Only use CTRL to toggle ducks on and off by clicking on them. Previously both CTRL...
[synfig.git] / synfig-studio / trunk / src / gtkmm / workarea.cpp
1 /* === S Y N F I G ========================================================= */
2 /*!     \file workarea.cpp
3 **      \brief Template Header
4 **
5 **      $Id$
6 **
7 **      \legal
8 **      Copyright (c) 2002-2005 Robert B. Quattlebaum Jr., Adrian Bentley
9 **      Copyright 2006 Yue Shi Lai
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
33 #include <sigc++/adaptors/hide.h>
34
35 #include "workarea.h"
36 #include "canvasview.h"
37 #include "app.h"
38 #include <gtkmm/window.h>
39 #include <gtkmm/image.h>
40 #include <gtkmm/drawingarea.h>
41 #include <gtkmm/ruler.h>
42 #include <gtkmm/arrow.h>
43 #include <gtkmm/image.h>
44 #include <gtkmm/scrollbar.h>
45 #include <cmath>
46 #include <sigc++/retype_return.h>
47 #include <sigc++/retype.h>
48 #include <sigc++/hide.h>
49 #include <ETL/misc>
50
51 #include <synfig/target_scanline.h>
52 #include <synfig/target_tile.h>
53 #include <synfig/surface.h>
54 #include <synfig/valuenode_composite.h>
55 #include <synfigapp/canvasinterface.h>
56 #include "event_mouse.h"
57 #include "event_layerclick.h"
58 #include "widget_color.h"
59 #include <synfig/distance.h>
60 #include "workarearenderer.h"
61
62 #include "renderer_canvas.h"
63 #include "renderer_grid.h"
64 #include "renderer_guides.h"
65 #include "renderer_timecode.h"
66 #include "renderer_ducks.h"
67 #include "renderer_dragbox.h"
68 #include "renderer_bbox.h"
69 #include "asyncrenderer.h"
70 #include <gtkmm/frame.h>
71
72 #include <synfig/mutex.h>
73
74 #endif
75
76 /* === U S I N G =========================================================== */
77
78 using namespace std;
79 using namespace etl;
80 using namespace synfig;
81 using namespace studio;
82
83 /* === M A C R O S ========================================================= */
84
85 #define RULER_FIX               15
86
87 #ifndef stratof
88 #define stratof(X) (atof((X).c_str()))
89 #define stratoi(X) (atoi((X).c_str()))
90 #endif
91
92
93 /* === G L O B A L S ======================================================= */
94
95 /* === C L A S S E S ======================================================= */
96
97 class studio::WorkAreaTarget : public synfig::Target_Tile
98 {
99 public:
100         WorkArea *workarea;
101         bool low_res;
102         int w,h;
103         int real_tile_w,real_tile_h;
104         //std::vector<Glib::RefPtr<Gdk::Pixbuf> >::iterator tile_iter;
105
106         int twindow_start, twindow_width, twindow_height, twindow_pad;
107         int refresh_id;
108
109         bool onionskin;
110         bool onion_first_tile;
111         int onion_layers;
112
113         std::list<synfig::Time> onion_skin_queue;
114
115         synfig::Mutex mutex;
116
117         void set_onion_skin(bool x)
118         {
119                 onionskin=x;
120
121                 Time time(rend_desc().get_time_start());
122
123                 onion_skin_queue.push_back(time);
124                 //onion_skin_queue.push_back(time-1);
125                 //onion_skin_queue.push_back(time+1);
126
127                 try
128                 {
129                         onion_skin_queue.push_back(
130                                 get_canvas()->keyframe_list().find_prev(
131                                         time
132                                 )->get_time()
133                         );
134                 }
135                 catch(...)
136                 {  }
137
138                 try
139                 {
140                         onion_skin_queue.push_back(
141                                 get_canvas()->keyframe_list().find_next(
142                                         time
143                                 )->get_time()
144                         );
145                 }
146                 catch(...)
147                 {  }
148
149                 onion_layers=onion_skin_queue.size();
150
151                 onion_first_tile=false;
152         }
153 public:
154
155         WorkAreaTarget(WorkArea *workarea,int w, int h):
156                 workarea(workarea),
157                 low_res(workarea->get_low_resolution_flag()),
158                 w(w),
159                 h(h),
160                 real_tile_w(workarea->tile_w),
161                 real_tile_h(workarea->tile_h),
162                 refresh_id(workarea->refreshes),
163                 onionskin(false),
164                 onion_layers(0)
165         {
166                 //set_remove_alpha();
167                 //set_avoid_time_sync();
168                 set_clipping(true);
169                 if(low_res)
170                 {
171                         set_tile_w(workarea->tile_w/2);
172                         set_tile_h(workarea->tile_h/2);
173                 }
174                 else
175                 {
176                         set_tile_w(workarea->tile_w);
177                         set_tile_h(workarea->tile_h);
178                 }
179                 set_canvas(workarea->get_canvas());
180                 set_quality(workarea->get_quality());
181         }
182
183         ~WorkAreaTarget()
184         {
185                 workarea->queue_draw();
186         }
187
188         virtual bool set_rend_desc(synfig::RendDesc *newdesc)
189         {
190                 assert(workarea);
191                 newdesc->set_flags(RendDesc::PX_ASPECT|RendDesc::IM_SPAN);
192                 if(low_res)
193                         newdesc->set_wh(w/2,h/2);
194                 else
195                         newdesc->set_wh(w,h);
196
197                 if(
198                                 workarea->get_w()!=w
199                         ||      workarea->get_h()!=h
200                 ) workarea->set_wh(w,h,4);
201
202                 workarea->full_frame=false;
203
204                 desc=*newdesc;
205                 return true;
206         }
207
208         virtual int total_tiles()const
209         {
210                 int tw(rend_desc().get_w()/get_tile_w());
211                 int th(rend_desc().get_h()/get_tile_h());
212                 if(rend_desc().get_w()%get_tile_w()!=0)tw++;
213                 if(rend_desc().get_h()%get_tile_h()!=0)th++;
214                 return tw*th;
215         }
216
217         virtual int next_frame(Time& time)
218         {
219                 synfig::Mutex::Lock lock(mutex);
220
221                 if(!onionskin)
222                         return synfig::Target_Tile::next_frame(time);
223
224                 onion_first_tile=(onion_layers==(signed)onion_skin_queue.size());
225
226                 if(!onion_skin_queue.empty())
227                 {
228                         time=onion_skin_queue.front();
229                         onion_skin_queue.pop_front();
230                 }
231                 else
232                         return 0;
233
234                 return onion_skin_queue.size()+1;
235         }
236
237         virtual int next_tile(int& x, int& y)
238         {
239                 synfig::Mutex::Lock lock(mutex);
240                 //if(workarea->tile_queue.empty()) return 0;
241
242                 //int curr_tile(workarea->tile_queue.front());
243                 //workarea->tile_queue.pop_front();
244                 int curr_tile(workarea->next_unrendered_tile(refresh_id-onion_skin_queue.size()));
245                 if(curr_tile<0)
246                         return 0;
247
248                 // Width of the image(in tiles)
249                 int tw(rend_desc().get_w()/get_tile_w());
250                 if(rend_desc().get_w()%get_tile_w()!=0)tw++;
251
252                 y=(curr_tile/tw)*get_tile_w();
253                 x=(curr_tile%tw)*get_tile_h();
254
255                 // Mark this tile as "up-to-date"
256                 if(onionskin)
257                         workarea->tile_book[curr_tile].second=refresh_id-onion_skin_queue.size();
258                 else
259                         workarea->tile_book[curr_tile].second=refresh_id;
260
261                 return total_tiles()-curr_tile+1;
262         }
263
264
265         virtual bool start_frame(synfig::ProgressCallback *cb)
266         {
267                 synfig::Mutex::Lock lock(mutex);
268
269                 int tw(rend_desc().get_w()/get_tile_w());
270                 if(rend_desc().get_w()%get_tile_w()!=0)tw++;
271                 int th(rend_desc().get_h()/get_tile_h());
272                 if(rend_desc().get_h()%get_tile_h()!=0)th++;
273
274                 twindow_start=0;
275                 twindow_width=tw;
276                 twindow_height=th;
277                 twindow_pad=0;
278
279                 workarea->tile_book.resize(total_tiles());
280                 //tile_iter=workarea->tile_book.begin()+twindow_start;
281                 return true;
282         }
283
284         static void free_buff(const guint8 *x) { free(const_cast<guint8*>(x)); }
285
286         virtual bool add_tile(const synfig::Surface &surface, int x, int y)
287         {
288                 synfig::Mutex::Lock lock(mutex);
289                 assert(surface);
290
291                 PixelFormat pf(PF_RGB);
292
293                 const int total_bytes(get_tile_w()*get_tile_h()*synfig::channels(pf));
294
295                 unsigned char *buffer((unsigned char*)malloc(total_bytes));
296
297                 if(!surface || !buffer)
298                         return false;
299                 {
300                         unsigned char *dest(buffer);
301                         const Color *src(surface[0]);
302                         int w(get_tile_w());
303                         int h(get_tile_h());
304                         int x(surface.get_w()*surface.get_h());
305                         //if(low_res) { w/=2,h/=2; }
306                         Color dark(0.6,0.6,0.6);
307                         Color lite(0.8,0.8,0.8);
308                         for(int i=0;i<x;i++)
309                                 dest=Color2PixelFormat(
310                                         Color::blend(
311                                                 (*(src++)),
312                                                 ((i/surface.get_w())*8/h+(i%surface.get_w())*8/w)&1?dark:lite,
313                                                 1.0f
314                                         ).clamped(),
315                                         pf,dest,App::gamma
316                                 );
317                 }
318
319                 x/=get_tile_w();
320                 y/=get_tile_h();
321                 int tw(rend_desc().get_w()/get_tile_w());
322                 if(rend_desc().get_w()%get_tile_w()!=0)tw++;
323                 unsigned int index=y*tw+x;
324
325                 // Sanity check
326                 if(index>workarea->tile_book.size())
327                         return false;
328
329                 Glib::RefPtr<Gdk::Pixbuf> pixbuf;
330
331                 pixbuf=Gdk::Pixbuf::create_from_data(
332                         buffer, // pointer to the data
333                         Gdk::COLORSPACE_RGB, // the colorspace
334                         ((pf&PF_A)==PF_A), // has alpha?
335                         8, // bits per sample
336                         surface.get_w(),        // width
337                         surface.get_h(),        // height
338                         surface.get_w()*synfig::channels(pf), // stride (pitch)
339                         sigc::ptr_fun(&WorkAreaTarget::free_buff)
340                 );
341
342                 if(low_res)
343                 {
344                         // We need to scale up
345                         pixbuf=pixbuf->scale_simple(
346                                 surface.get_w()*2,
347                                 surface.get_h()*2,
348                                 Gdk::INTERP_NEAREST
349                         );
350                 }
351
352                 if(!onionskin || onion_first_tile || !workarea->tile_book[index].first)
353                 {
354                         workarea->tile_book[index].first=pixbuf;
355                 }
356                 else
357                 {
358                         pixbuf->composite(
359                                 workarea->tile_book[index].first, // Dest
360                                 0,//int dest_x
361                                 0,//int dest_y
362                                 pixbuf->get_width(), // dest width
363                                 pixbuf->get_height(), // dest_height,
364                                 0, // double offset_x
365                                 0, // double offset_y
366                                 1, // double scale_x
367                                 1, // double scale_y
368                                 Gdk::INTERP_NEAREST, // interp
369                                 255/(onion_layers-onion_skin_queue.size()+1) //int overall_alpha
370                         );
371                 }
372
373                 //if(index%2)
374                         workarea->queue_draw();
375                 assert(workarea->tile_book[index].first);
376                 return true;
377         }
378
379         virtual void end_frame()
380         {
381                 //workarea->queue_draw();
382         }
383 };
384
385
386 class studio::WorkAreaTarget_Full : public synfig::Target_Scanline
387 {
388 public:
389         WorkArea *workarea;
390         bool low_res;
391         int w,h;
392         int real_tile_w,real_tile_h;
393         //std::vector<Glib::RefPtr<Gdk::Pixbuf> >::iterator tile_iter;
394
395         int twindow_start, twindow_width, twindow_height, twindow_pad;
396         int refresh_id;
397
398         bool onionskin;
399         bool onion_first_tile;
400         int onion_layers;
401
402         Surface surface;
403
404         std::list<synfig::Time> onion_skin_queue;
405
406         void set_onion_skin(bool x)
407         {
408                 onionskin=x;
409
410                 Time time(rend_desc().get_time_start());
411
412                 onion_skin_queue.push_back(time);
413                 //onion_skin_queue.push_back(time-1);
414                 //onion_skin_queue.push_back(time+1);
415                 if(!onionskin)
416                         return;
417
418                 try
419                 {
420                         onion_skin_queue.push_back(
421                                 get_canvas()->keyframe_list().find_prev(
422                                         time
423                                 )->get_time()
424                         );
425                 }
426                 catch(...)
427                 {  }
428
429                 try
430                 {
431                         onion_skin_queue.push_back(
432                                 get_canvas()->keyframe_list().find_next(
433                                         time
434                                 )->get_time()
435                         );
436                 }
437                 catch(...)
438                 {  }
439
440                 onion_layers=onion_skin_queue.size();
441
442                 onion_first_tile=false;
443         }
444 public:
445
446         WorkAreaTarget_Full(WorkArea *workarea,int w, int h):
447                 workarea(workarea),
448                 low_res(workarea->get_low_resolution_flag()),
449                 w(w),
450                 h(h),
451                 refresh_id(workarea->refreshes),
452                 onionskin(false),
453                 onion_layers(0)
454         {
455                 set_canvas(workarea->get_canvas());
456                 set_quality(workarea->get_quality());
457         }
458
459         ~WorkAreaTarget_Full()
460         {
461         }
462
463         virtual bool set_rend_desc(synfig::RendDesc *newdesc)
464         {
465                 assert(workarea);
466                 newdesc->set_flags(RendDesc::PX_ASPECT|RendDesc::IM_SPAN);
467                 if(low_res)
468                         newdesc->set_wh(w/2,h/2);
469                 else
470                         newdesc->set_wh(w,h);
471
472                 if(
473                                 workarea->get_w()!=w
474                         ||      workarea->get_h()!=h
475                 ) workarea->set_wh(w,h,4);
476
477                 surface.set_wh(newdesc->get_w(),newdesc->get_h());
478
479                 desc=*newdesc;
480                 workarea->full_frame=true;
481                 workarea->tile_book.resize(1);
482                 return true;
483         }
484
485         virtual int next_frame(Time& time)
486         {
487                 // Mark this tile as "up-to-date"
488                 if(onionskin)
489                         workarea->tile_book[0].second=refresh_id-onion_skin_queue.size();
490                 else
491                         workarea->tile_book[0].second=refresh_id;
492
493                 if(!onionskin)
494                         return synfig::Target_Scanline::next_frame(time);
495
496                 onion_first_tile=(onion_layers==(signed)onion_skin_queue.size());
497
498                 if(!onion_skin_queue.empty())
499                 {
500                         time=onion_skin_queue.front();
501                         onion_skin_queue.pop_front();
502                 }
503                 else
504                         return 0;
505                 return onion_skin_queue.size()+1;
506         }
507
508
509         virtual bool start_frame(synfig::ProgressCallback *cb)
510         {
511                 return true;
512         }
513
514         virtual Color * start_scanline(int scanline)
515         {
516                 return surface[scanline];
517         }
518
519         virtual bool end_scanline()
520         {
521                 return true;
522         }
523
524         static void free_buff(const guint8 *x) { free(const_cast<guint8*>(x)); }
525
526         virtual void end_frame()
527         {
528                 assert(surface);
529
530                 PixelFormat pf(PF_RGB);
531
532                 const int total_bytes(surface.get_w()*surface.get_h()*synfig::channels(pf));
533
534                 unsigned char *buffer((unsigned char*)malloc(total_bytes));
535
536                 if(!surface || !buffer)
537                         return;
538                 {
539                         unsigned char *dest(buffer);
540                         const Color *src(surface[0]);
541                         int w(surface.get_w());
542                         //int h(surface.get_h());
543                         int x(surface.get_w()*surface.get_h());
544                         //if(low_res) { w/=2,h/=2; }
545                         Color dark(0.6,0.6,0.6);
546                         Color lite(0.8,0.8,0.8);
547                         int tw=workarea->tile_w;
548                         int th=workarea->tile_h;
549                         if(low_res)
550                         {
551                                 tw/=2;
552                                 th/=2;
553                         }
554                         for(int i=0;i<x;i++)
555                                 dest=Color2PixelFormat(
556                                         Color::blend(
557                                                 (*(src++)),
558                                                 ((i/w)*8/th+(i%w)*8/tw)&1?dark:lite,
559                                                 1.0f
560                                         ).clamped(),
561                                         pf,
562                                         dest,
563                                         App::gamma
564                                 );
565                 }
566
567                 Glib::RefPtr<Gdk::Pixbuf> pixbuf;
568
569                 pixbuf=Gdk::Pixbuf::create_from_data(
570                         buffer, // pointer to the data
571                         Gdk::COLORSPACE_RGB, // the colorspace
572                         ((pf&PF_A)==PF_A), // has alpha?
573                         8, // bits per sample
574                         surface.get_w(),        // width
575                         surface.get_h(),        // height
576                         surface.get_w()*synfig::channels(pf), // stride (pitch)
577                         sigc::ptr_fun(&WorkAreaTarget::free_buff)
578                 );
579
580                 if(low_res)
581                 {
582                         // We need to scale up
583                         pixbuf=pixbuf->scale_simple(
584                                 surface.get_w()*2,
585                                 surface.get_h()*2,
586                                 Gdk::INTERP_NEAREST
587                         );
588                 }
589
590                 int index=0;
591
592                 if(!onionskin || onion_first_tile || !workarea->tile_book[index].first)
593                 {
594                         workarea->tile_book[index].first=pixbuf;
595                 }
596                 else
597                 {
598                         pixbuf->composite(
599                                 workarea->tile_book[index].first, // Dest
600                                 0,//int dest_x
601                                 0,//int dest_y
602                                 pixbuf->get_width(), // dest width
603                                 pixbuf->get_height(), // dest_height,
604                                 0, // double offset_x
605                                 0, // double offset_y
606                                 1, // double scale_x
607                                 1, // double scale_y
608                                 Gdk::INTERP_NEAREST, // interp
609                                 255/(onion_layers-onion_skin_queue.size()+1) //int overall_alpha
610                         );
611                 }
612
613                 workarea->queue_draw();
614                 assert(workarea->tile_book[index].first);
615         }
616 };
617
618
619
620
621 /* === M E T H O D S ======================================================= */
622
623
624 WorkArea::WorkArea(etl::loose_handle<synfigapp::CanvasInterface> canvas_interface):
625         Gtk::Table(4+RULER_FIX, 3, false),
626         canvas_interface(canvas_interface),
627         canvas(canvas_interface->get_canvas()),
628         scrollx_adjustment(0,-4,4,0.01,0.1),
629         scrolly_adjustment(0,-4,4,0.01,0.1),
630         w(128),
631         h(128),
632         last_event_time(0),
633         progresscallback(0),
634         dragging(DRAG_NONE),
635         show_grid(false),
636         tile_w(128),
637         tile_h(128)
638 {
639         show_guides=true;
640         curr_input_device=0;
641         full_frame=false;
642         allow_duck_clicks=true;
643         allow_layer_clicks=true;
644         render_idle_func_id=0;
645         zoom=prev_zoom=1.0;
646         quality=10;
647         rendering=false;
648         canceled_=false;
649         low_resolution=true;
650         pw=0.001;
651         ph=0.001;
652         last_focus_point=Point(0,0);
653         onion_skin=false;
654         queued=false;
655         dirty_trap_enabled=false;
656         solid_lines=true;
657
658         dirty_trap_queued=0;
659
660         meta_data_lock=false;
661
662         insert_renderer(new Renderer_Canvas,    000);
663         insert_renderer(new Renderer_Grid,              100);
664         insert_renderer(new Renderer_Guides,    200);
665         insert_renderer(new Renderer_Ducks,             300);
666         insert_renderer(new Renderer_BBox,              399);
667         insert_renderer(new Renderer_Dragbox,   400);
668         insert_renderer(new Renderer_Timecode,  500);
669
670         signal_duck_selection_changed().connect(sigc::mem_fun(*this,&studio::WorkArea::queue_draw));
671         signal_strokes_changed().connect(sigc::mem_fun(*this,&studio::WorkArea::queue_draw));
672         signal_grid_changed().connect(sigc::mem_fun(*this,&studio::WorkArea::queue_draw));
673         signal_grid_changed().connect(sigc::mem_fun(*this,&studio::WorkArea::save_meta_data));
674         signal_sketch_saved().connect(sigc::mem_fun(*this,&studio::WorkArea::save_meta_data));
675
676         // Not that it really makes a difference... (setting this to zero, that is)
677         refreshes=0;
678
679         drawing_area=manage(new class Gtk::DrawingArea());
680         drawing_area->show();
681         drawing_area->set_extension_events(Gdk::EXTENSION_EVENTS_ALL);
682
683         drawing_frame=manage(new Gtk::Frame);
684         drawing_frame->add(*drawing_area);
685         //drawing_frame->set_shadow_type(Gtk::SHADOW_NONE);
686         //drawing_frame->property_border_width()=5;
687         //drawing_frame->modify_fg(Gtk::STATE_NORMAL,Gdk::Color("#00ffff"));
688         //drawing_frame->modify_base(Gtk::STATE_NORMAL,Gdk::Color("#ff00ff"));
689         /*drawing_frame->modify_fg(Gtk::STATE_ACTIVE,Gdk::Color("#00ffff"));
690         drawing_frame->modify_base(Gtk::STATE_ACTIVE,Gdk::Color("#ff00ff"));
691         drawing_frame->modify_bg(Gtk::STATE_ACTIVE,Gdk::Color("#00ff00"));
692         drawing_frame->modify_fg(Gtk::STATE_INSENSITIVE,Gdk::Color("#00ffff"));
693         drawing_frame->modify_base(Gtk::STATE_INSENSITIVE,Gdk::Color("#ff00ff"));
694         drawing_frame->modify_bg(Gtk::STATE_INSENSITIVE,Gdk::Color("#00ff00"));
695         drawing_frame->modify_fg(Gtk::STATE_SELECTED,Gdk::Color("#00ffff"));
696         drawing_frame->modify_base(Gtk::STATE_SELECTED,Gdk::Color("#ff00ff"));
697         drawing_frame->modify_bg(Gtk::STATE_SELECTED,Gdk::Color("#00ff00"));
698         */
699         //drawing_frame->set_state(Gtk::STATE_NORMAL);
700
701         drawing_frame->show();
702
703         attach(*drawing_frame, 1, 3+RULER_FIX, 1, 2, Gtk::EXPAND|Gtk::FILL, Gtk::EXPAND|Gtk::FILL, 0, 0);
704
705         Gtk::IconSize iconsize=Gtk::IconSize::from_name("synfig-small_icon");
706
707
708         // Create the vertical and horizontal rulers
709         vruler = manage(new class Gtk::VRuler());
710         hruler = manage(new class Gtk::HRuler());
711         vruler->set_metric(Gtk::PIXELS);
712         hruler->set_metric(Gtk::PIXELS);
713         vruler->show();
714         hruler->show();
715         attach(*vruler, 0, 1, 1, 2, Gtk::SHRINK|Gtk::FILL, Gtk::EXPAND|Gtk::FILL, 0, 0);
716         attach(*hruler, 1, 3+RULER_FIX, 0, 1, Gtk::EXPAND|Gtk::FILL, Gtk::SHRINK|Gtk::FILL, 0, 0);
717         hruler->signal_event().connect(sigc::mem_fun(*this, &WorkArea::on_hruler_event));
718         vruler->signal_event().connect(sigc::mem_fun(*this, &WorkArea::on_vruler_event));
719         hruler->add_events(Gdk::BUTTON1_MOTION_MASK | Gdk::BUTTON2_MOTION_MASK |Gdk::BUTTON_PRESS_MASK | Gdk::BUTTON_RELEASE_MASK|Gdk::POINTER_MOTION_MASK);
720         vruler->add_events(Gdk::BUTTON1_MOTION_MASK | Gdk::BUTTON2_MOTION_MASK |Gdk::BUTTON_PRESS_MASK | Gdk::BUTTON_RELEASE_MASK|Gdk::POINTER_MOTION_MASK);
721
722         // Create the menu button
723         menubutton=manage(new class Gtk::Button());
724         Gtk::Arrow *arrow1 = manage(new class Gtk::Arrow(Gtk::ARROW_RIGHT, Gtk::SHADOW_OUT));
725         menubutton->add(*arrow1);
726         menubutton->show_all();
727         menubutton->signal_pressed().connect(sigc::mem_fun(*this, &WorkArea::popup_menu));
728         attach(*menubutton, 0, 1, 0, 1, Gtk::SHRINK, Gtk::SHRINK, 0, 0);
729
730
731
732         Gtk::VScrollbar *vscrollbar1 = manage(new class Gtk::VScrollbar(*get_scrolly_adjustment()));
733         Gtk::HScrollbar *hscrollbar1 = manage(new class Gtk::HScrollbar(*get_scrollx_adjustment()));
734         vscrollbar1->show();
735         hscrollbar1->show();
736         attach(*vscrollbar1, 3+RULER_FIX, 4+RULER_FIX, 1, 2, Gtk::FILL, Gtk::EXPAND|Gtk::FILL, 0, 0);
737         attach(*hscrollbar1, 2+RULER_FIX, 3+RULER_FIX, 2, 3, Gtk::EXPAND|Gtk::FILL, Gtk::FILL, 0, 0);
738
739         ZoomDial *zoomdial=manage(new class ZoomDial(iconsize));
740         zoomdial->signal_zoom_in().connect(sigc::mem_fun(*this, &studio::WorkArea::zoom_in));
741         zoomdial->signal_zoom_out().connect(sigc::mem_fun(*this, &studio::WorkArea::zoom_out));
742         zoomdial->signal_zoom_fit().connect(sigc::mem_fun(*this, &studio::WorkArea::zoom_fit));
743         zoomdial->signal_zoom_norm().connect(sigc::mem_fun(*this, &studio::WorkArea::zoom_norm));
744         zoomdial->show();
745         attach(*zoomdial, 0, 2+RULER_FIX, 2, 3, Gtk::SHRINK, Gtk::SHRINK, 0, 0);
746
747         drawing_area->add_events(Gdk::KEY_PRESS_MASK | Gdk::KEY_RELEASE_MASK);
748         add_events(Gdk::KEY_PRESS_MASK);
749         drawing_area->add_events(Gdk::BUTTON_PRESS_MASK | Gdk::BUTTON_RELEASE_MASK);
750         drawing_area->add_events(Gdk::BUTTON1_MOTION_MASK | Gdk::BUTTON2_MOTION_MASK |Gdk::POINTER_MOTION_MASK);
751
752         // ----------------- Attach signals
753
754         drawing_area->signal_expose_event().connect(sigc::mem_fun(*this, &WorkArea::refresh));
755         drawing_area->signal_event().connect(sigc::mem_fun(*this, &WorkArea::on_drawing_area_event));
756         drawing_area->signal_size_allocate().connect(sigc::hide(sigc::mem_fun(*this, &WorkArea::refresh_dimension_info)));
757
758
759
760         canvas_interface->signal_rend_desc_changed().connect(sigc::mem_fun(*this, &WorkArea::refresh_dimension_info));
761         // When either of the scrolling adjustments change, then redraw.
762         get_scrollx_adjustment()->signal_value_changed().connect(sigc::mem_fun(*this, &WorkArea::queue_scroll));
763         get_scrolly_adjustment()->signal_value_changed().connect(sigc::mem_fun(*this, &WorkArea::queue_scroll));
764         get_scrollx_adjustment()->signal_value_changed().connect(sigc::mem_fun(*this, &WorkArea::refresh_dimension_info));
765         get_scrolly_adjustment()->signal_value_changed().connect(sigc::mem_fun(*this, &WorkArea::refresh_dimension_info));
766
767         get_canvas()->signal_meta_data_changed("grid_size").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
768         get_canvas()->signal_meta_data_changed("grid_snap").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
769         get_canvas()->signal_meta_data_changed("grid_show").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
770         get_canvas()->signal_meta_data_changed("guide_show").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
771         get_canvas()->signal_meta_data_changed("guide_x").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
772         get_canvas()->signal_meta_data_changed("guide_y").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
773         get_canvas()->signal_meta_data_changed("onion_skin").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
774         get_canvas()->signal_meta_data_changed("guide_snap").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
775         get_canvas()->signal_meta_data_changed("sketch").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
776         get_canvas()->signal_meta_data_changed("solid_lines").connect(sigc::mem_fun(*this,&WorkArea::load_meta_data));
777
778         queued=false;
779         meta_data_lock=false;
780         set_focus_point(Point(0,0));
781
782
783         load_meta_data();
784         // Load sketch
785         {
786                 String data(canvas->get_meta_data("sketch"));
787                 if(!data.empty())
788                 {
789                         if(!load_sketch(data))
790                                 load_sketch(dirname(canvas->get_file_name())+ETL_DIRECTORY_SEPERATOR+basename(data));
791                 }
792         }
793
794         hruler->property_max_size()=double(10.0);
795         vruler->property_max_size()=double(10.0);
796
797         drawing_area->set_flags(drawing_area->get_flags()|Gtk::CAN_FOCUS);
798 }
799
800 WorkArea::~WorkArea()
801 {
802 //      delete [] buffer;
803 }
804
805 void
806 WorkArea::save_meta_data()
807 {
808         if(meta_data_lock)
809                 return;
810         meta_data_lock=true;
811
812         Vector s(get_grid_size());
813         canvas_interface->set_meta_data("grid_size",strprintf("%f %f",s[0],s[1]));
814         canvas_interface->set_meta_data("grid_snap",get_grid_snap()?"1":"0");
815         canvas_interface->set_meta_data("guide_snap",get_guide_snap()?"1":"0");
816         canvas_interface->set_meta_data("guide_show",get_show_guides()?"1":"0");
817         canvas_interface->set_meta_data("grid_show",show_grid?"1":"0");
818         canvas_interface->set_meta_data("onion_skin",onion_skin?"1":"0");
819         {
820                 String data;
821                 GuideList::const_iterator iter;
822                 for(iter=get_guide_list_x().begin();iter!=get_guide_list_x().end();++iter)
823                 {
824                         if(!data.empty())
825                                 data+=' ';
826                         data+=strprintf("%f",*iter);
827                 }
828                 if(!data.empty())
829                         canvas_interface->set_meta_data("guide_x",data);
830
831                 data.clear();
832                 for(iter=get_guide_list_y().begin();iter!=get_guide_list_y().end();++iter)
833                 {
834                         if(!data.empty())
835                                 data+=' ';
836                         data+=strprintf("%f",*iter);
837                 }
838                 if(!data.empty())
839                         canvas_interface->set_meta_data("guide_y",data);
840         }
841
842         if(get_sketch_filename().size())
843         {
844                 if(dirname(canvas->get_file_name())==dirname(get_sketch_filename()))
845                         canvas_interface->set_meta_data("sketch",basename(get_sketch_filename()));
846                 else
847                         canvas_interface->set_meta_data("sketch",get_sketch_filename());
848         }
849
850         meta_data_lock=false;
851 }
852
853 void
854 WorkArea::load_meta_data()
855 {
856         if(meta_data_lock)
857                 return;
858         meta_data_lock=true;
859
860         String data;
861
862         data=canvas->get_meta_data("grid_size");
863         if(!data.empty())
864         {
865                 float gx(get_grid_size()[0]),gy(get_grid_size()[1]);
866
867                 String::iterator iter(find(data.begin(),data.end(),' '));
868                 String tmp(data.begin(),iter);
869
870                 if(!tmp.empty())
871                         gx=stratof(tmp);
872
873                 if(iter==data.end())
874                         tmp.clear();
875                 else
876                         tmp=String(iter+1,data.end());
877
878                 if(!tmp.empty())
879                         gy=stratof(tmp);
880
881                 set_grid_size(Vector(gx,gy));
882         }
883         else
884                 synfig::error("WorkArea::load_meta_data(): Unable to parse data for \"grid_size\", which was \"%s\"",data.c_str());
885
886         data=canvas->get_meta_data("grid_show");
887         if(data.size() && (data=="1" || data[0]=='t' || data[0]=='T'))
888                 show_grid=true;
889         if(data.size() && (data=="0" || data[0]=='f' || data[0]=='F'))
890                 show_grid=false;
891
892         data=canvas->get_meta_data("solid_lines");
893         if(data.size() && (data=="1" || data[0]=='t' || data[0]=='T'))
894                 solid_lines=true;
895         if(data.size() && (data=="0" || data[0]=='f' || data[0]=='F'))
896                 solid_lines=false;
897
898         data=canvas->get_meta_data("guide_show");
899         if(data.size() && (data=="1" || data[0]=='t' || data[0]=='T'))
900                 show_guides=true;
901         if(data.size() && (data=="0" || data[0]=='f' || data[0]=='F'))
902                 show_guides=false;
903
904         data=canvas->get_meta_data("grid_snap");
905         if(data.size() && (data=="1" || data[0]=='t' || data[0]=='T'))
906                 set_grid_snap(true);
907         if(data.size() && (data=="0" || data[0]=='f' || data[0]=='F'))
908                 set_grid_snap(false);
909
910         data=canvas->get_meta_data("guide_snap");
911         if(data.size() && (data=="1" || data[0]=='t' || data[0]=='T'))
912                 set_guide_snap(true);
913         if(data.size() && (data=="0" || data[0]=='f' || data[0]=='F'))
914                 set_guide_snap(false);
915
916         data=canvas->get_meta_data("onion_skin");
917         if(data.size() && (data=="1" || data[0]=='t' || data[0]=='T'))
918                 set_onion_skin(true);
919         if(data.size() && (data=="0" || data[0]=='f' || data[0]=='F'))
920                 set_onion_skin(false);
921
922         data=canvas->get_meta_data("guide_x");
923         get_guide_list_x().clear();
924         while(!data.empty())
925         {
926                 String::iterator iter(find(data.begin(),data.end(),' '));
927                 String guide(data.begin(),iter);
928
929                 if(!guide.empty())
930                         get_guide_list_x().push_back(stratof(guide));
931
932                 if(iter==data.end())
933                         data.clear();
934                 else
935                         data=String(iter+1,data.end());
936         }
937         //sort(get_guide_list_x());
938
939         data=canvas->get_meta_data("guide_y");
940         get_guide_list_y().clear();
941         while(!data.empty())
942         {
943                 String::iterator iter(find(data.begin(),data.end(),' '));
944                 String guide(data.begin(),iter);
945
946                 if(!guide.empty())
947                         get_guide_list_y().push_back(stratof(guide));
948
949                 if(iter==data.end())
950                         data.clear();
951                 else
952                         data=String(iter+1,data.end());
953         }
954         //sort(get_guide_list_y());
955
956         meta_data_lock=false;
957         queue_draw();
958 }
959
960 void
961 WorkArea::set_onion_skin(bool x)
962 {
963         if(onion_skin==x)
964                 return;
965         onion_skin=x;
966         save_meta_data();
967         queue_render_preview();
968         signal_onion_skin_changed()();
969 }
970
971 bool
972 WorkArea::get_onion_skin()const
973 {
974         return onion_skin;
975 }
976
977 void
978 WorkArea::enable_grid()
979 {
980         show_grid=true;
981         save_meta_data();
982         queue_draw();
983 }
984
985 void
986 WorkArea::disable_grid()
987 {
988         show_grid=false;
989         save_meta_data();
990         queue_draw();
991 }
992
993 void
994 WorkArea::set_show_guides(bool x)
995 {
996         show_guides=x;
997         save_meta_data();
998         queue_draw();
999 }
1000
1001 void
1002 WorkArea::toggle_grid()
1003 {
1004         show_grid=!show_grid;
1005         save_meta_data();
1006         queue_draw();
1007 }
1008
1009 void
1010 WorkArea::set_low_resolution_flag(bool x)
1011 {
1012         if(x!=low_resolution)
1013         {
1014                 low_resolution=x;
1015                 queue_render_preview();
1016         }
1017 }
1018
1019 void
1020 WorkArea::toggle_low_resolution_flag()
1021 {
1022         set_low_resolution_flag(!get_low_resolution_flag());
1023 }
1024
1025 void
1026 WorkArea::popup_menu()
1027 {
1028         signal_popup_menu()();
1029 }
1030
1031 void
1032 WorkArea::set_grid_size(const synfig::Vector &s)
1033 {
1034         Duckmatic::set_grid_size(s);
1035         save_meta_data();
1036         queue_draw();
1037 }
1038
1039 void
1040 WorkArea::set_focus_point(const synfig::Point &point)
1041 {
1042         // These next three lines try to ensure that we place the
1043         // focus on a pixel boundry
1044         /*Point adjusted(point[0]/abs(get_pw()),point[1]/abs(get_ph()));
1045         adjusted[0]=(abs(adjusted[0]-floor(adjusted[0]))<0.5)?floor(adjusted[0])*abs(get_pw()):ceil(adjusted[0])*abs(get_ph());
1046         adjusted[1]=(abs(adjusted[1]-floor(adjusted[1]))<0.5)?floor(adjusted[1])*abs(get_ph()):ceil(adjusted[1])*abs(get_ph());
1047         */
1048         const synfig::Point& adjusted(point);
1049
1050         synfig::RendDesc &rend_desc(get_canvas()->rend_desc());
1051         Real x_factor=(rend_desc.get_br()[0]-rend_desc.get_tl()[0]>0)?-1:1;
1052         Real y_factor=(rend_desc.get_br()[1]-rend_desc.get_tl()[1]>0)?-1:1;
1053
1054         get_scrollx_adjustment()->set_value(adjusted[0]*x_factor);
1055         get_scrolly_adjustment()->set_value(adjusted[1]*y_factor);
1056 }
1057
1058 synfig::Point
1059 WorkArea::get_focus_point()const
1060 {
1061         synfig::RendDesc &rend_desc(get_canvas()->rend_desc());
1062         Real x_factor=(rend_desc.get_br()[0]-rend_desc.get_tl()[0]>0)?-1:1;
1063         Real y_factor=(rend_desc.get_br()[1]-rend_desc.get_tl()[1]>0)?-1:1;
1064
1065         return synfig::Point(get_scrollx_adjustment()->get_value()*x_factor, get_scrolly_adjustment()->get_value()*y_factor);
1066 }
1067
1068 bool
1069 WorkArea::set_wh(int W, int H,int CHAN)
1070 {
1071         // If our size is already set, don't set it again
1072         if(W==w && H==h && CHAN==bpp)
1073         {
1074                 return true;
1075         }
1076         if(W<=0 || H<=0 || CHAN<=0)
1077                 return false;
1078
1079         assert(W>0);
1080         assert(H>0);
1081         assert(CHAN>0);
1082
1083         // Set all of the parameters
1084         w=W;
1085         h=H;
1086         bpp=CHAN;
1087
1088         refresh_dimension_info();
1089
1090         tile_book.clear();
1091
1092         return true;
1093 }
1094
1095 bool
1096 WorkArea::on_key_press_event(GdkEventKey* event)
1097 {
1098         if(get_selected_ducks().empty())
1099                 return false;
1100
1101         Real multiplier(1.0);
1102
1103         if(Gdk::ModifierType(event->state)&GDK_SHIFT_MASK)
1104                 multiplier=10.0;
1105
1106         Vector nudge;
1107         switch(event->keyval)
1108         {
1109                 case GDK_Left:
1110                         nudge=Vector(-pw,0);
1111                         break;
1112                 case GDK_Right:
1113                         nudge=Vector(pw,0);
1114                         break;
1115                 case GDK_Up:
1116                         nudge=Vector(0,-ph);
1117                         break;
1118                 case GDK_Down:
1119                         nudge=Vector(0,ph);
1120                         break;
1121                 default:
1122                         return false;
1123                         break;
1124         }
1125
1126         synfigapp::Action::PassiveGrouper grouper(instance.get(),"Nudge");
1127
1128         // Grid snap does not apply to nudging
1129         bool grid_snap_holder(get_grid_snap());
1130         bool guide_snap_holder(get_guide_snap());
1131         set_grid_snap(false);
1132
1133         try {
1134                 start_duck_drag(get_selected_duck()->get_trans_point());
1135                 translate_selected_ducks(get_selected_duck()->get_trans_point()+nudge*multiplier);
1136                 end_duck_drag();
1137         }
1138         catch(String)
1139         {
1140                 canvas_view->duck_refresh_flag=true;
1141                 canvas_view->queue_rebuild_ducks();
1142         }
1143
1144         set_grid_snap(grid_snap_holder);
1145         set_guide_snap(guide_snap_holder);
1146
1147         return true;
1148 }
1149
1150 bool
1151 WorkArea::on_drawing_area_event(GdkEvent *event)
1152 {
1153         synfig::Point mouse_pos;
1154     float bezier_click_pos;
1155         const float radius((abs(pw)+abs(ph))*4);
1156         int button_pressed(0);
1157         float pressure(0);
1158         bool is_mouse(false);
1159         Gdk::ModifierType modifier(Gdk::ModifierType(0));
1160
1161         drawing_area->grab_focus();
1162
1163         // Handle input stuff
1164         if(
1165                 event->any.type==GDK_MOTION_NOTIFY ||
1166                 event->any.type==GDK_BUTTON_PRESS ||
1167                 event->any.type==GDK_2BUTTON_PRESS ||
1168                 event->any.type==GDK_3BUTTON_PRESS ||
1169                 event->any.type==GDK_BUTTON_RELEASE
1170         )
1171         {
1172                 GdkDevice *device;
1173                 if(event->any.type==GDK_MOTION_NOTIFY)
1174                 {
1175                         device=event->motion.device;
1176                         modifier=Gdk::ModifierType(event->motion.state);
1177                 }
1178                 else
1179                 {
1180                         device=event->button.device;
1181                         modifier=Gdk::ModifierType(event->button.state);
1182                 }
1183
1184                 // Make sure we recognise the device
1185                 if(curr_input_device)
1186                 {
1187                         if(curr_input_device!=device)
1188                         {
1189                                 assert(device);
1190                                 curr_input_device=device;
1191                                 signal_input_device_changed()(curr_input_device);
1192                         }
1193                 }
1194                 else if(device)
1195                 {
1196                         curr_input_device=device;
1197                         signal_input_device_changed()(curr_input_device);
1198                 }
1199
1200                 assert(curr_input_device);
1201
1202                 // Calculate the position of the
1203                 // input device in canvas coordinates
1204                 // and the buttons
1205                 if(!event->button.axes)
1206                 {
1207                         mouse_pos=synfig::Point(screen_to_comp_coords(synfig::Point(event->button.x,event->button.y)));
1208                         button_pressed=event->button.button;
1209                         pressure=1.0f;
1210                         is_mouse=true;
1211                         if(isnan(event->button.x) || isnan(event->button.y))
1212                                 return false;
1213                 }
1214                 else
1215                 {
1216                         double x(event->button.axes[0]);
1217                         double y(event->button.axes[1]);
1218                         if(isnan(x) || isnan(y))
1219                                 return false;
1220
1221                         pressure=event->button.axes[2];
1222                         //synfig::info("pressure=%f",pressure);
1223                         pressure-=0.04f;
1224                         pressure/=1.0f-0.04f;
1225
1226
1227                         assert(!isnan(pressure));
1228
1229                         mouse_pos=synfig::Point(screen_to_comp_coords(synfig::Point(x,y)));
1230
1231                         button_pressed=event->button.button;
1232
1233                         if(button_pressed==1 && pressure<0 && (event->any.type!=GDK_BUTTON_RELEASE && event->any.type!=GDK_BUTTON_PRESS))
1234                                 button_pressed=0;
1235                         if(pressure<0)
1236                                 pressure=0;
1237
1238                         //if(event->any.type==GDK_BUTTON_PRESS && button_pressed)
1239                         //      synfig::info("Button pressed on input device = %d",event->button.button);
1240
1241                         //if(event->button.axes[2]>0.1)
1242                         //      button_pressed=1;
1243                         //else
1244                         //      button_pressed=0;
1245                 }
1246         }
1247         // GDK mouse scrolling events
1248         else if(event->any.type==GDK_SCROLL)
1249         {
1250                 // GDK information needed to properly interprete mouse
1251                 // scrolling events are: scroll.state, scroll.x/scroll.y, and
1252                 // scroll.direction. The value of scroll.direction will be
1253                 // obtained later.
1254
1255                 modifier=Gdk::ModifierType(event->scroll.state);
1256                 mouse_pos=synfig::Point(screen_to_comp_coords(synfig::Point(event->scroll.x,event->scroll.y)));
1257         }
1258
1259         // Handle the renderables
1260         {
1261                 std::set<etl::handle<WorkAreaRenderer> >::iterator iter;
1262                 for(iter=renderer_set_.begin();iter!=renderer_set_.end();++iter)
1263                 {
1264                         if((*iter)->get_enabled())
1265                                 if((*iter)->event_vfunc(event))
1266                                 {
1267                                         // Event handled. Return true.
1268                                         return true;
1269                                 }
1270                 }
1271         }
1272
1273         // Event hasn't been handled, pass it down
1274         switch(event->type)
1275     {
1276         case GDK_BUTTON_PRESS:
1277                 {
1278                 switch(button_pressed)
1279                 {
1280                 case 1: // Attempt to click on a duck
1281                 {
1282                         etl::handle<Duck> duck;
1283                         dragging=DRAG_NONE;
1284
1285                         if(allow_duck_clicks)
1286                         {
1287                                 duck=find_duck(mouse_pos,radius);
1288
1289                                 if(duck)
1290                                 {
1291                                         // make a note of whether the duck we click on was selected or not
1292                                         if(duck_is_selected(duck))
1293                                                 clicked_duck=duck;
1294                                         else
1295                                         {
1296                                                 clicked_duck=0;
1297                                                 // if CTRL isn't pressed, clicking an unselected duck will unselect all other ducks
1298                                                 if(!(modifier&GDK_CONTROL_MASK))
1299                                                         clear_selected_ducks();
1300                                                 select_duck(duck);
1301                                         }
1302                                 }
1303                         }
1304                         //else
1305                         //      clear_selected_ducks();
1306
1307
1308
1309                         selected_bezier=find_bezier(mouse_pos,radius,&bezier_click_pos);
1310                         if(duck && duck->get_editable())
1311                         {
1312                                 //get_selected_duck()->signal_user_click(0)();
1313                                 //if(clicked_duck)clicked_duck->signal_user_click(0)();
1314
1315                                 // if the user is holding shift while clicking on a tangent duck, consider splitting the tangent
1316                                 if (event->motion.state&GDK_SHIFT_MASK && duck->get_type() == Duck::TYPE_TANGENT)
1317                                 {
1318                                         synfigapp::ValueDesc value_desc = duck->get_value_desc();
1319
1320                                         // we have the tangent, but need the vertex - that's the parent
1321                                         if (value_desc.parent_is_value_node()) {
1322                                                 ValueNode_Composite::Handle parent_value_node = value_desc.get_parent_value_node();
1323
1324                                                 // if the tangent isn't split, then split it
1325                                                 if (!((*(parent_value_node->get_link("split")))(get_time()).get(bool())))
1326                                                 {
1327                                                         get_canvas_view()->canvas_interface()->
1328                                                                 change_value(synfigapp::ValueDesc(parent_value_node,
1329                                                                                                                                   parent_value_node->get_link_index_from_name("split")),
1330                                                                                          true);
1331                                                         // rebuild the ducks from scratch, so the tangents ducks aren't connected
1332                                                         get_canvas_view()->rebuild_ducks();
1333
1334                                                         // reprocess the mouse click
1335                                                         return on_drawing_area_event(event);
1336                                                 }
1337                                         } else {
1338                                                 // I don't know how to access the vertex from the tangent duck when originally drawing the bline in the bline tool
1339
1340                                                 // synfig::ValueNode::Handle vn = value_desc.get_value_node();
1341                                                 synfig::info("parent isn't value node?  shift-drag-tangent doesn't work in bline tool yet...");
1342                                         }
1343                                 }
1344
1345                                 dragging=DRAG_DUCK;
1346                                 drag_point=mouse_pos;
1347                                 //drawing_area->queue_draw();
1348                                 start_duck_drag(mouse_pos);
1349                                 get_canvas_view()->reset_cancel_status();
1350                                 return true;
1351                         }
1352 // I commented out this section because
1353 // it was causing issues when rotoscoping.
1354 // At the moment, we don't need it, so
1355 // this was the easiest way to fix the problem.
1356 /*
1357                         else
1358                         if(selected_bezier)
1359                         {
1360                                 selected_duck=0;
1361                                 selected_bezier->signal_user_click(0)(bezier_click_pos);
1362                         }
1363 */
1364                         else
1365                         {
1366                                 //clear_selected_ducks();
1367                                 selected_bezier=0;
1368                                 if(canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_DOWN,BUTTON_LEFT,mouse_pos,pressure,modifier))==Smach::RESULT_OK)
1369                                 {
1370                                         // Check for a guide click
1371                                         GuideList::iterator iter;
1372
1373                                         iter=find_guide_x(mouse_pos,radius);
1374                                         if(iter==get_guide_list_x().end())
1375                                         {
1376                                                 curr_guide_is_x=false;
1377                                                 iter=find_guide_y(mouse_pos,radius);
1378                                         }
1379                                         else
1380                                                 curr_guide_is_x=true;
1381                                         if(iter!=get_guide_list_x().end() && iter!=get_guide_list_y().end())
1382                                         {
1383                                                 dragging=DRAG_GUIDE;
1384                                                 curr_guide=iter;
1385                                                 return true;
1386                                         }
1387
1388
1389                                         // All else fails, try making a selection box
1390                                         dragging=DRAG_BOX;
1391                                         curr_point=drag_point=mouse_pos;
1392                                         return true;
1393                                 }
1394                         }
1395                         break;
1396                 }
1397                 case 2: // Attempt to drag and move the window
1398                 {
1399                         etl::handle<Duck> duck=find_duck(mouse_pos,radius);
1400                         etl::handle<Bezier> bezier=find_bezier(mouse_pos,radius,&bezier_click_pos);
1401                         if(duck)
1402                                 duck->signal_user_click(1)();
1403                         else
1404                         if(bezier)
1405                                 bezier->signal_user_click(1)(bezier_click_pos);
1406
1407                         if(canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_DOWN,BUTTON_MIDDLE,mouse_pos,pressure,modifier))==Smach::RESULT_OK)
1408                         if(is_mouse)
1409                         {
1410                                 dragging=DRAG_WINDOW;
1411                                 drag_point=mouse_pos;
1412                                 signal_user_click(1)(mouse_pos);
1413                         }
1414                         break;
1415                 }
1416                 case 3: // Attempt to either get info on a duck, or open the menu
1417                 {
1418                         etl::handle<Duck> duck=find_duck(mouse_pos,radius);
1419                         etl::handle<Bezier> bezier=find_bezier(mouse_pos,radius,&bezier_click_pos);
1420
1421                         Layer::Handle layer(get_canvas()->find_layer(mouse_pos));
1422                         if(duck)
1423                         {
1424                                 if(get_selected_ducks().size()<=1)
1425                                         duck->signal_user_click(2)();
1426                                 else
1427                                 {
1428                                         canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MULTIPLE_DUCKS_CLICKED,BUTTON_RIGHT,mouse_pos,pressure,modifier));
1429                                 }
1430                                 return true;
1431                         }
1432                         else
1433                         if(bezier)
1434                         {
1435                                 bezier->signal_user_click(2)(bezier_click_pos);
1436                                 return true;
1437                         }
1438                         else
1439                         if(layer)
1440                         {
1441                                 if(canvas_view->get_smach().process_event(EventLayerClick(layer,BUTTON_RIGHT,mouse_pos))==Smach::RESULT_OK)
1442                                         return false;
1443                                 return true;
1444                         }
1445                         else
1446                                 canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_DOWN,BUTTON_RIGHT,mouse_pos,pressure,modifier));
1447                         /*
1448                         if(canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_DOWN,BUTTON_RIGHT,mouse_pos,pressure,modifier))==Smach::RESULT_OK)
1449                         {
1450                                 //popup_menu();
1451                                 return true;
1452                         }
1453                         */
1454                         break;
1455                 }
1456                 case 4:
1457                         signal_user_click(3)(mouse_pos);
1458                         break;
1459                 case 5:
1460                         signal_user_click(4)(mouse_pos);
1461                         break;
1462                 default:
1463                         break;
1464                 }
1465                 }
1466                 break;
1467         case GDK_MOTION_NOTIFY:
1468                 curr_point=mouse_pos;
1469
1470                 if(event->motion.time-last_event_time<25)
1471                         return true;
1472                 else
1473                         last_event_time=event->motion.time;
1474
1475                 signal_cursor_moved_();
1476
1477                 // Guide/Duck hilights on hover
1478                 if(dragging==DRAG_NONE)
1479                 {
1480                         GuideList::iterator iter;
1481
1482                         iter=find_guide_x(mouse_pos,radius);
1483                         if(iter==get_guide_list_x().end())
1484                                 iter=find_guide_y(mouse_pos,radius);
1485
1486                         if(iter!=curr_guide)
1487                         {
1488                                 curr_guide=iter;
1489                                 drawing_area->queue_draw();
1490                         }
1491
1492                         etl::handle<Duck> duck;
1493                         duck=find_duck(mouse_pos,radius);
1494                         if(duck!=hover_duck)
1495                         {
1496                                 hover_duck=duck;
1497                                 drawing_area->queue_draw();
1498                         }
1499                 }
1500
1501
1502                 if(dragging==DRAG_DUCK)
1503                 {
1504                         if(canvas_view->get_cancel_status())
1505                         {
1506                                 dragging=DRAG_NONE;
1507                                 canvas_view->queue_rebuild_ducks();
1508                                 return true;
1509                         }
1510                         /*
1511                         Point point((mouse_pos-selected_duck->get_origin())/selected_duck->get_scalar());
1512                         if(get_grid_snap())
1513                         {
1514                                 point[0]=floor(point[0]/grid_size[0]+0.5)*grid_size[0];
1515                                 point[1]=floor(point[1]/grid_size[1]+0.5)*grid_size[1];
1516                         }
1517                         selected_duck->set_point(point);
1518                         */
1519
1520                         //Point p(mouse_pos);
1521
1522                         set_axis_lock(event->motion.state&GDK_SHIFT_MASK);
1523
1524                         translate_selected_ducks(mouse_pos);
1525
1526                         drawing_area->queue_draw();
1527                 }
1528                 if(dragging==DRAG_BOX)
1529                 {
1530                         curr_point=mouse_pos;
1531                         drawing_area->queue_draw();
1532                 }
1533                 if(dragging==DRAG_GUIDE)
1534                 {
1535                         if(curr_guide_is_x)
1536                                 *curr_guide=mouse_pos[0];
1537                         else
1538                                 *curr_guide=mouse_pos[1];
1539                         drawing_area->queue_draw();
1540                 }
1541                 if(dragging!=DRAG_WINDOW)
1542                 {       // Update those triangle things on the rulers
1543                         const synfig::Point point(mouse_pos);
1544                         hruler->property_position()=Distance(point[0],Distance::SYSTEM_UNITS).get(App::distance_system,get_canvas()->rend_desc());
1545                         vruler->property_position()=Distance(point[1],Distance::SYSTEM_UNITS).get(App::distance_system,get_canvas()->rend_desc());
1546                 }
1547                 if(dragging==DRAG_WINDOW)
1548                 {
1549                         set_focus_point(get_focus_point()+mouse_pos-drag_point);
1550                 }
1551                 else
1552                 if(event->motion.state&GDK_BUTTON1_MASK && canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_DRAG,BUTTON_LEFT,mouse_pos,pressure,modifier))==Smach::RESULT_ACCEPT)
1553                         return true;
1554                 else
1555                 if(event->motion.state&GDK_BUTTON2_MASK && canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_DRAG,BUTTON_MIDDLE,mouse_pos,pressure,modifier))==Smach::RESULT_ACCEPT)
1556                         return true;
1557                 else
1558                 if(event->motion.state&GDK_BUTTON3_MASK && canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_DRAG,BUTTON_RIGHT,mouse_pos,pressure,modifier))==Smach::RESULT_ACCEPT)
1559                         return true;
1560                 else
1561                 if(canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_MOTION,BUTTON_NONE,mouse_pos,pressure,modifier))==Smach::RESULT_ACCEPT)
1562                         return true;
1563
1564                 break;
1565         case GDK_BUTTON_RELEASE:
1566         {
1567                 bool ret(false);
1568
1569                 if(dragging==DRAG_GUIDE)
1570                 {
1571                         dragging=DRAG_NONE;
1572                         save_meta_data();
1573                         return true;
1574                 }
1575                 else
1576                 if(dragging==DRAG_DUCK)
1577                 {
1578                         synfigapp::Action::PassiveGrouper grouper(instance.get(),"Move");
1579                         dragging=DRAG_NONE;
1580                         //translate_selected_ducks(mouse_pos);
1581                         set_axis_lock(false);
1582
1583                         try{
1584                         get_canvas_view()->duck_refresh_flag=false;
1585                         get_canvas_view()->duck_refresh_needed=false;
1586                         const bool drag_did_anything(end_duck_drag());
1587                         get_canvas_view()->duck_refresh_flag=true;
1588                         if(!drag_did_anything)
1589                         {
1590                                 // if we originally clicked on a selected duck ...
1591                                 if(clicked_duck)
1592                                 {
1593                                         // ... and CTRL is pressed, then just toggle the clicked duck
1594                                         //     otherwise make the clicked duck the only selected duck
1595                                         if(modifier&GDK_CONTROL_MASK)
1596                                                 unselect_duck(clicked_duck);
1597                                         else
1598                                         {
1599                                                 clear_selected_ducks();
1600                                                 select_duck(clicked_duck);
1601                                         }
1602                                         clicked_duck->signal_user_click(0)();
1603                                 }
1604                         }
1605                         else
1606                         {
1607                                 if(canvas_view->duck_refresh_needed)
1608                                         canvas_view->queue_rebuild_ducks();
1609                                 return true;
1610                         }
1611                         }catch(String)
1612                         {
1613                                 canvas_view->duck_refresh_flag=true;
1614                                 canvas_view->queue_rebuild_ducks();
1615                                 return true;
1616                         }
1617                         //queue_draw();
1618                         clicked_duck=0;
1619
1620                         ret=true;
1621                 }
1622
1623                 if(dragging==DRAG_BOX)
1624                 {
1625                         dragging=DRAG_NONE;
1626                         if((drag_point-mouse_pos).mag()>radius/2.0f)
1627                         {
1628                                 if(canvas_view->get_smach().process_event(EventBox(drag_point,mouse_pos,MouseButton(event->button.button),modifier))==Smach::RESULT_ACCEPT)
1629                                         return true;
1630
1631                                 if(!(modifier&GDK_CONTROL_MASK) && !(modifier&GDK_SHIFT_MASK))
1632                                         clear_selected_ducks();
1633                                 select_ducks_in_box(drag_point,mouse_pos);
1634                                 ret=true;
1635                         }
1636                         else
1637                         {
1638                                 if(allow_layer_clicks)
1639                                 {
1640                                         Layer::Handle layer(get_canvas()->find_layer(drag_point));
1641                                         //if(layer)
1642                                         {
1643                                                 if(canvas_view->get_smach().process_event(EventLayerClick(layer,BUTTON_LEFT,mouse_pos,modifier))==Smach::RESULT_OK)
1644                                                         signal_layer_selected_(layer);
1645                                                 ret=true;
1646                                         }
1647                                 }
1648                                 else
1649                                 {
1650                                         signal_user_click(0)(mouse_pos);
1651                                 }
1652                         }
1653                 }
1654
1655                 dragging=DRAG_NONE;
1656
1657                 if(canvas_view->get_smach().process_event(EventMouse(EVENT_WORKAREA_MOUSE_BUTTON_UP,MouseButton(event->button.button),mouse_pos,pressure,modifier))==Smach::RESULT_ACCEPT)
1658                         ret=true;
1659
1660                 return ret;
1661         }
1662                 break;
1663         case GDK_SCROLL:
1664         {
1665                 // Handle a mouse scrolling event like Xara Xtreme and
1666                 // Inkscape:
1667
1668                 // Scroll up/down: scroll up/down
1669                 // Shift + scroll up/down: scroll left/right
1670                 // Control + scroll up/down: zoom in/out
1671
1672                 if(modifier&GDK_CONTROL_MASK)
1673                 {
1674
1675                         // The zoom is performed while preserving the pointer
1676                         // position as a fixed point (similarly to Xara Xtreme and
1677                         // Inkscape).
1678
1679                         // The strategy used below is to scroll to the updated
1680                         // position, then zoom. This is easy to implement within
1681                         // the present architecture, but has the disadvantage of
1682                         // triggering multiple visible refreshes. Note: 1.25 is
1683                         // the hard wired ratio in zoom_in()/zoom_out(). The
1684                         // variable "drift" compensates additional inaccuracies in
1685                         // the zoom. There is also an additional minus sign for
1686                         // the inverted y coordinates.
1687
1688                         // FIXME: One might want to figure out where in the code
1689                         // this empirical drift is been introduced.
1690
1691                         const synfig::Point scroll_point(get_scrollx_adjustment()->get_value(),get_scrolly_adjustment()->get_value());
1692                         const double drift = 0.052;
1693
1694                         switch(event->scroll.direction)
1695                         {
1696                                 case GDK_SCROLL_UP:
1697                                 case GDK_SCROLL_RIGHT:
1698                                         get_scrollx_adjustment()->set_value(scroll_point[0]+(mouse_pos[0]-scroll_point[0])*(1.25-(1+drift)));
1699                                         get_scrolly_adjustment()->set_value(scroll_point[1]-(mouse_pos[1]+scroll_point[1])*(1.25-(1+drift)));
1700                                         zoom_in();
1701                                         break;
1702                                 case GDK_SCROLL_DOWN:
1703                                 case GDK_SCROLL_LEFT:
1704                                         get_scrollx_adjustment()->set_value(scroll_point[0]+(mouse_pos[0]-scroll_point[0])*(1/1.25-(1+drift)));
1705                                         get_scrolly_adjustment()->set_value(scroll_point[1]-(mouse_pos[1]+scroll_point[1])*(1/1.25-(1+drift)));
1706                                         zoom_out();
1707                                         break;
1708                                 default:
1709                                         break;
1710                         }
1711                 }
1712                 else if(modifier&GDK_SHIFT_MASK)
1713                 {
1714                         // Scroll in either direction by 20 pixels. Ideally, the
1715                         // amount of pixels per scrolling event should be
1716                         // configurable. Xara Xtreme currently uses an (hard
1717                         // wired) amount 20 pixel, Inkscape defaults to 40 pixels.
1718
1719                         const int scroll_pixel = 20;
1720
1721                         switch(event->scroll.direction)
1722                         {
1723                                 case GDK_SCROLL_UP:
1724                                         get_scrollx_adjustment()->set_value(get_scrollx_adjustment()->get_value()-scroll_pixel*pw);
1725                                         break;
1726                                 case GDK_SCROLL_DOWN:
1727                                         get_scrollx_adjustment()->set_value(get_scrollx_adjustment()->get_value()+scroll_pixel*pw);
1728                                         break;
1729                                 case GDK_SCROLL_LEFT:
1730                                         get_scrolly_adjustment()->set_value(get_scrolly_adjustment()->get_value()+scroll_pixel*ph);
1731                                         break;
1732                                 case GDK_SCROLL_RIGHT:
1733                                         get_scrolly_adjustment()->set_value(get_scrolly_adjustment()->get_value()-scroll_pixel*ph);
1734                                         break;
1735                                 default:
1736                                         break;
1737                         }
1738                 }
1739                 else
1740                 {
1741                         // Scroll in either direction by 20 pixels. Ideally, the
1742                         // amount of pixels per scrolling event should be
1743                         // configurable. Xara Xtreme currently uses an (hard
1744                         // wired) amount 20 pixel, Inkscape defaults to 40 pixels.
1745
1746                         const int scroll_pixel = 20;
1747
1748                         switch(event->scroll.direction)
1749                         {
1750                                 case GDK_SCROLL_UP:
1751                                         get_scrolly_adjustment()->set_value(get_scrolly_adjustment()->get_value()+scroll_pixel*ph);
1752                                         break;
1753                                 case GDK_SCROLL_DOWN:
1754                                         get_scrolly_adjustment()->set_value(get_scrolly_adjustment()->get_value()-scroll_pixel*ph);
1755                                         break;
1756                                 case GDK_SCROLL_LEFT:
1757                                         get_scrollx_adjustment()->set_value(get_scrollx_adjustment()->get_value()-scroll_pixel*pw);
1758                                         break;
1759                                 case GDK_SCROLL_RIGHT:
1760                                         get_scrollx_adjustment()->set_value(get_scrollx_adjustment()->get_value()+scroll_pixel*pw);
1761                                         break;
1762                                 default:
1763                                         break;
1764                         }
1765                 }
1766         }
1767                 break;
1768         default:
1769                 break;
1770         }
1771                 return false;
1772 }
1773
1774 bool
1775 WorkArea::on_hruler_event(GdkEvent *event)
1776 {
1777 /*
1778         switch(event->type)
1779     {
1780         case GDK_BUTTON_PRESS:
1781                 if(dragging==DRAG_NONE)
1782                 {
1783                         dragging=DRAG_GUIDE;
1784                         curr_guide=get_guide_list_y().insert(get_guide_list_y().begin());
1785                         curr_guide_is_x=false;
1786                 }
1787                 return true;
1788                 break;
1789
1790         case GDK_MOTION_NOTIFY:
1791                 // Guide movement
1792                 if(dragging==DRAG_GUIDE && curr_guide_is_x==false)
1793                 {
1794                         double y,x;
1795                         if(event->button.axes)
1796                         {
1797                                 x=(event->button.axes[0]);
1798                                 y=(event->button.axes[1]);
1799                         }
1800                         else
1801                         {
1802                                 x=event->button.x;
1803                                 y=event->button.y;
1804                         }
1805
1806                         if(isnan(y) || isnan(x))
1807                                 return false;
1808
1809                         *curr_guide=synfig::Point(screen_to_comp_coords(synfig::Point(x,y)))[1];
1810
1811                         queue_draw();
1812                 }
1813                 return true;
1814                 break;
1815
1816         case GDK_BUTTON_RELEASE:
1817                 if(dragging==DRAG_GUIDE && curr_guide_is_x==false)
1818                 {
1819                         dragging=DRAG_NONE;
1820                         get_guide_list_y().erase(curr_guide);
1821                 }
1822                 break;
1823                 return true;
1824         default:
1825                 break;
1826         }
1827 */
1828         return false;
1829 }
1830
1831 bool
1832 WorkArea::on_vruler_event(GdkEvent *event)
1833 {
1834 /*
1835         switch(event->type)
1836     {
1837         case GDK_BUTTON_PRESS:
1838                 DEBUGPOINT();
1839                 if(dragging==DRAG_NONE)
1840                 {
1841                         DEBUGPOINT();
1842                         dragging=DRAG_GUIDE;
1843                         curr_guide=get_guide_list_x().insert(get_guide_list_x().begin());
1844                         curr_guide_is_x=true;
1845                 }
1846                 return true;
1847                 break;
1848         case GDK_BUTTON_RELEASE:
1849                 DEBUGPOINT();
1850                 if(dragging==DRAG_GUIDE && curr_guide_is_x==true)
1851                 {
1852                         DEBUGPOINT();
1853                         dragging=DRAG_NONE;
1854                         get_guide_list_x().erase(curr_guide);
1855                 }
1856                 break;
1857                 return true;
1858         default:
1859                 break;
1860         }
1861 */
1862         return false;
1863 }
1864
1865
1866 void
1867 WorkArea::refresh_dimension_info()
1868 {
1869         synfig::RendDesc &rend_desc(get_canvas()->rend_desc());
1870
1871         canvaswidth=rend_desc.get_br()[0]-rend_desc.get_tl()[0];
1872         canvasheight=rend_desc.get_br()[1]-rend_desc.get_tl()[1];
1873
1874         pw=canvaswidth/w;
1875         ph=canvasheight/h;
1876
1877         scrollx_adjustment.set_page_increment(abs(get_grid_size()[0]));
1878         scrollx_adjustment.set_step_increment(abs(pw));
1879         scrollx_adjustment.set_lower(-abs(canvaswidth));
1880         scrollx_adjustment.set_upper(abs(canvaswidth));
1881         scrolly_adjustment.set_lower(-abs(canvasheight));
1882         scrolly_adjustment.set_upper(abs(canvasheight));
1883         scrolly_adjustment.set_step_increment(abs(ph));
1884         scrolly_adjustment.set_page_increment(abs(get_grid_size()[1]));
1885
1886
1887
1888         if(drawing_area->get_width()<=0 || drawing_area->get_height()<=0 || w==0 || h==0)
1889                 return;
1890
1891         const synfig::Point focus_point(get_focus_point());
1892         const synfig::Real x(focus_point[0]/pw+drawing_area->get_width()/2-w/2);
1893         const synfig::Real y(focus_point[1]/ph+drawing_area->get_height()/2-h/2);
1894
1895         window_tl[0]=rend_desc.get_tl()[0]-pw*x;
1896         window_br[0]=rend_desc.get_br()[0]+pw*(drawing_area->get_width()-x-w);
1897
1898         window_tl[1]=rend_desc.get_tl()[1]-ph*y;
1899         window_br[1]=rend_desc.get_br()[1]+ph*(drawing_area->get_height()-y-h);
1900
1901         hruler->property_lower()=Distance(window_tl[0],Distance::SYSTEM_UNITS).get(App::distance_system,rend_desc);
1902         hruler->property_upper()=Distance(window_br[0],Distance::SYSTEM_UNITS).get(App::distance_system,rend_desc);
1903         vruler->property_lower()=Distance(window_tl[1],Distance::SYSTEM_UNITS).get(App::distance_system,rend_desc);
1904         vruler->property_upper()=Distance(window_br[1],Distance::SYSTEM_UNITS).get(App::distance_system,rend_desc);
1905
1906         view_window_changed();
1907 }
1908
1909
1910 synfig::Point
1911 WorkArea::screen_to_comp_coords(synfig::Point pos)const
1912 {
1913         synfig::RendDesc &rend_desc(get_canvas()->rend_desc());
1914         //synfig::Vector::value_type canvaswidth=rend_desc.get_br()[0]-rend_desc.get_tl()[0];
1915         //synfig::Vector::value_type canvasheight=rend_desc.get_br()[1]-rend_desc.get_tl()[1];
1916         //synfig::Vector::value_type pw=canvaswidth/w;
1917         //synfig::Vector::value_type ph=canvasheight/h;
1918         Vector focus_point=get_focus_point();
1919         synfig::Vector::value_type x=focus_point[0]/pw+drawing_area->get_width()/2-w/2;
1920         synfig::Vector::value_type y=focus_point[1]/ph+drawing_area->get_height()/2-h/2;
1921
1922         return rend_desc.get_tl()-synfig::Point(pw*x,ph*y)+synfig::Point(pw*pos[0],ph*pos[1]);
1923 }
1924
1925 synfig::Point
1926 WorkArea::comp_to_screen_coords(synfig::Point pos)const
1927 {
1928         synfig::warning("WorkArea::comp_to_screen_coords: Not yet implemented");
1929         return synfig::Point();
1930 }
1931
1932 int
1933 WorkArea::next_unrendered_tile(int refreshes)const
1934 {
1935         //assert(!tile_book.empty());
1936         if(tile_book.empty())
1937                 return -1;
1938
1939         //const synfig::RendDesc &rend_desc(get_canvas()->rend_desc());
1940
1941         const synfig::Vector focus_point(get_focus_point());
1942
1943         // Calculate the window coordinates of the top-left
1944         // corner of the canvas.
1945         const synfig::Vector::value_type
1946                 x(focus_point[0]/pw+drawing_area->get_width()/2-w/2),
1947                 y(focus_point[1]/ph+drawing_area->get_height()/2-h/2);
1948
1949         const int width_in_tiles(w/tile_w+(w%tile_w?1:0));
1950         const int height_in_tiles(h/tile_h+(h%tile_h?1:0));
1951
1952         int
1953                 u(0),v(0),
1954                 u1(int(-x/tile_w)),
1955                 v1(int(-y/tile_h)),
1956                 u2(int((-x+drawing_area->get_width())/tile_w+1)),
1957                 v2(int((-y+drawing_area->get_height())/tile_h+1));
1958
1959         if(u2>width_in_tiles)u2=width_in_tiles;
1960         if(v2>height_in_tiles)v2=height_in_tiles;
1961         if(u1<0)u1=0;
1962         if(v1<0)v1=0;
1963
1964         int last_good_tile(-1);
1965
1966         for(v=v1;v<v2;v++)
1967                 for(u=u1;u<u2;u++)
1968                 {
1969                         int index(v*width_in_tiles+u);
1970                         if(tile_book[index].second<refreshes)
1971                         {
1972                                 last_good_tile=index;
1973                                 if(rand()%8==0)
1974                                         return index;
1975                         }
1976                 }
1977         return last_good_tile;
1978 }
1979
1980 /*
1981 template <typename F, typename T=WorkAreaRenderer, typename R=typename F::result_type>
1982 class handle2ptr_t : public std::unary_function<typename etl::handle<T>,R>
1983 {
1984 private:
1985         F func;
1986 public:
1987         handle2ptr_t(const F &func):func(func) { };
1988
1989         R operator()(typename etl::handle<T> x) { return func(*x); }
1990 };
1991
1992 template <typename F>
1993 handle2ptr_t<F>
1994 handle2ptr(F func)
1995 {
1996         return handle2ptr_t<F>(func);
1997 }
1998         for_each(
1999                 renderer_set_.begin(),
2000                 renderer_set_.end(),
2001                 handle2ptr(
2002                         sigc::bind(
2003                                 sigc::bind(
2004                                         sigc::mem_fun(
2005                                                 &WorkAreaRenderer::render_vfunc
2006                                         ),
2007                                         Gdk::Rectangle(event->area)
2008                                 ),
2009                                 drawing_area->get_window()
2010                         )
2011                 )
2012         );
2013 */
2014
2015 bool
2016 WorkArea::refresh(GdkEventExpose*event)
2017 {
2018         assert(get_canvas());
2019
2020         drawing_area->get_window()->clear();
2021
2022         //const synfig::RendDesc &rend_desc(get_canvas()->rend_desc());
2023
2024         const synfig::Vector focus_point(get_focus_point());
2025
2026         // Update the old focus point
2027         last_focus_point=focus_point;
2028
2029         // Draw out the renderables
2030         {
2031                 std::set<etl::handle<WorkAreaRenderer> >::iterator iter;
2032                 for(iter=renderer_set_.begin();iter!=renderer_set_.end();++iter)
2033                 {
2034                         if((*iter)->get_enabled())
2035                                 (*iter)->render_vfunc(
2036                                         drawing_area->get_window(),
2037                                         Gdk::Rectangle(&event->area)
2038                                 );
2039                 }
2040         }
2041
2042
2043         // Calculate the window coordinates of the top-left
2044         // corner of the canvas.
2045         //const synfig::Vector::value_type
2046         //      x(focus_point[0]/pw+drawing_area->get_width()/2-w/2),
2047         //      y(focus_point[1]/ph+drawing_area->get_height()/2-h/2);
2048
2049         //const synfig::Vector::value_type window_startx(window_tl[0]);
2050         //const synfig::Vector::value_type window_endx(window_br[0]);
2051         //const synfig::Vector::value_type window_starty(window_tl[1]);
2052         //const synfig::Vector::value_type window_endy(window_br[1]);
2053
2054         Glib::RefPtr<Gdk::GC> gc=Gdk::GC::create(drawing_area->get_window());
2055
2056
2057
2058         // If we are in animate mode, draw a red border around the screen
2059         if(canvas_interface->get_mode()&synfigapp::MODE_ANIMATE)
2060         {
2061                 /*gc->set_rgb_fg_color(Gdk::Color("#FF0000"));
2062                 gc->set_line_attributes(1,Gdk::LINE_SOLID,Gdk::CAP_BUTT,Gdk::JOIN_MITER);
2063                 drawing_area->get_window()->draw_rectangle(
2064                         gc,
2065                         false,  // Fill?
2066                         0,0,    // x,y
2067                         drawing_area->get_width()-1,drawing_area->get_height()-1        //w,h
2068                 );
2069                 */
2070                 drawing_frame->modify_bg(Gtk::STATE_NORMAL,Gdk::Color("#FF0000"));
2071                 //get_window()->set_background(Gdk::Color("#FF0000"));
2072         }
2073         else
2074                 drawing_frame->unset_bg(Gtk::STATE_NORMAL);
2075
2076
2077
2078         previous_focus=get_focus_point();
2079
2080         return true;
2081 }
2082
2083 void
2084 WorkArea::done_rendering()
2085 {
2086 /*
2087         assert(buffer);
2088         assert(w>0);
2089         assert(h>0);
2090         pix_buf=Gdk::Pixbuf::create_from_data(
2091                 buffer, // pointer to the data
2092                 Gdk::COLORSPACE_RGB, // the colorspace
2093                 true, // has alpha?
2094                 8, // bits per sample
2095                 w,      // width
2096                 h,      // height
2097                 w*bpp); // stride (pitch)
2098         assert(pix_buf);
2099 */
2100 }
2101
2102
2103 void
2104 WorkArea::set_quality(int x)
2105 {
2106         if(x==quality)
2107                 return;
2108         quality=x;
2109         queue_render_preview();
2110 }
2111
2112
2113 class WorkAreaProgress : public synfig::ProgressCallback
2114 {
2115         WorkArea *work_area;
2116         ProgressCallback *cb;
2117
2118 public:
2119
2120         WorkAreaProgress(WorkArea *work_area,ProgressCallback *cb):
2121                 work_area(work_area),cb(cb)
2122         {
2123                 assert(cb);
2124         }
2125
2126         virtual bool
2127         task(const std::string &str)
2128         {
2129                 if(work_area->dirty)
2130                         return false;
2131                 return cb->task(str);
2132         }
2133
2134         virtual bool
2135         error(const std::string &err)
2136         {
2137                 if(work_area->dirty)
2138                         return false;
2139                 return cb->error(err);
2140         }
2141
2142         virtual bool
2143         amount_complete(int current, int total)
2144         {
2145                 if(work_area->dirty)
2146                         return false;
2147                 return cb->amount_complete(current,total);
2148         }
2149 };
2150
2151 bool
2152 studio::WorkArea::async_update_preview()
2153 {
2154         async_renderer=0;
2155
2156         queued=false;
2157         canceled_=false;
2158         get_canvas_view()->reset_cancel_status();
2159
2160         // This object will mark us as busy until
2161         // we are done.
2162         //studio::App::Busy busy;
2163
2164         //WorkAreaProgress callback(this,get_canvas_view()->get_ui_interface().get());
2165         //synfig::ProgressCallback *cb=&callback;
2166
2167         if(!is_visible())return false;
2168
2169         /*
2170         // If we are queued to render the scene at the next idle
2171         // go ahead and de-queue it.
2172         if(render_idle_func_id)
2173         {
2174                 g_source_remove(render_idle_func_id);
2175                 //queued=false;
2176                 render_idle_func_id=0;
2177         }
2178         */
2179
2180         dirty=false;
2181         get_canvas_view()->reset_cancel_status();
2182
2183         //bool ret=false;
2184         RendDesc desc=get_canvas()->rend_desc();
2185
2186         int w=(int)(desc.get_w()*zoom);
2187         int h=(int)(desc.get_h()*zoom);
2188
2189         // Setup the description parameters
2190         desc.set_antialias(1);
2191         desc.set_time(cur_time);
2192
2193         set_rend_desc(desc);
2194
2195         // Create the render target
2196         handle<Target> target;
2197
2198         if(w*h>(low_resolution?480*270:480*270/2))
2199         {
2200                 handle<WorkAreaTarget> trgt(new class WorkAreaTarget(this,w,h));
2201
2202                 trgt->set_rend_desc(&desc);
2203                 trgt->set_onion_skin(get_onion_skin());
2204                 target=trgt;
2205         }
2206         else
2207         {
2208                 handle<WorkAreaTarget_Full> trgt(new class WorkAreaTarget_Full(this,w,h));
2209
2210                 trgt->set_rend_desc(&desc);
2211                 trgt->set_onion_skin(get_onion_skin());
2212                 target=trgt;
2213         }
2214
2215         // We can rest assured that our time has already
2216         // been set, so there is no need to have to
2217         // recalculate that over again.
2218         // UPDATE: This is kind of needless with
2219         // the way that time is handled now in SYNFIG.
2220         //target->set_avoid_time_sync(true);
2221         async_renderer=new AsyncRenderer(target);
2222         async_renderer->signal_finished().connect(
2223                 sigc::mem_fun(this,&WorkArea::async_update_finished)
2224         );
2225
2226         rendering=true;
2227         async_renderer->start();
2228
2229         synfig::ProgressCallback *cb=get_canvas_view()->get_ui_interface().get();
2230
2231         rendering=true;
2232         cb->task("Rendering...");
2233         rendering=true;
2234
2235         return true;
2236 }
2237
2238 void
2239 studio::WorkArea::async_update_finished()
2240 {
2241         synfig::ProgressCallback *cb=get_canvas_view()->get_ui_interface().get();
2242
2243         rendering=false;
2244
2245         if(!async_renderer)
2246                 return;
2247
2248         // If we completed successfuly, then
2249         // we aren't dirty anymore
2250         if(async_renderer->has_success())
2251         {
2252                 dirty=false;
2253                 //queued=false;
2254                 cb->task("Idle");
2255         }
2256         else
2257         {
2258                 dirty=true;
2259                 cb->task("Render Failed");
2260         }
2261         //get_canvas_view()->reset_cancel_status();
2262         done_rendering();
2263 }
2264
2265 bool
2266 studio::WorkArea::sync_update_preview()
2267 {
2268         //      const Time &time(cur_time);
2269
2270         canceled_=false;
2271         get_canvas_view()->reset_cancel_status();
2272
2273         async_renderer=0;
2274
2275 again:
2276         // This object will mark us as busy until
2277         // we are done.
2278         studio::App::Busy busy;
2279
2280         WorkAreaProgress callback(this,get_canvas_view()->get_ui_interface().get());
2281         synfig::ProgressCallback *cb=&callback;
2282
2283         // We don't want to render if we are already rendering
2284         if(rendering)
2285         {
2286                 dirty=true;
2287                 return false;
2288         }
2289
2290         if(!is_visible())return false;
2291         get_canvas()->set_time(get_time());
2292         get_canvas_view()->get_smach().process_event(EVENT_REFRESH_DUCKS);
2293         signal_rendering()();
2294
2295         // If we are queued to render the scene at the next idle
2296         // go ahead and de-queue it.
2297         if(render_idle_func_id)
2298         {
2299                 g_source_remove(render_idle_func_id);
2300                 //queued=false;
2301                 render_idle_func_id=0;
2302         }
2303         // Start rendering
2304         rendering=true;
2305
2306         dirty=false;
2307         get_canvas_view()->reset_cancel_status();
2308
2309         bool ret=false;
2310         RendDesc desc=get_canvas()->rend_desc();
2311         //newdesc->set_flags(RendDesc::PX_ASPECT|RendDesc::IM_SPAN);
2312
2313         int w=(int)(desc.get_w()*zoom);
2314         int h=(int)(desc.get_h()*zoom);
2315
2316         // Setup the description parameters
2317         desc.set_antialias(1);
2318         desc.set_time(cur_time);
2319         //desc.set_wh(w,h);
2320
2321         set_rend_desc(desc);
2322
2323         // Create the render target
2324         handle<WorkAreaTarget> target(new class WorkAreaTarget(this,w,h));
2325
2326         target->set_rend_desc(&desc);
2327
2328         // We can rest assured that our time has already
2329         // been set, so there is no need to have to
2330         // recalculate that over again.
2331         target->set_avoid_time_sync(true);
2332
2333         if(cb)
2334                 cb->task(strprintf("Rendering canvas %s...",get_canvas()->get_name().c_str()));
2335
2336         target->render(cb);
2337
2338         if(!ret && !get_canvas_view()->get_cancel_status() && dirty)
2339         {
2340                 rendering=false;
2341                 //canceled_=true;
2342                 goto again;
2343         }
2344         if(get_canvas_view()->get_cancel_status())
2345                 canceled_=true;
2346
2347         if(cb)
2348         {
2349                 if(ret)
2350                         cb->task("Idle");
2351                 else
2352                         cb->task("Render Failed");
2353                 cb->amount_complete(0,1);
2354         }
2355
2356         // Refresh the work area to make sure that
2357         // it is being displayed correctly
2358         drawing_area->queue_draw();
2359
2360         // If we completed successfuly, then
2361         // we aren't dirty anymore
2362         if(ret)
2363         {
2364                 dirty=false;
2365                 //queued=false;
2366         }
2367         else dirty=true;
2368         rendering=false;
2369         //get_canvas_view()->reset_cancel_status();
2370         done_rendering();
2371         return ret;
2372 }
2373
2374 void
2375 studio::WorkArea::async_render_preview(Time time)
2376 {
2377         cur_time=time;
2378         //tile_book.clear();
2379
2380         refreshes+=5;
2381         if(!is_visible())return;
2382
2383         get_canvas()->set_time(get_time());
2384         get_canvas_view()->get_smach().process_event(EVENT_REFRESH_DUCKS);
2385         signal_rendering()();
2386
2387         async_update_preview();
2388 }
2389 void
2390 WorkArea::async_render_preview()
2391 {
2392         return async_render_preview(get_canvas_view()->get_time());
2393 }
2394
2395 bool
2396 studio::WorkArea::sync_render_preview(Time time)
2397 {
2398         cur_time=time;
2399         //tile_book.clear();
2400         refreshes+=5;
2401         if(!is_visible())return false;
2402         return sync_update_preview();
2403 }
2404
2405 bool
2406 WorkArea::sync_render_preview()
2407 {
2408         return sync_render_preview(get_canvas_view()->get_time());
2409 }
2410
2411 void
2412 WorkArea::sync_render_preview_hook()
2413 {
2414         sync_render_preview(get_canvas_view()->get_time());
2415 }
2416
2417 void
2418 WorkArea::queue_scroll()
2419 {
2420 //      const synfig::RendDesc &rend_desc(get_canvas()->rend_desc());
2421
2422         const synfig::Point focus_point(get_focus_point());
2423
2424         const synfig::Real
2425                 new_x(focus_point[0]/pw+drawing_area->get_width()/2-w/2),
2426                 new_y(focus_point[1]/ph+drawing_area->get_height()/2-h/2);
2427
2428         const synfig::Real
2429                 old_x(last_focus_point[0]/pw+drawing_area->get_width()/2-w/2),
2430                 old_y(last_focus_point[1]/ph+drawing_area->get_height()/2-h/2);
2431
2432         // If the coordinates didn't change, we shouldn't queue a draw
2433         if(old_x==new_x && old_y==new_y)
2434                 return;
2435
2436         const int
2437                 dx(round_to_int(old_x)-round_to_int(new_x)),
2438                 dy(round_to_int(old_y)-round_to_int(new_y));
2439
2440         drawing_area->get_window()->scroll(-dx,-dy);
2441
2442         /*drawing_area->queue_draw_area(
2443                 0,
2444                 0,
2445                 128,
2446                 64
2447         );
2448         */
2449         last_focus_point=focus_point;
2450 }
2451
2452 void
2453 studio::WorkArea::zoom_in()
2454 {
2455         set_zoom(zoom*1.25);
2456 }
2457
2458 void
2459 studio::WorkArea::zoom_out()
2460 {
2461         set_zoom(zoom/1.25);
2462 }
2463
2464 void
2465 studio::WorkArea::zoom_fit()
2466 {
2467         // This really doesn't zoom to fit. Bug.
2468         zoom_norm();
2469 }
2470
2471 void
2472 studio::WorkArea::zoom_norm()
2473 {
2474         if(zoom==1.0)
2475                 set_zoom(prev_zoom);
2476         else
2477         {
2478                 prev_zoom=zoom;
2479                 set_zoom(1.0f);
2480         }
2481 }
2482
2483 gboolean
2484 studio::WorkArea::__render_preview(gpointer data)
2485 {
2486
2487         WorkArea *work_area(static_cast<WorkArea*>(data));
2488
2489         work_area->queued=false;
2490         work_area->async_render_preview(work_area->get_canvas_view()->get_time());
2491
2492         return 0;
2493 }
2494
2495 void
2496 studio::WorkArea::queue_render_preview()
2497 {
2498         //synfig::info("queue_render_preview(): called for %s", get_canvas_view()->get_time().get_string().c_str());
2499
2500         if(queued==true)
2501         {
2502                 return;
2503                 //synfig::info("queue_render_preview(): already queued, unqueuing");
2504 /*              if(render_idle_func_id)
2505                         g_source_remove(render_idle_func_id);
2506                 render_idle_func_id=0;
2507                 queued=false;
2508 */
2509                 //async_renderer=0;
2510         }
2511
2512         if(dirty_trap_enabled)
2513         {
2514                 dirty_trap_queued++;
2515                 return;
2516         }
2517
2518         int queue_time=50;
2519
2520         if(rendering)
2521                 queue_time+=250;
2522
2523
2524         if(queued==false)
2525         {
2526                 //synfig::info("queue_render_preview(): (re)queuing...");
2527                 //render_idle_func_id=g_idle_add_full(G_PRIORITY_DEFAULT,__render_preview,this,NULL);
2528                 render_idle_func_id=g_timeout_add_full(G_PRIORITY_DEFAULT,queue_time,__render_preview,this,NULL);
2529                 queued=true;
2530         }
2531 /*      else if(rendering)
2532         {
2533                 refreshes+=5;
2534                 dirty=true;
2535                 queue_draw();
2536         }
2537 */
2538 }
2539
2540 DirtyTrap::DirtyTrap(WorkArea *work_area):work_area(work_area)
2541 {
2542         work_area->dirty_trap_enabled=true;
2543
2544         work_area->dirty_trap_queued=0;
2545 }
2546
2547 DirtyTrap::~DirtyTrap()
2548 {
2549         work_area->dirty_trap_enabled=false;
2550         if(work_area->dirty_trap_queued)
2551                 work_area->queue_render_preview();
2552 }
2553
2554 void
2555 studio::WorkArea::queue_draw_preview()
2556 {
2557         drawing_area->queue_draw();
2558 }
2559
2560 void
2561 studio::WorkArea::set_cursor(const Gdk::Cursor& x)
2562 {
2563         drawing_area->get_window()->set_cursor(x);
2564 }
2565 void
2566 studio::WorkArea::set_cursor(Gdk::CursorType x)
2567 {
2568         drawing_area->get_window()->set_cursor(Gdk::Cursor(x));
2569 }
2570
2571 #include "iconcontroler.h"
2572
2573 void
2574 studio::WorkArea::refresh_cursor()
2575 {
2576 //      set_cursor(IconControler::get_tool_cursor(canvas_view->get_smach().get_state_name(),drawing_area->get_window()));
2577 }
2578
2579 void
2580 studio::WorkArea::reset_cursor()
2581 {
2582         drawing_area->get_window()->set_cursor(Gdk::Cursor(Gdk::TOP_LEFT_ARROW));
2583 //      set_cursor(Gdk::TOP_LEFT_ARROW);
2584 }
2585
2586 void
2587 studio::WorkArea::set_zoom(float z)
2588 {
2589         z=max(1.0f/128.0f,min(128.0f,z));
2590         if(z==zoom)
2591                 return;
2592         zoom = z;
2593         refresh_dimension_info();
2594         /*if(async_renderer)
2595         {
2596                 async_renderer->stop();
2597                 async_renderer=0;
2598         }*/
2599         refreshes+=5;
2600         async_update_preview();
2601         //queue_render_preview();
2602 }
2603
2604 void
2605 WorkArea::set_selected_value_node(etl::loose_handle<synfig::ValueNode> x)
2606 {
2607         if(x!=selected_value_node_)
2608         {
2609                 selected_value_node_=x;
2610                 queue_draw();
2611         }
2612 }
2613
2614 void
2615 WorkArea::insert_renderer(const etl::handle<WorkAreaRenderer> &x)
2616 {
2617         renderer_set_.insert(x);
2618         x->set_work_area(this);
2619         queue_draw();
2620 }
2621
2622 void
2623 WorkArea::insert_renderer(const etl::handle<WorkAreaRenderer> &x, int priority)
2624 {
2625         x->set_priority(priority);
2626         insert_renderer(x);
2627 }
2628
2629 void
2630 WorkArea::erase_renderer(const etl::handle<WorkAreaRenderer> &x)
2631 {
2632         x->set_work_area(0);
2633         renderer_set_.erase(x);
2634         queue_draw();
2635 }
2636
2637 void
2638 WorkArea::resort_render_set()
2639 {
2640         std::set<etl::handle<WorkAreaRenderer> > tmp(
2641                 renderer_set_.begin(),
2642                 renderer_set_.end()
2643         );
2644         renderer_set_.swap(tmp);
2645         queue_draw();
2646 }