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# Copyright (c) 2001, 2002, 2003 by Intevation GmbH |
# Copyright (c) 2001-2004 by Intevation GmbH |
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# Authors: |
# Authors: |
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# Bernhard Herzog <[email protected]> |
# Bernhard Herzog <[email protected]> (2001-2003) |
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# Jonathan Coles <[email protected]> |
# Jonathan Coles <[email protected]> (2003) |
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# Frank Koormann <[email protected]> |
# Frank Koormann <[email protected]> (2003) |
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# Jan-Oliver Wagner <[email protected]> (2003, 2004) |
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# |
# |
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# This program is free software under the GPL (>=v2) |
# This program is free software under the GPL (>=v2) |
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# Read the file COPYING coming with Thuban for details. |
# Read the file COPYING coming with Thuban for details. |
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import cStringIO |
import cStringIO |
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import array |
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import traceback |
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from Thuban import _ |
from Thuban import _ |
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from wxPython.wx import wxPoint, wxRect, wxPen, wxBrush, wxFont, \ |
from wxPython.wx import wxPoint, wxRect, wxPen, wxBrush, wxFont, \ |
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wxTRANSPARENT_PEN, wxTRANSPARENT_BRUSH, \ |
wxTRANSPARENT_PEN, wxTRANSPARENT_BRUSH, \ |
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wxBLACK_PEN, wxBLACK, wxSOLID, wxCROSS_HATCH, wxSWISS, wxNORMAL, \ |
wxBLACK_PEN, wxBLACK, wxSOLID, wxCROSS_HATCH, wxSWISS, wxNORMAL, \ |
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wxBitmapFromImage, wxImageFromStream, wxBITMAP_TYPE_BMP, wxBITMAP_TYPE_JPEG |
wxBitmapFromImage, wxImageFromStream, wxBITMAP_TYPE_BMP, \ |
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wxBITMAP_TYPE_JPEG, wxBITMAP_TYPE_PNG, wxBITMAP_TYPE_TIF, \ |
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wxBITMAP_TYPE_GIF, wxEmptyImage, wxMask, wxBitmapFromBits |
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from wxproj import draw_polygon_shape, draw_polygon_init |
from wxproj import draw_polygon_shape, draw_polygon_init |
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from baserenderer import BaseRenderer |
from baserenderer import BaseRenderer |
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from math import floor |
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from types import StringType |
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from Thuban.version import versions |
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if Thuban.Model.resource.has_gdal_support(): |
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from gdalwarp import ProjectRasterFile |
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# Map the strings used for the format parameter of the draw_raster_data |
# Map the strings used for the format parameter of the draw_raster_data |
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# method to the appropriate wxWindows constants |
# method to the appropriate wxWindows constants |
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raster_format_map = { |
raster_format_map = { |
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"BMP": wxBITMAP_TYPE_BMP, |
"BMP": wxBITMAP_TYPE_BMP, |
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"JPEG": wxBITMAP_TYPE_JPEG, |
"JPEG": wxBITMAP_TYPE_JPEG, |
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"PNG": wxBITMAP_TYPE_PNG, |
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"TIFF": wxBITMAP_TYPE_TIF, |
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"GIF": wxBITMAP_TYPE_GIF, |
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} |
} |
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class MapRenderer(BaseRenderer): |
class MapRenderer(BaseRenderer): |
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TRANSPARENT_PEN = wxTRANSPARENT_PEN |
TRANSPARENT_PEN = wxTRANSPARENT_PEN |
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TRANSPARENT_BRUSH = wxTRANSPARENT_BRUSH |
TRANSPARENT_BRUSH = wxTRANSPARENT_BRUSH |
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make_point = wxPoint |
def make_point(self, x, y): |
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return wxPoint(int(round(x)), int(round(y))) |
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def tools_for_property(self, prop): |
def tools_for_property(self, prop): |
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fill = prop.GetFill() |
fill = prop.GetFill() |
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if (layer.ShapeStore().RawShapeFormat() == RAW_SHAPEFILE |
if (layer.ShapeStore().RawShapeFormat() == RAW_SHAPEFILE |
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and layer.ShapeType() in (SHAPETYPE_ARC, SHAPETYPE_POLYGON)): |
and layer.ShapeType() in (SHAPETYPE_ARC, SHAPETYPE_POLYGON)): |
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offx, offy = self.offset |
offx, offy = self.offset |
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x = lambda a, b, c, d: None |
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#return (True, x, None) |
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return (True, draw_polygon_shape, |
return (True, draw_polygon_shape, |
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draw_polygon_init(layer.ShapeStore().Shapefile(), |
draw_polygon_init(layer.ShapeStore().Shapefile(), |
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self.dc, self.map.projection, |
self.dc, self.map.projection, |
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return BaseRenderer.low_level_renderer(self, layer) |
return BaseRenderer.low_level_renderer(self, layer) |
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def label_font(self): |
def label_font(self): |
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return wxFont(self.resolution * 10, wxSWISS, wxNORMAL, wxNORMAL) |
return wxFont(int(round(self.resolution * 10)), wxSWISS, wxNORMAL, |
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wxNORMAL) |
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def projected_raster_layer(self, layer, srcProj, dstProj, extents, |
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resolution, dimensions, options): |
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"""Returns a raster layer image in projected space |
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Based on a given filename. This method must be implemented in |
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classes derived from BaseRenderer. |
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""" |
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ret = None |
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if Thuban.Model.resource.has_gdal_support(): |
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if versions['wxPython-tuple'] < (2,5,3): |
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options = options | 4 # INVERT_MASK_BITS |
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options = options & ~2 # ALPHA_MASK not supported |
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try: |
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ret = ProjectRasterFile(layer.GetImageFilename(), |
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srcProj, dstProj, |
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extents, resolution, dimensions, |
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options) |
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except (MemoryError, IOError, AttributeError, ValueError): |
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# Why does this catch AttributeError and ValueError? |
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# FIXME: The exception should be communicated to the user |
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# better. |
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traceback.print_exc() |
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return ret |
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def draw_raster_data(self, x,y, data, format = 'BMP', opacity=1.0): |
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mask = None |
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alpha = None |
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width = data[0] |
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height = data[1] |
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image_data, mask_data, alpha_data = data[2] |
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if versions['wxPython-tuple'] < (2,5,3): |
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alpha_data = None |
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if format == 'RAW': |
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image = wxEmptyImage(width, height) |
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image.SetData(image_data) |
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if mask_data is not None: |
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mask = wxBitmapFromBits(mask_data, width, height, 1) |
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mask = wxMask(mask) |
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elif alpha_data is not None: |
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# alpha_data is already in the right format |
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alpha = alpha_data |
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else: |
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stream = cStringIO.StringIO(image_data) |
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image = wxImageFromStream(stream, raster_format_map[format]) |
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if mask_data is not None: |
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stream = cStringIO.StringIO(mask_data) |
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mask = wxImageFromStream(stream, raster_format_map[format]) |
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mask = wxMask(wxBitmapFromImage(mask, 1)) |
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elif alpha_data is not None: |
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stream = cStringIO.StringIO(alpha_data) |
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alpha = wxImageFromStream(stream, raster_format_map[format]) |
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alpha = alpha.GetData() #[:] # XXX: do we need to copy this? |
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elif image.HasAlpha(): |
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alpha = image.GetAlphaData() |
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# |
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# scale down the alpha values the opacity level using a string |
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# translation table for efficiency. |
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# |
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if alpha is not None: |
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if opacity == 0: |
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return |
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elif opacity == 1: |
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a = alpha |
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else: |
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tr = [int(i*opacity) for i in range(256)] |
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table = array.array('B', tr).tostring() |
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a = alpha.translate(table) |
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image.SetAlphaData(a) |
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def draw_raster_data(self, data, format = 'BMP'): |
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stream = cStringIO.StringIO(data) |
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image = wxImageFromStream(stream, raster_format_map[format]) |
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bitmap = wxBitmapFromImage(image) |
bitmap = wxBitmapFromImage(image) |
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self.dc.DrawBitmap(bitmap, 0, 0) |
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if mask is not None: |
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bitmap.SetMask(mask) |
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self.dc.DrawBitmap(bitmap, int(round(x)), int(round(y)), True) |
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class ScreenRenderer(MapRenderer): |
class ScreenRenderer(MapRenderer): |
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return self.render_map_incrementally() |
return self.render_map_incrementally() |
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def draw_selection_incrementally(self, layer, selected_shapes): |
def draw_selection_incrementally(self, layer, selected_shapes): |
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"""Draw the selected shapes in a emphasized way (i.e. |
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with a special pen and brush. |
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The drawing is performed incrementally, that means every |
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n shapes, the user can have interactions with the map. |
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n is currently fixed to 500. |
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layer -- the layer where the shapes belong to. |
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selected_shapes -- a list of the shape-ids representing the |
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selected shapes for the given layer. |
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""" |
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pen = wxPen(wxBLACK, 3, wxSOLID) |
pen = wxPen(wxBLACK, 3, wxSOLID) |
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brush = wxBrush(wxBLACK, wxCROSS_HATCH) |
brush = wxBrush(wxBLACK, wxCROSS_HATCH) |
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shapetype = layer.ShapeType() |
shapetype = layer.ShapeType() |
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useraw, func, param = self.low_level_renderer(layer) |
useraw, func, param = self.low_level_renderer(layer) |
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args = (pen, brush) |
args = (pen, brush) |
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# for point shapes we need to find out the properties |
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# to determine the size. Based on table and field, |
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# we can find out the properties for object - see below. |
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if shapetype == SHAPETYPE_POINT: |
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lc = layer.GetClassification() |
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field = layer.GetClassificationColumn() |
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table = layer.ShapeStore().Table() |
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count = 0 |
count = 0 |
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for index in selected_shapes: |
for index in selected_shapes: |
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count += 1 |
count += 1 |
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shape = layer.Shape(index) |
shape = layer.Shape(index) |
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# Get the size of the specific property for this |
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# point |
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if shapetype == SHAPETYPE_POINT and field is not None: |
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value = table.ReadValue(shape.ShapeID(), field) |
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group = lc.FindGroup(value) |
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size = group.GetProperties().GetSize() |
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args = (pen, brush, size) |
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if useraw: |
if useraw: |
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data = shape.RawData() |
data = shape.RawData() |
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else: |
else: |
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self.shifty = (mmaxy - mminy)*0.5 - (ury - lly)*0.5 |
self.shifty = (mmaxy - mminy)*0.5 - (ury - lly)*0.5 |
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self.offset = (offx+self.shiftx, offy+self.shifty) |
self.offset = (offx+self.shiftx, offy+self.shifty) |
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self.region = (llx + self.shiftx, lly + self.shifty, urx, ury) |
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# Draw the map |
# Draw the map |
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self.dc.BeginDrawing() |
self.dc.BeginDrawing() |