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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]> (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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from __future__ import generators |
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__version__ = "$Revision$" |
__version__ = "$Revision$" |
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# $Source$ |
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# $Id$ |
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import cStringIO |
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from wxPython.wx import wxPoint, wxPen, wxBrush, wxFont, \ |
import array |
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wxTRANSPARENT_PEN, wxTRANSPARENT_BRUSH, \ |
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wxBLACK, wxSOLID, wxCROSS_HATCH, wxSWISS, wxNORMAL |
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from wxproj import draw_polygon_shape |
import traceback |
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from Thuban import _ |
from Thuban import _ |
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from Thuban.UI.common import * |
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from Thuban.Model.layer import SHAPETYPE_POLYGON, SHAPETYPE_ARC, \ |
from wxPython.wx import wxPoint, wxRect, wxPen, wxBrush, wxFont, \ |
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SHAPETYPE_POINT |
wxTRANSPARENT_PEN, wxTRANSPARENT_BRUSH, \ |
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from Thuban.Model.label import ALIGN_CENTER, ALIGN_TOP, ALIGN_BOTTOM, \ |
wxBLACK_PEN, wxBLACK, wxSOLID, wxCROSS_HATCH, wxSWISS, wxNORMAL, \ |
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ALIGN_LEFT, ALIGN_RIGHT, ALIGN_BASELINE |
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 Thuban.Model.classification import Classification |
from wxproj import draw_polygon_shape, draw_polygon_init |
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from Thuban.Model.color import Color |
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from Thuban.UI.common import Color2wxColour |
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from Thuban.UI.classifier import ClassDataPreviewer |
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from Thuban.UI.scalebar import ScaleBar |
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class MapRenderer: |
from Thuban.Model.data import SHAPETYPE_POLYGON, SHAPETYPE_ARC, \ |
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SHAPETYPE_POINT, RAW_SHAPEFILE |
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"""Class to render a map onto a wxDC""" |
from Thuban.Model.color import Transparent |
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import Thuban.Model.resource |
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honor_visibility = 1 |
from baserenderer import BaseRenderer |
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def __init__(self, dc, scale, offset, resolution = 72.0, |
from math import floor |
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honor_visibility = None): |
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"""Inititalize the renderer. |
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dc -- the wxPython DC to render on |
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scale, offset -- the scale factor and translation to convert |
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between projected coordinates and the DC coordinates |
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resolution -- the assumed resolution of the DC. Used to convert |
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absolute lengths like font sizes to DC coordinates |
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honor_visibility -- boolean. If true, honor the visibility flag |
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of the layers, otherwise draw all layers. If None, use |
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the renderer's default. |
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""" |
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# resolution in pixel/inch |
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self.dc = dc |
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self.scale = scale |
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self.offset = offset |
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if honor_visibility is not None: |
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self.honor_visibility = honor_visibility |
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# store the resolution in pixel/point because it's more useful |
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# later. |
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self.resolution = resolution / 72.0 |
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def render_map(self, map): |
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self.map = map |
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for layer in map.Layers(): |
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# if honor_visibility is true, only draw visible layers, |
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# otherwise draw all layers |
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if not self.honor_visibility or layer.Visible(): |
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self.draw_shape_layer(layer) |
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self.draw_label_layer(map.LabelLayer()) |
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def draw_shape_layer(self, layer): |
from types import StringType |
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scale = self.scale |
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offx, offy = self.offset |
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map_proj = self.map.projection |
from Thuban.version import versions |
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layer_proj = layer.projection |
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shapetype = layer.ShapeType() |
if Thuban.Model.resource.has_gdal_support(): |
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from gdalwarp import ProjectRasterFile |
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brush = wxTRANSPARENT_BRUSH |
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pen = wxTRANSPARENT_PEN |
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old_prop = None |
# Map the strings used for the format parameter of the draw_raster_data |
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lc = layer.GetClassification() |
# method to the appropriate wxWindows constants |
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field = lc.GetField() |
raster_format_map = { |
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"BMP": wxBITMAP_TYPE_BMP, |
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defaultProps = lc.GetDefaultGroup().GetProperties() |
"JPEG": wxBITMAP_TYPE_JPEG, |
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"PNG": wxBITMAP_TYPE_PNG, |
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for i in self.layer_ids(layer): |
"TIFF": wxBITMAP_TYPE_TIF, |
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value = None |
"GIF": wxBITMAP_TYPE_GIF, |
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} |
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if field is not None: |
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try: |
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record = layer.table.read_record(i) |
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if record is not None: |
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value = record[field] |
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except: |
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pass |
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# |
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# if the above statements fail 'value' should |
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# be null, at which point this call will |
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# at least retreive the NullData |
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# |
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prop = lc.GetProperties(value) |
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else: |
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prop = defaultProps |
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# don't recreate new objects if they are the same as before |
class MapRenderer(BaseRenderer): |
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if prop != old_prop: |
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old_prop = prop |
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if shapetype == SHAPETYPE_ARC: |
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fill = Color.None |
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else: |
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fill = prop.GetFill() |
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if fill is Color.None: |
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brush = wxTRANSPARENT_BRUSH |
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else: |
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color = Color2wxColour(fill) |
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brush = wxBrush(color, wxSOLID) |
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stroke = prop.GetLineColor() |
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stroke_width = prop.GetLineWidth() |
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if stroke is Color.None: |
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pen = wxTRANSPARENT_PEN |
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else: |
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color = Color2wxColour(stroke) |
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pen = wxPen(color, stroke_width, wxSOLID) |
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if shapetype == SHAPETYPE_POINT: |
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self.dc.SetBrush(brush) |
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self.dc.SetPen(pen) |
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self.draw_point_shape(layer, i) |
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else: |
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self.draw_polygon_shape(layer, i, pen, brush) |
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def layer_ids(self, layer): |
"""Class to render a map onto a wxDC""" |
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"""Return the shape ids of the given layer that have to be drawn. |
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The default implementation simply returns all ids in the layer. |
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Override in derived classes to be more precise. |
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""" |
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return range(layer.NumShapes()) |
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def draw_polygon_shape(self, layer, index, pen, brush): |
TRANSPARENT_PEN = wxTRANSPARENT_PEN |
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offx, offy = self.offset |
TRANSPARENT_BRUSH = wxTRANSPARENT_BRUSH |
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draw_polygon_shape(layer.shapefile.cobject(), index, |
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self.dc, pen, brush, |
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self.map.projection, layer.projection, |
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self.scale, -self.scale, offx, offy) |
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def projected_points(self, layer, index): |
def make_point(self, x, y): |
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proj = self.map.projection |
return wxPoint(int(round(x)), int(round(y))) |
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if proj is not None: |
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forward = proj.Forward |
def tools_for_property(self, prop): |
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fill = prop.GetFill() |
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if fill is Transparent: |
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brush = self.TRANSPARENT_BRUSH |
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else: |
else: |
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forward = None |
brush = wxBrush(Color2wxColour(fill), wxSOLID) |
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proj = layer.projection |
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if proj is not None: |
stroke = prop.GetLineColor() |
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inverse = proj.Inverse |
if stroke is Transparent: |
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pen = self.TRANSPARENT_PEN |
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else: |
else: |
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inverse = None |
pen = wxPen(Color2wxColour(stroke), prop.GetLineWidth(), wxSOLID) |
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shape = layer.Shape(index) |
return pen, brush |
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points = [] |
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scale = self.scale |
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offx, offy = self.offset |
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for x, y in shape.Points(): |
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if inverse: |
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x, y = inverse(x, y) |
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if forward: |
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x, y = forward(x, y) |
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points.append(wxPoint(x * scale + offx, |
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-y * scale + offy)) |
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return points |
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def draw_arc_shape(self, layer, index): |
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points = self.projected_points(layer, index) |
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self.dc.DrawLines(points) |
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def draw_point_shape(self, layer, index): |
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p = self.projected_points(layer, index)[0] |
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radius = self.resolution * 5 |
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self.dc.DrawEllipse(p.x - radius, p.y - radius, 2*radius, 2*radius) |
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def draw_label_layer(self, layer): |
def low_level_renderer(self, layer): |
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scale = self.scale |
"""Override inherited method to provide more efficient renderers |
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offx, offy = self.offset |
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font = wxFont(self.resolution * 10, wxSWISS, wxNORMAL, wxNORMAL) |
If the underlying data format is not a shapefile or the layer |
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self.dc.SetFont(font) |
contains points shapes, simply use what the inherited method |
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returns. |
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Otherwise, i.e. for arc and polygon use the more efficient |
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wxproj.draw_polygon_shape and its corresponding parameter |
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created with wxproj.draw_polygon_init. |
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""" |
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if (layer.ShapeStore().RawShapeFormat() == RAW_SHAPEFILE |
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and layer.ShapeType() in (SHAPETYPE_ARC, SHAPETYPE_POLYGON)): |
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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, |
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draw_polygon_init(layer.ShapeStore().Shapefile(), |
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self.dc, self.map.projection, |
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layer.projection, |
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self.scale, -self.scale, offx, offy)) |
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else: |
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return BaseRenderer.low_level_renderer(self, layer) |
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def label_font(self): |
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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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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, layer, x,y, data, format = 'BMP'): |
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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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map_proj = self.map.projection |
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if map_proj is not None: |
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forward = map_proj.Forward |
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else: |
else: |
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forward = None |
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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# |
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# if we are using the alpha_data then scale down the alpha values |
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# by the layer's opacity using a string translation table |
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# |
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if alpha is not None: |
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lo = layer.Opacity() |
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if lo == 0: |
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return |
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elif lo == 1: |
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a = alpha |
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else: |
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tr = [int(i*lo) 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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bitmap = wxBitmapFromImage(image) |
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if mask is not None: |
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bitmap.SetMask(mask) |
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for label in layer.Labels(): |
self.dc.DrawBitmap(bitmap, int(round(x)), int(round(y)), True) |
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x = label.x |
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y = label.y |
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text = label.text |
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if forward: |
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x, y = forward(x, y) |
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x = x * scale + offx |
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y = -y * scale + offy |
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width, height = self.dc.GetTextExtent(text) |
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if label.halign == ALIGN_LEFT: |
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# nothing to be done |
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pass |
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elif label.halign == ALIGN_RIGHT: |
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x = x - width |
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elif label.halign == ALIGN_CENTER: |
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x = x - width/2 |
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if label.valign == ALIGN_TOP: |
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# nothing to be done |
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pass |
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elif label.valign == ALIGN_BOTTOM: |
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y = y - height |
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elif label.valign == ALIGN_CENTER: |
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y = y - height/2 |
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self.dc.DrawText(text, x, y) |
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class ScreenRenderer(MapRenderer): |
class ScreenRenderer(MapRenderer): |
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# On the screen we want to see only visible layers by default |
# On the screen we want to see only visible layers by default |
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honor_visibility = 1 |
honor_visibility = 1 |
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def RenderMap(self, map, region, selected_layer, selected_shape): |
def RenderMap(self, selected_layer, selected_shapes): |
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"""Render the map. |
"""Render the map. |
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Only the given region (a tuple in window coordinates as returned |
Only the given region (a tuple in window coordinates as returned |
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by a wxrect's asTuple method) needs to be redrawn. Highlight the |
by a wxrect's asTuple method) needs to be redrawn. Highlight the |
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shape with id selected_shape in the selected_layer. |
shapes given by the ids in selected_shapes in the |
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selected_layer. |
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""" |
""" |
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self.update_region = region |
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self.selected_layer = selected_layer |
self.selected_layer = selected_layer |
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self.selected_shape = selected_shape |
self.selected_shapes = selected_shapes |
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self.render_map(map) |
self.render_map() |
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217 |
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def RenderMapIncrementally(self): |
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"""Render the map. |
219 |
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Only the given region (a tuple in window coordinates as returned |
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by a wxrect's asTuple method) needs to be redrawn. Highlight the |
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shapes given by the ids in selected_shapes in the |
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selected_layer. |
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""" |
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return self.render_map_incrementally() |
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def draw_selection_incrementally(self, layer, selected_shapes): |
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"""Draw the selected shapes in a emphasized way (i.e. |
229 |
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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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""" |
238 |
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pen = wxPen(wxBLACK, 3, wxSOLID) |
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brush = wxBrush(wxBLACK, wxCROSS_HATCH) |
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shapetype = layer.ShapeType() |
242 |
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useraw, func, param = self.low_level_renderer(layer) |
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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. |
248 |
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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 |
254 |
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for index in selected_shapes: |
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count += 1 |
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shape = layer.Shape(index) |
257 |
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258 |
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# Get the size of the specific property for this |
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# point |
260 |
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if shapetype == SHAPETYPE_POINT and field is not None: |
261 |
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value = table.ReadValue(shape.ShapeID(), field) |
262 |
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group = lc.FindGroup(value) |
263 |
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size = group.GetProperties().GetSize() |
264 |
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args = (pen, brush, size) |
265 |
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def draw_shape_layer(self, layer): |
if useraw: |
267 |
MapRenderer.draw_shape_layer(self, layer) |
data = shape.RawData() |
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if layer is self.selected_layer and self.selected_shape is not None: |
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pen = wxPen(wxBLACK, 3, wxSOLID) |
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brush = wxBrush(wxBLACK, wxCROSS_HATCH) |
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shapetype = layer.ShapeType() |
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index = self.selected_shape |
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if shapetype == SHAPETYPE_POLYGON: |
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self.draw_polygon_shape(layer, index, pen, brush) |
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elif shapetype == SHAPETYPE_ARC: |
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self.draw_polygon_shape(layer, index, pen, None) |
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268 |
else: |
else: |
269 |
self.dc.SetBrush(brush) |
data = shape.Points() |
270 |
self.dc.SetPen(pen) |
func(param, data, *args) |
271 |
if shapetype == SHAPETYPE_POINT: |
if count % 500 == 0: |
272 |
self.draw_point_shape(layer, index) |
yield True |
|
else: |
|
|
raise TypeError(_("Unhandled shape type %s") % shapetype) |
|
273 |
|
|
274 |
def layer_ids(self, layer): |
def layer_shapes(self, layer): |
275 |
"""Return the shapeids covered by the region that has to be redrawn |
"""Return the shapeids covered by the region that has to be redrawn |
276 |
|
|
277 |
Call the layer's ShapesInRegion method to determine the ids so |
Call the layer's ShapesInRegion method to determine the ids so |
292 |
offx, offy = self.offset |
offx, offy = self.offset |
293 |
xs = [] |
xs = [] |
294 |
ys = [] |
ys = [] |
295 |
x, y, width, height = self.update_region |
x, y, width, height = self.region |
296 |
for winx, winy in ((x, y), (x + width, y), |
for winx, winy in ((x, y), (x + width, y), |
297 |
(x + width, y + height), (x, y + height)): |
(x + width, y + height), (x, y + height)): |
298 |
px = (winx - offx) / scale |
px = (winx - offx) / scale |
309 |
return layer.ShapesInRegion((left, bottom, right, top)) |
return layer.ShapesInRegion((left, bottom, right, top)) |
310 |
|
|
311 |
|
|
312 |
class PrinterRender(MapRenderer): |
class ExportRenderer(ScreenRenderer): |
313 |
|
|
314 |
|
honor_visibility = 1 |
315 |
|
|
316 |
|
def __init__(self, *args, **kw): |
317 |
|
"""Initialize the ExportRenderer. |
318 |
|
|
319 |
|
In addition to all parameters of the the ScreenRender |
320 |
|
constructor, this class requires and additional keyword argument |
321 |
|
destination_region with a tuple (minx, miny, maxx, maxy) giving |
322 |
|
the region in dc coordinates which is to contain the map. |
323 |
|
""" |
324 |
|
self.destination_region = kw["destination_region"] |
325 |
|
del kw["destination_region"] |
326 |
|
ScreenRenderer.__init__(self, *args, **kw) |
327 |
|
|
328 |
|
def RenderMap(self, selected_layer, selected_shapes): |
329 |
|
"""Render the map. |
330 |
|
|
331 |
|
The rendering device has been specified during initialisation. |
332 |
|
The device border distance was set in |
333 |
|
Thuban.UI.viewport.output_transform(). |
334 |
|
|
335 |
|
RenderMap renders a frame set (one page frame, one around |
336 |
|
legend/scalebar and one around the map), the map, the legend and |
337 |
|
the scalebar on the given DC. The map is rendered with the |
338 |
|
region displayed in the canvas view, centered on the area |
339 |
|
available for map display. |
340 |
|
""" |
341 |
|
|
342 |
|
self.selected_layer = selected_layer |
343 |
|
self.selected_shapes = selected_shapes |
344 |
|
|
345 |
|
# Get some dimensions |
346 |
|
llx, lly, urx, ury = self.region |
347 |
|
mminx, mminy, mmaxx, mmaxy = self.destination_region |
348 |
|
|
349 |
# When printing we want to see all layers |
# Manipulate the offset to position the map |
350 |
honor_visibility = 0 |
offx, offy = self.offset |
351 |
|
# 1. Shift to corner of map drawing area |
352 |
|
offx = offx + mminx |
353 |
|
offy = offy + mminy |
354 |
|
|
355 |
|
# 2. Center the map on the map drawing area: |
356 |
|
# region identifies the region on the canvas view: |
357 |
|
# center of map drawing area - half the size of region: rendering origin |
358 |
|
self.shiftx = (mmaxx - mminx)*0.5 - (urx - llx)*0.5 |
359 |
|
self.shifty = (mmaxy - mminy)*0.5 - (ury - lly)*0.5 |
360 |
|
|
361 |
|
self.offset = (offx+self.shiftx, offy+self.shifty) |
362 |
|
self.region = (llx + self.shiftx, lly + self.shifty, urx, ury) |
363 |
|
|
364 |
|
# Draw the map |
365 |
|
self.dc.BeginDrawing() |
366 |
|
self.dc.DestroyClippingRegion() |
367 |
|
self.dc.SetClippingRegion(mminx+self.shiftx, mminy+self.shifty, |
368 |
|
urx, ury) |
369 |
|
self.render_map() |
370 |
|
self.dc.EndDrawing() |
371 |
|
|
372 |
|
# Draw the rest (frames, legend, scalebar) |
373 |
|
self.dc.BeginDrawing() |
374 |
|
self.dc.DestroyClippingRegion() |
375 |
|
|
376 |
|
# Force the font for Legend drawing |
377 |
|
font = wxFont(self.resolution * 10, wxSWISS, wxNORMAL, wxNORMAL) |
378 |
|
self.dc.SetFont(font) |
379 |
|
|
380 |
|
self.render_frame() |
381 |
|
self.render_legend() |
382 |
|
self.render_scalebar() |
383 |
|
self.dc.EndDrawing() |
384 |
|
|
385 |
|
def render_frame(self): |
386 |
|
"""Render the frames for map and legend/scalebar.""" |
387 |
|
|
388 |
|
dc = self.dc |
389 |
|
dc.SetPen(wxBLACK_PEN) |
390 |
|
dc.SetBrush(wxTRANSPARENT_BRUSH) |
391 |
|
|
392 |
|
# Dimension stuff |
393 |
|
width, height = dc.GetSizeTuple() |
394 |
|
mminx, mminy, mmaxx, mmaxy = self.destination_region |
395 |
|
|
396 |
|
# Page Frame |
397 |
|
dc.DrawRectangle(15,15,width-30, (mmaxy-mminy)+10) |
398 |
|
|
399 |
|
# Map Frame |
400 |
|
llx, lly, urx, ury = self.region |
401 |
|
dc.DrawRectangle(mminx + self.shiftx, mminy + self.shifty, urx, ury) |
402 |
|
|
403 |
|
# Legend Frame |
404 |
|
dc.DrawRectangle(mmaxx+10,mminy,(width-20) - (mmaxx+10), mmaxy-mminy) |
405 |
|
|
406 |
|
dc.DestroyClippingRegion() |
407 |
|
dc.SetClippingRegion(mmaxx+10,mminy, |
408 |
|
(width-20) - (mmaxx+10), mmaxy-mminy) |
409 |
|
|
410 |
|
def render_legend(self): |
411 |
|
"""Render the legend on the Map.""" |
412 |
|
|
413 |
|
previewer = ClassDataPreviewer() |
414 |
|
dc = self.dc |
415 |
|
dc.SetPen(wxBLACK_PEN) |
416 |
|
dc.SetBrush(wxTRANSPARENT_BRUSH) |
417 |
|
|
418 |
|
# Dimension stuff |
419 |
|
width, height = dc.GetSizeTuple() |
420 |
|
mminx, mminy, mmaxx, mmaxy = self.destination_region |
421 |
|
textwidth, textheight = dc.GetTextExtent("0") |
422 |
|
iconwidth = textheight |
423 |
|
iconheight = textheight |
424 |
|
stepy = textheight+3 |
425 |
|
dx = 10 |
426 |
|
posx = mmaxx + 10 + 5 # 10 pix distance mapframe/legend frame, |
427 |
|
# 5 pix inside legend frame |
428 |
|
posy = mminy + 5 # 5 pix inside legend frame |
429 |
|
|
430 |
|
# Render the legend |
431 |
|
dc.SetTextForeground(wxBLACK) |
432 |
|
if self.map.HasLayers(): |
433 |
|
layers = self.map.Layers()[:] |
434 |
|
layers.reverse() |
435 |
|
for l in layers: |
436 |
|
if l.Visible(): |
437 |
|
# Render title |
438 |
|
dc.DrawText(l.Title(), posx, posy) |
439 |
|
posy+=stepy |
440 |
|
if l.HasClassification(): |
441 |
|
# Render classification |
442 |
|
clazz = l.GetClassification() |
443 |
|
shapeType = l.ShapeType() |
444 |
|
for g in clazz: |
445 |
|
if g.IsVisible(): |
446 |
|
previewer.Draw(dc, |
447 |
|
wxRect(posx+dx, posy, |
448 |
|
iconwidth, iconheight), |
449 |
|
g.GetProperties(), shapeType) |
450 |
|
dc.DrawText(g.GetDisplayText(), |
451 |
|
posx+2*dx+iconwidth, posy) |
452 |
|
posy+=stepy |
453 |
|
|
454 |
|
def render_scalebar(self): |
455 |
|
"""Render the scalebar.""" |
456 |
|
|
457 |
|
scalebar = ScaleBar(self.map) |
458 |
|
|
459 |
|
# Dimension stuff |
460 |
|
width, height = self.dc.GetSizeTuple() |
461 |
|
mminx, mminy, mmaxx, mmaxy = self.destination_region |
462 |
|
|
463 |
|
# Render the scalebar |
464 |
|
scalebar.DrawScaleBar(self.scale, self.dc, |
465 |
|
(mmaxx+10+5, mmaxy-25), |
466 |
|
((width-15-5) - (mmaxx+10+5),20) |
467 |
|
) |
468 |
|
# 10 pix between map and legend frame, 5 pix inside legend frame |
469 |
|
# 25 pix from the legend frame bottom line |
470 |
|
# Width: 15 pix from DC border, 5 pix inside frame, 10, 5 as above |
471 |
|
# Height: 20 |
472 |
|
|
473 |
|
class PrinterRenderer(ExportRenderer): |
474 |
|
|
475 |
|
# Printing as well as Export / Screen display only the visible layer. |
476 |
|
honor_visibility = 1 |
477 |
|
|
|
RenderMap = MapRenderer.render_map |
|
|
|
|