/[thuban]/trunk/thuban/Thuban/Model/layer.py
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revision 217 by bh, Wed Jul 17 10:50:40 2002 UTC revision 996 by bh, Thu May 22 18:21:10 2003 UTC
# Line 1  Line 1 
1  # Copyright (c) 2001, 2002 by Intevation GmbH  # Copyright (c) 2001, 2002, 2003 by Intevation GmbH
2  # Authors:  # Authors:
3  # Bernhard Herzog <[email protected]>  # Bernhard Herzog <[email protected]>
4    # Jonathan Coles <[email protected]>
5  #  #
6  # This program is free software under the GPL (>=v2)  # This program is free software under the GPL (>=v2)
7  # Read the file COPYING coming with Thuban for details.  # Read the file COPYING coming with Thuban for details.
# Line 9  __version__ = "$Revision$" Line 10  __version__ = "$Revision$"
10    
11  from math import log, ceil  from math import log, ceil
12    
13    from Thuban import _
14    
15  import shapelib, shptree  import shapelib, shptree
16    
17  from messages import LAYER_PROJECTION_CHANGED, LAYER_LEGEND_CHANGED, \  import gdal
18       LAYER_VISIBILITY_CHANGED  from gdalconst import GA_ReadOnly
19    
20  from color import Color  from messages import LAYER_PROJECTION_CHANGED, LAYER_VISIBILITY_CHANGED, \
21  # Some predefined colors for internal use       LAYER_CHANGED
 _black = Color(0, 0, 0)  
22    
23    from color import Color
24    
25  from table import Table  import classification
26    
27  from base import TitledObject, Modifiable  from base import TitledObject, Modifiable
28    
29    
30  class Shape:  class Shape:
31    
32      """Represent one shape"""      """Represent one shape"""
# Line 30  class Shape: Line 34  class Shape:
34      def __init__(self, points):      def __init__(self, points):
35          self.points = points          self.points = points
36          #self.compute_bbox()          #self.compute_bbox()
37            self.bbox = None
38    
39      def compute_bbox(self):      def compute_bbox(self):
40            if self.bbox is not None:
41                return self.bbox
42    
43          xs = []          xs = []
44          ys = []          ys = []
45          for x, y in self.points:          for x, y in self.points:
# Line 42  class Shape: Line 50  class Shape:
50          self.urx = max(xs)          self.urx = max(xs)
51          self.ury = max(ys)          self.ury = max(ys)
52    
53            self.bbox = (self.llx, self.lly, self.urx, self.ury)
54    
55            return self.bbox
56    
57      def Points(self):      def Points(self):
58          return self.points          return self.points
59    
# Line 65  class BaseLayer(TitledObject, Modifiable Line 77  class BaseLayer(TitledObject, Modifiable
77    
78      """Base class for the layers."""      """Base class for the layers."""
79    
80      def __init__(self, title, visible = 1):      def __init__(self, title, visible = True, projection = None):
81          """Initialize the layer.          """Initialize the layer.
82    
83          title -- the title          title -- the title
# Line 74  class BaseLayer(TitledObject, Modifiable Line 86  class BaseLayer(TitledObject, Modifiable
86          TitledObject.__init__(self, title)          TitledObject.__init__(self, title)
87          Modifiable.__init__(self)          Modifiable.__init__(self)
88          self.visible = visible          self.visible = visible
89            self.projection = projection
90    
91      def Visible(self):      def Visible(self):
92          """Return true if layer is visible"""          """Return true if layer is visible"""
# Line 83  class BaseLayer(TitledObject, Modifiable Line 96  class BaseLayer(TitledObject, Modifiable
96          """Set the layer's visibility."""          """Set the layer's visibility."""
97          self.visible = visible          self.visible = visible
98          self.issue(LAYER_VISIBILITY_CHANGED, self)          self.issue(LAYER_VISIBILITY_CHANGED, self)
99            
100                def HasClassification(self):
101            """Determine if this layer support classifications."""
102            return False
103    
104        def GetProjection(self):
105            """Return the layer's projection."""
106            return self.projection
107    
108        def SetProjection(self, projection):
109            """Set the layer's projection"""
110            self.projection = projection
111            self.changed(LAYER_PROJECTION_CHANGED, self)
112    
113  class Layer(BaseLayer):  class Layer(BaseLayer):
114    
115      """Represent the information of one geodata file (currently a shapefile)      """Represent the information of one geodata file (currently a shapefile)
# Line 99  class Layer(BaseLayer): Line 124  class Layer(BaseLayer):
124    
125          TITLE_CHANGED -- The title has changed.          TITLE_CHANGED -- The title has changed.
126          LAYER_PROJECTION_CHANGED -- the projection has changed.          LAYER_PROJECTION_CHANGED -- the projection has changed.
         LAYER_LEGEND_CHANGED -- the fill or stroke attributes have changed  
   
127      """      """
128    
129      def __init__(self, title, filename, projection = None,      def __init__(self, title, data, projection = None,
130                   fill = None, stroke = _black, stroke_width = 1, visible = 1):                   fill = Color.Transparent,
131                     stroke = Color.Black,
132                     lineWidth = 1,
133                     visible = True):
134          """Initialize the layer.          """Initialize the layer.
135    
136          title -- the title          title -- the title
137          filename -- the name of the shapefile          data -- datastore object for the shape data shown by the layer
138          projection -- the projection object. Its Inverse method is          projection -- the projection object. Its Inverse method is
139                 assumed to map the layer's coordinates to lat/long                 assumed to map the layer's coordinates to lat/long
140                 coordinates                 coordinates
141          fill -- the fill color or None if the shapes are not filled          fill -- the fill color or Color.Transparent if the shapes are
142          stroke -- the stroke color or None if the shapes are not stroked                  not filled
143            stroke -- the stroke color or Color.Transparent if the shapes
144                    are not stroked
145          visible -- boolean. If true the layer is visible.          visible -- boolean. If true the layer is visible.
146    
147          colors are expected to be instances of Color class          colors are expected to be instances of Color class
148          """          """
149          BaseLayer.__init__(self, title, visible = visible)          BaseLayer.__init__(self, title,
150          self.filename = filename                                   visible = visible,
151          self.projection = projection                                   projection = projection)
152          self.fill = fill  
153          self.stroke = stroke          #
154          self.stroke_width = stroke_width          # this is really important so that when the classification class
155          self.shapefile = None          # tries to set its parent layer the variable will exist
156          self.shapetree = None          #
157          self.open_shapefile()          self.__classification = None
158          # shapetable is the table associated with the shapefile, while          self.__setClassLock = False
159          # table is the default table used to look up attributes for  
160          # display          self.SetShapeStore(data)
161          self.shapetable = Table(filename)  
162            self.SetClassification(None)
163    
164            self.__classification.SetDefaultLineColor(stroke)
165            self.__classification.SetDefaultLineWidth(lineWidth)
166            self.__classification.SetDefaultFill(fill)
167            self.__classification.SetLayer(self)
168    
169            self.UnsetModified()
170    
171    
172        def SetShapeStore(self, store):
173            self.store = store
174            self.shapefile = self.store.Shapefile()
175            self.shapetable = self.store.Table()
176            if hasattr(self.store, "FileName"):
177                self.filename = self.store.FileName()
178          self.table = self.shapetable          self.table = self.shapetable
179    
180      def open_shapefile(self):          numshapes, shapetype, mins, maxs = self.shapefile.info()
181          if self.shapefile is None:          self.numshapes = numshapes
182              self.shapefile = shapelib.ShapeFile(self.filename)          self.shapetype = shapelib_shapetypes[shapetype]
183              numshapes, shapetype, mins, maxs = self.shapefile.info()  
184              self.numshapes = numshapes          # if there are shapes, set the bbox accordingly. Otherwise
185              self.shapetype = shapelib_shapetypes[shapetype]          # set it to None.
186            if self.numshapes:
187              # if there are shapes, set the bbox accordinly. Otherwise              self.bbox = mins[:2] + maxs[:2]
188              # set it to None.          else:
189              if self.numshapes:              self.bbox = None
                 self.bbox = mins[:2] + maxs[:2]  
             else:  
                 self.bbox = None  
190    
191              # estimate a good depth for the quad tree. Each depth          # estimate a good depth for the quad tree. Each depth
192              # multiplies the number of nodes by four, therefore we          # multiplies the number of nodes by four, therefore we
193              # basically take the base 4 logarithm of the number of          # basically take the base 4 logarithm of the number of
194              # shapes.          # shapes.
195              if self.numshapes < 4:          if self.numshapes < 4:
196                  maxdepth = 1              maxdepth = 1
197              else:          else:
198                  maxdepth = int(ceil(log(self.numshapes / 4.0) / log(4)))              maxdepth = int(ceil(log(self.numshapes / 4.0) / log(4)))
199    
200              self.shapetree = shptree.SHPTree(self.shapefile.cobject(), 2,          self.shapetree = shptree.SHPTree(self.shapefile.cobject(), 2,
201                                               maxdepth)                                           maxdepth)
202            if self.__classification is not None:
203                fieldname = self.__classification.GetField()
204                if fieldname is not None and \
205                   not self.store.Table().HasColumn(fieldname):
206                    self.SetClassification(None)
207            self.changed(LAYER_CHANGED, self)
208    
209        def ShapeStore(self):
210            return self.store
211    
212        def Destroy(self):
213            BaseLayer.Destroy(self)
214            self.SetClassification(None)
215    
216      def BoundingBox(self):      def BoundingBox(self):
217          """Return the layer's bounding box in the intrinsic coordinate system.          """Return the layer's bounding box in the intrinsic coordinate system.
218    
219          If the layer has no shapes, return None.          If the layer has no shapes, return None.
220          """          """
         # The bbox will be set by open_shapefile just as we need it  
         # here.  
         self.open_shapefile()  
221          return self.bbox          return self.bbox
222    
223      def LatLongBoundingBox(self):      def LatLongBoundingBox(self):
# Line 184  class Layer(BaseLayer): Line 235  class Layer(BaseLayer):
235          else:          else:
236              return None              return None
237    
238        def ShapesBoundingBox(self, shapes):
239            """Return a bounding box in lat/long coordinates for the given
240            list of shape ids.
241    
242            If shapes is None or empty, return None.
243            """
244    
245            if shapes is None or len(shapes) == 0: return None
246    
247            llx = []
248            lly = []
249            urx = []
250            ury = []
251    
252            if self.projection is not None:
253                inverse = lambda x, y: self.projection.Inverse(x, y)
254            else:
255                inverse = lambda x, y: (x, y)
256    
257            for id in shapes:
258                left, bottom, right, top = self.Shape(id).compute_bbox()
259    
260                left, bottom = inverse(left, bottom)
261                right, top   = inverse(right, top)
262    
263                llx.append(left)
264                lly.append(bottom)
265                urx.append(right)
266                ury.append(top)
267    
268            return (min(llx), min(lly), max(urx), max(ury))
269    
270        def GetFieldType(self, fieldName):
271            if self.table.HasColumn(fieldName):
272                return self.table.Column(fieldName).type
273            return None
274    
275      def NumShapes(self):      def NumShapes(self):
276          """Return the number of shapes in the layer"""          """Return the number of shapes in the layer"""
         self.open_shapefile()  
277          return self.numshapes          return self.numshapes
278    
279      def ShapeType(self):      def ShapeType(self):
280          """Return the type of the shapes in the layer.          """Return the type of the shapes in the layer.
281          This is either SHAPETYPE_POINT, SHAPETYPE_ARC or SHAPETYPE_POLYGON.          This is either SHAPETYPE_POINT, SHAPETYPE_ARC or SHAPETYPE_POLYGON.
282          """          """
         self.open_shapefile()  
283          return self.shapetype          return self.shapetype
284    
285      def Shape(self, index):      def Shape(self, index):
286          """Return the shape with index index"""          """Return the shape with index index"""
         self.open_shapefile()  
287          shape = self.shapefile.read_object(index)          shape = self.shapefile.read_object(index)
288    
289          if self.shapetype == SHAPETYPE_POINT:          if self.shapetype == SHAPETYPE_POINT:
290              points = shape.vertices()              points = shape.vertices()
291          else:          else:
# Line 208  class Layer(BaseLayer): Line 294  class Layer(BaseLayer):
294              points = []              points = []
295              for x, y in poly:              for x, y in poly:
296                  points.append((x, y))                  points.append((x, y))
297    
298          return Shape(points)          return Shape(points)
299    
300      def ShapesInRegion(self, box):      def ShapesInRegion(self, box):
301          """Return the ids of the shapes that overlap the box.          """Return the ids of the shapes that overlap the box.
302    
303          Box is a tuple (left, bottom, right, top) in the coordinate          Box is a tuple (left, bottom, right, top) in unprojected coordinates.
         system used by the layer's shapefile.  
304          """          """
305          left, bottom, right, top = box          left, bottom, right, top = box
306    
307            if self.projection is not None:
308                left,  bottom = self.projection.Forward(left, bottom)
309                right, top    = self.projection.Forward(right, top)
310    
311          return self.shapetree.find_shapes((left, bottom), (right, top))          return self.shapetree.find_shapes((left, bottom), (right, top))
312    
313      def SetProjection(self, projection):      def HasClassification(self):
314          """Set the layer's projection"""          return True
315    
316        def GetClassification(self):
317            return self.__classification
318    
319        def SetClassification(self, clazz):
320            """Set the classification to 'clazz'
321    
322            If 'clazz' is None a default classification is created
323            """
324    
325            # prevent infinite recursion when calling SetLayer()
326            if self.__setClassLock: return
327    
328            self.__setClassLock = True
329    
330            if clazz is None:
331                if self.__classification is not None:
332                    self.__classification.SetLayer(None)
333                self.__classification = classification.Classification()
334            else:
335                self.__classification = clazz
336                try:
337                    self.__classification.SetLayer(self)
338                except ValueError:
339                    self.__setClassLock = False
340                    raise ValueError
341    
342            self.changed(LAYER_CHANGED, self)
343    
344            self.__setClassLock = False
345    
346        def ClassChanged(self):
347            """Called from the classification object when it has changed."""
348            self.changed(LAYER_CHANGED, self)
349    
350        def TreeInfo(self):
351            items = []
352    
353            if self.Visible():
354                items.append(_("Shown"))
355            else:
356                items.append(_("Hidden"))
357            items.append(_("Shapes: %d") % self.NumShapes())
358    
359            bbox = self.LatLongBoundingBox()
360            if bbox is not None:
361                items.append(_("Extent (lat-lon): (%g, %g, %g, %g)") % bbox)
362            else:
363                items.append(_("Extent (lat-lon):"))
364            items.append(_("Shapetype: %s") % shapetype_names[self.ShapeType()])
365    
366            if self.projection and len(self.projection.params) > 0:
367                items.append((_("Projection"),
368                            [str(param) for param in self.projection.params]))
369    
370            items.append(self.__classification)
371    
372            return (_("Layer '%s'") % self.Title(), items)
373    
374    
375    class RasterLayer(BaseLayer):
376    
377        def __init__(self, title, filename, projection = None, visible = True):
378            """Initialize the Raster Layer.
379    
380            title -- title for the layer.
381    
382            filename -- file name of the source image.
383    
384            projection -- Projection object describing the projection which
385                          the source image is in.
386    
387            visible -- True is the layer should initially be visible.
388    
389            Throws IOError if the filename is invalid or points to a file that
390            is not in a format GDAL can use.
391            """
392    
393            BaseLayer.__init__(self, title, visible = visible)
394    
395          self.projection = projection          self.projection = projection
396          self.changed(LAYER_PROJECTION_CHANGED, self)          self.filename = filename
397    
398            self.bbox = -1
399    
400            #
401            # temporarily open the file so that GDAL can test if it's valid.
402            #
403            dataset = gdal.Open(self.filename, GA_ReadOnly)
404    
405            if dataset is None:
406                raise IOError()
407    
408            self.UnsetModified()
409    
410        def BoundingBox(self):
411            """Return the layer's bounding box in the intrinsic coordinate system.
412    
413            If the layer has no shapes, return None.
414            """
415            if self.bbox == -1:
416                dataset = gdal.Open(self.filename, GA_ReadOnly)
417                if dataset is None:
418                    self.bbox = None
419                else:
420                    geotransform = dataset.GetGeoTransform()
421                    if geotransform is None:
422                        return None
423    
424                    x = 0
425                    y = dataset.RasterYSize
426                    left = geotransform[0] +        \
427                           geotransform[1] * x +    \
428                           geotransform[2] * y
429    
430                    bottom = geotransform[3] +      \
431                             geotransform[4] * x +  \
432                             geotransform[5] * y
433    
434                    x = dataset.RasterXSize
435                    y = 0
436                    right = geotransform[0] +       \
437                            geotransform[1] * x +   \
438                            geotransform[2] * y
439    
440                    top = geotransform[3] +         \
441                          geotransform[4] * x +     \
442                          geotransform[5] * y
443    
444                    self.bbox = (left, bottom, right, top)
445    
446            return self.bbox
447    
448        def LatLongBoundingBox(self):
449            bbox = self.BoundingBox()
450            if bbox is None:
451                return None
452    
453      def SetFill(self, fill):          llx, lly, urx, ury = bbox
454          """Set the layer's fill color. None means the shapes are not filled"""          if self.projection is not None:
455          self.fill = fill              llx, lly = self.projection.Inverse(llx, lly)
456          self.changed(LAYER_LEGEND_CHANGED, self)              urx, ury = self.projection.Inverse(urx, ury)
457    
458      def SetStroke(self, stroke):          return llx, lly, urx, ury
459          """Set the layer's stroke color. None means the shapes are not  
460          stroked."""      def GetImageFilename(self):
461          self.stroke = stroke          return self.filename
         self.changed(LAYER_LEGEND_CHANGED, self)  
   
     def SetStrokeWidth(self, width):  
         """Set the layer's stroke width."""  
         self.stroke_width = width  
         self.changed(LAYER_LEGEND_CHANGED, self)  
462    
463      def TreeInfo(self):      def TreeInfo(self):
464          items = []          items = []
465    
466          if self.Visible():          if self.Visible():
467              items.append("Shown")              items.append(_("Shown"))
468          else:          else:
469              items.append("Hidden")              items.append(_("Hidden"))
470          items.append("Shapes: %d" % self.NumShapes())          items.append(_("Shapes: %d") % self.NumShapes())
471    
472          bbox = self.LatLongBoundingBox()          bbox = self.LatLongBoundingBox()
473          if bbox is not None:          if bbox is not None:
474              items.append("Extent (lat-lon): (%g, %g, %g, %g)" % bbox)              items.append(_("Extent (lat-lon): (%g, %g, %g, %g)") % bbox)
475          else:          else:
476              items.append("Extent (lat-lon):")              items.append(_("Extent (lat-lon):"))
477          items.append("Shapetype: %s" % shapetype_names[self.ShapeType()])  
478            if self.projection and len(self.projection.params) > 0:
479                items.append((_("Projection"),
480                            [str(param) for param in self.projection.params]))
481    
482          def color_string(color):          return (_("Layer '%s'") % self.Title(), items)
             if color is None:  
                 return "None"  
             return "(%.3f, %.3f, %.3f)" % (color.red, color.green, color.blue)  
         items.append("Fill: " + color_string(self.fill))  
         items.append("Outline: " + color_string(self.stroke))  
483    
         return ("Layer '%s'" % self.Title(), items)  

Legend:
Removed from v.217  
changed lines
  Added in v.996

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