Prevent a warning about unhandled cases.
[synfig.git] / synfig-studio / trunk / src / gtkmm / duckmatic.cpp
1 /* === S Y N F I G ========================================================= */
2 /*!     \file duckmatic.cpp
3 **      \brief Template File
4 **
5 **      $Id$
6 **
7 **      \legal
8 **      Copyright (c) 2002-2005 Robert B. Quattlebaum Jr., Adrian Bentley
9 **      Copyright (c) 2007, 2008 Chris Moore
10 **
11 **      This package is free software; you can redistribute it and/or
12 **      modify it under the terms of the GNU General Public License as
13 **      published by the Free Software Foundation; either version 2 of
14 **      the License, or (at your option) any later version.
15 **
16 **      This package is distributed in the hope that it will be useful,
17 **      but WITHOUT ANY WARRANTY; without even the implied warranty of
18 **      MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
19 **      General Public License for more details.
20 **      \endlegal
21 */
22 /* ========================================================================= */
23
24 /* === H E A D E R S ======================================================= */
25
26 #ifdef USING_PCH
27 #       include "pch.h"
28 #else
29 #ifdef HAVE_CONFIG_H
30 #       include <config.h>
31 #endif
32 #include <fstream>
33 #include <iostream>
34 #include <algorithm>
35
36 #include <ETL/hermite>
37
38 #include "duckmatic.h"
39 #include <synfigapp/value_desc.h>
40 #include <synfig/general.h>
41 #include <synfig/paramdesc.h>
42 #include <synfig/valuenode_timedswap.h>
43 #include <synfig/valuenode_animated.h>
44 #include <synfig/valuenode_composite.h>
45 #include <synfig/valuenode_scale.h>
46 #include <synfig/valuenode_bline.h>
47 #include <synfig/valuenode_blinecalctangent.h>
48 #include <synfig/valuenode_blinecalcvertex.h>
49 #include <synfig/valuenode_blinecalcwidth.h>
50
51 #include <synfig/curve_helper.h>
52
53 #include <sigc++/retype_return.h>
54 #include <sigc++/retype.h>
55 #include <sigc++/hide.h>
56 #include <sigc++/bind.h>
57
58 #include "canvasview.h"
59
60 #include "onemoment.h"
61
62 #include "general.h"
63
64 #endif
65
66 /* === U S I N G =========================================================== */
67
68 using namespace std;
69 using namespace etl;
70 using namespace synfig;
71 using namespace studio;
72
73 /* === M A C R O S ========================================================= */
74
75 /* 0.33333333333333333 makes for nice short tangent handles,
76    1.0 makes them draw as their real length */
77 #define TANGENT_HANDLE_SCALE 0.33333333333333333
78
79 /* leave this alone or the bezier won't lie on top of the bline */
80 #define TANGENT_BEZIER_SCALE 0.33333333333333333
81
82 /* === G L O B A L S ======================================================= */
83
84 /* === P R O C E D U R E S ================================================= */
85
86 /* === M E T H O D S ======================================================= */
87
88 /* === E N T R Y P O I N T ================================================= */
89
90 Duckmatic::Duckmatic():
91         type_mask(Duck::TYPE_ALL-Duck::TYPE_WIDTH),
92         grid_snap(false),
93         guide_snap(false),
94         grid_size(1.0/4.0,1.0/4.0),
95         show_persistent_strokes(true)
96 {
97         axis_lock=false;
98         drag_offset_=Point(0,0);
99         clear_duck_dragger();
100 }
101
102 Duckmatic::~Duckmatic()
103 {
104         clear_ducks();
105
106         if (Duck::duck_count)
107                 synfig::error("%d ducks not yet deleted!", Duck::duck_count);
108
109         if (getenv("SYNFIG_DEBUG_DESTRUCTORS"))
110                 synfig::info("Duckmatic::~Duckmatic(): Deleted");
111 }
112
113 void
114 Duckmatic::clear_ducks()
115 {
116         duck_data_share_map.clear();
117         duck_map.clear();
118
119         //duck_list_.clear();
120         bezier_list_.clear();
121         stroke_list_.clear();
122
123         if(show_persistent_strokes)
124                 stroke_list_=persistent_stroke_list_;
125 }
126
127 //! Returns \a true if the given duck is currently selected
128 bool
129 Duckmatic::duck_is_selected(const etl::handle<Duck> &duck)const
130 {
131         return duck && selected_ducks.count(duck->get_guid());
132 }
133
134 void
135 Duckmatic::set_grid_size(const synfig::Vector &s)
136 {
137         if(grid_size!=s)
138         {
139                 grid_size=s;
140                 signal_grid_changed();
141         }
142 }
143
144 void
145 Duckmatic::set_grid_snap(bool x)
146 {
147         if(grid_snap!=x)
148         {
149                 grid_snap=x;
150                 signal_grid_changed();
151         }
152 }
153
154 void
155 Duckmatic::set_guide_snap(bool x)
156 {
157         if(guide_snap!=x)
158         {
159                 guide_snap=x;
160                 signal_grid_changed();
161         }
162 }
163
164 Duckmatic::GuideList::iterator
165 Duckmatic::find_guide_x(synfig::Point pos, float radius)
166 {
167         GuideList::iterator iter,best(guide_list_x_.end());
168         float dist(radius);
169         for(iter=guide_list_x_.begin();iter!=guide_list_x_.end();++iter)
170         {
171                 float amount(abs(*iter-pos[0]));
172                 if(amount<dist)
173                 {
174                         dist=amount;
175                         best=iter;
176                 }
177         }
178         return best;
179 }
180
181 Duckmatic::GuideList::iterator
182 Duckmatic::find_guide_y(synfig::Point pos, float radius)
183 {
184         GuideList::iterator iter,best(guide_list_y_.end());
185         float dist(radius);
186         for(iter=guide_list_y_.begin();iter!=guide_list_y_.end();++iter)
187         {
188                 float amount(abs(*iter-pos[1]));
189                 if(amount<=dist)
190                 {
191                         dist=amount;
192                         best=iter;
193                 }
194         }
195         return best;
196 }
197
198 void
199 Duckmatic::clear_selected_ducks()
200 {
201         selected_ducks.clear();
202         signal_duck_selection_changed_();
203 }
204
205 etl::handle<Duckmatic::Duck>
206 Duckmatic::get_selected_duck()const
207 {
208         if(selected_ducks.empty() || duck_map.empty())
209                 return 0;
210         return duck_map.find(*selected_ducks.begin())->second;
211 }
212
213 void
214 Duckmatic::refresh_selected_ducks()
215 {
216 /*
217         std::set<etl::handle<Duck> >::iterator iter;
218         std::set<etl::handle<Duck> > new_set;
219         if(duck_list().empty())
220         {
221                 selected_duck_list.clear();
222                 signal_duck_selection_changed_();
223                 return;
224         }
225
226         for(iter=selected_duck_list.begin();iter!=selected_duck_list.end();++iter)
227         {
228                 etl::handle<Duck> similar(find_similar_duck(*iter));
229                 if(similar)
230                 {
231                         new_set.insert(similar);
232                 }
233         }
234         selected_duck_list=new_set;
235 */
236         GUIDSet old_set(selected_ducks);
237         GUIDSet::const_iterator iter;
238
239         for(iter=old_set.begin();iter!=old_set.end();++iter)
240         {
241                 if(duck_map.count(*iter)==0)
242                         selected_ducks.erase(*iter);
243         }
244
245         signal_duck_selection_changed_();
246 }
247
248 bool
249 Duckmatic::is_duck_group_selectable(const etl::handle<Duck>& x)const
250 {
251         const Type type(get_type_mask());
252
253         if (((x->get_type() && (!(type & x->get_type()))) ||
254                  !x->get_editable()))
255                 return false;
256
257         if(x->get_value_desc().parent_is_layer_param() && type & Duck::TYPE_POSITION)
258         {
259                 Layer::Handle layer(x->get_value_desc().get_layer());
260                 String layer_name(layer->get_name());
261
262                 if (layer_name == "outline" || layer_name == "region" || layer_name == "plant" ||
263                         layer_name == "polygon" || layer_name == "curve_gradient")
264                         return false;
265
266                 if((layer_name=="PasteCanvas"|| layer_name=="paste_canvas") &&
267                    !layer->get_param("children_lock").get(bool()))
268                         return false;
269         }
270         return true;
271 }
272
273 void
274 Duckmatic::select_all_ducks()
275 {
276         DuckMap::const_iterator iter;
277         for(iter=duck_map.begin();iter!=duck_map.end();++iter)
278                 if(is_duck_group_selectable(iter->second))
279                         select_duck(iter->second);
280                 else
281                         unselect_duck(iter->second);
282 }
283
284 void
285 Duckmatic::toggle_select_ducks_in_box(const synfig::Vector& tl,const synfig::Vector& br)
286 {
287         Vector vmin, vmax;
288         vmin[0]=std::min(tl[0],br[0]);
289         vmin[1]=std::min(tl[1],br[1]);
290         vmax[0]=std::max(tl[0],br[0]);
291         vmax[1]=std::max(tl[1],br[1]);
292
293         DuckMap::const_iterator iter;
294         for(iter=duck_map.begin();iter!=duck_map.end();++iter)
295         {
296                 Point p(iter->second->get_trans_point());
297                 if(p[0]<=vmax[0] && p[0]>=vmin[0] && p[1]<=vmax[1] && p[1]>=vmin[1] &&
298                    is_duck_group_selectable(iter->second))
299                         toggle_select_duck(iter->second);
300         }
301 }
302
303 void
304 Duckmatic::select_ducks_in_box(const synfig::Vector& tl,const synfig::Vector& br)
305 {
306         Vector vmin, vmax;
307         vmin[0]=std::min(tl[0],br[0]);
308         vmin[1]=std::min(tl[1],br[1]);
309         vmax[0]=std::max(tl[0],br[0]);
310         vmax[1]=std::max(tl[1],br[1]);
311
312 //      Type type(get_type_mask());
313
314         DuckMap::const_iterator iter;
315         for(iter=duck_map.begin();iter!=duck_map.end();++iter)
316         {
317                 Point p(iter->second->get_trans_point());
318                 if(p[0]<=vmax[0] && p[0]>=vmin[0] && p[1]<=vmax[1] && p[1]>=vmin[1])
319                 {
320                         if(is_duck_group_selectable(iter->second))
321                                 select_duck(iter->second);
322                 }
323         }
324 }
325
326 int
327 Duckmatic::count_selected_ducks()const
328 {
329         return selected_ducks.size();
330 }
331
332 void
333 Duckmatic::select_duck(const etl::handle<Duck> &duck)
334 {
335         if(duck)
336         {
337                 selected_ducks.insert(duck->get_guid());
338                 signal_duck_selection_changed_();
339         }
340 }
341
342 DuckList
343 Duckmatic::get_selected_ducks()const
344 {
345         DuckList ret;
346         GUIDSet::const_iterator iter;
347         const Type type(get_type_mask());
348
349         for(iter=selected_ducks.begin();iter!=selected_ducks.end();++iter)
350         {
351                 const DuckMap::const_iterator d_iter(duck_map.find(*iter));
352
353                 if(d_iter==duck_map.end())
354                         continue;
355
356                 if(( d_iter->second->get_type() && (!(type & d_iter->second->get_type())) ) )
357                         continue;
358
359                 ret.push_back(d_iter->second);
360         }
361         return ret;
362 }
363
364 DuckList
365 Duckmatic::get_duck_list()const
366 {
367         DuckList ret;
368         DuckMap::const_iterator iter;
369         for(iter=duck_map.begin();iter!=duck_map.end();++iter)
370                 ret.push_back(iter->second);
371         return ret;
372 }
373
374 void
375 Duckmatic::unselect_duck(const etl::handle<Duck> &duck)
376 {
377         if(duck && selected_ducks.count(duck->get_guid()))
378         {
379                 selected_ducks.erase(duck->get_guid());
380                 signal_duck_selection_changed_();
381         }
382 }
383
384 void
385 Duckmatic::toggle_select_duck(const etl::handle<Duck> &duck)
386 {
387         if(duck_is_selected(duck))
388                 unselect_duck(duck);
389         else
390                 select_duck(duck);
391 }
392
393 void
394 Duckmatic::translate_selected_ducks(const synfig::Vector& vector)
395 {
396         if(duck_dragger_)
397                 duck_dragger_->duck_drag(this,vector);
398 }
399
400 void
401 Duckmatic::start_duck_drag(const synfig::Vector& offset)
402 {
403         if(duck_dragger_)
404                 duck_dragger_->begin_duck_drag(this,offset);
405
406         //drag_offset_=offset;
407         drag_offset_=find_duck(offset)->get_trans_point();
408 }
409
410 bool
411 Duckmatic::end_duck_drag()
412 {
413         if(duck_dragger_)
414                 return duck_dragger_->end_duck_drag(this);
415         return false;
416 }
417
418 Point
419 Duckmatic::snap_point_to_grid(const synfig::Point& x, float radius)const
420 {
421         Point ret(x);
422
423         GuideList::const_iterator guide_x,guide_y;
424         bool has_guide_x(false), has_guide_y(false);
425
426         guide_x=find_guide_x(ret,radius);
427         if(guide_x!=guide_list_x_.end())
428                 has_guide_x=true;
429
430         guide_y=find_guide_y(ret,radius);
431         if(guide_y!=guide_list_y_.end())
432                 has_guide_y=true;
433
434         if(get_grid_snap())
435         {
436                 Point snap(
437                         floor(ret[0]/get_grid_size()[0]+0.5)*get_grid_size()[0],
438                         floor(ret[1]/get_grid_size()[1]+0.5)*get_grid_size()[1]);
439
440                 if(abs(snap[0]-ret[0])<=radius && (!has_guide_x || abs(snap[0]-ret[0])<=abs(*guide_x-ret[0])))
441                         ret[0]=snap[0],has_guide_x=false;
442                 if(abs(snap[1]-ret[1])<=radius && (!has_guide_y || abs(snap[1]-ret[1])<=abs(*guide_y-ret[1])))
443                         ret[1]=snap[1],has_guide_y=false;
444         }
445
446         if(guide_snap)
447         {
448                 if(has_guide_x)
449                         ret[0]=*guide_x;
450                 if(has_guide_y)
451                         ret[1]=*guide_y;
452         }
453
454         if(axis_lock)
455         {
456                 ret-=drag_offset_;
457                 if(abs(ret[0])<abs(ret[1]))
458                         ret[0]=0;
459                 else
460                         ret[1]=0;
461                 ret+=drag_offset_;
462         }
463
464         return ret;
465 }
466
467 void
468 DuckDrag_Translate::begin_duck_drag(Duckmatic* duckmatic, const synfig::Vector& offset)
469 {
470         last_translate_=Vector(0,0);
471         {
472                 drag_offset_=duckmatic->find_duck(offset)->get_trans_point();
473
474                 snap=Vector(0,0);
475         }
476
477         const DuckList selected_ducks(duckmatic->get_selected_ducks());
478         DuckList::const_iterator iter;
479
480         positions.clear();
481         for(iter=selected_ducks.begin();iter!=selected_ducks.end();++iter)
482         {
483                 Point p((*iter)->get_trans_point());
484                 positions.push_back(p);
485         }
486 }
487
488 bool
489 DuckDrag_Translate::end_duck_drag(Duckmatic* duckmatic)
490 {
491         if(last_translate_.mag()>0.0001)
492         {
493                 duckmatic->signal_edited_selected_ducks();
494                 return true;
495         }
496         else
497         {
498                 duckmatic->signal_user_click_selected_ducks(0);
499                 return false;
500         }
501 }
502
503 void
504 DuckDrag_Translate::duck_drag(Duckmatic* duckmatic, const synfig::Vector& vector)
505 {
506         const DuckList selected_ducks(duckmatic->get_selected_ducks());
507         DuckList::const_iterator iter;
508
509         synfig::Vector vect(duckmatic->snap_point_to_grid(vector)-drag_offset_);
510         int i;
511         Time time(duckmatic->get_time());
512
513         // drag the vertex and position ducks first
514         for (i=0,iter=selected_ducks.begin(); iter!=selected_ducks.end(); ++iter,i++)
515         {
516                 etl::handle<Duck> duck(*iter);
517                 if(duck->get_type() == Duck::TYPE_VERTEX || duck->get_type() == Duck::TYPE_POSITION)
518                 {
519                         duck->set_trans_point(positions[i]+vect);
520
521                         if (ValueNode_BLineCalcVertex::Handle bline_vertex = ValueNode_BLineCalcVertex::Handle::cast_dynamic(duck->get_value_desc().get_value_node()))
522                         {
523                                 synfig::Point closest_point = duck->get_point();
524                                 synfig::Real radius = 0.0;
525                                 ValueNode_BLine::Handle bline = ValueNode_BLine::Handle::cast_dynamic(bline_vertex->get_link(bline_vertex->get_link_index_from_name("bline")));
526                                 synfig::find_closest_point(
527                                         (*bline)(time),
528                                         duck->get_point(),
529                                         radius,
530                                         bline->get_loop(),
531                                         &closest_point);
532                                 duck->set_point(closest_point);
533                         }
534                 }
535         }
536
537         // then drag the others
538         for (i=0,iter=selected_ducks.begin(); iter!=selected_ducks.end(); ++iter,i++)
539                 if ((*iter)->get_type() != Duck::TYPE_VERTEX && (*iter)->get_type() != Duck::TYPE_POSITION)
540                         (*iter)->set_trans_point(positions[i]+vect);
541
542         // then patch up the tangents for the vertices we've moved
543         DuckList duck_list(duckmatic->get_duck_list());
544         for (iter=selected_ducks.begin(); iter!=selected_ducks.end(); ++iter)
545         {
546                 etl::handle<Duck> duck(*iter);
547                 if (duck->get_type() == Duck::TYPE_VERTEX || duck->get_type() == Duck::TYPE_POSITION)
548                 {
549                         ValueNode_BLineCalcVertex::Handle bline_vertex(ValueNode_BLineCalcVertex::Handle::cast_dynamic(duck->get_value_desc().get_value_node()));
550                         if (bline_vertex)
551                         {
552                                 synfig::Real radius = 0.0;
553                                 ValueNode_BLine::Handle bline(ValueNode_BLine::Handle::cast_dynamic(bline_vertex->get_link(bline_vertex->get_link_index_from_name("bline"))));
554                                 Real amount = synfig::find_closest_point((*bline)(time), duck->get_point(), radius, bline->get_loop());
555
556                                 int vertex_amount_index(bline_vertex->get_link_index_from_name("amount"));
557                                 ValueNode::Handle vertex_amount_value_node(bline_vertex->get_link(vertex_amount_index));
558
559                                 DuckList::iterator iter;
560                                 for (iter=duck_list.begin(); iter!=duck_list.end(); iter++)
561                                 {
562                                         ValueNode::Handle duck_value_node((*iter)->get_value_desc().get_value_node());
563                                         if (ValueNode_BLineCalcTangent::Handle bline_tangent = ValueNode_BLineCalcTangent::Handle::cast_dynamic(duck_value_node))
564                                         {
565                                                 if (bline_tangent->get_link(bline_tangent->get_link_index_from_name("amount")) == vertex_amount_value_node)
566                                                 {
567                                                         switch (bline_tangent->get_type())
568                                                         {
569                                                         case ValueBase::TYPE_ANGLE:
570                                                         {
571                                                                 Angle angle((*bline_tangent)(time, amount).get(Angle()));
572                                                                 (*iter)->set_point(Point(Angle::cos(angle).get(), Angle::sin(angle).get()));
573                                                                 break;
574                                                         }
575                                                         case ValueBase::TYPE_REAL:
576                                                                 (*iter)->set_point(Point((*bline_tangent)(time, amount).get(Real()), 0));
577                                                                 break;
578                                                         case ValueBase::TYPE_VECTOR:
579                                                                 (*iter)->set_point((*bline_tangent)(time, amount).get(Vector()));
580                                                                 break;
581                                                         default:
582                                                                 break;
583                                                         }
584                                                 }
585                                         }
586                                         else if (ValueNode_BLineCalcWidth::Handle bline_width = ValueNode_BLineCalcWidth::Handle::cast_dynamic(duck_value_node))
587                                         {
588                                                 if (bline_width->get_link(bline_width->get_link_index_from_name("amount")) == vertex_amount_value_node)
589                                                         (*iter)->set_point(Point((*bline_width)(time, amount).get(Real()), 0));
590                                         }
591                                 }
592                         }
593                 }
594         }
595
596         last_translate_=vect;
597 }
598
599 void
600 Duckmatic::signal_edited_selected_ducks()
601 {
602         const DuckList ducks(get_selected_ducks());
603         DuckList::const_iterator iter;
604
605         synfig::GUIDSet old_set(selected_ducks);
606
607         // If we have more than 20 things to move, then display
608         // something to explain that it may take a moment
609         smart_ptr<OneMoment> wait; if(ducks.size()>20)wait.spawn();
610
611         // Go ahead and call everyone's signals
612         for(iter=ducks.begin();iter!=ducks.end();++iter)
613         {
614                 if ((*iter)->get_type() == Duck::TYPE_ANGLE)
615                 {
616                         if(!(*iter)->signal_edited_angle()((*iter)->get_rotations()))
617                         {
618                                 selected_ducks=old_set;
619                                 throw String("Bad edit");
620                         }
621                 }
622                 else if (App::restrict_radius_ducks &&
623                                  (*iter)->is_radius())
624                 {
625                         Point point((*iter)->get_point());
626                         bool changed = false;
627
628                         if (point[0] < 0)
629                         {
630                                 point[0] = 0;
631                                 changed = true;
632                         }
633                         if (point[1] < 0)
634                         {
635                                 point[1] = 0;
636                                 changed = true;
637                         }
638
639                         if (changed) (*iter)->set_point(point);
640
641                         if(!(*iter)->signal_edited()(point))
642                         {
643                                 selected_ducks=old_set;
644                                 throw String("Bad edit");
645                         }
646                 }
647                 else
648                 {
649                         if(!(*iter)->signal_edited()((*iter)->get_point()))
650                         {
651                                 selected_ducks=old_set;
652                                 throw String("Bad edit");
653                         }
654                 }
655         }
656         selected_ducks=old_set;
657 }
658
659 void
660 Duckmatic::signal_user_click_selected_ducks(int button)
661 {
662         const DuckList ducks(get_selected_ducks());
663         DuckList::const_iterator iter;
664
665         for(iter=ducks.begin();iter!=ducks.end();++iter)
666         {
667                 (*iter)->signal_user_click(button)();
668         }
669 }
670
671 void
672 Duckmatic::add_duck(const etl::handle<Duck> &duck)
673 {
674         //if(!duck_map.count(duck->get_guid()))
675         {
676                 if(duck_data_share_map.count(duck->get_data_guid()))
677                 {
678                         duck->set_shared_point(duck_data_share_map[duck->get_data_guid()]);
679                 }
680                 else
681                 {
682                         etl::smart_ptr<synfig::Point> point(new Point(duck->get_point()));
683                         duck->set_shared_point(point);
684                         duck_data_share_map[duck->get_data_guid()]=point;
685                 }
686
687                 duck_map.insert(duck);
688         }
689
690         last_duck_guid=duck->get_guid();
691 }
692
693 void
694 Duckmatic::add_bezier(const etl::handle<Bezier> &bezier)
695 {
696         bezier_list_.push_back(bezier);
697 }
698
699 void
700 Duckmatic::add_stroke(etl::smart_ptr<std::list<synfig::Point> > stroke_point_list, const synfig::Color& color)
701 {
702         assert(stroke_point_list);
703
704         std::list<etl::handle<Stroke> >::iterator iter;
705
706         for(iter=stroke_list_.begin();iter!=stroke_list_.end();++iter)
707         {
708                 if((*iter)->stroke_data==stroke_point_list)
709                         return;
710         }
711
712         etl::handle<Stroke> stroke(new Stroke());
713
714         stroke->stroke_data=stroke_point_list;
715         stroke->color=color;
716
717         stroke_list_.push_back(stroke);
718 }
719
720 void
721 Duckmatic::add_persistent_stroke(etl::smart_ptr<std::list<synfig::Point> > stroke_point_list, const synfig::Color& color)
722 {
723         add_stroke(stroke_point_list,color);
724         persistent_stroke_list_.push_back(stroke_list_.back());
725 }
726
727 void
728 Duckmatic::clear_persistent_strokes()
729 {
730         persistent_stroke_list_.clear();
731 }
732
733 void
734 Duckmatic::set_show_persistent_strokes(bool x)
735 {
736         if(x!=show_persistent_strokes)
737         {
738                 show_persistent_strokes=x;
739                 if(x)
740                         stroke_list_=persistent_stroke_list_;
741                 else
742                         stroke_list_.clear();
743         }
744 }
745
746 void
747 Duckmatic::erase_duck(const etl::handle<Duck> &duck)
748 {
749         duck_map.erase(duck->get_guid());
750 }
751
752 etl::handle<Duckmatic::Duck>
753 Duckmatic::find_similar_duck(etl::handle<Duck> duck)
754 {
755         DuckMap::const_iterator iter(duck_map.find(duck->get_guid()));
756         if(iter!=duck_map.end())
757                 return iter->second;
758         return 0;
759
760 /*      std::list<handle<Duck> >::reverse_iterator iter;
761
762         for(iter=duck_list_.rbegin();iter!=duck_list_.rend();++iter)
763         {
764                 if(*iter!=duck && **iter==*duck)
765                 {
766                         //synfig::info("Found similar duck! (iter:%08x vs. duck:%08x)",iter->get(), duck.get());
767                         return *iter;
768                 }
769         }
770         return 0;
771 */
772 }
773
774 etl::handle<Duckmatic::Duck>
775 Duckmatic::add_similar_duck(etl::handle<Duck> duck)
776 {
777         etl::handle<Duck> similar(find_similar_duck(duck));
778         if(!similar)
779         {
780                 add_duck(duck);
781                 return duck;
782         }
783         return similar;
784 }
785
786 void
787 Duckmatic::erase_bezier(const etl::handle<Bezier> &bezier)
788 {
789         std::list<handle<Bezier> >::iterator iter;
790
791         for(iter=bezier_list_.begin();iter!=bezier_list_.end();++iter)
792         {
793                 if(*iter==bezier)
794                 {
795                         bezier_list_.erase(iter);
796                         return;
797                 }
798         }
799         synfig::warning("Unable to find bezier to erase!");
800 }
801
802 etl::handle<Duckmatic::Duck>
803 Duckmatic::last_duck()const
804 {
805         DuckMap::const_iterator iter(duck_map.find(last_duck_guid));
806         if(iter!=duck_map.end())
807                 return iter->second;
808         return 0;
809 }
810
811 etl::handle<Duckmatic::Bezier>
812 Duckmatic::last_bezier()const
813 {
814         return bezier_list_.back();
815 }
816
817 etl::handle<Duckmatic::Duck>
818 Duckmatic::find_duck(synfig::Point point, synfig::Real radius, Duck::Type type)
819 {
820         if(radius==0)radius=10000000;
821
822         if(type==Duck::TYPE_DEFAULT)
823                 type=get_type_mask();
824
825         Real closest(10000000);
826         etl::handle<Duck> ret;
827
828         DuckMap::const_iterator iter;
829
830         for(iter=duck_map.begin();iter!=duck_map.end();++iter)
831         {
832                 const Duck::Handle& duck(iter->second);
833
834                 if(duck->get_ignore())
835                         continue;
836                 Real dist((duck->get_trans_point()-point).mag_squared());
837
838                 if(duck->get_type()&Duck::TYPE_VERTEX)
839                         dist*=1.0001;
840                 else if(duck->get_type()&Duck::TYPE_RADIUS)
841                         dist*=0.9999;
842
843                 if(dist<=closest && !( duck->get_type() && (!(type & duck->get_type())) ) )
844                 {
845                         {
846                                 closest=dist;
847                                 ret=duck;
848                         }
849                 }
850         }
851
852         if(radius==0 || closest<radius*radius)
853                 return ret;
854
855         return 0;
856 }
857
858 etl::handle<Duckmatic::Bezier>
859 Duckmatic::find_bezier(synfig::Point point, synfig::Real radius,float* location)
860 {
861         return find_bezier(point,radius,radius,location);
862 }
863
864 etl::handle<Duckmatic::Bezier>
865 Duckmatic::find_bezier(synfig::Point pos, synfig::Real scale, synfig::Real radius, float* location)
866 {
867         if(radius==0)radius=10000000;
868         Real closest(10000000);
869         etl::handle<Bezier> ret;
870
871         bezier<Point>   curve;
872
873         Real    d,step;
874         float   time = 0;
875         float   best_time = 0;
876
877         for(std::list<handle<Bezier> >::const_iterator iter=bezier_list().begin();iter!=bezier_list().end();++iter)
878         {
879                 curve[0] = (*iter)->p1->get_trans_point();
880                 curve[1] = (*iter)->c1->get_trans_point();
881                 curve[2] = (*iter)->c2->get_trans_point();
882                 curve[3] = (*iter)->p2->get_trans_point();
883                 curve.sync();
884
885 #if 0
886                 // I don't know why this doesn't work
887                 time=curve.find_closest(pos,6);
888                 d=((curve(time)-pos).mag_squared());
889
890 #else
891                 //set the step size based on the size of the picture
892                 d = (curve[1] - curve[0]).mag() + (curve[2]-curve[1]).mag()     + (curve[3]-curve[2]).mag();
893
894                 step = d/(2*scale); //want to make the distance between lines happy
895
896                 step = max(step,0.01); //100 samples should be plenty
897                 step = min(step,0.1); //10 is minimum
898
899                 d = find_closest(curve,pos,step,&closest,&time);
900 #endif
901
902                 if(d < closest)
903                 {
904                         closest = d;
905                         ret = *iter;
906                         best_time=time;
907                 }
908         }
909
910         if(closest < radius*radius)
911         {
912                 if(location)
913                         *location = best_time;  // We need to square-root this because we were dealing with squared distances
914
915                 return ret;
916         }
917
918         return 0;
919 }
920
921 bool
922 Duckmatic::save_sketch(const synfig::String& filename)const
923 {
924         ChangeLocale change_locale(LC_NUMERIC, "C");
925         std::ofstream file(filename.c_str());
926
927         if(!file)return false;
928
929         file<<"SKETCH"<<endl;
930
931         std::list<etl::handle<Stroke> >::const_iterator iter;
932
933         for(iter=persistent_stroke_list_.begin();iter!=persistent_stroke_list_.end();++iter)
934         {
935                 file<<"C "
936                         <<(*iter)->color.get_r()<<' '
937                         <<(*iter)->color.get_g()<<' '
938                         <<(*iter)->color.get_b()
939                 <<endl;
940                 std::list<synfig::Point>::const_iterator viter;
941                 for(viter=(*iter)->stroke_data->begin();viter!=(*iter)->stroke_data->end();++viter)
942                 {
943                         file<<"V "
944                                 <<(*viter)[0]<<' '
945                                 <<(*viter)[1]
946                         <<endl;
947                 }
948         }
949         if(!file)return false;
950         sketch_filename_=filename;
951         signal_sketch_saved_();
952         return true;
953 }
954
955 bool
956 Duckmatic::load_sketch(const synfig::String& filename)
957 {
958         ChangeLocale change_locale(LC_NUMERIC, "C");
959         std::ifstream file(filename.c_str());
960
961         if(!file)
962                 return false;
963
964         std::string line;
965         getline(file,line);
966
967         if(line!="SKETCH")
968         {
969                 synfig::error("Not a sketch");
970                 return false;
971         }
972
973         etl::smart_ptr<std::list<synfig::Point> > stroke_data;
974
975         while(file)
976         {
977                 getline(file,line);
978
979                 if(line.empty())
980                         continue;
981
982                 switch(line[0])
983                 {
984                 case 'C':
985                 case 'c':
986                         {
987                                 stroke_data.spawn();
988                                 float r,g,b;
989                                 if(!strscanf(line,"C %f %f %f",&r, &g, &b))
990                                 {
991                                         synfig::warning("Bad color line \"%s\"",line.c_str());
992                                         r=0;g=0;b=0;
993                                 }
994                                 add_persistent_stroke(stroke_data, synfig::Color(r,g,b));
995                         }
996                         break;
997                 case 'V':
998                 case 'v':
999                         if(!stroke_data)
1000                         {
1001                                 stroke_data.spawn();
1002                                 add_persistent_stroke(stroke_data, synfig::Color(0,0,0));
1003                         }
1004                         float x,y;
1005                         if(!strscanf(line,"V %f %f",&x, &y))
1006                                 synfig::warning("Bad vertex \"%s\"",line.c_str());
1007                         else
1008                                 stroke_data->push_back(synfig::Vector(x,y));
1009                         break;
1010                 default:
1011                         synfig::warning("Unexpected sketch token '%c'",line[0]);
1012                         break;
1013                 }
1014         }
1015
1016         sketch_filename_=filename;
1017         return true;
1018 }
1019
1020 Duckmatic::Push::Push(Duckmatic *duckmatic_):
1021         duckmatic_(duckmatic_)
1022 {
1023         duck_map=duckmatic_->duck_map;
1024         bezier_list_=duckmatic_->bezier_list_;
1025         duck_data_share_map=duckmatic_->duck_data_share_map;
1026         stroke_list_=duckmatic_->stroke_list_;
1027         duck_dragger_=duckmatic_->duck_dragger_;
1028         needs_restore=true;
1029 }
1030
1031 Duckmatic::Push::~Push()
1032 {
1033         if(needs_restore)
1034                 restore();
1035 }
1036
1037 void
1038 Duckmatic::Push::restore()
1039 {
1040         duckmatic_->duck_map=duck_map;
1041         duckmatic_->bezier_list_=bezier_list_;
1042         duckmatic_->duck_data_share_map=duck_data_share_map;
1043         duckmatic_->stroke_list_=stroke_list_;
1044         duckmatic_->duck_dragger_=duck_dragger_;
1045         needs_restore=false;
1046 }
1047
1048 inline String guid_string(const synfigapp::ValueDesc& x)
1049 {
1050         if(x.parent_is_layer_param())
1051                 return strprintf("%s",x.get_layer()->get_guid().get_string().c_str())+x.get_param_name();
1052         //if(x.is_value_node())
1053                 return strprintf("%s",x.get_value_node()->get_guid().get_string().c_str());
1054 }
1055
1056 inline synfig::GUID calc_duck_guid(const synfigapp::ValueDesc& x,const synfig::TransformStack& transform_stack)
1057 {
1058         synfig::GUID ret(0);
1059
1060         if(x.parent_is_layer_param())
1061         {
1062                 ret=x.get_layer()->get_guid()^synfig::GUID::hasher(x.get_param_name());
1063         }
1064         else
1065         {
1066                 ret=x.get_value_node()->get_guid();
1067         }
1068
1069         ret^=transform_stack.get_guid();
1070         return ret;
1071 }
1072
1073 /*
1074 Duck::Handle
1075 Duckmatic::create_duck_from(const synfigapp::ValueDesc& value_desc,etl::handle<CanvasView> canvas_view, const synfig::TransformStack& transform_stack, int modifier, synfig::ParamDesc *param_desc)
1076 {
1077         synfig::GUID duck_guid(calc_duck_guid(value_desc,transform_stack)^synfig::GUID::hasher(modifier));
1078         etl::handle<Duck> duck=new Duck();
1079
1080         return duck;
1081 }
1082 */
1083
1084 bool
1085 Duckmatic::add_to_ducks(const synfigapp::ValueDesc& value_desc,etl::handle<CanvasView> canvas_view, const synfig::TransformStack& transform_stack, synfig::ParamDesc *param_desc, int multiple)
1086 {
1087         ValueBase::Type type=value_desc.get_value_type();
1088 #define REAL_COOKIE             reinterpret_cast<synfig::ParamDesc*>(28)
1089         switch(type)
1090         {
1091         case ValueBase::TYPE_REAL:
1092
1093                 if(!param_desc || param_desc==REAL_COOKIE || !param_desc->get_origin().empty())
1094                 {
1095                         etl::handle<Duck> duck=new Duck();
1096                         duck->set_transform_stack(transform_stack);
1097                         duck->set_radius(true);
1098                         duck->set_type(Duck::TYPE_RADIUS);
1099
1100                         // put the duck on the right hand side of the center
1101                         duck->set_point(Point(value_desc.get_value(get_time()).get(Real()), 0));
1102                         duck->set_name(guid_string(value_desc));
1103                         if(value_desc.is_value_node())
1104                         {
1105                                 // If the ValueNode can be directly manipulated,
1106                                 // then set it as so.
1107                                 duck->set_editable(synfigapp::is_editable(value_desc.get_value_node()));
1108                         }
1109                         else
1110                         {
1111                                 duck->set_editable(true);
1112                         }
1113
1114                         if(param_desc && param_desc!=REAL_COOKIE)
1115                         {
1116                                 if(!param_desc->get_origin().empty())
1117                                 {
1118                                         synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_origin());
1119                                         /*
1120                                         duck->set_origin(value_desc_origin.get_value(get_time()).get(synfig::Point()));
1121                                         */
1122                                         add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1123                                         duck->set_origin(last_duck());
1124                                 }
1125                                 duck->set_scalar(param_desc->get_scalar());
1126                         }
1127
1128                         duck->signal_edited().clear(); // value_desc.get_value_type() == ValueBase::TYPE_REAL:
1129                         duck->signal_edited().connect(
1130                                 sigc::bind(
1131                                         sigc::mem_fun(
1132                                                 *canvas_view,
1133                                                 &studio::CanvasView::on_duck_changed),
1134                                         value_desc));
1135                         duck->set_value_desc(value_desc);
1136
1137                         duck->signal_user_click(2).connect(
1138                                 sigc::bind(
1139                                         sigc::bind(
1140                                                 sigc::bind(
1141                                                         sigc::mem_fun(
1142                                                                 *canvas_view,
1143                                                                 &studio::CanvasView::popup_param_menu),
1144                                                         false),
1145                                                 0.0f),
1146                                         value_desc));
1147
1148                         duck->set_guid(calc_duck_guid(value_desc,transform_stack)^synfig::GUID::hasher(multiple));
1149
1150                         add_duck(duck);
1151
1152                         return true;
1153                 }
1154                 break;
1155
1156         case ValueBase::TYPE_ANGLE:
1157
1158                 if(!param_desc || param_desc==REAL_COOKIE || !param_desc->get_origin().empty())
1159                 {
1160                         etl::handle<Duck> duck=new Duck();
1161                         duck->set_type(Duck::TYPE_ANGLE);
1162                         duck->set_transform_stack(transform_stack);
1163                         synfig::Angle angle;
1164
1165                         angle=value_desc.get_value(get_time()).get(Angle());
1166                         duck->set_point(Point(Angle::cos(angle).get(),Angle::sin(angle).get()));
1167                         duck->set_name(guid_string(value_desc));
1168                         if(value_desc.is_value_node())
1169                         {
1170                                 ValueNode::Handle value_node=value_desc.get_value_node();
1171                                 //duck->set_name(strprintf("%x",value_node.get()));
1172
1173                                 // If the ValueNode can be directly manipulated,
1174                                 // then set it as so.
1175                                 duck->set_editable(synfigapp::is_editable(value_desc.get_value_node()));
1176                         }
1177                         else
1178                         {
1179                                 //angle=(value_desc.get_value().get(Angle()));
1180                                 //duck->set_point(Point(Angle::cos(angle).get(),Angle::sin(angle).get()));
1181                                 //duck->set_name(strprintf("%x",value_desc.get_layer().get())+value_desc.get_param_name());
1182                                 duck->set_editable(true);
1183                         }
1184
1185                         if(param_desc && param_desc!=REAL_COOKIE)
1186                         {
1187                                 if(!param_desc->get_origin().empty())
1188                                 {
1189                                         synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_origin());
1190                                         /*
1191                                         duck->set_origin(value_desc_origin.get_value(get_time()).get(synfig::Point()));
1192                                         */
1193                                         add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1194                                         duck->set_origin(last_duck());
1195                                 }
1196                                 duck->set_scalar(param_desc->get_scalar());
1197                         }
1198
1199                         duck->signal_edited().clear(); // value_desc.get_value_type() == ValueBase::TYPE_ANGLE:
1200                         duck->signal_edited_angle().clear();
1201                         duck->signal_edited_angle().connect(
1202                                 sigc::bind(
1203                                         sigc::mem_fun(
1204                                                 *canvas_view,
1205                                                 &studio::CanvasView::on_duck_angle_changed),
1206                                         value_desc));
1207                         duck->set_value_desc(value_desc);
1208
1209                         duck->signal_user_click(2).connect(
1210                                 sigc::bind(
1211                                         sigc::bind(
1212                                                 sigc::bind(
1213                                                         sigc::mem_fun(
1214                                                                 *canvas_view,
1215                                                                 &studio::CanvasView::popup_param_menu),
1216                                                         false),
1217                                                 0.0f),
1218                                         value_desc));
1219                         duck->set_guid(calc_duck_guid(value_desc,transform_stack)^synfig::GUID::hasher(multiple));
1220
1221                         add_duck(duck);
1222
1223                         return true;
1224                 }
1225                 break;
1226
1227         case ValueBase::TYPE_VECTOR:
1228                 {
1229                         etl::handle<Duck> duck=new Duck();
1230                         duck->set_transform_stack(transform_stack);
1231
1232                         duck->set_point(value_desc.get_value(get_time()).get(Point()));
1233                         duck->set_name(guid_string(value_desc));
1234                         if(value_desc.is_value_node())
1235                         {
1236                                 //duck->set_name(strprintf("%x",value_desc.get_value_node().get()));
1237
1238                                 // If the ValueNode can be directly manipulated,
1239                                 // then set it as so.
1240                                 duck->set_editable(synfigapp::is_editable(value_desc.get_value_node()));
1241                         }
1242                         else
1243                         {
1244                                 //duck->set_point(value_desc.get_value().get(Point()));
1245                                 //duck->set_name(strprintf("%x",value_desc.get_layer().get())+value_desc.get_param_name());
1246                                 duck->set_editable(true);
1247                         }
1248
1249                         // If we were passed a parameter description
1250                         if(param_desc)
1251                         {
1252                                 if(!param_desc->get_connect().empty())
1253                                 {
1254                                         synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_connect());
1255                                         Duck::Handle connect_duck;
1256                                         if(duck_map.find(calc_duck_guid(value_desc_origin,transform_stack)^synfig::GUID::hasher(0))!=duck_map.end())
1257                                         {
1258                                                 connect_duck=duck_map[calc_duck_guid(value_desc_origin,transform_stack)^synfig::GUID::hasher(0)];
1259                                         }
1260                                         else
1261                                         {
1262                                                 add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1263                                                 connect_duck=last_duck();
1264                                         }
1265                                         duck->set_connect_duck(connect_duck);
1266                                 }
1267                                 if(!param_desc->get_box().empty())
1268                                 {
1269                                         synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_box());
1270                                         add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1271                                         duck->set_box_duck(last_duck());
1272                                 }
1273
1274                                 // If we have an origin
1275                                 if(!param_desc->get_origin().empty())
1276                                 {
1277                                         synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_origin());
1278                                         /*
1279                                         duck->set_origin(value_desc_origin.get_value(get_time()).get(synfig::Point()));
1280                                         */
1281                                         add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1282                                         duck->set_origin(last_duck());
1283                                         duck->set_type(Duck::TYPE_VERTEX);
1284                                 }
1285                                 else
1286                                         duck->set_type(Duck::TYPE_POSITION);
1287
1288                                 duck->set_scalar(param_desc->get_scalar());
1289                         }
1290                         else
1291                                 duck->set_type(Duck::TYPE_POSITION);
1292
1293                         duck->signal_edited().clear(); // value_desc.get_value_type() == ValueBase::TYPE_VECTOR:
1294                         duck->signal_edited().connect(
1295                                 sigc::bind(
1296                                         sigc::mem_fun(
1297                                                 *canvas_view,
1298                                                 &studio::CanvasView::on_duck_changed),
1299                                         value_desc));
1300                         duck->set_value_desc(value_desc);
1301
1302                         duck->signal_user_click(2).connect(
1303                                 sigc::bind(
1304                                         sigc::bind(
1305                                                 sigc::bind(
1306                                                         sigc::mem_fun(
1307                                                                 *canvas_view,
1308                                                                 &studio::CanvasView::popup_param_menu),
1309                                                         false),
1310                                                 1.0f),
1311                                         value_desc));
1312                         duck->set_guid(calc_duck_guid(value_desc,transform_stack)^synfig::GUID::hasher(multiple));
1313                         add_duck(duck);
1314
1315                         return true;
1316                 }
1317                 break;
1318         case ValueBase::TYPE_SEGMENT:
1319                 {
1320                         etl::handle<Bezier> bezier(new Bezier());
1321                         ValueNode_Composite::Handle value_node;
1322
1323                         if(value_desc.is_value_node() &&
1324                                 (value_node=ValueNode_Composite::Handle::cast_dynamic(value_desc.get_value_node())))
1325                         {
1326                                 if(!add_to_ducks(synfigapp::ValueDesc(value_node,0),canvas_view,transform_stack))
1327                                         return false;
1328                                 bezier->p1=last_duck();
1329                                 bezier->p1->set_type(Duck::TYPE_VERTEX);
1330                                 if(!add_to_ducks(synfigapp::ValueDesc(value_node,1),canvas_view,transform_stack))
1331                                         return false;
1332                                 bezier->c1=last_duck();
1333                                 bezier->c1->set_type(Duck::TYPE_TANGENT);
1334                                 bezier->c1->set_origin(bezier->p1);
1335                                 bezier->c1->set_scalar(TANGENT_BEZIER_SCALE);
1336                                 bezier->c1->set_tangent(true);
1337
1338                                 if(!add_to_ducks(synfigapp::ValueDesc(value_node,2),canvas_view,transform_stack))
1339                                         return false;
1340                                 bezier->p2=last_duck();
1341                                 bezier->p2->set_type(Duck::TYPE_VERTEX);
1342                                 if(!add_to_ducks(synfigapp::ValueDesc(value_node,3),canvas_view,transform_stack))
1343                                         return false;
1344                                 bezier->c2=last_duck();
1345                                 bezier->c2->set_type(Duck::TYPE_TANGENT);
1346                                 bezier->c2->set_origin(bezier->p2);
1347                                 bezier->c2->set_scalar(-TANGENT_BEZIER_SCALE);
1348                                 bezier->c2->set_tangent(true);
1349
1350                                 bezier->signal_user_click(2).connect(
1351                                         sigc::bind(
1352                                                 sigc::mem_fun(
1353                                                         *canvas_view,
1354                                                         &studio::CanvasView::popup_param_menu_bezier),
1355                                                 value_desc));
1356
1357                                 add_bezier(bezier);
1358                         }
1359                         else if(value_desc.get_value().is_valid())
1360                         {
1361                                 Segment segment=value_desc.get_value();
1362                                 etl::handle<Duck> duck_p,duck_c;
1363                                 synfig::String name;
1364                                 if(param_desc)
1365                                 {
1366                                         name=param_desc->get_local_name();
1367                                 }
1368                                 else
1369                                 {
1370                                         name=guid_string(value_desc);
1371                                 }
1372
1373                                 duck_p=new Duck(segment.p1);
1374                                 duck_p->set_name(name+".P1");
1375                                 duck_p->set_type(Duck::TYPE_VERTEX);
1376                                 add_duck(duck_p);
1377
1378                                 duck_c=new Duck(segment.t1);
1379                                 duck_c->set_name(name+".T1");
1380                                 duck_c->set_type(Duck::TYPE_TANGENT);
1381                                 add_duck(duck_c);
1382                                 duck_c->set_origin(duck_p);
1383                                 duck_c->set_scalar(TANGENT_HANDLE_SCALE);
1384                                 duck_c->set_tangent(true);
1385
1386                                 bezier->p1=duck_p;
1387                                 bezier->c1=duck_c;
1388
1389                                 duck_p=new Duck(segment.p2);
1390                                 duck_p->set_name(name+".P2");
1391                                 duck_p->set_type(Duck::TYPE_VERTEX);
1392                                 add_duck(duck_p);
1393
1394                                 duck_c=new Duck(segment.t2);
1395                                 duck_c->set_type(Duck::TYPE_TANGENT);
1396                                 duck_c->set_name(name+".T2");
1397                                 add_duck(duck_c);
1398                                 duck_c->set_origin(duck_p);
1399                                 duck_c->set_scalar(-TANGENT_HANDLE_SCALE);
1400                                 duck_c->set_tangent(true);
1401
1402                                 bezier->p2=duck_p;
1403                                 bezier->c2=duck_c;
1404                                 add_bezier(bezier);
1405                         }
1406
1407                         return true;
1408                 }
1409                 break;
1410         case ValueBase::TYPE_BLINEPOINT:
1411         {
1412
1413                 if(value_desc.is_value_node() &&
1414                         ValueNode_Composite::Handle::cast_dynamic(value_desc.get_value_node()))
1415                 {
1416                         ValueNode_Composite::Handle value_node;
1417                         value_node=ValueNode_Composite::Handle::cast_dynamic(value_desc.get_value_node());
1418
1419                         if(!add_to_ducks(synfigapp::ValueDesc(value_node,0),canvas_view,transform_stack))
1420                                 return false;
1421                         etl::handle<Duck> vertex_duck(last_duck());
1422                         vertex_duck->set_type(Duck::TYPE_VERTEX);
1423                         if(!add_to_ducks(synfigapp::ValueDesc(value_node,4),canvas_view,transform_stack))
1424                                 return false;
1425                         etl::handle<Duck> t1_duck(last_duck());
1426
1427                         t1_duck->set_origin(vertex_duck);
1428                         t1_duck->set_scalar(-TANGENT_HANDLE_SCALE);
1429                         t1_duck->set_tangent(true);
1430
1431                         etl::handle<Duck> t2_duck;
1432
1433                         // If the tangents are split
1434                         if((*value_node->get_link("split"))(get_time()).get(bool()))
1435                         {
1436                                 if(!add_to_ducks(synfigapp::ValueDesc(value_node,5),canvas_view,transform_stack))
1437                                         return false;
1438                                 t2_duck=last_duck();
1439                                 t2_duck->set_origin(vertex_duck);
1440                                 t2_duck->set_scalar(TANGENT_HANDLE_SCALE);
1441                                 t2_duck->set_tangent(true);
1442                         }
1443                         else
1444                         {
1445                                 if(!add_to_ducks(synfigapp::ValueDesc(value_node,4),canvas_view,transform_stack))
1446                                         return false;
1447                                 t2_duck=last_duck();
1448                                 t2_duck->set_origin(vertex_duck);
1449                                 t2_duck->set_scalar(TANGENT_HANDLE_SCALE);
1450                                 t2_duck->set_tangent(true);
1451                         }
1452                         return true;
1453                 }
1454
1455         }
1456         break;
1457         case ValueBase::TYPE_LIST:
1458         {
1459                 // Check for BLine
1460                 if (value_desc.is_value_node() &&
1461                         ValueNode_BLine::Handle::cast_dynamic(value_desc.get_value_node()))
1462                 {
1463                         ValueNode_BLine::Handle value_node;
1464                         value_node=ValueNode_BLine::Handle::cast_dynamic(value_desc.get_value_node());
1465
1466                         int i,first=-1;
1467
1468                         etl::handle<Bezier> bezier;
1469                         etl::handle<Duck> first_duck;
1470                         etl::handle<Duck> duck, tduck;
1471
1472                         for (i = 0; i < value_node->link_count(); i++)
1473                         {
1474                                 float amount(value_node->list[i].amount_at_time(get_time()));
1475
1476                                 // skip vertices that aren't fully on
1477                                 if (amount < 0.9999f)
1478                                         continue;
1479
1480                                 // remember the index of the first vertex we didn't skip
1481                                 if (first == -1)
1482                                         first = i;
1483
1484                                 BLinePoint bline_point((*value_node->get_link(i))(get_time()));
1485
1486                                 // try casting the vertex to Composite - this tells us whether it is composite or not
1487                                 ValueNode_Composite::Handle composite_vertex_value_node(
1488                                         ValueNode_Composite::Handle::cast_dynamic(value_node->get_link(i)));
1489
1490                                 // add the vertex duck - it's a composite
1491                                 if(composite_vertex_value_node)
1492                                 {
1493                                         if (add_to_ducks(synfigapp::ValueDesc(composite_vertex_value_node,0),canvas_view,transform_stack))
1494                                         {
1495                                                 duck=last_duck();
1496                                                 if(i==first)
1497                                                         first_duck=duck;
1498                                                 duck->set_type(Duck::TYPE_VERTEX);
1499
1500                                                 duck->signal_user_click(2).clear();
1501                                                 duck->signal_user_click(2).connect(
1502                                                         sigc::bind(
1503                                                                 sigc::bind(
1504                                                                         sigc::bind(
1505                                                                                 sigc::mem_fun(
1506                                                                                         *canvas_view,
1507                                                                                         &studio::CanvasView::popup_param_menu),
1508                                                                                 false),
1509                                                                         1.0f),
1510                                                                 synfigapp::ValueDesc(value_node,i)));
1511
1512                                                 if(param_desc)
1513                                                 {
1514                                                         if(!param_desc->get_origin().empty())
1515                                                         {
1516                                                                 synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_origin());
1517                                                                 add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1518                                                                 duck->set_origin(last_duck());
1519 /*
1520                                                                 ValueBase value(synfigapp::ValueDesc(value_desc.get_layer(),param_desc->get_origin()).get_value(get_time()));
1521                                                                 if(value.same_type_as(synfig::Point()))
1522                                                                         duck->set_origin(value.get(synfig::Point()));
1523 */
1524                                                         }
1525                                                 }
1526                                         }
1527                                         else
1528                                                 return false;
1529                                 }
1530                                 // else it's not a composite
1531                                 else
1532                                 {
1533                                         duck=new Duck(bline_point.get_vertex());
1534                                         if(i==first)
1535                                                 first_duck=duck;
1536                                         duck->set_transform_stack(transform_stack);
1537                                         duck->set_editable(false);
1538                                         //duck->set_name(strprintf("%x-vertex",value_node->get_link(i).get()));
1539                                         duck->set_name(guid_string(synfigapp::ValueDesc(value_node,i))+".v");
1540
1541                                         duck->set_type(Duck::TYPE_VERTEX);
1542                                         if(param_desc)
1543                                         {
1544                                                 if(!param_desc->get_origin().empty())
1545                                                 {
1546                                                                 synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_origin());
1547                                                                 add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1548                                                                 duck->set_origin(last_duck());
1549 /*
1550                                                                 ValueBase value(synfigapp::ValueDesc(value_desc.get_layer(),param_desc->get_origin()).get_value(get_time()));
1551                                                                 if(value.same_type_as(synfig::Point()))
1552                                                                         duck->set_origin(value.get(synfig::Point()));
1553 */
1554                                                 }
1555                                         }
1556                                         duck->set_guid(calc_duck_guid(synfigapp::ValueDesc(value_node,i),transform_stack)^synfig::GUID::hasher(".v"));
1557                                         duck=add_similar_duck(duck);
1558 //                                      add_duck(duck);
1559                                 }
1560
1561                                 // Add the width duck if it is a parameter with a hint (ie. "width") or if it isn't a parameter
1562                                 if ((param_desc && !param_desc->get_hint().empty()) ||
1563                                         !param_desc)
1564                                 {
1565                                         etl::handle<Duck> width;
1566                                         if (add_to_ducks(synfigapp::ValueDesc(composite_vertex_value_node,1),canvas_view,transform_stack,REAL_COOKIE))
1567                                         {
1568                                                 width=last_duck();
1569                                                 width->set_origin(duck);
1570                                                 width->set_type(Duck::TYPE_WIDTH);
1571                                                 width->set_name(guid_string(synfigapp::ValueDesc(value_node,i))+".w");
1572
1573                                                 // if the bline is a layer's parameter, scale the width duck by the layer's "width" parameter
1574                                                 if (param_desc)
1575                                                 {
1576                                                         ValueBase value(synfigapp::ValueDesc(value_desc.get_layer(),param_desc->get_hint()).get_value(get_time()));
1577                                                         if(value.same_type_as(synfig::Real()))
1578                                                                 width->set_scalar(value.get(synfig::Real())*0.5f);
1579                                                         // if it doesn't have a "width" parameter, scale by 0.5f instead
1580                                                         else
1581                                                                 width->set_scalar(0.5f);
1582                                                 }
1583                                                 // otherwise just present the raw unscaled width
1584                                                 else
1585                                                         width->set_scalar(0.5f);
1586                                         }
1587                                         else
1588                                                 synfig::error("Unable to add width duck!");
1589                                 }
1590
1591                                 // each bezier uses t2 of one point and t1 of the next
1592                                 // the first time through this loop we won't have the t2 duck from the previous vertex
1593                                 // and so we don't make a bezier.  instead we skip on to t2 for this point
1594                                 if(bezier)
1595                                 {
1596                                         // Add the tangent1 duck
1597                                         if(composite_vertex_value_node)
1598                                         {
1599                                                 if(!add_to_ducks(synfigapp::ValueDesc(composite_vertex_value_node,4),canvas_view,transform_stack))
1600                                                         return false;
1601                                                 tduck=last_duck();
1602                                         }
1603                                         else
1604                                         {
1605                                                 tduck=new Duck(bline_point.get_tangent1());
1606                                                 tduck->set_transform_stack(transform_stack);
1607                                                 tduck->set_editable(false);
1608                                                 tduck->set_name(guid_string(synfigapp::ValueDesc(value_node,i))+".t1");
1609 //                                              tduck->set_name(strprintf("%x-tangent1",value_node->get_link(i).get()));
1610                                                 tduck->set_guid(calc_duck_guid(synfigapp::ValueDesc(value_node,i),transform_stack)^synfig::GUID::hasher(".t1"));
1611                                                 tduck=add_similar_duck(tduck);
1612 //                                              add_duck(duck);
1613                                         }
1614
1615                                         tduck->set_origin(duck);
1616                                         tduck->set_scalar(-TANGENT_BEZIER_SCALE);
1617                                         tduck->set_tangent(true);
1618
1619                                         bezier->p2=duck;
1620                                         bezier->c2=tduck;
1621
1622                                         bezier->signal_user_click(2).connect(
1623                                                 sigc::bind(
1624                                                         sigc::mem_fun(
1625                                                                 *canvas_view,
1626                                                                 &studio::CanvasView::popup_param_menu_bezier),
1627                                                         synfigapp::ValueDesc(value_node,i)));
1628
1629                                         duck->signal_user_click(2).clear();
1630                                         duck->signal_user_click(2).connect(
1631                                                 sigc::bind(
1632                                                         sigc::bind(
1633                                                                 sigc::bind(
1634                                                                         sigc::mem_fun(
1635                                                                                 *canvas_view,
1636                                                                                 &studio::CanvasView::popup_param_menu),
1637                                                                         false),
1638                                                                 1.0f),
1639                                                         synfigapp::ValueDesc(value_node,i)));
1640
1641                                         add_bezier(bezier);
1642                                         bezier=0;
1643                                 }
1644
1645                                 // don't start a new bezier for the last point in the line if we're not looped
1646                                 if(i+1>=value_node->link_count() && !value_node->get_loop())
1647                                         continue;
1648
1649                                 bezier=new Bezier();
1650
1651                                 // Add the tangent2 duck
1652                                 if(composite_vertex_value_node)
1653                                 {
1654                                         int i=bline_point.get_split_tangent_flag()?5:4;
1655                                         if(!add_to_ducks(synfigapp::ValueDesc(composite_vertex_value_node,i),canvas_view,transform_stack,0,2))
1656                                                 return false;
1657                                         tduck=last_duck();
1658                                 }
1659                                 else
1660                                 {
1661                                         if(bline_point.get_split_tangent_flag())
1662                                                 tduck=new Duck(bline_point.get_tangent2());
1663                                         else
1664                                                 tduck=new Duck(bline_point.get_tangent1());
1665
1666                                         tduck->set_transform_stack(transform_stack);
1667                                         tduck->set_name(guid_string(synfigapp::ValueDesc(value_node,i))+".t2");
1668                                         tduck->set_guid(calc_duck_guid(synfigapp::ValueDesc(value_node,i),transform_stack)^synfig::GUID::hasher(".t2"));
1669                                         tduck->set_editable(false);
1670                                         tduck=add_similar_duck(tduck);
1671 //                                      add_duck(duck);
1672                                         if(param_desc)
1673                                         {
1674                                                                 synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_origin());
1675                                                                 add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1676                                                                 duck->set_origin(last_duck());
1677 /*
1678                                                                 ValueBase value(synfigapp::ValueDesc(value_desc.get_layer(),param_desc->get_origin()).get_value(get_time()));
1679                                                                 if(value.same_type_as(synfig::Point()))
1680                                                                         duck->set_origin(value.get(synfig::Point()));
1681 */
1682 //                                              if(!param_desc->get_origin().empty())
1683 //                                                      duck->set_origin(synfigapp::ValueDesc(value_desc.get_layer(),param_desc->get_origin()).get_value(get_time()).get(synfig::Point()));
1684                                         }
1685                                         duck->signal_user_click(2).clear();
1686                                         duck->signal_user_click(2).connect(
1687                                                 sigc::bind(
1688                                                         sigc::bind(
1689                                                                 sigc::bind(
1690                                                                         sigc::mem_fun(
1691                                                                                 *canvas_view,
1692                                                                                 &studio::CanvasView::popup_param_menu),
1693                                                                         false),
1694                                                                 1.0f),
1695                                                         synfigapp::ValueDesc(value_node,i)));
1696
1697                                 }
1698
1699                                 tduck->set_origin(duck);
1700                                 tduck->set_scalar(TANGENT_BEZIER_SCALE);
1701                                 tduck->set_tangent(true);
1702
1703                                 bezier->p1=duck;
1704                                 bezier->c1=tduck;
1705                         }
1706
1707                         // Loop if necessary
1708                         if(bezier && value_node->get_loop())
1709                         {
1710                                 BLinePoint bline_point((*value_node->get_link(first))(get_time()));
1711
1712                                 ValueNode_Composite::Handle composite_vertex_value_node(
1713                                         ValueNode_Composite::Handle::cast_dynamic(
1714                                                 value_node->get_link(first)));
1715
1716                                 // Add the vertex duck
1717                                 duck=first_duck;
1718
1719                                 // Add the tangent1 duck
1720                                 if(composite_vertex_value_node)
1721                                 {
1722                                         if(!add_to_ducks(synfigapp::ValueDesc(composite_vertex_value_node,4),canvas_view,transform_stack))
1723                                                 return false;
1724                                         tduck=last_duck();
1725                                 }
1726                                 else
1727                                 {
1728                                         tduck=new Duck(bline_point.get_tangent1());
1729                                         tduck->set_transform_stack(transform_stack);
1730                                         tduck->set_editable(false);
1731                                         tduck->set_name(guid_string(synfigapp::ValueDesc(value_node,first))+".t1");
1732                                         //tduck->set_name(strprintf("%x-tangent1",value_node->get_link(first).get()));
1733                                         tduck=add_similar_duck(tduck);
1734                                         tduck->set_guid(calc_duck_guid(synfigapp::ValueDesc(value_node,first),transform_stack)^synfig::GUID::hasher(".t1"));
1735                                         //add_duck(duck);
1736                                 }
1737
1738                                 tduck->set_origin(duck);
1739                                 tduck->set_scalar(-TANGENT_BEZIER_SCALE);
1740                                 tduck->set_tangent(true);
1741
1742                                 bezier->p2=duck;
1743                                 bezier->c2=tduck;
1744
1745                                 bezier->signal_user_click(2).connect(
1746                                         sigc::bind(
1747                                                 sigc::mem_fun(
1748                                                         *canvas_view,
1749                                                         &studio::CanvasView::popup_param_menu_bezier),
1750                                                 synfigapp::ValueDesc(value_node,first)));
1751
1752                                 duck->signal_user_click(2).clear();
1753                                 duck->signal_user_click(2).connect(
1754                                         sigc::bind(
1755                                                 sigc::bind(
1756                                                         sigc::bind(
1757                                                                 sigc::mem_fun(
1758                                                                         *canvas_view,
1759                                                                         &studio::CanvasView::popup_param_menu),
1760                                                                 false),
1761                                                         1.0f),
1762                                                 synfigapp::ValueDesc(value_node,first)));
1763
1764                                 add_bezier(bezier);
1765                                 bezier=0;
1766                         }
1767                         return true;
1768                 }
1769                 else // Check for DynamicList
1770                 if(value_desc.is_value_node() &&
1771                         ValueNode_DynamicList::Handle::cast_dynamic(value_desc.get_value_node()))
1772                 {
1773                         ValueNode_DynamicList::Handle value_node;
1774                         value_node=ValueNode_DynamicList::Handle::cast_dynamic(value_desc.get_value_node());
1775                         int i;
1776
1777                         if(value_node->get_contained_type()==ValueBase::TYPE_VECTOR)
1778                         {
1779                                 Bezier bezier;
1780                                 etl::handle<Duck> first_duck, duck;
1781                                 int first = -1;
1782                                 for(i=0;i<value_node->link_count();i++)
1783                                 {
1784                                         if(!value_node->list[i].status_at_time(get_time()))
1785                                                 continue;
1786                                         if(!add_to_ducks(synfigapp::ValueDesc(value_node,i),canvas_view,transform_stack))
1787                                                 return false;
1788                                         duck = last_duck();
1789
1790                                         // remember the index of the first vertex we didn't skip
1791                                         if (first == -1)
1792                                         {
1793                                                 first = i;
1794                                                 first_duck = duck;
1795                                         }
1796
1797                                         if(param_desc)
1798                                         {
1799                                                                 synfigapp::ValueDesc value_desc_origin(value_desc.get_layer(),param_desc->get_origin());
1800                                                                 add_to_ducks(value_desc_origin,canvas_view, transform_stack);
1801                                                                 duck->set_origin(last_duck());
1802 /*
1803                                                                 ValueBase value(synfigapp::ValueDesc(value_desc.get_layer(),param_desc->get_origin()).get_value(get_time()));
1804                                                                 if(value.same_type_as(synfig::Point()))
1805                                                                         duck->set_origin(value.get(synfig::Point()));
1806 */
1807 //                                              if(!param_desc->get_origin().empty())
1808 //                                                      last_duck()->set_origin(synfigapp::ValueDesc(value_desc.get_layer(),param_desc->get_origin()).get_value(get_time()).get(synfig::Point()));
1809                                         }
1810                                         duck->set_type(Duck::TYPE_VERTEX);
1811                                         bezier.p1=bezier.p2;bezier.c1=bezier.c2;
1812                                         bezier.p2=bezier.c2=duck;
1813
1814                                         if (first != i)
1815                                         {
1816                                                 handle<Bezier> bezier_(new Bezier());
1817                                                 bezier_->p1=bezier.p1;
1818                                                 bezier_->c1=bezier.c1;
1819                                                 bezier_->p2=bezier.p2;
1820                                                 bezier_->c2=bezier.c2;
1821                                                 add_bezier(bezier_);
1822                                                 last_bezier()->signal_user_click(2).connect(
1823                                                         sigc::bind(
1824                                                                 sigc::mem_fun(
1825                                                                         *canvas_view,
1826                                                                         &studio::CanvasView::popup_param_menu_bezier),
1827                                                                 synfigapp::ValueDesc(value_node,i)));
1828                                         }
1829                                 }
1830
1831                                 if (value_node->get_loop() && first != -1 && first_duck != duck)
1832                                 {
1833                                         duck = first_duck;
1834
1835                                         bezier.p1=bezier.p2;bezier.c1=bezier.c2;
1836                                         bezier.p2=bezier.c2=duck;
1837
1838                                         handle<Bezier> bezier_(new Bezier());
1839                                         bezier_->p1=bezier.p1;
1840                                         bezier_->c1=bezier.c1;
1841                                         bezier_->p2=bezier.p2;
1842                                         bezier_->c2=bezier.c2;
1843                                         add_bezier(bezier_);
1844                                         last_bezier()->signal_user_click(2).connect(
1845                                                 sigc::bind(
1846                                                         sigc::mem_fun(
1847                                                                 *canvas_view,
1848                                                                 &studio::CanvasView::popup_param_menu_bezier),
1849                                                         synfigapp::ValueDesc(value_node,first)));
1850                                 }
1851                         }
1852                         else if(value_node->get_contained_type()==ValueBase::TYPE_SEGMENT)
1853                         {
1854                                 for(i=0;i<value_node->link_count();i++)
1855                                 {
1856                                         if(!value_node->list[i].status_at_time(get_time()))
1857                                                 continue;
1858                                         if(!add_to_ducks(synfigapp::ValueDesc(value_node,i),canvas_view,transform_stack))
1859                                                 return false;
1860                                 }
1861                         }
1862                         else
1863                                 return false;
1864                 }
1865                 else
1866                 {
1867                         // WRITEME
1868                 }
1869
1870                 return true;
1871         }
1872
1873         break;
1874         default:
1875                 break;
1876         }
1877         return false;
1878 }