mirror of
https://github.com/ianmackinnon/png2svg.git
synced 2025-07-21 04:31:06 +02:00
239 lines
7.9 KiB
Python
Executable File
239 lines
7.9 KiB
Python
Executable File
#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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import sys
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import logging
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import operator
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from collections import deque
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from StringIO import StringIO
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from optparse import OptionParser
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import Image
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logging.basicConfig()
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log = logging.getLogger('png2svg')
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def add_tuple(a, b):
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return tuple(map(operator.add, a, b))
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def sub_tuple(a, b):
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return tuple(map(operator.sub, a, b))
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def neg_tuple(a):
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return tuple(map(operator.neg, a))
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def direction(edge):
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return sub_tuple(edge[1], edge[0])
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def magnitude(a):
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return int(pow(pow(a[0], 2) + pow(a[1], 2), .5))
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def normalize(a):
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mag = magnitude(a)
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assert mag > 0, "Cannot normalize a zero-length vector"
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return tuple(map(operator.div, a, [mag]*len(a)))
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def svg_header(width, height):
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return """<?xml version="1.0" encoding="UTF-8" standalone="no"?>
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<!DOCTYPE svg PUBLIC "-//W3C//DTD SVG 1.1//EN"
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"http://www.w3.org/Graphics/SVG/1.1/DTD/svg11.dtd">
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<svg width="%d" height="%d"
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xmlns="http://www.w3.org/2000/svg" version="1.1">
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""" % (width, height)
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def rgba_image_to_svg_pixels(im, opaque=None):
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s = StringIO()
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s.write(svg_header(*im.size))
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width, height = im.size
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for x in range(width):
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for y in range(height):
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here = (x, y)
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rgba = im.getpixel(here)
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if opaque and not rgba[3]:
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continue
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s.write(""" <rect x="%d" y="%d" width="1" height="1" style="fill:rgb%s; fill-opacity:%.3f; stroke:none;" />\n""" % (x, y, rgba[0:3], float(rgba[3]) / 255))
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s.write("""</svg>\n""")
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return s.getvalue()
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def joined_edges(assorted_edges, keep_every_point=False):
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pieces = []
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piece = []
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directions = deque([
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(0, 1),
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(1, 0),
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(0, -1),
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(-1, 0),
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])
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while assorted_edges:
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if not piece:
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piece.append(assorted_edges.pop())
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current_direction = normalize(direction(piece[-1]))
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while current_direction != directions[2]:
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directions.rotate()
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for i in range(1, 4):
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next_end = add_tuple(piece[-1][1], directions[i])
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next_edge = (piece[-1][1], next_end)
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if next_edge in assorted_edges:
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assorted_edges.remove(next_edge)
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if i == 2 and not keep_every_point:
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# same direction
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piece[-1] = (piece[-1][0], next_edge[1])
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else:
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piece.append(next_edge)
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if piece[0][0] == piece[-1][1]:
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if not keep_every_point and normalize(direction(piece[0])) == normalize(direction(piece[-1])):
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piece[-1] = (piece[-1][0], piece.pop(0)[1])
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# same direction
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pieces.append(piece)
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piece = []
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break
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else:
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raise Exception, "Failed to find connecting edge"
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return pieces
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def rgba_image_to_svg_contiguous(im, opaque=None, keep_every_point=False):
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# collect contiguous pixel groups
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adjacent = ((1, 0), (0, 1), (-1, 0), (0, -1))
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visited = Image.new("1", im.size, 0)
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color_pixel_lists = {}
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width, height = im.size
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for x in range(width):
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for y in range(height):
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here = (x, y)
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if visited.getpixel(here):
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continue
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rgba = im.getpixel((x, y))
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if opaque and not rgba[3]:
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continue
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piece = []
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queue = [here]
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visited.putpixel(here, 1)
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while queue:
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here = queue.pop()
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for offset in adjacent:
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neighbour = add_tuple(here, offset)
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if not (0 <= neighbour[0] < width) or not (0 <= neighbour[1] < height):
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continue
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if visited.getpixel(neighbour):
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continue
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neighbour_rgba = im.getpixel(neighbour)
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if neighbour_rgba != rgba:
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continue
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queue.append(neighbour)
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visited.putpixel(neighbour, 1)
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piece.append(here)
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if not rgba in color_pixel_lists:
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color_pixel_lists[rgba] = []
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color_pixel_lists[rgba].append(piece)
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del adjacent
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del visited
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# calculate clockwise edges of pixel groups
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edges = {
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(-1, 0):((0, 0), (0, 1)),
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(0, 1):((0, 1), (1, 1)),
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(1, 0):((1, 1), (1, 0)),
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(0, -1):((1, 0), (0, 0)),
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}
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color_edge_lists = {}
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for rgba, pieces in color_pixel_lists.items():
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for piece_pixel_list in pieces:
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edge_set = set([])
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for coord in piece_pixel_list:
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for offset, (start_offset, end_offset) in edges.items():
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neighbour = add_tuple(coord, offset)
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start = add_tuple(coord, start_offset)
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end = add_tuple(coord, end_offset)
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edge = (start, end)
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if neighbour in piece_pixel_list:
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continue
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edge_set.add(edge)
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if not rgba in color_edge_lists:
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color_edge_lists[rgba] = []
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color_edge_lists[rgba].append(edge_set)
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del color_pixel_lists
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del edges
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# join edges of pixel groups
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color_joined_pieces = {}
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for color, pieces in color_edge_lists.items():
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color_joined_pieces[color] = []
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for assorted_edges in pieces:
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color_joined_pieces[color].append(joined_edges(assorted_edges, keep_every_point))
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s = StringIO()
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s.write(svg_header(*im.size))
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for color, shapes in color_joined_pieces.items():
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for shape in shapes:
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s.write(""" <path d=" """)
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for sub_shape in shape:
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here = sub_shape.pop(0)[0]
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s.write(""" M %d,%d """ % here)
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for edge in sub_shape:
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here = edge[0]
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s.write(""" L %d,%d """ % here)
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s.write(""" Z """)
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s.write(""" " style="fill:rgb%s; fill-opacity:%.3f; stroke:none;" />\n""" % (color[0:3], float(color[3]) / 255))
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s.write("""</svg>\n""")
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return s.getvalue()
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def png_to_svg(filename, contiguous=None, opaque=None, keep_every_point=None):
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try:
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im = Image.open(filename)
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except IOError, e:
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sys.stderr.write('%s: Could not open as image file\n' % filename)
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sys.exit(1)
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im_rgba = im.convert('RGBA')
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if contiguous:
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return rgba_image_to_svg_contiguous(im_rgba, opaque, keep_every_point)
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else:
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return rgba_image_to_svg_pixels(im_rgba, opaque)
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if __name__ == "__main__":
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parser = OptionParser()
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parser.add_option("-v", "--verbose", action="store_true", dest="verbosity", help="Print verbose information for debugging", default=None)
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parser.add_option("-q", "--quiet", action="store_false", dest="verbosity", help="Suppress warnings", default=None)
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parser.add_option("-p", "--pixels", action="store_false", dest="contiguous", help="Generate a separate shape for each pixel; do not group pixels into contiguous areas of the same colour", default=True)
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parser.add_option("-o", "--opaque", action="store_true", dest="opaque", help="Opaque only; do not create shapes for fully transparent pixels. ", default=None)
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parser.add_option("-1", "--one", action="store_true", dest="keep_every_point", help="1-pixel-width edges on contiguous shapes; default is to remove intermediate points on straight line edges. ", default=None)
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(options, args) = parser.parse_args()
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if options.verbosity == True:
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log.setLevel(logging.DEBUG)
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elif options.verbosity == False:
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log.setLevel(logging.ERROR)
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assert len(args) == 1, "Usage: %s [FILE]"
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print png_to_svg(args[0], contiguous=options.contiguous, opaque=options.opaque, keep_every_point=options.keep_every_point)
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