kopia lustrzana https://gitlab.com/gerbolyze/gerbonara
296 wiersze
9.1 KiB
Python
296 wiersze
9.1 KiB
Python
#! /usr/bin/env python
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# -*- coding: utf-8 -*-
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# copyright 2014 Hamilton Kibbe <ham@hamiltonkib.be>
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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# http://www.apache.org/licenses/LICENSE-2.0
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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import os
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import re
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from collections import namedtuple
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from . import common
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from .excellon import ExcellonFile
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from .ipc356 import IPCNetlist
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Hint = namedtuple('Hint', 'layer ext name regex content')
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hints = [
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Hint(layer='top',
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ext=['gtl', 'cmp', 'top', ],
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name=['art01', 'top', 'GTL', 'layer1', 'soldcom', 'comp', 'F.Cu', ],
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regex='',
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content=[]
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),
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Hint(layer='bottom',
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ext=['gbl', 'sld', 'bot', 'sol', 'bottom', ],
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name=['art02', 'bottom', 'bot', 'GBL', 'layer2', 'soldsold', 'B.Cu', ],
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regex='',
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content=[]
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),
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Hint(layer='internal',
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ext=['in', 'gt1', 'gt2', 'gt3', 'gt4', 'gt5', 'gt6',
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'g1', 'g2', 'g3', 'g4', 'g5', 'g6', ],
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name=['art', 'internal', 'pgp', 'pwr', 'gnd', 'ground',
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'gp1', 'gp2', 'gp3', 'gp4', 'gt5', 'gp6',
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'In1.Cu', 'In2.Cu', 'In3.Cu', 'In4.Cu',
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'group3', 'group4', 'group5', 'group6', 'group7', 'group8', ],
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regex='',
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content=[]
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),
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Hint(layer='topsilk',
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ext=['gto', 'sst', 'plc', 'ts', 'skt', 'topsilk', ],
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name=['sst01', 'topsilk', 'silk', 'slk', 'sst', 'F.SilkS'],
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regex='',
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content=[]
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),
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Hint(layer='bottomsilk',
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ext=['gbo', 'ssb', 'pls', 'bs', 'skb', 'bottomsilk', ],
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name=['bsilk', 'ssb', 'botsilk', 'bottomsilk', 'B.SilkS'],
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regex='',
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content=[]
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),
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Hint(layer='topmask',
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ext=['gts', 'stc', 'tmk', 'smt', 'tr', 'topmask', ],
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name=['sm01', 'cmask', 'tmask', 'mask1', 'maskcom', 'topmask',
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'mst', 'F.Mask', ],
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regex='',
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content=[]
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),
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Hint(layer='bottommask',
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ext=['gbs', 'sts', 'bmk', 'smb', 'br', 'bottommask', ],
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name=['sm', 'bmask', 'mask2', 'masksold', 'botmask', 'bottommask',
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'msb', 'B.Mask', ],
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regex='',
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content=[]
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),
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Hint(layer='toppaste',
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ext=['gtp', 'tm', 'toppaste', ],
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name=['sp01', 'toppaste', 'pst', 'F.Paste'],
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regex='',
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content=[]
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),
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Hint(layer='bottompaste',
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ext=['gbp', 'bm', 'bottompaste', ],
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name=['sp02', 'botpaste', 'bottompaste', 'psb', 'B.Paste', ],
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regex='',
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content=[]
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),
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Hint(layer='outline',
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ext=['gko', 'outline', ],
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name=['BDR', 'border', 'out', 'outline', 'Edge.Cuts', ],
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regex='',
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content=[]
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),
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Hint(layer='ipc_netlist',
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ext=['ipc'],
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name=[],
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regex='',
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content=[]
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),
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Hint(layer='drawing',
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ext=['fab'],
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name=['assembly drawing', 'assembly', 'fabrication',
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'fab drawing', 'fab'],
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regex='',
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content=[]
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),
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]
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def layer_signatures(layer_class):
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for hint in hints:
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if hint.layer == layer_class:
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return hint.ext + hint.name
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return []
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def load_layer(filename):
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return PCBLayer.from_cam(common.read(filename))
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def load_layer_data(data, filename=None):
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return PCBLayer.from_cam(common.loads(data, filename))
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def guess_layer_class(filename):
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try:
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layer = guess_layer_class_by_content(filename)
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if layer:
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return layer
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except:
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pass
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try:
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directory, filename = os.path.split(filename)
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name, ext = os.path.splitext(filename.lower())
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for hint in hints:
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if hint.regex:
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if re.findall(hint.regex, filename, re.IGNORECASE):
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return hint.layer
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patterns = [r'^(\w*[.-])*{}([.-]\w*)?$'.format(x) for x in hint.name]
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if ext[1:] in hint.ext or any(re.findall(p, name, re.IGNORECASE) for p in patterns):
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return hint.layer
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except:
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pass
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return 'unknown'
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def guess_layer_class_by_content(filename):
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try:
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file = open(filename, 'r')
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for line in file:
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for hint in hints:
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if len(hint.content) > 0:
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patterns = [r'^(.*){}(.*)$'.format(x) for x in hint.content]
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if any(re.findall(p, line, re.IGNORECASE) for p in patterns):
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return hint.layer
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except:
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pass
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return False
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def sort_layers(layers, from_top=True):
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layer_order = ['outline', 'toppaste', 'topsilk', 'topmask', 'top',
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'internal', 'bottom', 'bottommask', 'bottomsilk',
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'bottompaste']
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append_after = ['drill', 'drawing']
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output = []
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drill_layers = [layer for layer in layers if layer.layer_class == 'drill']
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internal_layers = list(sorted([layer for layer in layers
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if layer.layer_class == 'internal']))
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for layer_class in layer_order:
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if layer_class == 'internal':
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output += internal_layers
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elif layer_class == 'drill':
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output += drill_layers
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else:
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for layer in layers:
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if layer.layer_class == layer_class:
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output.append(layer)
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if not from_top:
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output = list(reversed(output))
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for layer_class in append_after:
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for layer in layers:
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if layer.layer_class == layer_class:
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output.append(layer)
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return output
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class PCBLayer(object):
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""" Base class for PCB Layers
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Parameters
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----------
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source : CAMFile
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CAMFile representing the layer
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Attributes
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----------
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filename : string
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Source Filename
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"""
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@classmethod
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def from_cam(cls, camfile):
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filename = camfile.filename
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layer_class = guess_layer_class(filename)
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if isinstance(camfile, ExcellonFile) or (layer_class == 'drill'):
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return DrillLayer.from_cam(camfile)
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elif layer_class == 'internal':
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return InternalLayer.from_cam(camfile)
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if isinstance(camfile, IPCNetlist):
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layer_class = 'ipc_netlist'
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return cls(filename, layer_class, camfile)
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def __init__(self, filename=None, layer_class=None, cam_source=None, **kwargs):
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super(PCBLayer, self).__init__(**kwargs)
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self.filename = filename
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self.layer_class = layer_class
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self.cam_source = cam_source
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self.surface = None
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self.primitives = cam_source.primitives if cam_source is not None else []
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@property
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def bounds(self):
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if self.cam_source is not None:
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return self.cam_source.bounds
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else:
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return None
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def __repr__(self):
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return '<PCBLayer: {}>'.format(self.layer_class)
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class DrillLayer(PCBLayer):
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@classmethod
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def from_cam(cls, camfile):
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return cls(camfile.filename, camfile)
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def __init__(self, filename=None, cam_source=None, layers=None, **kwargs):
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super(DrillLayer, self).__init__(filename, 'drill', cam_source, **kwargs)
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self.layers = layers if layers is not None else ['top', 'bottom']
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class InternalLayer(PCBLayer):
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@classmethod
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def from_cam(cls, camfile):
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filename = camfile.filename
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try:
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order = int(re.search(r'\d+', filename).group())
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except AttributeError:
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order = 0
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return cls(filename, camfile, order)
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def __init__(self, filename=None, cam_source=None, order=0, **kwargs):
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super(InternalLayer, self).__init__(filename, 'internal', cam_source, **kwargs)
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self.order = order
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def __eq__(self, other):
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if not hasattr(other, 'order'):
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raise TypeError()
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return (self.order == other.order)
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def __ne__(self, other):
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if not hasattr(other, 'order'):
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raise TypeError()
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return (self.order != other.order)
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def __gt__(self, other):
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if not hasattr(other, 'order'):
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raise TypeError()
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return (self.order > other.order)
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def __lt__(self, other):
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if not hasattr(other, 'order'):
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raise TypeError()
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return (self.order < other.order)
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def __ge__(self, other):
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if not hasattr(other, 'order'):
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raise TypeError()
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return (self.order >= other.order)
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def __le__(self, other):
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if not hasattr(other, 'order'):
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raise TypeError()
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return (self.order <= other.order)
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