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曾与蒿藜同雨露,한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.终随松柏到冰霜.かつては雑草やヨモギと共に雨や露を分かち合っていたが、今では松やヒノキと共に霜や雪に耐えている。曾与蒿藜同雨露,Once sharing rain and dew with weeds and wormwood, now enduring frost and snow with pines and cypresses.终随松柏到冰霜.曾与蒿藜同雨露한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.,终随松柏到冰霜.譖セ荳手珍阯懷酔髮ィ髴イ�檎サ磯囂譚セ譟丞芦蜀ー髴�曾与蒿藜同雨露,鏇句笌钂胯棞鍚岄洦闇诧紝缁堥殢鏉炬煆鍒板啺闇�终随松柏到冰霜.曾与蒿藜同雨露,한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.终随松柏到冰霜.曾与蒿藜同雨露,终随松柏到冰霜.
#coding:utf-8
# Author: mozman
# Purpose: package definition file
# Created: 08.09.2010
# License: MIT License
# Copyright (c) 2010-2018 Manfred Moitzi
"""
A Python library to create SVG drawings.
SVG is a language for describing two-dimensional graphics in XML. SVG allows
for three types of graphic objects: vector graphic shapes (e.g., paths
consisting of straight lines and curves), images and text. Graphical objects
can be grouped, styled, transformed and composed into previously rendered
objects. The feature set includes nested transformations, clipping paths,
alpha masks, filter effects and template objects.
SVG drawings can be interactive and dynamic. Animations can be defined and
triggered either declarative (i.e., by embedding SVG animation elements in
SVG content) or via scripting.
.. seealso:: http://www.w3.org/TR/SVG11/intro.html#AboutSVG
a simple example::
import svgwrite
dwg = svgwrite.Drawing('test.svg', profile='tiny')
dwg.add(dwg.line((0, 0), (10, 0), stroke=svgwrite.rgb(10, 10, 16, '%')))
dwg.add(dwg.text('Test', insert=(0, 0.2)))
dwg.save()
SVG Version
-----------
You can only create two types of SVG drawings:
* *SVG 1.2 Tiny Profile*, use Drawing(profile= ``'tiny'``)
* *SVG 1.1 Full Profile*, use Drawing(profile= ``'full'``)
"""
from .version import __version__, version
VERSION = __version__
__author__ = "mozman <me@mozman.at>"
AUTHOR_NAME = 'Manfred Moitzi'
AUTHOR_EMAIL = 'me@mozman.at'
CYEAR = '2014-2019'
from svgwrite.drawing import Drawing
from svgwrite.utils import rgb
class Unit(object):
""" Add units to values.
"""
def __init__(self, unit='cm'):
""" Unit constructor
:param str unit: specify the unit string
"""
self._unit = unit
def __rmul__(self, other):
""" add unit-string to 'other'. (e.g. 5*cm => '5cm') """
return "%s%s" % (other, self._unit)
def __call__(self, *args):
""" Add unit-strings to all arguments.
:param args: list of values
e.g.: cm(1,2,3) => '1cm,2cm,3cm'
"""
return ','.join(["%s%s" % (arg, self._unit) for arg in args])
cm = Unit('cm')
mm = Unit('mm')
em = Unit('em')
ex = Unit('ex')
px = Unit('px')
inch = Unit('in')
pc = Unit('pc')
pt = Unit('pt')
percent = Unit('%')
deg = Unit('deg')
grad = Unit('grad')
rad = Unit('rad')
Hz = Unit('Hz')
kHz = Unit('kHz')