mirror of
https://github.com/SickGear/SickGear.git
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e56303798c
Initial SickGear for Python 3.
287 lines
8.9 KiB
Python
287 lines
8.9 KiB
Python
#!/usr/bin/env python2
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# -*- coding: utf-8 -*-
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#
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# GuessIt - A library for guessing information from filenames
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# Copyright (c) 2011 Nicolas Wack <wackou@gmail.com>
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#
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# GuessIt is free software; you can redistribute it and/or modify it under
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# the terms of the Lesser GNU General Public License as published by
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# the Free Software Foundation; either version 3 of the License, or
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# (at your option) any later version.
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#
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# GuessIt 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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# Lesser GNU General Public License for more details.
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#
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# You should have received a copy of the Lesser GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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from __future__ import unicode_literals
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from guessit import UnicodeMixin, base_text_type, Guess
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from guessit.textutils import clean_string, str_fill
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from guessit.patterns import group_delimiters
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from guessit.guess import (merge_similar_guesses, merge_all,
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choose_int, choose_string)
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import copy
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import logging
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log = logging.getLogger(__name__)
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class BaseMatchTree(UnicodeMixin):
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"""A MatchTree represents the hierarchical split of a string into its
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constituent semantic groups."""
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def __init__(self, string='', span=None, parent=None):
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self.string = string
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self.span = span or (0, len(string))
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self.parent = parent
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self.children = []
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self.guess = Guess()
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@property
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def value(self):
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return self.string[self.span[0]:self.span[1]]
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@property
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def clean_value(self):
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return clean_string(self.value)
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@property
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def offset(self):
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return self.span[0]
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@property
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def info(self):
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result = dict(self.guess)
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for c in self.children:
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result.update(c.info)
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return result
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@property
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def root(self):
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if not self.parent:
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return self
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return self.parent.root
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@property
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def depth(self):
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if self.is_leaf():
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return 0
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return 1 + max(c.depth for c in self.children)
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def is_leaf(self):
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return self.children == []
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def add_child(self, span):
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child = MatchTree(self.string, span=span, parent=self)
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self.children.append(child)
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def partition(self, indices):
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indices = sorted(indices)
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if indices[0] != 0:
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indices.insert(0, 0)
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if indices[-1] != len(self.value):
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indices.append(len(self.value))
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for start, end in zip(indices[:-1], indices[1:]):
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self.add_child(span=(self.offset + start,
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self.offset + end))
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def split_on_components(self, components):
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offset = 0
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for c in components:
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start = self.value.find(c, offset)
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end = start + len(c)
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self.add_child(span=(self.offset + start,
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self.offset + end))
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offset = end
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def nodes_at_depth(self, depth):
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if depth == 0:
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yield self
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for child in self.children:
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for node in child.nodes_at_depth(depth - 1):
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yield node
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@property
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def node_idx(self):
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if self.parent is None:
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return ()
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return self.parent.node_idx + (self.parent.children.index(self),)
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def node_at(self, idx):
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if not idx:
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return self
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try:
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return self.children[idx[0]].node_at(idx[1:])
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except:
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raise ValueError('Non-existent node index: %s' % (idx,))
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def nodes(self):
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yield self
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for child in self.children:
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for node in child.nodes():
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yield node
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def _leaves(self):
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if self.is_leaf():
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yield self
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else:
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for child in self.children:
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# pylint: disable=W0212
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for leaf in child._leaves():
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yield leaf
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def leaves(self):
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return list(self._leaves())
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def to_string(self):
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empty_line = ' ' * len(self.string)
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def to_hex(x):
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if isinstance(x, int):
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return str(x) if x < 10 else chr(55 + x)
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return x
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def meaning(result):
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mmap = { 'episodeNumber': 'E',
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'season': 'S',
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'extension': 'e',
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'format': 'f',
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'language': 'l',
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'country': 'C',
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'videoCodec': 'v',
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'audioCodec': 'a',
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'website': 'w',
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'container': 'c',
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'series': 'T',
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'title': 't',
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'date': 'd',
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'year': 'y',
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'releaseGroup': 'r',
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'screenSize': 's'
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}
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if result is None:
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return ' '
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for prop, l in mmap.items():
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if prop in result:
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return l
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return 'x'
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lines = [ empty_line ] * (self.depth + 2) # +2: remaining, meaning
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lines[-2] = self.string
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for node in self.nodes():
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if node == self:
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continue
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idx = node.node_idx
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depth = len(idx) - 1
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if idx:
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lines[depth] = str_fill(lines[depth], node.span,
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to_hex(idx[-1]))
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if node.guess:
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lines[-2] = str_fill(lines[-2], node.span, '_')
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lines[-1] = str_fill(lines[-1], node.span, meaning(node.guess))
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lines.append(self.string)
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return '\n'.join(lines)
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def __unicode__(self):
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return self.to_string()
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class MatchTree(BaseMatchTree):
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"""The MatchTree contains a few "utility" methods which are not necessary
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for the BaseMatchTree, but add a lot of convenience for writing
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higher-level rules."""
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def _unidentified_leaves(self,
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valid=lambda leaf: len(leaf.clean_value) >= 2):
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for leaf in self._leaves():
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if not leaf.guess and valid(leaf):
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yield leaf
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def unidentified_leaves(self,
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valid=lambda leaf: len(leaf.clean_value) >= 2):
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return list(self._unidentified_leaves(valid))
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def _leaves_containing(self, property_name):
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if isinstance(property_name, base_text_type):
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property_name = [ property_name ]
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for leaf in self._leaves():
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for prop in property_name:
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if prop in leaf.guess:
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yield leaf
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break
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def leaves_containing(self, property_name):
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return list(self._leaves_containing(property_name))
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def first_leaf_containing(self, property_name):
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try:
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return next(self._leaves_containing(property_name))
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except StopIteration:
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return None
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def _previous_unidentified_leaves(self, node):
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node_idx = node.node_idx
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for leaf in self._unidentified_leaves():
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if leaf.node_idx < node_idx:
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yield leaf
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def previous_unidentified_leaves(self, node):
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return list(self._previous_unidentified_leaves(node))
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def _previous_leaves_containing(self, node, property_name):
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node_idx = node.node_idx
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for leaf in self._leaves_containing(property_name):
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if leaf.node_idx < node_idx:
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yield leaf
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def previous_leaves_containing(self, node, property_name):
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return list(self._previous_leaves_containing(node, property_name))
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def is_explicit(self):
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"""Return whether the group was explicitly enclosed by
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parentheses/square brackets/etc."""
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return (self.value[0] + self.value[-1]) in group_delimiters
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def matched(self):
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# we need to make a copy here, as the merge functions work in place and
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# calling them on the match tree would modify it
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parts = [node.guess for node in self.nodes() if node.guess]
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parts = copy.deepcopy(parts)
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# 1- try to merge similar information together and give it a higher
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# confidence
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for int_part in ('year', 'season', 'episodeNumber'):
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merge_similar_guesses(parts, int_part, choose_int)
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for string_part in ('title', 'series', 'container', 'format',
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'releaseGroup', 'website', 'audioCodec',
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'videoCodec', 'screenSize', 'episodeFormat',
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'audioChannels', 'idNumber'):
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merge_similar_guesses(parts, string_part, choose_string)
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# 2- merge the rest, potentially discarding information not properly
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# merged before
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result = merge_all(parts,
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append=['language', 'subtitleLanguage', 'other'])
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log.debug('Final result: ' + result.nice_string())
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return result
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