mirror of https://github.com/VLSIDA/OpenRAM.git
123 lines
4.3 KiB
Python
123 lines
4.3 KiB
Python
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# -*- coding: ISO-8859-1 -*-
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#
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#
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# Copyright (C) 2005-2006 Andr<64> Wobst <wobsta@users.sourceforge.net>
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#
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# This file is part of PyX (http://pyx.sourceforge.net/).
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#
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# PyX is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# PyX 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
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with PyX; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA
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import math
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from pyx import path, unit
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class _positioner:
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"""interface definition of axis tick position methods
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- these methods are used for the postitioning of the ticks
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when painting an axis"""
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# TODO: should we add a local transformation (for label text etc?)
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# (this might replace tickdirection (and even tickposition?))
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def vbasepath(self, v1=None, v2=None):
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"""return the basepath as a path
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- like basepath, but for graph coordinates"""
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def vgridpath(self, v):
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"""return the gridpath as a path for a given position v
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in graph coordinates
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- might return None when no gridpath is available"""
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return None
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def vtickpoint_pt(self, v):
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"""return tick position (x, y) in pts for a tick at position v in graph coordinates"""
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def vtickdirection(self, v):
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"""return direction tuple (dx, dy) for a tick at position v in graph coordinates"""
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class pathpositioner(_positioner):
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"""axis tick position methods along an arbitrary path"""
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def __init__(self, p, direction=1):
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self.path = p
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self.normpath = p.normpath()
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self.arclen_pt = self.normpath.arclen_pt()
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self.arclen = self.arclen_pt * unit.t_pt
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self.direction = direction
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def vbasepath(self, v1=None, v2=None):
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if v1 is None:
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if v2 is None:
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return self.path
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else:
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return self.normpath.split(self.normpath.arclentoparam(v2 * self.arclen))[0]
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else:
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if v2 is None:
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return self.normpath.split(self.normpath.arclentoparam(v1 * self.arclen))[1]
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else:
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return self.normpath.split(*self.normpath.arclentoparam([v1 * self.arclen, v2 * self.arclen]))[1]
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def vtickpoint_pt(self, v):
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return self.normpath.at_pt(self.normpath.arclentoparam(v * self.arclen))
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def vtickdirection(self, v):
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return self.normpath.rotation(self.normpath.arclentoparam(v * self.arclen)).apply_pt(0, self.direction)
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class lineaxispos_pt:
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"""an axispos linear along a line with a fix direction for the ticks"""
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def __init__(self, x1_pt, y1_pt, x2_pt, y2_pt, fixtickdirection, vgridpath):
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self.x1_pt = x1_pt
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self.y1_pt = y1_pt
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self.x2_pt = x2_pt
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self.y2_pt = y2_pt
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self.fixtickdirection = fixtickdirection
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self.vgridpath = vgridpath
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def vbasepath(self, v1=None, v2=None):
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if v1 is None:
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v1 = 0
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if v2 is None:
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v2 = 1
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return path.line_pt((1-v1)*self.x1_pt+v1*self.x2_pt,
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(1-v1)*self.y1_pt+v1*self.y2_pt,
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(1-v2)*self.x1_pt+v2*self.x2_pt,
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(1-v2)*self.y1_pt+v2*self.y2_pt)
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def vtickpoint_pt(self, v):
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return (1-v)*self.x1_pt+v*self.x2_pt, (1-v)*self.y1_pt+v*self.y2_pt
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def vtickdirection(self, v):
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return self.fixtickdirection
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class flexlineaxispos_pt(lineaxispos_pt):
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"""an axispos linear along a line with flexible direction for the ticks"""
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def __init__(self, vtickpoint_pt, vtickdirection, vgridpath):
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self.vtickpoint_pt = vtickpoint_pt
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self.vtickdirection = vtickdirection
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self.vgridpath = vgridpath
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def vbasepath(self, v1=None, v2=None):
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if v1 is None:
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v1 = 0
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if v2 is None:
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v2 = 1
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x1_pt, y1_pt = self.vtickpoint_pt(v1)
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x2_pt, y2_pt = self.vtickpoint_pt(v2)
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return path.line_pt(x1_pt, y1_pt, x2_pt, y2_pt)
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