1546 lines
52 KiB
Python
1546 lines
52 KiB
Python
# Copyright (C) 2006, Red Hat, Inc.
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#
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# This library is free software; you can redistribute it and/or
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# modify it under the terms of the GNU Lesser General Public
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# License as published by the Free Software Foundation; either
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# version 2 of the License, or (at your option) any later version.
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#
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# This library is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with this library; if not, write to the
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# Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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# Boston, MA 02111-1307, USA.
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#!/usr/bin/env python
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##Copyright (c) 2002, Fedor Baart & Hans de Wit (Stichting Farmaceutische Kengetallen)
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##All rights reserved.
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##
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##Redistribution and use in source and binary forms, with or without modification,
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##are permitted provided that the following conditions are met:
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##
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##Redistributions of source code must retain the above copyright notice, this
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##list of conditions and the following disclaimer.
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##
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##Redistributions in binary form must reproduce the above copyright notice,
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##this list of conditions and the following disclaimer in the documentation and/or
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##other materials provided with the distribution.
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##
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##Neither the name of the Stichting Farmaceutische Kengetallen nor the names of
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##its contributors may be used to endorse or promote products derived from this
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##software without specific prior written permission.
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##
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##THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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##AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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##IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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##DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE
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##FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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##DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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##SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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##CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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##OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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##OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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##Thanks to Gerald Rosennfellner for his help and useful comments.
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__doc__="""Use SVGdraw to generate your SVGdrawings.
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SVGdraw uses an object model drawing and a method toXML to create SVG graphics
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by using easy to use classes and methods usualy you start by creating a drawing eg
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d=drawing()
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#then you create a SVG root element
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s=svg()
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#then you add some elements eg a circle and add it to the svg root element
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c=circle()
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#you can supply attributes by using named arguments.
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c=circle(fill='red',stroke='blue')
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#or by updating the attributes attribute:
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c.attributes['stroke-width']=1
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s.addElement(c)
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#then you add the svg root element to the drawing
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d.setSVG(s)
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#and finaly you xmlify the drawing
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d.toXml()
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this results in the svg source of the drawing, which consists of a circle
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on a white background. Its as easy as that;)
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This module was created using the SVG specification of www.w3c.org and the
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O'Reilly (www.oreilly.com) python books as information sources. A svg viewer
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is available from www.adobe.com"""
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__version__="1.0"
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# there are two possibilities to generate svg:
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# via a dom implementation and directly using <element>text</element> strings
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# the latter is way faster (and shorter in coding)
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# the former is only used in debugging svg programs
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# maybe it will be removed alltogether after a while
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# with the following variable you indicate whether to use the dom implementation
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# Note that PyXML is required for using the dom implementation.
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# It is also possible to use the standard minidom. But I didn't try that one.
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# Anyway the text based approach is about 60 times faster than using the full dom implementation.
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use_dom_implementation=0
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from xml.parsers import expat
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import exceptions
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if use_dom_implementation<>0:
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try:
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from xml.dom import implementation
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from xml.dom.ext import PrettyPrint
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except:
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raise exceptions.ImportError, "PyXML is required for using the dom implementation"
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#The implementation is used for the creating the XML document.
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#The prettyprint module is used for converting the xml document object to a xml file
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import sys
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assert sys.version_info[0]>=2
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if sys.version_info[1]<2:
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True=1
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False=0
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file=open
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sys.setrecursionlimit=50
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#The recursion limit is set conservative so mistakes like s=svg() s.addElement(s)
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#won't eat up too much processor time.
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xlinkNSRef = "http://www.w3.org/1999/xlink"
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#the following code is pasted form xml.sax.saxutils
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#it makes it possible to run the code without the xml sax package installed
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#To make it possible to have <rubbish> in your text elements, it is necessary to escape the texts
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def _escape(data, entities={}):
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"""Escape &, <, and > in a string of data.
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You can escape other strings of data by passing a dictionary as
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the optional entities parameter. The keys and values must all be
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strings; each key will be replaced with its corresponding value.
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"""
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data = data.replace("&", "&")
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data = data.replace("<", "<")
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data = data.replace(">", ">")
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for chars, entity in entities.items():
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data = data.replace(chars, entity)
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return data
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def _quoteattr(data, entities={}):
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"""Escape and quote an attribute value.
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Escape &, <, and > in a string of data, then quote it for use as
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an attribute value. The \" character will be escaped as well, if
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necessary.
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You can escape other strings of data by passing a dictionary as
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the optional entities parameter. The keys and values must all be
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strings; each key will be replaced with its corresponding value.
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"""
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data = _escape(data, entities)
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if '"' in data:
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if "'" in data:
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data = '"%s"' % data.replace('"', """)
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else:
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data = "'%s'" % data
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else:
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data = '"%s"' % data
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return data
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def _xypointlist(a):
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"""formats a list of xy pairs"""
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s=''
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for e in a: #this could be done more elegant
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s+=str(e)[1:-1] +' '
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return s
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def _viewboxlist(a):
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"""formats a tuple"""
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s=''
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for e in a:
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s+=str(e)+' '
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return s
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def _pointlist(a):
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"""formats a list of numbers"""
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return str(a)[1:-1]
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class pathdata:
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"""class used to create a pathdata object which can be used for a path.
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although most methods are pretty straightforward it might be useful to look at the SVG specification."""
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#I didn't test the methods below.
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def __init__(self,x=None,y=None):
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self.path=[]
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if x is not None and y is not None:
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self.path.append('M '+str(x)+' '+str(y))
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def closepath(self):
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"""ends the path"""
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self.path.append('z')
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def move(self,x,y):
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"""move to absolute"""
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self.path.append('M '+str(x)+' '+str(y))
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def relmove(self,x,y):
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"""move to relative"""
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self.path.append('m '+str(x)+' '+str(y))
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def line(self,x,y):
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"""line to absolute"""
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self.path.append('L '+str(x)+' '+str(y))
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def relline(self,x,y):
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"""line to relative"""
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self.path.append('l '+str(x)+' '+str(y))
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def hline(self,x):
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"""horizontal line to absolute"""
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self.path.append('H'+str(x))
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def relhline(self,x):
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"""horizontal line to relative"""
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self.path.append('h'+str(x))
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def vline(self,y):
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"""verical line to absolute"""
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self.path.append('V'+str(y))
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def relvline(self,y):
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"""vertical line to relative"""
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self.path.append('v'+str(y))
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def bezier(self,x1,y1,x2,y2,x,y):
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"""bezier with xy1 and xy2 to xy absolut"""
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self.path.append('C'+str(x1)+','+str(y1)+' '+str(x2)+','+str(y2)+' '+str(x)+','+str(y))
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def relbezier(self,x1,y1,x2,y2,x,y):
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"""bezier with xy1 and xy2 to xy relative"""
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self.path.append('c'+str(x1)+','+str(y1)+' '+str(x2)+','+str(y2)+' '+str(x)+','+str(y))
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def smbezier(self,x2,y2,x,y):
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"""smooth bezier with xy2 to xy absolut"""
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self.path.append('S'+str(x2)+','+str(y2)+' '+str(x)+','+str(y))
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def relsmbezier(self,x2,y2,x,y):
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"""smooth bezier with xy2 to xy relative"""
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self.path.append('s'+str(x2)+','+str(y2)+' '+str(x)+','+str(y))
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def qbezier(self,x1,y1,x,y):
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"""quadratic bezier with xy1 to xy absolut"""
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self.path.append('Q'+str(x1)+','+str(y1)+' '+str(x)+','+str(y))
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def relqbezier(self,x1,y1,x,y):
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"""quadratic bezier with xy1 to xy relative"""
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self.path.append('q'+str(x1)+','+str(y1)+' '+str(x)+','+str(y))
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def smqbezier(self,x,y):
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"""smooth quadratic bezier to xy absolut"""
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self.path.append('T'+str(x)+','+str(y))
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def relsmqbezier(self,x,y):
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"""smooth quadratic bezier to xy relative"""
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self.path.append('t'+str(x)+','+str(y))
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def ellarc(self,rx,ry,xrot,laf,sf,x,y):
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"""elliptival arc with rx and ry rotating with xrot using large-arc-flag and sweep-flag to xy absolut"""
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self.path.append('A'+str(rx)+','+str(ry)+' '+str(xrot)+' '+str(laf)+' '+str(sf)+' '+str(x)+' '+str(y))
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def relellarc(self,rx,ry,xrot,laf,sf,x,y):
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"""elliptival arc with rx and ry rotating with xrot using large-arc-flag and sweep-flag to xy relative"""
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self.path.append('a'+str(rx)+','+str(ry)+' '+str(xrot)+' '+str(laf)+' '+str(sf)+' '+str(x)+' '+str(y))
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def __repr__(self):
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return ' '.join(self.path)
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class Attribute:
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def __init__(self, name, value, nsname=None, nsref=None):
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self.name = name
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self.value = value
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self.nsname = nsname
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self.nsref = nsref
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def __repr__(self):
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return "(%s=%s, ns: %s=%s)" % (self.name, self.value, self.nsname, self.nsref)
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def get_attr_value(attrs, name):
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return attrs[name]
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class SVGelement:
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"""SVGelement(type,attributes,elements,text,namespace,**args)
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Creates a arbitrary svg element and is intended to be subclassed not used on its own.
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This element is the base of every svg element it defines a class which resembles
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a xml-element. The main advantage of this kind of implementation is that you don't
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have to create a toXML method for every different graph object. Every element
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consists of a type, attribute, optional subelements, optional text and an optional
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namespace. Note the elements==None, if elements = None:self.elements=[] construction.
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This is done because if you default to elements=[] every object has a reference
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to the same empty list."""
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def __init__(self,type='',attributes=None,elements=None,text='',namespace='',cdata=None,**args):
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self.type=type
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self._attributes={}
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if attributes:
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for key, value in attributes.items():
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attr = Attribute(key, value)
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self._attributes[key] = attr
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self.elements=[]
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if elements:
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self.elements=elements
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self.text=text
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self.namespace=namespace
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self.cdata=cdata
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for key, value in args.items():
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attr = Attribute(key, value)
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self._attributes[key] = attr
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self._parent = None
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def addElement(self,SVGelement):
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"""adds an element to a SVGelement
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SVGelement.addElement(SVGelement)
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"""
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self.elements.append(SVGelement)
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SVGelement.setParent(self)
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def setParent(self, parent):
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self._parent = parent
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def setAttribute(self, attribute, replace=True):
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if not replace and self.hasAttribute(attribute.name):
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return
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self._attributes[attribute.name] = attribute
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def delAttribute(self, name):
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if name in self._attributes.keys():
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del self._attributes[name]
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def hasAttribute(self, name):
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if name in self._attributes.keys():
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return True
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return False
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def _construct(attributes):
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raise Exception("Can't construct a default object.")
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_construct = staticmethod(_construct)
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def _get_namespace(attrname, nslist):
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colon_idx = attrname.find(':')
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if colon_idx <= 0:
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return (attrname, None, None)
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nsname = attrname[:colon_idx]
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nsref = None
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attrname = attrname[colon_idx+1:]
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for (ns, val) in nslist:
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if ns == nsname:
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nsref = val
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break
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if not nsref:
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nsname = None
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return (attrname, nsname, nsref)
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_get_namespace = staticmethod(_get_namespace)
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_XMLNS_TAG = "xmlns:"
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def construct(name, attributes, text=None, cdata=None):
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try:
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eltClass = elementTable[name]
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except KeyError, e:
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print "Unknown SVG element %s." % e
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return None
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# Coalesce namespaces into the attributes themselves
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attr_dict = {}
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elt_namespace = None
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namespaces = []
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tmp_attrs = []
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# Separate namespaces from actual attributes
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for attrname, attrvalue in attributes.items():
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if attrname.startswith(SVGelement._XMLNS_TAG):
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namespaces.append((attrname[len(SVGelement._XMLNS_TAG):], attrvalue))
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elif attrname.startswith("xmlns"):
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# Element-wide attribute
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elt_namespace = attrvalue
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else:
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tmp_attrs.append((attrname, attrvalue))
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# Create attributes and assign namespaces to them
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for (attrname, attrvalue) in tmp_attrs:
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nsname = nsref = None
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attr = None
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# search for its namespace, if any
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(attrname, nsname, nsref) = SVGelement._get_namespace(attrname, namespaces)
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attr = Attribute(attrname, attrvalue, nsname, nsref)
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attr_dict[attrname] = attr
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element = eltClass._construct(attr_dict)
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if element:
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for attr in attr_dict.values():
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element.setAttribute(attr, replace=False)
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if text:
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element.text = text
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if cdata:
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element.cdata = cdata
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if not element.namespace and elt_namespace:
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element.namespace = elt_namespace
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return element
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construct = staticmethod(construct)
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def toXml(self,level,f):
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f.write('\t'*level)
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f.write('<'+self.type)
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if self.namespace:
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f.write(' xmlns="'+ _escape(str(self.namespace))+'" ')
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for attkey, attr in self._attributes.items():
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if attr.nsname:
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f.write(' xmlns:'+_escape(str(attr.nsname))+'="'+_escape(str(attr.nsref))+'" ')
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f.write(' '+_escape(str(attr.nsname))+':'+_escape(str(attkey))+'='+_quoteattr(str(attr.value)))
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else:
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f.write(' '+_escape(str(attkey))+'='+_quoteattr(str(attr.value)))
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if self.elements or self.text or self.cdata:
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f.write('>')
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if self.elements:
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f.write('\n')
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for element in self.elements:
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element.toXml(level+1,f)
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if self.cdata:
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f.write('\n'+'\t'*(level+1)+'<![CDATA[')
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for line in self.cdata.splitlines():
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f.write('\n'+'\t'*(level+2)+line)
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f.write('\n'+'\t'*(level+1)+']]>\n')
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if self.text:
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if isinstance(self.text, str): #If the text is only text
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f.write(_escape(str(self.text)))
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else: #If the text is a spannedtext class
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f.write(str(self.text))
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if self.elements:
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f.write('\t'*level+'</'+self.type+'>\n')
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elif self.text:
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f.write('</'+self.type+'>\n')
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elif self.cdata:
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f.write('\t'*level+'</'+self.type+'>\n')
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else:
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f.write('/>\n')
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class tspan(SVGelement):
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"""ts=tspan(text='',**args)
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a tspan element can be used for applying formatting to a textsection
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usage:
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ts=tspan('this text is bold')
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ts.attributes['font-weight']='bold'
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st=spannedtext()
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st.addtspan(ts)
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t=text(3,5,st)
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"""
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def __init__(self,text=None,**args):
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SVGelement.__init__(self,'tspan',**args)
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if self.text<>None:
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self.text=text
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def __repr__(self):
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s="<tspan"
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for key, attr in self._attributes.items():
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s+= ' %s="%s"' % (key,attr.value)
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s+='>'
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s+=self.text
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s+='</tspan>'
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return s
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def _construct(attributes):
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return tspan()
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_construct = staticmethod(_construct)
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class tref(SVGelement):
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"""tr=tref(link='',**args)
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a tref element can be used for referencing text by a link to its id.
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usage:
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tr=tref('#linktotext')
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st=spannedtext()
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st.addtref(tr)
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t=text(3,5,st)
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"""
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def __init__(self,link,**args):
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SVGelement.__init__(self,'tref',**args)
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self.setAttribute(Attribute('href', link, 'xlink', xlinkNSRef))
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def __repr__(self):
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s="<tref"
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for key, attr in self._attributes.items():
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s+= ' %s="%s"' % (key,attr.value)
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s+='/>'
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return s
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|
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def _construct(attributes):
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href = get_attr_value(attributes, 'href')
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if href and href.nsname == 'xlink':
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return tref(href.value)
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return None
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_construct = staticmethod(_construct)
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class spannedtext:
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"""st=spannedtext(textlist=[])
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a spannedtext can be used for text which consists of text, tspan's and tref's
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You can use it to add to a text element or path element. Don't add it directly
|
|
to a svg or a group element.
|
|
usage:
|
|
|
|
ts=tspan('this text is bold')
|
|
ts.attributes['font-weight']='bold'
|
|
tr=tref('#linktotext')
|
|
tr.attributes['fill']='red'
|
|
st=spannedtext()
|
|
st.addtspan(ts)
|
|
st.addtref(tr)
|
|
st.addtext('This text is not bold')
|
|
t=text(3,5,st)
|
|
"""
|
|
def __init__(self,textlist=None):
|
|
if textlist==None:
|
|
self.textlist=[]
|
|
else:
|
|
self.textlist=textlist
|
|
def addtext(self,text=''):
|
|
self.textlist.append(text)
|
|
def addtspan(self,tspan):
|
|
self.textlist.append(tspan)
|
|
def addtref(self,tref):
|
|
self.textlist.append(tref)
|
|
def __repr__(self):
|
|
s=""
|
|
for element in self.textlist:
|
|
s+=str(element)
|
|
return s
|
|
|
|
class rect(SVGelement):
|
|
"""r=rect(width,height,x,y,fill,stroke,stroke_width,**args)
|
|
|
|
a rectangle is defined by a width and height and a xy pair
|
|
"""
|
|
def __init__(self,x=None,y=None,width=None,height=None,fill=None,stroke=None,stroke_width=None,**args):
|
|
if width==None or height==None:
|
|
if width<>None:
|
|
raise ValueError, 'height is required'
|
|
if height<>None:
|
|
raise ValueError, 'width is required'
|
|
else:
|
|
raise ValueError, 'both height and width are required'
|
|
SVGelement.__init__(self,'rect',{'width':width,'height':height},**args)
|
|
if x<>None:
|
|
self.setAttribute(Attribute('x', x))
|
|
if y<>None:
|
|
self.setAttribute(Attribute('y', y))
|
|
if fill<>None:
|
|
self.setAttribute(Attribute('fill', fill))
|
|
if stroke<>None:
|
|
self.setAttribute(Attribute('stroke', stroke))
|
|
if stroke_width<>None:
|
|
self.setAttribute(Attribute('stroke-width', stroke_width))
|
|
|
|
def _construct(attributes):
|
|
width = get_attr_value(attributes, 'width')
|
|
height = get_attr_value(attributes, 'height')
|
|
return rect(width=width.value, height=height.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class ellipse(SVGelement):
|
|
"""e=ellipse(rx,ry,x,y,fill,stroke,stroke_width,**args)
|
|
|
|
an ellipse is defined as a center and a x and y radius.
|
|
"""
|
|
def __init__(self,cx=None,cy=None,rx=None,ry=None,fill=None,stroke=None,stroke_width=None,**args):
|
|
if rx==None or ry== None:
|
|
if rx<>None:
|
|
raise ValueError, 'rx is required'
|
|
if ry<>None:
|
|
raise ValueError, 'ry is required'
|
|
else:
|
|
raise ValueError, 'both rx and ry are required'
|
|
SVGelement.__init__(self,'ellipse',{'rx':rx,'ry':ry},**args)
|
|
if cx<>None:
|
|
self.setAttribute(Attribute('cx', cx))
|
|
if cy<>None:
|
|
self.setAttribute(Attribute('cy', cy))
|
|
if fill<>None:
|
|
self.setAttribute(Attribute('fill', fill))
|
|
if stroke<>None:
|
|
self.setAttribute(Attribute('stroke', stroke))
|
|
if stroke_width<>None:
|
|
self.setAttribute(Attribute('stroke-width', stroke_width))
|
|
|
|
def _construct(attributes):
|
|
rx = get_attr_value(attributes, 'rx')
|
|
ry = get_attr_value(attributes, 'ry')
|
|
return ellipse(rx=rx.value, ry=ry.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class circle(SVGelement):
|
|
"""c=circle(x,y,radius,fill,stroke,stroke_width,**args)
|
|
|
|
The circle creates an element using a x, y and radius values eg
|
|
"""
|
|
def __init__(self,cx=None,cy=None,r=None,fill=None,stroke=None,stroke_width=None,**args):
|
|
if r==None:
|
|
raise ValueError, 'r is required'
|
|
SVGelement.__init__(self,'circle',{'r':r},**args)
|
|
if cx<>None:
|
|
self.setAttribute(Attribute('cx', cx))
|
|
if cy<>None:
|
|
self.setAttribute(Attribute('cy', cy))
|
|
if fill<>None:
|
|
self.setAttribute(Attribute('fill', fill))
|
|
if stroke<>None:
|
|
self.setAttribute(Attribute('stroke', stroke))
|
|
if stroke_width<>None:
|
|
self.setAttribute(Attribute('stroke-width', stroke_width))
|
|
|
|
def _construct(attributes):
|
|
r = get_attr_value(attributes, 'r')
|
|
if int(r.value) == 1:
|
|
return point()
|
|
else:
|
|
return circle(r=r.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class point(circle):
|
|
"""p=point(x,y,color)
|
|
|
|
A point is defined as a circle with a size 1 radius. It may be more efficient to use a
|
|
very small rectangle if you use many points because a circle is difficult to render.
|
|
"""
|
|
def __init__(self,x=None,y=None,fill=None,**args):
|
|
circle.__init__(self,x,y,1,fill,**args)
|
|
|
|
class line(SVGelement):
|
|
"""l=line(x1,y1,x2,y2,stroke,stroke_width,**args)
|
|
|
|
A line is defined by a begin x,y pair and an end x,y pair
|
|
"""
|
|
def __init__(self,x1=None,y1=None,x2=None,y2=None,stroke=None,stroke_width=None,**args):
|
|
SVGelement.__init__(self,'line',**args)
|
|
if x1<>None:
|
|
self.setAttribute(Attribute('x1', x1))
|
|
if y1<>None:
|
|
self.setAttribute(Attribute('y1', y1))
|
|
if x2<>None:
|
|
self.setAttribute(Attribute('x2', x2))
|
|
if y2<>None:
|
|
self.setAttribute(Attribute('y2', y2))
|
|
if stroke_width<>None:
|
|
self.setAttribute(Attribute('stroke-width', stroke_width))
|
|
if stroke<>None:
|
|
self.setAttribute(Attribute('stroke', stroke))
|
|
|
|
def _construct(attributes):
|
|
return line()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class polyline(SVGelement):
|
|
"""pl=polyline([[x1,y1],[x2,y2],...],fill,stroke,stroke_width,**args)
|
|
|
|
a polyline is defined by a list of xy pairs
|
|
"""
|
|
def __init__(self,points,fill=None,stroke=None,stroke_width=None,**args):
|
|
SVGelement.__init__(self,'polyline',{'points':_xypointlist(points)},**args)
|
|
if fill<>None:
|
|
self.setAttribute(Attribute('fill', fill))
|
|
if stroke_width<>None:
|
|
self.setAttribute(Attribute('stroke-width', stroke_width))
|
|
if stroke<>None:
|
|
self.setAttribute(Attribute('stroke', stroke))
|
|
|
|
def _construct(attributes):
|
|
points = get_attr_value(attributes, 'points')
|
|
return polyline(points.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class polygon(SVGelement):
|
|
"""pl=polyline([[x1,y1],[x2,y2],...],fill,stroke,stroke_width,**args)
|
|
|
|
a polygon is defined by a list of xy pairs
|
|
"""
|
|
def __init__(self,points,fill=None,stroke=None,stroke_width=None,**args):
|
|
SVGelement.__init__(self,'polygon',{'points':_xypointlist(points)},**args)
|
|
if fill<>None:
|
|
self.setAttribute(Attribute('fill', fill))
|
|
if stroke_width<>None:
|
|
self.setAttribute(Attribute('stroke-width', stroke_width))
|
|
if stroke<>None:
|
|
self.setAttribute(Attribute('stroke', stroke))
|
|
|
|
def _construct(attributes):
|
|
points = get_attr_value(attributes, 'points')
|
|
return polygon(points.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class path(SVGelement):
|
|
"""p=path(path,fill,stroke,stroke_width,**args)
|
|
|
|
a path is defined by a path object and optional width, stroke and fillcolor
|
|
"""
|
|
def __init__(self,pathdata,fill=None,stroke=None,stroke_width=None,id=None,**args):
|
|
SVGelement.__init__(self,'path',{'d':str(pathdata)},**args)
|
|
if stroke<>None:
|
|
self.setAttribute(Attribute('stroke', stroke))
|
|
if fill<>None:
|
|
self.setAttribute(Attribute('fill', fill))
|
|
if stroke_width<>None:
|
|
self.setAttribute(Attribute('stroke-width', stroke_width))
|
|
if id<>None:
|
|
self.setAttribute(Attribute('id', id))
|
|
|
|
def _construct(attributes):
|
|
pathdata = get_attr_value(attributes, 'd')
|
|
return path(pathdata.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class text(SVGelement):
|
|
"""t=text(x,y,text,font_size,font_family,**args)
|
|
|
|
a text element can bge used for displaying text on the screen
|
|
"""
|
|
def __init__(self,x=None,y=None,text=None,font_size=None,font_family=None,text_anchor=None,**args):
|
|
SVGelement.__init__(self,'text',**args)
|
|
if x<>None:
|
|
self.setAttribute(Attribute('x', x))
|
|
if y<>None:
|
|
self.setAttribute(Attribute('y', y))
|
|
if font_size<>None:
|
|
self.setAttribute(Attribute('font-size', font_size))
|
|
if font_family<>None:
|
|
self.setAttribute(Attribute('font-family', font_family))
|
|
if text<>None:
|
|
self.text=text
|
|
if text_anchor<>None:
|
|
self.setAttribute(Attribute('text-anchor', text_anchor))
|
|
|
|
def _construct(attributes):
|
|
return text()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class textpath(SVGelement):
|
|
"""tp=textpath(text,link,**args)
|
|
|
|
a textpath places a text on a path which is referenced by a link.
|
|
"""
|
|
def __init__(self,link,text=None,**args):
|
|
SVGelement.__init__(self,'textPath',**args)
|
|
self.setAttribute(Attribute('href', link, 'xlink', xlinkNSRef))
|
|
if text<>None:
|
|
self.text=text
|
|
|
|
def _construct(attributes):
|
|
href = get_attr_value(attributes, 'href')
|
|
if href and href.nsname == 'xlink':
|
|
return textpath(href.value)
|
|
return None
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class pattern(SVGelement):
|
|
"""p=pattern(x,y,width,height,patternUnits,**args)
|
|
|
|
A pattern is used to fill or stroke an object using a pre-defined
|
|
graphic object which can be replicated ("tiled") at fixed intervals
|
|
in x and y to cover the areas to be painted.
|
|
"""
|
|
def __init__(self,x=None,y=None,width=None,height=None,patternUnits=None,**args):
|
|
SVGelement.__init__(self,'pattern',**args)
|
|
if x<>None:
|
|
self.setAttribute(Attribute('x', x))
|
|
if y<>None:
|
|
self.setAttribute(Attribute('y', y))
|
|
if width<>None:
|
|
self.setAttribute(Attribute('width', width))
|
|
if height<>None:
|
|
self.setAttribute(Attribute('height', height))
|
|
if patternUnits<>None:
|
|
self.setAttribute(Attribute('patternUnits', patternUnits))
|
|
|
|
def _construct(attributes):
|
|
return pattern()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class title(SVGelement):
|
|
"""t=title(text,**args)
|
|
|
|
a title is a text element. The text is displayed in the title bar
|
|
add at least one to the root svg element
|
|
"""
|
|
def __init__(self,text=None,**args):
|
|
SVGelement.__init__(self,'title',**args)
|
|
if text<>None:
|
|
self.text=text
|
|
|
|
def _construct(attributes):
|
|
return title()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class description(SVGelement):
|
|
"""d=description(text,**args)
|
|
|
|
a description can be added to any element and is used for a tooltip
|
|
Add this element before adding other elements.
|
|
"""
|
|
def __init__(self,text=None,**args):
|
|
SVGelement.__init__(self,'desc',**args)
|
|
if text<>None:
|
|
self.text=text
|
|
|
|
def _construct(attributes):
|
|
return description()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class lineargradient(SVGelement):
|
|
"""lg=lineargradient(x1,y1,x2,y2,id,**args)
|
|
|
|
defines a lineargradient using two xy pairs.
|
|
stop elements van be added to define the gradient colors.
|
|
"""
|
|
def __init__(self,x1=None,y1=None,x2=None,y2=None,id=None,**args):
|
|
SVGelement.__init__(self,'linearGradient',**args)
|
|
if x1<>None:
|
|
self.setAttribute(Attribute('x1', x1))
|
|
if y1<>None:
|
|
self.setAttribute(Attribute('y1', y1))
|
|
if x2<>None:
|
|
self.setAttribute(Attribute('x2', x2))
|
|
if y2<>None:
|
|
self.setAttribute(Attribute('y2', y2))
|
|
if id<>None:
|
|
self.setAttribute(Attribute('id', id))
|
|
|
|
def _construct(attributes):
|
|
return lineargradient()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class radialgradient(SVGelement):
|
|
"""rg=radialgradient(cx,cy,r,fx,fy,id,**args)
|
|
|
|
defines a radial gradient using a outer circle which are defined by a cx,cy and r and by using a focalpoint.
|
|
stop elements van be added to define the gradient colors.
|
|
"""
|
|
def __init__(self,cx=None,cy=None,r=None,fx=None,fy=None,id=None,**args):
|
|
SVGelement.__init__(self,'radialGradient',**args)
|
|
if cx<>None:
|
|
self.setAttribute(Attribute('cx', cx))
|
|
if cy<>None:
|
|
self.setAttribute(Attribute('cy', cy))
|
|
if r<>None:
|
|
self.setAttribute(Attribute('r', r))
|
|
if fx<>None:
|
|
self.setAttribute(Attribute('fx', fx))
|
|
if fy<>None:
|
|
self.setAttribute(Attribute('fy', fy))
|
|
if id<>None:
|
|
self.setAttribute(Attribute('id', id))
|
|
|
|
def _construct(attributes):
|
|
return radialgradient()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class stop(SVGelement):
|
|
"""st=stop(offset,stop_color,**args)
|
|
|
|
Puts a stop color at the specified radius
|
|
"""
|
|
def __init__(self,offset,stop_color=None,**args):
|
|
SVGelement.__init__(self,'stop',{'offset':offset},**args)
|
|
if stop_color<>None:
|
|
self.setAttribute(Attribute('stop-color', stop_color))
|
|
|
|
def _construct(attributes):
|
|
offset = get_attr_value(attributes, 'offset')
|
|
return stop(offset.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
class style(SVGelement):
|
|
"""st=style(type,cdata=None,**args)
|
|
|
|
Add a CDATA element to this element for defing in line stylesheets etc..
|
|
"""
|
|
def __init__(self,type,cdata=None,**args):
|
|
SVGelement.__init__(self,'style',{'type':type},cdata=cdata, **args)
|
|
|
|
def _construct(attributes):
|
|
type = get_attr_value(attributes, 'type')
|
|
return style(type.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class image(SVGelement):
|
|
"""im=image(url,width,height,x,y,**args)
|
|
|
|
adds an image to the drawing. Supported formats are .png, .jpg and .svg.
|
|
"""
|
|
def __init__(self,url,x=None,y=None,width=None,height=None,**args):
|
|
if width==None or height==None:
|
|
if width<>None:
|
|
raise ValueError, 'height is required'
|
|
if height<>None:
|
|
raise ValueError, 'width is required'
|
|
else:
|
|
raise ValueError, 'both height and width are required'
|
|
SVGelement.__init__(self,'image',{'width':width,'height':height},**args)
|
|
self.setAttribute(Attribute('href', url, 'xlink', xlinkNSRef))
|
|
if x<>None:
|
|
self.setAttribute(Attribute('x', x))
|
|
if y<>None:
|
|
self.setAttribute(Attribute('y', y))
|
|
|
|
def _construct(attributes):
|
|
href = get_attr_value(attributes, 'href')
|
|
width = get_attr_value(attributes, 'width')
|
|
height = get_attr_value(attributes, 'height')
|
|
if href and href.nsname == 'xlink':
|
|
return image(href.value, width=width.value, height=height.value)
|
|
return None
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class cursor(SVGelement):
|
|
"""c=cursor(url,**args)
|
|
|
|
defines a custom cursor for a element or a drawing
|
|
"""
|
|
def __init__(self,url,**args):
|
|
SVGelement.__init__(self,'cursor',**args)
|
|
self.setAttribute(Attribute('href', url, 'xlink', xlinkNSRef))
|
|
|
|
def _construct(attributes):
|
|
href = get_attr_value(attributes, 'href')
|
|
if href and href.nsname == 'xlink':
|
|
return cursor(href.value)
|
|
return None
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class marker(SVGelement):
|
|
"""m=marker(id,viewbox,refX,refY,markerWidth,markerHeight,**args)
|
|
|
|
defines a marker which can be used as an endpoint for a line or other pathtypes
|
|
add an element to it which should be used as a marker.
|
|
"""
|
|
def __init__(self,id=None,viewBox=None,refx=None,refy=None,markerWidth=None,markerHeight=None,**args):
|
|
SVGelement.__init__(self,'marker',**args)
|
|
if id<>None:
|
|
self.setAttribute(Attribute('id', id))
|
|
if viewBox<>None:
|
|
self.setAttribute(Attribute('viewBox', _viewboxlist(viewBox)))
|
|
if refx<>None:
|
|
self.setAttribute(Attribute('refX', refx))
|
|
if refy<>None:
|
|
self.setAttribute(Attribute('refY', refy))
|
|
if markerWidth<>None:
|
|
self.setAttribute(Attribute('markerWidth', markerWidth))
|
|
if markerHeight<>None:
|
|
self.setAttribute(Attribute('markerHeight', markerHeight))
|
|
|
|
def _construct(attributes):
|
|
return marker()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class group(SVGelement):
|
|
"""g=group(id,**args)
|
|
|
|
a group is defined by an id and is used to contain elements
|
|
g.addElement(SVGelement)
|
|
"""
|
|
def __init__(self,id=None,**args):
|
|
SVGelement.__init__(self,'g',**args)
|
|
if id<>None:
|
|
self.setAttribute(Attribute('id', id))
|
|
|
|
def _construct(attributes):
|
|
return group()
|
|
_construct = staticmethod(_construct)
|
|
|
|
class symbol(SVGelement):
|
|
"""sy=symbol(id,viewbox,**args)
|
|
|
|
defines a symbol which can be used on different places in your graph using
|
|
the use element. A symbol is not rendered but you can use 'use' elements to
|
|
display it by referencing its id.
|
|
sy.addElement(SVGelement)
|
|
"""
|
|
|
|
def __init__(self,id=None,viewBox=None,**args):
|
|
SVGelement.__init__(self,'symbol',**args)
|
|
if id<>None:
|
|
self.setAttribute(Attribute('id', id))
|
|
if viewBox<>None:
|
|
self.setAttribute(Attribute('viewBox', _viewboxlist(viewBox)))
|
|
|
|
def _construct(attributes):
|
|
return symbol()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class defs(SVGelement):
|
|
"""d=defs(**args)
|
|
|
|
container for defining elements
|
|
"""
|
|
def __init__(self,**args):
|
|
SVGelement.__init__(self,'defs',**args)
|
|
|
|
def _construct(attributes):
|
|
return defs()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class switch(SVGelement):
|
|
"""sw=switch(**args)
|
|
|
|
Elements added to a switch element which are "switched" by the attributes
|
|
requiredFeatures, requiredExtensions and systemLanguage.
|
|
Refer to the SVG specification for details.
|
|
"""
|
|
def __init__(self,**args):
|
|
SVGelement.__init__(self,'switch',**args)
|
|
|
|
def _construct(attributes):
|
|
return switch()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class use(SVGelement):
|
|
"""u=use(link,x,y,width,height,**args)
|
|
|
|
references a symbol by linking to its id and its position, height and width
|
|
"""
|
|
def __init__(self,link,x=None,y=None,width=None,height=None,**args):
|
|
SVGelement.__init__(self,'use',**args)
|
|
self.setAttribute(Attribute('href', link, 'xlink', xlinkNSRef))
|
|
if x<>None:
|
|
self.setAttribute(Attribute('x', x))
|
|
if y<>None:
|
|
self.setAttribute(Attribute('y', y))
|
|
|
|
if width<>None:
|
|
self.setAttribute(Attribute('width', width))
|
|
if height<>None:
|
|
self.setAttribute(Attribute('height', height))
|
|
|
|
def _construct(attributes):
|
|
href = get_attr_value(attributes, 'href')
|
|
if href and href.nsname == 'xlink':
|
|
return use(href.value)
|
|
return None
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class link(SVGelement):
|
|
"""a=link(url,**args)
|
|
|
|
a link is defined by a hyperlink. add elements which have to be linked
|
|
a.addElement(SVGelement)
|
|
"""
|
|
def __init__(self,link='',**args):
|
|
SVGelement.__init__(self,'a',**args)
|
|
self.setAttribute(Attribute('href', link, 'xlink', xlinkNSRef))
|
|
|
|
def _construct(attributes):
|
|
href = get_attr_value(attributes, 'href')
|
|
if href and href.nsname == 'xlink':
|
|
return link(href.value)
|
|
return None
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class view(SVGelement):
|
|
"""v=view(id,**args)
|
|
|
|
a view can be used to create a view with different attributes"""
|
|
def __init__(self,id=None,**args):
|
|
SVGelement.__init__(self,'view',**args)
|
|
if id<>None:
|
|
self.setAttribute(Attribute('id', id))
|
|
|
|
def _construct(attributes):
|
|
return view()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class script(SVGelement):
|
|
"""sc=script(type,type,cdata,**args)
|
|
|
|
adds a script element which contains CDATA to the SVG drawing
|
|
|
|
"""
|
|
def __init__(self,type,cdata=None,**args):
|
|
SVGelement.__init__(self,'script',{'type':type},cdata=cdata,**args)
|
|
|
|
def _construct(attributes):
|
|
type = get_attr_value(attributes, 'type')
|
|
return script(type.value, cdata=cdata.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class animate(SVGelement):
|
|
"""an=animate(attribute,from,to,during,**args)
|
|
|
|
animates an attribute.
|
|
"""
|
|
def __init__(self,attribute,fr=None,to=None,dur=None,**args):
|
|
SVGelement.__init__(self,'animate',{'attributeName':attribute},**args)
|
|
if fr<>None:
|
|
self.setAttribute(Attribute('from', fr))
|
|
if to<>None:
|
|
self.setAttribute(Attribute('to', to))
|
|
if dur<>None:
|
|
self.setAttribute(Attribute('dur', dur))
|
|
|
|
def _construct(attributes):
|
|
attribute = get_attr_value(attributes, 'attributeName')
|
|
return animate(attribute.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class animateMotion(SVGelement):
|
|
"""an=animateMotion(pathdata,dur,**args)
|
|
|
|
animates a SVGelement over the given path in dur seconds
|
|
"""
|
|
def __init__(self,pathdata=None,dur=None,**args):
|
|
SVGelement.__init__(self,'animateMotion',**args)
|
|
if pathdata<>None:
|
|
self.setAttribute(Attribute('path', str(pathdata)))
|
|
if dur<>None:
|
|
self.setAttribute(Attribute('dur', dur))
|
|
|
|
def _construct(attributes):
|
|
return animateMotion()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class animateTransform(SVGelement):
|
|
"""antr=animateTransform(type,from,to,dur,**args)
|
|
|
|
transform an element from and to a value.
|
|
"""
|
|
def __init__(self,type=None,fr=None,to=None,dur=None,**args):
|
|
SVGelement.__init__(self,'animateTransform',{'attributeName':'transform'},**args)
|
|
#As far as I know the attributeName is always transform
|
|
if type<>None:
|
|
self.setAttribute(Attribute('type', type))
|
|
if fr<>None:
|
|
self.setAttribute(Attribute('from', fr))
|
|
if to<>None:
|
|
self.setAttribute(Attribute('to', to))
|
|
if dur<>None:
|
|
self.setAttribute(Attribute('dur', dur))
|
|
|
|
def _construct(attributes):
|
|
return animateTransform()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class animateColor(SVGelement):
|
|
"""ac=animateColor(attribute,type,from,to,dur,**args)
|
|
|
|
Animates the color of a element
|
|
"""
|
|
def __init__(self,attribute,type=None,fr=None,to=None,dur=None,**args):
|
|
SVGelement.__init__(self,'animateColor',{'attributeName':attribute},**args)
|
|
if type<>None:
|
|
self.setAttribute(Attribute('type', type))
|
|
if fr<>None:
|
|
self.setAttribute(Attribute('from', fr))
|
|
if to<>None:
|
|
self.setAttribute(Attribute('to', to))
|
|
if dur<>None:
|
|
self.setAttribute(Attribute('dur', dur))
|
|
|
|
def _construct(attributes):
|
|
attribute = get_attr_value(attributes, 'attributeName')
|
|
return animateColor(attribute.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class set(SVGelement):
|
|
"""st=set(attribute,to,during,**args)
|
|
|
|
sets an attribute to a value for a
|
|
"""
|
|
def __init__(self,attribute,to=None,dur=None,**args):
|
|
SVGelement.__init__(self,'set',{'attributeName':attribute},**args)
|
|
if to<>None:
|
|
self.setAttribute(Attribute('to', to))
|
|
if dur<>None:
|
|
self.setAttribute(Attribute('dur', dur))
|
|
|
|
def _construct(attributes):
|
|
attribute = get_attr_value(attributes, 'attributeName')
|
|
return set(attribute.value)
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class svg(SVGelement):
|
|
"""s=svg(viewbox,width,height,**args)
|
|
|
|
a svg or element is the root of a drawing add all elements to a svg element.
|
|
You can have different svg elements in one svg file
|
|
s.addElement(SVGelement)
|
|
|
|
eg
|
|
d=drawing()
|
|
s=svg((0,0,100,100),'100%','100%')
|
|
c=circle(50,50,20)
|
|
s.addElement(c)
|
|
d.setSVG(s)
|
|
d.toXml()
|
|
"""
|
|
def __init__(self,viewBox=None, width=None, height=None,**args):
|
|
SVGelement.__init__(self,'svg',**args)
|
|
if viewBox<>None:
|
|
self.setAttribute(Attribute('viewBox', _viewboxlist(viewBox)))
|
|
if width<>None:
|
|
self.setAttribute(Attribute('width', width))
|
|
if height<>None:
|
|
self.setAttribute(Attribute('height', height_))
|
|
self.namespace="http://www.w3.org/2000/svg"
|
|
|
|
def _construct(attributes):
|
|
return svg()
|
|
_construct = staticmethod(_construct)
|
|
|
|
|
|
class ElementHelper(object):
|
|
def __init__(self, name, attrs):
|
|
self.name = name
|
|
self.attrs = attrs
|
|
self.cdata = None
|
|
self.text = None
|
|
|
|
class Stack(object):
|
|
def __init__(self):
|
|
self._stack = []
|
|
|
|
def push(self, obj):
|
|
self._stack.append(obj)
|
|
|
|
def pop(self):
|
|
if len(self._stack) == 0:
|
|
return None
|
|
obj = self._stack[-1]
|
|
del self._stack[-1]
|
|
return obj
|
|
|
|
def peek(self):
|
|
if len(self._stack) == 0:
|
|
return None
|
|
return self._stack[-1]
|
|
|
|
def is_empty(self):
|
|
if len(self._stack) == 0:
|
|
return True
|
|
return False
|
|
|
|
def size(self):
|
|
return len(self._stack)
|
|
|
|
class SVGImportParser(object):
|
|
def __init__(self):
|
|
self._indent = 0
|
|
self._cdata = 0
|
|
self._stack = Stack()
|
|
self._base = None
|
|
self._debug = False
|
|
|
|
def getBaseElement(self):
|
|
return self._base
|
|
|
|
def log(self, msg):
|
|
if self._debug:
|
|
print " " * self._indent + msg
|
|
|
|
def StartElementHandler(self, name, attrs):
|
|
self.log("<%s>" % name)
|
|
self._indent = self._indent + 1
|
|
import copy
|
|
attrs = copy.deepcopy(attrs)
|
|
for attrname, attrvalue in attrs.items():
|
|
self.log("%s = %s" % (attrname, attrvalue))
|
|
parent = self._stack.peek()
|
|
elt = SVGelement.construct(name, attrs)
|
|
if not self._base:
|
|
self._base = elt
|
|
if parent and elt:
|
|
parent.addElement(elt)
|
|
self._stack.push(elt)
|
|
|
|
def StartCdataSectionHandler(self):
|
|
self._cdata = 1
|
|
|
|
def CharacterDataHandler(self, content):
|
|
if self._cdata:
|
|
self.log("CDATA = '%s'" % content)
|
|
elt = self._stack.peek()
|
|
if elt:
|
|
elt.cdata = elt.cdata + content
|
|
else:
|
|
if len(content) and not content.isspace():
|
|
self.log("Text = '%s'" % content.strip())
|
|
elt = self._stack.peek()
|
|
if elt:
|
|
if not elt.text:
|
|
elt.text = ""
|
|
elt.text = elt.text + content.strip()
|
|
|
|
def EndCdataSectionHandler(self):
|
|
self._cdata = 0
|
|
|
|
def EndElementHandler(self, name):
|
|
self._indent = self._indent - 1
|
|
self.log("</%s>" % name)
|
|
self._stack.pop()
|
|
|
|
def CommentHandler(self, comment):
|
|
self.log("Comment = '%s'" % comment)
|
|
|
|
def StartNamespaceDeclHandler(self, prefix, uri):
|
|
self.log("Namespace = '%s' -> '%s'" % (prefix, uri))
|
|
|
|
def EndNamespaceDeclHandler(self, prefix):
|
|
self.log("Namespace = '%s'" % prefix)
|
|
|
|
|
|
class drawing:
|
|
"""d=drawing()
|
|
|
|
this is the actual SVG document. It needs a svg element as a root.
|
|
Use the addSVG method to set the svg to the root. Use the toXml method to write the SVG
|
|
source to the screen or to a file
|
|
d=drawing()
|
|
d.addSVG(svg)
|
|
d.toXml(optionalfilename)
|
|
"""
|
|
|
|
def __init__(self):
|
|
self.svg=None
|
|
|
|
def setSVG(self,svg):
|
|
self.svg=svg
|
|
#Voeg een element toe aan de grafiek toe.
|
|
|
|
def fromXml(self, xml):
|
|
HANDLER_NAMES = [
|
|
'StartElementHandler', 'EndElementHandler',
|
|
'CharacterDataHandler',
|
|
'StartNamespaceDeclHandler', 'EndNamespaceDeclHandler',
|
|
'CommentHandler',
|
|
'StartCdataSectionHandler', 'EndCdataSectionHandler',
|
|
]
|
|
|
|
# Create a parser
|
|
parser = expat.ParserCreate()
|
|
|
|
handler = SVGImportParser()
|
|
for name in HANDLER_NAMES:
|
|
setattr(parser, name, getattr(handler, name))
|
|
parser.returns_unicode = 0
|
|
|
|
# Parse the XML
|
|
parser.Parse(xml)
|
|
base_element = handler.getBaseElement()
|
|
if not base_element or not isinstance(base_element, svg):
|
|
raise Exception("Base element was not SVG.")
|
|
self.setSVG(base_element)
|
|
|
|
if use_dom_implementation==0:
|
|
def toXml(self, filename='',compress=False):
|
|
import cStringIO
|
|
xml=cStringIO.StringIO()
|
|
xml.write("<?xml version='1.0' encoding='UTF-8'?>\n")
|
|
xml.write("<!DOCTYPE svg PUBLIC \"-//W3C//DTD SVG 1.0//EN\" \"http://www.w3.org/TR/2001/REC-SVG-20010904/DTD/svg10.dtd \">\n")
|
|
self.svg.toXml(0,xml)
|
|
if not filename:
|
|
if compress:
|
|
import gzip
|
|
f=cStringIO.StringIO()
|
|
zf=gzip.GzipFile(fileobj=f,mode='wb')
|
|
zf.write(xml.getvalue())
|
|
zf.close()
|
|
f.seek(0)
|
|
return f.read()
|
|
else:
|
|
return xml.getvalue()
|
|
else:
|
|
if filename[-4:]=='svgz':
|
|
import gzip
|
|
f=gzip.GzipFile(filename=filename,mode="wb", compresslevel=9)
|
|
f.write(xml.getvalue())
|
|
f.close()
|
|
else:
|
|
f=file(filename,'w')
|
|
f.write(xml.getvalue())
|
|
f.close()
|
|
|
|
else:
|
|
def toXml(self,filename='',compress=False):
|
|
"""drawing.toXml() ---->to the screen
|
|
drawing.toXml(filename)---->to the file
|
|
writes a svg drawing to the screen or to a file
|
|
compresses if filename ends with svgz or if compress is true
|
|
"""
|
|
doctype = implementation.createDocumentType('svg',"-//W3C//DTD SVG 1.0//EN""",'http://www.w3.org/TR/2001/REC-SVG-20010904/DTD/svg10.dtd ')
|
|
|
|
global root
|
|
#root is defined global so it can be used by the appender. Its also possible to use it as an arugument but
|
|
#that is a bit messy.
|
|
root=implementation.createDocument(None,None,doctype)
|
|
#Create the xml document.
|
|
global appender
|
|
def appender(element,elementroot):
|
|
"""This recursive function appends elements to an element and sets the attributes
|
|
and type. It stops when alle elements have been appended"""
|
|
if element.namespace:
|
|
e=root.createElementNS(element.namespace,element.type)
|
|
else:
|
|
e=root.createElement(element.type)
|
|
if element.text:
|
|
textnode=root.createTextNode(element.text)
|
|
e.appendChild(textnode)
|
|
for attr in element.attributes.values(): #in element.attributes is supported from python 2.2
|
|
if attr.nsname and attr.nsref:
|
|
e.setAttributeNS(attr.nsref, attr.nsname+":"+attr.name, str(attr.value))
|
|
else:
|
|
e.setAttribute(attr.name,str(attr.value))
|
|
if element.elements:
|
|
for el in element.elements:
|
|
e=appender(el,e)
|
|
elementroot.appendChild(e)
|
|
return elementroot
|
|
root=appender(self.svg,root)
|
|
if not filename:
|
|
import cStringIO
|
|
xml=cStringIO.StringIO()
|
|
PrettyPrint(root,xml)
|
|
if compress:
|
|
import gzip
|
|
f=cStringIO.StringIO()
|
|
zf=gzip.GzipFile(fileobj=f,mode='wb')
|
|
zf.write(xml.getvalue())
|
|
zf.close()
|
|
f.seek(0)
|
|
return f.read()
|
|
else:
|
|
return xml.getvalue()
|
|
else:
|
|
try:
|
|
if filename[-4:]=='svgz':
|
|
import gzip
|
|
import cStringIO
|
|
xml=cStringIO.StringIO()
|
|
PrettyPrint(root,xml)
|
|
f=gzip.GzipFile(filename=filename,mode='wb',compresslevel=9)
|
|
f.write(xml.getvalue())
|
|
f.close()
|
|
else:
|
|
f=open(filename,'w')
|
|
PrettyPrint(root,f)
|
|
f.close()
|
|
except:
|
|
print "Cannot write SVG file: " + filename
|
|
|
|
def validate(self):
|
|
try:
|
|
import xml.parsers.xmlproc.xmlval
|
|
except:
|
|
raise exceptions.ImportError,'PyXml is required for validating SVG'
|
|
svg=self.toXml()
|
|
xv=xml.parsers.xmlproc.xmlval.XMLValidator()
|
|
try:
|
|
xv.feed(svg)
|
|
except:
|
|
raise "SVG is not well formed, see messages above"
|
|
else:
|
|
print "SVG well formed"
|
|
|
|
|
|
elementTable = {
|
|
'tspan': tspan,
|
|
'tref': tref,
|
|
'rect': rect,
|
|
'ellipse': ellipse,
|
|
'circle': circle,
|
|
'line': line,
|
|
'polyline': polyline,
|
|
'polygon': polygon,
|
|
'path': path,
|
|
'text': text,
|
|
'textPath': textpath,
|
|
'pattern': pattern,
|
|
'title': title,
|
|
'desc': description,
|
|
'linearGradient': lineargradient,
|
|
'radialGradient': radialgradient,
|
|
'stop': stop,
|
|
'style': style,
|
|
'image': image,
|
|
'cursor': cursor,
|
|
'marker': marker,
|
|
'g': group,
|
|
'symbol': symbol,
|
|
'defs': defs,
|
|
'switch': switch,
|
|
'use': use,
|
|
'a': link,
|
|
'view': view,
|
|
'script': script,
|
|
'animate': animate,
|
|
'animateMotion': animateMotion,
|
|
'animateTransform': animateTransform,
|
|
'animateColor': animateColor,
|
|
'set': set,
|
|
'svg': svg
|
|
}
|
|
|
|
def from_file(document):
|
|
import sys
|
|
f = open(sys.argv[1], "r")
|
|
fc = f.read()
|
|
document.fromXml(fc)
|
|
print document.toXml()
|
|
|
|
def to_file(document):
|
|
s=svg((0,0,100,100))
|
|
r=rect(-100,-100,300,300,'cyan')
|
|
s.addElement(r)
|
|
|
|
text = tspan("Foobar")
|
|
s.addElement(text)
|
|
|
|
t=title('SVGdraw Demo')
|
|
s.addElement(t)
|
|
g=group('animations')
|
|
e=ellipse(0,0,5,2)
|
|
g.addElement(e)
|
|
c=circle(0,0,1,'red')
|
|
g.addElement(c)
|
|
pd=pathdata(0,-10)
|
|
for i in range(6):
|
|
pd.relsmbezier(10,5,0,10)
|
|
pd.relsmbezier(-10,5,0,10)
|
|
an=animateMotion(pd,10)
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|
an.setAttribute(Attribute('rotate', 'auto-reverse'))
|
|
an.setAttribute(Attribute('repeatCount', "indefinite"))
|
|
g.addElement(an)
|
|
s.addElement(g)
|
|
for i in range(20,120,20):
|
|
u=use('#animations',i,0)
|
|
s.addElement(u)
|
|
for i in range(0,120,20):
|
|
for j in range(5,105,10):
|
|
c=circle(i,j,1,'red','black',.5)
|
|
s.addElement(c)
|
|
document.setSVG(s)
|
|
|
|
print document.toXml()
|
|
|
|
def main():
|
|
d=drawing()
|
|
from_file(d)
|
|
# to_file(d)
|
|
|
|
if __name__=='__main__':
|
|
main()
|