1 #define __SP_LIVAROT_C__
2 /*
3 * splivarot.cpp
4 * Inkscape
5 *
6 * Created by fred on Fri Dec 05 2003.
7 * tweaked endlessly by bulia byak <buliabyak@users.sf.net>
8 * public domain
9 *
10 */
12 /*
13 * contains lots of stitched pieces of path-chemistry.c
14 */
16 #ifdef HAVE_CONFIG_H
17 # include <config.h>
18 #endif
20 #include <cstring>
21 #include <string>
22 #include <vector>
23 #include <glib/gmem.h>
24 #include "xml/repr.h"
25 #include "svg/svg.h"
26 #include "sp-path.h"
27 #include "sp-shape.h"
28 #include "sp-image.h"
29 #include "marker.h"
30 #include "enums.h"
31 #include "sp-text.h"
32 #include "sp-flowtext.h"
33 #include "text-editing.h"
34 #include "sp-item-group.h"
35 #include "style.h"
36 #include "document.h"
37 #include "message-stack.h"
38 #include "selection.h"
39 #include "desktop-handles.h"
40 #include "desktop.h"
41 #include "display/canvas-bpath.h"
42 #include "display/curve.h"
43 #include <glibmm/i18n.h>
44 #include "preferences.h"
46 #include "xml/repr.h"
47 #include "xml/repr-sorting.h"
48 #include <2geom/pathvector.h>
49 #include <libnr/nr-scale-matrix-ops.h>
50 #include "helper/geom.h"
52 #include "livarot/Path.h"
53 #include "livarot/Shape.h"
55 #include "splivarot.h"
57 bool Ancetre(Inkscape::XML::Node *a, Inkscape::XML::Node *who);
59 void sp_selected_path_boolop(SPDesktop *desktop, bool_op bop, const unsigned int verb=SP_VERB_NONE, const Glib::ustring description="");
60 void sp_selected_path_do_offset(SPDesktop *desktop, bool expand, double prefOffset);
61 void sp_selected_path_create_offset_object(SPDesktop *desktop, int expand, bool updating);
63 void
64 sp_selected_path_union(SPDesktop *desktop)
65 {
66 sp_selected_path_boolop(desktop, bool_op_union, SP_VERB_SELECTION_UNION, _("Union"));
67 }
69 void
70 sp_selected_path_union_skip_undo(SPDesktop *desktop)
71 {
72 sp_selected_path_boolop(desktop, bool_op_union, SP_VERB_NONE, _("Union"));
73 }
75 void
76 sp_selected_path_intersect(SPDesktop *desktop)
77 {
78 sp_selected_path_boolop(desktop, bool_op_inters, SP_VERB_SELECTION_INTERSECT, _("Intersection"));
79 }
81 void
82 sp_selected_path_diff(SPDesktop *desktop)
83 {
84 sp_selected_path_boolop(desktop, bool_op_diff, SP_VERB_SELECTION_DIFF, _("Difference"));
85 }
87 void
88 sp_selected_path_diff_skip_undo(SPDesktop *desktop)
89 {
90 sp_selected_path_boolop(desktop, bool_op_diff, SP_VERB_NONE, _("Difference"));
91 }
93 void
94 sp_selected_path_symdiff(SPDesktop *desktop)
95 {
96 sp_selected_path_boolop(desktop, bool_op_symdiff, SP_VERB_SELECTION_SYMDIFF, _("Exclusion"));
97 }
98 void
99 sp_selected_path_cut(SPDesktop *desktop)
100 {
101 sp_selected_path_boolop(desktop, bool_op_cut, SP_VERB_SELECTION_CUT, _("Division"));
102 }
103 void
104 sp_selected_path_slice(SPDesktop *desktop)
105 {
106 sp_selected_path_boolop(desktop, bool_op_slice, SP_VERB_SELECTION_SLICE, _("Cut path"));
107 }
110 // boolean operations
111 // take the source paths from the file, do the operation, delete the originals and add the results
112 void
113 sp_selected_path_boolop(SPDesktop *desktop, bool_op bop, const unsigned int verb, const Glib::ustring description)
114 {
115 Inkscape::Selection *selection = sp_desktop_selection(desktop);
117 GSList *il = (GSList *) selection->itemList();
119 // allow union on a single object for the purpose of removing self overlapse (svn log, revision 13334)
120 if ( (g_slist_length(il) < 2) && (bop != bool_op_union)) {
121 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("Select <b>at least 2 paths</b> to perform a boolean operation."));
122 return;
123 }
124 else if ( g_slist_length(il) < 1 ) {
125 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("Select <b>at least 1 path</b> to perform a boolean union."));
126 return;
127 }
129 if (g_slist_length(il) > 2) {
130 if (bop == bool_op_diff || bop == bool_op_cut || bop == bool_op_slice ) {
131 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("Select <b>exactly 2 paths</b> to perform difference, division, or path cut."));
132 return;
133 }
134 }
136 // reverseOrderForOp marks whether the order of the list is the top->down order
137 // it's only used when there are 2 objects, and for operations who need to know the
138 // topmost object (differences, cuts)
139 bool reverseOrderForOp = false;
141 if (bop == bool_op_diff || bop == bool_op_cut || bop == bool_op_slice) {
142 // check in the tree to find which element of the selection list is topmost (for 2-operand commands only)
143 Inkscape::XML::Node *a = SP_OBJECT_REPR(il->data);
144 Inkscape::XML::Node *b = SP_OBJECT_REPR(il->next->data);
146 if (a == NULL || b == NULL) {
147 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("Unable to determine the <b>z-order</b> of the objects selected for difference, XOR, division, or path cut."));
148 return;
149 }
151 if (Ancetre(a, b)) {
152 // a is the parent of b, already in the proper order
153 } else if (Ancetre(b, a)) {
154 // reverse order
155 reverseOrderForOp = true;
156 } else {
158 // objects are not in parent/child relationship;
159 // find their lowest common ancestor
160 Inkscape::XML::Node *dad = LCA(a, b);
161 if (dad == NULL) {
162 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("Unable to determine the <b>z-order</b> of the objects selected for difference, XOR, division, or path cut."));
163 return;
164 }
166 // find the children of the LCA that lead from it to the a and b
167 Inkscape::XML::Node *as = AncetreFils(a, dad);
168 Inkscape::XML::Node *bs = AncetreFils(b, dad);
170 // find out which comes first
171 for (Inkscape::XML::Node *child = dad->firstChild(); child; child = child->next()) {
172 if (child == as) {
173 /* a first, so reverse. */
174 reverseOrderForOp = true;
175 break;
176 }
177 if (child == bs)
178 break;
179 }
180 }
181 }
183 il = g_slist_copy(il);
185 // first check if all the input objects have shapes
186 // otherwise bail out
187 for (GSList *l = il; l != NULL; l = l->next)
188 {
189 SPItem *item = SP_ITEM(l->data);
190 if (!SP_IS_SHAPE(item) && !SP_IS_TEXT(item) && !SP_IS_FLOWTEXT(item))
191 {
192 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("One of the objects is <b>not a path</b>, cannot perform boolean operation."));
193 g_slist_free(il);
194 return;
195 }
196 }
198 // extract the livarot Paths from the source objects
199 // also get the winding rule specified in the style
200 int nbOriginaux = g_slist_length(il);
201 std::vector<Path *> originaux(nbOriginaux);
202 std::vector<FillRule> origWind(nbOriginaux);
203 int curOrig;
204 {
205 curOrig = 0;
206 for (GSList *l = il; l != NULL; l = l->next)
207 {
208 SPCSSAttr *css = sp_repr_css_attr(SP_OBJECT_REPR(il->data), "style");
209 gchar const *val = sp_repr_css_property(css, "fill-rule", NULL);
210 if (val && strcmp(val, "nonzero") == 0) {
211 origWind[curOrig]= fill_nonZero;
212 } else if (val && strcmp(val, "evenodd") == 0) {
213 origWind[curOrig]= fill_oddEven;
214 } else {
215 origWind[curOrig]= fill_nonZero;
216 }
218 originaux[curOrig] = Path_for_item((SPItem *) l->data, true, true);
219 if (originaux[curOrig] == NULL || originaux[curOrig]->descr_cmd.size() <= 1)
220 {
221 for (int i = curOrig; i >= 0; i--) delete originaux[i];
222 g_slist_free(il);
223 return;
224 }
225 curOrig++;
226 }
227 }
228 // reverse if needed
229 // note that the selection list keeps its order
230 if ( reverseOrderForOp ) {
231 Path* swap=originaux[0];originaux[0]=originaux[1];originaux[1]=swap;
232 FillRule swai=origWind[0]; origWind[0]=origWind[1]; origWind[1]=swai;
233 }
235 // and work
236 // some temporary instances, first
237 Shape *theShapeA = new Shape;
238 Shape *theShapeB = new Shape;
239 Shape *theShape = new Shape;
240 Path *res = new Path;
241 res->SetBackData(false);
242 Path::cut_position *toCut=NULL;
243 int nbToCut=0;
245 if ( bop == bool_op_inters || bop == bool_op_union || bop == bool_op_diff || bop == bool_op_symdiff ) {
246 // true boolean op
247 // get the polygons of each path, with the winding rule specified, and apply the operation iteratively
248 originaux[0]->ConvertWithBackData(0.1);
250 originaux[0]->Fill(theShape, 0);
252 theShapeA->ConvertToShape(theShape, origWind[0]);
254 curOrig = 1;
255 for (GSList *l = il->next; l != NULL; l = l->next) {
256 originaux[curOrig]->ConvertWithBackData(0.1);
258 originaux[curOrig]->Fill(theShape, curOrig);
260 theShapeB->ConvertToShape(theShape, origWind[curOrig]);
262 // les elements arrivent en ordre inverse dans la liste
263 theShape->Booleen(theShapeB, theShapeA, bop);
265 {
266 Shape *swap = theShape;
267 theShape = theShapeA;
268 theShapeA = swap;
269 }
270 curOrig++;
271 }
273 {
274 Shape *swap = theShape;
275 theShape = theShapeA;
276 theShapeA = swap;
277 }
279 } else if ( bop == bool_op_cut ) {
280 // cuts= sort of a bastard boolean operation, thus not the axact same modus operandi
281 // technically, the cut path is not necessarily a polygon (thus has no winding rule)
282 // it is just uncrossed, and cleaned from duplicate edges and points
283 // then it's fed to Booleen() which will uncross it against the other path
284 // then comes the trick: each edge of the cut path is duplicated (one in each direction),
285 // thus making a polygon. the weight of the edges of the cut are all 0, but
286 // the Booleen need to invert the ones inside the source polygon (for the subsequent
287 // ConvertToForme)
289 // the cut path needs to have the highest pathID in the back data
290 // that's how the Booleen() function knows it's an edge of the cut
292 // FIXME: this gives poor results, the final paths are full of extraneous nodes. Decreasing
293 // ConvertWithBackData parameter below simply increases the number of nodes, so for now I
294 // left it at 1.0. Investigate replacing this by a combination of difference and
295 // intersection of the same two paths. -- bb
296 {
297 Path* swap=originaux[0];originaux[0]=originaux[1];originaux[1]=swap;
298 int swai=origWind[0];origWind[0]=origWind[1];origWind[1]=(fill_typ)swai;
299 }
300 originaux[0]->ConvertWithBackData(1.0);
302 originaux[0]->Fill(theShape, 0);
304 theShapeA->ConvertToShape(theShape, origWind[0]);
306 originaux[1]->ConvertWithBackData(1.0);
308 originaux[1]->Fill(theShape, 1,false,false,false); //do not closeIfNeeded
310 theShapeB->ConvertToShape(theShape, fill_justDont); // fill_justDont doesn't computes winding numbers
312 // les elements arrivent en ordre inverse dans la liste
313 theShape->Booleen(theShapeB, theShapeA, bool_op_cut, 1);
315 } else if ( bop == bool_op_slice ) {
316 // slice is not really a boolean operation
317 // you just put the 2 shapes in a single polygon, uncross it
318 // the points where the degree is > 2 are intersections
319 // just check it's an intersection on the path you want to cut, and keep it
320 // the intersections you have found are then fed to ConvertPositionsToMoveTo() which will
321 // make new subpath at each one of these positions
322 // inversion pour l'op\8eration
323 {
324 Path* swap=originaux[0];originaux[0]=originaux[1];originaux[1]=swap;
325 int swai=origWind[0];origWind[0]=origWind[1];origWind[1]=(fill_typ)swai;
326 }
327 originaux[0]->ConvertWithBackData(1.0);
329 originaux[0]->Fill(theShapeA, 0,false,false,false); // don't closeIfNeeded
331 originaux[1]->ConvertWithBackData(1.0);
333 originaux[1]->Fill(theShapeA, 1,true,false,false);// don't closeIfNeeded and just dump in the shape, don't reset it
335 theShape->ConvertToShape(theShapeA, fill_justDont);
337 if ( theShape->hasBackData() ) {
338 // should always be the case, but ya never know
339 {
340 for (int i = 0; i < theShape->numberOfPoints(); i++) {
341 if ( theShape->getPoint(i).totalDegree() > 2 ) {
342 // possibly an intersection
343 // we need to check that at least one edge from the source path is incident to it
344 // before we declare it's an intersection
345 int cb = theShape->getPoint(i).incidentEdge[FIRST];
346 int nbOrig=0;
347 int nbOther=0;
348 int piece=-1;
349 float t=0.0;
350 while ( cb >= 0 && cb < theShape->numberOfEdges() ) {
351 if ( theShape->ebData[cb].pathID == 0 ) {
352 // the source has an edge incident to the point, get its position on the path
353 piece=theShape->ebData[cb].pieceID;
354 if ( theShape->getEdge(cb).st == i ) {
355 t=theShape->ebData[cb].tSt;
356 } else {
357 t=theShape->ebData[cb].tEn;
358 }
359 nbOrig++;
360 }
361 if ( theShape->ebData[cb].pathID == 1 ) nbOther++; // the cut is incident to this point
362 cb=theShape->NextAt(i, cb);
363 }
364 if ( nbOrig > 0 && nbOther > 0 ) {
365 // point incident to both path and cut: an intersection
366 // note that you only keep one position on the source; you could have degenerate
367 // cases where the source crosses itself at this point, and you wouyld miss an intersection
368 toCut=(Path::cut_position*)realloc(toCut, (nbToCut+1)*sizeof(Path::cut_position));
369 toCut[nbToCut].piece=piece;
370 toCut[nbToCut].t=t;
371 nbToCut++;
372 }
373 }
374 }
375 }
376 {
377 // i think it's useless now
378 int i = theShape->numberOfEdges() - 1;
379 for (;i>=0;i--) {
380 if ( theShape->ebData[i].pathID == 1 ) {
381 theShape->SubEdge(i);
382 }
383 }
384 }
386 }
387 }
389 int* nesting=NULL;
390 int* conts=NULL;
391 int nbNest=0;
392 // pour compenser le swap juste avant
393 if ( bop == bool_op_slice ) {
394 // theShape->ConvertToForme(res, nbOriginaux, originaux, true);
395 // res->ConvertForcedToMoveTo();
396 res->Copy(originaux[0]);
397 res->ConvertPositionsToMoveTo(nbToCut, toCut); // cut where you found intersections
398 free(toCut);
399 } else if ( bop == bool_op_cut ) {
400 // il faut appeler pour desallouer PointData (pas vital, mais bon)
401 // the Booleen() function did not deallocated the point_data array in theShape, because this
402 // function needs it.
403 // this function uses the point_data to get the winding number of each path (ie: is a hole or not)
404 // for later reconstruction in objects, you also need to extract which path is parent of holes (nesting info)
405 theShape->ConvertToFormeNested(res, nbOriginaux, &originaux[0], 1, nbNest, nesting, conts);
406 } else {
407 theShape->ConvertToForme(res, nbOriginaux, &originaux[0]);
408 }
410 delete theShape;
411 delete theShapeA;
412 delete theShapeB;
413 for (int i = 0; i < nbOriginaux; i++) delete originaux[i];
415 if (res->descr_cmd.size() <= 1)
416 {
417 // only one command, presumably a moveto: it isn't a path
418 for (GSList *l = il; l != NULL; l = l->next)
419 {
420 SP_OBJECT(l->data)->deleteObject();
421 }
422 sp_document_done(sp_desktop_document(desktop), SP_VERB_NONE,
423 description);
424 selection->clear();
426 delete res;
427 g_slist_free(il);
428 return;
429 }
431 // get the source path object
432 SPObject *source;
433 if ( bop == bool_op_diff || bop == bool_op_cut || bop == bool_op_slice ) {
434 if (reverseOrderForOp) {
435 source = SP_OBJECT(il->data);
436 } else {
437 source = SP_OBJECT(il->next->data);
438 }
439 } else {
440 // find out the bottom object
441 GSList *sorted = g_slist_copy((GSList *) selection->reprList());
443 sorted = g_slist_sort(sorted, (GCompareFunc) sp_repr_compare_position);
445 source = sp_desktop_document(desktop)->
446 getObjectByRepr((Inkscape::XML::Node *)sorted->data);
448 g_slist_free(sorted);
449 }
451 // adjust style properties that depend on a possible transform in the source object in order
452 // to get a correct style attribute for the new path
453 SPItem* item_source = SP_ITEM(source);
454 Geom::Matrix i2doc(sp_item_i2doc_affine(item_source));
455 sp_item_adjust_stroke(item_source, i2doc.descrim());
456 sp_item_adjust_pattern(item_source, i2doc);
457 sp_item_adjust_gradient(item_source, i2doc);
458 sp_item_adjust_livepatheffect(item_source, i2doc);
460 Inkscape::XML::Node *repr_source = SP_OBJECT_REPR(source);
462 // remember important aspects of the source path, to be restored
463 gint pos = repr_source->position();
464 Inkscape::XML::Node *parent = sp_repr_parent(repr_source);
465 gchar const *id = repr_source->attribute("id");
466 gchar const *style = repr_source->attribute("style");
467 gchar const *mask = repr_source->attribute("mask");
468 gchar const *clip_path = repr_source->attribute("clip-path");
469 gchar *title = source->title();
470 gchar *desc = source->desc();
471 // remove source paths
472 selection->clear();
473 for (GSList *l = il; l != NULL; l = l->next) {
474 // if this is the bottommost object,
475 if (!strcmp(SP_OBJECT_REPR(l->data)->attribute("id"), id)) {
476 // delete it so that its clones don't get alerted; this object will be restored shortly, with the same id
477 SP_OBJECT(l->data)->deleteObject(false);
478 } else {
479 // delete the object for real, so that its clones can take appropriate action
480 SP_OBJECT(l->data)->deleteObject();
481 }
482 }
483 g_slist_free(il);
485 // premultiply by the inverse of parent's repr
486 SPItem *parent_item = SP_ITEM(sp_desktop_document(desktop)->getObjectByRepr(parent));
487 Geom::Matrix local (sp_item_i2doc_affine(parent_item));
488 gchar *transform = sp_svg_transform_write(local.inverse());
490 // now that we have the result, add it on the canvas
491 if ( bop == bool_op_cut || bop == bool_op_slice ) {
492 int nbRP=0;
493 Path** resPath;
494 if ( bop == bool_op_slice ) {
495 // there are moveto's at each intersection, but it's still one unique path
496 // so break it down and add each subpath independently
497 // we could call break_apart to do this, but while we have the description...
498 resPath=res->SubPaths(nbRP, false);
499 } else {
500 // cut operation is a bit wicked: you need to keep holes
501 // that's why you needed the nesting
502 // ConvertToFormeNested() dumped all the subpath in a single Path "res", so we need
503 // to get the path for each part of the polygon. that's why you need the nesting info:
504 // to know in wich subpath to add a subpath
505 resPath=res->SubPathsWithNesting(nbRP, true, nbNest, nesting, conts);
507 // cleaning
508 if ( conts ) free(conts);
509 if ( nesting ) free(nesting);
510 }
512 // add all the pieces resulting from cut or slice
513 for (int i=0;i<nbRP;i++) {
514 gchar *d = resPath[i]->svg_dump_path();
516 Inkscape::XML::Document *xml_doc = sp_document_repr_doc(desktop->doc());
517 Inkscape::XML::Node *repr = xml_doc->createElement("svg:path");
518 repr->setAttribute("style", style);
519 if (mask)
520 repr->setAttribute("mask", mask);
521 if (clip_path)
522 repr->setAttribute("clip-path", clip_path);
524 repr->setAttribute("d", d);
525 g_free(d);
527 // for slice, remove fill
528 if (bop == bool_op_slice) {
529 SPCSSAttr *css;
531 css = sp_repr_css_attr_new();
532 sp_repr_css_set_property(css, "fill", "none");
534 sp_repr_css_change(repr, css, "style");
536 sp_repr_css_attr_unref(css);
537 }
539 // we assign the same id on all pieces, but it on adding to document, it will be changed on all except one
540 // this means it's basically random which of the pieces inherits the original's id and clones
541 // a better algorithm might figure out e.g. the biggest piece
542 repr->setAttribute("id", id);
544 repr->setAttribute("transform", transform);
546 // add the new repr to the parent
547 parent->appendChild(repr);
549 // move to the saved position
550 repr->setPosition(pos > 0 ? pos : 0);
552 selection->add(repr);
553 Inkscape::GC::release(repr);
555 delete resPath[i];
556 }
557 if ( resPath ) free(resPath);
559 } else {
560 gchar *d = res->svg_dump_path();
562 Inkscape::XML::Document *xml_doc = sp_document_repr_doc(desktop->doc());
563 Inkscape::XML::Node *repr = xml_doc->createElement("svg:path");
564 repr->setAttribute("style", style);
566 if ( mask )
567 repr->setAttribute("mask", mask);
569 if ( clip_path )
570 repr->setAttribute("clip-path", clip_path);
572 repr->setAttribute("d", d);
573 g_free(d);
575 repr->setAttribute("transform", transform);
577 repr->setAttribute("id", id);
578 parent->appendChild(repr);
579 if (title) {
580 sp_desktop_document(desktop)->getObjectByRepr(repr)->setTitle(title);
581 }
582 if (desc) {
583 sp_desktop_document(desktop)->getObjectByRepr(repr)->setDesc(desc);
584 }
585 repr->setPosition(pos > 0 ? pos : 0);
587 selection->add(repr);
588 Inkscape::GC::release(repr);
589 }
591 g_free(transform);
592 if (title) g_free(title);
593 if (desc) g_free(desc);
595 if (verb != SP_VERB_NONE) {
596 sp_document_done(sp_desktop_document(desktop), verb, description);
597 }
599 delete res;
600 }
602 static
603 void sp_selected_path_outline_add_marker( SPObject *marker_object, Geom::Matrix marker_transform,
604 Geom::Scale stroke_scale, Geom::Matrix transform,
605 Inkscape::XML::Node *g_repr, Inkscape::XML::Document *xml_doc, SPDocument * doc )
606 {
607 SPMarker* marker = SP_MARKER (marker_object);
608 SPItem* marker_item = sp_item_first_item_child (SP_OBJECT (marker_object));
610 Geom::Matrix tr(marker_transform);
612 if (marker->markerUnits == SP_MARKER_UNITS_STROKEWIDTH) {
613 tr = stroke_scale * tr;
614 }
616 // total marker transform
617 tr = marker_item->transform * marker->c2p * tr * transform;
619 if (SP_OBJECT_REPR(marker_item)) {
620 Inkscape::XML::Node *m_repr = SP_OBJECT_REPR(marker_item)->duplicate(xml_doc);
621 g_repr->appendChild(m_repr);
622 SPItem *marker_item = (SPItem *) doc->getObjectByRepr(m_repr);
623 sp_item_write_transform(marker_item, m_repr, tr);
624 }
625 }
627 static
628 void item_outline_add_marker( SPObject const *marker_object, Geom::Matrix marker_transform,
629 Geom::Scale stroke_scale, Geom::PathVector* pathv_in )
630 {
631 SPMarker* marker = SP_MARKER (marker_object);
632 SPItem* marker_item = sp_item_first_item_child(SP_OBJECT(marker_object));
634 Geom::Matrix tr(marker_transform);
635 if (marker->markerUnits == SP_MARKER_UNITS_STROKEWIDTH) {
636 tr = stroke_scale * tr;
637 }
638 // total marker transform
639 tr = marker_item->transform * marker->c2p * tr;
641 Geom::PathVector* marker_pathv = item_outline(marker_item);
643 if (marker_pathv) {
644 for (unsigned int j=0; j < marker_pathv->size(); j++) {
645 pathv_in->push_back((*marker_pathv)[j] * tr);
646 }
647 delete marker_pathv;
648 }
649 }
651 /**
652 * Returns a pathvector that is the outline of the stroked item, with markers.
653 * item must be SPShape of SPText.
654 */
655 Geom::PathVector* item_outline(SPItem const *item)
656 {
657 Geom::PathVector *ret_pathv = NULL;
659 if (!SP_IS_SHAPE(item) && !SP_IS_TEXT(item))
660 return ret_pathv;
662 // no stroke: no outline
663 if (!SP_OBJECT_STYLE(item) || SP_OBJECT_STYLE(item)->stroke.noneSet) {
664 return ret_pathv;
665 }
667 SPCurve *curve = NULL;
668 if (SP_IS_SHAPE(item)) {
669 curve = sp_shape_get_curve(SP_SHAPE(item));
670 } else if (SP_IS_TEXT(item)) {
671 curve = SP_TEXT(item)->getNormalizedBpath();
672 }
673 if (curve == NULL) {
674 return ret_pathv;
675 }
677 if (curve->get_pathvector().empty()) {
678 return ret_pathv;
679 }
681 // remember old stroke style, to be set on fill
682 SPStyle *i_style = SP_OBJECT_STYLE(item);
684 Geom::Matrix const transform(item->transform);
685 float const scale = transform.descrim();
687 float o_width, o_miter;
688 JoinType o_join;
689 ButtType o_butt;
690 {
691 o_width = i_style->stroke_width.computed;
692 if (o_width < 0.1) {
693 o_width = 0.1;
694 }
695 o_miter = i_style->stroke_miterlimit.value * o_width;
697 switch (i_style->stroke_linejoin.computed) {
698 case SP_STROKE_LINEJOIN_MITER:
699 o_join = join_pointy;
700 break;
701 case SP_STROKE_LINEJOIN_ROUND:
702 o_join = join_round;
703 break;
704 default:
705 o_join = join_straight;
706 break;
707 }
709 switch (i_style->stroke_linecap.computed) {
710 case SP_STROKE_LINECAP_SQUARE:
711 o_butt = butt_square;
712 break;
713 case SP_STROKE_LINECAP_ROUND:
714 o_butt = butt_round;
715 break;
716 default:
717 o_butt = butt_straight;
718 break;
719 }
720 }
722 // Livarots outline of arcs is broken. So convert the path to linear and cubics only, for which the outline is created correctly.
723 Geom::PathVector pathv = pathv_to_linear_and_cubic_beziers( curve->get_pathvector() );
725 Path *orig = new Path;
726 orig->LoadPathVector(pathv);
728 Path *res = new Path;
729 res->SetBackData(false);
731 if (i_style->stroke_dash.n_dash) {
732 // For dashed strokes, use Stroke method, because Outline can't do dashes
733 // However Stroke adds lots of extra nodes _or_ makes the path crooked, so consider this a temporary workaround
735 orig->ConvertWithBackData(0.1);
737 orig->DashPolylineFromStyle(i_style, scale, 0);
739 Shape* theShape = new Shape;
740 orig->Stroke(theShape, false, 0.5*o_width, o_join, o_butt,
741 0.5 * o_miter);
742 orig->Outline(res, 0.5 * o_width, o_join, o_butt, 0.5 * o_miter);
744 Shape *theRes = new Shape;
746 theRes->ConvertToShape(theShape, fill_positive);
748 Path *originaux[1];
749 originaux[0] = res;
750 theRes->ConvertToForme(orig, 1, originaux);
752 res->Coalesce(5.0);
754 delete theShape;
755 delete theRes;
756 } else {
757 orig->Outline(res, 0.5 * o_width, o_join, o_butt, 0.5 * o_miter);
759 orig->Coalesce(0.5 * o_width);
761 Shape *theShape = new Shape;
762 Shape *theRes = new Shape;
764 res->ConvertWithBackData(1.0);
765 res->Fill(theShape, 0);
766 theRes->ConvertToShape(theShape, fill_positive);
768 Path *originaux[1];
769 originaux[0] = res;
770 theRes->ConvertToForme(orig, 1, originaux);
772 delete theShape;
773 delete theRes;
774 }
776 if (orig->descr_cmd.size() <= 1) {
777 // ca a merd\8e, ou bien le resultat est vide
778 delete res;
779 delete orig;
780 curve->unref();
781 return ret_pathv;
782 }
785 if (res->descr_cmd.size() > 1) { // if there's 0 or 1 node left, drop this path altogether
786 ret_pathv = orig->MakePathVector();
788 if (SP_IS_SHAPE(item) && sp_shape_has_markers (SP_SHAPE(item))) {
789 SPShape *shape = SP_SHAPE(item);
791 Geom::PathVector const & pathv = curve->get_pathvector();
793 // START marker
794 for (int i = 0; i < 2; i++) { // SP_MARKER_LOC and SP_MARKER_LOC_START
795 if ( SPObject *marker_obj = shape->marker[i] ) {
796 Geom::Matrix const m (sp_shape_marker_get_transform_at_start(pathv.front().front()));
797 item_outline_add_marker( marker_obj, m,
798 Geom::Scale(i_style->stroke_width.computed),
799 ret_pathv );
800 }
801 }
802 // MID marker
803 for (int i = 0; i < 3; i += 2) { // SP_MARKER_LOC and SP_MARKER_LOC_MID
804 SPObject *midmarker_obj = shape->marker[i];
805 if (!midmarker_obj) continue;
806 for(Geom::PathVector::const_iterator path_it = pathv.begin(); path_it != pathv.end(); ++path_it) {
807 // START position
808 if ( path_it != pathv.begin()
809 && ! ((path_it == (pathv.end()-1)) && (path_it->size_default() == 0)) ) // if this is the last path and it is a moveto-only, there is no mid marker there
810 {
811 Geom::Matrix const m (sp_shape_marker_get_transform_at_start(path_it->front()));
812 item_outline_add_marker( midmarker_obj, m,
813 Geom::Scale(i_style->stroke_width.computed),
814 ret_pathv );
815 }
816 // MID position
817 if (path_it->size_default() > 1) {
818 Geom::Path::const_iterator curve_it1 = path_it->begin(); // incoming curve
819 Geom::Path::const_iterator curve_it2 = ++(path_it->begin()); // outgoing curve
820 while (curve_it2 != path_it->end_default())
821 {
822 /* Put marker between curve_it1 and curve_it2.
823 * Loop to end_default (so including closing segment), because when a path is closed,
824 * there should be a midpoint marker between last segment and closing straight line segment
825 */
826 Geom::Matrix const m (sp_shape_marker_get_transform(*curve_it1, *curve_it2));
827 item_outline_add_marker( midmarker_obj, m,
828 Geom::Scale(i_style->stroke_width.computed),
829 ret_pathv);
831 ++curve_it1;
832 ++curve_it2;
833 }
834 }
835 // END position
836 if ( path_it != (pathv.end()-1) && !path_it->empty()) {
837 Geom::Curve const &lastcurve = path_it->back_default();
838 Geom::Matrix const m = sp_shape_marker_get_transform_at_end(lastcurve);
839 item_outline_add_marker( midmarker_obj, m,
840 Geom::Scale(i_style->stroke_width.computed),
841 ret_pathv );
842 }
843 }
844 }
845 // END marker
846 for (int i = 0; i < 4; i += 3) { // SP_MARKER_LOC and SP_MARKER_LOC_END
847 if ( SPObject *marker_obj = shape->marker[i] ) {
848 /* Get reference to last curve in the path.
849 * For moveto-only path, this returns the "closing line segment". */
850 Geom::Path const &path_last = pathv.back();
851 unsigned int index = path_last.size_default();
852 if (index > 0) {
853 index--;
854 }
855 Geom::Curve const &lastcurve = path_last[index];
857 Geom::Matrix const m = sp_shape_marker_get_transform_at_end(lastcurve);
858 item_outline_add_marker( marker_obj, m,
859 Geom::Scale(i_style->stroke_width.computed),
860 ret_pathv );
861 }
862 }
863 }
865 curve->unref();
866 }
868 delete res;
869 delete orig;
871 return ret_pathv;
872 }
874 void
875 sp_selected_path_outline(SPDesktop *desktop)
876 {
877 Inkscape::Selection *selection = sp_desktop_selection(desktop);
879 if (selection->isEmpty()) {
880 desktop->messageStack()->flash(Inkscape::WARNING_MESSAGE, _("Select <b>stroked path(s)</b> to convert stroke to path."));
881 return;
882 }
884 bool did = false;
886 for (GSList *items = g_slist_copy((GSList *) selection->itemList());
887 items != NULL;
888 items = items->next) {
890 SPItem *item = (SPItem *) items->data;
892 if (!SP_IS_SHAPE(item) && !SP_IS_TEXT(item))
893 continue;
895 SPCurve *curve = NULL;
896 if (SP_IS_SHAPE(item)) {
897 curve = sp_shape_get_curve(SP_SHAPE(item));
898 if (curve == NULL)
899 continue;
900 }
901 if (SP_IS_TEXT(item)) {
902 curve = SP_TEXT(item)->getNormalizedBpath();
903 if (curve == NULL)
904 continue;
905 }
907 if (curve->get_pathvector().empty()) {
908 continue;
909 }
911 // pas de stroke pas de chocolat
912 if (!SP_OBJECT_STYLE(item) || SP_OBJECT_STYLE(item)->stroke.noneSet) {
913 curve->unref();
914 continue;
915 }
917 // remember old stroke style, to be set on fill
918 SPStyle *i_style = SP_OBJECT_STYLE(item);
919 SPCSSAttr *ncss;
920 {
921 ncss = sp_css_attr_from_style(i_style, SP_STYLE_FLAG_ALWAYS);
922 gchar const *s_val = sp_repr_css_property(ncss, "stroke", NULL);
923 gchar const *s_opac = sp_repr_css_property(ncss, "stroke-opacity", NULL);
925 sp_repr_css_set_property(ncss, "stroke", "none");
926 sp_repr_css_set_property(ncss, "stroke-opacity", "1.0");
927 sp_repr_css_set_property(ncss, "fill", s_val);
928 if ( s_opac ) {
929 sp_repr_css_set_property(ncss, "fill-opacity", s_opac);
930 } else {
931 sp_repr_css_set_property(ncss, "fill-opacity", "1.0");
932 }
933 sp_repr_css_unset_property(ncss, "marker-start");
934 sp_repr_css_unset_property(ncss, "marker-mid");
935 sp_repr_css_unset_property(ncss, "marker-end");
936 }
938 Geom::Matrix const transform(item->transform);
939 float const scale = transform.descrim();
940 gchar const *mask = SP_OBJECT_REPR(item)->attribute("mask");
941 gchar const *clip_path = SP_OBJECT_REPR(item)->attribute("clip-path");
943 float o_width, o_miter;
944 JoinType o_join;
945 ButtType o_butt;
947 {
948 int jointype, captype;
950 jointype = i_style->stroke_linejoin.computed;
951 captype = i_style->stroke_linecap.computed;
952 o_width = i_style->stroke_width.computed;
954 switch (jointype) {
955 case SP_STROKE_LINEJOIN_MITER:
956 o_join = join_pointy;
957 break;
958 case SP_STROKE_LINEJOIN_ROUND:
959 o_join = join_round;
960 break;
961 default:
962 o_join = join_straight;
963 break;
964 }
966 switch (captype) {
967 case SP_STROKE_LINECAP_SQUARE:
968 o_butt = butt_square;
969 break;
970 case SP_STROKE_LINECAP_ROUND:
971 o_butt = butt_round;
972 break;
973 default:
974 o_butt = butt_straight;
975 break;
976 }
978 if (o_width < 0.1)
979 o_width = 0.1;
980 o_miter = i_style->stroke_miterlimit.value * o_width;
981 }
983 SPCurve *curvetemp = curve_for_item(item);
984 if (curvetemp == NULL) {
985 curve->unref();
986 continue;
987 }
988 // Livarots outline of arcs is broken. So convert the path to linear and cubics only, for which the outline is created correctly.
989 Geom::PathVector pathv = pathv_to_linear_and_cubic_beziers( curvetemp->get_pathvector() );
990 curvetemp->unref();
992 Path *orig = new Path;
993 orig->LoadPathVector(pathv);
995 Path *res = new Path;
996 res->SetBackData(false);
998 if (i_style->stroke_dash.n_dash) {
999 // For dashed strokes, use Stroke method, because Outline can't do dashes
1000 // However Stroke adds lots of extra nodes _or_ makes the path crooked, so consider this a temporary workaround
1002 orig->ConvertWithBackData(0.1);
1004 orig->DashPolylineFromStyle(i_style, scale, 0);
1006 Shape* theShape = new Shape;
1007 orig->Stroke(theShape, false, 0.5*o_width, o_join, o_butt,
1008 0.5 * o_miter);
1009 orig->Outline(res, 0.5 * o_width, o_join, o_butt, 0.5 * o_miter);
1011 Shape *theRes = new Shape;
1013 theRes->ConvertToShape(theShape, fill_positive);
1015 Path *originaux[1];
1016 originaux[0] = res;
1017 theRes->ConvertToForme(orig, 1, originaux);
1019 res->Coalesce(5.0);
1021 delete theShape;
1022 delete theRes;
1024 } else {
1026 orig->Outline(res, 0.5 * o_width, o_join, o_butt, 0.5 * o_miter);
1028 orig->Coalesce(0.5 * o_width);
1030 Shape *theShape = new Shape;
1031 Shape *theRes = new Shape;
1033 res->ConvertWithBackData(1.0);
1034 res->Fill(theShape, 0);
1035 theRes->ConvertToShape(theShape, fill_positive);
1037 Path *originaux[1];
1038 originaux[0] = res;
1039 theRes->ConvertToForme(orig, 1, originaux);
1041 delete theShape;
1042 delete theRes;
1043 }
1045 if (orig->descr_cmd.size() <= 1) {
1046 // ca a merd\8e, ou bien le resultat est vide
1047 delete res;
1048 delete orig;
1049 continue;
1050 }
1052 did = true;
1054 // remember the position of the item
1055 gint pos = SP_OBJECT_REPR(item)->position();
1056 // remember parent
1057 Inkscape::XML::Node *parent = SP_OBJECT_REPR(item)->parent();
1058 // remember id
1059 char const *id = SP_OBJECT_REPR(item)->attribute("id");
1060 // remember title
1061 gchar *title = item->title();
1062 // remember description
1063 gchar *desc = item->desc();
1065 if (res->descr_cmd.size() > 1) { // if there's 0 or 1 node left, drop this path altogether
1067 SPDocument * doc = sp_desktop_document(desktop);
1068 Inkscape::XML::Document *xml_doc = sp_document_repr_doc(doc);
1069 Inkscape::XML::Node *repr = xml_doc->createElement("svg:path");
1071 // restore old style, but set old stroke style on fill
1072 sp_repr_css_change(repr, ncss, "style");
1074 sp_repr_css_attr_unref(ncss);
1076 gchar *str = orig->svg_dump_path();
1077 repr->setAttribute("d", str);
1078 g_free(str);
1080 if (mask)
1081 repr->setAttribute("mask", mask);
1082 if (clip_path)
1083 repr->setAttribute("clip-path", clip_path);
1085 if (SP_IS_SHAPE(item) && sp_shape_has_markers (SP_SHAPE(item))) {
1087 Inkscape::XML::Document *xml_doc = sp_document_repr_doc(doc);
1088 Inkscape::XML::Node *g_repr = xml_doc->createElement("svg:g");
1090 // add the group to the parent
1091 parent->appendChild(g_repr);
1092 // move to the saved position
1093 g_repr->setPosition(pos > 0 ? pos : 0);
1095 g_repr->appendChild(repr);
1096 // restore title, description, id, transform
1097 repr->setAttribute("id", id);
1098 SPItem *newitem = (SPItem *) doc->getObjectByRepr(repr);
1099 sp_item_write_transform(newitem, repr, transform);
1100 if (title) {
1101 newitem->setTitle(title);
1102 }
1103 if (desc) {
1104 newitem->setDesc(desc);
1105 }
1107 SPShape *shape = SP_SHAPE(item);
1109 Geom::PathVector const & pathv = curve->get_pathvector();
1111 // START marker
1112 for (int i = 0; i < 2; i++) { // SP_MARKER_LOC and SP_MARKER_LOC_START
1113 if ( SPObject *marker_obj = shape->marker[i] ) {
1114 Geom::Matrix const m (sp_shape_marker_get_transform_at_start(pathv.front().front()));
1115 sp_selected_path_outline_add_marker( marker_obj, m,
1116 Geom::Scale(i_style->stroke_width.computed), transform,
1117 g_repr, xml_doc, doc );
1118 }
1119 }
1120 // MID marker
1121 for (int i = 0; i < 3; i += 2) { // SP_MARKER_LOC and SP_MARKER_LOC_MID
1122 SPObject *midmarker_obj = shape->marker[i];
1123 if (!midmarker_obj) continue;
1124 for(Geom::PathVector::const_iterator path_it = pathv.begin(); path_it != pathv.end(); ++path_it) {
1125 // START position
1126 if ( path_it != pathv.begin()
1127 && ! ((path_it == (pathv.end()-1)) && (path_it->size_default() == 0)) ) // if this is the last path and it is a moveto-only, there is no mid marker there
1128 {
1129 Geom::Matrix const m (sp_shape_marker_get_transform_at_start(path_it->front()));
1130 sp_selected_path_outline_add_marker( midmarker_obj, m,
1131 Geom::Scale(i_style->stroke_width.computed), transform,
1132 g_repr, xml_doc, doc );
1133 }
1134 // MID position
1135 if (path_it->size_default() > 1) {
1136 Geom::Path::const_iterator curve_it1 = path_it->begin(); // incoming curve
1137 Geom::Path::const_iterator curve_it2 = ++(path_it->begin()); // outgoing curve
1138 while (curve_it2 != path_it->end_default())
1139 {
1140 /* Put marker between curve_it1 and curve_it2.
1141 * Loop to end_default (so including closing segment), because when a path is closed,
1142 * there should be a midpoint marker between last segment and closing straight line segment
1143 */
1144 Geom::Matrix const m (sp_shape_marker_get_transform(*curve_it1, *curve_it2));
1145 sp_selected_path_outline_add_marker(midmarker_obj, m,
1146 Geom::Scale(i_style->stroke_width.computed), transform,
1147 g_repr, xml_doc, doc);
1149 ++curve_it1;
1150 ++curve_it2;
1151 }
1152 }
1153 // END position
1154 if ( path_it != (pathv.end()-1) && !path_it->empty()) {
1155 Geom::Curve const &lastcurve = path_it->back_default();
1156 Geom::Matrix const m = sp_shape_marker_get_transform_at_end(lastcurve);
1157 sp_selected_path_outline_add_marker( midmarker_obj, m,
1158 Geom::Scale(i_style->stroke_width.computed), transform,
1159 g_repr, xml_doc, doc );
1160 }
1161 }
1162 }
1163 // END marker
1164 for (int i = 0; i < 4; i += 3) { // SP_MARKER_LOC and SP_MARKER_LOC_END
1165 if ( SPObject *marker_obj = shape->marker[i] ) {
1166 /* Get reference to last curve in the path.
1167 * For moveto-only path, this returns the "closing line segment". */
1168 Geom::Path const &path_last = pathv.back();
1169 unsigned int index = path_last.size_default();
1170 if (index > 0) {
1171 index--;
1172 }
1173 Geom::Curve const &lastcurve = path_last[index];
1175 Geom::Matrix const m = sp_shape_marker_get_transform_at_end(lastcurve);
1176 sp_selected_path_outline_add_marker( marker_obj, m,
1177 Geom::Scale(i_style->stroke_width.computed), transform,
1178 g_repr, xml_doc, doc );
1179 }
1180 }
1182 selection->add(g_repr);
1184 Inkscape::GC::release(g_repr);
1187 } else {
1189 // add the new repr to the parent
1190 parent->appendChild(repr);
1192 // move to the saved position
1193 repr->setPosition(pos > 0 ? pos : 0);
1195 // restore title, description, id, transform
1196 repr->setAttribute("id", id);
1198 SPItem *newitem = (SPItem *) sp_desktop_document(desktop)->getObjectByRepr(repr);
1199 sp_item_write_transform(newitem, repr, transform);
1200 if (title) {
1201 newitem->setTitle(title);
1202 }
1203 if (desc) {
1204 newitem->setDesc(desc);
1205 }
1207 selection->add(repr);
1209 }
1211 Inkscape::GC::release(repr);
1213 curve->unref();
1214 selection->remove(item);
1215 SP_OBJECT(item)->deleteObject(false);
1217 }
1218 if (title) g_free(title);
1219 if (desc) g_free(desc);
1221 delete res;
1222 delete orig;
1223 }
1225 if (did) {
1226 sp_document_done(sp_desktop_document(desktop), SP_VERB_SELECTION_OUTLINE,
1227 _("Convert stroke to path"));
1228 } else {
1229 // TRANSLATORS: "to outline" means "to convert stroke to path"
1230 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("<b>No stroked paths</b> in the selection."));
1231 return;
1232 }
1233 }
1236 void
1237 sp_selected_path_offset(SPDesktop *desktop)
1238 {
1239 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1240 double prefOffset = prefs->getDouble("/options/defaultoffsetwidth/value", 1.0);
1242 sp_selected_path_do_offset(desktop, true, prefOffset);
1243 }
1244 void
1245 sp_selected_path_inset(SPDesktop *desktop)
1246 {
1247 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1248 double prefOffset = prefs->getDouble("/options/defaultoffsetwidth/value", 1.0);
1250 sp_selected_path_do_offset(desktop, false, prefOffset);
1251 }
1253 void
1254 sp_selected_path_offset_screen(SPDesktop *desktop, double pixels)
1255 {
1256 sp_selected_path_do_offset(desktop, true, pixels / desktop->current_zoom());
1257 }
1259 void
1260 sp_selected_path_inset_screen(SPDesktop *desktop, double pixels)
1261 {
1262 sp_selected_path_do_offset(desktop, false, pixels / desktop->current_zoom());
1263 }
1266 void sp_selected_path_create_offset_object_zero(SPDesktop *desktop)
1267 {
1268 sp_selected_path_create_offset_object(desktop, 0, false);
1269 }
1271 void sp_selected_path_create_offset(SPDesktop *desktop)
1272 {
1273 sp_selected_path_create_offset_object(desktop, 1, false);
1274 }
1275 void sp_selected_path_create_inset(SPDesktop *desktop)
1276 {
1277 sp_selected_path_create_offset_object(desktop, -1, false);
1278 }
1280 void sp_selected_path_create_updating_offset_object_zero(SPDesktop *desktop)
1281 {
1282 sp_selected_path_create_offset_object(desktop, 0, true);
1283 }
1285 void sp_selected_path_create_updating_offset(SPDesktop *desktop)
1286 {
1287 sp_selected_path_create_offset_object(desktop, 1, true);
1288 }
1289 void sp_selected_path_create_updating_inset(SPDesktop *desktop)
1290 {
1291 sp_selected_path_create_offset_object(desktop, -1, true);
1292 }
1294 void
1295 sp_selected_path_create_offset_object(SPDesktop *desktop, int expand, bool updating)
1296 {
1297 Inkscape::Selection *selection;
1298 Inkscape::XML::Node *repr;
1299 SPItem *item;
1300 SPCurve *curve;
1301 gchar *style, *str;
1302 float o_width, o_miter;
1303 JoinType o_join;
1304 ButtType o_butt;
1306 curve = NULL;
1308 selection = sp_desktop_selection(desktop);
1310 item = selection->singleItem();
1312 if (item == NULL || ( !SP_IS_SHAPE(item) && !SP_IS_TEXT(item) ) ) {
1313 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("Selected object is <b>not a path</b>, cannot inset/outset."));
1314 return;
1315 }
1316 if (SP_IS_SHAPE(item))
1317 {
1318 curve = sp_shape_get_curve(SP_SHAPE(item));
1319 if (curve == NULL)
1320 return;
1321 }
1322 if (SP_IS_TEXT(item))
1323 {
1324 curve = SP_TEXT(item)->getNormalizedBpath();
1325 if (curve == NULL)
1326 return;
1327 }
1329 Geom::Matrix const transform(item->transform);
1331 sp_item_write_transform(item, SP_OBJECT_REPR(item), Geom::identity());
1333 style = g_strdup(SP_OBJECT(item)->repr->attribute("style"));
1335 // remember the position of the item
1336 gint pos = SP_OBJECT_REPR(item)->position();
1337 // remember parent
1338 Inkscape::XML::Node *parent = SP_OBJECT_REPR(item)->parent();
1340 {
1341 SPStyle *i_style = SP_OBJECT(item)->style;
1342 int jointype, captype;
1344 jointype = i_style->stroke_linejoin.value;
1345 captype = i_style->stroke_linecap.value;
1346 o_width = i_style->stroke_width.computed;
1347 if (jointype == SP_STROKE_LINEJOIN_MITER)
1348 {
1349 o_join = join_pointy;
1350 }
1351 else if (jointype == SP_STROKE_LINEJOIN_ROUND)
1352 {
1353 o_join = join_round;
1354 }
1355 else
1356 {
1357 o_join = join_straight;
1358 }
1359 if (captype == SP_STROKE_LINECAP_SQUARE)
1360 {
1361 o_butt = butt_square;
1362 }
1363 else if (captype == SP_STROKE_LINECAP_ROUND)
1364 {
1365 o_butt = butt_round;
1366 }
1367 else
1368 {
1369 o_butt = butt_straight;
1370 }
1372 {
1373 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1374 o_width = prefs->getDouble("/options/defaultoffsetwidth/value", 1.0);
1375 }
1377 if (o_width < 0.01)
1378 o_width = 0.01;
1379 o_miter = i_style->stroke_miterlimit.value * o_width;
1380 }
1382 Path *orig = Path_for_item(item, true, false);
1383 if (orig == NULL)
1384 {
1385 g_free(style);
1386 curve->unref();
1387 return;
1388 }
1390 Path *res = new Path;
1391 res->SetBackData(false);
1393 {
1394 Shape *theShape = new Shape;
1395 Shape *theRes = new Shape;
1397 orig->ConvertWithBackData(1.0);
1398 orig->Fill(theShape, 0);
1400 SPCSSAttr *css = sp_repr_css_attr(SP_OBJECT_REPR(item), "style");
1401 gchar const *val = sp_repr_css_property(css, "fill-rule", NULL);
1402 if (val && strcmp(val, "nonzero") == 0)
1403 {
1404 theRes->ConvertToShape(theShape, fill_nonZero);
1405 }
1406 else if (val && strcmp(val, "evenodd") == 0)
1407 {
1408 theRes->ConvertToShape(theShape, fill_oddEven);
1409 }
1410 else
1411 {
1412 theRes->ConvertToShape(theShape, fill_nonZero);
1413 }
1415 Path *originaux[1];
1416 originaux[0] = orig;
1417 theRes->ConvertToForme(res, 1, originaux);
1419 delete theShape;
1420 delete theRes;
1421 }
1423 curve->unref();
1425 if (res->descr_cmd.size() <= 1)
1426 {
1427 // pas vraiment de points sur le resultat
1428 // donc il ne reste rien
1429 sp_document_done(sp_desktop_document(desktop),
1430 (updating ? SP_VERB_SELECTION_LINKED_OFFSET
1431 : SP_VERB_SELECTION_DYNAMIC_OFFSET),
1432 (updating ? _("Create linked offset")
1433 : _("Create dynamic offset")));
1434 selection->clear();
1436 delete res;
1437 delete orig;
1438 g_free(style);
1439 return;
1440 }
1442 {
1443 gchar tstr[80];
1445 tstr[79] = '\0';
1447 Inkscape::XML::Document *xml_doc = sp_document_repr_doc(desktop->doc());
1448 repr = xml_doc->createElement("svg:path");
1449 repr->setAttribute("sodipodi:type", "inkscape:offset");
1450 sp_repr_set_svg_double(repr, "inkscape:radius", ( expand > 0
1451 ? o_width
1452 : expand < 0
1453 ? -o_width
1454 : 0 ));
1456 str = res->svg_dump_path();
1457 repr->setAttribute("inkscape:original", str);
1458 g_free(str);
1460 if ( updating ) {
1461 char const *id = SP_OBJECT(item)->repr->attribute("id");
1462 char const *uri = g_strdup_printf("#%s", id);
1463 repr->setAttribute("xlink:href", uri);
1464 g_free((void *) uri);
1465 } else {
1466 repr->setAttribute("inkscape:href", NULL);
1467 }
1469 repr->setAttribute("style", style);
1471 // add the new repr to the parent
1472 parent->appendChild(repr);
1474 // move to the saved position
1475 repr->setPosition(pos > 0 ? pos : 0);
1477 SPItem *nitem = (SPItem *) sp_desktop_document(desktop)->getObjectByRepr(repr);
1479 if ( updating ) {
1480 // on conserve l'original
1481 // we reapply the transform to the original (offset will feel it)
1482 sp_item_write_transform(item, SP_OBJECT_REPR(item), transform);
1483 } else {
1484 // delete original, apply the transform to the offset
1485 SP_OBJECT(item)->deleteObject(false);
1486 sp_item_write_transform(nitem, repr, transform);
1487 }
1489 // The object just created from a temporary repr is only a seed.
1490 // We need to invoke its write which will update its real repr (in particular adding d=)
1491 SP_OBJECT(nitem)->updateRepr();
1493 Inkscape::GC::release(repr);
1495 selection->set(nitem);
1496 }
1498 sp_document_done(sp_desktop_document(desktop),
1499 (updating ? SP_VERB_SELECTION_LINKED_OFFSET
1500 : SP_VERB_SELECTION_DYNAMIC_OFFSET),
1501 (updating ? _("Create linked offset")
1502 : _("Create dynamic offset")));
1504 delete res;
1505 delete orig;
1507 g_free(style);
1508 }
1521 void
1522 sp_selected_path_do_offset(SPDesktop *desktop, bool expand, double prefOffset)
1523 {
1524 Inkscape::Selection *selection = sp_desktop_selection(desktop);
1526 if (selection->isEmpty()) {
1527 desktop->messageStack()->flash(Inkscape::WARNING_MESSAGE, _("Select <b>path(s)</b> to inset/outset."));
1528 return;
1529 }
1531 bool did = false;
1533 for (GSList *items = g_slist_copy((GSList *) selection->itemList());
1534 items != NULL;
1535 items = items->next) {
1537 SPItem *item = (SPItem *) items->data;
1539 if (!SP_IS_SHAPE(item) && !SP_IS_TEXT(item))
1540 continue;
1542 SPCurve *curve = NULL;
1543 if (SP_IS_SHAPE(item)) {
1544 curve = sp_shape_get_curve(SP_SHAPE(item));
1545 if (curve == NULL)
1546 continue;
1547 }
1548 if (SP_IS_TEXT(item)) {
1549 curve = SP_TEXT(item)->getNormalizedBpath();
1550 if (curve == NULL)
1551 continue;
1552 }
1554 Geom::Matrix const transform(item->transform);
1556 sp_item_write_transform(item, SP_OBJECT_REPR(item), Geom::identity());
1558 gchar *style = g_strdup(SP_OBJECT_REPR(item)->attribute("style"));
1560 float o_width, o_miter;
1561 JoinType o_join;
1562 ButtType o_butt;
1564 {
1565 SPStyle *i_style = SP_OBJECT(item)->style;
1566 int jointype, captype;
1568 jointype = i_style->stroke_linejoin.value;
1569 captype = i_style->stroke_linecap.value;
1570 o_width = i_style->stroke_width.computed;
1572 switch (jointype) {
1573 case SP_STROKE_LINEJOIN_MITER:
1574 o_join = join_pointy;
1575 break;
1576 case SP_STROKE_LINEJOIN_ROUND:
1577 o_join = join_round;
1578 break;
1579 default:
1580 o_join = join_straight;
1581 break;
1582 }
1584 switch (captype) {
1585 case SP_STROKE_LINECAP_SQUARE:
1586 o_butt = butt_square;
1587 break;
1588 case SP_STROKE_LINECAP_ROUND:
1589 o_butt = butt_round;
1590 break;
1591 default:
1592 o_butt = butt_straight;
1593 break;
1594 }
1596 o_width = prefOffset;
1598 if (o_width < 0.1)
1599 o_width = 0.1;
1600 o_miter = i_style->stroke_miterlimit.value * o_width;
1601 }
1603 Path *orig = Path_for_item(item, false);
1604 if (orig == NULL) {
1605 g_free(style);
1606 curve->unref();
1607 continue;
1608 }
1610 Path *res = new Path;
1611 res->SetBackData(false);
1613 {
1614 Shape *theShape = new Shape;
1615 Shape *theRes = new Shape;
1617 orig->ConvertWithBackData(0.03);
1618 orig->Fill(theShape, 0);
1620 SPCSSAttr *css = sp_repr_css_attr(SP_OBJECT_REPR(item), "style");
1621 gchar const *val = sp_repr_css_property(css, "fill-rule", NULL);
1622 if (val && strcmp(val, "nonzero") == 0)
1623 {
1624 theRes->ConvertToShape(theShape, fill_nonZero);
1625 }
1626 else if (val && strcmp(val, "evenodd") == 0)
1627 {
1628 theRes->ConvertToShape(theShape, fill_oddEven);
1629 }
1630 else
1631 {
1632 theRes->ConvertToShape(theShape, fill_nonZero);
1633 }
1635 // et maintenant: offset
1636 // methode inexacte
1637 /* Path *originaux[1];
1638 originaux[0] = orig;
1639 theRes->ConvertToForme(res, 1, originaux);
1641 if (expand) {
1642 res->OutsideOutline(orig, 0.5 * o_width, o_join, o_butt, o_miter);
1643 } else {
1644 res->OutsideOutline(orig, -0.5 * o_width, o_join, o_butt, o_miter);
1645 }
1647 orig->ConvertWithBackData(1.0);
1648 orig->Fill(theShape, 0);
1649 theRes->ConvertToShape(theShape, fill_positive);
1650 originaux[0] = orig;
1651 theRes->ConvertToForme(res, 1, originaux);
1653 if (o_width >= 0.5) {
1654 // res->Coalesce(1.0);
1655 res->ConvertEvenLines(1.0);
1656 res->Simplify(1.0);
1657 } else {
1658 // res->Coalesce(o_width);
1659 res->ConvertEvenLines(1.0*o_width);
1660 res->Simplify(1.0 * o_width);
1661 } */
1662 // methode par makeoffset
1664 if (expand)
1665 {
1666 theShape->MakeOffset(theRes, o_width, o_join, o_miter);
1667 }
1668 else
1669 {
1670 theShape->MakeOffset(theRes, -o_width, o_join, o_miter);
1671 }
1672 theRes->ConvertToShape(theShape, fill_positive);
1674 res->Reset();
1675 theRes->ConvertToForme(res);
1677 if (o_width >= 1.0)
1678 {
1679 res->ConvertEvenLines(1.0);
1680 res->Simplify(1.0);
1681 }
1682 else
1683 {
1684 res->ConvertEvenLines(1.0*o_width);
1685 res->Simplify(1.0 * o_width);
1686 }
1688 delete theShape;
1689 delete theRes;
1690 }
1692 did = true;
1694 curve->unref();
1695 // remember the position of the item
1696 gint pos = SP_OBJECT_REPR(item)->position();
1697 // remember parent
1698 Inkscape::XML::Node *parent = SP_OBJECT_REPR(item)->parent();
1699 // remember id
1700 char const *id = SP_OBJECT_REPR(item)->attribute("id");
1702 selection->remove(item);
1703 SP_OBJECT(item)->deleteObject(false);
1705 if (res->descr_cmd.size() > 1) { // if there's 0 or 1 node left, drop this path altogether
1707 gchar tstr[80];
1709 tstr[79] = '\0';
1711 Inkscape::XML::Document *xml_doc = sp_document_repr_doc(desktop->doc());
1712 Inkscape::XML::Node *repr = xml_doc->createElement("svg:path");
1714 repr->setAttribute("style", style);
1716 gchar *str = res->svg_dump_path();
1717 repr->setAttribute("d", str);
1718 g_free(str);
1720 // add the new repr to the parent
1721 parent->appendChild(repr);
1723 // move to the saved position
1724 repr->setPosition(pos > 0 ? pos : 0);
1726 SPItem *newitem = (SPItem *) sp_desktop_document(desktop)->getObjectByRepr(repr);
1728 // reapply the transform
1729 sp_item_write_transform(newitem, repr, transform);
1731 repr->setAttribute("id", id);
1733 selection->add(repr);
1735 Inkscape::GC::release(repr);
1736 }
1738 delete orig;
1739 delete res;
1740 }
1742 if (did) {
1743 sp_document_done(sp_desktop_document(desktop),
1744 (expand ? SP_VERB_SELECTION_OFFSET : SP_VERB_SELECTION_INSET),
1745 (expand ? _("Outset path") : _("Inset path")));
1746 } else {
1747 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("<b>No paths</b> to inset/outset in the selection."));
1748 return;
1749 }
1750 }
1753 static bool
1754 sp_selected_path_simplify_items(SPDesktop *desktop,
1755 Inkscape::Selection *selection, GSList *items,
1756 float threshold, bool justCoalesce,
1757 float angleLimit, bool breakableAngles,
1758 bool modifySelection);
1761 //return true if we changed something, else false
1762 bool
1763 sp_selected_path_simplify_item(SPDesktop *desktop,
1764 Inkscape::Selection *selection, SPItem *item,
1765 float threshold, bool justCoalesce,
1766 float angleLimit, bool breakableAngles,
1767 gdouble size, bool modifySelection)
1768 {
1769 if (!(SP_IS_GROUP(item) || SP_IS_SHAPE(item) || SP_IS_TEXT(item)))
1770 return false;
1772 //If this is a group, do the children instead
1773 if (SP_IS_GROUP(item)) {
1774 GSList *items = sp_item_group_item_list(SP_GROUP(item));
1776 return sp_selected_path_simplify_items(desktop, selection, items,
1777 threshold, justCoalesce,
1778 angleLimit, breakableAngles,
1779 false);
1780 }
1783 SPCurve *curve = NULL;
1785 if (SP_IS_SHAPE(item)) {
1786 curve = sp_shape_get_curve(SP_SHAPE(item));
1787 if (!curve)
1788 return false;
1789 }
1791 if (SP_IS_TEXT(item)) {
1792 curve = SP_TEXT(item)->getNormalizedBpath();
1793 if (!curve)
1794 return false;
1795 }
1797 // correct virtual size by full transform (bug #166937)
1798 size /= sp_item_i2doc_affine(item).descrim();
1800 // save the transform, to re-apply it after simplification
1801 Geom::Matrix const transform(item->transform);
1803 /*
1804 reset the transform, effectively transforming the item by transform.inverse();
1805 this is necessary so that the item is transformed twice back and forth,
1806 allowing all compensations to cancel out regardless of the preferences
1807 */
1808 sp_item_write_transform(item, SP_OBJECT_REPR(item), Geom::identity());
1810 gchar *style = g_strdup(SP_OBJECT_REPR(item)->attribute("style"));
1811 gchar *mask = g_strdup(SP_OBJECT_REPR(item)->attribute("mask"));
1812 gchar *clip_path = g_strdup(SP_OBJECT_REPR(item)->attribute("clip-path"));
1814 Path *orig = Path_for_item(item, false);
1815 if (orig == NULL) {
1816 g_free(style);
1817 curve->unref();
1818 return false;
1819 }
1821 curve->unref();
1822 // remember the position of the item
1823 gint pos = SP_OBJECT_REPR(item)->position();
1824 // remember parent
1825 Inkscape::XML::Node *parent = SP_OBJECT_REPR(item)->parent();
1826 // remember id
1827 char const *id = SP_OBJECT_REPR(item)->attribute("id");
1828 // remember path effect
1829 char const *patheffect = SP_OBJECT_REPR(item)->attribute("inkscape:path-effect");
1830 // remember title
1831 gchar *title = item->title();
1832 // remember description
1833 gchar *desc = item->desc();
1835 //If a group was selected, to not change the selection list
1836 if (modifySelection)
1837 selection->remove(item);
1839 SP_OBJECT(item)->deleteObject(false);
1841 if ( justCoalesce ) {
1842 orig->Coalesce(threshold * size);
1843 } else {
1844 orig->ConvertEvenLines(threshold * size);
1845 orig->Simplify(threshold * size);
1846 }
1848 Inkscape::XML::Document *xml_doc = sp_document_repr_doc(desktop->doc());
1849 Inkscape::XML::Node *repr = xml_doc->createElement("svg:path");
1851 // restore style, mask and clip-path
1852 repr->setAttribute("style", style);
1853 g_free(style);
1855 if ( mask ) {
1856 repr->setAttribute("mask", mask);
1857 g_free(mask);
1858 }
1860 if ( clip_path ) {
1861 repr->setAttribute("clip-path", clip_path);
1862 g_free(clip_path);
1863 }
1865 // restore path effect
1866 repr->setAttribute("inkscape:path-effect", patheffect);
1868 // path
1869 gchar *str = orig->svg_dump_path();
1870 if (patheffect)
1871 repr->setAttribute("inkscape:original-d", str);
1872 else
1873 repr->setAttribute("d", str);
1874 g_free(str);
1876 // restore id
1877 repr->setAttribute("id", id);
1879 // add the new repr to the parent
1880 parent->appendChild(repr);
1882 // move to the saved position
1883 repr->setPosition(pos > 0 ? pos : 0);
1885 SPItem *newitem = (SPItem *) sp_desktop_document(desktop)->getObjectByRepr(repr);
1887 // reapply the transform
1888 sp_item_write_transform(newitem, repr, transform);
1890 // restore title & description
1891 if (title) {
1892 newitem->setTitle(title);
1893 g_free(title);
1894 }
1895 if (desc) {
1896 newitem->setDesc(desc);
1897 g_free(desc);
1898 }
1900 //If we are not in a selected group
1901 if (modifySelection)
1902 selection->add(repr);
1904 Inkscape::GC::release(repr);
1906 // clean up
1907 if (orig) delete orig;
1909 return true;
1910 }
1913 bool
1914 sp_selected_path_simplify_items(SPDesktop *desktop,
1915 Inkscape::Selection *selection, GSList *items,
1916 float threshold, bool justCoalesce,
1917 float angleLimit, bool breakableAngles,
1918 bool modifySelection)
1919 {
1920 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1921 bool simplifyIndividualPaths = prefs->getBool("/options/simplifyindividualpaths/value");
1923 gchar *simplificationType;
1924 if (simplifyIndividualPaths) {
1925 simplificationType = _("Simplifying paths (separately):");
1926 } else {
1927 simplificationType = _("Simplifying paths:");
1928 }
1930 bool didSomething = false;
1932 Geom::OptRect selectionBbox = selection->bounds();
1933 if (!selectionBbox) {
1934 return false;
1935 }
1936 gdouble selectionSize = L2(selectionBbox->dimensions());
1938 gdouble simplifySize = selectionSize;
1940 int pathsSimplified = 0;
1941 int totalPathCount = g_slist_length(items);
1943 // set "busy" cursor
1944 desktop->setWaitingCursor();
1946 for (; items != NULL; items = items->next) {
1947 SPItem *item = (SPItem *) items->data;
1949 if (!(SP_IS_GROUP(item) || SP_IS_SHAPE(item) || SP_IS_TEXT(item)))
1950 continue;
1952 if (simplifyIndividualPaths) {
1953 Geom::OptRect itemBbox = item->getBounds(sp_item_i2d_affine(item));
1954 if (itemBbox) {
1955 simplifySize = L2(itemBbox->dimensions());
1956 } else {
1957 simplifySize = 0;
1958 }
1959 }
1961 pathsSimplified++;
1963 if (pathsSimplified % 20 == 0) {
1964 gchar *message = g_strdup_printf(_("%s <b>%d</b> of <b>%d</b> paths simplified..."),
1965 simplificationType, pathsSimplified, totalPathCount);
1966 desktop->messageStack()->flash(Inkscape::IMMEDIATE_MESSAGE, message);
1967 }
1969 didSomething |= sp_selected_path_simplify_item(desktop, selection, item,
1970 threshold, justCoalesce, angleLimit, breakableAngles, simplifySize, modifySelection);
1971 }
1973 desktop->clearWaitingCursor();
1975 if (pathsSimplified > 20) {
1976 desktop->messageStack()->flash(Inkscape::NORMAL_MESSAGE, g_strdup_printf(_("<b>%d</b> paths simplified."), pathsSimplified));
1977 }
1979 return didSomething;
1980 }
1982 void
1983 sp_selected_path_simplify_selection(SPDesktop *desktop, float threshold, bool justCoalesce,
1984 float angleLimit, bool breakableAngles)
1985 {
1986 Inkscape::Selection *selection = sp_desktop_selection(desktop);
1988 if (selection->isEmpty()) {
1989 desktop->messageStack()->flash(Inkscape::WARNING_MESSAGE,
1990 _("Select <b>path(s)</b> to simplify."));
1991 return;
1992 }
1994 GSList *items = g_slist_copy((GSList *) selection->itemList());
1996 bool didSomething = sp_selected_path_simplify_items(desktop, selection,
1997 items, threshold,
1998 justCoalesce,
1999 angleLimit,
2000 breakableAngles, true);
2002 if (didSomething)
2003 sp_document_done(sp_desktop_document(desktop), SP_VERB_SELECTION_SIMPLIFY,
2004 _("Simplify"));
2005 else
2006 desktop->messageStack()->flash(Inkscape::ERROR_MESSAGE, _("<b>No paths</b> to simplify in the selection."));
2008 }
2011 // globals for keeping track of accelerated simplify
2012 static double previousTime = 0.0;
2013 static gdouble simplifyMultiply = 1.0;
2015 void
2016 sp_selected_path_simplify(SPDesktop *desktop)
2017 {
2018 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
2019 gdouble simplifyThreshold =
2020 prefs->getDouble("/options/simplifythreshold/value", 0.003);
2021 bool simplifyJustCoalesce = prefs->getBool("/options/simplifyjustcoalesce/value", 0);
2023 //Get the current time
2024 GTimeVal currentTimeVal;
2025 g_get_current_time(¤tTimeVal);
2026 double currentTime = currentTimeVal.tv_sec * 1000000 +
2027 currentTimeVal.tv_usec;
2029 //Was the previous call to this function recent? (<0.5 sec)
2030 if (previousTime > 0.0 && currentTime - previousTime < 500000.0) {
2032 // add to the threshold 1/2 of its original value
2033 simplifyMultiply += 0.5;
2034 simplifyThreshold *= simplifyMultiply;
2036 } else {
2037 // reset to the default
2038 simplifyMultiply = 1;
2039 }
2041 //remember time for next call
2042 previousTime = currentTime;
2044 //g_print("%g\n", simplify_threshold);
2046 //Make the actual call
2047 sp_selected_path_simplify_selection(desktop, simplifyThreshold,
2048 simplifyJustCoalesce, 0.0, false);
2049 }
2053 // fonctions utilitaires
2055 bool
2056 Ancetre(Inkscape::XML::Node *a, Inkscape::XML::Node *who)
2057 {
2058 if (who == NULL || a == NULL)
2059 return false;
2060 if (who == a)
2061 return true;
2062 return Ancetre(sp_repr_parent(a), who);
2063 }
2065 Path *
2066 Path_for_item(SPItem *item, bool doTransformation, bool transformFull)
2067 {
2068 SPCurve *curve = curve_for_item(item);
2070 if (curve == NULL)
2071 return NULL;
2073 Geom::PathVector *pathv = pathvector_for_curve(item, curve, doTransformation, transformFull, Geom::identity(), Geom::identity());
2074 curve->unref();
2076 Path *dest = new Path;
2077 dest->LoadPathVector(*pathv);
2078 delete pathv;
2080 return dest;
2081 }
2083 /*
2084 * NOTE: Returns empty pathvector if curve == NULL
2085 * TODO: see if calling this method can be optimized. All the pathvector copying might be slow.
2086 */
2087 Geom::PathVector*
2088 pathvector_for_curve(SPItem *item, SPCurve *curve, bool doTransformation, bool transformFull, Geom::Matrix extraPreAffine, Geom::Matrix extraPostAffine)
2089 {
2090 if (curve == NULL)
2091 return NULL;
2093 Geom::PathVector *dest = new Geom::PathVector;
2094 *dest = curve->get_pathvector(); // Make a copy; must be freed by the caller!
2096 if (doTransformation) {
2097 if (transformFull) {
2098 *dest *= extraPreAffine * sp_item_i2doc_affine(item) * extraPostAffine;
2099 } else {
2100 *dest *= extraPreAffine * (Geom::Matrix)item->transform * extraPostAffine;
2101 }
2102 } else {
2103 *dest *= extraPreAffine * extraPostAffine;
2104 }
2106 return dest;
2107 }
2109 SPCurve* curve_for_item(SPItem *item)
2110 {
2111 if (!item)
2112 return NULL;
2114 SPCurve *curve = NULL;
2115 if (SP_IS_SHAPE(item)) {
2116 if (SP_IS_PATH(item)) {
2117 curve = sp_path_get_curve_for_edit(SP_PATH(item));
2118 } else {
2119 curve = sp_shape_get_curve(SP_SHAPE(item));
2120 }
2121 }
2122 else if (SP_IS_TEXT(item) || SP_IS_FLOWTEXT(item))
2123 {
2124 curve = te_get_layout(item)->convertToCurves();
2125 }
2126 else if (SP_IS_IMAGE(item))
2127 {
2128 curve = sp_image_get_curve(SP_IMAGE(item));
2129 }
2131 return curve; // do not forget to unref the curve at some point!
2132 }
2134 boost::optional<Path::cut_position> get_nearest_position_on_Path(Path *path, Geom::Point p, unsigned seg)
2135 {
2136 //get nearest position on path
2137 Path::cut_position pos = path->PointToCurvilignPosition(p, seg);
2138 return pos;
2139 }
2141 Geom::Point get_point_on_Path(Path *path, int piece, double t)
2142 {
2143 Geom::Point p;
2144 path->PointAt(piece, t, p);
2145 return p;
2146 }
2149 /*
2150 Local Variables:
2151 mode:c++
2152 c-file-style:"stroustrup"
2153 c-file-offsets:((innamespace . 0)(inline-open . 0)(case-label . +))
2154 indent-tabs-mode:nil
2155 fill-column:99
2156 End:
2157 */
2158 // vim: filetype=cpp:expandtab:shiftwidth=4:tabstop=8:softtabstop=4:encoding=utf-8:textwidth=99 :