/[thuban]/branches/WIP-pyshapelib-bramz/Thuban/UI/view.py
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revision 23 by bh, Wed Sep 5 13:35:22 2001 UTC revision 883 by jonathan, Fri May 9 16:34:39 2003 UTC
# Line 1  Line 1 
1  # Copyright (c) 2001 by Intevation GmbH  # Copyright (c) 2001, 2002, 2003 by Intevation GmbH
2  # Authors:  # Authors:
3  # Bernhard Herzog <[email protected]>  # Bernhard Herzog <[email protected]>
4  #  #
# Line 11  Classes for display of a map and interac Line 11  Classes for display of a map and interac
11    
12  __version__ = "$Revision$"  __version__ = "$Revision$"
13    
14    import sys
15    
16  from math import hypot  from math import hypot
17    
18  from wxPython.wx import wxWindow,\  from wxPython.wx import wxWindow,\
19       wxPaintDC, wxColour, wxClientDC, wxINVERT, wxTRANSPARENT_BRUSH, wxFont,\       wxPaintDC, wxColour, wxClientDC, wxINVERT, wxTRANSPARENT_BRUSH, wxFont,\
20       EVT_PAINT, EVT_LEFT_DOWN, EVT_LEFT_UP, EVT_MOTION       EVT_PAINT, EVT_LEFT_DOWN, EVT_LEFT_UP, EVT_MOTION, EVT_LEAVE_WINDOW, \
21         wxBITMAP_TYPE_XPM, wxBeginBusyCursor, wxEndBusyCursor, wxCursor, \
22         wxImageFromBitmap
23    
24    
25  from wxPython import wx  from wxPython import wx
# Line 24  from wxproj import point_in_polygon_shap Line 28  from wxproj import point_in_polygon_shap
28    
29    
30  from Thuban.Model.messages import MAP_PROJECTION_CHANGED, \  from Thuban.Model.messages import MAP_PROJECTION_CHANGED, \
31       LAYERS_CHANGED, LAYER_LEGEND_CHANGED, LAYER_VISIBILITY_CHANGED       MAP_LAYERS_CHANGED, LAYER_CHANGED, LAYER_VISIBILITY_CHANGED
32  from Thuban.Model.layer import SHAPETYPE_POLYGON, SHAPETYPE_ARC, \  from Thuban.Model.layer import SHAPETYPE_POLYGON, SHAPETYPE_ARC, \
33       SHAPETYPE_POINT       SHAPETYPE_POINT
34  from Thuban.Model.label import ALIGN_CENTER, ALIGN_TOP, ALIGN_BOTTOM, \  from Thuban.Model.label import ALIGN_CENTER, ALIGN_TOP, ALIGN_BOTTOM, \
35       ALIGN_LEFT, ALIGN_RIGHT       ALIGN_LEFT, ALIGN_RIGHT
36    from Thuban.Lib.connector import Publisher
37    from Thuban.Model.color import Color
38    
39    import resource
40    
41    from selection import Selection
42  from renderer import ScreenRenderer, PrinterRender  from renderer import ScreenRenderer, PrinterRender
43    
44  import labeldialog  import labeldialog
45    
46  from messages import SELECTED_SHAPE  from messages import LAYER_SELECTED, SHAPES_SELECTED, VIEW_POSITION, \
47                         SCALE_CHANGED
48    
49    
50  #  #
# Line 127  class ZoomInTool(RectTool): Line 136  class ZoomInTool(RectTool):
136      def MouseUp(self, event):      def MouseUp(self, event):
137          if self.dragging:          if self.dragging:
138              Tool.MouseUp(self, event)              Tool.MouseUp(self, event)
139              self.view.FitRectToWindow(self.proj_rect())              sx, sy = self.start
140                cx, cy = self.current
141                if sx == cx or sy == cy:
142                    # Just a mouse click or a degenerate rectangle. Simply
143                    # zoom in by a factor of two
144                    # FIXME: For a click this is the desired behavior but should we
145                    # really do this for degenrate rectagles as well or
146                    # should we ignore them?
147                    self.view.ZoomFactor(2, center = (cx, cy))
148                else:
149                    # A drag. Zoom in to the rectangle
150                    self.view.FitRectToWindow(self.proj_rect())
151    
152    
153  class ZoomOutTool(RectTool):  class ZoomOutTool(RectTool):
154    
155      """The Zoom-Out Tool"""      """The Zoom-Out Tool"""
156        
157      def Name(self):      def Name(self):
158          return "ZoomOutTool"          return "ZoomOutTool"
159    
# Line 142  class ZoomOutTool(RectTool): Line 162  class ZoomOutTool(RectTool):
162              Tool.MouseUp(self, event)              Tool.MouseUp(self, event)
163              sx, sy = self.start              sx, sy = self.start
164              cx, cy = self.current              cx, cy = self.current
165              self.view.ZoomOutToRect((min(sx, cx), min(sy, cy),              if sx == cx or sy == cy:
166                                       max(sx, cx), max(sy, cy)))                  # Just a mouse click or a degenerate rectangle. Simply
167                    # zoom out by a factor of two.
168                    # FIXME: For a click this is the desired behavior but should we
169                    # really do this for degenrate rectagles as well or
170                    # should we ignore them?
171                    self.view.ZoomFactor(0.5, center = (cx, cy))
172                else:
173                    # A drag. Zoom out to the rectangle
174                    self.view.ZoomOutToRect((min(sx, cx), min(sy, cy),
175                                             max(sx, cx), max(sy, cy)))
176    
177    
178  class PanTool(Tool):  class PanTool(Tool):
# Line 155  class PanTool(Tool): Line 184  class PanTool(Tool):
184    
185      def MouseMove(self, event):      def MouseMove(self, event):
186          if self.dragging:          if self.dragging:
             x0, y0 = self.current  
187              Tool.MouseMove(self, event)              Tool.MouseMove(self, event)
188                sx, sy = self.start
189              x, y = self.current              x, y = self.current
190              width, height = self.view.GetSizeTuple()              width, height = self.view.GetSizeTuple()
191    
192                bitmapdc = wx.wxMemoryDC()
193                bitmapdc.SelectObject(self.view.bitmap)
194    
195              dc = self.view.drag_dc              dc = self.view.drag_dc
196              dc.Blit(0, 0, width, height, dc, x0 - x, y0 - y)              dc.Blit(0, 0, width, height, bitmapdc, sx - x, sy - y)
197    
198      def MouseUp(self, event):      def MouseUp(self, event):
199          if self.dragging:          if self.dragging:
# Line 168  class PanTool(Tool): Line 201  class PanTool(Tool):
201              sx, sy = self.start              sx, sy = self.start
202              cx, cy = self.current              cx, cy = self.current
203              self.view.Translate(cx - sx, cy - sy)              self.view.Translate(cx - sx, cy - sy)
204            
205  class IdentifyTool(Tool):  class IdentifyTool(Tool):
206    
207      """The "Identify" Tool"""      """The "Identify" Tool"""
208        
209      def Name(self):      def Name(self):
210          return "IdentifyTool"          return "IdentifyTool"
211    
# Line 226  class MapPrintout(wx.wxPrintout): Line 259  class MapPrintout(wx.wxPrintout):
259          renderer = PrinterRender(dc, scale, (offx, offy), resolution = resx)          renderer = PrinterRender(dc, scale, (offx, offy), resolution = resx)
260          renderer.RenderMap(self.map)          renderer.RenderMap(self.map)
261          return wx.true          return wx.true
           
262    
263  class MapCanvas(wxWindow):  
264    class MapCanvas(wxWindow, Publisher):
265    
266      """A widget that displays a map and offers some interaction"""      """A widget that displays a map and offers some interaction"""
267    
268      def __init__(self, parent, winid, interactor):      # Some messages that can be subscribed/unsubscribed directly through
269        # the MapCanvas come in fact from other objects. This is a dict
270        # mapping those messages to the names of the instance variables they
271        # actually come from. The delegation is implemented in the Subscribe
272        # and Unsubscribe methods
273        delegated_messages = {LAYER_SELECTED: "selection",
274                              SHAPES_SELECTED: "selection"}
275    
276        # Methods delegated to some instance variables. The delegation is
277        # implemented in the __getattr__ method.
278        delegated_methods = {"SelectLayer": "selection",
279                             "SelectShapes": "selection",
280                             "SelectedLayer": "selection",
281                             "HasSelectedLayer": "selection",
282                             "HasSelectedShapes": "selection",
283                             "SelectedShapes": "selection"}
284    
285        def __init__(self, parent, winid):
286          wxWindow.__init__(self, parent, winid)          wxWindow.__init__(self, parent, winid)
287          self.SetBackgroundColour(wxColour(255, 255, 255))          self.SetBackgroundColour(wxColour(255, 255, 255))
288    
289            # the map displayed in this canvas. Set with SetMap()
290          self.map = None          self.map = None
291    
292            # scale and offset describe the transformation from projected
293            # coordinates to window coordinates.
294          self.scale = 1.0          self.scale = 1.0
295          self.offset = (0, 0)          self.offset = (0, 0)
296    
297            # whether the user is currently dragging the mouse, i.e. moving
298            # the mouse while pressing a mouse button
299          self.dragging = 0          self.dragging = 0
300    
301            # the currently active tool
302          self.tool = None          self.tool = None
303          self.redraw_on_idle = 0  
304            # The current mouse position of the last OnMotion event or None
305            # if the mouse is outside the window.
306            self.current_position = None
307    
308            # the bitmap serving as backing store
309            self.bitmap = None
310    
311            # the selection
312            self.selection = Selection()
313            self.selection.Subscribe(SHAPES_SELECTED , self.shape_selected)
314    
315            # keep track of which layers/shapes are selected to make sure we
316            # only redraw when necessary
317            self.last_selected_layer = None
318            self.last_selected_shape = None
319    
320            # subscribe the WX events we're interested in
321          EVT_PAINT(self, self.OnPaint)          EVT_PAINT(self, self.OnPaint)
322          EVT_LEFT_DOWN(self, self.OnLeftDown)          EVT_LEFT_DOWN(self, self.OnLeftDown)
323          EVT_LEFT_UP(self, self.OnLeftUp)          EVT_LEFT_UP(self, self.OnLeftUp)
324          EVT_MOTION(self, self.OnMotion)          EVT_MOTION(self, self.OnMotion)
325          wx.EVT_IDLE(self, self.OnIdle)          EVT_LEAVE_WINDOW(self, self.OnLeaveWindow)
326          self.interactor = interactor          wx.EVT_SIZE(self, self.OnSize)
327          self.interactor.Subscribe(SELECTED_SHAPE, self.shape_selected)  
328        def __del__(self):
329            wxWindow.__del__(self)
330            Publisher.__del__(self)
331    
332        def Subscribe(self, channel, *args):
333            """Extend the inherited method to handle delegated messages.
334    
335            If channel is one of the delegated messages call the appropriate
336            object's Subscribe method. Otherwise just call the inherited
337            method.
338            """
339            if channel in self.delegated_messages:
340                object = getattr(self, self.delegated_messages[channel])
341                object.Subscribe(channel, *args)
342            else:
343                Publisher.Subscribe(self, channel, *args)
344    
345        def Unsubscribe(self, channel, *args):
346            """Extend the inherited method to handle delegated messages.
347    
348            If channel is one of the delegated messages call the appropriate
349            object's Unsubscribe method. Otherwise just call the inherited
350            method.
351            """
352            if channel in self.delegated_messages:
353                object = getattr(self, self.delegated_messages[channel])
354                object.Unsubscribe(channel, *args)
355            else:
356                Publisher.Unsubscribe(self, channel, *args)
357    
358        def __getattr__(self, attr):
359            if attr in self.delegated_methods:
360                return getattr(getattr(self, self.delegated_methods[attr]), attr)
361            raise AttributeError(attr)
362    
363      def OnPaint(self, event):      def OnPaint(self, event):
364          dc = wxPaintDC(self)          dc = wxPaintDC(self)
365          if self.map is None or not self.map.HasLayers():          clear = self.map is None or not self.map.HasLayers()
             return  
         self.redraw_on_idle = 1  
366    
367      def do_redraw(self):          #wxBeginBusyCursor()
         width, height = self.GetSizeTuple()  
         bitmap = wx.wxEmptyBitmap(width, height)  
368    
369          dc = wx.wxMemoryDC()          if not clear:
370          dc.SelectObject(bitmap)              try:
371                    self.do_redraw()
372                except:
373                    print "Error during drawing:", sys.exc_info()[0]
374                    clear = True
375    
376            if clear:
377                # If we've got no map or if the map is empty, simply clear
378                # the screen.
379    
380                # XXX it's probably possible to get rid of this. The
381                # background color of the window is already white and the
382                # only thing we may have to do is to call self.Refresh()
383                # with a true argument in the right places.
384                dc.BeginDrawing()
385                dc.Clear()
386                dc.EndDrawing()
387    
388            #wxEndBusyCursor()
389    
390        def do_redraw(self):
391            # This should only be called if we have a non-empty map.
392    
393          dc.BeginDrawing()          # Get the window size.
394            width, height = self.GetSizeTuple()
395    
396          dc.SetBrush(wx.wxWHITE_BRUSH)          # If self.bitmap's still there, reuse it. Otherwise redraw it
397          dc.SetPen(wx.wxTRANSPARENT_PEN)          if self.bitmap is not None:
398          dc.DrawRectangle(0, 0, width, height)              bitmap = self.bitmap
   
         if 1: #self.interactor.selected_map is self.map:  
             selected_layer = self.interactor.selected_layer  
             selected_shape = self.interactor.selected_shape  
399          else:          else:
400              selected_layer = None              bitmap = wx.wxEmptyBitmap(width, height)
401              selected_shape = None              dc = wx.wxMemoryDC()
402                            dc.SelectObject(bitmap)
403          renderer = ScreenRenderer(dc, self.scale, self.offset)              dc.BeginDrawing()
404          renderer.RenderMap(self.map, selected_layer, selected_shape)  
405                # clear the background
406                #dc.SetBrush(wx.wxWHITE_BRUSH)
407                #dc.SetPen(wx.wxTRANSPARENT_PEN)
408                #dc.DrawRectangle(0, 0, width, height)
409                dc.SetBackground(wx.wxWHITE_BRUSH)
410                dc.Clear()
411    
412                selected_layer = self.selection.SelectedLayer()
413                selected_shapes = self.selection.SelectedShapes()
414    
415                # draw the map into the bitmap
416                renderer = ScreenRenderer(dc, self.scale, self.offset)
417    
418                # Pass the entire bitmap as update region to the renderer.
419                # We're redrawing the whole bitmap, after all.
420                renderer.RenderMap(self.map, (0, 0, width, height),
421                                   selected_layer, selected_shapes)
422    
423                dc.EndDrawing()
424                dc.SelectObject(wx.wxNullBitmap)
425                self.bitmap = bitmap
426    
427            # blit the bitmap to the screen
428            dc = wx.wxMemoryDC()
429            dc.SelectObject(bitmap)
430          clientdc = wxClientDC(self)          clientdc = wxClientDC(self)
431          clientdc.BeginDrawing()          clientdc.BeginDrawing()
432          clientdc.Blit(0, 0, width, height, dc, 0, 0)          clientdc.Blit(0, 0, width, height, dc, 0, 0)
433          clientdc.EndDrawing()          clientdc.EndDrawing()
434    
   
435      def Print(self):      def Print(self):
436          printer = wx.wxPrinter()          printer = wx.wxPrinter()
437          printout = MapPrintout(self.map)          printout = MapPrintout(self.map)
438          printer.Print(self, printout, wx.true)          printer.Print(self, printout, wx.true)
439          printout.Destroy()          printout.Destroy()
440            
441      def SetMap(self, map):      def SetMap(self, map):
442          redraw_channels = (LAYERS_CHANGED, LAYER_LEGEND_CHANGED,          redraw_channels = (MAP_LAYERS_CHANGED, LAYER_CHANGED,
443                             LAYER_VISIBILITY_CHANGED)                             LAYER_VISIBILITY_CHANGED)
444          if self.map is not None:          if self.map is not None:
445              for channel in redraw_channels:              for channel in redraw_channels:
446                  self.map.Unsubscribe(channel, self.redraw)                  self.map.Unsubscribe(channel, self.full_redraw)
447              self.map.Unsubscribe(MAP_PROJECTION_CHANGED,              self.map.Unsubscribe(MAP_PROJECTION_CHANGED,
448                                   self.projection_changed)                                   self.projection_changed)
449          self.map = map          self.map = map
450            self.selection.ClearSelection()
451          if self.map is not None:          if self.map is not None:
452              for channel in redraw_channels:              for channel in redraw_channels:
453                  self.map.Subscribe(channel, self.redraw)                  self.map.Subscribe(channel, self.full_redraw)
454              self.map.Subscribe(MAP_PROJECTION_CHANGED, self.projection_changed)              self.map.Subscribe(MAP_PROJECTION_CHANGED, self.projection_changed)
455          self.FitMapToWindow()          self.FitMapToWindow()
456            # force a redraw. If map is not empty, it's already been called
457            # by FitMapToWindow but if map is empty it hasn't been called
458            # yet so we have to explicitly call it.
459            self.full_redraw()
460    
461      def Map(self):      def Map(self):
462            """Return the map displayed by this canvas"""
463          return self.map          return self.map
464    
465      def redraw(self, *args):      def redraw(self, *args):
466          self.Refresh(0)          self.Refresh(0)
467    
468        def full_redraw(self, *args):
469            self.bitmap = None
470            self.redraw()
471    
472      def projection_changed(self, *args):      def projection_changed(self, *args):
473          self.FitMapToWindow()          self.FitMapToWindow()
474          self.redraw()          self.full_redraw()
475    
476      def set_view_transform(self, scale, offset):      def set_view_transform(self, scale, offset):
477          self.scale = scale          self.scale = scale
478          self.offset = offset          self.offset = offset
479          self.redraw()          self.full_redraw()
480            self.issue(SCALE_CHANGED, scale)
481    
482      def proj_to_win(self, x, y):      def proj_to_win(self, x, y):
483          """\          """\
# Line 335  class MapCanvas(wxWindow): Line 494  class MapCanvas(wxWindow):
494          return ((x - offx) / self.scale, (offy - y) / self.scale)          return ((x - offx) / self.scale, (offy - y) / self.scale)
495    
496      def FitRectToWindow(self, rect):      def FitRectToWindow(self, rect):
497            """Fit the rectangular region given by rect into the window.
498    
499            Set scale so that rect (in projected coordinates) just fits into
500            the window and center it.
501            """
502          width, height = self.GetSizeTuple()          width, height = self.GetSizeTuple()
503          llx, lly, urx, ury = rect          llx, lly, urx, ury = rect
504            if llx == urx or lly == ury:
505                # zero width or zero height. Do Nothing
506                return
507          scalex = width / (urx - llx)          scalex = width / (urx - llx)
508          scaley = height / (ury - lly)          scaley = height / (ury - lly)
509          scale = min(scalex, scaley)          scale = min(scalex, scaley)
# Line 345  class MapCanvas(wxWindow): Line 512  class MapCanvas(wxWindow):
512          self.set_view_transform(scale, (offx, offy))          self.set_view_transform(scale, (offx, offy))
513    
514      def FitMapToWindow(self):      def FitMapToWindow(self):
515          """\          """Fit the map to the window
516          Set the scale and offset so that the map is centered in the  
517          window          Set the scale so that the map fits exactly into the window and
518            center it in the window.
519          """          """
520          bbox = self.map.ProjectedBoundingBox()          bbox = self.map.ProjectedBoundingBox()
521          if bbox is not None:          if bbox is not None:
522              self.FitRectToWindow(bbox)              self.FitRectToWindow(bbox)
523    
524      def ZoomFactor(self, factor):      def FitLayerToWindow(self, layer):
525            """Fit the given layer to the window.
526    
527            Set the scale so that the layer fits exactly into the window and
528            center it in the window.
529            """
530            
531            bbox = layer.LatLongBoundingBox()
532            if bbox is not None:
533                proj = self.map.GetProjection()
534                if proj is not None:
535                    bbox = proj.ForwardBBox(bbox)
536    
537                if bbox is not None:
538                    self.FitRectToWindow(bbox)
539    
540        def FitSelectedToWindow(self):
541            layer = self.selection.SelectedLayer()
542            shapes = self.selection.SelectedShapes()
543    
544            bbox = layer.ShapesBoundingBox(shapes)
545            if bbox is not None:
546                proj = self.map.GetProjection()
547                if proj is not None:
548                    bbox = proj.ForwardBBox(bbox)
549    
550                if bbox is not None:
551                    self.FitRectToWindow(bbox)
552    
553        def ZoomFactor(self, factor, center = None):
554            """Multiply the zoom by factor and center on center.
555    
556            The optional parameter center is a point in window coordinates
557            that should be centered. If it is omitted, it defaults to the
558            center of the window
559            """
560          width, height = self.GetSizeTuple()          width, height = self.GetSizeTuple()
561          scale = self.scale * factor          scale = self.scale * factor
562          offx, offy = self.offset          offx, offy = self.offset
563          offset = (factor * (offx - width / 2) + width / 2,          if center is not None:
564                    factor * (offy - height / 2) + height / 2)              cx, cy = center
565            else:
566                cx = width / 2
567                cy = height / 2
568            offset = (factor * (offx - cx) + width / 2,
569                      factor * (offy - cy) + height / 2)
570          self.set_view_transform(scale, offset)          self.set_view_transform(scale, offset)
571    
572      def ZoomOutToRect(self, rect):      def ZoomOutToRect(self, rect):
573          # rect is given in window coordinates          """Zoom out to fit the currently visible region into rect.
574    
575            The rect parameter is given in window coordinates
576            """
577          # determine the bbox of the displayed region in projected          # determine the bbox of the displayed region in projected
578          # coordinates          # coordinates
579          width, height = self.GetSizeTuple()          width, height = self.GetSizeTuple()
# Line 380  class MapCanvas(wxWindow): Line 590  class MapCanvas(wxWindow):
590          self.set_view_transform(scale, (offx, offy))          self.set_view_transform(scale, (offx, offy))
591    
592      def Translate(self, dx, dy):      def Translate(self, dx, dy):
593            """Move the map by dx, dy pixels"""
594          offx, offy = self.offset          offx, offy = self.offset
595          self.set_view_transform(self.scale, (offx + dx, offy + dy))          self.set_view_transform(self.scale, (offx + dx, offy + dy))
596    
597        def SelectTool(self, tool):
598            """Make tool the active tool.
599    
600            The parameter should be an instance of Tool or None to indicate
601            that no tool is active.
602            """
603            self.tool = tool
604    
605      def ZoomInTool(self):      def ZoomInTool(self):
606          self.tool = ZoomInTool(self)          """Start the zoom in tool"""
607            self.SelectTool(ZoomInTool(self))
608    
609      def ZoomOutTool(self):      def ZoomOutTool(self):
610          self.tool = ZoomOutTool(self)          """Start the zoom out tool"""
611            self.SelectTool(ZoomOutTool(self))
612    
613      def PanTool(self):      def PanTool(self):
614          self.tool = PanTool(self)          """Start the pan tool"""
615            self.SelectTool(PanTool(self))
616            #img = resource.GetImageResource("pan", wxBITMAP_TYPE_XPM)
617            #bmp = resource.GetBitmapResource("pan", wxBITMAP_TYPE_XPM)
618            #print bmp
619            #img = wxImageFromBitmap(bmp)
620            #print img
621            #cur = wxCursor(img)
622            #print cur
623            #self.SetCursor(cur)
624    
625      def IdentifyTool(self):      def IdentifyTool(self):
626          self.tool = IdentifyTool(self)          """Start the identify tool"""
627            self.SelectTool(IdentifyTool(self))
628    
629      def LabelTool(self):      def LabelTool(self):
630          self.tool = LabelTool(self)          """Start the label tool"""
631            self.SelectTool(LabelTool(self))
632    
633      def CurrentTool(self):      def CurrentTool(self):
634            """Return the name of the current tool or None if no tool is active"""
635          return self.tool and self.tool.Name() or None          return self.tool and self.tool.Name() or None
636    
637        def CurrentPosition(self):
638            """Return current position of the mouse in projected coordinates.
639    
640            The result is a 2-tuple of floats with the coordinates. If the
641            mouse is not in the window, the result is None.
642            """
643            if self.current_position is not None:
644                x, y = self.current_position
645                return self.win_to_proj(x, y)
646            else:
647                return None
648    
649        def set_current_position(self, event):
650            """Set the current position from event
651    
652            Should be called by all events that contain mouse positions
653            especially EVT_MOTION. The event paramete may be None to
654            indicate the the pointer left the window.
655            """
656            if event is not None:
657                self.current_position = (event.m_x, event.m_y)
658            else:
659                self.current_position = None
660            self.issue(VIEW_POSITION)
661    
662      def OnLeftDown(self, event):      def OnLeftDown(self, event):
663            self.set_current_position(event)
664          if self.tool is not None:          if self.tool is not None:
665              self.drag_dc = wxClientDC(self)              self.drag_dc = wxClientDC(self)
666              self.drag_dc.SetLogicalFunction(wxINVERT)              self.drag_dc.SetLogicalFunction(wxINVERT)
# Line 410  class MapCanvas(wxWindow): Line 669  class MapCanvas(wxWindow):
669              self.tool.MouseDown(event)              self.tool.MouseDown(event)
670              self.tool.Show(self.drag_dc)              self.tool.Show(self.drag_dc)
671              self.dragging = 1              self.dragging = 1
672            
673      def OnLeftUp(self, event):      def OnLeftUp(self, event):
674          self.ReleaseMouse()          self.set_current_position(event)
675          if self.dragging:          if self.dragging:
676              self.tool.Hide(self.drag_dc)              self.ReleaseMouse()
677              self.tool.MouseUp(event)              try:
678              self.drag_dc = None                  self.tool.Hide(self.drag_dc)
679          self.dragging = 0                  self.tool.MouseUp(event)
680                finally:
681                    self.drag_dc = None
682                    self.dragging = 0
683    
684      def OnMotion(self, event):      def OnMotion(self, event):
685            self.set_current_position(event)
686          if self.dragging:          if self.dragging:
687              self.tool.Hide(self.drag_dc)              self.tool.Hide(self.drag_dc)
688              self.tool.MouseMove(event)              self.tool.MouseMove(event)
689              self.tool.Show(self.drag_dc)              self.tool.Show(self.drag_dc)
690    
691      def OnIdle(self, event):      def OnLeaveWindow(self, event):
692          if self.redraw_on_idle:          self.set_current_position(None)
693              self.do_redraw()  
694          self.redraw_on_idle = 0      def OnSize(self, event):
695            # the window's size has changed. We have to get a new bitmap. If
696            # we want to be clever we could try to get by without throwing
697            # everything away. E.g. when the window gets smaller, we could
698            # either keep the bitmap or create the new one from the old one.
699            # Even when the window becomes larger some parts of the bitmap
700            # could be reused.
701            self.full_redraw()
702            pass
703    
704      def shape_selected(self, layer, shape):      def shape_selected(self, layer, shape):
705          self.redraw()          """Receiver for the SHAPES_SELECTED messages. Redraw the map."""
706            # The selection object takes care that it only issues
707            # SHAPES_SELECTED messages when the set of selected shapes has
708            # actually changed, so we can do a full redraw unconditionally.
709            # FIXME: We should perhaps try to limit the redraw to the are
710            # actually covered by the shapes before and after the selection
711            # change.
712            self.full_redraw()
713    
714        def unprojected_rect_around_point(self, x, y, dist):
715            """return a rect dist pixels around (x, y) in unprojected corrdinates
716    
717      def find_shape_at(self, px, py, select_labels = 0):          The return value is a tuple (minx, miny, maxx, maxy) suitable a
718          """Return a tuple shape at point px, py in window coords."""          parameter to a layer's ShapesInRegion method.
719            """
720            map_proj = self.map.projection
721            if map_proj is not None:
722                inverse = map_proj.Inverse
723            else:
724                inverse = None
725    
726            xs = []
727            ys = []
728            for dx, dy in ((-1, -1), (1, -1), (1, 1), (-1, 1)):
729                px, py = self.win_to_proj(x + dist * dx, y + dist * dy)
730                if inverse:
731                    px, py = inverse(px, py)
732                xs.append(px)
733                ys.append(py)
734            return (min(xs), min(ys), max(xs), max(ys))
735    
736        def find_shape_at(self, px, py, select_labels = 0, searched_layer = None):
737            """Determine the shape at point px, py in window coords
738    
739            Return the shape and the corresponding layer as a tuple (layer,
740            shape).
741    
742            If the optional parameter select_labels is true (default false)
743            search through the labels. If a label is found return it's index
744            as the shape and None as the layer.
745    
746            If the optional parameter searched_layer is given (or not None
747            which it defaults to), only search in that layer.
748            """
749          map_proj = self.map.projection          map_proj = self.map.projection
750          if map_proj is not None:          if map_proj is not None:
751              forward = map_proj.Forward              forward = map_proj.Forward
# Line 446  class MapCanvas(wxWindow): Line 757  class MapCanvas(wxWindow):
757    
758          if select_labels:          if select_labels:
759              labels = self.map.LabelLayer().Labels()              labels = self.map.LabelLayer().Labels()
760                
761              if labels:              if labels:
762                  dc = wxClientDC(self)                  dc = wxClientDC(self)
763                  font = wxFont(10, wx.wxSWISS, wx.wxNORMAL, wx.wxNORMAL)                  font = wxFont(10, wx.wxSWISS, wx.wxNORMAL, wx.wxNORMAL)
764                  dc.SetFont(font)                  dc.SetFont(font)
765                  for i in range(len(labels)):                  for i in range(len(labels) - 1, -1, -1):
766                      label = labels[i]                      label = labels[i]
767                      x = label.x                      x = label.x
768                      y = label.y                      y = label.y
# Line 477  class MapCanvas(wxWindow): Line 788  class MapCanvas(wxWindow):
788                          y = y - height/2                          y = y - height/2
789                      if x <= px < x + width and y <= py <= y + height:                      if x <= px < x + width and y <= py <= y + height:
790                          return None, i                          return None, i
791                    
792          layers = self.map.Layers()          if searched_layer:
793                layers = [searched_layer]
794            else:
795                layers = self.map.Layers()
796    
797          for layer_index in range(len(layers) - 1, -1, -1):          for layer_index in range(len(layers) - 1, -1, -1):
798              layer = layers[layer_index]              layer = layers[layer_index]
799    
# Line 486  class MapCanvas(wxWindow): Line 801  class MapCanvas(wxWindow):
801              if not layer.Visible():              if not layer.Visible():
802                  continue                  continue
803    
804              filled = layer.fill is not None              filled = layer.GetClassification().GetDefaultFill() \
805              stroked = layer.stroke is not None                       is not Color.Transparent
806                                stroked = layer.GetClassification().GetDefaultLineColor() \
807                          is not Color.Transparent
808    
809              layer_proj = layer.projection              layer_proj = layer.projection
810              if layer_proj is not None:              if layer_proj is not None:
811                  inverse = layer_proj.Inverse                  inverse = layer_proj.Inverse
812              else:              else:
813                  inverse = None                  inverse = None
814                    
815              shapetype = layer.ShapeType()              shapetype = layer.ShapeType()
816    
817              select_shape = -1              select_shape = -1
818    
819                # Determine the ids of the shapes that overlap a tiny area
820                # around the point. For layers containing points we have to
821                # choose a larger size of the box we're testing agains so
822                # that we take the size of the markers into account
823                # FIXME: Once the markers are more flexible this part has to
824                # become more flexible too, of course
825                if shapetype == SHAPETYPE_POINT:
826                    box = self.unprojected_rect_around_point(px, py, 5)
827                else:
828                    box = self.unprojected_rect_around_point(px, py, 1)
829                shape_ids = layer.ShapesInRegion(box)
830                shape_ids.reverse()
831    
832              if shapetype == SHAPETYPE_POLYGON:              if shapetype == SHAPETYPE_POLYGON:
833                  for i in range(layer.NumShapes()):                  for i in shape_ids:
834                      result = point_in_polygon_shape(layer.shapefile.cobject(),                      result = point_in_polygon_shape(layer.shapefile.cobject(),
835                                                      i,                                                      i,
836                                                      filled, stroked,                                                      filled, stroked,
# Line 510  class MapCanvas(wxWindow): Line 841  class MapCanvas(wxWindow):
841                          select_shape = i                          select_shape = i
842                          break                          break
843              elif shapetype == SHAPETYPE_ARC:              elif shapetype == SHAPETYPE_ARC:
844                  for i in range(layer.NumShapes()):                  for i in shape_ids:
845                      result = point_in_polygon_shape(layer.shapefile.cobject(),                      result = point_in_polygon_shape(layer.shapefile.cobject(),
846                                                      i, 0, 1,                                                      i, 0, 1,
847                                                      map_proj, layer_proj,                                                      map_proj, layer_proj,
# Line 520  class MapCanvas(wxWindow): Line 851  class MapCanvas(wxWindow):
851                          select_shape = i                          select_shape = i
852                          break                          break
853              elif shapetype == SHAPETYPE_POINT:              elif shapetype == SHAPETYPE_POINT:
854                  for i in range(layer.NumShapes()):                  for i in shape_ids:
855                      shape = layer.Shape(i)                      shape = layer.Shape(i)
856                      x, y = shape.Points()[0]                      x, y = shape.Points()[0]
857                      if inverse:                      if inverse:
# Line 537  class MapCanvas(wxWindow): Line 868  class MapCanvas(wxWindow):
868                  return layer, select_shape                  return layer, select_shape
869          return None, None          return None, None
870    
871      def SelectShapeAt(self, x, y):      def SelectShapeAt(self, x, y, layer = None):
872          layer, shape = self.find_shape_at(x, y)          """\
873          self.interactor.SelectLayerAndShape(layer, shape)          Select and return the shape and its layer at window position (x, y)
874    
875            If layer is given, only search in that layer. If no layer is
876            given, search through all layers.
877    
878            Return a tuple (layer, shapeid). If no shape is found, return
879            (None, None).
880            """
881            layer, shape = result = self.find_shape_at(x, y, searched_layer=layer)
882            # If layer is None, then shape will also be None. We don't want
883            # to deselect the currently selected layer, so we simply select
884            # the already selected layer again.
885            if layer is None:
886                layer = self.selection.SelectedLayer()
887                shapes = []
888            else:
889                shapes = [shape]
890            self.selection.SelectShapes(layer, shapes)
891            return result
892    
893      def LabelShapeAt(self, x, y):      def LabelShapeAt(self, x, y):
894            """Add or remove a label at window position x, y.
895    
896            If there's a label at the given position, remove it. Otherwise
897            determine the shape at the position, run the label dialog and
898            unless the user cancels the dialog, add a laber.
899            """
900          ox = x; oy = y          ox = x; oy = y
901          label_layer = self.map.LabelLayer()          label_layer = self.map.LabelLayer()
902          layer, shape_index = self.find_shape_at(x, y, select_labels = 1)          layer, shape_index = self.find_shape_at(x, y, select_labels = 1)

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