode) ||
590  (path_info[i].code == GhostlineCode))
591  {
592  /*
593  Move to.
594  */
595  if ((points != (PointInfo *) NULL) && (n >= 2))
596  {
597  if (edge == number_edges)
598  {
599  number_edges<<=1;
600  polygon_info->edges=(EdgeInfo *) ResizeQuantumMemory(
601  polygon_info->edges,(size_t) number_edges,
602  sizeof(*polygon_info->edges));
603  if (polygon_info->edges == (EdgeInfo *) NULL)
604  {
605  (void) ThrowMagickException(exception,GetMagickModule(),
606  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
607  points=(PointInfo *) RelinquishMagickMemory(points);
608  return(DestroyPolygonInfo(polygon_info));
609  }
610  }
611  polygon_info->edges[edge].number_points=(size_t) n;
612  polygon_info->edges[edge].scanline=(-1.0);
613  polygon_info->edges[edge].highwater=0;
614  polygon_info->edges[edge].ghostline=ghostline;
615  polygon_info->edges[edge].direction=(ssize_t) (direction > 0);
616  if (direction < 0)
617  ReversePoints(points,(size_t) n);
618  polygon_info->edges[edge].points=points;
619  polygon_info->edges[edge].bounds=bounds;
620  polygon_info->edges[edge].bounds.y1=points[0].y;
621  polygon_info->edges[edge].bounds.y2=points[n-1].y;
622  points=(PointInfo *) NULL;
623  ghostline=MagickFalse;
624  edge++;
625  polygon_info->number_edges=edge;
626  }
627  if (points == (PointInfo *) NULL)
628  {
629  number_points=16;
630  points=(PointInfo *) AcquireQuantumMemory((size_t) number_points,
631  sizeof(*points));
632  if (points == (PointInfo *) NULL)
633  {
634  (void) ThrowMagickException(exception,GetMagickModule(),
635  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
636  return(DestroyPolygonInfo(polygon_info));
637  }
638  }
639  ghostline=path_info[i].code == GhostlineCode ? MagickTrue : MagickFalse;
640  point=path_info[i].point;
641  points[0]=point;
642  bounds.x1=point.x;
643  bounds.x2=point.x;
644  direction=0;
645  n=1;
646  continue;
647  }
648  /*
649  Line to.
650  */
651  next_direction=((path_info[i].point.y > point.y) ||
652  ((fabs(path_info[i].point.y-point.y) < MagickEpsilon) &&
653  (path_info[i].point.x > point.x))) ? 1 : -1;
654  if ((points != (PointInfo *) NULL) && (direction != 0) &&
655  (direction != next_direction))
656  {
657  /*
658  New edge.
659  */
660  point=points[n-1];
661  if (edge == number_edges)
662  {
663  number_edges<<=1;
664  polygon_info->edges=(EdgeInfo *) ResizeQuantumMemory(
665  polygon_info->edges,(size_t) number_edges,
666  sizeof(*polygon_info->edges));
667  if (polygon_info->edges == (EdgeInfo *) NULL)
668  {
669  (void) ThrowMagickException(exception,GetMagickModule(),
670  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
671  points=(PointInfo *) RelinquishMagickMemory(points);
672  return(DestroyPolygonInfo(polygon_info));
673  }
674  }
675  polygon_info->edges[edge].number_points=(size_t) n;
676  polygon_info->edges[edge].scanline=(-1.0);
677  polygon_info->edges[edge].highwater=0;
678  polygon_info->edges[edge].ghostline=ghostline;
679  polygon_info->edges[edge].direction=(ssize_t) (direction > 0);
680  if (direction < 0)
681  ReversePoints(points,(size_t) n);
682  polygon_info->edges[edge].points=points;
683  polygon_info->edges[edge].bounds=bounds;
684  polygon_info->edges[edge].bounds.y1=points[0].y;
685  polygon_info->edges[edge].bounds.y2=points[n-1].y;
686  polygon_info->number_edges=edge+1;
687  points=(PointInfo *) NULL;
688  number_points=16;
689  points=(PointInfo *) AcquireQuantumMemory((size_t) number_points,
690  sizeof(*points));
691  if (points == (PointInfo *) NULL)
692  {
693  (void) ThrowMagickException(exception,GetMagickModule(),
694  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
695  return(DestroyPolygonInfo(polygon_info));
696  }
697  n=1;
698  ghostline=MagickFalse;
699  points[0]=point;
700  bounds.x1=point.x;
701  bounds.x2=point.x;
702  edge++;
703  }
704  direction=next_direction;
705  if (points == (PointInfo *) NULL)
706  continue;
707  if (n == (ssize_t) number_points)
708  {
709  number_points<<=1;
710  points=(PointInfo *) ResizeQuantumMemory(points,(size_t) number_points,
711  sizeof(*points));
712  if (points == (PointInfo *) NULL)
713  {
714  (void) ThrowMagickException(exception,GetMagickModule(),
715  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
716  return(DestroyPolygonInfo(polygon_info));
717  }
718  }
719  point=path_info[i].point;
720  points[n]=point;
721  if (point.x < bounds.x1)
722  bounds.x1=point.x;
723  if (point.x > bounds.x2)
724  bounds.x2=point.x;
725  n++;
726  }
727  if (points != (PointInfo *) NULL)
728  {
729  if (n < 2)
730  points=(PointInfo *) RelinquishMagickMemory(points);
731  else
732  {
733  if (edge == number_edges)
734  {
735  number_edges<<=1;
736  polygon_info->edges=(EdgeInfo *) ResizeQuantumMemory(
737  polygon_info->edges,(size_t) number_edges,
738  sizeof(*polygon_info->edges));
739  if (polygon_info->edges == (EdgeInfo *) NULL)
740  {
741  (void) ThrowMagickException(exception,GetMagickModule(),
742  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
743  return(DestroyPolygonInfo(polygon_info));
744  }
745  }
746  polygon_info->edges[edge].number_points=(size_t) n;
747  polygon_info->edges[edge].scanline=(-1.0);
748  polygon_info->edges[edge].highwater=0;
749  polygon_info->edges[edge].ghostline=ghostline;
750  polygon_info->edges[edge].direction=(ssize_t) (direction > 0);
751  if (direction < 0)
752  ReversePoints(points,(size_t) n);
753  polygon_info->edges[edge].points=points;
754  polygon_info->edges[edge].bounds=bounds;
755  polygon_info->edges[edge].bounds.y1=points[0].y;
756  polygon_info->edges[edge].bounds.y2=points[n-1].y;
757  points=(PointInfo *) NULL;
758  ghostline=MagickFalse;
759  edge++;
760  polygon_info->number_edges=edge;
761  }
762  }
763  polygon_info->number_edges=edge;
764  polygon_info->edges=(EdgeInfo *) ResizeQuantumMemory(polygon_info->edges,
765  polygon_info->number_edges,sizeof(*polygon_info->edges));
766  if (polygon_info->edges == (EdgeInfo *) NULL)
767  {
768  (void) ThrowMagickException(exception,GetMagickModule(),
769  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
770  return(DestroyPolygonInfo(polygon_info));
771  }
772  for (i=0; i < (ssize_t) polygon_info->number_edges; i++)
773  {
774  EdgeInfo
775  *edge_info;
776 
777  edge_info=polygon_info->edges+i;
778  edge_info->points=(PointInfo *) ResizeQuantumMemory(edge_info->points,
779  edge_info->number_points,sizeof(*edge_info->points));
780  if (edge_info->points == (PointInfo *) NULL)
781  {
782  (void) ThrowMagickException(exception,GetMagickModule(),
783  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
784  return(DestroyPolygonInfo(polygon_info));
785  }
786  }
787  qsort(polygon_info->edges,(size_t) polygon_info->number_edges,
788  sizeof(*polygon_info->edges),DrawCompareEdges);
789  if ((GetLogEventMask() & DrawEvent) != 0)
790  LogPolygonInfo(polygon_info);
791  return(polygon_info);
792 }
793 ␌
794 /*
795 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
796 % %
797 % %
798 % %
799 + C o n v e r t P r i m i t i v e T o P a t h %
800 % %
801 % %
802 % %
803 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
804 %
805 % ConvertPrimitiveToPath() converts a PrimitiveInfo structure into a vector
806 % path structure.
807 %
808 % The format of the ConvertPrimitiveToPath method is:
809 %
810 % PathInfo *ConvertPrimitiveToPath(const DrawInfo *draw_info,
811 % const PrimitiveInfo *primitive_info,ExceptionInfo *exception)
812 %
813 % A description of each parameter follows:
814 %
815 % o ConvertPrimitiveToPath() returns a vector path structure of type
816 % PathInfo.
817 %
818 % o draw_info: a structure of type DrawInfo.
819 %
820 % o primitive_info: Specifies a pointer to an PrimitiveInfo structure.
821 %
822 %
823 */
824 
825 static void LogPathInfo(const PathInfo *path_info)
826 {
827  const PathInfo
828  *p;
829 
830  (void) LogMagickEvent(DrawEvent,GetMagickModule()," begin vector-path");
831  for (p=path_info; p->code != EndCode; p++)
832  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
833  " %g,%g %s",p->point.x,p->point.y,p->code == GhostlineCode ?
834  "moveto ghostline" : p->code == OpenCode ? "moveto open" :
835  p->code == MoveToCode ? "moveto" : p->code == LineToCode ? "lineto" :
836  "?");
837  (void) LogMagickEvent(DrawEvent,GetMagickModule()," end vector-path");
838 }
839 
840 static PathInfo *ConvertPrimitiveToPath(
841  const DrawInfo *magick_unused(draw_info),const PrimitiveInfo *primitive_info,
842  ExceptionInfo *exception)
843 {
844  MagickBooleanType
845  closed_subpath;
846 
847  PathInfo
848  *path_info;
849 
850  PathInfoCode
851  code;
852 
853  PointInfo
854  p,
855  q;
856 
857  ssize_t
858  i,
859  n;
860 
861  ssize_t
862  coordinates,
863  start;
864 
865  magick_unreferenced(draw_info);
866 
867  /*
868  Converts a PrimitiveInfo structure into a vector path structure.
869  */
870  switch (primitive_info->primitive)
871  {
872  case PointPrimitive:
873  case ColorPrimitive:
874  case MattePrimitive:
875  case TextPrimitive:
876  case ImagePrimitive:
877  return((PathInfo *) NULL);
878  default:
879  break;
880  }
881  for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++) ;
882  path_info=(PathInfo *) AcquireQuantumMemory((size_t) (3UL*i+1UL),
883  sizeof(*path_info));
884  if (path_info == (PathInfo *) NULL)
885  {
886  (void) ThrowMagickException(exception,GetMagickModule(),
887  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
888  return((PathInfo *) NULL);
889  }
890  coordinates=0;
891  closed_subpath=MagickFalse;
892  n=0;
893  p.x=(-1.0);
894  p.y=(-1.0);
895  q.x=(-1.0);
896  q.y=(-1.0);
897  start=0;
898  for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
899  {
900  code=LineToCode;
901  if (coordinates <= 0)
902  {
903  /*
904  New subpath.
905  */
906  coordinates=(ssize_t) primitive_info[i].coordinates;
907  p=primitive_info[i].point;
908  start=n;
909  code=MoveToCode;
910  closed_subpath=primitive_info[i].closed_subpath;
911  }
912  coordinates--;
913  if ((code == MoveToCode) || (coordinates <= 0) ||
914  (fabs(q.x-primitive_info[i].point.x) >= MagickEpsilon) ||
915  (fabs(q.y-primitive_info[i].point.y) >= MagickEpsilon))
916  {
917  /*
918  Eliminate duplicate points.
919  */
920  path_info[n].code=code;
921  path_info[n].point=primitive_info[i].point;
922  q=primitive_info[i].point;
923  n++;
924  }
925  if (coordinates > 0)
926  continue; /* next point in current subpath */
927  if (closed_subpath != MagickFalse)
928  {
929  closed_subpath=MagickFalse;
930  continue;
931  }
932  /*
933  Mark the p point as open if the subpath is not closed.
934  */
935  path_info[start].code=OpenCode;
936  path_info[n].code=GhostlineCode;
937  path_info[n].point=primitive_info[i].point;
938  n++;
939  path_info[n].code=LineToCode;
940  path_info[n].point=p;
941  n++;
942  }
943  path_info[n].code=EndCode;
944  path_info[n].point.x=0.0;
945  path_info[n].point.y=0.0;
946  if (IsEventLogging() != MagickFalse)
947  LogPathInfo(path_info);
948  path_info=(PathInfo *) ResizeQuantumMemory(path_info,(size_t) (n+1),
949  sizeof(*path_info));
950  return(path_info);
951 }
952 ␌
953 /*
954 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
955 % %
956 % %
957 % %
958 % D e s t r o y D r a w I n f o %
959 % %
960 % %
961 % %
962 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
963 %
964 % DestroyDrawInfo() deallocates memory associated with an DrawInfo structure.
965 %
966 % The format of the DestroyDrawInfo method is:
967 %
968 % DrawInfo *DestroyDrawInfo(DrawInfo *draw_info)
969 %
970 % A description of each parameter follows:
971 %
972 % o draw_info: the draw info.
973 %
974 */
975 MagickExport DrawInfo *DestroyDrawInfo(DrawInfo *draw_info)
976 {
977  assert(draw_info != (DrawInfo *) NULL);
978  assert(draw_info->signature == MagickCoreSignature);
979  if (IsEventLogging() != MagickFalse)
980  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
981  if (draw_info->id != (char *) NULL)
982  draw_info->id=DestroyString(draw_info->id);
983  if (draw_info->primitive != (char *) NULL)
984  draw_info->primitive=DestroyString(draw_info->primitive);
985  if (draw_info->text != (char *) NULL)
986  draw_info->text=DestroyString(draw_info->text);
987  if (draw_info->geometry != (char *) NULL)
988  draw_info->geometry=DestroyString(draw_info->geometry);
989  if (draw_info->tile != (Image *) NULL)
990  draw_info->tile=DestroyImage(draw_info->tile);
991  if (draw_info->fill_pattern != (Image *) NULL)
992  draw_info->fill_pattern=DestroyImage(draw_info->fill_pattern);
993  if (draw_info->stroke_pattern != (Image *) NULL)
994  draw_info->stroke_pattern=DestroyImage(draw_info->stroke_pattern);
995  if (draw_info->font != (char *) NULL)
996  draw_info->font=DestroyString(draw_info->font);
997  if (draw_info->metrics != (char *) NULL)
998  draw_info->metrics=DestroyString(draw_info->metrics);
999  if (draw_info->family != (char *) NULL)
1000  draw_info->family=DestroyString(draw_info->family);
1001  if (draw_info->encoding != (char *) NULL)
1002  draw_info->encoding=DestroyString(draw_info->encoding);
1003  if (draw_info->density != (char *) NULL)
1004  draw_info->density=DestroyString(draw_info->density);
1005  if (draw_info->server_name != (char *) NULL)
1006  draw_info->server_name=(char *)
1007  RelinquishMagickMemory(draw_info->server_name);
1008  if (draw_info->dash_pattern != (double *) NULL)
1009  draw_info->dash_pattern=(double *) RelinquishMagickMemory(
1010  draw_info->dash_pattern);
1011  if (draw_info->gradient.stops != (StopInfo *) NULL)
1012  draw_info->gradient.stops=(StopInfo *) RelinquishMagickMemory(
1013  draw_info->gradient.stops);
1014  if (draw_info->clip_mask != (char *) NULL)
1015  draw_info->clip_mask=DestroyString(draw_info->clip_mask);
1016  if (draw_info->clipping_mask != (Image *) NULL)
1017  draw_info->clipping_mask=DestroyImage(draw_info->clipping_mask);
1018  if (draw_info->composite_mask != (Image *) NULL)
1019  draw_info->composite_mask=DestroyImage(draw_info->composite_mask);
1020  if (draw_info->image_info != (ImageInfo *) NULL)
1021  draw_info->image_info=DestroyImageInfo(draw_info->image_info);
1022  draw_info->signature=(~MagickCoreSignature);
1023  draw_info=(DrawInfo *) RelinquishMagickMemory(draw_info);
1024  return(draw_info);
1025 }
1026 ␌
1027 /*
1028 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1029 % %
1030 % %
1031 % %
1032 % D r a w A f f i n e I m a g e %
1033 % %
1034 % %
1035 % %
1036 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1037 %
1038 % DrawAffineImage() composites the source over the destination image as
1039 % dictated by the affine transform.
1040 %
1041 % The format of the DrawAffineImage method is:
1042 %
1043 % MagickBooleanType DrawAffineImage(Image *image,const Image *source,
1044 % const AffineMatrix *affine)
1045 %
1046 % A description of each parameter follows:
1047 %
1048 % o image: the image.
1049 %
1050 % o source: the source image.
1051 %
1052 % o affine: the affine transform.
1053 %
1054 */
1055 
1056 static SegmentInfo AffineEdge(const Image *image,const AffineMatrix *affine,
1057  const double y,const SegmentInfo *edge)
1058 {
1059  double
1060  intercept,
1061  z;
1062 
1063  double
1064  x;
1065 
1066  SegmentInfo
1067  inverse_edge;
1068 
1069  /*
1070  Determine left and right edges.
1071  */
1072  inverse_edge.x1=edge->x1;
1073  inverse_edge.y1=edge->y1;
1074  inverse_edge.x2=edge->x2;
1075  inverse_edge.y2=edge->y2;
1076  z=affine->ry*y+affine->tx;
1077  if (affine->sx >= MagickEpsilon)
1078  {
1079  intercept=(-z/affine->sx);
1080  x=intercept;
1081  if (x > inverse_edge.x1)
1082  inverse_edge.x1=x;
1083  intercept=(-z+(double) image->columns)/affine->sx;
1084  x=intercept;
1085  if (x < inverse_edge.x2)
1086  inverse_edge.x2=x;
1087  }
1088  else
1089  if (affine->sx < -MagickEpsilon)
1090  {
1091  intercept=(-z+(double) image->columns)/affine->sx;
1092  x=intercept;
1093  if (x > inverse_edge.x1)
1094  inverse_edge.x1=x;
1095  intercept=(-z/affine->sx);
1096  x=intercept;
1097  if (x < inverse_edge.x2)
1098  inverse_edge.x2=x;
1099  }
1100  else
1101  if ((z < 0.0) || ((size_t) floor(z+0.5) >= image->columns))
1102  {
1103  inverse_edge.x2=edge->x1;
1104  return(inverse_edge);
1105  }
1106  /*
1107  Determine top and bottom edges.
1108  */
1109  z=affine->sy*y+affine->ty;
1110  if (affine->rx >= MagickEpsilon)
1111  {
1112  intercept=(-z/affine->rx);
1113  x=intercept;
1114  if (x > inverse_edge.x1)
1115  inverse_edge.x1=x;
1116  intercept=(-z+(double) image->rows)/affine->rx;
1117  x=intercept;
1118  if (x < inverse_edge.x2)
1119  inverse_edge.x2=x;
1120  }
1121  else
1122  if (affine->rx < -MagickEpsilon)
1123  {
1124  intercept=(-z+(double) image->rows)/affine->rx;
1125  x=intercept;
1126  if (x > inverse_edge.x1)
1127  inverse_edge.x1=x;
1128  intercept=(-z/affine->rx);
1129  x=intercept;
1130  if (x < inverse_edge.x2)
1131  inverse_edge.x2=x;
1132  }
1133  else
1134  if ((z < 0.0) || ((size_t) floor(z+0.5) >= image->rows))
1135  {
1136  inverse_edge.x2=edge->x2;
1137  return(inverse_edge);
1138  }
1139  return(inverse_edge);
1140 }
1141 
1142 static AffineMatrix InverseAffineMatrix(const AffineMatrix *affine)
1143 {
1144  AffineMatrix
1145  inverse_affine;
1146 
1147  double
1148  determinant;
1149 
1150  determinant=MagickSafeReciprocal(affine->sx*affine->sy-affine->rx*
1151  affine->ry);
1152  inverse_affine.sx=determinant*affine->sy;
1153  inverse_affine.rx=determinant*(-affine->rx);
1154  inverse_affine.ry=determinant*(-affine->ry);
1155  inverse_affine.sy=determinant*affine->sx;
1156  inverse_affine.tx=(-affine->tx)*inverse_affine.sx-affine->ty*
1157  inverse_affine.ry;
1158  inverse_affine.ty=(-affine->tx)*inverse_affine.rx-affine->ty*
1159  inverse_affine.sy;
1160  return(inverse_affine);
1161 }
1162 
1163 MagickExport MagickBooleanType DrawAffineImage(Image *image,
1164  const Image *source,const AffineMatrix *affine)
1165 {
1166  AffineMatrix
1167  inverse_affine;
1168 
1169  CacheView
1170  *image_view,
1171  *source_view;
1172 
1174  *exception;
1175 
1176  MagickBooleanType
1177  status;
1178 
1180  zero;
1181 
1182  PointInfo
1183  extent[4],
1184  min,
1185  max,
1186  point;
1187 
1188  ssize_t
1189  i;
1190 
1191  SegmentInfo
1192  edge;
1193 
1194  ssize_t
1195  start,
1196  stop,
1197  y;
1198 
1199  /*
1200  Determine bounding box.
1201  */
1202  assert(image != (Image *) NULL);
1203  assert(image->signature == MagickCoreSignature);
1204  assert(source != (const Image *) NULL);
1205  assert(source->signature == MagickCoreSignature);
1206  if (IsEventLogging() != MagickFalse)
1207  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1208  assert(affine != (AffineMatrix *) NULL);
1209  extent[0].x=0.0;
1210  extent[0].y=0.0;
1211  extent[1].x=(double) source->columns;
1212  extent[1].y=0.0;
1213  extent[2].x=(double) source->columns;
1214  extent[2].y=(double) source->rows;
1215  extent[3].x=0.0;
1216  extent[3].y=(double) source->rows;
1217  for (i=0; i < 4; i++)
1218  {
1219  point=extent[i];
1220  extent[i].x=point.x*affine->sx+point.y*affine->ry+affine->tx;
1221  extent[i].y=point.x*affine->rx+point.y*affine->sy+affine->ty;
1222  }
1223  min=extent[0];
1224  max=extent[0];
1225  for (i=1; i < 4; i++)
1226  {
1227  if (min.x > extent[i].x)
1228  min.x=extent[i].x;
1229  if (min.y > extent[i].y)
1230  min.y=extent[i].y;
1231  if (max.x < extent[i].x)
1232  max.x=extent[i].x;
1233  if (max.y < extent[i].y)
1234  max.y=extent[i].y;
1235  }
1236  /*
1237  Affine transform image.
1238  */
1239  if (SetImageStorageClass(image,DirectClass) == MagickFalse)
1240  return(MagickFalse);
1241  status=MagickTrue;
1242  edge.x1=min.x;
1243  edge.y1=min.y;
1244  edge.x2=max.x;
1245  edge.y2=max.y;
1246  inverse_affine=InverseAffineMatrix(affine);
1247  if (edge.y1 < 0.0)
1248  edge.y1=0.0;
1249  if (edge.y2 > (image->rows-1.0))
1250  edge.y2=image->rows-1.0;
1251  GetMagickPixelPacket(image,&zero);
1252  exception=(&image->exception);
1253  start=CastDoubleToLong(ceil(edge.y1-0.5));
1254  stop=CastDoubleToLong(floor(edge.y2+0.5));
1255  source_view=AcquireVirtualCacheView(source,exception);
1256  image_view=AcquireAuthenticCacheView(image,exception);
1257 #if defined(MAGICKCORE_OPENMP_SUPPORT)
1258  #pragma omp parallel for schedule(static) shared(status) \
1259  magick_number_threads(source,image,stop-start,1)
1260 #endif
1261  for (y=start; y <= stop; y++)
1262  {
1263  IndexPacket
1264  *magick_restrict indexes;
1265 
1267  composite,
1268  pixel;
1269 
1270  PointInfo
1271  point;
1272 
1273  PixelPacket
1274  *magick_restrict q;
1275 
1276  SegmentInfo
1277  inverse_edge;
1278 
1279  ssize_t
1280  x,
1281  x_offset;
1282 
1283  if (status == MagickFalse)
1284  continue;
1285  inverse_edge=AffineEdge(source,&inverse_affine,(double) y,&edge);
1286  if (inverse_edge.x2 < inverse_edge.x1)
1287  continue;
1288  if (inverse_edge.x1 < 0.0)
1289  inverse_edge.x1=0.0;
1290  if (inverse_edge.x2 > image->columns-1.0)
1291  inverse_edge.x2=image->columns-1.0;
1292  q=GetCacheViewAuthenticPixels(image_view,CastDoubleToLong(
1293  ceil(inverse_edge.x1-0.5)),y,(size_t) CastDoubleToLong(floor(
1294  inverse_edge.x2+0.5)-ceil(inverse_edge.x1-0.5)+1),1,exception);
1295  if (q == (PixelPacket *) NULL)
1296  continue;
1297  indexes=GetCacheViewAuthenticIndexQueue(image_view);
1298  pixel=zero;
1299  composite=zero;
1300  x_offset=0;
1301  for (x=CastDoubleToLong(ceil(inverse_edge.x1-0.5));
1302  x <= CastDoubleToLong(floor(inverse_edge.x2+0.5)); x++)
1303  {
1304  point.x=(double) x*inverse_affine.sx+y*inverse_affine.ry+
1305  inverse_affine.tx;
1306  point.y=(double) x*inverse_affine.rx+y*inverse_affine.sy+
1307  inverse_affine.ty;
1308  status=InterpolateMagickPixelPacket(source,source_view,
1309  UndefinedInterpolatePixel,point.x,point.y,&pixel,exception);
1310  if (status == MagickFalse)
1311  break;
1312  SetMagickPixelPacket(image,q,indexes+x_offset,&composite);
1313  MagickPixelCompositeOver(&pixel,pixel.opacity,&composite,
1314  composite.opacity,&composite);
1315  SetPixelPacket(image,&composite,q,indexes+x_offset);
1316  x_offset++;
1317  q++;
1318  }
1319  if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
1320  status=MagickFalse;
1321  }
1322  source_view=DestroyCacheView(source_view);
1323  image_view=DestroyCacheView(image_view);
1324  return(status);
1325 }
1326 ␌
1327 /*
1328 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1329 % %
1330 % %
1331 % %
1332 + D r a w B o u n d i n g R e c t a n g l e s %
1333 % %
1334 % %
1335 % %
1336 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1337 %
1338 % DrawBoundingRectangles() draws the bounding rectangles on the image. This
1339 % is only useful for developers debugging the rendering algorithm.
1340 %
1341 % The format of the DrawBoundingRectangles method is:
1342 %
1343 % MagickBooleanType DrawBoundingRectangles(Image *image,
1344 % const DrawInfo *draw_info,PolygonInfo *polygon_info)
1345 %
1346 % A description of each parameter follows:
1347 %
1348 % o image: the image.
1349 %
1350 % o draw_info: the draw info.
1351 %
1352 % o polygon_info: Specifies a pointer to a PolygonInfo structure.
1353 %
1354 */
1355 
1356 static MagickBooleanType DrawBoundingRectangles(Image *image,
1357  const DrawInfo *draw_info,const PolygonInfo *polygon_info)
1358 {
1359  double
1360  mid;
1361 
1362  DrawInfo
1363  *clone_info;
1364 
1365  MagickStatusType
1366  status;
1367 
1368  PointInfo
1369  end,
1370  resolution,
1371  start;
1372 
1374  primitive_info[6];
1375 
1376  ssize_t
1377  i;
1378 
1379  SegmentInfo
1380  bounds;
1381 
1382  ssize_t
1383  coordinates;
1384 
1385  (void) memset(primitive_info,0,sizeof(primitive_info));
1386  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1387  status=QueryColorDatabase("#0000",&clone_info->fill,&image->exception);
1388  if (status == MagickFalse)
1389  {
1390  clone_info=DestroyDrawInfo(clone_info);
1391  return(MagickFalse);
1392  }
1393  resolution.x=96.0;
1394  resolution.y=96.0;
1395  if (clone_info->density != (char *) NULL)
1396  {
1397  GeometryInfo
1398  geometry_info;
1399 
1400  MagickStatusType
1401  flags;
1402 
1403  flags=ParseGeometry(clone_info->density,&geometry_info);
1404  if ((flags & RhoValue) != 0)
1405  resolution.x=geometry_info.rho;
1406  resolution.y=resolution.x;
1407  if ((flags & SigmaValue) != 0)
1408  resolution.y=geometry_info.sigma;
1409  }
1410  mid=(resolution.x/96.0)*ExpandAffine(&clone_info->affine)*
1411  clone_info->stroke_width/2.0;
1412  bounds.x1=0.0;
1413  bounds.y1=0.0;
1414  bounds.x2=0.0;
1415  bounds.y2=0.0;
1416  if (polygon_info != (PolygonInfo *) NULL)
1417  {
1418  bounds=polygon_info->edges[0].bounds;
1419  for (i=1; i < (ssize_t) polygon_info->number_edges; i++)
1420  {
1421  if (polygon_info->edges[i].bounds.x1 < (double) bounds.x1)
1422  bounds.x1=polygon_info->edges[i].bounds.x1;
1423  if (polygon_info->edges[i].bounds.y1 < (double) bounds.y1)
1424  bounds.y1=polygon_info->edges[i].bounds.y1;
1425  if (polygon_info->edges[i].bounds.x2 > (double) bounds.x2)
1426  bounds.x2=polygon_info->edges[i].bounds.x2;
1427  if (polygon_info->edges[i].bounds.y2 > (double) bounds.y2)
1428  bounds.y2=polygon_info->edges[i].bounds.y2;
1429  }
1430  bounds.x1-=mid;
1431  bounds.x1=bounds.x1 < 0.0 ? 0.0 : bounds.x1 >= (double)
1432  image->columns ? (double) image->columns-1 : bounds.x1;
1433  bounds.y1-=mid;
1434  bounds.y1=bounds.y1 < 0.0 ? 0.0 : bounds.y1 >= (double)
1435  image->rows ? (double) image->rows-1 : bounds.y1;
1436  bounds.x2+=mid;
1437  bounds.x2=bounds.x2 < 0.0 ? 0.0 : bounds.x2 >= (double)
1438  image->columns ? (double) image->columns-1 : bounds.x2;
1439  bounds.y2+=mid;
1440  bounds.y2=bounds.y2 < 0.0 ? 0.0 : bounds.y2 >= (double)
1441  image->rows ? (double) image->rows-1 : bounds.y2;
1442  for (i=0; i < (ssize_t) polygon_info->number_edges; i++)
1443  {
1444  if (polygon_info->edges[i].direction != 0)
1445  status=QueryColorDatabase("#f00",&clone_info->stroke,
1446  &image->exception);
1447  else
1448  status=QueryColorDatabase("#0f0",&clone_info->stroke,
1449  &image->exception);
1450  if (status == MagickFalse)
1451  break;
1452  start.x=(double) (polygon_info->edges[i].bounds.x1-mid);
1453  start.y=(double) (polygon_info->edges[i].bounds.y1-mid);
1454  end.x=(double) (polygon_info->edges[i].bounds.x2+mid);
1455  end.y=(double) (polygon_info->edges[i].bounds.y2+mid);
1456  primitive_info[0].primitive=RectanglePrimitive;
1457  status&=TraceRectangle(primitive_info,start,end);
1458  primitive_info[0].method=ReplaceMethod;
1459  coordinates=(ssize_t) primitive_info[0].coordinates;
1460  primitive_info[coordinates].primitive=UndefinedPrimitive;
1461  status=DrawPrimitive(image,clone_info,primitive_info);
1462  if (status == MagickFalse)
1463  break;
1464  }
1465  if (i < (ssize_t) polygon_info->number_edges)
1466  {
1467  clone_info=DestroyDrawInfo(clone_info);
1468  return(status == 0 ? MagickFalse : MagickTrue);
1469  }
1470  }
1471  status=QueryColorDatabase("#00f",&clone_info->stroke,&image->exception);
1472  if (status == MagickFalse)
1473  {
1474  clone_info=DestroyDrawInfo(clone_info);
1475  return(MagickFalse);
1476  }
1477  start.x=(double) (bounds.x1-mid);
1478  start.y=(double) (bounds.y1-mid);
1479  end.x=(double) (bounds.x2+mid);
1480  end.y=(double) (bounds.y2+mid);
1481  primitive_info[0].primitive=RectanglePrimitive;
1482  status&=TraceRectangle(primitive_info,start,end);
1483  primitive_info[0].method=ReplaceMethod;
1484  coordinates=(ssize_t) primitive_info[0].coordinates;
1485  primitive_info[coordinates].primitive=UndefinedPrimitive;
1486  status=DrawPrimitive(image,clone_info,primitive_info);
1487  clone_info=DestroyDrawInfo(clone_info);
1488  return(status == 0 ? MagickFalse : MagickTrue);
1489 }
1490 ␌
1491 /*
1492 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1493 % %
1494 % %
1495 % %
1496 % D r a w C l i p P a t h %
1497 % %
1498 % %
1499 % %
1500 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1501 %
1502 % DrawClipPath() draws the clip path on the image mask.
1503 %
1504 % The format of the DrawClipPath method is:
1505 %
1506 % MagickBooleanType DrawClipPath(Image *image,const DrawInfo *draw_info,
1507 % const char *id)
1508 %
1509 % A description of each parameter follows:
1510 %
1511 % o image: the image.
1512 %
1513 % o draw_info: the draw info.
1514 %
1515 % o id: the clip path id.
1516 %
1517 */
1518 MagickExport MagickBooleanType DrawClipPath(Image *image,
1519  const DrawInfo *draw_info,const char *id)
1520 {
1521  const char
1522  *clip_path;
1523 
1524  Image
1525  *clipping_mask;
1526 
1527  MagickBooleanType
1528  status;
1529 
1530  clip_path=GetImageArtifact(image,id);
1531  if (clip_path == (const char *) NULL)
1532  return(MagickFalse);
1533  clipping_mask=DrawClippingMask(image,draw_info,draw_info->clip_mask,clip_path,
1534  &image->exception);
1535  if (clipping_mask == (Image *) NULL)
1536  return(MagickFalse);
1537  status=SetImageClipMask(image,clipping_mask);
1538  clipping_mask=DestroyImage(clipping_mask);
1539  return(status);
1540 }
1541 ␌
1542 /*
1543 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1544 % %
1545 % %
1546 % %
1547 % D r a w C l i p p i n g M a s k %
1548 % %
1549 % %
1550 % %
1551 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1552 %
1553 % DrawClippingMask() draws the clip path and returns it as an image clipping
1554 % mask.
1555 %
1556 % The format of the DrawClippingMask method is:
1557 %
1558 % Image *DrawClippingMask(Image *image,const DrawInfo *draw_info,
1559 % const char *id,const char *clip_path,ExceptionInfo *exception)
1560 %
1561 % A description of each parameter follows:
1562 %
1563 % o image: the image.
1564 %
1565 % o draw_info: the draw info.
1566 %
1567 % o id: the clip path id.
1568 %
1569 % o clip_path: the clip path.
1570 %
1571 % o exception: return any errors or warnings in this structure.
1572 %
1573 */
1574 static Image *DrawClippingMask(Image *image,const DrawInfo *draw_info,
1575  const char *id,const char *clip_path,ExceptionInfo *exception)
1576 {
1577  DrawInfo
1578  *clone_info;
1579 
1580  Image
1581  *clip_mask;
1582 
1583  MagickStatusType
1584  status;
1585 
1586  /*
1587  Draw a clip path.
1588  */
1589  assert(image != (Image *) NULL);
1590  assert(image->signature == MagickCoreSignature);
1591  assert(draw_info != (const DrawInfo *) NULL);
1592  if (IsEventLogging() != MagickFalse)
1593  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1594  clip_mask=AcquireImage((const ImageInfo *) NULL);
1595  status=SetImageExtent(clip_mask,image->columns,image->rows);
1596  if (status == MagickFalse)
1597  return(DestroyImage(clip_mask));
1598  status=SetImageClipMask(image,(Image *) NULL);
1599  status=QueryColorCompliance("#0000",AllCompliance,
1600  &clip_mask->background_color,exception);
1601  clip_mask->background_color.opacity=(Quantum) TransparentOpacity;
1602  status=SetImageBackgroundColor(clip_mask);
1603  if (draw_info->debug != MagickFalse)
1604  (void) LogMagickEvent(DrawEvent,GetMagickModule(),"\nbegin clip-path %s",
1605  id);
1606  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1607  (void) CloneString(&clone_info->primitive,clip_path);
1608  status=QueryColorCompliance("#ffffff",AllCompliance,&clone_info->fill,
1609  exception);
1610  if (clone_info->clip_mask != (char *) NULL)
1611  clone_info->clip_mask=DestroyString(clone_info->clip_mask);
1612  (void) QueryColorCompliance("#00000000",AllCompliance,&clone_info->stroke,
1613  exception);
1614  clone_info->stroke_width=0.0;
1615  clone_info->opacity=OpaqueOpacity;
1616  clone_info->clip_path=MagickTrue;
1617  status=RenderMVGContent(clip_mask,clone_info,0);
1618  clone_info=DestroyDrawInfo(clone_info);
1619  status&=SeparateImageChannel(clip_mask,TrueAlphaChannel);
1620  if (draw_info->compliance != SVGCompliance)
1621  status&=NegateImage(clip_mask,MagickFalse);
1622  if (status == MagickFalse)
1623  clip_mask=DestroyImage(clip_mask);
1624  if (draw_info->debug != MagickFalse)
1625  (void) LogMagickEvent(DrawEvent,GetMagickModule(),"end clip-path");
1626  return(clip_mask);
1627 }
1628 ␌
1629 /*
1630 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1631 % %
1632 % %
1633 % %
1634 % D r a w C o m p o s i t e M a s k %
1635 % %
1636 % %
1637 % %
1638 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1639 %
1640 % DrawCompositeMask() draws the mask path and returns it as an image mask.
1641 %
1642 % The format of the DrawCompositeMask method is:
1643 %
1644 % Image *DrawCompositeMask(Image *image,const DrawInfo *draw_info,
1645 % const char *id,const char *mask_path,ExceptionInfo *exception)
1646 %
1647 % A description of each parameter follows:
1648 %
1649 % o image: the image.
1650 %
1651 % o draw_info: the draw info.
1652 %
1653 % o id: the mask path id.
1654 %
1655 % o mask_path: the mask path.
1656 %
1657 % o exception: return any errors or warnings in this structure.
1658 %
1659 */
1660 static Image *DrawCompositeMask(Image *image,const DrawInfo *draw_info,
1661  const char *id,const char *mask_path,ExceptionInfo *exception)
1662 {
1663  Image
1664  *composite_mask;
1665 
1666  DrawInfo
1667  *clone_info;
1668 
1669  MagickStatusType
1670  status;
1671 
1672  /*
1673  Draw a mask path.
1674  */
1675  assert(image != (Image *) NULL);
1676  assert(image->signature == MagickCoreSignature);
1677  assert(draw_info != (const DrawInfo *) NULL);
1678  if (IsEventLogging() != MagickFalse)
1679  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1680  composite_mask=AcquireImage((const ImageInfo *) NULL);
1681  status=SetImageExtent(composite_mask,image->columns,image->rows);
1682  if (status == MagickFalse)
1683  return(DestroyImage(composite_mask));
1684  status=SetImageMask(image,(Image *) NULL);
1685  status=QueryColorCompliance("#0000",AllCompliance,
1686  &composite_mask->background_color,exception);
1687  composite_mask->background_color.opacity=(Quantum) TransparentOpacity;
1688  (void) SetImageBackgroundColor(composite_mask);
1689  if (draw_info->debug != MagickFalse)
1690  (void) LogMagickEvent(DrawEvent,GetMagickModule(),"\nbegin mask-path %s",
1691  id);
1692  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1693  (void) CloneString(&clone_info->primitive,mask_path);
1694  status=QueryColorCompliance("#ffffff",AllCompliance,&clone_info->fill,
1695  exception);
1696  status=QueryColorCompliance("#00000000",AllCompliance,&clone_info->stroke,
1697  exception);
1698  clone_info->stroke_width=0.0;
1699  clone_info->opacity=OpaqueOpacity;
1700  status=RenderMVGContent(composite_mask,clone_info,0);
1701  clone_info=DestroyDrawInfo(clone_info);
1702  status&=SeparateImageChannel(composite_mask,TrueAlphaChannel);
1703  status&=NegateImage(composite_mask,MagickFalse);
1704  if (status == MagickFalse)
1705  composite_mask=DestroyImage(composite_mask);
1706  if (draw_info->debug != MagickFalse)
1707  (void) LogMagickEvent(DrawEvent,GetMagickModule(),"end mask-path");
1708  return(composite_mask);
1709 }
1710 ␌
1711 /*
1712 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1713 % %
1714 % %
1715 % %
1716 + D r a w D a s h P o l y g o n %
1717 % %
1718 % %
1719 % %
1720 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1721 %
1722 % DrawDashPolygon() draws a dashed polygon (line, rectangle, ellipse) on the
1723 % image while respecting the dash offset and dash pattern attributes.
1724 %
1725 % The format of the DrawDashPolygon method is:
1726 %
1727 % MagickBooleanType DrawDashPolygon(const DrawInfo *draw_info,
1728 % const PrimitiveInfo *primitive_info,Image *image)
1729 %
1730 % A description of each parameter follows:
1731 %
1732 % o draw_info: the draw info.
1733 %
1734 % o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
1735 %
1736 % o image: the image.
1737 %
1738 %
1739 */
1740 static MagickBooleanType DrawDashPolygon(const DrawInfo *draw_info,
1741  const PrimitiveInfo *primitive_info,Image *image)
1742 {
1743  double
1744  dx,
1745  dy,
1746  length,
1747  maximum_length,
1748  offset,
1749  scale,
1750  total_length;
1751 
1752  DrawInfo
1753  *clone_info;
1754 
1755  MagickStatusType
1756  status;
1757 
1759  *dash_polygon;
1760 
1761  ssize_t
1762  i;
1763 
1764  size_t
1765  number_vertices;
1766 
1767  ssize_t
1768  j,
1769  n;
1770 
1771  assert(draw_info != (const DrawInfo *) NULL);
1772  if (draw_info->debug != MagickFalse)
1773  (void) LogMagickEvent(DrawEvent,GetMagickModule()," begin draw-dash");
1774  for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++) ;
1775  number_vertices=(size_t) i;
1776  dash_polygon=(PrimitiveInfo *) AcquireQuantumMemory((size_t)
1777  (2UL*number_vertices+32UL),sizeof(*dash_polygon));
1778  if (dash_polygon == (PrimitiveInfo *) NULL)
1779  {
1780  (void) ThrowMagickException(&image->exception,GetMagickModule(),
1781  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
1782  return(MagickFalse);
1783  }
1784  (void) memset(dash_polygon,0,(2UL*number_vertices+32UL)*
1785  sizeof(*dash_polygon));
1786  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
1787  clone_info->miterlimit=0;
1788  dash_polygon[0]=primitive_info[0];
1789  dash_polygon[0].closed_subpath=MagickFalse;
1790  scale=ExpandAffine(&draw_info->affine);
1791  length=scale*draw_info->dash_pattern[0];
1792  offset=fabs(draw_info->dash_offset) >= MagickEpsilon ?
1793  scale*draw_info->dash_offset : 0.0;
1794  j=1;
1795  for (n=0; offset > 0.0; j=0)
1796  {
1797  if (draw_info->dash_pattern[n] <= 0.0)
1798  break;
1799  length=scale*(draw_info->dash_pattern[n]+(n == 0 ? -0.5 : 0.5));
1800  if (offset > length)
1801  {
1802  offset-=length;
1803  n++;
1804  length=scale*draw_info->dash_pattern[n];
1805  continue;
1806  }
1807  if (offset < length)
1808  {
1809  length-=offset;
1810  offset=0.0;
1811  break;
1812  }
1813  offset=0.0;
1814  n++;
1815  }
1816  status=MagickTrue;
1817  maximum_length=0.0;
1818  total_length=0.0;
1819  for (i=1; (i < (ssize_t) number_vertices) && (length >= 0.0); i++)
1820  {
1821  dx=primitive_info[i].point.x-primitive_info[i-1].point.x;
1822  dy=primitive_info[i].point.y-primitive_info[i-1].point.y;
1823  maximum_length=hypot(dx,dy);
1824  if (maximum_length > (double) (MaxBezierCoordinates >> 2))
1825  continue;
1826  if (fabs(length) < MagickEpsilon)
1827  {
1828  if (fabs(draw_info->dash_pattern[n]) >= MagickEpsilon)
1829  n++;
1830  if (fabs(draw_info->dash_pattern[n]) < MagickEpsilon)
1831  n=0;
1832  length=scale*draw_info->dash_pattern[n];
1833  }
1834  for (total_length=0.0; (length >= 0.0) && (maximum_length >= (total_length+length)); )
1835  {
1836  total_length+=length;
1837  if ((n & 0x01) != 0)
1838  {
1839  dash_polygon[0]=primitive_info[0];
1840  dash_polygon[0].closed_subpath=MagickFalse;
1841  dash_polygon[0].point.x=(double) (primitive_info[i-1].point.x+dx*
1842  total_length*MagickSafeReciprocal(maximum_length));
1843  dash_polygon[0].point.y=(double) (primitive_info[i-1].point.y+dy*
1844  total_length*MagickSafeReciprocal(maximum_length));
1845  j=1;
1846  }
1847  else
1848  {
1849  if ((j+1) > (ssize_t) number_vertices)
1850  break;
1851  dash_polygon[j]=primitive_info[i-1];
1852  dash_polygon[j].closed_subpath=MagickFalse;
1853  dash_polygon[j].point.x=(double) (primitive_info[i-1].point.x+dx*
1854  total_length*MagickSafeReciprocal(maximum_length));
1855  dash_polygon[j].point.y=(double) (primitive_info[i-1].point.y+dy*
1856  total_length*MagickSafeReciprocal(maximum_length));
1857  dash_polygon[j].coordinates=1;
1858  j++;
1859  dash_polygon[0].coordinates=(size_t) j;
1860  dash_polygon[j].primitive=UndefinedPrimitive;
1861  status&=DrawStrokePolygon(image,clone_info,dash_polygon);
1862  if (status == MagickFalse)
1863  break;
1864  }
1865  if (fabs(draw_info->dash_pattern[n]) >= MagickEpsilon)
1866  n++;
1867  if (fabs(draw_info->dash_pattern[n]) < MagickEpsilon)
1868  n=0;
1869  length=scale*draw_info->dash_pattern[n];
1870  }
1871  length-=(maximum_length-total_length);
1872  if ((n & 0x01) != 0)
1873  continue;
1874  dash_polygon[j]=primitive_info[i];
1875  dash_polygon[j].coordinates=1;
1876  j++;
1877  }
1878  if ((status != MagickFalse) && (total_length < maximum_length) &&
1879  ((n & 0x01) == 0) && (j > 1))
1880  {
1881  dash_polygon[j]=primitive_info[i-1];
1882  dash_polygon[j].closed_subpath=MagickFalse;
1883  dash_polygon[j].point.x+=MagickEpsilon;
1884  dash_polygon[j].point.y+=MagickEpsilon;
1885  dash_polygon[j].coordinates=1;
1886  j++;
1887  dash_polygon[0].coordinates=(size_t) j;
1888  dash_polygon[j].primitive=UndefinedPrimitive;
1889  status&=DrawStrokePolygon(image,clone_info,dash_polygon);
1890  }
1891  dash_polygon=(PrimitiveInfo *) RelinquishMagickMemory(dash_polygon);
1892  clone_info=DestroyDrawInfo(clone_info);
1893  if (draw_info->debug != MagickFalse)
1894  (void) LogMagickEvent(DrawEvent,GetMagickModule()," end draw-dash");
1895  return(status != 0 ? MagickTrue : MagickFalse);
1896 }
1897 ␌
1898 /*
1899 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1900 % %
1901 % %
1902 % %
1903 % D r a w G r a d i e n t I m a g e %
1904 % %
1905 % %
1906 % %
1907 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1908 %
1909 % DrawGradientImage() draws a linear gradient on the image.
1910 %
1911 % The format of the DrawGradientImage method is:
1912 %
1913 % MagickBooleanType DrawGradientImage(Image *image,
1914 % const DrawInfo *draw_info)
1915 %
1916 % A description of each parameter follows:
1917 %
1918 % o image: the image.
1919 %
1920 % o draw_info: the draw info.
1921 %
1922 */
1923 
1924 static inline double GetStopColorOffset(const GradientInfo *gradient,
1925  const ssize_t x,const ssize_t y)
1926 {
1927  switch (gradient->type)
1928  {
1929  case UndefinedGradient:
1930  case LinearGradient:
1931  {
1932  double
1933  gamma,
1934  length,
1935  offset,
1936  scale;
1937 
1938  PointInfo
1939  p,
1940  q;
1941 
1942  const SegmentInfo
1943  *gradient_vector;
1944 
1945  gradient_vector=(&gradient->gradient_vector);
1946  p.x=gradient_vector->x2-gradient_vector->x1;
1947  p.y=gradient_vector->y2-gradient_vector->y1;
1948  q.x=(double) x-gradient_vector->x1;
1949  q.y=(double) y-gradient_vector->y1;
1950  length=sqrt(q.x*q.x+q.y*q.y);
1951  gamma=sqrt(p.x*p.x+p.y*p.y)*length;
1952  gamma=MagickSafeReciprocal(gamma);
1953  scale=p.x*q.x+p.y*q.y;
1954  offset=gamma*scale*length;
1955  return(offset);
1956  }
1957  case RadialGradient:
1958  {
1959  PointInfo
1960  v;
1961 
1962  if (gradient->spread == RepeatSpread)
1963  {
1964  v.x=(double) x-gradient->center.x;
1965  v.y=(double) y-gradient->center.y;
1966  return(sqrt(v.x*v.x+v.y*v.y));
1967  }
1968  v.x=(double) (((x-gradient->center.x)*cos(DegreesToRadians(
1969  gradient->angle)))+((y-gradient->center.y)*sin(DegreesToRadians(
1970  gradient->angle))))*MagickSafeReciprocal(gradient->radii.x);
1971  v.y=(double) (((x-gradient->center.x)*sin(DegreesToRadians(
1972  gradient->angle)))-((y-gradient->center.y)*cos(DegreesToRadians(
1973  gradient->angle))))*MagickSafeReciprocal(gradient->radii.y);
1974  return(sqrt(v.x*v.x+v.y*v.y));
1975  }
1976  }
1977  return(0.0);
1978 }
1979 
1980 MagickExport MagickBooleanType DrawGradientImage(Image *image,
1981  const DrawInfo *draw_info)
1982 {
1983  CacheView
1984  *image_view;
1985 
1986  const GradientInfo
1987  *gradient;
1988 
1989  const SegmentInfo
1990  *gradient_vector;
1991 
1992  double
1993  length;
1994 
1996  *exception;
1997 
1998  MagickBooleanType
1999  status;
2000 
2002  zero;
2003 
2004  PointInfo
2005  point;
2006 
2008  bounding_box;
2009 
2010  ssize_t
2011  height,
2012  y;
2013 
2014  /*
2015  Draw linear or radial gradient on image.
2016  */
2017  assert(image != (Image *) NULL);
2018  assert(image->signature == MagickCoreSignature);
2019  assert(draw_info != (const DrawInfo *) NULL);
2020  if (IsEventLogging() != MagickFalse)
2021  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
2022  gradient=(&draw_info->gradient);
2023  gradient_vector=(&gradient->gradient_vector);
2024  point.x=gradient_vector->x2-gradient_vector->x1;
2025  point.y=gradient_vector->y2-gradient_vector->y1;
2026  length=sqrt(point.x*point.x+point.y*point.y);
2027  bounding_box=gradient->bounding_box;
2028  status=MagickTrue;
2029  exception=(&image->exception);
2030  GetMagickPixelPacket(image,&zero);
2031  image_view=AcquireAuthenticCacheView(image,exception);
2032  height=(size_t) (bounding_box.y+bounding_box.height);
2033 #if defined(MAGICKCORE_OPENMP_SUPPORT)
2034  #pragma omp parallel for schedule(static) shared(status) \
2035  magick_number_threads(image,image,height,1)
2036 #endif
2037  for (y=bounding_box.y; y < (ssize_t) height; y++)
2038  {
2039  double
2040  alpha,
2041  offset;
2042 
2044  composite,
2045  pixel;
2046 
2047  IndexPacket
2048  *magick_restrict indexes;
2049 
2050  PixelPacket
2051  *magick_restrict q;
2052 
2053  ssize_t
2054  i,
2055  j,
2056  width,
2057  x;
2058 
2059  if (status == MagickFalse)
2060  continue;
2061  q=GetCacheViewAuthenticPixels(image_view,bounding_box.x,y,(size_t)
2062  bounding_box.width,1,exception);
2063  if (q == (PixelPacket *) NULL)
2064  {
2065  status=MagickFalse;
2066  continue;
2067  }
2068  indexes=GetCacheViewAuthenticIndexQueue(image_view);
2069  pixel=zero;
2070  composite=zero;
2071  offset=GetStopColorOffset(gradient,0,y);
2072  if (gradient->type != RadialGradient)
2073  offset*=MagickSafeReciprocal(length);
2074  width=(size_t) (bounding_box.x+bounding_box.width);
2075  for (x=bounding_box.x; x < (ssize_t) width; x++)
2076  {
2077  SetMagickPixelPacket(image,q,indexes+x,&pixel);
2078  switch (gradient->spread)
2079  {
2080  case UndefinedSpread:
2081  case PadSpread:
2082  {
2083  if ((x != CastDoubleToLong(ceil(gradient_vector->x1-0.5))) ||
2084  (y != CastDoubleToLong(ceil(gradient_vector->y1-0.5))))
2085  {
2086  offset=GetStopColorOffset(gradient,x,y);
2087  if (gradient->type != RadialGradient)
2088  offset*=MagickSafeReciprocal(length);
2089  }
2090  for (i=0; i < (ssize_t) gradient->number_stops; i++)
2091  if (offset < gradient->stops[i].offset)
2092  break;
2093  if ((offset < 0.0) || (i == 0))
2094  composite=gradient->stops[0].color;
2095  else
2096  if ((offset > 1.0) || (i == (ssize_t) gradient->number_stops))
2097  composite=gradient->stops[gradient->number_stops-1].color;
2098  else
2099  {
2100  j=i;
2101  i--;
2102  alpha=(offset-gradient->stops[i].offset)/
2103  (gradient->stops[j].offset-gradient->stops[i].offset);
2104  MagickPixelCompositeBlend(&gradient->stops[i].color,1.0-alpha,
2105  &gradient->stops[j].color,alpha,&composite);
2106  }
2107  break;
2108  }
2109  case ReflectSpread:
2110  {
2111  if ((x != CastDoubleToLong(ceil(gradient_vector->x1-0.5))) ||
2112  (y != CastDoubleToLong(ceil(gradient_vector->y1-0.5))))
2113  {
2114  offset=GetStopColorOffset(gradient,x,y);
2115  if (gradient->type != RadialGradient)
2116  offset*=MagickSafeReciprocal(length);
2117  }
2118  if (offset < 0.0)
2119  offset=(-offset);
2120  if ((ssize_t) fmod(offset,2.0) == 0)
2121  offset=fmod(offset,1.0);
2122  else
2123  offset=1.0-fmod(offset,1.0);
2124  for (i=0; i < (ssize_t) gradient->number_stops; i++)
2125  if (offset < gradient->stops[i].offset)
2126  break;
2127  if (i == 0)
2128  composite=gradient->stops[0].color;
2129  else
2130  if (i == (ssize_t) gradient->number_stops)
2131  composite=gradient->stops[gradient->number_stops-1].color;
2132  else
2133  {
2134  j=i;
2135  i--;
2136  alpha=(offset-gradient->stops[i].offset)/
2137  (gradient->stops[j].offset-gradient->stops[i].offset);
2138  MagickPixelCompositeBlend(&gradient->stops[i].color,1.0-alpha,
2139  &gradient->stops[j].color,alpha,&composite);
2140  }
2141  break;
2142  }
2143  case RepeatSpread:
2144  {
2145  double
2146  repeat;
2147 
2148  MagickBooleanType
2149  antialias;
2150 
2151  antialias=MagickFalse;
2152  repeat=0.0;
2153  if ((x != CastDoubleToLong(ceil(gradient_vector->x1-0.5))) ||
2154  (y != CastDoubleToLong(ceil(gradient_vector->y1-0.5))))
2155  {
2156  offset=GetStopColorOffset(gradient,x,y);
2157  if (gradient->type == LinearGradient)
2158  {
2159  repeat=fmod(offset,length);
2160  if (repeat < 0.0)
2161  repeat=length-fmod(-repeat,length);
2162  else
2163  repeat=fmod(offset,length);
2164  antialias=(repeat < length) && ((repeat+1.0) > length) ?
2165  MagickTrue : MagickFalse;
2166  offset=MagickSafeReciprocal(length)*repeat;
2167  }
2168  else
2169  {
2170  repeat=fmod(offset,(double) gradient->radius);
2171  if (repeat < 0.0)
2172  repeat=gradient->radius-fmod(-repeat,
2173  (double) gradient->radius);
2174  else
2175  repeat=fmod(offset,(double) gradient->radius);
2176  antialias=repeat+1.0 > gradient->radius ? MagickTrue :
2177  MagickFalse;
2178  offset=repeat*MagickSafeReciprocal(gradient->radius);
2179  }
2180  }
2181  for (i=0; i < (ssize_t) gradient->number_stops; i++)
2182  if (offset < gradient->stops[i].offset)
2183  break;
2184  if (i == 0)
2185  composite=gradient->stops[0].color;
2186  else
2187  if (i == (ssize_t) gradient->number_stops)
2188  composite=gradient->stops[gradient->number_stops-1].color;
2189  else
2190  {
2191  j=i;
2192  i--;
2193  alpha=(offset-gradient->stops[i].offset)/
2194  (gradient->stops[j].offset-gradient->stops[i].offset);
2195  if (antialias != MagickFalse)
2196  {
2197  if (gradient->type == LinearGradient)
2198  alpha=length-repeat;
2199  else
2200  alpha=gradient->radius-repeat;
2201  i=0;
2202  j=(ssize_t) gradient->number_stops-1L;
2203  }
2204  MagickPixelCompositeBlend(&gradient->stops[i].color,1.0-alpha,
2205  &gradient->stops[j].color,alpha,&composite);
2206  }
2207  break;
2208  }
2209  }
2210  MagickPixelCompositeOver(&composite,composite.opacity,&pixel,
2211  pixel.opacity,&pixel);
2212  SetPixelPacket(image,&pixel,q,indexes+x);
2213  q++;
2214  }
2215  if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
2216  status=MagickFalse;
2217  }
2218  image_view=DestroyCacheView(image_view);
2219  return(status);
2220 }
2221 ␌
2222 /*
2223 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2224 % %
2225 % %
2226 % %
2227 % D r a w I m a g e %
2228 % %
2229 % %
2230 % %
2231 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2232 %
2233 % DrawImage() draws a graphic primitive on your image. The primitive
2234 % may be represented as a string or filename. Precede the filename with an
2235 % "at" sign (@) and the contents of the file are drawn on the image. You
2236 % can affect how text is drawn by setting one or more members of the draw
2237 % info structure.
2238 %
2239 % The format of the DrawImage method is:
2240 %
2241 % MagickBooleanType DrawImage(Image *image,const DrawInfo *draw_info)
2242 %
2243 % A description of each parameter follows:
2244 %
2245 % o image: the image.
2246 %
2247 % o draw_info: the draw info.
2248 %
2249 */
2250 
2251 static MagickBooleanType CheckPrimitiveExtent(MVGInfo *mvg_info,
2252  const double pad)
2253 {
2254  char
2255  **text = (char **) NULL;
2256 
2257  double
2258  extent;
2259 
2260  size_t
2261  quantum;
2262 
2263  ssize_t
2264  i;
2265 
2266  /*
2267  Check if there is enough storage for drawing primitives.
2268  */
2269  quantum=sizeof(**mvg_info->primitive_info);
2270  extent=(double) mvg_info->offset+pad+(PrimitiveExtentPad+1)*quantum;
2271  if (extent <= (double) *mvg_info->extent)
2272  return(MagickTrue);
2273  if ((extent >= (double) GetMaxMemoryRequest()) || (IsNaN(extent) != 0))
2274  return(MagickFalse);
2275  if (mvg_info->offset > 0)
2276  {
2277  text=(char **) AcquireQuantumMemory(mvg_info->offset,sizeof(*text));
2278  if (text == (char **) NULL)
2279  return(MagickFalse);
2280  for (i=0; i < mvg_info->offset; i++)
2281  text[i]=(*mvg_info->primitive_info)[i].text;
2282  }
2283  *mvg_info->primitive_info=(PrimitiveInfo *) ResizeQuantumMemory(
2284  *mvg_info->primitive_info,(size_t) (extent+1),quantum);
2285  if (*mvg_info->primitive_info != (PrimitiveInfo *) NULL)
2286  {
2287  if (text != (char **) NULL)
2288  text=(char **) RelinquishMagickMemory(text);
2289  *mvg_info->extent=(size_t) extent;
2290  for (i=mvg_info->offset+1; i <= (ssize_t) extent; i++)
2291  {
2292  (*mvg_info->primitive_info)[i].primitive=UndefinedPrimitive;
2293  (*mvg_info->primitive_info)[i].text=(char *) NULL;
2294  }
2295  return(MagickTrue);
2296  }
2297  /*
2298  Reallocation failed, allocate a primitive to facilitate unwinding.
2299  */
2300  if (text != (char **) NULL)
2301  {
2302  for (i=0; i < mvg_info->offset; i++)
2303  if (text[i] != (char *) NULL)
2304  text[i]=DestroyString(text[i]);
2305  text=(char **) RelinquishMagickMemory(text);
2306  }
2307  (void) ThrowMagickException(mvg_info->exception,GetMagickModule(),
2308  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
2309  *mvg_info->primitive_info=(PrimitiveInfo *) AcquireCriticalMemory((size_t)
2310  (PrimitiveExtentPad+1)*quantum);
2311  (void) memset(*mvg_info->primitive_info,0,(size_t) ((PrimitiveExtentPad+1)*
2312  quantum));
2313  *mvg_info->extent=1;
2314  mvg_info->offset=0;
2315  return(MagickFalse);
2316 }
2317 
2318 static inline double GetDrawValue(const char *magick_restrict string,
2319  char **magick_restrict sentinel)
2320 {
2321  char
2322  **magick_restrict q;
2323 
2324  double
2325  value;
2326 
2327  q=sentinel;
2328  value=InterpretLocaleValue(string,q);
2329  sentinel=q;
2330  return(value);
2331 }
2332 
2333 static int MVGMacroCompare(const void *target,const void *source)
2334 {
2335  const char
2336  *p,
2337  *q;
2338 
2339  p=(const char *) target;
2340  q=(const char *) source;
2341  return(strcmp(p,q));
2342 }
2343 
2344 static SplayTreeInfo *GetMVGMacros(const char *primitive)
2345 {
2346  char
2347  *macro,
2348  *token;
2349 
2350  const char
2351  *q;
2352 
2353  size_t
2354  extent;
2355 
2357  *macros;
2358 
2359  /*
2360  Scan graphic primitives for definitions and classes.
2361  */
2362  if (primitive == (const char *) NULL)
2363  return((SplayTreeInfo *) NULL);
2364  macros=NewSplayTree(MVGMacroCompare,RelinquishMagickMemory,
2365  RelinquishMagickMemory);
2366  macro=AcquireString(primitive);
2367  token=AcquireString(primitive);
2368  extent=strlen(token)+MagickPathExtent;
2369  for (q=primitive; *q != '\0'; )
2370  {
2371  if (GetNextToken(q,&q,extent,token) < 1)
2372  break;
2373  if (*token == '\0')
2374  break;
2375  if (LocaleCompare("push",token) == 0)
2376  {
2377  const char
2378  *end,
2379  *start;
2380 
2381  (void) GetNextToken(q,&q,extent,token);
2382  if (*q == '"')
2383  {
2384  char
2385  name[MagickPathExtent];
2386 
2387  const char
2388  *p;
2389 
2390  ssize_t
2391  n;
2392 
2393  /*
2394  Named macro (e.g. push graphic-context "wheel").
2395  */
2396  (void) GetNextToken(q,&q,extent,token);
2397  start=q;
2398  end=q;
2399  (void) CopyMagickString(name,token,MagickPathExtent);
2400  n=1;
2401  for (p=q; *p != '\0'; )
2402  {
2403  if (GetNextToken(p,&p,extent,token) < 1)
2404  break;
2405  if (*token == '\0')
2406  break;
2407  if (LocaleCompare(token,"pop") == 0)
2408  {
2409  end=p-strlen(token)-1;
2410  n--;
2411  }
2412  if (LocaleCompare(token,"push") == 0)
2413  n++;
2414  if ((n == 0) && (end >= start))
2415  {
2416  size_t
2417  length=(size_t) (end-start);
2418 
2419  /*
2420  Extract macro.
2421  */
2422  (void) GetNextToken(p,&p,extent,token);
2423  if (length > 0)
2424  {
2425  (void) CopyMagickString(macro,start,length);
2426  (void) AddValueToSplayTree(macros,ConstantString(name),
2427  ConstantString(macro));
2428  }
2429  break;
2430  }
2431  }
2432  }
2433  }
2434  }
2435  token=DestroyString(token);
2436  macro=DestroyString(macro);
2437  return(macros);
2438 }
2439 
2440 static inline MagickBooleanType IsPoint(const char *point)
2441 {
2442  char
2443  *p;
2444 
2445  double
2446  value;
2447 
2448  value=GetDrawValue(point,&p);
2449  return((fabs(value) < MagickEpsilon) && (p == point) ? MagickFalse :
2450  MagickTrue);
2451 }
2452 
2453 static inline MagickBooleanType TracePoint(PrimitiveInfo *primitive_info,
2454  const PointInfo point)
2455 {
2456  primitive_info->coordinates=1;
2457  primitive_info->closed_subpath=MagickFalse;
2458  primitive_info->point=point;
2459  return(MagickTrue);
2460 }
2461 
2462 static MagickBooleanType RenderMVGContent(Image *image,
2463  const DrawInfo *draw_info,const size_t depth)
2464 {
2465 #define RenderImageTag "Render/Image"
2466 
2467  AffineMatrix
2468  affine,
2469  current;
2470 
2471  char
2472  key[2*MaxTextExtent],
2473  keyword[MaxTextExtent],
2474  geometry[MaxTextExtent],
2475  name[MaxTextExtent],
2476  *next_token,
2477  pattern[MaxTextExtent],
2478  *primitive,
2479  *token;
2480 
2481  const char
2482  *p,
2483  *q;
2484 
2485  double
2486  angle,
2487  coordinates,
2488  cursor,
2489  factor,
2490  primitive_extent;
2491 
2492  DrawInfo
2493  *clone_info,
2494  **graphic_context;
2495 
2496  MagickBooleanType
2497  proceed;
2498 
2499  MagickStatusType
2500  status;
2501 
2502  MVGInfo
2503  mvg_info;
2504 
2505  PointInfo
2506  point;
2507 
2508  PixelPacket
2509  start_color;
2510 
2512  *primitive_info;
2513 
2514  PrimitiveType
2515  primitive_type;
2516 
2517  SegmentInfo
2518  bounds;
2519 
2520  size_t
2521  extent,
2522  number_points;
2523 
2525  *macros;
2526 
2527  ssize_t
2528  defsDepth,
2529  i,
2530  j,
2531  k,
2532  n,
2533  symbolDepth,
2534  x;
2535 
2536  TypeMetric
2537  metrics;
2538 
2539  assert(image != (Image *) NULL);
2540  assert(image->signature == MagickCoreSignature);
2541  assert(draw_info != (DrawInfo *) NULL);
2542  assert(draw_info->signature == MagickCoreSignature);
2543  if (IsEventLogging() != MagickFalse)
2544  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
2545  if (depth > MagickMaxRecursionDepth)
2546  ThrowBinaryImageException(DrawError,"VectorGraphicsNestedTooDeeply",
2547  image->filename);
2548  if ((draw_info->primitive == (char *) NULL) ||
2549  (*draw_info->primitive == '\0'))
2550  return(MagickFalse);
2551  if (draw_info->debug != MagickFalse)
2552  (void) LogMagickEvent(DrawEvent,GetMagickModule(),"begin draw-image");
2553  if (SetImageStorageClass(image,DirectClass) == MagickFalse)
2554  return(MagickFalse);
2555  if (image->matte == MagickFalse)
2556  {
2557  status=SetImageAlphaChannel(image,OpaqueAlphaChannel);
2558  if (status == MagickFalse)
2559  return(MagickFalse);
2560  }
2561  primitive=(char *) NULL;
2562  if ((*draw_info->primitive == '@') && (strlen(draw_info->primitive) > 1) &&
2563  (*(draw_info->primitive+1) != '-') && (depth == 0))
2564  primitive=FileToString(draw_info->primitive,~0UL,&image->exception);
2565  else
2566  primitive=AcquireString(draw_info->primitive);
2567  if (primitive == (char *) NULL)
2568  return(MagickFalse);
2569  primitive_extent=(double) strlen(primitive);
2570  (void) SetImageArtifact(image,"mvg:vector-graphics",primitive);
2571  n=0;
2572  /*
2573  Allocate primitive info memory.
2574  */
2575  graphic_context=(DrawInfo **) AcquireMagickMemory(sizeof(*graphic_context));
2576  if (graphic_context == (DrawInfo **) NULL)
2577  {
2578  primitive=DestroyString(primitive);
2579  ThrowBinaryImageException(ResourceLimitError,"MemoryAllocationFailed",
2580  image->filename);
2581  }
2582  number_points=(size_t) PrimitiveExtentPad;
2583  primitive_info=(PrimitiveInfo *) AcquireQuantumMemory((size_t)
2584  (number_points+1),sizeof(*primitive_info));
2585  if (primitive_info == (PrimitiveInfo *) NULL)
2586  {
2587  primitive=DestroyString(primitive);
2588  for ( ; n >= 0; n--)
2589  graphic_context[n]=DestroyDrawInfo(graphic_context[n]);
2590  graphic_context=(DrawInfo **) RelinquishMagickMemory(graphic_context);
2591  ThrowBinaryImageException(ResourceLimitError,"MemoryAllocationFailed",
2592  image->filename);
2593  }
2594  (void) memset(primitive_info,0,(size_t) (number_points+1)*
2595  sizeof(*primitive_info));
2596  (void) memset(&mvg_info,0,sizeof(mvg_info));
2597  mvg_info.primitive_info=(&primitive_info);
2598  mvg_info.extent=(&number_points);
2599  mvg_info.exception=(&image->exception);
2600  graphic_context[n]=CloneDrawInfo((ImageInfo *) NULL,draw_info);
2601  graphic_context[n]->viewbox=image->page;
2602  if ((image->page.width == 0) || (image->page.height == 0))
2603  {
2604  graphic_context[n]->viewbox.width=image->columns;
2605  graphic_context[n]->viewbox.height=image->rows;
2606  }
2607  token=AcquireString(primitive);
2608  extent=strlen(token)+MaxTextExtent;
2609  cursor=0.0;
2610  defsDepth=0;
2611  symbolDepth=0;
2612  macros=GetMVGMacros(primitive);
2613  status=QueryColorDatabase("#000000",&start_color,&image->exception);
2614  for (q=primitive; *q != '\0'; )
2615  {
2616  /*
2617  Interpret graphic primitive.
2618  */
2619  if (GetNextToken(q,&q,MaxTextExtent,keyword) < 1)
2620  break;
2621  if (*keyword == '\0')
2622  break;
2623  if (*keyword == '#')
2624  {
2625  /*
2626  Comment.
2627  */
2628  while ((*q != '\n') && (*q != '\0'))
2629  q++;
2630  continue;
2631  }
2632  p=q-strlen(keyword)-1;
2633  primitive_type=UndefinedPrimitive;
2634  current=graphic_context[n]->affine;
2635  GetAffineMatrix(&affine);
2636  *token='\0';
2637  switch (*keyword)
2638  {
2639  case ';':
2640  break;
2641  case 'a':
2642  case 'A':
2643  {
2644  if (LocaleCompare("affine",keyword) == 0)
2645  {
2646  (void) GetNextToken(q,&q,extent,token);
2647  affine.sx=GetDrawValue(token,&next_token);
2648  if (token == next_token)
2649  ThrowPointExpectedException(image,token);
2650  (void) GetNextToken(q,&q,extent,token);
2651  if (*token == ',')
2652  (void) GetNextToken(q,&q,extent,token);
2653  affine.ry=GetDrawValue(token,&next_token);
2654  if (token == next_token)
2655  ThrowPointExpectedException(image,token);
2656  (void) GetNextToken(q,&q,extent,token);
2657  if (*token == ',')
2658  (void) GetNextToken(q,&q,extent,token);
2659  affine.rx=GetDrawValue(token,&next_token);
2660  if (token == next_token)
2661  ThrowPointExpectedException(image,token);
2662  (void) GetNextToken(q,&q,extent,token);
2663  if (*token == ',')
2664  (void) GetNextToken(q,&q,extent,token);
2665  affine.sy=GetDrawValue(token,&next_token);
2666  if (token == next_token)
2667  ThrowPointExpectedException(image,token);
2668  (void) GetNextToken(q,&q,extent,token);
2669  if (*token == ',')
2670  (void) GetNextToken(q,&q,extent,token);
2671  affine.tx=GetDrawValue(token,&next_token);
2672  if (token == next_token)
2673  ThrowPointExpectedException(image,token);
2674  (void) GetNextToken(q,&q,extent,token);
2675  if (*token == ',')
2676  (void) GetNextToken(q,&q,extent,token);
2677  affine.ty=GetDrawValue(token,&next_token);
2678  if (token == next_token)
2679  ThrowPointExpectedException(image,token);
2680  break;
2681  }
2682  if (LocaleCompare("arc",keyword) == 0)
2683  {
2684  primitive_type=ArcPrimitive;
2685  break;
2686  }
2687  status=MagickFalse;
2688  break;
2689  }
2690  case 'b':
2691  case 'B':
2692  {
2693  if (LocaleCompare("bezier",keyword) == 0)
2694  {
2695  primitive_type=BezierPrimitive;
2696  break;
2697  }
2698  if (LocaleCompare("border-color",keyword) == 0)
2699  {
2700  (void) GetNextToken(q,&q,extent,token);
2701  status&=QueryColorDatabase(token,&graphic_context[n]->border_color,
2702  &image->exception);
2703  break;
2704  }
2705  status=MagickFalse;
2706  break;
2707  }
2708  case 'c':
2709  case 'C':
2710  {
2711  if (LocaleCompare("class",keyword) == 0)
2712  {
2713  const char
2714  *mvg_class;
2715 
2716  (void) GetNextToken(q,&q,extent,token);
2717  if ((*token == '\0') || (*token == ';'))
2718  {
2719  status=MagickFalse;
2720  break;
2721  }
2722  /*
2723  Identify recursion.
2724  */
2725  for (i=0; i <= n; i++)
2726  if (LocaleCompare(token,graphic_context[i]->id) == 0)
2727  break;
2728  if (i <= n)
2729  break;
2730  mvg_class=(const char *) GetValueFromSplayTree(macros,token);
2731  if ((graphic_context[n]->render != MagickFalse) &&
2732  (mvg_class != (const char *) NULL) && (p > primitive))
2733  {
2734  char
2735  *elements;
2736 
2737  ssize_t
2738  offset;
2739 
2740  /*
2741  Inject class elements in stream.
2742  */
2743  (void) CloneString(&graphic_context[n]->id,token);
2744  offset=(ssize_t) (p-primitive);
2745  elements=AcquireString(primitive);
2746  elements[offset]='\0';
2747  (void) ConcatenateString(&elements,mvg_class);
2748  (void) ConcatenateString(&elements,"\n");
2749  (void) ConcatenateString(&elements,q);
2750  primitive=DestroyString(primitive);
2751  primitive=elements;
2752  q=primitive+offset;
2753  }
2754  break;
2755  }
2756  if (LocaleCompare("clip-path",keyword) == 0)
2757  {
2758  const char
2759  *clip_path;
2760 
2761  /*
2762  Take a node from within the MVG document, and duplicate it here.
2763  */
2764  (void) GetNextToken(q,&q,extent,token);
2765  if (*token == '\0')
2766  {
2767  status=MagickFalse;
2768  break;
2769  }
2770  (void) CloneString(&graphic_context[n]->clip_mask,token);
2771  clip_path=(const char *) GetValueFromSplayTree(macros,token);
2772  if (clip_path != (const char *) NULL)
2773  {
2774  if (graphic_context[n]->clipping_mask != (Image *) NULL)
2775  graphic_context[n]->clipping_mask=
2776  DestroyImage(graphic_context[n]->clipping_mask);
2777  graphic_context[n]->clipping_mask=DrawClippingMask(image,
2778  graphic_context[n],token,clip_path,&image->exception);
2779  if (graphic_context[n]->compliance != SVGCompliance)
2780  {
2781  const char
2782  *clip_path;
2783 
2784  clip_path=(const char *) GetValueFromSplayTree(macros,
2785  graphic_context[n]->clip_mask);
2786  if (clip_path != (const char *) NULL)
2787  (void) SetImageArtifact(image,
2788  graphic_context[n]->clip_mask,clip_path);
2789  status&=DrawClipPath(image,graphic_context[n],
2790  graphic_context[n]->clip_mask);
2791  }
2792  }
2793  break;
2794  }
2795  if (LocaleCompare("clip-rule",keyword) == 0)
2796  {
2797  ssize_t
2798  fill_rule;
2799 
2800  (void) GetNextToken(q,&q,extent,token);
2801  fill_rule=ParseCommandOption(MagickFillRuleOptions,MagickFalse,
2802  token);
2803  if (fill_rule == -1)
2804  {
2805  status=MagickFalse;
2806  break;
2807  }
2808  graphic_context[n]->fill_rule=(FillRule) fill_rule;
2809  break;
2810  }
2811  if (LocaleCompare("clip-units",keyword) == 0)
2812  {
2813  ssize_t
2814  clip_units;
2815 
2816  (void) GetNextToken(q,&q,extent,token);
2817  clip_units=ParseCommandOption(MagickClipPathOptions,MagickFalse,
2818  token);
2819  if (clip_units == -1)
2820  {
2821  status=MagickFalse;
2822  break;
2823  }
2824  graphic_context[n]->clip_units=(ClipPathUnits) clip_units;
2825  if (clip_units == ObjectBoundingBox)
2826  {
2827  GetAffineMatrix(&current);
2828  affine.sx=draw_info->bounds.x2;
2829  affine.sy=draw_info->bounds.y2;
2830  affine.tx=draw_info->bounds.x1;
2831  affine.ty=draw_info->bounds.y1;
2832  break;
2833  }
2834  break;
2835  }
2836  if (LocaleCompare("circle",keyword) == 0)
2837  {
2838  primitive_type=CirclePrimitive;
2839  break;
2840  }
2841  if (LocaleCompare("color",keyword) == 0)
2842  {
2843  primitive_type=ColorPrimitive;
2844  break;
2845  }
2846  if (LocaleCompare("compliance",keyword) == 0)
2847  {
2848  /*
2849  MVG compliance associates a clipping mask with an image; SVG
2850  compliance associates a clipping mask with a graphics context.
2851  */
2852  (void) GetNextToken(q,&q,extent,token);
2853  graphic_context[n]->compliance=(ComplianceType) ParseCommandOption(
2854  MagickComplianceOptions,MagickFalse,token);
2855  break;
2856  }
2857  if (LocaleCompare("currentColor",keyword) == 0)
2858  {
2859  (void) GetNextToken(q,&q,extent,token);
2860  break;
2861  }
2862  status=MagickFalse;
2863  break;
2864  }
2865  case 'd':
2866  case 'D':
2867  {
2868  if (LocaleCompare("decorate",keyword) == 0)
2869  {
2870  ssize_t
2871  decorate;
2872 
2873  (void) GetNextToken(q,&q,extent,token);
2874  decorate=ParseCommandOption(MagickDecorateOptions,MagickFalse,
2875  token);
2876  if (decorate == -1)
2877  {
2878  status=MagickFalse;
2879  break;
2880  }
2881  graphic_context[n]->decorate=(DecorationType) decorate;
2882  break;
2883  }
2884  if (LocaleCompare("density",keyword) == 0)
2885  {
2886  (void) GetNextToken(q,&q,extent,token);
2887  (void) CloneString(&graphic_context[n]->density,token);
2888  break;
2889  }
2890  if (LocaleCompare("direction",keyword) == 0)
2891  {
2892  ssize_t
2893  direction;
2894 
2895  (void) GetNextToken(q,&q,extent,token);
2896  direction=ParseCommandOption(MagickDirectionOptions,MagickFalse,
2897  token);
2898  if (direction == -1)
2899  status=MagickFalse;
2900  else
2901  graphic_context[n]->direction=(DirectionType) direction;
2902  break;
2903  }
2904  status=MagickFalse;
2905  break;
2906  }
2907  case 'e':
2908  case 'E':
2909  {
2910  if (LocaleCompare("ellipse",keyword) == 0)
2911  {
2912  primitive_type=EllipsePrimitive;
2913  break;
2914  }
2915  if (LocaleCompare("encoding",keyword) == 0)
2916  {
2917  (void) GetNextToken(q,&q,extent,token);
2918  (void) CloneString(&graphic_context[n]->encoding,token);
2919  break;
2920  }
2921  status=MagickFalse;
2922  break;
2923  }
2924  case 'f':
2925  case 'F':
2926  {
2927  if (LocaleCompare("fill",keyword) == 0)
2928  {
2929  const char
2930  *mvg_class;
2931 
2932  (void) GetNextToken(q,&q,extent,token);
2933  if (graphic_context[n]->clip_path != MagickFalse)
2934  break;
2935  mvg_class=(const char *) GetValueFromSplayTree(macros,token);
2936  if (mvg_class != (const char *) NULL)
2937  {
2938  (void) DrawPatternPath(image,draw_info,mvg_class,
2939  &graphic_context[n]->fill_pattern);
2940  break;
2941  }
2942  (void) FormatLocaleString(pattern,MaxTextExtent,"%s",token);
2943  if (GetImageArtifact(image,pattern) != (const char *) NULL)
2944  {
2945  (void) DrawPatternPath(image,draw_info,token,
2946  &graphic_context[n]->fill_pattern);
2947  break;
2948  }
2949  status&=QueryColorDatabase(token,&graphic_context[n]->fill,
2950  &image->exception);
2951  if (graphic_context[n]->fill_opacity != (double) OpaqueOpacity)
2952  graphic_context[n]->fill.opacity=ClampToQuantum(
2953  graphic_context[n]->fill_opacity);
2954  break;
2955  }
2956  if (LocaleCompare("fill-opacity",keyword) == 0)
2957  {
2958  double
2959  opacity;
2960 
2961  (void) GetNextToken(q,&q,extent,token);
2962  if (graphic_context[n]->clip_path != MagickFalse)
2963  break;
2964  factor=strchr(token,'%') != (char *) NULL ? 0.01 : 1.0;
2965  opacity=MagickMin(MagickMax(factor*
2966  GetDrawValue(token,&next_token),0.0),1.0);
2967  if (token == next_token)
2968  ThrowPointExpectedException(image,token);
2969  if (graphic_context[n]->compliance == SVGCompliance)
2970  graphic_context[n]->fill_opacity*=(1.0-opacity);
2971  else
2972  graphic_context[n]->fill_opacity=((MagickRealType) QuantumRange-
2973  graphic_context[n]->fill_opacity)*(1.0-opacity);
2974  if (graphic_context[n]->fill.opacity != TransparentOpacity)
2975  graphic_context[n]->fill.opacity=(Quantum)
2976  graphic_context[n]->fill_opacity;
2977  else
2978  graphic_context[n]->fill.opacity=ClampToQuantum((MagickRealType)
2979  QuantumRange*(1.0-opacity));
2980  break;
2981  }
2982  if (LocaleCompare("fill-rule",keyword) == 0)
2983  {
2984  ssize_t
2985  fill_rule;
2986 
2987  (void) GetNextToken(q,&q,extent,token);
2988  fill_rule=ParseCommandOption(MagickFillRuleOptions,MagickFalse,
2989  token);
2990  if (fill_rule == -1)
2991  {
2992  status=MagickFalse;
2993  break;
2994  }
2995  graphic_context[n]->fill_rule=(FillRule) fill_rule;
2996  break;
2997  }
2998  if (LocaleCompare("font",keyword) == 0)
2999  {
3000  (void) GetNextToken(q,&q,extent,token);
3001  (void) CloneString(&graphic_context[n]->font,token);
3002  if (LocaleCompare("none",token) == 0)
3003  graphic_context[n]->font=(char *) RelinquishMagickMemory(
3004  graphic_context[n]->font);
3005  break;
3006  }
3007  if (LocaleCompare("font-family",keyword) == 0)
3008  {
3009  (void) GetNextToken(q,&q,extent,token);
3010  (void) CloneString(&graphic_context[n]->family,token);
3011  break;
3012  }
3013  if (LocaleCompare("font-size",keyword) == 0)
3014  {
3015  (void) GetNextToken(q,&q,extent,token);
3016  graphic_context[n]->pointsize=GetDrawValue(token,&next_token);
3017  if (token == next_token)
3018  ThrowPointExpectedException(image,token);
3019  break;
3020  }
3021  if (LocaleCompare("font-stretch",keyword) == 0)
3022  {
3023  ssize_t
3024  stretch;
3025 
3026  (void) GetNextToken(q,&q,extent,token);
3027  stretch=ParseCommandOption(MagickStretchOptions,MagickFalse,token);
3028  if (stretch == -1)
3029  {
3030  status=MagickFalse;
3031  break;
3032  }
3033  graphic_context[n]->stretch=(StretchType) stretch;
3034  break;
3035  }
3036  if (LocaleCompare("font-style",keyword) == 0)
3037  {
3038  ssize_t
3039  style;
3040 
3041  (void) GetNextToken(q,&q,extent,token);
3042  style=ParseCommandOption(MagickStyleOptions,MagickFalse,token);
3043  if (style == -1)
3044  {
3045  status=MagickFalse;
3046  break;
3047  }
3048  graphic_context[n]->style=(StyleType) style;
3049  break;
3050  }
3051  if (LocaleCompare("font-weight",keyword) == 0)
3052  {
3053  ssize_t
3054  weight;
3055 
3056  (void) GetNextToken(q,&q,extent,token);
3057  weight=ParseCommandOption(MagickWeightOptions,MagickFalse,token);
3058  if (weight == -1)
3059  weight=(ssize_t) StringToUnsignedLong(token);
3060  graphic_context[n]->weight=(size_t) weight;
3061  break;
3062  }
3063  status=MagickFalse;
3064  break;
3065  }
3066  case 'g':
3067  case 'G':
3068  {
3069  if (LocaleCompare("gradient-units",keyword) == 0)
3070  {
3071  (void) GetNextToken(q,&q,extent,token);
3072  break;
3073  }
3074  if (LocaleCompare("gravity",keyword) == 0)
3075  {
3076  ssize_t
3077  gravity;
3078 
3079  (void) GetNextToken(q,&q,extent,token);
3080  gravity=ParseCommandOption(MagickGravityOptions,MagickFalse,token);
3081  if (gravity == -1)
3082  {
3083  status=MagickFalse;
3084  break;
3085  }
3086  graphic_context[n]->gravity=(GravityType) gravity;
3087  break;
3088  }
3089  status=MagickFalse;
3090  break;
3091  }
3092  case 'i':
3093  case 'I':
3094  {
3095  if (LocaleCompare("image",keyword) == 0)
3096  {
3097  ssize_t
3098  compose;
3099 
3100  primitive_type=ImagePrimitive;
3101  (void) GetNextToken(q,&q,extent,token);
3102  compose=ParseCommandOption(MagickComposeOptions,MagickFalse,token);
3103  if (compose == -1)
3104  {
3105  status=MagickFalse;
3106  break;
3107  }
3108  graphic_context[n]->compose=(CompositeOperator) compose;
3109  break;
3110  }
3111  if (LocaleCompare("interline-spacing",keyword) == 0)
3112  {
3113  (void) GetNextToken(q,&q,extent,token);
3114  graphic_context[n]->interline_spacing=GetDrawValue(token,
3115  &next_token);
3116  if (token == next_token)
3117  ThrowPointExpectedException(image,token);
3118  break;
3119  }
3120  if (LocaleCompare("interword-spacing",keyword) == 0)
3121  {
3122  (void) GetNextToken(q,&q,extent,token);
3123  graphic_context[n]->interword_spacing=GetDrawValue(token,
3124  &next_token);
3125  if (token == next_token)
3126  ThrowPointExpectedException(image,token);
3127  break;
3128  }
3129  status=MagickFalse;
3130  break;
3131  }
3132  case 'k':
3133  case 'K':
3134  {
3135  if (LocaleCompare("kerning",keyword) == 0)
3136  {
3137  (void) GetNextToken(q,&q,extent,token);
3138  graphic_context[n]->kerning=GetDrawValue(token,&next_token);
3139  if (token == next_token)
3140  ThrowPointExpectedException(image,token);
3141  break;
3142  }
3143  status=MagickFalse;
3144  break;
3145  }
3146  case 'l':
3147  case 'L':
3148  {
3149  if (LocaleCompare("letter-spacing",keyword) == 0)
3150  {
3151  (void) GetNextToken(q,&q,extent,token);
3152  if (IsPoint(token) == MagickFalse)
3153  break;
3154  clone_info=CloneDrawInfo((ImageInfo *) NULL,graphic_context[n]);
3155  clone_info->text=AcquireString(" ");
3156  status&=GetTypeMetrics(image,clone_info,&metrics);
3157  graphic_context[n]->kerning=metrics.width*
3158  GetDrawValue(token,&next_token);
3159  clone_info=DestroyDrawInfo(clone_info);
3160  if (token == next_token)
3161  ThrowPointExpectedException(image,token);
3162  break;
3163  }
3164  if (LocaleCompare("line",keyword) == 0)
3165  {
3166  primitive_type=LinePrimitive;
3167  break;
3168  }
3169  status=MagickFalse;
3170  break;
3171  }
3172  case 'm':
3173  case 'M':
3174  {
3175  if (LocaleCompare("mask",keyword) == 0)
3176  {
3177  const char
3178  *mask_path;
3179 
3180  /*
3181  Take a node from within the MVG document, and duplicate it here.
3182  */
3183  (void) GetNextToken(q,&q,extent,token);
3184  mask_path=(const char *) GetValueFromSplayTree(macros,token);
3185  if (mask_path != (const char *) NULL)
3186  {
3187  if (graphic_context[n]->composite_mask != (Image *) NULL)
3188  graphic_context[n]->composite_mask=
3189  DestroyImage(graphic_context[n]->composite_mask);
3190  graphic_context[n]->composite_mask=DrawCompositeMask(image,
3191  graphic_context[n],token,mask_path,&image->exception);
3192  if (graphic_context[n]->compliance != SVGCompliance)
3193  status=SetImageMask(image,graphic_context[n]->composite_mask);
3194  }
3195  break;
3196  }
3197  if (LocaleCompare("matte",keyword) == 0)
3198  {
3199  primitive_type=MattePrimitive;
3200  break;
3201  }
3202  status=MagickFalse;
3203  break;
3204  }
3205  case 'o':
3206  case 'O':
3207  {
3208  if (LocaleCompare("offset",keyword) == 0)
3209  {
3210  (void) GetNextToken(q,&q,extent,token);
3211  break;
3212  }
3213  if (LocaleCompare("opacity",keyword) == 0)
3214  {
3215  double
3216  opacity;
3217 
3218  (void) GetNextToken(q,&q,extent,token);
3219  if (graphic_context[n]->clip_path != MagickFalse)
3220  break;
3221  factor=strchr(token,'%') != (char *) NULL ? 0.01 : 1.0;
3222  opacity=1.0-MagickMin(MagickMax(factor*
3223  GetDrawValue(token,&next_token),0.0),1.0);
3224  if (token == next_token)
3225  ThrowPointExpectedException(image,token);
3226  if (graphic_context[n]->compliance == SVGCompliance)
3227  {
3228  graphic_context[n]->fill_opacity*=opacity;
3229  graphic_context[n]->stroke_opacity*=opacity;
3230  }
3231  else
3232  {
3233  graphic_context[n]->fill_opacity=(double) QuantumRange*opacity;
3234  graphic_context[n]->stroke_opacity=(double) QuantumRange*
3235  opacity;
3236  }
3237  if (graphic_context[n]->fill.opacity != (double) TransparentOpacity)
3238  {
3239  graphic_context[n]->fill.opacity=
3240  graphic_context[n]->fill_opacity;
3241  graphic_context[n]->stroke.opacity=
3242  graphic_context[n]->stroke_opacity;
3243  }
3244  else
3245  {
3246  graphic_context[n]->fill.opacity=(MagickRealType)
3247  ClampToQuantum((double) QuantumRange*opacity);
3248  graphic_context[n]->stroke.opacity=(MagickRealType)
3249  ClampToQuantum((double) QuantumRange*opacity);
3250  }
3251  break;
3252  }
3253  status=MagickFalse;
3254  break;
3255  }
3256  case 'p':
3257  case 'P':
3258  {
3259  if (LocaleCompare("path",keyword) == 0)
3260  {
3261  primitive_type=PathPrimitive;
3262  break;
3263  }
3264  if (LocaleCompare("point",keyword) == 0)
3265  {
3266  primitive_type=PointPrimitive;
3267  break;
3268  }
3269  if (LocaleCompare("polyline",keyword) == 0)
3270  {
3271  primitive_type=PolylinePrimitive;
3272  break;
3273  }
3274  if (LocaleCompare("polygon",keyword) == 0)
3275  {
3276  primitive_type=PolygonPrimitive;
3277  break;
3278  }
3279  if (LocaleCompare("pop",keyword) == 0)
3280  {
3281  if (GetNextToken(q,&q,extent,token) < 1)
3282  break;
3283  if (LocaleCompare("class",token) == 0)
3284  break;
3285  if (LocaleCompare("clip-path",token) == 0)
3286  break;
3287  if (LocaleCompare("defs",token) == 0)
3288  {
3289  defsDepth--;
3290  graphic_context[n]->render=defsDepth > 0 ? MagickFalse :
3291  MagickTrue;
3292  break;
3293  }
3294  if (LocaleCompare("gradient",token) == 0)
3295  break;
3296  if (LocaleCompare("graphic-context",token) == 0)
3297  {
3298  if (n <= 0)
3299  {
3300  (void) ThrowMagickException(&image->exception,
3301  GetMagickModule(),DrawError,
3302  "UnbalancedGraphicContextPushPop","`%s'",token);
3303  status=MagickFalse;
3304  n=0;
3305  break;
3306  }
3307  if ((graphic_context[n]->clip_mask != (char *) NULL) &&
3308  (graphic_context[n]->compliance != SVGCompliance))
3309  if (LocaleCompare(graphic_context[n]->clip_mask,
3310  graphic_context[n-1]->clip_mask) != 0)
3311  status=SetImageClipMask(image,(Image *) NULL);
3312  graphic_context[n]=DestroyDrawInfo(graphic_context[n]);
3313  n--;
3314  break;
3315  }
3316  if (LocaleCompare("mask",token) == 0)
3317  break;
3318  if (LocaleCompare("pattern",token) == 0)
3319  break;
3320  if (LocaleCompare("symbol",token) == 0)
3321  {
3322  symbolDepth--;
3323  graphic_context[n]->render=symbolDepth > 0 ? MagickFalse :
3324  MagickTrue;
3325  break;
3326  }
3327  status=MagickFalse;
3328  break;
3329  }
3330  if (LocaleCompare("push",keyword) == 0)
3331  {
3332  if (GetNextToken(q,&q,extent,token) < 1)
3333  break;
3334  if (LocaleCompare("class",token) == 0)
3335  {
3336  /*
3337  Class context.
3338  */
3339  for (p=q; *q != '\0'; )
3340  {
3341  if (GetNextToken(q,&q,extent,token) < 1)
3342  break;
3343  if (LocaleCompare(token,"pop") != 0)
3344  continue;
3345  (void) GetNextToken(q,(const char **) NULL,extent,token);
3346  if (LocaleCompare(token,"class") != 0)
3347  continue;
3348  break;
3349  }
3350  (void) GetNextToken(q,&q,extent,token);
3351  break;
3352  }
3353  if (LocaleCompare("clip-path",token) == 0)
3354  {
3355  (void) GetNextToken(q,&q,extent,token);
3356  for (p=q; *q != '\0'; )
3357  {
3358  if (GetNextToken(q,&q,extent,token) < 1)
3359  break;
3360  if (LocaleCompare(token,"pop") != 0)
3361  continue;
3362  (void) GetNextToken(q,(const char **) NULL,extent,token);
3363  if (LocaleCompare(token,"clip-path") != 0)
3364  continue;
3365  break;
3366  }
3367  if ((q == (char *) NULL) || (p == (char *) NULL) || ((q-4) < p))
3368  {
3369  status=MagickFalse;
3370  break;
3371  }
3372  (void) GetNextToken(q,&q,extent,token);
3373  break;
3374  }
3375  if (LocaleCompare("defs",token) == 0)
3376  {
3377  defsDepth++;
3378  graphic_context[n]->render=defsDepth > 0 ? MagickFalse :
3379  MagickTrue;
3380  break;
3381  }
3382  if (LocaleCompare("gradient",token) == 0)
3383  {
3384  char
3385  key[2*MaxTextExtent],
3386  name[MaxTextExtent],
3387  type[MaxTextExtent];
3388 
3389  SegmentInfo
3390  segment;
3391 
3392  (void) GetNextToken(q,&q,extent,token);
3393  (void) CopyMagickString(name,token,MaxTextExtent);
3394  (void) GetNextToken(q,&q,extent,token);
3395  (void) CopyMagickString(type,token,MaxTextExtent);
3396  (void) GetNextToken(q,&q,extent,token);
3397  segment.x1=GetDrawValue(token,&next_token);
3398  if (token == next_token)
3399  ThrowPointExpectedException(image,token);
3400  (void) GetNextToken(q,&q,extent,token);
3401  if (*token == ',')
3402  (void) GetNextToken(q,&q,extent,token);
3403  segment.y1=GetDrawValue(token,&next_token);
3404  if (token == next_token)
3405  ThrowPointExpectedException(image,token);
3406  (void) GetNextToken(q,&q,extent,token);
3407  if (*token == ',')
3408  (void) GetNextToken(q,&q,extent,token);
3409  segment.x2=GetDrawValue(token,&next_token);
3410  if (token == next_token)
3411  ThrowPointExpectedException(image,token);
3412  (void) GetNextToken(q,&q,extent,token);
3413  if (*token == ',')
3414  (void) GetNextToken(q,&q,extent,token);
3415  segment.y2=GetDrawValue(token,&next_token);
3416  if (token == next_token)
3417  ThrowPointExpectedException(image,token);
3418  if (LocaleCompare(type,"radial") == 0)
3419  {
3420  (void) GetNextToken(q,&q,extent,token);
3421  if (*token == ',')
3422  (void) GetNextToken(q,&q,extent,token);
3423  }
3424  for (p=q; *q != '\0'; )
3425  {
3426  if (GetNextToken(q,&q,extent,token) < 1)
3427  break;
3428  if (LocaleCompare(token,"pop") != 0)
3429  continue;
3430  (void) GetNextToken(q,(const char **) NULL,extent,token);
3431  if (LocaleCompare(token,"gradient") != 0)
3432  continue;
3433  break;
3434  }
3435  if ((q == (char *) NULL) || (*q == '\0') ||
3436  (p == (char *) NULL) || ((q-4) < p))
3437  {
3438  status=MagickFalse;
3439  break;
3440  }
3441  (void) CopyMagickString(token,p,(size_t) (q-p-4+1));
3442  bounds.x1=graphic_context[n]->affine.sx*segment.x1+
3443  graphic_context[n]->affine.ry*segment.y1+
3444  graphic_context[n]->affine.tx;
3445  bounds.y1=graphic_context[n]->affine.rx*segment.x1+
3446  graphic_context[n]->affine.sy*segment.y1+
3447  graphic_context[n]->affine.ty;
3448  bounds.x2=graphic_context[n]->affine.sx*segment.x2+
3449  graphic_context[n]->affine.ry*segment.y2+
3450  graphic_context[n]->affine.tx;
3451  bounds.y2=graphic_context[n]->affine.rx*segment.x2+
3452  graphic_context[n]->affine.sy*segment.y2+
3453  graphic_context[n]->affine.ty;
3454  (void) FormatLocaleString(key,MaxTextExtent,"%s",name);
3455  (void) SetImageArtifact(image,key,token);
3456  (void) FormatLocaleString(key,MaxTextExtent,"%s-type",name);
3457  (void) SetImageArtifact(image,key,type);
3458  (void) FormatLocaleString(key,MaxTextExtent,"%s-geometry",name);
3459  (void) FormatLocaleString(geometry,MaxTextExtent,
3460  "%gx%g%+.15g%+.15g",
3461  MagickMax(fabs(bounds.x2-bounds.x1+1.0),1.0),
3462  MagickMax(fabs(bounds.y2-bounds.y1+1.0),1.0),
3463  bounds.x1,bounds.y1);
3464  (void) SetImageArtifact(image,key,geometry);
3465  (void) GetNextToken(q,&q,extent,token);
3466  break;
3467  }
3468  if (LocaleCompare("graphic-context",token) == 0)
3469  {
3470  n++;
3471  graphic_context=(DrawInfo **) ResizeQuantumMemory(
3472  graphic_context,(size_t) (n+1),sizeof(*graphic_context));
3473  if (graphic_context == (DrawInfo **) NULL)
3474  {
3475  (void) ThrowMagickException(&image->exception,
3476  GetMagickModule(),ResourceLimitError,
3477  "MemoryAllocationFailed","`%s'",image->filename);
3478  status=MagickFalse;
3479  break;
3480  }
3481  graphic_context[n]=CloneDrawInfo((ImageInfo *) NULL,
3482  graphic_context[n-1]);
3483  if (*q == '"')
3484  {
3485  (void) GetNextToken(q,&q,extent,token);
3486  (void) CloneString(&graphic_context[n]->id,token);
3487  }
3488  if (n > MagickMaxRecursionDepth)
3489  {
3490  (void) ThrowMagickException(&image->exception,
3491  GetMagickModule(),DrawError,"VectorGraphicsNestedTooDeeply",
3492  "`%s'",image->filename);
3493  status=MagickFalse;
3494  }
3495  break;
3496  }
3497  if (LocaleCompare("mask",token) == 0)
3498  {
3499  (void) GetNextToken(q,&q,extent,token);
3500  break;
3501  }
3502  if (LocaleCompare("pattern",token) == 0)
3503  {
3505  bounds;
3506 
3507  (void) GetNextToken(q,&q,extent,token);
3508  (void) CopyMagickString(name,token,MaxTextExtent);
3509  (void) GetNextToken(q,&q,extent,token);
3510  bounds.x=CastDoubleToLong(ceil(GetDrawValue(token,
3511  &next_token)-0.5));
3512  if (token == next_token)
3513  ThrowPointExpectedException(image,token);
3514  (void) GetNextToken(q,&q,extent,token);
3515  if (*token == ',')
3516  (void) GetNextToken(q,&q,extent,token);
3517  bounds.y=CastDoubleToLong(ceil(GetDrawValue(token,
3518  &next_token)-0.5));
3519  if (token == next_token)
3520  ThrowPointExpectedException(image,token);
3521  (void) GetNextToken(q,&q,extent,token);
3522  if (*token == ',')
3523  (void) GetNextToken(q,&q,extent,token);
3524  bounds.width=CastDoubleToUnsigned(GetDrawValue(token,
3525  &next_token)+0.5);
3526  if (token == next_token)
3527  ThrowPointExpectedException(image,token);
3528  (void) GetNextToken(q,&q,extent,token);
3529  if (*token == ',')
3530  (void) GetNextToken(q,&q,extent,token);
3531  bounds.height=CastDoubleToUnsigned(GetDrawValue(token,
3532  &next_token)+0.5);
3533  if (token == next_token)
3534  ThrowPointExpectedException(image,token);
3535  for (p=q; *q != '\0'; )
3536  {
3537  if (GetNextToken(q,&q,extent,token) < 1)
3538  break;
3539  if (LocaleCompare(token,"pop") != 0)
3540  continue;
3541  (void) GetNextToken(q,(const char **) NULL,extent,token);
3542  if (LocaleCompare(token,"pattern") != 0)
3543  continue;
3544  break;
3545  }
3546  if ((q == (char *) NULL) || (p == (char *) NULL) || ((q-4) < p))
3547  {
3548  status=MagickFalse;
3549  break;
3550  }
3551  (void) CopyMagickString(token,p,(size_t) (q-p-4+1));
3552  (void) FormatLocaleString(key,MaxTextExtent,"%s",name);
3553  (void) SetImageArtifact(image,key,token);
3554  (void) FormatLocaleString(key,MaxTextExtent,"%s-geometry",name);
3555  (void) FormatLocaleString(geometry,MaxTextExtent,
3556  "%.20gx%.20g%+.20g%+.20g",(double) bounds.width,(double)
3557  bounds.height,(double) bounds.x,(double) bounds.y);
3558  (void) SetImageArtifact(image,key,geometry);
3559  (void) GetNextToken(q,&q,extent,token);
3560  break;
3561  }
3562  if (LocaleCompare("symbol",token) == 0)
3563  {
3564  symbolDepth++;
3565  graphic_context[n]->render=symbolDepth > 0 ? MagickFalse :
3566  MagickTrue;
3567  break;
3568  }
3569  status=MagickFalse;
3570  break;
3571  }
3572  status=MagickFalse;
3573  break;
3574  }
3575  case 'r':
3576  case 'R':
3577  {
3578  if (LocaleCompare("rectangle",keyword) == 0)
3579  {
3580  primitive_type=RectanglePrimitive;
3581  break;
3582  }
3583  if (LocaleCompare("rotate",keyword) == 0)
3584  {
3585  (void) GetNextToken(q,&q,extent,token);
3586  angle=GetDrawValue(token,&next_token);
3587  if (token == next_token)
3588  ThrowPointExpectedException(image,token);
3589  affine.sx=cos(DegreesToRadians(fmod((double) angle,360.0)));
3590  affine.rx=sin(DegreesToRadians(fmod((double) angle,360.0)));
3591  affine.ry=(-sin(DegreesToRadians(fmod((double) angle,360.0))));
3592  affine.sy=cos(DegreesToRadians(fmod((double) angle,360.0)));
3593  break;
3594  }
3595  if (LocaleCompare("roundRectangle",keyword) == 0)
3596  {
3597  primitive_type=RoundRectanglePrimitive;
3598  break;
3599  }
3600  status=MagickFalse;
3601  break;
3602  }
3603  case 's':
3604  case 'S':
3605  {
3606  if (LocaleCompare("scale",keyword) == 0)
3607  {
3608  (void) GetNextToken(q,&q,extent,token);
3609  affine.sx=GetDrawValue(token,&next_token);
3610  if (token == next_token)
3611  ThrowPointExpectedException(image,token);
3612  (void) GetNextToken(q,&q,extent,token);
3613  if (*token == ',')
3614  (void) GetNextToken(q,&q,extent,token);
3615  affine.sy=GetDrawValue(token,&next_token);
3616  if (token == next_token)
3617  ThrowPointExpectedException(image,token);
3618  break;
3619  }
3620  if (LocaleCompare("skewX",keyword) == 0)
3621  {
3622  (void) GetNextToken(q,&q,extent,token);
3623  angle=GetDrawValue(token,&next_token);
3624  if (token == next_token)
3625  ThrowPointExpectedException(image,token);
3626  affine.ry=sin(DegreesToRadians(angle));
3627  break;
3628  }
3629  if (LocaleCompare("skewY",keyword) == 0)
3630  {
3631  (void) GetNextToken(q,&q,extent,token);
3632  angle=GetDrawValue(token,&next_token);
3633  if (token == next_token)
3634  ThrowPointExpectedException(image,token);
3635  affine.rx=(-tan(DegreesToRadians(angle)/2.0));
3636  break;
3637  }
3638  if (LocaleCompare("stop-color",keyword) == 0)
3639  {
3640  GradientType
3641  type;
3642 
3643  PixelPacket
3644  stop_color;
3645 
3646  (void) GetNextToken(q,&q,extent,token);
3647  status&=QueryColorDatabase(token,&stop_color,&image->exception);
3648  type=LinearGradient;
3649  if (draw_info->gradient.type == RadialGradient)
3650  type=RadialGradient;
3651  (void) GradientImage(image,type,PadSpread,&start_color,&stop_color);
3652  start_color=stop_color;
3653  (void) GetNextToken(q,&q,extent,token);
3654  break;
3655  }
3656  if (LocaleCompare("stroke",keyword) == 0)
3657  {
3658  const char
3659  *mvg_class;
3660 
3661  (void) GetNextToken(q,&q,extent,token);
3662  if (graphic_context[n]->clip_path != MagickFalse)
3663  break;
3664  mvg_class=(const char *) GetValueFromSplayTree(macros,token);
3665  if (mvg_class != (const char *) NULL)
3666  {
3667  (void) DrawPatternPath(image,draw_info,mvg_class,
3668  &graphic_context[n]->stroke_pattern);
3669  break;
3670  }
3671  (void) FormatLocaleString(pattern,MaxTextExtent,"%s",token);
3672  if (GetImageArtifact(image,pattern) != (const char *) NULL)
3673  {
3674  (void) DrawPatternPath(image,draw_info,token,
3675  &graphic_context[n]->stroke_pattern);
3676  break;
3677  }
3678  status&=QueryColorDatabase(token,&graphic_context[n]->stroke,
3679  &image->exception);
3680  if (graphic_context[n]->stroke_opacity != (MagickRealType) OpaqueOpacity)
3681  graphic_context[n]->stroke.opacity=ClampToQuantum(
3682  graphic_context[n]->stroke_opacity);
3683  break;
3684  }
3685  if (LocaleCompare("stroke-antialias",keyword) == 0)
3686  {
3687  (void) GetNextToken(q,&q,extent,token);
3688  graphic_context[n]->stroke_antialias=StringToLong(token) != 0 ?
3689  MagickTrue : MagickFalse;
3690  break;
3691  }
3692  if (LocaleCompare("stroke-dasharray",keyword) == 0)
3693  {
3694  if (graphic_context[n]->dash_pattern != (double *) NULL)
3695  graphic_context[n]->dash_pattern=(double *)
3696  RelinquishMagickMemory(graphic_context[n]->dash_pattern);
3697  if (IsPoint(q) != MagickFalse)
3698  {
3699  const char
3700  *p;
3701 
3702  p=q;
3703  (void) GetNextToken(p,&p,extent,token);
3704  if (*token == ',')
3705  (void) GetNextToken(p,&p,extent,token);
3706  for (x=0; IsPoint(token) != MagickFalse; x++)
3707  {
3708  (void) GetNextToken(p,&p,extent,token);
3709  if (*token == ',')
3710  (void) GetNextToken(p,&p,extent,token);
3711  }
3712  graphic_context[n]->dash_pattern=(double *)
3713  AcquireQuantumMemory((size_t) (2*x+2),
3714  sizeof(*graphic_context[n]->dash_pattern));
3715  if (graphic_context[n]->dash_pattern == (double *) NULL)
3716  {
3717  (void) ThrowMagickException(&image->exception,
3718  GetMagickModule(),ResourceLimitError,
3719  "MemoryAllocationFailed","`%s'",image->filename);
3720  status=MagickFalse;
3721  break;
3722  }
3723  (void) memset(graphic_context[n]->dash_pattern,0,(size_t)
3724  (2*x+2)*sizeof(*graphic_context[n]->dash_pattern));
3725  for (j=0; j < x; j++)
3726  {
3727  (void) GetNextToken(q,&q,extent,token);
3728  if (*token == ',')
3729  (void) GetNextToken(q,&q,extent,token);
3730  graphic_context[n]->dash_pattern[j]=GetDrawValue(token,
3731  &next_token);
3732  if (token == next_token)
3733  ThrowPointExpectedException(image,token);
3734  if (graphic_context[n]->dash_pattern[j] <= 0.0)
3735  status=MagickFalse;
3736  }
3737  if ((x & 0x01) != 0)
3738  for ( ; j < (2*x); j++)
3739  graphic_context[n]->dash_pattern[j]=
3740  graphic_context[n]->dash_pattern[j-x];
3741  graphic_context[n]->dash_pattern[j]=0.0;
3742  break;
3743  }
3744  (void) GetNextToken(q,&q,extent,token);
3745  break;
3746  }
3747  if (LocaleCompare("stroke-dashoffset",keyword) == 0)
3748  {
3749  (void) GetNextToken(q,&q,extent,token);
3750  graphic_context[n]->dash_offset=GetDrawValue(token,&next_token);
3751  if (token == next_token)
3752  ThrowPointExpectedException(image,token);
3753  break;
3754  }
3755  if (LocaleCompare("stroke-linecap",keyword) == 0)
3756  {
3757  ssize_t
3758  linecap;
3759 
3760  (void) GetNextToken(q,&q,extent,token);
3761  linecap=ParseCommandOption(MagickLineCapOptions,MagickFalse,token);
3762  if (linecap == -1)
3763  {
3764  status=MagickFalse;
3765  break;
3766  }
3767  graphic_context[n]->linecap=(LineCap) linecap;
3768  break;
3769  }
3770  if (LocaleCompare("stroke-linejoin",keyword) == 0)
3771  {
3772  ssize_t
3773  linejoin;
3774 
3775  (void) GetNextToken(q,&q,extent,token);
3776  linejoin=ParseCommandOption(MagickLineJoinOptions,MagickFalse,
3777  token);
3778  if (linejoin == -1)
3779  {
3780  status=MagickFalse;
3781  break;
3782  }
3783  graphic_context[n]->linejoin=(LineJoin) linejoin;
3784  break;
3785  }
3786  if (LocaleCompare("stroke-miterlimit",keyword) == 0)
3787  {
3788  (void) GetNextToken(q,&q,extent,token);
3789  graphic_context[n]->miterlimit=StringToUnsignedLong(token);
3790  break;
3791  }
3792  if (LocaleCompare("stroke-opacity",keyword) == 0)
3793  {
3794  double
3795  opacity;
3796 
3797  (void) GetNextToken(q,&q,extent,token);
3798  if (graphic_context[n]->clip_path != MagickFalse)
3799  break;
3800  factor=strchr(token,'%') != (char *) NULL ? 0.01 : 1.0;
3801  opacity=MagickMin(MagickMax(factor*
3802  GetDrawValue(token,&next_token),0.0),1.0);
3803  if (token == next_token)
3804  ThrowPointExpectedException(image,token);
3805  if (graphic_context[n]->compliance == SVGCompliance)
3806  graphic_context[n]->stroke_opacity*=(1.0-opacity);
3807  else
3808  graphic_context[n]->stroke_opacity=((MagickRealType) QuantumRange-
3809  graphic_context[n]->stroke_opacity)*(1.0-opacity);
3810  if (graphic_context[n]->stroke.opacity != TransparentOpacity)
3811  graphic_context[n]->stroke.opacity=(Quantum)
3812  graphic_context[n]->stroke_opacity;
3813  else
3814  graphic_context[n]->stroke.opacity=ClampToQuantum(
3815  (MagickRealType) QuantumRange*opacity);
3816  break;
3817  }
3818  if (LocaleCompare("stroke-width",keyword) == 0)
3819  {
3820  (void) GetNextToken(q,&q,extent,token);
3821  if (graphic_context[n]->clip_path != MagickFalse)
3822  break;
3823  graphic_context[n]->stroke_width=GetDrawValue(token,&next_token);
3824  if ((token == next_token) ||
3825  (graphic_context[n]->stroke_width < 0.0))
3826  ThrowPointExpectedException(image,token);
3827  break;
3828  }
3829  status=MagickFalse;
3830  break;
3831  }
3832  case 't':
3833  case 'T':
3834  {
3835  if (LocaleCompare("text",keyword) == 0)
3836  {
3837  primitive_type=TextPrimitive;
3838  cursor=0.0;
3839  break;
3840  }
3841  if (LocaleCompare("text-align",keyword) == 0)
3842  {
3843  ssize_t
3844  align;
3845 
3846  (void) GetNextToken(q,&q,extent,token);
3847  align=ParseCommandOption(MagickAlignOptions,MagickFalse,token);
3848  if (align == -1)
3849  {
3850  status=MagickFalse;
3851  break;
3852  }
3853  graphic_context[n]->align=(AlignType) align;
3854  break;
3855  }
3856  if (LocaleCompare("text-anchor",keyword) == 0)
3857  {
3858  ssize_t
3859  align;
3860 
3861  (void) GetNextToken(q,&q,extent,token);
3862  align=ParseCommandOption(MagickAlignOptions,MagickFalse,token);
3863  if (align == -1)
3864  {
3865  status=MagickFalse;
3866  break;
3867  }
3868  graphic_context[n]->align=(AlignType) align;
3869  break;
3870  }
3871  if (LocaleCompare("text-antialias",keyword) == 0)
3872  {
3873  (void) GetNextToken(q,&q,extent,token);
3874  graphic_context[n]->text_antialias=StringToLong(token) != 0 ?
3875  MagickTrue : MagickFalse;
3876  break;
3877  }
3878  if (LocaleCompare("text-undercolor",keyword) == 0)
3879  {
3880  (void) GetNextToken(q,&q,extent,token);
3881  status&=QueryColorDatabase(token,&graphic_context[n]->undercolor,
3882  &image->exception);
3883  break;
3884  }
3885  if (LocaleCompare("translate",keyword) == 0)
3886  {
3887  (void) GetNextToken(q,&q,extent,token);
3888  affine.tx=GetDrawValue(token,&next_token);
3889  if (token == next_token)
3890  ThrowPointExpectedException(image,token);
3891  (void) GetNextToken(q,&q,extent,token);
3892  if (*token == ',')
3893  (void) GetNextToken(q,&q,extent,token);
3894  affine.ty=GetDrawValue(token,&next_token);
3895  if (token == next_token)
3896  ThrowPointExpectedException(image,token);
3897  break;
3898  }
3899  status=MagickFalse;
3900  break;
3901  }
3902  case 'u':
3903  case 'U':
3904  {
3905  if (LocaleCompare("use",keyword) == 0)
3906  {
3907  const char
3908  *use;
3909 
3910  /*
3911  Get a macro from the MVG document, and "use" it here.
3912  */
3913  (void) GetNextToken(q,&q,extent,token);
3914  use=(const char *) GetValueFromSplayTree(macros,token);
3915  if (use != (const char *) NULL)
3916  {
3917  clone_info=CloneDrawInfo((ImageInfo *) NULL,graphic_context[n]);
3918  (void) CloneString(&clone_info->primitive,use);
3919  status=RenderMVGContent(image,clone_info,depth+1);
3920  clone_info=DestroyDrawInfo(clone_info);
3921  }
3922  break;
3923  }
3924  status=MagickFalse;
3925  break;
3926  }
3927  case 'v':
3928  case 'V':
3929  {
3930  if (LocaleCompare("viewbox",keyword) == 0)
3931  {
3932  (void) GetNextToken(q,&q,extent,token);
3933  graphic_context[n]->viewbox.x=CastDoubleToLong(ceil(
3934  GetDrawValue(token,&next_token)-0.5));
3935  if (token == next_token)
3936  ThrowPointExpectedException(image,token);
3937  (void) GetNextToken(q,&q,extent,token);
3938  if (*token == ',')
3939  (void) GetNextToken(q,&q,extent,token);
3940  graphic_context[n]->viewbox.y=CastDoubleToLong(ceil(
3941  GetDrawValue(token,&next_token)-0.5));
3942  if (token == next_token)
3943  ThrowPointExpectedException(image,token);
3944  (void) GetNextToken(q,&q,extent,token);
3945  if (*token == ',')
3946  (void) GetNextToken(q,&q,extent,token);
3947  graphic_context[n]->viewbox.width=CastDoubleToUnsigned(
3948  GetDrawValue(token,&next_token)+0.5);
3949  if (token == next_token)
3950  ThrowPointExpectedException(image,token);
3951  (void) GetNextToken(q,&q,extent,token);
3952  if (*token == ',')
3953  (void) GetNextToken(q,&q,extent,token);
3954  graphic_context[n]->viewbox.height=CastDoubleToUnsigned(
3955  GetDrawValue(token,&next_token)+0.5);
3956  if (token == next_token)
3957  ThrowPointExpectedException(image,token);
3958  break;
3959  }
3960  status=MagickFalse;
3961  break;
3962  }
3963  case 'w':
3964  case 'W':
3965  {
3966  if (LocaleCompare("word-spacing",keyword) == 0)
3967  {
3968  (void) GetNextToken(q,&q,extent,token);
3969  graphic_context[n]->interword_spacing=GetDrawValue(token,
3970  &next_token);
3971  if (token == next_token)
3972  ThrowPointExpectedException(image,token);
3973  break;
3974  }
3975  status=MagickFalse;
3976  break;
3977  }
3978  default:
3979  {
3980  status=MagickFalse;
3981  break;
3982  }
3983  }
3984  if (status == MagickFalse)
3985  break;
3986  if ((fabs(affine.sx-1.0) >= MagickEpsilon) ||
3987  (fabs(affine.rx) >= MagickEpsilon) || (fabs(affine.ry) >= MagickEpsilon) ||
3988  (fabs(affine.sy-1.0) >= MagickEpsilon) ||
3989  (fabs(affine.tx) >= MagickEpsilon) || (fabs(affine.ty) >= MagickEpsilon))
3990  {
3991  graphic_context[n]->affine.sx=current.sx*affine.sx+current.ry*affine.rx;
3992  graphic_context[n]->affine.rx=current.rx*affine.sx+current.sy*affine.rx;
3993  graphic_context[n]->affine.ry=current.sx*affine.ry+current.ry*affine.sy;
3994  graphic_context[n]->affine.sy=current.rx*affine.ry+current.sy*affine.sy;
3995  graphic_context[n]->affine.tx=current.sx*affine.tx+current.ry*affine.ty+
3996  current.tx;
3997  graphic_context[n]->affine.ty=current.rx*affine.tx+current.sy*affine.ty+
3998  current.ty;
3999  }
4000  if (primitive_type == UndefinedPrimitive)
4001  {
4002  if ((draw_info->debug != MagickFalse) && (q > p))
4003  (void) LogMagickEvent(DrawEvent,GetMagickModule()," %.*s",(int)
4004  (q-p-1),p);
4005  continue;
4006  }
4007  /*
4008  Parse the primitive attributes.
4009  */
4010  for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
4011  if (primitive_info[i].text != (char *) NULL)
4012  primitive_info[i].text=DestroyString(primitive_info[i].text);
4013  i=0;
4014  mvg_info.offset=i;
4015  j=0;
4016  primitive_info[0].point.x=0.0;
4017  primitive_info[0].point.y=0.0;
4018  primitive_info[0].coordinates=0;
4019  primitive_info[0].method=FloodfillMethod;
4020  primitive_info[0].closed_subpath=MagickFalse;
4021  for (x=0; *q != '\0'; x++)
4022  {
4023  /*
4024  Define points.
4025  */
4026  if (IsPoint(q) == MagickFalse)
4027  break;
4028  (void) GetNextToken(q,&q,extent,token);
4029  point.x=GetDrawValue(token,&next_token);
4030  if (token == next_token)
4031  ThrowPointExpectedException(image,token);
4032  (void) GetNextToken(q,&q,extent,token);
4033  if (*token == ',')
4034  (void) GetNextToken(q,&q,extent,token);
4035  point.y=GetDrawValue(token,&next_token);
4036  if (token == next_token)
4037  ThrowPointExpectedException(image,token);
4038  (void) GetNextToken(q,(const char **) NULL,extent,token);
4039  if (*token == ',')
4040  (void) GetNextToken(q,&q,extent,token);
4041  primitive_info[i].primitive=primitive_type;
4042  primitive_info[i].point=point;
4043  primitive_info[i].coordinates=0;
4044  primitive_info[i].method=FloodfillMethod;
4045  primitive_info[i].closed_subpath=MagickFalse;
4046  i++;
4047  mvg_info.offset=i;
4048  if (i < (ssize_t) number_points)
4049  continue;
4050  status&=CheckPrimitiveExtent(&mvg_info,(double) number_points);
4051  primitive_info=(*mvg_info.primitive_info);
4052  }
4053  if (status == MagickFalse)
4054  break;
4055  if (primitive_info[j].text != (char *) NULL)
4056  primitive_info[j].text=DestroyString(primitive_info[j].text);
4057  primitive_info[j].primitive=primitive_type;
4058  primitive_info[j].coordinates=(size_t) x;
4059  primitive_info[j].method=FloodfillMethod;
4060  primitive_info[j].closed_subpath=MagickFalse;
4061  /*
4062  Circumscribe primitive within a circle.
4063  */
4064  bounds.x1=primitive_info[j].point.x;
4065  bounds.y1=primitive_info[j].point.y;
4066  bounds.x2=primitive_info[j].point.x;
4067  bounds.y2=primitive_info[j].point.y;
4068  for (k=1; k < (ssize_t) primitive_info[j].coordinates; k++)
4069  {
4070  point=primitive_info[j+k].point;
4071  if (point.x < bounds.x1)
4072  bounds.x1=point.x;
4073  if (point.y < bounds.y1)
4074  bounds.y1=point.y;
4075  if (point.x > bounds.x2)
4076  bounds.x2=point.x;
4077  if (point.y > bounds.y2)
4078  bounds.y2=point.y;
4079  }
4080  /*
4081  Speculate how many points our primitive might consume.
4082  */
4083  coordinates=(double) primitive_info[j].coordinates;
4084  switch (primitive_type)
4085  {
4086  case RectanglePrimitive:
4087  {
4088  coordinates*=5.0;
4089  break;
4090  }
4091  case RoundRectanglePrimitive:
4092  {
4093  double
4094  alpha,
4095  beta,
4096  radius;
4097 
4098  alpha=bounds.x2-bounds.x1;
4099  beta=bounds.y2-bounds.y1;
4100  radius=hypot(alpha,beta);
4101  coordinates*=5.0;
4102  coordinates+=2.0*((size_t) ceil((double) MagickPI*radius))+6.0*
4103  BezierQuantum+360.0;
4104  break;
4105  }
4106  case BezierPrimitive:
4107  {
4108  coordinates=(BezierQuantum*(double) primitive_info[j].coordinates);
4109  break;
4110  }
4111  case PathPrimitive:
4112  {
4113  char
4114  *s,
4115  *t;
4116 
4117  (void) GetNextToken(q,&q,extent,token);
4118  coordinates=1.0;
4119  t=token;
4120  for (s=token; *s != '\0'; s=t)
4121  {
4122  double
4123  value;
4124 
4125  value=GetDrawValue(s,&t);
4126  (void) value;
4127  if (s == t)
4128  {
4129  t++;
4130  continue;
4131  }
4132  coordinates++;
4133  }
4134  for (s=token; *s != '\0'; s++)
4135  if (strspn(s,"AaCcQqSsTt") != 0)
4136  coordinates+=(20.0*BezierQuantum)+360.0;
4137  break;
4138  }
4139  default:
4140  break;
4141  }
4142  if (status == MagickFalse)
4143  break;
4144  if (((size_t) (i+coordinates)) >= number_points)
4145  {
4146  /*
4147  Resize based on speculative points required by primitive.
4148  */
4149  number_points+=coordinates+1;
4150  if (number_points < (size_t) coordinates)
4151  {
4152  (void) ThrowMagickException(&image->exception,GetMagickModule(),
4153  ResourceLimitError,"MemoryAllocationFailed","`%s'",
4154  image->filename);
4155  status=MagickFalse;
4156  break;
4157  }
4158  mvg_info.offset=i;
4159  status&=CheckPrimitiveExtent(&mvg_info,(double) number_points);
4160  primitive_info=(*mvg_info.primitive_info);
4161  }
4162  status&=CheckPrimitiveExtent(&mvg_info,PrimitiveExtentPad);
4163  primitive_info=(*mvg_info.primitive_info);
4164  if (status == MagickFalse)
4165  break;
4166  mvg_info.offset=j;
4167  switch (primitive_type)
4168  {
4169  case PointPrimitive:
4170  default:
4171  {
4172  if (primitive_info[j].coordinates != 1)
4173  {
4174  status=MagickFalse;
4175  break;
4176  }
4177  status&=TracePoint(primitive_info+j,primitive_info[j].point);
4178  primitive_info=(*mvg_info.primitive_info);
4179  i=(ssize_t) (j+primitive_info[j].coordinates);
4180  break;
4181  }
4182  case LinePrimitive:
4183  {
4184  if (primitive_info[j].coordinates != 2)
4185  {
4186  status=MagickFalse;
4187  break;
4188  }
4189  status&=TraceLine(primitive_info+j,primitive_info[j].point,
4190  primitive_info[j+1].point);
4191  primitive_info=(*mvg_info.primitive_info);
4192  i=(ssize_t) (j+primitive_info[j].coordinates);
4193  break;
4194  }
4195  case RectanglePrimitive:
4196  {
4197  if (primitive_info[j].coordinates != 2)
4198  {
4199  status=MagickFalse;
4200  break;
4201  }
4202  status&=TraceRectangle(primitive_info+j,primitive_info[j].point,
4203  primitive_info[j+1].point);
4204  primitive_info=(*mvg_info.primitive_info);
4205  i=(ssize_t) (j+primitive_info[j].coordinates);
4206  break;
4207  }
4208  case RoundRectanglePrimitive:
4209  {
4210  if (primitive_info[j].coordinates != 3)
4211  {
4212  status=MagickFalse;
4213  break;
4214  }
4215  if ((primitive_info[j+2].point.x < 0.0) ||
4216  (primitive_info[j+2].point.y < 0.0))
4217  {
4218  status=MagickFalse;
4219  break;
4220  }
4221  if ((primitive_info[j+1].point.x-primitive_info[j].point.x) < 0.0)
4222  {
4223  status=MagickFalse;
4224  break;
4225  }
4226  if ((primitive_info[j+1].point.y-primitive_info[j].point.y) < 0.0)
4227  {
4228  status=MagickFalse;
4229  break;
4230  }
4231  status&=TraceRoundRectangle(&mvg_info,primitive_info[j].point,
4232  primitive_info[j+1].point,primitive_info[j+2].point);
4233  primitive_info=(*mvg_info.primitive_info);
4234  i=(ssize_t) (j+primitive_info[j].coordinates);
4235  break;
4236  }
4237  case ArcPrimitive:
4238  {
4239  if (primitive_info[j].coordinates != 3)
4240  {
4241  status=MagickFalse;
4242  break;
4243  }
4244  status&=TraceArc(&mvg_info,primitive_info[j].point,
4245  primitive_info[j+1].point,primitive_info[j+2].point);
4246  primitive_info=(*mvg_info.primitive_info);
4247  i=(ssize_t) (j+primitive_info[j].coordinates);
4248  break;
4249  }
4250  case EllipsePrimitive:
4251  {
4252  if (primitive_info[j].coordinates != 3)
4253  {
4254  status=MagickFalse;
4255  break;
4256  }
4257  if ((primitive_info[j+1].point.x < 0.0) ||
4258  (primitive_info[j+1].point.y < 0.0))
4259  {
4260  status=MagickFalse;
4261  break;
4262  }
4263  status&=TraceEllipse(&mvg_info,primitive_info[j].point,
4264  primitive_info[j+1].point,primitive_info[j+2].point);
4265  primitive_info=(*mvg_info.primitive_info);
4266  i=(ssize_t) (j+primitive_info[j].coordinates);
4267  break;
4268  }
4269  case CirclePrimitive:
4270  {
4271  if (primitive_info[j].coordinates != 2)
4272  {
4273  status=MagickFalse;
4274  break;
4275  }
4276  status&=TraceCircle(&mvg_info,primitive_info[j].point,
4277  primitive_info[j+1].point);
4278  primitive_info=(*mvg_info.primitive_info);
4279  i=(ssize_t) (j+primitive_info[j].coordinates);
4280  break;
4281  }
4282  case PolylinePrimitive:
4283  {
4284  if (primitive_info[j].coordinates < 1)
4285  {
4286  status=MagickFalse;
4287  break;
4288  }
4289  break;
4290  }
4291  case PolygonPrimitive:
4292  {
4293  if (primitive_info[j].coordinates < 3)
4294  {
4295  status=MagickFalse;
4296  break;
4297  }
4298  primitive_info[i]=primitive_info[j];
4299  primitive_info[i].coordinates=0;
4300  primitive_info[j].coordinates++;
4301  primitive_info[j].closed_subpath=MagickTrue;
4302  i++;
4303  break;
4304  }
4305  case BezierPrimitive:
4306  {
4307  if (primitive_info[j].coordinates < 3)
4308  {
4309  status=MagickFalse;
4310  break;
4311  }
4312  status&=TraceBezier(&mvg_info,primitive_info[j].coordinates);
4313  primitive_info=(*mvg_info.primitive_info);
4314  i=(ssize_t) (j+primitive_info[j].coordinates);
4315  break;
4316  }
4317  case PathPrimitive:
4318  {
4319  coordinates=(double) TracePath(image,&mvg_info,token);
4320  primitive_info=(*mvg_info.primitive_info);
4321  if (coordinates < 0.0)
4322  {
4323  status=MagickFalse;
4324  break;
4325  }
4326  i=(ssize_t) (j+coordinates);
4327  break;
4328  }
4329  case ColorPrimitive:
4330  case MattePrimitive:
4331  {
4332  ssize_t
4333  method;
4334 
4335  if (primitive_info[j].coordinates != 1)
4336  {
4337  status=MagickFalse;
4338  break;
4339  }
4340  (void) GetNextToken(q,&q,extent,token);
4341  method=ParseCommandOption(MagickMethodOptions,MagickFalse,token);
4342  if (method == -1)
4343  {
4344  status=MagickFalse;
4345  break;
4346  }
4347  primitive_info[j].method=(PaintMethod) method;
4348  break;
4349  }
4350  case TextPrimitive:
4351  {
4352  char
4353  geometry[MagickPathExtent];
4354 
4355  if (primitive_info[j].coordinates != 1)
4356  {
4357  status=MagickFalse;
4358  break;
4359  }
4360  if (*token != ',')
4361  (void) GetNextToken(q,&q,extent,token);
4362  (void) CloneString(&primitive_info[j].text,token);
4363  /*
4364  Compute text cursor offset.
4365  */
4366  clone_info=CloneDrawInfo((ImageInfo *) NULL,graphic_context[n]);
4367  if ((fabs(mvg_info.point.x-primitive_info->point.x) < MagickEpsilon) &&
4368  (fabs(mvg_info.point.y-primitive_info->point.y) < MagickEpsilon))
4369  {
4370  mvg_info.point=primitive_info->point;
4371  primitive_info->point.x+=cursor;
4372  }
4373  else
4374  {
4375  mvg_info.point=primitive_info->point;
4376  cursor=0.0;
4377  }
4378  (void) FormatLocaleString(geometry,MagickPathExtent,"%+f%+f",
4379  primitive_info->point.x,primitive_info->point.y);
4380  clone_info->render=MagickFalse;
4381  clone_info->text=AcquireString(token);
4382  status&=GetTypeMetrics(image,clone_info,&metrics);
4383  clone_info=DestroyDrawInfo(clone_info);
4384  cursor+=metrics.width;
4385  if (graphic_context[n]->compliance != SVGCompliance)
4386  cursor=0.0;
4387  break;
4388  }
4389  case ImagePrimitive:
4390  {
4391  if (primitive_info[j].coordinates != 2)
4392  {
4393  status=MagickFalse;
4394  break;
4395  }
4396  (void) GetNextToken(q,&q,extent,token);
4397  (void) CloneString(&primitive_info[j].text,token);
4398  break;
4399  }
4400  }
4401  mvg_info.offset=i;
4402  if (status == 0)
4403  break;
4404  primitive_info[i].primitive=UndefinedPrimitive;
4405  if ((draw_info->debug != MagickFalse) && (q > p))
4406  (void) LogMagickEvent(DrawEvent,GetMagickModule()," %.*s",(int) (q-p),p);
4407  /*
4408  Sanity check.
4409  */
4410  status&=CheckPrimitiveExtent(&mvg_info,ExpandAffine(
4411  &graphic_context[n]->affine));
4412  primitive_info=(*mvg_info.primitive_info);
4413  if (status == 0)
4414  break;
4415  status&=CheckPrimitiveExtent(&mvg_info,(double)
4416  graphic_context[n]->stroke_width);
4417  primitive_info=(*mvg_info.primitive_info);
4418  if (status == 0)
4419  break;
4420  if (i == 0)
4421  continue;
4422  /*
4423  Transform points.
4424  */
4425  for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
4426  {
4427  point=primitive_info[i].point;
4428  primitive_info[i].point.x=graphic_context[n]->affine.sx*point.x+
4429  graphic_context[n]->affine.ry*point.y+graphic_context[n]->affine.tx;
4430  primitive_info[i].point.y=graphic_context[n]->affine.rx*point.x+
4431  graphic_context[n]->affine.sy*point.y+graphic_context[n]->affine.ty;
4432  point=primitive_info[i].point;
4433  if (point.x < graphic_context[n]->bounds.x1)
4434  graphic_context[n]->bounds.x1=point.x;
4435  if (point.y < graphic_context[n]->bounds.y1)
4436  graphic_context[n]->bounds.y1=point.y;
4437  if (point.x > graphic_context[n]->bounds.x2)
4438  graphic_context[n]->bounds.x2=point.x;
4439  if (point.y > graphic_context[n]->bounds.y2)
4440  graphic_context[n]->bounds.y2=point.y;
4441  if (primitive_info[i].primitive == ImagePrimitive)
4442  break;
4443  if (i >= (ssize_t) number_points)
4444  ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
4445  }
4446  if (graphic_context[n]->render != MagickFalse)
4447  {
4448  if ((n != 0) && (graphic_context[n]->compliance != SVGCompliance) &&
4449  (graphic_context[n]->clip_mask != (char *) NULL) &&
4450  (LocaleCompare(graphic_context[n]->clip_mask,
4451  graphic_context[n-1]->clip_mask) != 0))
4452  {
4453  const char
4454  *clip_path;
4455 
4456  clip_path=(const char *) GetValueFromSplayTree(macros,
4457  graphic_context[n]->clip_mask);
4458  if (clip_path != (const char *) NULL)
4459  (void) SetImageArtifact(image,graphic_context[n]->clip_mask,
4460  clip_path);
4461  status&=DrawClipPath(image,graphic_context[n],
4462  graphic_context[n]->clip_mask);
4463  }
4464  status&=DrawPrimitive(image,graphic_context[n],primitive_info);
4465  }
4466  proceed=SetImageProgress(image,RenderImageTag,q-primitive,(MagickSizeType)
4467  primitive_extent);
4468  if (proceed == MagickFalse)
4469  break;
4470  if (status == 0)
4471  break;
4472  }
4473  if (draw_info->debug != MagickFalse)
4474  (void) LogMagickEvent(DrawEvent,GetMagickModule(),"end draw-image");
4475  /*
4476  Relinquish resources.
4477  */
4478  macros=DestroySplayTree(macros);
4479  token=DestroyString(token);
4480  if (primitive_info != (PrimitiveInfo *) NULL)
4481  {
4482  for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
4483  if (primitive_info[i].text != (char *) NULL)
4484  primitive_info[i].text=DestroyString(primitive_info[i].text);
4485  primitive_info=(PrimitiveInfo *) RelinquishMagickMemory(primitive_info);
4486  }
4487  primitive=DestroyString(primitive);
4488  for ( ; n >= 0; n--)
4489  graphic_context[n]=DestroyDrawInfo(graphic_context[n]);
4490  graphic_context=(DrawInfo **) RelinquishMagickMemory(graphic_context);
4491  if (status == MagickFalse)
4492  ThrowBinaryImageException(DrawError,
4493  "NonconformingDrawingPrimitiveDefinition",keyword);
4494  return(status != 0 ? MagickTrue : MagickFalse);
4495 }
4496 
4497 MagickExport MagickBooleanType DrawImage(Image *image,const DrawInfo *draw_info)
4498 {
4499  return(RenderMVGContent(image,draw_info,0));
4500 }
4501 ␌
4502 /*
4503 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4504 % %
4505 % %
4506 % %
4507 % D r a w P a t t e r n P a t h %
4508 % %
4509 % %
4510 % %
4511 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4512 %
4513 % DrawPatternPath() draws a pattern.
4514 %
4515 % The format of the DrawPatternPath method is:
4516 %
4517 % MagickBooleanType DrawPatternPath(Image *image,const DrawInfo *draw_info,
4518 % const char *name,Image **pattern)
4519 %
4520 % A description of each parameter follows:
4521 %
4522 % o image: the image.
4523 %
4524 % o draw_info: the draw info.
4525 %
4526 % o name: the pattern name.
4527 %
4528 % o image: the image.
4529 %
4530 */
4531 MagickExport MagickBooleanType DrawPatternPath(Image *image,
4532  const DrawInfo *draw_info,const char *name,Image **pattern)
4533 {
4534  char
4535  property[MaxTextExtent];
4536 
4537  const char
4538  *geometry,
4539  *path,
4540  *type;
4541 
4542  DrawInfo
4543  *clone_info;
4544 
4545  ImageInfo
4546  *image_info;
4547 
4548  MagickBooleanType
4549  status;
4550 
4551  assert(image != (Image *) NULL);
4552  assert(image->signature == MagickCoreSignature);
4553  assert(draw_info != (const DrawInfo *) NULL);
4554  if (IsEventLogging() != MagickFalse)
4555  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
4556  assert(name != (const char *) NULL);
4557  (void) FormatLocaleString(property,MaxTextExtent,"%s",name);
4558  path=GetImageArtifact(image,property);
4559  if (path == (const char *) NULL)
4560  return(MagickFalse);
4561  (void) FormatLocaleString(property,MaxTextExtent,"%s-geometry",name);
4562  geometry=GetImageArtifact(image,property);
4563  if (geometry == (const char *) NULL)
4564  return(MagickFalse);
4565  if ((*pattern) != (Image *) NULL)
4566  *pattern=DestroyImage(*pattern);
4567  image_info=AcquireImageInfo();
4568  image_info->size=AcquireString(geometry);
4569  *pattern=AcquireImage(image_info);
4570  image_info=DestroyImageInfo(image_info);
4571  (void) QueryColorDatabase("#00000000",&(*pattern)->background_color,
4572  &image->exception);
4573  (void) SetImageBackgroundColor(*pattern);
4574  if (draw_info->debug != MagickFalse)
4575  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
4576  "begin pattern-path %s %s",name,geometry);
4577  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
4578  if (clone_info->fill_pattern != (Image *) NULL)
4579  clone_info->fill_pattern=DestroyImage(clone_info->fill_pattern);
4580  if (clone_info->stroke_pattern != (Image *) NULL)
4581  clone_info->stroke_pattern=DestroyImage(clone_info->stroke_pattern);
4582  (void) FormatLocaleString(property,MaxTextExtent,"%s-type",name);
4583  type=GetImageArtifact(image,property);
4584  if (type != (const char *) NULL)
4585  clone_info->gradient.type=(GradientType) ParseCommandOption(
4586  MagickGradientOptions,MagickFalse,type);
4587  (void) CloneString(&clone_info->primitive,path);
4588  status=RenderMVGContent(*pattern,clone_info,0);
4589  clone_info=DestroyDrawInfo(clone_info);
4590  if (draw_info->debug != MagickFalse)
4591  (void) LogMagickEvent(DrawEvent,GetMagickModule(),"end pattern-path");
4592  return(status);
4593 }
4594 ␌
4595 /*
4596 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4597 % %
4598 % %
4599 % %
4600 + D r a w P o l y g o n P r i m i t i v e %
4601 % %
4602 % %
4603 % %
4604 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
4605 %
4606 % DrawPolygonPrimitive() draws a polygon on the image.
4607 %
4608 % The format of the DrawPolygonPrimitive method is:
4609 %
4610 % MagickBooleanType DrawPolygonPrimitive(Image *image,
4611 % const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
4612 %
4613 % A description of each parameter follows:
4614 %
4615 % o image: the image.
4616 %
4617 % o draw_info: the draw info.
4618 %
4619 % o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
4620 %
4621 */
4622 
4623 static PolygonInfo **DestroyPolygonTLS(PolygonInfo **polygon_info)
4624 {
4625  ssize_t
4626  i;
4627 
4628  assert(polygon_info != (PolygonInfo **) NULL);
4629  for (i=0; i < (ssize_t) GetMagickResourceLimit(ThreadResource); i++)
4630  if (polygon_info[i] != (PolygonInfo *) NULL)
4631  polygon_info[i]=DestroyPolygonInfo(polygon_info[i]);
4632  polygon_info=(PolygonInfo **) RelinquishMagickMemory(polygon_info);
4633  return(polygon_info);
4634 }
4635 
4636 static PolygonInfo **AcquirePolygonTLS(const DrawInfo *draw_info,
4637  const PrimitiveInfo *primitive_info,ExceptionInfo *exception)
4638 {
4639  PathInfo
4640  *magick_restrict path_info;
4641 
4642  PolygonInfo
4643  **polygon_info;
4644 
4645  size_t
4646  number_threads;
4647 
4648  number_threads=(size_t) GetMagickResourceLimit(ThreadResource);
4649  polygon_info=(PolygonInfo **) AcquireQuantumMemory(number_threads,
4650  sizeof(*polygon_info));
4651  if (polygon_info == (PolygonInfo **) NULL)
4652  {
4653  (void) ThrowMagickException(exception,GetMagickModule(),
4654  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
4655  return((PolygonInfo **) NULL);
4656  }
4657  (void) memset(polygon_info,0,number_threads*sizeof(*polygon_info));
4658  path_info=ConvertPrimitiveToPath(draw_info,primitive_info,exception);
4659  if (path_info == (PathInfo *) NULL)
4660  return(DestroyPolygonTLS(polygon_info));
4661  polygon_info[0]=ConvertPathToPolygon(path_info,exception);
4662  if (polygon_info[0] == (PolygonInfo *) NULL)
4663  {
4664  (void) ThrowMagickException(exception,GetMagickModule(),
4665  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
4666  return(DestroyPolygonTLS(polygon_info));
4667  }
4668  path_info=(PathInfo *) RelinquishMagickMemory(path_info);
4669  return(polygon_info);
4670 }
4671 
4672 static MagickBooleanType AcquirePolygonEdgesTLS(PolygonInfo **polygon_info,
4673  const size_t number_threads,ExceptionInfo *exception)
4674 {
4675  ssize_t
4676  i;
4677 
4678  for (i=1; i < (ssize_t) number_threads; i++)
4679  {
4680  EdgeInfo
4681  *edge_info;
4682 
4683  ssize_t
4684  j;
4685 
4686  polygon_info[i]=(PolygonInfo *) AcquireMagickMemory(
4687  sizeof(*polygon_info[i]));
4688  if (polygon_info[i] == (PolygonInfo *) NULL)
4689  {
4690  (void) ThrowMagickException(exception,GetMagickModule(),
4691  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
4692  return(MagickFalse);
4693  }
4694  polygon_info[i]->number_edges=0;
4695  edge_info=polygon_info[0]->edges;
4696  polygon_info[i]->edges=(EdgeInfo *) AcquireQuantumMemory(
4697  polygon_info[0]->number_edges,sizeof(*edge_info));
4698  if (polygon_info[i]->edges == (EdgeInfo *) NULL)
4699  {
4700  (void) ThrowMagickException(exception,GetMagickModule(),
4701  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
4702  return(MagickFalse);
4703  }
4704  (void) memcpy(polygon_info[i]->edges,edge_info,
4705  polygon_info[0]->number_edges*sizeof(*edge_info));
4706  for (j=0; j < (ssize_t) polygon_info[i]->number_edges; j++)
4707  polygon_info[i]->edges[j].points=(PointInfo *) NULL;
4708  polygon_info[i]->number_edges=polygon_info[0]->number_edges;
4709  for (j=0; j < (ssize_t) polygon_info[i]->number_edges; j++)
4710  {
4711  edge_info=polygon_info[0]->edges+j;
4712  polygon_info[i]->edges[j].points=(PointInfo *) AcquireQuantumMemory(
4713  edge_info->number_points,sizeof(*edge_info));
4714  if (polygon_info[i]->edges[j].points == (PointInfo *) NULL)
4715  {
4716  (void) ThrowMagickException(exception,GetMagickModule(),
4717  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
4718  return(MagickFalse);
4719  }
4720  (void) memcpy(polygon_info[i]->edges[j].points,edge_info->points,
4721  edge_info->number_points*sizeof(*edge_info->points));
4722  }
4723  }
4724  return(MagickTrue);
4725 }
4726 
4727 static size_t DestroyEdge(PolygonInfo *polygon_info,const ssize_t edge)
4728 {
4729  assert(edge < (ssize_t) polygon_info->number_edges);
4730  polygon_info->edges[edge].points=(PointInfo *) RelinquishMagickMemory(
4731  polygon_info->edges[edge].points);
4732  polygon_info->number_edges--;
4733  if (edge < (ssize_t) polygon_info->number_edges)
4734  (void) memmove(polygon_info->edges+edge,polygon_info->edges+edge+1,
4735  (size_t) (polygon_info->number_edges-edge)*sizeof(*polygon_info->edges));
4736  return(polygon_info->number_edges);
4737 }
4738 
4739 static double GetOpacityPixel(PolygonInfo *polygon_info,const double mid,
4740  const MagickBooleanType fill,const FillRule fill_rule,const ssize_t x,
4741  const ssize_t y,double *stroke_opacity)
4742 {
4743  double
4744  alpha,
4745  beta,
4746  distance,
4747  subpath_opacity;
4748 
4749  PointInfo
4750  delta;
4751 
4752  EdgeInfo
4753  *p;
4754 
4755  const PointInfo
4756  *q;
4757 
4758  ssize_t
4759  i;
4760 
4761  ssize_t
4762  j,
4763  winding_number;
4764 
4765  /*
4766  Compute fill & stroke opacity for this (x,y) point.
4767  */
4768  *stroke_opacity=0.0;
4769  subpath_opacity=0.0;
4770  p=polygon_info->edges;
4771  for (j=0; j < (ssize_t) polygon_info->number_edges; j++, p++)
4772  {
4773  if ((double) y <= (p->bounds.y1-mid-0.5))
4774  break;
4775  if ((double) y > (p->bounds.y2+mid+0.5))
4776  {
4777  p--;
4778  (void) DestroyEdge(polygon_info,j--);
4779  continue;
4780  }
4781  if (((double) x <= (p->bounds.x1-mid-0.5)) ||
4782  ((double) x > (p->bounds.x2+mid+0.5)))
4783  continue;
4784  i=(ssize_t) MagickMax((double) p->highwater,1.0);
4785  for ( ; i < (ssize_t) p->number_points; i++)
4786  {
4787  if ((double) y <= (p->points[i-1].y-mid-0.5))
4788  break;
4789  if ((double) y > (p->points[i].y+mid+0.5))
4790  continue;
4791  if (p->scanline != (double) y)
4792  {
4793  p->scanline=(double) y;
4794  p->highwater=(size_t) i;
4795  }
4796  /*
4797  Compute distance between a point and an edge.
4798  */
4799  q=p->points+i-1;
4800  delta.x=(q+1)->x-q->x;
4801  delta.y=(q+1)->y-q->y;
4802  beta=delta.x*(x-q->x)+delta.y*(y-q->y);
4803  if (beta <= 0.0)
4804  {
4805  delta.x=(double) x-q->x;
4806  delta.y=(double) y-q->y;
4807  distance=delta.x*delta.x+delta.y*delta.y;
4808  }
4809  else
4810  {
4811  alpha=delta.x*delta.x+delta.y*delta.y;
4812  if (beta >= alpha)
4813  {
4814  delta.x=(double) x-(q+1)->x;
4815  delta.y=(double) y-(q+1)->y;
4816  distance=delta.x*delta.x+delta.y*delta.y;
4817  }
4818  else
4819  {
4820  alpha=MagickSafeReciprocal(alpha);
4821  beta=delta.x*(y-q->y)-delta.y*(x-q->x);
4822  distance=alpha*beta*beta;
4823  }
4824  }
4825  /*
4826  Compute stroke & subpath opacity.
4827  */
4828  beta=0.0;
4829  if (p->ghostline == MagickFalse)
4830  {
4831  alpha=mid+0.5;
4832  if ((*stroke_opacity < 1.0) &&
4833  (distance <= ((alpha+0.25)*(alpha+0.25))))
4834  {
4835  alpha=mid-0.5;
4836  if (distance <= ((alpha+0.25)*(alpha+0.25)))
4837  *stroke_opacity=1.0;
4838  else
4839  {
4840  beta=1.0;
4841  if (fabs(distance-1.0) >= MagickEpsilon)
4842  beta=sqrt((double) distance);
4843  alpha=beta-mid-0.5;
4844  if (*stroke_opacity < ((alpha-0.25)*(alpha-0.25)))
4845  *stroke_opacity=(alpha-0.25)*(alpha-0.25);
4846  }
4847  }
4848  }
4849  if ((fill == MagickFalse) || (distance > 1.0) || (subpath_opacity >= 1.0))
4850  continue;
4851  if (distance <= 0.0)
4852  {
4853  subpath_opacity=1.0;
4854  continue;
4855  }
4856  if (distance > 1.0)
4857  continue;
4858  if (fabs(beta) < MagickEpsilon)
4859  {
4860  beta=1.0;
4861  if (fabs(distance-1.0) >= MagickEpsilon)
4862  beta=sqrt(distance);
4863  }
4864  alpha=beta-1.0;
4865  if (subpath_opacity < (alpha*alpha))
4866  subpath_opacity=alpha*alpha;
4867  }
4868  }
4869  /*
4870  Compute fill opacity.
4871  */
4872  if (fill == MagickFalse)
4873  return(0.0);
4874  if (subpath_opacity >= 1.0)
4875  return(1.0);
4876  /*
4877  Determine winding number.
4878  */
4879  winding_number=0;
4880  p=polygon_info->edges;
4881  for (j=0; j < (ssize_t) polygon_info->number_edges; j++, p++)
4882  {
4883  if ((double) y <= p->bounds.y1)
4884  break;
4885  if (((double) y > p->bounds.y2) || ((double) x <= p->bounds.x1))
4886  continue;
4887  if ((double) x > p->bounds.x2)
4888  {
4889  winding_number+=p->direction != 0 ? 1 : -1;
4890  continue;
4891  }
4892  i=(ssize_t) MagickMax((double) p->highwater,1.0);
4893  for ( ; i < (ssize_t) (p->number_points-1); i++)
4894  if ((double) y <= p->points[i].y)
4895  break;
4896  q=p->points+i-1;
4897  if ((((q+1)->x-q->x)*(y-q->y)) <= (((q+1)->y-q->y)*(x-q->x)))
4898  winding_number+=p->direction != 0 ? 1 : -1;
4899  }
4900  if (fill_rule != NonZeroRule)
4901  {
4902  if ((MagickAbsoluteValue(winding_number) & 0x01) != 0)
4903  return(1.0);
4904  }
4905  else
4906  if (MagickAbsoluteValue(winding_number) != 0)
4907  return(1.0);
4908  return(subpath_opacity);
4909 }
4910 
4911 static MagickBooleanType DrawPolygonPrimitive(Image *image,
4912  const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
4913 {
4914  typedef struct _ExtentInfo
4915  {
4916  ssize_t
4917  x1,
4918  y1,
4919  x2,
4920  y2;
4921  } ExtentInfo;
4922 
4923  CacheView
4924  *image_view;
4925 
4926  const char
4927  *artifact;
4928 
4929  double
4930  mid;
4931 
4933  *exception;
4934 
4935  ExtentInfo
4936  poly_extent;
4937 
4938  MagickBooleanType
4939  fill,
4940  status;
4941 
4942  PolygonInfo
4943  **magick_restrict polygon_info;
4944 
4945  EdgeInfo
4946  *p;
4947 
4948  SegmentInfo
4949  bounds;
4950 
4951  size_t
4952  number_threads = 1;
4953 
4954  ssize_t
4955  i,
4956  y;
4957 
4958  assert(image != (Image *) NULL);
4959  assert(image->signature == MagickCoreSignature);
4960  assert(draw_info != (DrawInfo *) NULL);
4961  assert(draw_info->signature == MagickCoreSignature);
4962  assert(primitive_info != (PrimitiveInfo *) NULL);
4963  if (IsEventLogging() != MagickFalse)
4964  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
4965  if (primitive_info->coordinates <= 1)
4966  return(MagickTrue);
4967  /*
4968  Compute bounding box.
4969  */
4970  polygon_info=AcquirePolygonTLS(draw_info,primitive_info,&image->exception);
4971  if (polygon_info == (PolygonInfo **) NULL)
4972  return(MagickFalse);
4973  if (draw_info->debug != MagickFalse)
4974  (void) LogMagickEvent(DrawEvent,GetMagickModule()," begin draw-polygon");
4975  fill=(primitive_info->method == FillToBorderMethod) ||
4976  (primitive_info->method == FloodfillMethod) ? MagickTrue : MagickFalse;
4977  mid=ExpandAffine(&draw_info->affine)*draw_info->stroke_width/2.0;
4978  bounds=polygon_info[0]->edges[0].bounds;
4979  artifact=GetImageArtifact(image,"draw:render-bounding-rectangles");
4980  if (IsStringTrue(artifact) != MagickFalse)
4981  (void) DrawBoundingRectangles(image,draw_info,polygon_info[0]);
4982  for (i=1; i < (ssize_t) polygon_info[0]->number_edges; i++)
4983  {
4984  p=polygon_info[0]->edges+i;
4985  if (p->bounds.x1 < bounds.x1)
4986  bounds.x1=p->bounds.x1;
4987  if (p->bounds.y1 < bounds.y1)
4988  bounds.y1=p->bounds.y1;
4989  if (p->bounds.x2 > bounds.x2)
4990  bounds.x2=p->bounds.x2;
4991  if (p->bounds.y2 > bounds.y2)
4992  bounds.y2=p->bounds.y2;
4993  }
4994  bounds.x1-=(mid+1.0);
4995  bounds.y1-=(mid+1.0);
4996  bounds.x2+=(mid+1.0);
4997  bounds.y2+=(mid+1.0);
4998  if ((bounds.x1 >= (double) image->columns) ||
4999  (bounds.y1 >= (double) image->rows) ||
5000  (bounds.x2 <= 0.0) || (bounds.y2 <= 0.0))
5001  {
5002  polygon_info=DestroyPolygonTLS(polygon_info);
5003  return(MagickTrue); /* virtual polygon */
5004  }
5005  bounds.x1=bounds.x1 < 0.0 ? 0.0 : bounds.x1 >= (double) image->columns-1.0 ?
5006  (double) image->columns-1.0 : bounds.x1;
5007  bounds.y1=bounds.y1 < 0.0 ? 0.0 : bounds.y1 >= (double) image->rows-1.0 ?
5008  (double) image->rows-1.0 : bounds.y1;
5009  bounds.x2=bounds.x2 < 0.0 ? 0.0 : bounds.x2 >= (double) image->columns-1.0 ?
5010  (double) image->columns-1.0 : bounds.x2;
5011  bounds.y2=bounds.y2 < 0.0 ? 0.0 : bounds.y2 >= (double) image->rows-1.0 ?
5012  (double) image->rows-1.0 : bounds.y2;
5013  poly_extent.x1=CastDoubleToLong(ceil(bounds.x1-0.5));
5014  poly_extent.y1=CastDoubleToLong(ceil(bounds.y1-0.5));
5015  poly_extent.x2=CastDoubleToLong(floor(bounds.x2+0.5));
5016  poly_extent.y2=CastDoubleToLong(floor(bounds.y2+0.5));
5017  number_threads=GetMagickNumberThreads(image,image,poly_extent.y2-
5018  poly_extent.y1+1,1);
5019  status=AcquirePolygonEdgesTLS(polygon_info,number_threads,&image->exception);
5020  if (status == MagickFalse)
5021  {
5022  polygon_info=DestroyPolygonTLS(polygon_info);
5023  return(status);
5024  }
5025  status=MagickTrue;
5026  exception=(&image->exception);
5027  image_view=AcquireAuthenticCacheView(image,exception);
5028  if ((primitive_info->coordinates == 1) ||
5029  (polygon_info[0]->number_edges == 0))
5030  {
5031  /*
5032  Draw point.
5033  */
5034 #if defined(MAGICKCORE_OPENMP_SUPPORT)
5035  #pragma omp parallel for schedule(static) shared(status) \
5036  num_threads(number_threads)
5037 #endif
5038  for (y=poly_extent.y1; y <= poly_extent.y2; y++)
5039  {
5040  MagickBooleanType
5041  sync;
5042 
5043  PixelPacket
5044  *magick_restrict q;
5045 
5046  ssize_t
5047  x;
5048 
5049  if (status == MagickFalse)
5050  continue;
5051  x=poly_extent.x1;
5052  q=GetCacheViewAuthenticPixels(image_view,x,y,(size_t) (poly_extent.x2-
5053  x+1),1,exception);
5054  if (q == (PixelPacket *) NULL)
5055  {
5056  status=MagickFalse;
5057  continue;
5058  }
5059  for ( ; x <= poly_extent.x2; x++)
5060  {
5061  if ((x == CastDoubleToLong(ceil(primitive_info->point.x-0.5))) &&
5062  (y == CastDoubleToLong(ceil(primitive_info->point.y-0.5))))
5063  (void) GetFillColor(draw_info,x-poly_extent.x1,y-poly_extent.y1,q);
5064  q++;
5065  }
5066  sync=SyncCacheViewAuthenticPixels(image_view,exception);
5067  if (sync == MagickFalse)
5068  status=MagickFalse;
5069  }
5070  image_view=DestroyCacheView(image_view);
5071  polygon_info=DestroyPolygonTLS(polygon_info);
5072  if (draw_info->debug != MagickFalse)
5073  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5074  " end draw-polygon");
5075  return(status);
5076  }
5077  /*
5078  Draw polygon or line.
5079  */
5080  poly_extent.y1=CastDoubleToLong(ceil(bounds.y1-0.5));
5081  poly_extent.y2=CastDoubleToLong(floor(bounds.y2+0.5));
5082 #if defined(MAGICKCORE_OPENMP_SUPPORT)
5083  #pragma omp parallel for schedule(static) shared(status) \
5084  num_threads(number_threads)
5085 #endif
5086  for (y=poly_extent.y1; y <= poly_extent.y2; y++)
5087  {
5088  const int
5089  id = GetOpenMPThreadId();
5090 
5091  PixelPacket
5092  fill_color,
5093  stroke_color;
5094 
5095  PixelPacket
5096  *magick_restrict q;
5097 
5098  ssize_t
5099  x;
5100 
5101  if (status == MagickFalse)
5102  continue;
5103  q=GetCacheViewAuthenticPixels(image_view,poly_extent.x1,y,(size_t)
5104  (poly_extent.x2-poly_extent.x1+1),1,exception);
5105  if (q == (PixelPacket *) NULL)
5106  {
5107  status=MagickFalse;
5108  continue;
5109  }
5110  for (x=poly_extent.x1; x <= poly_extent.x2; x++)
5111  {
5112  double
5113  fill_opacity,
5114  stroke_opacity;
5115 
5116  /*
5117  Fill and/or stroke.
5118  */
5119  fill_opacity=GetOpacityPixel(polygon_info[id],mid,fill,
5120  draw_info->fill_rule,x,y,&stroke_opacity);
5121  if (draw_info->stroke_antialias == MagickFalse)
5122  {
5123  fill_opacity=fill_opacity >= AntialiasThreshold ? 1.0 : 0.0;
5124  stroke_opacity=stroke_opacity >= AntialiasThreshold ? 1.0 : 0.0;
5125  }
5126  (void) GetFillColor(draw_info,x-poly_extent.x1,y-poly_extent.y1,
5127  &fill_color);
5128  fill_opacity=(double) ((MagickRealType) QuantumRange-fill_opacity*
5129  ((MagickRealType) QuantumRange-(MagickRealType) fill_color.opacity));
5130  MagickCompositeOver(&fill_color,(MagickRealType) fill_opacity,q,
5131  (MagickRealType) q->opacity,q);
5132  (void) GetStrokeColor(draw_info,x-poly_extent.x1,y-poly_extent.y1,
5133  &stroke_color);
5134  stroke_opacity=(double) ((MagickRealType) QuantumRange-stroke_opacity*
5135  ((MagickRealType) QuantumRange-(MagickRealType) stroke_color.opacity));
5136  MagickCompositeOver(&stroke_color,(MagickRealType) stroke_opacity,q,
5137  (MagickRealType) q->opacity,q);
5138  q++;
5139  }
5140  if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
5141  status=MagickFalse;
5142  }
5143  image_view=DestroyCacheView(image_view);
5144  polygon_info=DestroyPolygonTLS(polygon_info);
5145  if (draw_info->debug != MagickFalse)
5146  (void) LogMagickEvent(DrawEvent,GetMagickModule()," end draw-polygon");
5147  return(status);
5148 }
5149 ␌
5150 /*
5151 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5152 % %
5153 % %
5154 % %
5155 % D r a w P r i m i t i v e %
5156 % %
5157 % %
5158 % %
5159 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5160 %
5161 % DrawPrimitive() draws a primitive (line, rectangle, ellipse) on the image.
5162 %
5163 % The format of the DrawPrimitive method is:
5164 %
5165 % MagickBooleanType DrawPrimitive(Image *image,const DrawInfo *draw_info,
5166 % PrimitiveInfo *primitive_info)
5167 %
5168 % A description of each parameter follows:
5169 %
5170 % o image: the image.
5171 %
5172 % o draw_info: the draw info.
5173 %
5174 % o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
5175 %
5176 */
5177 static void LogPrimitiveInfo(const PrimitiveInfo *primitive_info)
5178 {
5179  const char
5180  *methods[] =
5181  {
5182  "point",
5183  "replace",
5184  "floodfill",
5185  "filltoborder",
5186  "reset",
5187  "?"
5188  };
5189 
5190  PointInfo
5191  p,
5192  q,
5193  point;
5194 
5195  ssize_t
5196  i,
5197  x;
5198 
5199  ssize_t
5200  coordinates,
5201  y;
5202 
5203  x=CastDoubleToLong(ceil(primitive_info->point.x-0.5));
5204  y=CastDoubleToLong(ceil(primitive_info->point.y-0.5));
5205  switch (primitive_info->primitive)
5206  {
5207  case PointPrimitive:
5208  {
5209  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5210  "PointPrimitive %.20g,%.20g %s",(double) x,(double) y,
5211  methods[primitive_info->method]);
5212  return;
5213  }
5214  case ColorPrimitive:
5215  {
5216  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5217  "ColorPrimitive %.20g,%.20g %s",(double) x,(double) y,
5218  methods[primitive_info->method]);
5219  return;
5220  }
5221  case MattePrimitive:
5222  {
5223  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5224  "MattePrimitive %.20g,%.20g %s",(double) x,(double) y,
5225  methods[primitive_info->method]);
5226  return;
5227  }
5228  case TextPrimitive:
5229  {
5230  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5231  "TextPrimitive %.20g,%.20g",(double) x,(double) y);
5232  return;
5233  }
5234  case ImagePrimitive:
5235  {
5236  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5237  "ImagePrimitive %.20g,%.20g",(double) x,(double) y);
5238  return;
5239  }
5240  default:
5241  break;
5242  }
5243  coordinates=0;
5244  p=primitive_info[0].point;
5245  q.x=(-1.0);
5246  q.y=(-1.0);
5247  for (i=0; primitive_info[i].primitive != UndefinedPrimitive; i++)
5248  {
5249  point=primitive_info[i].point;
5250  if (coordinates <= 0)
5251  {
5252  coordinates=(ssize_t) primitive_info[i].coordinates;
5253  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5254  " begin open (%.20g)",(double) coordinates);
5255  p=point;
5256  }
5257  point=primitive_info[i].point;
5258  if ((fabs(q.x-point.x) >= MagickEpsilon) ||
5259  (fabs(q.y-point.y) >= MagickEpsilon))
5260  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5261  " %.20g: %.18g,%.18g",(double) coordinates,point.x,point.y);
5262  else
5263  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5264  " %.20g: %g %g (duplicate)",(double) coordinates,point.x,point.y);
5265  q=point;
5266  coordinates--;
5267  if (coordinates > 0)
5268  continue;
5269  if ((fabs(p.x-point.x) >= MagickEpsilon) ||
5270  (fabs(p.y-point.y) >= MagickEpsilon))
5271  (void) LogMagickEvent(DrawEvent,GetMagickModule()," end last (%.20g)",
5272  (double) coordinates);
5273  else
5274  (void) LogMagickEvent(DrawEvent,GetMagickModule()," end open (%.20g)",
5275  (double) coordinates);
5276  }
5277 }
5278 
5279 MagickExport MagickBooleanType DrawPrimitive(Image *image,
5280  const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
5281 {
5282  CacheView
5283  *image_view;
5284 
5286  *exception;
5287 
5288  MagickStatusType
5289  status;
5290 
5291  ssize_t
5292  i,
5293  x;
5294 
5295  ssize_t
5296  y;
5297 
5298  if (draw_info->debug != MagickFalse)
5299  {
5300  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5301  " begin draw-primitive");
5302  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5303  " affine: %g,%g,%g,%g,%g,%g",draw_info->affine.sx,
5304  draw_info->affine.rx,draw_info->affine.ry,draw_info->affine.sy,
5305  draw_info->affine.tx,draw_info->affine.ty);
5306  }
5307  exception=(&image->exception);
5308  status=MagickTrue;
5309  if ((IsGrayColorspace(image->colorspace) != MagickFalse) &&
5310  ((IsPixelGray(&draw_info->fill) == MagickFalse) ||
5311  (IsPixelGray(&draw_info->stroke) == MagickFalse)))
5312  status=SetImageColorspace(image,sRGBColorspace);
5313  if (draw_info->compliance == SVGCompliance)
5314  {
5315  status&=SetImageClipMask(image,draw_info->clipping_mask);
5316  status&=SetImageMask(image,draw_info->composite_mask);
5317  }
5318  x=CastDoubleToLong(ceil(primitive_info->point.x-0.5));
5319  y=CastDoubleToLong(ceil(primitive_info->point.y-0.5));
5320  image_view=AcquireAuthenticCacheView(image,exception);
5321  switch (primitive_info->primitive)
5322  {
5323  case ColorPrimitive:
5324  {
5325  switch (primitive_info->method)
5326  {
5327  case PointMethod:
5328  default:
5329  {
5330  PixelPacket
5331  *q;
5332 
5333  q=GetCacheViewAuthenticPixels(image_view,x,y,1,1,exception);
5334  if (q == (PixelPacket *) NULL)
5335  break;
5336  (void) GetFillColor(draw_info,x,y,q);
5337  status&=SyncCacheViewAuthenticPixels(image_view,exception);
5338  break;
5339  }
5340  case ReplaceMethod:
5341  {
5342  PixelPacket
5343  target;
5344 
5345  status&=GetOneCacheViewVirtualPixel(image_view,x,y,&target,exception);
5346  for (y=0; y < (ssize_t) image->rows; y++)
5347  {
5348  PixelPacket
5349  *magick_restrict q;
5350 
5351  q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
5352  exception);
5353  if (q == (PixelPacket *) NULL)
5354  break;
5355  for (x=0; x < (ssize_t) image->columns; x++)
5356  {
5357  if (IsColorSimilar(image,q,&target) == MagickFalse)
5358  {
5359  q++;
5360  continue;
5361  }
5362  (void) GetFillColor(draw_info,x,y,q);
5363  q++;
5364  }
5365  status&=SyncCacheViewAuthenticPixels(image_view,exception);
5366  if (status == MagickFalse)
5367  break;
5368  }
5369  break;
5370  }
5371  case FloodfillMethod:
5372  case FillToBorderMethod:
5373  {
5375  target;
5376 
5377  status&=GetOneVirtualMagickPixel(image,x,y,&target,exception);
5378  if (primitive_info->method == FillToBorderMethod)
5379  {
5380  target.red=(MagickRealType) draw_info->border_color.red;
5381  target.green=(MagickRealType) draw_info->border_color.green;
5382  target.blue=(MagickRealType) draw_info->border_color.blue;
5383  }
5384  status&=FloodfillPaintImage(image,DefaultChannels,draw_info,&target,x,
5385  y,primitive_info->method == FloodfillMethod ? MagickFalse :
5386  MagickTrue);
5387  break;
5388  }
5389  case ResetMethod:
5390  {
5391  for (y=0; y < (ssize_t) image->rows; y++)
5392  {
5393  PixelPacket
5394  *magick_restrict q;
5395 
5396  ssize_t
5397  x;
5398 
5399  q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
5400  exception);
5401  if (q == (PixelPacket *) NULL)
5402  break;
5403  for (x=0; x < (ssize_t) image->columns; x++)
5404  {
5405  (void) GetFillColor(draw_info,x,y,q);
5406  q++;
5407  }
5408  status&=SyncCacheViewAuthenticPixels(image_view,exception);
5409  if (status == MagickFalse)
5410  break;
5411  }
5412  break;
5413  }
5414  }
5415  break;
5416  }
5417  case MattePrimitive:
5418  {
5419  if (image->matte == MagickFalse)
5420  status&=SetImageAlphaChannel(image,OpaqueAlphaChannel);
5421  switch (primitive_info->method)
5422  {
5423  case PointMethod:
5424  default:
5425  {
5426  PixelPacket
5427  pixel;
5428 
5429  PixelPacket
5430  *q;
5431 
5432  q=GetCacheViewAuthenticPixels(image_view,x,y,1,1,exception);
5433  if (q == (PixelPacket *) NULL)
5434  break;
5435  (void) GetFillColor(draw_info,x,y,&pixel);
5436  SetPixelOpacity(q,pixel.opacity);
5437  status&=SyncCacheViewAuthenticPixels(image_view,exception);
5438  break;
5439  }
5440  case ReplaceMethod:
5441  {
5442  PixelPacket
5443  pixel,
5444  target;
5445 
5446  status&=GetOneCacheViewVirtualPixel(image_view,x,y,&target,exception);
5447  for (y=0; y < (ssize_t) image->rows; y++)
5448  {
5449  PixelPacket
5450  *magick_restrict q;
5451 
5452  ssize_t
5453  x;
5454 
5455  q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
5456  exception);
5457  if (q == (PixelPacket *) NULL)
5458  break;
5459  for (x=0; x < (ssize_t) image->columns; x++)
5460  {
5461  if (IsColorSimilar(image,q,&target) == MagickFalse)
5462  {
5463  q++;
5464  continue;
5465  }
5466  (void) GetFillColor(draw_info,x,y,&pixel);
5467  SetPixelOpacity(q,pixel.opacity);
5468  q++;
5469  }
5470  status&=SyncCacheViewAuthenticPixels(image_view,exception);
5471  if (status == MagickFalse)
5472  break;
5473  }
5474  break;
5475  }
5476  case FloodfillMethod:
5477  case FillToBorderMethod:
5478  {
5480  target;
5481 
5482  status&=GetOneVirtualMagickPixel(image,x,y,&target,exception);
5483  if (primitive_info->method == FillToBorderMethod)
5484  {
5485  target.red=(MagickRealType) draw_info->border_color.red;
5486  target.green=(MagickRealType) draw_info->border_color.green;
5487  target.blue=(MagickRealType) draw_info->border_color.blue;
5488  }
5489  status&=FloodfillPaintImage(image,OpacityChannel,draw_info,&target,x,
5490  y,primitive_info->method == FloodfillMethod ? MagickFalse :
5491  MagickTrue);
5492  break;
5493  }
5494  case ResetMethod:
5495  {
5496  PixelPacket
5497  pixel;
5498 
5499  for (y=0; y < (ssize_t) image->rows; y++)
5500  {
5501  PixelPacket
5502  *magick_restrict q;
5503 
5504  ssize_t
5505  x;
5506 
5507  q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,
5508  exception);
5509  if (q == (PixelPacket *) NULL)
5510  break;
5511  for (x=0; x < (ssize_t) image->columns; x++)
5512  {
5513  (void) GetFillColor(draw_info,x,y,&pixel);
5514  SetPixelOpacity(q,pixel.opacity);
5515  q++;
5516  }
5517  status&=SyncCacheViewAuthenticPixels(image_view,exception);
5518  if (status == MagickFalse)
5519  break;
5520  }
5521  break;
5522  }
5523  }
5524  break;
5525  }
5526  case ImagePrimitive:
5527  {
5528  AffineMatrix
5529  affine;
5530 
5531  char
5532  composite_geometry[MaxTextExtent];
5533 
5534  Image
5535  *composite_image,
5536  *composite_images;
5537 
5538  ImageInfo
5539  *clone_info;
5540 
5542  geometry;
5543 
5544  ssize_t
5545  x1,
5546  y1;
5547 
5548  if (primitive_info->text == (char *) NULL)
5549  break;
5550  clone_info=AcquireImageInfo();
5551  composite_images=(Image *) NULL;
5552  if (LocaleNCompare(primitive_info->text,"data:",5) == 0)
5553  composite_images=ReadInlineImage(clone_info,primitive_info->text,
5554  &image->exception);
5555  else
5556  if (*primitive_info->text != '\0')
5557  {
5558  /*
5559  Read composite image.
5560  */
5561  (void) CopyMagickString(clone_info->filename,primitive_info->text,
5562  MagickPathExtent);
5563  (void) SetImageInfo(clone_info,1,exception);
5564  (void) CopyMagickString(clone_info->filename,primitive_info->text,
5565  MagickPathExtent);
5566  if (clone_info->size != (char *) NULL)
5567  clone_info->size=DestroyString(clone_info->size);
5568  if (clone_info->extract != (char *) NULL)
5569  clone_info->extract=DestroyString(clone_info->extract);
5570  if ((LocaleCompare(clone_info->magick,"ftp") != 0) &&
5571  (LocaleCompare(clone_info->magick,"http") != 0) &&
5572  (LocaleCompare(clone_info->magick,"https") != 0) &&
5573  (LocaleCompare(clone_info->magick,"mvg") != 0) &&
5574  (LocaleCompare(clone_info->magick,"vid") != 0))
5575  composite_images=ReadImage(clone_info,exception);
5576  else
5577  (void) ThrowMagickException(exception,GetMagickModule(),
5578  FileOpenError,"UnableToOpenFile","`%s'",clone_info->filename);
5579  }
5580  clone_info=DestroyImageInfo(clone_info);
5581  if (composite_images == (Image *) NULL)
5582  {
5583  status=0;
5584  break;
5585  }
5586  composite_image=RemoveFirstImageFromList(&composite_images);
5587  composite_images=DestroyImageList(composite_images);
5588  (void) SetImageProgressMonitor(composite_image,(MagickProgressMonitor)
5589  NULL,(void *) NULL);
5590  x1=CastDoubleToLong(ceil(primitive_info[1].point.x-0.5));
5591  y1=CastDoubleToLong(ceil(primitive_info[1].point.y-0.5));
5592  if (((x1 != 0L) && (x1 != (ssize_t) composite_image->columns)) ||
5593  ((y1 != 0L) && (y1 != (ssize_t) composite_image->rows)))
5594  {
5595  char
5596  geometry[MaxTextExtent];
5597 
5598  /*
5599  Resize image.
5600  */
5601  (void) FormatLocaleString(geometry,MaxTextExtent,"%gx%g!",
5602  primitive_info[1].point.x,primitive_info[1].point.y);
5603  composite_image->filter=image->filter;
5604  status&=TransformImage(&composite_image,(char *) NULL,geometry);
5605  }
5606  if (composite_image->matte == MagickFalse)
5607  status&=SetImageAlphaChannel(composite_image,OpaqueAlphaChannel);
5608  if (draw_info->opacity != OpaqueOpacity)
5609  status&=SetImageOpacity(composite_image,draw_info->opacity);
5610  SetGeometry(image,&geometry);
5611  image->gravity=draw_info->gravity;
5612  geometry.x=x;
5613  geometry.y=y;
5614  (void) FormatLocaleString(composite_geometry,MaxTextExtent,
5615  "%.20gx%.20g%+.20g%+.20g",(double) composite_image->columns,(double)
5616  composite_image->rows,(double) geometry.x,(double) geometry.y);
5617  (void) ParseGravityGeometry(image,composite_geometry,&geometry,
5618  &image->exception);
5619  affine=draw_info->affine;
5620  affine.tx=(double) geometry.x;
5621  affine.ty=(double) geometry.y;
5622  composite_image->interpolate=image->interpolate;
5623  if ((draw_info->compose == OverCompositeOp) ||
5624  (draw_info->compose == SrcOverCompositeOp))
5625  status&=DrawAffineImage(image,composite_image,&affine);
5626  else
5627  status&=CompositeImage(image,draw_info->compose,composite_image,
5628  geometry.x,geometry.y);
5629  composite_image=DestroyImage(composite_image);
5630  break;
5631  }
5632  case PointPrimitive:
5633  {
5634  PixelPacket
5635  fill_color;
5636 
5637  PixelPacket
5638  *q;
5639 
5640  if ((y < 0) || (y >= (ssize_t) image->rows))
5641  break;
5642  if ((x < 0) || (x >= (ssize_t) image->columns))
5643  break;
5644  q=GetCacheViewAuthenticPixels(image_view,x,y,1,1,exception);
5645  if (q == (PixelPacket *) NULL)
5646  break;
5647  (void) GetFillColor(draw_info,x,y,&fill_color);
5648  MagickCompositeOver(&fill_color,(MagickRealType) fill_color.opacity,q,
5649  (MagickRealType) q->opacity,q);
5650  status&=SyncCacheViewAuthenticPixels(image_view,exception);
5651  break;
5652  }
5653  case TextPrimitive:
5654  {
5655  char
5656  geometry[MaxTextExtent];
5657 
5658  DrawInfo
5659  *clone_info;
5660 
5661  if (primitive_info->text == (char *) NULL)
5662  break;
5663  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
5664  (void) CloneString(&clone_info->text,primitive_info->text);
5665  (void) FormatLocaleString(geometry,MaxTextExtent,"%+f%+f",
5666  primitive_info->point.x,primitive_info->point.y);
5667  (void) CloneString(&clone_info->geometry,geometry);
5668  status&=AnnotateImage(image,clone_info);
5669  clone_info=DestroyDrawInfo(clone_info);
5670  break;
5671  }
5672  default:
5673  {
5674  double
5675  mid,
5676  scale;
5677 
5678  DrawInfo
5679  *clone_info;
5680 
5681  if (IsEventLogging() != MagickFalse)
5682  LogPrimitiveInfo(primitive_info);
5683  scale=ExpandAffine(&draw_info->affine);
5684  if ((draw_info->dash_pattern != (double *) NULL) &&
5685  (fabs(draw_info->dash_pattern[0]) >= MagickEpsilon) &&
5686  (fabs(scale*draw_info->stroke_width) >= MagickEpsilon) &&
5687  (draw_info->stroke.opacity != (Quantum) TransparentOpacity))
5688  {
5689  /*
5690  Draw dash polygon.
5691  */
5692  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
5693  clone_info->stroke_width=0.0;
5694  clone_info->stroke.opacity=(Quantum) TransparentOpacity;
5695  status&=DrawPolygonPrimitive(image,clone_info,primitive_info);
5696  clone_info=DestroyDrawInfo(clone_info);
5697  if (status != MagickFalse)
5698  status&=DrawDashPolygon(draw_info,primitive_info,image);
5699  break;
5700  }
5701  mid=ExpandAffine(&draw_info->affine)*draw_info->stroke_width/2.0;
5702  if ((mid > 1.0) &&
5703  ((draw_info->stroke.opacity != (Quantum) TransparentOpacity) ||
5704  (draw_info->stroke_pattern != (Image *) NULL)))
5705  {
5706  double
5707  x,
5708  y;
5709 
5710  MagickBooleanType
5711  closed_path;
5712 
5713  /*
5714  Draw strokes while respecting line cap/join attributes.
5715  */
5716  closed_path=primitive_info[0].closed_subpath;
5717  i=(ssize_t) primitive_info[0].coordinates;
5718  x=fabs(primitive_info[i-1].point.x-primitive_info[0].point.x);
5719  y=fabs(primitive_info[i-1].point.y-primitive_info[0].point.y);
5720  if ((x < MagickEpsilon) && (y < MagickEpsilon))
5721  closed_path=MagickTrue;
5722  if ((((draw_info->linecap == RoundCap) ||
5723  (closed_path != MagickFalse)) &&
5724  (draw_info->linejoin == RoundJoin)) ||
5725  (primitive_info[i].primitive != UndefinedPrimitive))
5726  {
5727  status&=DrawPolygonPrimitive(image,draw_info,primitive_info);
5728  break;
5729  }
5730  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
5731  clone_info->stroke_width=0.0;
5732  clone_info->stroke.opacity=(Quantum) TransparentOpacity;
5733  status&=DrawPolygonPrimitive(image,clone_info,primitive_info);
5734  clone_info=DestroyDrawInfo(clone_info);
5735  if (status != MagickFalse)
5736  status&=DrawStrokePolygon(image,draw_info,primitive_info);
5737  break;
5738  }
5739  status&=DrawPolygonPrimitive(image,draw_info,primitive_info);
5740  break;
5741  }
5742  }
5743  image_view=DestroyCacheView(image_view);
5744  if (draw_info->compliance == SVGCompliance)
5745  {
5746  status&=SetImageClipMask(image,(Image *) NULL);
5747  status&=SetImageMask(image,(Image *) NULL);
5748  }
5749  if (draw_info->debug != MagickFalse)
5750  (void) LogMagickEvent(DrawEvent,GetMagickModule()," end draw-primitive");
5751  return(status != 0 ? MagickTrue : MagickFalse);
5752 }
5753 ␌
5754 /*
5755 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5756 % %
5757 % %
5758 % %
5759 + D r a w S t r o k e P o l y g o n %
5760 % %
5761 % %
5762 % %
5763 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5764 %
5765 % DrawStrokePolygon() draws a stroked polygon (line, rectangle, ellipse) on
5766 % the image while respecting the line cap and join attributes.
5767 %
5768 % The format of the DrawStrokePolygon method is:
5769 %
5770 % MagickBooleanType DrawStrokePolygon(Image *image,
5771 % const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
5772 %
5773 % A description of each parameter follows:
5774 %
5775 % o image: the image.
5776 %
5777 % o draw_info: the draw info.
5778 %
5779 % o primitive_info: Specifies a pointer to a PrimitiveInfo structure.
5780 %
5781 %
5782 */
5783 
5784 static MagickBooleanType DrawRoundLinecap(Image *image,
5785  const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
5786 {
5788  linecap[5];
5789 
5790  ssize_t
5791  i;
5792 
5793  for (i=0; i < 4; i++)
5794  linecap[i]=(*primitive_info);
5795  linecap[0].coordinates=4;
5796  linecap[1].point.x+=2.0*MagickEpsilon;
5797  linecap[2].point.x+=2.0*MagickEpsilon;
5798  linecap[2].point.y+=2.0*MagickEpsilon;
5799  linecap[3].point.y+=2.0*MagickEpsilon;
5800  linecap[4].primitive=UndefinedPrimitive;
5801  return(DrawPolygonPrimitive(image,draw_info,linecap));
5802 }
5803 
5804 static MagickBooleanType DrawStrokePolygon(Image *image,
5805  const DrawInfo *draw_info,const PrimitiveInfo *primitive_info)
5806 {
5807  DrawInfo
5808  *clone_info;
5809 
5810  MagickBooleanType
5811  closed_path;
5812 
5813  MagickStatusType
5814  status;
5815 
5817  *stroke_polygon;
5818 
5819  const PrimitiveInfo
5820  *p,
5821  *q;
5822 
5823  /*
5824  Draw stroked polygon.
5825  */
5826  if (draw_info->debug != MagickFalse)
5827  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5828  " begin draw-stroke-polygon");
5829  clone_info=CloneDrawInfo((ImageInfo *) NULL,draw_info);
5830  clone_info->fill=draw_info->stroke;
5831  if (clone_info->fill_pattern != (Image *) NULL)
5832  clone_info->fill_pattern=DestroyImage(clone_info->fill_pattern);
5833  if (clone_info->stroke_pattern != (Image *) NULL)
5834  clone_info->fill_pattern=CloneImage(clone_info->stroke_pattern,0,0,
5835  MagickTrue,&clone_info->stroke_pattern->exception);
5836  clone_info->stroke.opacity=(Quantum) TransparentOpacity;
5837  clone_info->stroke_width=0.0;
5838  clone_info->fill_rule=NonZeroRule;
5839  status=MagickTrue;
5840  for (p=primitive_info; p->primitive != UndefinedPrimitive; p+=(ptrdiff_t) p->coordinates)
5841  {
5842  if (p->coordinates == 1)
5843  continue;
5844  stroke_polygon=TraceStrokePolygon(draw_info,p,&image->exception);
5845  if (stroke_polygon == (PrimitiveInfo *) NULL)
5846  {
5847  status=0;
5848  break;
5849  }
5850  status&=DrawPolygonPrimitive(image,clone_info,stroke_polygon);
5851  stroke_polygon=(PrimitiveInfo *) RelinquishMagickMemory(stroke_polygon);
5852  if (status == 0)
5853  break;
5854  q=p+p->coordinates-1;
5855  closed_path=p->closed_subpath;
5856  if ((draw_info->linecap == RoundCap) && (closed_path == MagickFalse))
5857  {
5858  status&=DrawRoundLinecap(image,draw_info,p);
5859  status&=DrawRoundLinecap(image,draw_info,q);
5860  }
5861  }
5862  clone_info=DestroyDrawInfo(clone_info);
5863  if (draw_info->debug != MagickFalse)
5864  (void) LogMagickEvent(DrawEvent,GetMagickModule(),
5865  " end draw-stroke-polygon");
5866  return(status != 0 ? MagickTrue : MagickFalse);
5867 }
5868 ␌
5869 /*
5870 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5871 % %
5872 % %
5873 % %
5874 % G e t A f f i n e M a t r i x %
5875 % %
5876 % %
5877 % %
5878 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5879 %
5880 % GetAffineMatrix() returns an AffineMatrix initialized to the identity
5881 % matrix.
5882 %
5883 % The format of the GetAffineMatrix method is:
5884 %
5885 % void GetAffineMatrix(AffineMatrix *affine_matrix)
5886 %
5887 % A description of each parameter follows:
5888 %
5889 % o affine_matrix: the affine matrix.
5890 %
5891 */
5892 MagickExport void GetAffineMatrix(AffineMatrix *affine_matrix)
5893 {
5894  assert(affine_matrix != (AffineMatrix *) NULL);
5895  if (IsEventLogging() != MagickFalse)
5896  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
5897  (void) memset(affine_matrix,0,sizeof(*affine_matrix));
5898  affine_matrix->sx=1.0;
5899  affine_matrix->sy=1.0;
5900 }
5901 ␌
5902 /*
5903 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5904 % %
5905 % %
5906 % %
5907 + G e t D r a w I n f o %
5908 % %
5909 % %
5910 % %
5911 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
5912 %
5913 % GetDrawInfo() initializes draw_info to default values from image_info.
5914 %
5915 % The format of the GetDrawInfo method is:
5916 %
5917 % void GetDrawInfo(const ImageInfo *image_info,DrawInfo *draw_info)
5918 %
5919 % A description of each parameter follows:
5920 %
5921 % o image_info: the image info..
5922 %
5923 % o draw_info: the draw info.
5924 %
5925 */
5926 MagickExport void GetDrawInfo(const ImageInfo *image_info,DrawInfo *draw_info)
5927 {
5928  char
5929  *next_token;
5930 
5931  const char
5932  *option;
5933 
5935  *exception;
5936 
5937  /*
5938  Initialize draw attributes.
5939  */
5940  assert(draw_info != (DrawInfo *) NULL);
5941  if (IsEventLogging() != MagickFalse)
5942  (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
5943  (void) memset(draw_info,0,sizeof(*draw_info));
5944  draw_info->image_info=CloneImageInfo(image_info);
5945  GetAffineMatrix(&draw_info->affine);
5946  exception=AcquireExceptionInfo();
5947  (void) QueryColorDatabase("#000F",&draw_info->fill,exception);
5948  (void) QueryColorDatabase("#FFF0",&draw_info->stroke,exception);
5949  draw_info->stroke_antialias=draw_info->image_info->antialias;
5950  draw_info->stroke_width=1.0;
5951  draw_info->fill_rule=EvenOddRule;
5952  draw_info->opacity=OpaqueOpacity;
5953  draw_info->fill_opacity=OpaqueOpacity;
5954  draw_info->stroke_opacity=OpaqueOpacity;
5955  draw_info->linecap=ButtCap;
5956  draw_info->linejoin=MiterJoin;
5957  draw_info->miterlimit=10;
5958  draw_info->decorate=NoDecoration;
5959  if (draw_info->image_info->font != (char *) NULL)
5960  draw_info->font=AcquireString(draw_info->image_info->font);
5961  if (draw_info->image_info->density != (char *) NULL)
5962  draw_info->density=AcquireString(draw_info->image_info->density);
5963  draw_info->text_antialias=draw_info->image_info->antialias;
5964  draw_info->pointsize=12.0;
5965  if (fabs(draw_info->image_info->pointsize) >= MagickEpsilon)
5966  draw_info->pointsize=draw_info->image_info->pointsize;
5967  draw_info->undercolor.opacity=(Quantum) TransparentOpacity;
5968  draw_info->border_color=draw_info->image_info->border_color;
5969  draw_info->compose=OverCompositeOp;
5970  if (draw_info->image_info->server_name != (char *) NULL)
5971  draw_info->server_name=AcquireString(draw_info->image_info->server_name);
5972  draw_info->render=MagickTrue;
5973  draw_info->clip_path=MagickFalse;
5974  draw_info->debug=(GetLogEventMask() & (DrawEvent | AnnotateEvent)) != 0 ?
5975  MagickTrue : MagickFalse;
5976  option=GetImageOption(draw_info->image_info,"direction");
5977  if (option != (const char *) NULL)
5978  draw_info->direction=(DirectionType) ParseCommandOption(
5979  MagickDirectionOptions,MagickFalse,option);
5980  else
5981  draw_info->direction=UndefinedDirection;
5982  option=GetImageOption(draw_info->image_info,"encoding");
5983  if (option != (const char *) NULL)
5984  (void) CloneString(&draw_info->encoding,option);
5985  option=GetImageOption(draw_info->image_info,"family");
5986  if (option != (const char *) NULL)
5987  (void) CloneString(&draw_info->family,option);
5988  option=GetImageOption(draw_info->image_info,"fill");
5989  if (option != (const char *) NULL)
5990  (void) QueryColorDatabase(option,&draw_info->fill,exception);
5991  option=GetImageOption(draw_info->image_info,"gravity");
5992  if (option != (const char *) NULL)
5993  draw_info->gravity=(GravityType) ParseCommandOption(MagickGravityOptions,
5994  MagickFalse,option);
5995  option=GetImageOption(draw_info->image_info,"interline-spacing");
5996  if (option != (const char *) NULL)
5997  draw_info->interline_spacing=GetDrawValue(option,&next_token);
5998  option=GetImageOption(draw_info->image_info,"interword-spacing");
5999  if (option != (const char *) NULL)
6000  draw_info->interword_spacing=GetDrawValue(option,&next_token);
6001  option=GetImageOption(draw_info->image_info,"kerning");
6002  if (option != (const char *) NULL)
6003  draw_info->kerning=GetDrawValue(option,&next_token);
6004  option=GetImageOption(draw_info->image_info,"stroke");
6005  if (option != (const char *) NULL)
6006  (void) QueryColorDatabase(option,&draw_info->stroke,exception);
6007  option=GetImageOption(draw_info->image_info,"strokewidth");
6008  if (option != (const char *) NULL)
6009  draw_info->stroke_width=GetDrawValue(option,&next_token);
6010  option=GetImageOption(draw_info->image_info,"style");
6011  if (option != (const char *) NULL)
6012  draw_info->style=(StyleType) ParseCommandOption(MagickStyleOptions,
6013  MagickFalse,option);
6014  option=GetImageOption(draw_info->image_info,"undercolor");
6015  if (option != (const char *) NULL)
6016  (void) QueryColorDatabase(option,&draw_info->undercolor,exception);
6017  option=GetImageOption(draw_info->image_info,"weight");
6018  if (option != (const char *) NULL)
6019  {
6020  ssize_t
6021  weight;
6022 
6023  weight=ParseCommandOption(MagickWeightOptions,MagickFalse,option);
6024  if (weight == -1)
6025  weight=(ssize_t) StringToUnsignedLong(option);
6026  draw_info->weight=(size_t) weight;
6027  }
6028  exception=DestroyExceptionInfo(exception);
6029  draw_info->signature=MagickCoreSignature;
6030 }
6031 ␌
6032 /*
6033 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
6034 % %
6035 % %
6036 % %
6037 + P e r m u t a t e %
6038 % %
6039 % %
6040 % %
6041 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
6042 %
6043 % Permutate() returns the permutation of the (n,k).
6044 %
6045 % The format of the Permutate method is:
6046 %
6047 % void Permutate(ssize_t n,ssize_t k)
6048 %
6049 % A description of each parameter follows:
6050 %
6051 % o n:
6052 %
6053 % o k:
6054 %
6055 %
6056 */
6057 static inline double Permutate(const ssize_t n,const ssize_t k)
6058 {
6059  double
6060  r;
6061 
6062  ssize_t
6063  i;
6064 
6065  r=1.0;
6066  for (i=k+1; i <= n; i++)
6067  r*=i;
6068  for (i=1; i <= (n-k); i++)
6069  r/=i;
6070  return(r);
6071 }
6072 ␌
6073 /*
6074 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
6075 % %
6076 % %
6077 % %
6078 + T r a c e P r i m i t i v e %
6079 % %
6080 % %
6081 % %
6082 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
6083 %
6084 % TracePrimitive is a collection of methods for generating graphic
6085 % primitives such as arcs, ellipses, paths, etc.
6086 %
6087 */
6088 
6089 static MagickBooleanType TraceArc(MVGInfo *mvg_info,const PointInfo start,
6090  const PointInfo end,const PointInfo degrees)
6091 {
6092  PointInfo
6093  center,
6094  radius;
6095 
6096  center.x=0.5*(end.x+start.x);
6097  center.y=0.5*(end.y+start.y);
6098  radius.x=fabs(center.x-start.x);
6099  radius.y=fabs(center.y-start.y);
6100  return(TraceEllipse(mvg_info,center,radius,degrees));
6101 }
6102 
6103 static MagickBooleanType TraceArcPath(MVGInfo *mvg_info,const PointInfo start,
6104  const PointInfo end,const PointInfo arc,const double angle,
6105  const MagickBooleanType large_arc,const MagickBooleanType sweep)
6106 {
6107  double
6108  alpha,
6109  beta,
6110  delta,
6111  factor,
6112  gamma,
6113  theta;
6114 
6115  MagickStatusType
6116  status;
6117 
6118  PointInfo
6119  center,
6120  points[3],
6121  radii;
6122 
6123  double
6124  cosine,
6125  sine;
6126 
6128  *primitive_info;
6129 
6131  *p;
6132 
6133  ssize_t
6134  i;
6135 
6136  size_t
6137  arc_segments;
6138 
6139  ssize_t
6140  offset;
6141 
6142  offset=mvg_info->offset;
6143  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6144  primitive_info->coordinates=0;
6145  if ((fabs(start.x-end.x) < MagickEpsilon) &&
6146  (fabs(start.y-end.y) < MagickEpsilon))
6147  return(TracePoint(primitive_info,end));
6148  radii.x=fabs(arc.x);
6149  radii.y=fabs(arc.y);
6150  if ((radii.x < MagickEpsilon) || (radii.y < MagickEpsilon))
6151  return(TraceLine(primitive_info,start,end));
6152  cosine=cos(DegreesToRadians(fmod((double) angle,360.0)));
6153  sine=sin(DegreesToRadians(fmod((double) angle,360.0)));
6154  center.x=(double) (cosine*(end.x-start.x)/2+sine*(end.y-start.y)/2);
6155  center.y=(double) (cosine*(end.y-start.y)/2-sine*(end.x-start.x)/2);
6156  delta=(center.x*center.x)/(radii.x*radii.x)+(center.y*center.y)/
6157  (radii.y*radii.y);
6158  if (delta < MagickEpsilon)
6159  return(TraceLine(primitive_info,start,end));
6160  if (delta > 1.0)
6161  {
6162  radii.x*=sqrt((double) delta);
6163  radii.y*=sqrt((double) delta);
6164  }
6165  points[0].x=(double) (cosine*start.x/radii.x+sine*start.y/radii.x);
6166  points[0].y=(double) (cosine*start.y/radii.y-sine*start.x/radii.y);
6167  points[1].x=(double) (cosine*end.x/radii.x+sine*end.y/radii.x);
6168  points[1].y=(double) (cosine*end.y/radii.y-sine*end.x/radii.y);
6169  alpha=points[1].x-points[0].x;
6170  beta=points[1].y-points[0].y;
6171  if (fabs(alpha*alpha+beta*beta) < MagickEpsilon)
6172  return(TraceLine(primitive_info,start,end));
6173  factor=MagickSafeReciprocal(alpha*alpha+beta*beta)-0.25;
6174  if (factor <= 0.0)
6175  factor=0.0;
6176  else
6177  {
6178  factor=sqrt((double) factor);
6179  if (sweep == large_arc)
6180  factor=(-factor);
6181  }
6182  center.x=(double) ((points[0].x+points[1].x)/2-factor*beta);
6183  center.y=(double) ((points[0].y+points[1].y)/2+factor*alpha);
6184  alpha=atan2(points[0].y-center.y,points[0].x-center.x);
6185  theta=atan2(points[1].y-center.y,points[1].x-center.x)-alpha;
6186  if ((theta < 0.0) && (sweep != MagickFalse))
6187  theta+=2.0*MagickPI;
6188  else
6189  if ((theta > 0.0) && (sweep == MagickFalse))
6190  theta-=2.0*MagickPI;
6191  arc_segments=(size_t) CastDoubleToLong(ceil(fabs((double) (theta/(0.5*
6192  MagickPI+MagickEpsilon)))));
6193  p=primitive_info;
6194  status=MagickTrue;
6195  for (i=0; i < (ssize_t) arc_segments; i++)
6196  {
6197  beta=0.5*((alpha+(i+1)*theta/arc_segments)-(alpha+i*theta/arc_segments));
6198  gamma=(8.0/3.0)*sin(fmod((double) (0.5*beta),DegreesToRadians(360.0)))*
6199  sin(fmod((double) (0.5*beta),DegreesToRadians(360.0)))/
6200  sin(fmod((double) beta,DegreesToRadians(360.0)));
6201  points[0].x=(double) (center.x+cos(fmod((double) (alpha+(double) i*theta/
6202  arc_segments),DegreesToRadians(360.0)))-gamma*sin(fmod((double) (alpha+
6203  (double) i*theta/arc_segments),DegreesToRadians(360.0))));
6204  points[0].y=(double) (center.y+sin(fmod((double) (alpha+(double) i*theta/
6205  arc_segments),DegreesToRadians(360.0)))+gamma*cos(fmod((double) (alpha+
6206  (double) i*theta/arc_segments),DegreesToRadians(360.0))));
6207  points[2].x=(double) (center.x+cos(fmod((double) (alpha+(double) (i+1)*
6208  theta/arc_segments),DegreesToRadians(360.0))));
6209  points[2].y=(double) (center.y+sin(fmod((double) (alpha+(double) (i+1)*
6210  theta/arc_segments),DegreesToRadians(360.0))));
6211  points[1].x=(double) (points[2].x+gamma*sin(fmod((double) (alpha+(double)
6212  (i+1)*theta/arc_segments),DegreesToRadians(360.0))));
6213  points[1].y=(double) (points[2].y-gamma*cos(fmod((double) (alpha+(double)
6214  (i+1)*theta/arc_segments),DegreesToRadians(360.0))));
6215  p->point.x=(p == primitive_info) ? start.x : (p-1)->point.x;
6216  p->point.y=(p == primitive_info) ? start.y : (p-1)->point.y;
6217  (p+1)->point.x=(double) (cosine*radii.x*points[0].x-sine*radii.y*
6218  points[0].y);
6219  (p+1)->point.y=(double) (sine*radii.x*points[0].x+cosine*radii.y*
6220  points[0].y);
6221  (p+2)->point.x=(double) (cosine*radii.x*points[1].x-sine*radii.y*
6222  points[1].y);
6223  (p+2)->point.y=(double) (sine*radii.x*points[1].x+cosine*radii.y*
6224  points[1].y);
6225  (p+3)->point.x=(double) (cosine*radii.x*points[2].x-sine*radii.y*
6226  points[2].y);
6227  (p+3)->point.y=(double) (sine*radii.x*points[2].x+cosine*radii.y*
6228  points[2].y);
6229  if (i == (ssize_t) (arc_segments-1))
6230  (p+3)->point=end;
6231  status&=TraceBezier(mvg_info,4);
6232  if (status == 0)
6233  break;
6234  p=(*mvg_info->primitive_info)+(ptrdiff_t) mvg_info->offset;
6235  mvg_info->offset+=p->coordinates;
6236  p+=(ptrdiff_t) p->coordinates;
6237  }
6238  if (status == 0)
6239  return(MagickFalse);
6240  mvg_info->offset=offset;
6241  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6242  primitive_info->coordinates=(size_t) (p-primitive_info);
6243  primitive_info->closed_subpath=MagickFalse;
6244  for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
6245  {
6246  p->primitive=primitive_info->primitive;
6247  p--;
6248  }
6249  return(MagickTrue);
6250 }
6251 
6252 static MagickBooleanType TraceBezier(MVGInfo *mvg_info,
6253  const size_t number_coordinates)
6254 {
6255  double
6256  alpha,
6257  *coefficients,
6258  weight;
6259 
6260  PointInfo
6261  end,
6262  point,
6263  *points;
6264 
6266  *primitive_info;
6267 
6269  *p;
6270 
6271  ssize_t
6272  i,
6273  j;
6274 
6275  size_t
6276  control_points,
6277  quantum;
6278 
6279  /*
6280  Allocate coefficients.
6281  */
6282  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6283  quantum=number_coordinates;
6284  for (i=0; i < (ssize_t) number_coordinates; i++)
6285  {
6286  for (j=i+1; j < (ssize_t) number_coordinates; j++)
6287  {
6288  alpha=fabs(primitive_info[j].point.x-primitive_info[i].point.x);
6289  if (alpha > (double) GetMaxMemoryRequest())
6290  {
6291  (void) ThrowMagickException(mvg_info->exception,GetMagickModule(),
6292  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
6293  return(MagickFalse);
6294  }
6295  if (alpha > (double) quantum)
6296  quantum=(size_t) alpha;
6297  alpha=fabs(primitive_info[j].point.y-primitive_info[i].point.y);
6298  if (alpha > (double) quantum)
6299  quantum=(size_t) alpha;
6300  }
6301  }
6302  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6303  quantum=MagickMin(quantum/number_coordinates,BezierQuantum);
6304  if (quantum > (double) GetMaxMemoryRequest())
6305  {
6306  (void) ThrowMagickException(mvg_info->exception,GetMagickModule(),
6307  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
6308  return(MagickFalse);
6309  }
6310  coefficients=(double *) AcquireQuantumMemory(number_coordinates,
6311  sizeof(*coefficients));
6312  points=(PointInfo *) AcquireQuantumMemory(quantum,number_coordinates*
6313  sizeof(*points));
6314  if ((coefficients == (double *) NULL) || (points == (PointInfo *) NULL))
6315  {
6316  if (points != (PointInfo *) NULL)
6317  points=(PointInfo *) RelinquishMagickMemory(points);
6318  if (coefficients != (double *) NULL)
6319  coefficients=(double *) RelinquishMagickMemory(coefficients);
6320  (void) ThrowMagickException(mvg_info->exception,GetMagickModule(),
6321  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
6322  return(MagickFalse);
6323  }
6324  control_points=quantum*number_coordinates;
6325  if (CheckPrimitiveExtent(mvg_info,(double) control_points+1) == MagickFalse)
6326  {
6327  points=(PointInfo *) RelinquishMagickMemory(points);
6328  coefficients=(double *) RelinquishMagickMemory(coefficients);
6329  return(MagickFalse);
6330  }
6331  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6332  /*
6333  Compute bezier points.
6334  */
6335  end=primitive_info[number_coordinates-1].point;
6336  for (i=0; i < (ssize_t) number_coordinates; i++)
6337  coefficients[i]=Permutate((ssize_t) number_coordinates-1,i);
6338  weight=0.0;
6339  for (i=0; i < (ssize_t) control_points; i++)
6340  {
6341  p=primitive_info;
6342  point.x=0.0;
6343  point.y=0.0;
6344  alpha=pow((double) (1.0-weight),(double) number_coordinates-1.0);
6345  for (j=0; j < (ssize_t) number_coordinates; j++)
6346  {
6347  point.x+=alpha*coefficients[j]*p->point.x;
6348  point.y+=alpha*coefficients[j]*p->point.y;
6349  alpha*=weight/(1.0-weight);
6350  p++;
6351  }
6352  points[i]=point;
6353  weight+=1.0/control_points;
6354  }
6355  /*
6356  Bezier curves are just short segmented polys.
6357  */
6358  p=primitive_info;
6359  for (i=0; i < (ssize_t) control_points; i++)
6360  {
6361  if (TracePoint(p,points[i]) == MagickFalse)
6362  {
6363  points=(PointInfo *) RelinquishMagickMemory(points);
6364  coefficients=(double *) RelinquishMagickMemory(coefficients);
6365  return(MagickFalse);
6366  }
6367  p+=(ptrdiff_t) p->coordinates;
6368  }
6369  if (TracePoint(p,end) == MagickFalse)
6370  {
6371  points=(PointInfo *) RelinquishMagickMemory(points);
6372  coefficients=(double *) RelinquishMagickMemory(coefficients);
6373  return(MagickFalse);
6374  }
6375  p+=(ptrdiff_t) p->coordinates;
6376  primitive_info->coordinates=(size_t) (p-primitive_info);
6377  primitive_info->closed_subpath=MagickFalse;
6378  for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
6379  {
6380  p->primitive=primitive_info->primitive;
6381  p--;
6382  }
6383  points=(PointInfo *) RelinquishMagickMemory(points);
6384  coefficients=(double *) RelinquishMagickMemory(coefficients);
6385  return(MagickTrue);
6386 }
6387 
6388 static MagickBooleanType TraceCircle(MVGInfo *mvg_info,const PointInfo start,
6389  const PointInfo end)
6390 {
6391  double
6392  alpha,
6393  beta,
6394  radius;
6395 
6396  PointInfo
6397  offset,
6398  degrees;
6399 
6400  alpha=end.x-start.x;
6401  beta=end.y-start.y;
6402  radius=hypot((double) alpha,(double) beta);
6403  offset.x=(double) radius;
6404  offset.y=(double) radius;
6405  degrees.x=0.0;
6406  degrees.y=360.0;
6407  return(TraceEllipse(mvg_info,start,offset,degrees));
6408 }
6409 
6410 static MagickBooleanType TraceEllipse(MVGInfo *mvg_info,const PointInfo center,
6411  const PointInfo radii,const PointInfo arc)
6412 {
6413  double
6414  coordinates,
6415  delta,
6416  step,
6417  x,
6418  y;
6419 
6420  PointInfo
6421  angle,
6422  point;
6423 
6425  *primitive_info;
6426 
6428  *p;
6429 
6430  ssize_t
6431  i;
6432 
6433  /*
6434  Ellipses are just short segmented polys.
6435  */
6436  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6437  primitive_info->coordinates=0;
6438  if ((fabs(radii.x) < MagickEpsilon) || (fabs(radii.y) < MagickEpsilon))
6439  return(MagickTrue);
6440  delta=MagickSafeReciprocal(MagickMax(radii.x,radii.y));
6441  step=MagickPI/(MagickPI*MagickSafeReciprocal(delta))/8.0;
6442  angle.x=DegreesToRadians(arc.x);
6443  y=arc.y;
6444  while (y < arc.x)
6445  y+=360.0;
6446  angle.y=DegreesToRadians(y);
6447  coordinates=ceil((angle.y-angle.x)/step+1.0);
6448  if (CheckPrimitiveExtent(mvg_info,coordinates+1) == MagickFalse)
6449  return(MagickFalse);
6450  i=0;
6451  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6452  for (p=primitive_info; angle.x < angle.y; angle.x+=step)
6453  {
6454  point.x=cos(fmod(angle.x,DegreesToRadians(360.0)))*radii.x+center.x;
6455  point.y=sin(fmod(angle.x,DegreesToRadians(360.0)))*radii.y+center.y;
6456  if (i++ >= (ssize_t) coordinates)
6457  break;
6458  if (TracePoint(p,point) == MagickFalse)
6459  return(MagickFalse);
6460  p+=(ptrdiff_t) p->coordinates;
6461  }
6462  point.x=cos(fmod(angle.y,DegreesToRadians(360.0)))*radii.x+center.x;
6463  point.y=sin(fmod(angle.y,DegreesToRadians(360.0)))*radii.y+center.y;
6464  if (TracePoint(p,point) == MagickFalse)
6465  return(MagickFalse);
6466  p+=(ptrdiff_t) p->coordinates;
6467  primitive_info->coordinates=(size_t) (p-primitive_info);
6468  primitive_info->closed_subpath=MagickFalse;
6469  x=fabs(primitive_info[0].point.x-
6470  primitive_info[primitive_info->coordinates-1].point.x);
6471  y=fabs(primitive_info[0].point.y-
6472  primitive_info[primitive_info->coordinates-1].point.y);
6473  if ((x < MagickEpsilon) && (y < MagickEpsilon))
6474  primitive_info->closed_subpath=MagickTrue;
6475  for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
6476  {
6477  p->primitive=primitive_info->primitive;
6478  p--;
6479  }
6480  return(MagickTrue);
6481 }
6482 
6483 static MagickBooleanType TraceLine(PrimitiveInfo *primitive_info,
6484  const PointInfo start,const PointInfo end)
6485 {
6486  if (TracePoint(primitive_info,start) == MagickFalse)
6487  return(MagickFalse);
6488  if (TracePoint(primitive_info+1,end) == MagickFalse)
6489  return(MagickFalse);
6490  (primitive_info+1)->primitive=primitive_info->primitive;
6491  primitive_info->coordinates=2;
6492  primitive_info->closed_subpath=MagickFalse;
6493  return(MagickTrue);
6494 }
6495 
6496 static ssize_t TracePath(Image *image,MVGInfo *mvg_info,const char *path)
6497 {
6498  char
6499  *next_token,
6500  token[MaxTextExtent] = "";
6501 
6502  const char
6503  *p;
6504 
6505  double
6506  x,
6507  y;
6508 
6509  int
6510  attribute,
6511  last_attribute;
6512 
6513  MagickStatusType
6514  status;
6515 
6516  PointInfo
6517  end = {0.0, 0.0},
6518  points[4] = { {0.0, 0.0}, {0.0, 0.0}, {0.0, 0.0}, {0.0, 0.0} },
6519  point = {0.0, 0.0},
6520  start = {0.0, 0.0};
6521 
6523  *primitive_info;
6524 
6525  PrimitiveType
6526  primitive_type;
6527 
6529  *q;
6530 
6531  ssize_t
6532  i;
6533 
6534  size_t
6535  number_coordinates,
6536  z_count;
6537 
6538  ssize_t
6539  subpath_offset;
6540 
6541  subpath_offset=mvg_info->offset;
6542  primitive_info=(*mvg_info->primitive_info)+mvg_info->offset;
6543  status=MagickTrue;
6544  attribute=0;
6545  number_coordinates=0;
6546  z_count=0;
6547  *token='\0';
6548  primitive_type=primitive_info->primitive;
6549  q=primitive_info;
6550  for (p=path; *p != '\0'; )
6551  {
6552  if (status == MagickFalse)
6553  break;
6554  while (isspace((int) ((unsigned char) *p)) != 0)
6555  p++;
6556  if (*p == '\0')
6557  break;
6558  last_attribute=attribute;
6559  attribute=(int) (*p++);
6560  switch (attribute)
6561  {
6562  case 'a':
6563  case 'A':
6564  {
6565  double
6566  angle = 0.0;
6567 
6568  MagickBooleanType
6569  large_arc = MagickFalse,
6570  sweep = MagickFalse;
6571 
6572  PointInfo
6573  arc = {0.0, 0.0};
6574 
6575  /*
6576  Elliptical arc.
6577  */
6578  do
6579  {
6580  (void) GetNextToken(p,&p,MaxTextExtent,token);
6581  if (*token == ',')
6582  (void) GetNextToken(p,&p,MaxTextExtent,token);
6583  arc.x=GetDrawValue(token,&next_token);
6584  if (token == next_token)
6585  ThrowPointExpectedException(image,token);
6586  (void) GetNextToken(p,&p,MaxTextExtent,token);
6587  if (*token == ',')
6588  (void) GetNextToken(p,&p,MaxTextExtent,token);
6589  arc.y=GetDrawValue(token,&next_token);
6590  if (token == next_token)
6591  ThrowPointExpectedException(image,token);
6592  (void) GetNextToken(p,&p,MaxTextExtent,token);
6593  if (*token == ',')
6594  (void) GetNextToken(p,&p,MaxTextExtent,token);
6595  angle=GetDrawValue(token,&next_token);
6596  if (token == next_token)
6597  ThrowPointExpectedException(image,token);
6598  (void) GetNextToken(p,&p,MaxTextExtent,token);
6599  if (*token == ',')
6600  (void) GetNextToken(p,&p,MaxTextExtent,token);
6601  large_arc=StringToLong(token) != 0 ? MagickTrue : MagickFalse;
6602  (void) GetNextToken(p,&p,MaxTextExtent,token);
6603  if (*token == ',')
6604  (void) GetNextToken(p,&p,MaxTextExtent,token);
6605  sweep=StringToLong(token) != 0 ? MagickTrue : MagickFalse;
6606  if (*token == ',')
6607  (void) GetNextToken(p,&p,MaxTextExtent,token);
6608  (void) GetNextToken(p,&p,MaxTextExtent,token);
6609  if (*token == ',')
6610  (void) GetNextToken(p,&p,MaxTextExtent,token);
6611  x=GetDrawValue(token,&next_token);
6612  if (token == next_token)
6613  ThrowPointExpectedException(image,token);
6614  (void) GetNextToken(p,&p,MaxTextExtent,token);
6615  if (*token == ',')
6616  (void) GetNextToken(p,&p,MaxTextExtent,token);
6617  y=GetDrawValue(token,&next_token);
6618  if (token == next_token)
6619  ThrowPointExpectedException(image,token);
6620  end.x=(double) (attribute == (int) 'A' ? x : point.x+x);
6621  end.y=(double) (attribute == (int) 'A' ? y : point.y+y);
6622  status&=TraceArcPath(mvg_info,point,end,arc,angle,large_arc,sweep);
6623  q=(*mvg_info->primitive_info)+mvg_info->offset;
6624  mvg_info->offset+=q->coordinates;
6625  q+=(ptrdiff_t) q->coordinates;
6626  point=end;
6627  while (isspace((int) ((unsigned char) *p)) != 0)
6628  p++;
6629  if (*p == ',')
6630  p++;
6631  } while (IsPoint(p) != MagickFalse);
6632  break;
6633  }
6634  case 'c':
6635  case 'C':
6636  {
6637  /*
6638  Cubic Bézier curve.
6639  */
6640  do
6641  {
6642  points[0]=point;
6643  for (i=1; i < 4; i++)
6644  {
6645  (void) GetNextToken(p,&p,MaxTextExtent,token);
6646  if (*token == ',')
6647  (void) GetNextToken(p,&p,MaxTextExtent,token);
6648  x=GetDrawValue(token,&next_token);
6649  if (token == next_token)
6650  ThrowPointExpectedException(image,token);
6651  (void) GetNextToken(p,&p,MaxTextExtent,token);
6652  if (*token == ',')
6653  (void) GetNextToken(p,&p,MaxTextExtent,token);
6654  y=GetDrawValue(token,&next_token);
6655  if (token == next_token)
6656  ThrowPointExpectedException(image,token);
6657  end.x=(double) (attribute == (int) 'C' ? x : point.x+x);
6658  end.y=(double) (attribute == (int) 'C' ? y : point.y+y);
6659  points[i]=end;
6660  }
6661  for (i=0; i < 4; i++)
6662  (q+i)->point=points[i];
6663  if (TraceBezier(mvg_info,4) == MagickFalse)
6664  return(-1);
6665  q=(*mvg_info->primitive_info)+mvg_info->offset;
6666  mvg_info->offset+=q->coordinates;
6667  q+=(ptrdiff_t) q->coordinates;
6668  point=end;
6669  while (isspace((int) ((unsigned char) *p)) != 0)
6670  p++;
6671  if (*p == ',')
6672  p++;
6673  } while (IsPoint(p) != MagickFalse);
6674  break;
6675  }
6676  case 'H':
6677  case 'h':
6678  {
6679  do
6680  {
6681  (void) GetNextToken(p,&p,MaxTextExtent,token);
6682  if (*token == ',')
6683  (void) GetNextToken(p,&p,MaxTextExtent,token);
6684  x=GetDrawValue(token,&next_token);
6685  if (token == next_token)
6686  ThrowPointExpectedException(image,token);
6687  point.x=(double) (attribute == (int) 'H' ? x: point.x+x);
6688  if (CheckPrimitiveExtent(mvg_info,PrimitiveExtentPad) == MagickFalse)
6689  return(-1);
6690  q=(*mvg_info->primitive_info)+mvg_info->offset;
6691  if (TracePoint(q,point) == MagickFalse)
6692  return(-1);
6693  mvg_info->offset+=q->coordinates;
6694  q+=(ptrdiff_t) q->coordinates;
6695  while (isspace((int) ((unsigned char) *p)) != 0)
6696  p++;
6697  if (*p == ',')
6698  p++;
6699  } while (IsPoint(p) != MagickFalse);
6700  break;
6701  }
6702  case 'l':
6703  case 'L':
6704  {
6705  /*
6706  Line to.
6707  */
6708  do
6709  {
6710  (void) GetNextToken(p,&p,MaxTextExtent,token);
6711  if (*token == ',')
6712  (void) GetNextToken(p,&p,MaxTextExtent,token);
6713  x=GetDrawValue(token,&next_token);
6714  if (token == next_token)
6715  ThrowPointExpectedException(image,token);
6716  (void) GetNextToken(p,&p,MaxTextExtent,token);
6717  if (*token == ',')
6718  (void) GetNextToken(p,&p,MaxTextExtent,token);
6719  y=GetDrawValue(token,&next_token);
6720  if (token == next_token)
6721  ThrowPointExpectedException(image,token);
6722  point.x=(double) (attribute == (int) 'L' ? x : point.x+x);
6723  point.y=(double) (attribute == (int) 'L' ? y : point.y+y);
6724  if (CheckPrimitiveExtent(mvg_info,PrimitiveExtentPad) == MagickFalse)
6725  return(-1);
6726  q=(*mvg_info->primitive_info)+mvg_info->offset;
6727  if (TracePoint(q,point) == MagickFalse)
6728  return(-1);
6729  mvg_info->offset+=q->coordinates;
6730  q+=(ptrdiff_t) q->coordinates;
6731  while (isspace((int) ((unsigned char) *p)) != 0)
6732  p++;
6733  if (*p == ',')
6734  p++;
6735  } while (IsPoint(p) != MagickFalse);
6736  break;
6737  }
6738  case 'M':
6739  case 'm':
6740  {
6741  /*
6742  Move to.
6743  */
6744  if (mvg_info->offset != subpath_offset)
6745  {
6746  primitive_info=(*mvg_info->primitive_info)+subpath_offset;
6747  primitive_info->coordinates=(size_t) (q-primitive_info);
6748  number_coordinates+=primitive_info->coordinates;
6749  primitive_info=q;
6750  subpath_offset=mvg_info->offset;
6751  }
6752  i=0;
6753  do
6754  {
6755  (void) GetNextToken(p,&p,MaxTextExtent,token);
6756  if (*token == ',')
6757  (void) GetNextToken(p,&p,MaxTextExtent,token);
6758  x=GetDrawValue(token,&next_token);
6759  if (token == next_token)
6760  ThrowPointExpectedException(image,token);
6761  (void) GetNextToken(p,&p,MaxTextExtent,token);
6762  if (*token == ',')
6763  (void) GetNextToken(p,&p,MaxTextExtent,token);
6764  y=GetDrawValue(token,&next_token);
6765  if (token == next_token)
6766  ThrowPointExpectedException(image,token);
6767  point.x=(double) (attribute == (int) 'M' ? x : point.x+x);
6768  point.y=(double) (attribute == (int) 'M' ? y : point.y+y);
6769  if (i == 0)
6770  start=point;
6771  i++;
6772  if (CheckPrimitiveExtent(mvg_info,PrimitiveExtentPad) == MagickFalse)
6773  return(-1);
6774  q=(*mvg_info->primitive_info)+mvg_info->offset;
6775  if (TracePoint(q,point) == MagickFalse)
6776  return(-1);
6777  mvg_info->offset+=q->coordinates;
6778  q+=(ptrdiff_t) q->coordinates;
6779  while (isspace((int) ((unsigned char) *p)) != 0)
6780  p++;
6781  if (*p == ',')
6782  p++;
6783  } while (IsPoint(p) != MagickFalse);
6784  break;
6785  }
6786  case 'q':
6787  case 'Q':
6788  {
6789  /*
6790  Quadratic Bézier curve.
6791  */
6792  do
6793  {
6794  points[0]=point;
6795  for (i=1; i < 3; i++)
6796  {
6797  (void) GetNextToken(p,&p,MaxTextExtent,token);
6798  if (*token == ',')
6799  (void) GetNextToken(p,&p,MaxTextExtent,token);
6800  x=GetDrawValue(token,&next_token);
6801  if (token == next_token)
6802  ThrowPointExpectedException(image,token);
6803  (void) GetNextToken(p,&p,MaxTextExtent,token);
6804  if (*token == ',')
6805  (void) GetNextToken(p,&p,MaxTextExtent,token);
6806  y=GetDrawValue(token,&next_token);
6807  if (token == next_token)
6808  ThrowPointExpectedException(image,token);
6809  if (*p == ',')
6810  p++;
6811  end.x=(double) (attribute == (int) 'Q' ? x : point.x+x);
6812  end.y=(double) (attribute == (int) 'Q' ? y : point.y+y);
6813  points[i]=end;
6814  }
6815  for (i=0; i < 3; i++)
6816  (q+i)->point=points[i];
6817  if (TraceBezier(mvg_info,3) == MagickFalse)
6818  return(-1);
6819  q=(*mvg_info->primitive_info)+mvg_info->offset;
6820  mvg_info->offset+=q->coordinates;
6821  q+=(ptrdiff_t) q->coordinates;
6822  point=end;
6823  while (isspace((int) ((unsigned char) *p)) != 0)
6824  p++;
6825  if (*p == ',')
6826  p++;
6827  } while (IsPoint(p) != MagickFalse);
6828  break;
6829  }
6830  case 's':
6831  case 'S':
6832  {
6833  /*
6834  Cubic Bézier curve.
6835  */
6836  do
6837  {
6838  points[0]=points[3];
6839  points[1].x=2.0*points[3].x-points[2].x;
6840  points[1].y=2.0*points[3].y-points[2].y;
6841  for (i=2; i < 4; i++)
6842  {
6843  (void) GetNextToken(p,&p,MaxTextExtent,token);
6844  if (*token == ',')
6845  (void) GetNextToken(p,&p,MaxTextExtent,token);
6846  x=GetDrawValue(token,&next_token);
6847  if (token == next_token)
6848  ThrowPointExpectedException(image,token);
6849  (void) GetNextToken(p,&p,MaxTextExtent,token);
6850  if (*token == ',')
6851  (void) GetNextToken(p,&p,MaxTextExtent,token);
6852  y=GetDrawValue(token,&next_token);
6853  if (token == next_token)
6854  ThrowPointExpectedException(image,token);
6855  if (*p == ',')
6856  p++;
6857  end.x=(double) (attribute == (int) 'S' ? x : point.x+x);
6858  end.y=(double) (attribute == (int) 'S' ? y : point.y+y);
6859  points[i]=end;
6860  }
6861  if (strchr("CcSs",last_attribute) == (char *) NULL)
6862  {
6863  points[0]=point;
6864  points[1]=point;
6865  }
6866  for (i=0; i < 4; i++)
6867  (q+i)->point=points[i];
6868  if (TraceBezier(mvg_info,4) == MagickFalse)
6869  return(-1);
6870  q=(*mvg_info->primitive_info)+mvg_info->offset;
6871  mvg_info->offset+=q->coordinates;
6872  q+=(ptrdiff_t) q->coordinates;
6873  point=end;
6874  last_attribute=attribute;
6875  while (isspace((int) ((unsigned char) *p)) != 0)
6876  p++;
6877  if (*p == ',')
6878  p++;
6879  } while (IsPoint(p) != MagickFalse);
6880  break;
6881  }
6882  case 't':
6883  case 'T':
6884  {
6885  /*
6886  Quadratic Bézier curve.
6887  */
6888  do
6889  {
6890  points[0]=points[2];
6891  points[1].x=2.0*points[2].x-points[1].x;
6892  points[1].y=2.0*points[2].y-points[1].y;
6893  for (i=2; i < 3; i++)
6894  {
6895  (void) GetNextToken(p,&p,MaxTextExtent,token);
6896  if (*token == ',')
6897  (void) GetNextToken(p,&p,MaxTextExtent,token);
6898  x=GetDrawValue(token,&next_token);
6899  if (token == next_token)
6900  ThrowPointExpectedException(image,token);
6901  (void) GetNextToken(p,&p,MaxTextExtent,token);
6902  if (*token == ',')
6903  (void) GetNextToken(p,&p,MaxTextExtent,token);
6904  y=GetDrawValue(token,&next_token);
6905  if (token == next_token)
6906  ThrowPointExpectedException(image,token);
6907  end.x=(double) (attribute == (int) 'T' ? x : point.x+x);
6908  end.y=(double) (attribute == (int) 'T' ? y : point.y+y);
6909  points[i]=end;
6910  }
6911  if (status == MagickFalse)
6912  break;
6913  if (strchr("QqTt",last_attribute) == (char *) NULL)
6914  {
6915  points[0]=point;
6916  points[1]=point;
6917  }
6918  for (i=0; i < 3; i++)
6919  (q+i)->point=points[i];
6920  if (TraceBezier(mvg_info,3) == MagickFalse)
6921  return(-1);
6922  q=(*mvg_info->primitive_info)+mvg_info->offset;
6923  mvg_info->offset+=q->coordinates;
6924  q+=(ptrdiff_t) q->coordinates;
6925  point=end;
6926  last_attribute=attribute;
6927  while (isspace((int) ((unsigned char) *p)) != 0)
6928  p++;
6929  if (*p == ',')
6930  p++;
6931  } while (IsPoint(p) != MagickFalse);
6932  break;
6933  }
6934  case 'v':
6935  case 'V':
6936  {
6937  /*
6938  Line to.
6939  */
6940  do
6941  {
6942  (void) GetNextToken(p,&p,MaxTextExtent,token);
6943  if (*token == ',')
6944  (void) GetNextToken(p,&p,MaxTextExtent,token);
6945  y=GetDrawValue(token,&next_token);
6946  if (token == next_token)
6947  ThrowPointExpectedException(image,token);
6948  point.y=(double) (attribute == (int) 'V' ? y : point.y+y);
6949  if (CheckPrimitiveExtent(mvg_info,PrimitiveExtentPad) == MagickFalse)
6950  return(-1);
6951  q=(*mvg_info->primitive_info)+mvg_info->offset;
6952  if (TracePoint(q,point) == MagickFalse)
6953  return(-1);
6954  mvg_info->offset+=q->coordinates;
6955  q+=(ptrdiff_t) q->coordinates;
6956  while (isspace((int) ((unsigned char) *p)) != 0)
6957  p++;
6958  if (*p == ',')
6959  p++;
6960  } while (IsPoint(p) != MagickFalse);
6961  break;
6962  }
6963  case 'z':
6964  case 'Z':
6965  {
6966  /*
6967  Close path.
6968  */
6969  point=start;
6970  if (CheckPrimitiveExtent(mvg_info,PrimitiveExtentPad) == MagickFalse)
6971  return(-1);
6972  q=(*mvg_info->primitive_info)+mvg_info->offset;
6973  if (TracePoint(q,point) == MagickFalse)
6974  return(-1);
6975  mvg_info->offset+=q->coordinates;
6976  q+=(ptrdiff_t) q->coordinates;
6977  primitive_info=(*mvg_info->primitive_info)+subpath_offset;
6978  primitive_info->coordinates=(size_t) (q-primitive_info);
6979  primitive_info->closed_subpath=MagickTrue;
6980  number_coordinates+=primitive_info->coordinates;
6981  primitive_info=q;
6982  subpath_offset=mvg_info->offset;
6983  z_count++;
6984  break;
6985  }
6986  default:
6987  {
6988  ThrowPointExpectedException(image,token);
6989  break;
6990  }
6991  }
6992  }
6993  if (status == MagickFalse)
6994  return(-1);
6995  primitive_info=(*mvg_info->primitive_info)+subpath_offset;
6996  primitive_info->coordinates=(size_t) (q-primitive_info);
6997  number_coordinates+=primitive_info->coordinates;
6998  for (i=0; i < (ssize_t) number_coordinates; i++)
6999  {
7000  q--;
7001  q->primitive=primitive_type;
7002  if (z_count > 1)
7003  q->method=FillToBorderMethod;
7004  }
7005  q=primitive_info;
7006  return((ssize_t) number_coordinates);
7007 }
7008 
7009 static MagickBooleanType TraceRectangle(PrimitiveInfo *primitive_info,
7010  const PointInfo start,const PointInfo end)
7011 {
7012  PointInfo
7013  point;
7014 
7016  *p;
7017 
7018  ssize_t
7019  i;
7020 
7021  p=primitive_info;
7022  if (TracePoint(p,start) == MagickFalse)
7023  return(MagickFalse);
7024  p+=(ptrdiff_t) p->coordinates;
7025  point.x=start.x;
7026  point.y=end.y;
7027  if (TracePoint(p,point) == MagickFalse)
7028  return(MagickFalse);
7029  p+=(ptrdiff_t) p->coordinates;
7030  if (TracePoint(p,end) == MagickFalse)
7031  return(MagickFalse);
7032  p+=(ptrdiff_t) p->coordinates;
7033  point.x=end.x;
7034  point.y=start.y;
7035  if (TracePoint(p,point) == MagickFalse)
7036  return(MagickFalse);
7037  p+=(ptrdiff_t) p->coordinates;
7038  if (TracePoint(p,start) == MagickFalse)
7039  return(MagickFalse);
7040  p+=(ptrdiff_t) p->coordinates;
7041  primitive_info->coordinates=(size_t) (p-primitive_info);
7042  primitive_info->closed_subpath=MagickTrue;
7043  for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
7044  {
7045  p->primitive=primitive_info->primitive;
7046  p--;
7047  }
7048  return(MagickTrue);
7049 }
7050 
7051 static MagickBooleanType TraceRoundRectangle(MVGInfo *mvg_info,
7052  const PointInfo start,const PointInfo end,PointInfo arc)
7053 {
7054  PointInfo
7055  degrees,
7056  point,
7057  segment;
7058 
7060  *primitive_info;
7061 
7063  *p;
7064 
7065  ssize_t
7066  i;
7067 
7068  ssize_t
7069  offset;
7070 
7071  offset=mvg_info->offset;
7072  segment.x=fabs(end.x-start.x);
7073  segment.y=fabs(end.y-start.y);
7074  if ((segment.x < MagickEpsilon) || (segment.y < MagickEpsilon))
7075  {
7076  (*mvg_info->primitive_info+mvg_info->offset)->coordinates=0;
7077  return(MagickTrue);
7078  }
7079  if (arc.x > (0.5*segment.x))
7080  arc.x=0.5*segment.x;
7081  if (arc.y > (0.5*segment.y))
7082  arc.y=0.5*segment.y;
7083  point.x=start.x+segment.x-arc.x;
7084  point.y=start.y+arc.y;
7085  degrees.x=270.0;
7086  degrees.y=360.0;
7087  if (TraceEllipse(mvg_info,point,arc,degrees) == MagickFalse)
7088  return(MagickFalse);
7089  p=(*mvg_info->primitive_info)+(ptrdiff_t) mvg_info->offset;
7090  mvg_info->offset+=p->coordinates;
7091  point.x=start.x+segment.x-arc.x;
7092  point.y=start.y+segment.y-arc.y;
7093  degrees.x=0.0;
7094  degrees.y=90.0;
7095  if (TraceEllipse(mvg_info,point,arc,degrees) == MagickFalse)
7096  return(MagickFalse);
7097  p=(*mvg_info->primitive_info)+(ptrdiff_t) mvg_info->offset;
7098  mvg_info->offset+=p->coordinates;
7099  point.x=start.x+arc.x;
7100  point.y=start.y+segment.y-arc.y;
7101  degrees.x=90.0;
7102  degrees.y=180.0;
7103  if (TraceEllipse(mvg_info,point,arc,degrees) == MagickFalse)
7104  return(MagickFalse);
7105  p=(*mvg_info->primitive_info)+(ptrdiff_t) mvg_info->offset;
7106  mvg_info->offset+=p->coordinates;
7107  point.x=start.x+arc.x;
7108  point.y=start.y+arc.y;
7109  degrees.x=180.0;
7110  degrees.y=270.0;
7111  if (TraceEllipse(mvg_info,point,arc,degrees) == MagickFalse)
7112  return(MagickFalse);
7113  p=(*mvg_info->primitive_info)+(ptrdiff_t) mvg_info->offset;
7114  mvg_info->offset+=p->coordinates;
7115  if (CheckPrimitiveExtent(mvg_info,PrimitiveExtentPad) == MagickFalse)
7116  return(MagickFalse);
7117  p=(*mvg_info->primitive_info)+(ptrdiff_t) mvg_info->offset;
7118  if (TracePoint(p,(*mvg_info->primitive_info+offset)->point) == MagickFalse)
7119  return(MagickFalse);
7120  p+=(ptrdiff_t) p->coordinates;
7121  mvg_info->offset=offset;
7122  primitive_info=(*mvg_info->primitive_info)+offset;
7123  primitive_info->coordinates=(size_t) (p-primitive_info);
7124  primitive_info->closed_subpath=MagickTrue;
7125  for (i=0; i < (ssize_t) primitive_info->coordinates; i++)
7126  {
7127  p->primitive=primitive_info->primitive;
7128  p--;
7129  }
7130  return(MagickTrue);
7131 }
7132 
7133 static MagickBooleanType TraceSquareLinecap(PrimitiveInfo *primitive_info,
7134  const size_t number_vertices,const double offset)
7135 {
7136  double
7137  distance;
7138 
7139  double
7140  dx,
7141  dy;
7142 
7143  ssize_t
7144  i;
7145 
7146  ssize_t
7147  j;
7148 
7149  dx=0.0;
7150  dy=0.0;
7151  for (i=1; i < (ssize_t) number_vertices; i++)
7152  {
7153  dx=primitive_info[0].point.x-primitive_info[i].point.x;
7154  dy=primitive_info[0].point.y-primitive_info[i].point.y;
7155  if ((fabs((double) dx) >= MagickEpsilon) ||
7156  (fabs((double) dy) >= MagickEpsilon))
7157  break;
7158  }
7159  if (i == (ssize_t) number_vertices)
7160  i=(ssize_t) number_vertices-1L;
7161  distance=hypot((double) dx,(double) dy);
7162  primitive_info[0].point.x=(double) (primitive_info[i].point.x+
7163  dx*(distance+offset)/distance);
7164  primitive_info[0].point.y=(double) (primitive_info[i].point.y+
7165  dy*(distance+offset)/distance);
7166  for (j=(ssize_t) number_vertices-2; j >= 0; j--)
7167  {
7168  dx=primitive_info[number_vertices-1].point.x-primitive_info[j].point.x;
7169  dy=primitive_info[number_vertices-1].point.y-primitive_info[j].point.y;
7170  if ((fabs((double) dx) >= MagickEpsilon) ||
7171  (fabs((double) dy) >= MagickEpsilon))
7172  break;
7173  }
7174  distance=hypot((double) dx,(double) dy);
7175  primitive_info[number_vertices-1].point.x=(double) (primitive_info[j].point.x+
7176  dx*(distance+offset)/distance);
7177  primitive_info[number_vertices-1].point.y=(double) (primitive_info[j].point.y+
7178  dy*(distance+offset)/distance);
7179  return(MagickTrue);
7180 }
7181 
7182 static PrimitiveInfo *TraceStrokePolygon(const DrawInfo *draw_info,
7183  const PrimitiveInfo *primitive_info,ExceptionInfo *exception)
7184 {
7185 #define MaxStrokePad (6*BezierQuantum+360)
7186 #define CheckPathExtent(pad_p,pad_q) \
7187 { \
7188  if ((pad_p) > MaxBezierCoordinates) \
7189  stroke_p=(PointInfo *) RelinquishMagickMemory(stroke_p); \
7190  else \
7191  if ((ssize_t) (p+(pad_p)) >= (ssize_t) extent_p) \
7192  { \
7193  if (~extent_p < (pad_p)) \
7194  stroke_p=(PointInfo *) RelinquishMagickMemory(stroke_p); \
7195  else \
7196  { \
7197  extent_p+=(pad_p); \
7198  stroke_p=(PointInfo *) ResizeQuantumMemory(stroke_p,extent_p+ \
7199  MaxStrokePad,sizeof(*stroke_p)); \
7200  } \
7201  } \
7202  if ((pad_q) > MaxBezierCoordinates) \
7203  stroke_q=(PointInfo *) RelinquishMagickMemory(stroke_q); \
7204  else \
7205  if ((ssize_t) (q+(pad_q)) >= (ssize_t) extent_q) \
7206  { \
7207  if (~extent_q < (pad_q)) \
7208  stroke_q=(PointInfo *) RelinquishMagickMemory(stroke_q); \
7209  else \
7210  { \
7211  extent_q+=(pad_q); \
7212  stroke_q=(PointInfo *) ResizeQuantumMemory(stroke_q,extent_q+ \
7213  MaxStrokePad,sizeof(*stroke_q)); \
7214  } \
7215  } \
7216  if ((stroke_p == (PointInfo *) NULL) || (stroke_q == (PointInfo *) NULL)) \
7217  { \
7218  if (stroke_p != (PointInfo *) NULL) \
7219  stroke_p=(PointInfo *) RelinquishMagickMemory(stroke_p); \
7220  if (stroke_q != (PointInfo *) NULL) \
7221  stroke_q=(PointInfo *) RelinquishMagickMemory(stroke_q); \
7222  polygon_primitive=(PrimitiveInfo *) \
7223  RelinquishMagickMemory(polygon_primitive); \
7224  (void) ThrowMagickException(exception,GetMagickModule(), \
7225  ResourceLimitError,"MemoryAllocationFailed","`%s'",""); \
7226  return((PrimitiveInfo *) NULL); \
7227  } \
7228 }
7229 
7230  typedef struct _StrokeSegment
7231  {
7232  double
7233  p,
7234  q;
7235  } StrokeSegment;
7236 
7237  double
7238  delta_theta,
7239  dot_product,
7240  mid,
7241  miterlimit;
7242 
7243  MagickBooleanType
7244  closed_path;
7245 
7246  PointInfo
7247  box_p[5],
7248  box_q[5],
7249  center,
7250  offset,
7251  *stroke_p,
7252  *stroke_q;
7253 
7255  *polygon_primitive,
7256  *stroke_polygon;
7257 
7258  ssize_t
7259  i;
7260 
7261  size_t
7262  arc_segments,
7263  extent_p,
7264  extent_q,
7265  number_vertices;
7266 
7267  ssize_t
7268  j,
7269  n,
7270  p,
7271  q;
7272 
7273  StrokeSegment
7274  dx = {0.0, 0.0},
7275  dy = {0.0, 0.0},
7276  inverse_slope = {0.0, 0.0},
7277  slope = {0.0, 0.0},
7278  theta = {0.0, 0.0};
7279 
7280  /*
7281  Allocate paths.
7282  */
7283  number_vertices=primitive_info->coordinates;
7284  polygon_primitive=(PrimitiveInfo *) AcquireQuantumMemory((size_t)
7285  number_vertices+2UL,sizeof(*polygon_primitive));
7286  if (polygon_primitive == (PrimitiveInfo *) NULL)
7287  {
7288  (void) ThrowMagickException(exception,GetMagickModule(),
7289  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
7290  return((PrimitiveInfo *) NULL);
7291  }
7292  (void) memcpy(polygon_primitive,primitive_info,(size_t) number_vertices*
7293  sizeof(*polygon_primitive));
7294  offset.x=primitive_info[number_vertices-1].point.x-primitive_info[0].point.x;
7295  offset.y=primitive_info[number_vertices-1].point.y-primitive_info[0].point.y;
7296  closed_path=(fabs(offset.x) < MagickEpsilon) &&
7297  (fabs(offset.y) < MagickEpsilon) ? MagickTrue : MagickFalse;
7298  if ((draw_info->linejoin == MiterJoin) ||
7299  ((draw_info->linejoin == RoundJoin) && (closed_path != MagickFalse)))
7300  {
7301  polygon_primitive[number_vertices]=primitive_info[1];
7302  number_vertices++;
7303  }
7304  polygon_primitive[number_vertices].primitive=UndefinedPrimitive;
7305  /*
7306  Compute the slope for the first line segment, p.
7307  */
7308  closed_path=primitive_info[0].closed_subpath;
7309  dx.p=0.0;
7310  dy.p=0.0;
7311  for (n=1; n < (ssize_t) number_vertices; n++)
7312  {
7313  dx.p=polygon_primitive[n].point.x-polygon_primitive[0].point.x;
7314  dy.p=polygon_primitive[n].point.y-polygon_primitive[0].point.y;
7315  if ((fabs(dx.p) >= MagickEpsilon) || (fabs(dy.p) >= MagickEpsilon))
7316  break;
7317  }
7318  if (n == (ssize_t) number_vertices)
7319  {
7320  if ((draw_info->linecap != RoundCap) || (closed_path != MagickFalse))
7321  {
7322  /*
7323  Zero length subpath.
7324  */
7325  stroke_polygon=(PrimitiveInfo *) AcquireCriticalMemory(
7326  sizeof(*stroke_polygon));
7327  stroke_polygon[0]=polygon_primitive[0];
7328  stroke_polygon[0].coordinates=0;
7329  polygon_primitive=(PrimitiveInfo *) RelinquishMagickMemory(
7330  polygon_primitive);
7331  return(stroke_polygon);
7332  }
7333  n=(ssize_t) number_vertices-1L;
7334  }
7335  extent_p=2*number_vertices;
7336  extent_q=2*number_vertices;
7337  stroke_p=(PointInfo *) AcquireQuantumMemory((size_t) extent_p+MaxStrokePad,
7338  sizeof(*stroke_p));
7339  stroke_q=(PointInfo *) AcquireQuantumMemory((size_t) extent_q+MaxStrokePad,
7340  sizeof(*stroke_q));
7341  if ((stroke_p == (PointInfo *) NULL) || (stroke_q == (PointInfo *) NULL))
7342  {
7343  if (stroke_p != (PointInfo *) NULL)
7344  stroke_p=(PointInfo *) RelinquishMagickMemory(stroke_p);
7345  if (stroke_q != (PointInfo *) NULL)
7346  stroke_q=(PointInfo *) RelinquishMagickMemory(stroke_q);
7347  polygon_primitive=(PrimitiveInfo *)
7348  RelinquishMagickMemory(polygon_primitive);
7349  (void) ThrowMagickException(exception,GetMagickModule(),
7350  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
7351  return((PrimitiveInfo *) NULL);
7352  }
7353  slope.p=0.0;
7354  inverse_slope.p=0.0;
7355  if (fabs(dx.p) < MagickEpsilon)
7356  {
7357  if (dx.p >= 0.0)
7358  slope.p=dy.p < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
7359  else
7360  slope.p=dy.p < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
7361  }
7362  else
7363  if (fabs(dy.p) < MagickEpsilon)
7364  {
7365  if (dy.p >= 0.0)
7366  inverse_slope.p=dx.p < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
7367  else
7368  inverse_slope.p=dx.p < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
7369  }
7370  else
7371  {
7372  slope.p=dy.p/dx.p;
7373  inverse_slope.p=(-1.0*MagickSafeReciprocal(slope.p));
7374  }
7375  mid=ExpandAffine(&draw_info->affine)*draw_info->stroke_width/2.0;
7376  miterlimit=(double) (draw_info->miterlimit*draw_info->miterlimit*mid*mid);
7377  if ((draw_info->linecap == SquareCap) && (closed_path == MagickFalse))
7378  (void) TraceSquareLinecap(polygon_primitive,number_vertices,mid);
7379  offset.x=sqrt((double) (mid*mid/(inverse_slope.p*inverse_slope.p+1.0)));
7380  offset.y=(double) (offset.x*inverse_slope.p);
7381  if ((dy.p*offset.x-dx.p*offset.y) > 0.0)
7382  {
7383  box_p[0].x=polygon_primitive[0].point.x-offset.x;
7384  box_p[0].y=polygon_primitive[0].point.y-offset.x*inverse_slope.p;
7385  box_p[1].x=polygon_primitive[n].point.x-offset.x;
7386  box_p[1].y=polygon_primitive[n].point.y-offset.x*inverse_slope.p;
7387  box_q[0].x=polygon_primitive[0].point.x+offset.x;
7388  box_q[0].y=polygon_primitive[0].point.y+offset.x*inverse_slope.p;
7389  box_q[1].x=polygon_primitive[n].point.x+offset.x;
7390  box_q[1].y=polygon_primitive[n].point.y+offset.x*inverse_slope.p;
7391  }
7392  else
7393  {
7394  box_p[0].x=polygon_primitive[0].point.x+offset.x;
7395  box_p[0].y=polygon_primitive[0].point.y+offset.y;
7396  box_p[1].x=polygon_primitive[n].point.x+offset.x;
7397  box_p[1].y=polygon_primitive[n].point.y+offset.y;
7398  box_q[0].x=polygon_primitive[0].point.x-offset.x;
7399  box_q[0].y=polygon_primitive[0].point.y-offset.y;
7400  box_q[1].x=polygon_primitive[n].point.x-offset.x;
7401  box_q[1].y=polygon_primitive[n].point.y-offset.y;
7402  }
7403  /*
7404  Create strokes for the line join attribute: bevel, miter, round.
7405  */
7406  p=0;
7407  q=0;
7408  stroke_q[p++]=box_q[0];
7409  stroke_p[q++]=box_p[0];
7410  for (i=(ssize_t) n+1; i < (ssize_t) number_vertices; i++)
7411  {
7412  /*
7413  Compute the slope for this line segment, q.
7414  */
7415  dx.q=polygon_primitive[i].point.x-polygon_primitive[n].point.x;
7416  dy.q=polygon_primitive[i].point.y-polygon_primitive[n].point.y;
7417  dot_product=dx.q*dx.q+dy.q*dy.q;
7418  if (dot_product < 0.25)
7419  continue;
7420  slope.q=0.0;
7421  inverse_slope.q=0.0;
7422  if (fabs(dx.q) < MagickEpsilon)
7423  {
7424  if (dx.q >= 0.0)
7425  slope.q=dy.q < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
7426  else
7427  slope.q=dy.q < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
7428  }
7429  else
7430  if (fabs(dy.q) < MagickEpsilon)
7431  {
7432  if (dy.q >= 0.0)
7433  inverse_slope.q=dx.q < 0.0 ? -1.0/MagickEpsilon : 1.0/MagickEpsilon;
7434  else
7435  inverse_slope.q=dx.q < 0.0 ? 1.0/MagickEpsilon : -1.0/MagickEpsilon;
7436  }
7437  else
7438  {
7439  slope.q=dy.q/dx.q;
7440  inverse_slope.q=(-1.0*MagickSafeReciprocal(slope.q));
7441  }
7442  offset.x=sqrt((double) (mid*mid/(inverse_slope.q*inverse_slope.q+1.0)));
7443  offset.y=(double) (offset.x*inverse_slope.q);
7444  dot_product=dy.q*offset.x-dx.q*offset.y;
7445  if (dot_product > 0.0)
7446  {
7447  box_p[2].x=polygon_primitive[n].point.x-offset.x;
7448  box_p[2].y=polygon_primitive[n].point.y-offset.y;
7449  box_p[3].x=polygon_primitive[i].point.x-offset.x;
7450  box_p[3].y=polygon_primitive[i].point.y-offset.y;
7451  box_q[2].x=polygon_primitive[n].point.x+offset.x;
7452  box_q[2].y=polygon_primitive[n].point.y+offset.y;
7453  box_q[3].x=polygon_primitive[i].point.x+offset.x;
7454  box_q[3].y=polygon_primitive[i].point.y+offset.y;
7455  }
7456  else
7457  {
7458  box_p[2].x=polygon_primitive[n].point.x+offset.x;
7459  box_p[2].y=polygon_primitive[n].point.y+offset.y;
7460  box_p[3].x=polygon_primitive[i].point.x+offset.x;
7461  box_p[3].y=polygon_primitive[i].point.y+offset.y;
7462  box_q[2].x=polygon_primitive[n].point.x-offset.x;
7463  box_q[2].y=polygon_primitive[n].point.y-offset.y;
7464  box_q[3].x=polygon_primitive[i].point.x-offset.x;
7465  box_q[3].y=polygon_primitive[i].point.y-offset.y;
7466  }
7467  if (fabs((double) (slope.p-slope.q)) < MagickEpsilon)
7468  {
7469  box_p[4]=box_p[1];
7470  box_q[4]=box_q[1];
7471  }
7472  else
7473  {
7474  box_p[4].x=(double) ((slope.p*box_p[0].x-box_p[0].y-slope.q*box_p[3].x+
7475  box_p[3].y)/(slope.p-slope.q));
7476  box_p[4].y=(double) (slope.p*(box_p[4].x-box_p[0].x)+box_p[0].y);
7477  box_q[4].x=(double) ((slope.p*box_q[0].x-box_q[0].y-slope.q*box_q[3].x+
7478  box_q[3].y)/(slope.p-slope.q));
7479  box_q[4].y=(double) (slope.p*(box_q[4].x-box_q[0].x)+box_q[0].y);
7480  }
7481  CheckPathExtent(MaxStrokePad,MaxStrokePad);
7482  dot_product=dx.q*dy.p-dx.p*dy.q;
7483  if (dot_product <= 0.0)
7484  switch (draw_info->linejoin)
7485  {
7486  case BevelJoin:
7487  {
7488  stroke_q[q++]=box_q[1];
7489  stroke_q[q++]=box_q[2];
7490  dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
7491  (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
7492  if (dot_product <= miterlimit)
7493  stroke_p[p++]=box_p[4];
7494  else
7495  {
7496  stroke_p[p++]=box_p[1];
7497  stroke_p[p++]=box_p[2];
7498  }
7499  break;
7500  }
7501  case MiterJoin:
7502  {
7503  dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
7504  (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
7505  if (dot_product <= miterlimit)
7506  {
7507  stroke_q[q++]=box_q[4];
7508  stroke_p[p++]=box_p[4];
7509  }
7510  else
7511  {
7512  stroke_q[q++]=box_q[1];
7513  stroke_q[q++]=box_q[2];
7514  stroke_p[p++]=box_p[1];
7515  stroke_p[p++]=box_p[2];
7516  }
7517  break;
7518  }
7519  case RoundJoin:
7520  {
7521  dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
7522  (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
7523  if (dot_product <= miterlimit)
7524  stroke_p[p++]=box_p[4];
7525  else
7526  {
7527  stroke_p[p++]=box_p[1];
7528  stroke_p[p++]=box_p[2];
7529  }
7530  center=polygon_primitive[n].point;
7531  theta.p=atan2(box_q[1].y-center.y,box_q[1].x-center.x);
7532  theta.q=atan2(box_q[2].y-center.y,box_q[2].x-center.x);
7533  if (theta.q < theta.p)
7534  theta.q+=2.0*MagickPI;
7535  arc_segments=(size_t) CastDoubleToLong(ceil((double) ((theta.q-
7536  theta.p)/(2.0*sqrt(MagickSafeReciprocal(mid))))));
7537  CheckPathExtent(MaxStrokePad,arc_segments+MaxStrokePad);
7538  stroke_q[q].x=box_q[1].x;
7539  stroke_q[q].y=box_q[1].y;
7540  q++;
7541  for (j=1; j < (ssize_t) arc_segments; j++)
7542  {
7543  delta_theta=(double) (j*(theta.q-theta.p)/arc_segments);
7544  stroke_q[q].x=(double) (center.x+mid*cos(fmod((double)
7545  (theta.p+delta_theta),DegreesToRadians(360.0))));
7546  stroke_q[q].y=(double) (center.y+mid*sin(fmod((double)
7547  (theta.p+delta_theta),DegreesToRadians(360.0))));
7548  q++;
7549  }
7550  stroke_q[q++]=box_q[2];
7551  break;
7552  }
7553  default:
7554  break;
7555  }
7556  else
7557  switch (draw_info->linejoin)
7558  {
7559  case BevelJoin:
7560  {
7561  stroke_p[p++]=box_p[1];
7562  stroke_p[p++]=box_p[2];
7563  dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
7564  (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
7565  if (dot_product <= miterlimit)
7566  stroke_q[q++]=box_q[4];
7567  else
7568  {
7569  stroke_q[q++]=box_q[1];
7570  stroke_q[q++]=box_q[2];
7571  }
7572  break;
7573  }
7574  case MiterJoin:
7575  {
7576  dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
7577  (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
7578  if (dot_product <= miterlimit)
7579  {
7580  stroke_q[q++]=box_q[4];
7581  stroke_p[p++]=box_p[4];
7582  }
7583  else
7584  {
7585  stroke_q[q++]=box_q[1];
7586  stroke_q[q++]=box_q[2];
7587  stroke_p[p++]=box_p[1];
7588  stroke_p[p++]=box_p[2];
7589  }
7590  break;
7591  }
7592  case RoundJoin:
7593  {
7594  dot_product=(box_q[4].x-box_p[4].x)*(box_q[4].x-box_p[4].x)+
7595  (box_q[4].y-box_p[4].y)*(box_q[4].y-box_p[4].y);
7596  if (dot_product <= miterlimit)
7597  stroke_q[q++]=box_q[4];
7598  else
7599  {
7600  stroke_q[q++]=box_q[1];
7601  stroke_q[q++]=box_q[2];
7602  }
7603  center=polygon_primitive[n].point;
7604  theta.p=atan2(box_p[1].y-center.y,box_p[1].x-center.x);
7605  theta.q=atan2(box_p[2].y-center.y,box_p[2].x-center.x);
7606  if (theta.p < theta.q)
7607  theta.p+=2.0*MagickPI;
7608  arc_segments=(size_t) CastDoubleToLong(ceil((double) ((theta.p-
7609  theta.q)/(2.0*sqrt((double) (MagickSafeReciprocal(mid)))))));
7610  CheckPathExtent(arc_segments+MaxStrokePad,MaxStrokePad);
7611  stroke_p[p++]=box_p[1];
7612  for (j=1; j < (ssize_t) arc_segments; j++)
7613  {
7614  delta_theta=(double) (j*(theta.q-theta.p)/arc_segments);
7615  stroke_p[p].x=(double) (center.x+mid*cos(fmod((double)
7616  (theta.p+delta_theta),DegreesToRadians(360.0))));
7617  stroke_p[p].y=(double) (center.y+mid*sin(fmod((double)
7618  (theta.p+delta_theta),DegreesToRadians(360.0))));
7619  p++;
7620  }
7621  stroke_p[p++]=box_p[2];
7622  break;
7623  }
7624  default:
7625  break;
7626  }
7627  slope.p=slope.q;
7628  inverse_slope.p=inverse_slope.q;
7629  box_p[0]=box_p[2];
7630  box_p[1]=box_p[3];
7631  box_q[0]=box_q[2];
7632  box_q[1]=box_q[3];
7633  dx.p=dx.q;
7634  dy.p=dy.q;
7635  n=i;
7636  }
7637  stroke_p[p++]=box_p[1];
7638  stroke_q[q++]=box_q[1];
7639  /*
7640  Trace stroked polygon.
7641  */
7642  stroke_polygon=(PrimitiveInfo *) AcquireQuantumMemory((size_t)
7643  (p+q+2UL*closed_path+2UL),sizeof(*stroke_polygon));
7644  if (stroke_polygon == (PrimitiveInfo *) NULL)
7645  {
7646  (void) ThrowMagickException(exception,GetMagickModule(),
7647  ResourceLimitError,"MemoryAllocationFailed","`%s'","");
7648  stroke_p=(PointInfo *) RelinquishMagickMemory(stroke_p);
7649  stroke_q=(PointInfo *) RelinquishMagickMemory(stroke_q);
7650  polygon_primitive=(PrimitiveInfo *) RelinquishMagickMemory(
7651  polygon_primitive);
7652  return(stroke_polygon);
7653  }
7654  for (i=0; i < (ssize_t) p; i++)
7655  {
7656  stroke_polygon[i]=polygon_primitive[0];
7657  stroke_polygon[i].point=stroke_p[i];
7658  }
7659  if (closed_path != MagickFalse)
7660  {
7661  stroke_polygon[i]=polygon_primitive[0];
7662  stroke_polygon[i].point=stroke_polygon[0].point;
7663  i++;
7664  }
7665  for ( ; i < (ssize_t) (p+q+closed_path); i++)
7666  {
7667  stroke_polygon[i]=polygon_primitive[0];
7668  stroke_polygon[i].point=stroke_q[p+q+closed_path-(i+1)];
7669  }
7670  if (closed_path != MagickFalse)
7671  {
7672  stroke_polygon[i]=polygon_primitive[0];
7673  stroke_polygon[i].point=stroke_polygon[p+closed_path].point;
7674  i++;
7675  }
7676  stroke_polygon[i]=polygon_primitive[0];
7677  stroke_polygon[i].point=stroke_polygon[0].point;
7678  i++;
7679  stroke_polygon[i].primitive=UndefinedPrimitive;
7680  stroke_polygon[0].coordinates=(size_t) (p+q+2*closed_path+1);
7681  stroke_p=(PointInfo *) RelinquishMagickMemory(stroke_p);
7682  stroke_q=(PointInfo *) RelinquishMagickMemory(stroke_q);
7683  polygon_primitive=(PrimitiveInfo *) RelinquishMagickMemory(polygon_primitive);
7684  return(stroke_polygon);
7685 }
Definition: image.h:134
Definition: draw.c:146