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2 Commits
d7be39d894
...
multiple_f
| Author | SHA1 | Date | |
|---|---|---|---|
| b86d82fb87 | |||
| e636be1dc2 |
2
.gitignore
vendored
2
.gitignore
vendored
@@ -1,2 +1,4 @@
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*.pyc
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venv
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data
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.idea
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@@ -4,20 +4,34 @@ import sys
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from lxml import etree
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from conversion_utils.jos_msds_and_properties import Converter, Msd
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converter = Converter()
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def translate_msd(msd_text, lang, lemma=None):
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""" Translates msd using conversion_utils library. """
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return converter.properties_to_msd(converter.msd_to_properties(Msd(msd_text, 'en'), 'sl', lemma),
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'sl').code
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class Sentence:
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def __init__(self, _id, no_ud=False, system='jos'):
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self._id = _id
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self.items = []
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self.links = []
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self.srl_links = []
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self.no_ud = no_ud
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self.system = system
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def add_item(self, token, lemma, upos, upos_other, xpos, misc):
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self.items.append([token, lemma, upos, upos_other, xpos, "SpaceAfter=No" in misc.split('|')])
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no_space_after = 'SpaceAfter' in misc and misc['SpaceAfter'] == 'No'
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ner = misc['NER'] if 'NER' in misc else 'O'
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self.items.append([token, lemma, upos, upos_other, xpos, no_space_after, ner])
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def add_link(self, link_ref, link_type):
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self.links.append([link_ref, link_type])
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def add_srl_link(self, link_ref, link_type):
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self.srl_links.append([link_ref, link_type])
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def as_xml(self, id_prefix=None):
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if id_prefix:
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xml_id = id_prefix + '.' + self._id
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@@ -27,8 +41,24 @@ class Sentence:
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set_xml_attr(base, 'id', xml_id)
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id_counter = 1
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in_seg = False
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sentence_base = base
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for item in self.items:
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token, lemma, upos, upos_other, xpos, no_space_after = item
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token, lemma, upos, upos_other, xpos, no_space_after, ner = item
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if ner[0] == 'B':
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if in_seg:
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sentence_base.append(base)
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in_seg = True
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base = etree.Element('seg')
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base.set('type', 'name')
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base.set('subtype', f'{ner[2:].lower()}')
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elif ner[0] == 'O':
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if in_seg:
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sentence_base.append(base)
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base = sentence_base
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in_seg = False
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if xpos in {'U', 'Z'}: # hmm, safe only as long as U is unused in English tagset and Z in Slovenian one
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to_add = etree.Element('pc')
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@@ -36,6 +66,7 @@ class Sentence:
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to_add = etree.Element('w')
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to_add.set('lemma', lemma)
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xpos = translate_msd(xpos,'sl',lemma)
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to_add.set('ana', 'mte:' + xpos)
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if not self.no_ud:
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if upos_other != '_':
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@@ -53,6 +84,11 @@ class Sentence:
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base.append(to_add)
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if in_seg:
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sentence_base.append(base)
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base = sentence_base
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# depparsing linkGrp
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link_grp = etree.Element('linkGrp')
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link_grp.set('corresp', '#'+xml_id)
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link_grp.set('targFunc', 'head argument')
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@@ -67,6 +103,23 @@ class Sentence:
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link.set('target', '#' + xml_id + '.' + link_ref + ' #' + xml_id + '.' + str(link_id + 1))
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link_grp.append(link)
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base.append(link_grp)
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# srl linkGrp
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if self.srl_links:
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link_grp = etree.Element('linkGrp')
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link_grp.set('corresp', '#' + xml_id)
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link_grp.set('targFunc', 'head argument')
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link_grp.set('type', 'SRL')
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for link_id, item in enumerate(self.srl_links):
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link_ref, link_type = item
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link = etree.Element('link')
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link.set('ana', 'srl:' + link_type.replace(':', '_'))
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if link_ref == u'0':
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link.set('target', '#' + xml_id + ' #' + xml_id + '.' + str(link_id + 1))
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else:
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link.set('target', '#' + xml_id + '.' + link_ref + ' #' + xml_id + '.' + str(link_id + 1))
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link_grp.append(link)
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base.append(link_grp)
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return base
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@@ -93,35 +146,28 @@ class Paragraph:
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class TeiDocument:
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def __init__(self, _id, paragraphs=list()):
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def __init__(self, _id, paragraphs=list(), metadata=None):
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self._id = _id
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self.metadata = metadata
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self.paragraphs = paragraphs
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def as_xml(self):
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root = etree.Element('TEI')
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root.set('xmlns', 'http://www.tei-c.org/ns/1.0')
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set_xml_attr(root, 'lang', 'sl')
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root = etree.Element('div')
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xml_id = self._id
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if xml_id is not None:
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set_xml_attr(root, 'id', xml_id)
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tei_header = etree.SubElement(root, 'teiHeader')
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text = etree.SubElement(root, 'text')
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body = etree.SubElement(text, 'body')
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bibl = etree.Element('bibl')
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bibl.set('corresp', f'#{xml_id}')
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bibl.set('n', f'#{xml_id}')
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for k, v in self.metadata.items():
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bibl_el = etree.Element(k)
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bibl_el.text = v
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bibl.append(bibl_el)
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root.append(bibl)
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for para in self.paragraphs:
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body.append(para.as_xml(id_prefix=xml_id))
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encoding_desc = etree.SubElement(tei_header, 'encodingDesc')
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tags_decl = etree.SubElement(encoding_desc, 'tagsDecl')
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namespace = etree.SubElement(tags_decl, 'namespace')
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namespace.set('name', 'http://www.tei-c.org/ns/1.0')
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for tag in ['p', 's', 'pc', 'w']:
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count = int(text.xpath('count(.//{})'.format(tag)))
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tag_usage = etree.SubElement(namespace, 'tagUsage')
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tag_usage.set('gi', tag)
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tag_usage.set('occurs', str(count))
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root.append(para.as_xml(id_prefix=xml_id))
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return root
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def add_paragraph(self, paragraph):
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@@ -129,10 +175,13 @@ class TeiDocument:
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def build_tei_etrees(documents):
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elements = []
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root = etree.Element('body')
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root.set('xmlns', 'http://www.tei-c.org/ns/1.0')
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set_xml_attr(root, 'base', 'korpus.xml')
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set_xml_attr(root, 'lang', 'sl')
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for document in documents:
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elements.append(document.as_xml())
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return elements
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root.append(document.as_xml())
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return root
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def set_xml_attr(node, attribute, value):
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@@ -155,11 +204,12 @@ def is_metaline(line):
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return False
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def construct_tei_documents(conllu_lines):
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def construct_tei_documents(conllu_lines, metadata):
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documents = []
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doc_id = None
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document_paragraphs = []
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doc_id_num = 0
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document_paragraphs = []
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para_id = None
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para_buffer = []
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@@ -171,9 +221,12 @@ def construct_tei_documents(conllu_lines):
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if len(para_buffer) > 0:
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document_paragraphs.append(construct_paragraph(para_id, para_buffer))
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if len(document_paragraphs) > 0:
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print(metadata)
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print(doc_id_num)
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documents.append(
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TeiDocument(doc_id, document_paragraphs))
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TeiDocument(doc_id, document_paragraphs, metadata[doc_id_num]))
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document_paragraphs = []
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doc_id_num += 1
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doc_id = val
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elif key == 'newpar id':
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if len(para_buffer) > 0:
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@@ -191,7 +244,8 @@ def construct_tei_documents(conllu_lines):
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if len(document_paragraphs) > 0:
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documents.append(
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TeiDocument(doc_id, document_paragraphs))
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TeiDocument(doc_id, document_paragraphs, metadata[doc_id_num]))
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doc_id_num += 1
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return documents
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@@ -234,7 +288,7 @@ def construct_sentence(sent_id, lines):
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upos_other = tokens[5]
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depparse_link = tokens[6]
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depparse_link_name = tokens[7]
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misc = tokens[9]
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misc = {el.split('=')[0]: el.split('=')[1] for el in tokens[9].split('|')}
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sentence.add_item(
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token,
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@@ -247,17 +301,22 @@ def construct_sentence(sent_id, lines):
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sentence.add_link(
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depparse_link,
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depparse_link_name)
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if 'SRL' in misc:
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sentence.add_srl_link(
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depparse_link,
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misc['SRL'])
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return sentence
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def construct_tei_etrees(conllu_lines):
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documents = construct_tei_documents(conllu_lines)
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def construct_tei_etrees(conllu_lines, metadata):
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documents = construct_tei_documents(conllu_lines, metadata)
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return build_tei_etrees(documents)
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def convert_file(input_file_name, output_file_name):
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def convert_file(input_file_name, output_file_name, metadata):
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input_file = open(input_file_name, 'r')
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root = construct_tei_etrees(input_file)[0]
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root = construct_tei_etrees(input_file, metadata)
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tree = etree.ElementTree(root)
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tree.write(output_file_name, encoding='UTF-8', pretty_print=True)
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input_file.close()
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@@ -230,10 +230,7 @@ class Msd:
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return isinstance(obj, Msd) and self.code == obj.code and self.language == obj.language
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class CustomException(Exception):
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pass
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class MsdException(CustomException):
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class ConverterException(Exception):
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pass
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class Converter:
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@@ -256,46 +253,17 @@ class Converter:
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except:
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exit('Could not parse specifications xml file provided.')
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def is_valid_msd(self, msd):
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"""Verify if the Msd code is in the standard JOS set."""
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return msd.code in self.specifications.codes_map[msd.language]
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def check_valid_msd(self, msd, require_valid_flag):
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"""If the Msd code is not valid, raise an exception or give a warning."""
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if (not self.is_valid_msd(msd)):
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message = 'The msd {} is unknown'.format(msd.code)
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if (require_valid_flag):
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raise MsdException(message)
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else:
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print('[WARN] ' + message)
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def msd_to_properties(self, msd, language, lemma=None, require_valid_flag=False, warn_level_flag=False):
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"""Convert Msd to Properties.
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The language of the generated Properties is specified and can differ from the Msd language.
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If require_valid_flag is True, a MsdException is raised if the MSD is not in the standard
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JOS set. Otherwise only a warning is given.
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If you care about accurate level information (i.e., which properties are lexeme-level and
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which are form-level), note that some features depends on the particular lemma. For such
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features, if lemma is not provided and warn_level_flag is True, a warning will be given.
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If a MSD has dashes in place of letters for certain features, they are skipped, so that
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these features are not included in the generated Properties object.
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Parameters:
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msd(Msd): the JOS MSD to convert
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language(str): the language for the Properties object to be generated: "en" (English) or "sl" (Slovene)
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lemma(str): the lemma of the word form with the MSD
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require_valid_flag(boolean): whether to raise a MsdException or only warn if a non-standard MSD is provided
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warn_level_flag(boolean): whether to warn if cannot be sure of level of a property
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Returns:
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Properties: the result of the conversion of the Msd in the language requested
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def msd_to_properties(self, msd, language, lemma=None):
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"""Convert Msd to Properties (possibly in the other language).
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The level (lexeme vs form) of certain reflexive msd features
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depends on the lemma, so set the lemma if you need accurate
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level information.
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"""
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self.check_valid_msd(msd, require_valid_flag)
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# if (msd.code not in self.specifications.codes_map[msd.language]):
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# raise ConverterException('The msd {} is unknown'.format(msd.code))
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category_char = msd.code[0].lower()
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value_chars = msd.code[1:]
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category = self.specifications.find_category_by_code(category_char, msd.language)
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@@ -309,8 +277,8 @@ class Converter:
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value = feature.find_value_by_char(value_char, msd.language)
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feature_name = feature.names.get(language)
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feature_value = value.names.get(language)
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if (warn_level_flag and lemma is None and (category_name, index) in [(le[0], le[1]) for le in LEVEL_EXCEPTIONS]):
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print('[WARN] The level (lexeme vs form) of feature (category={category}, position={position}) may be incorrect, as it is lemma-specific and no lemma has been specified.'
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if (lemma is None and (category_name, index) in [(le[0], le[1]) for le in LEVEL_EXCEPTIONS]):
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print('[WARN] The level of feature (category={category}, position={position}) may be incorrect, as it is lemma-specific and no lemma has been specified.'
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.format(category=category_name, position=index))
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level_exception_flag = (category_name, feature.position, lemma) in LEVEL_EXCEPTIONS
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lexeme_level_flag = feature.lexeme_level_flag if not level_exception_flag else not feature.lexeme_level_flag
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@@ -321,21 +289,8 @@ class Converter:
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form_feature_map[feature_name] = feature_value
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return Properties(category_name, lexeme_feature_map, form_feature_map, language)
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def properties_to_msd(self, properties, language, require_valid_flag=False):
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"""Convert Properties to Msd.
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The language of the generated Msd is specified and can differ from the Properties language.
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If require_valid_flag is True, a MsdException is raised if the generated MSD is not in
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the standard JOS set. Otherwise only a warning is given.
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Any skipped positions among the Properties are represented as dashes in the MSD.
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Parameters:
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properties(Properties): the properties to convert
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language(str): the language for the Msd object to be returned: "en" (English) or "sl" (Slovene)
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require_valid_flag(boolean): whether to raise a MsdException or only warn if a non-standard MSD is generated
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"""
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def properties_to_msd(self, properties, language):
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"""Convert Properties to msd (possibly in the other language)."""
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category = self.specifications.find_category_by_name(properties.category, properties.language)
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category_char = category.codes.get(language).upper()
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feature_map = properties.lexeme_feature_map.copy()
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@@ -353,9 +308,7 @@ class Converter:
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msd_code += '-'
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i += 1
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msd_code += position_map[position]
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msd = Msd(msd_code, language)
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self.check_valid_msd(msd, require_valid_flag)
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return msd
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return Msd(msd_code, language)
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def translate_msd(self, msd, language):
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return self.properties_to_msd(self.msd_to_properties(msd, language), language)
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59
run.py
Normal file
59
run.py
Normal file
@@ -0,0 +1,59 @@
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import os
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from conversion_utils.conllu_to_tei import convert_file
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import csv
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# dir_path = 'data/conllu'
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# out_dir_path = 'data/tei'
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# for filename in os.listdir(dir_path):
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# in_name = os.path.join(dir_path, filename)
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# out_filename = filename.split('.')[:-1]
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# out_filename = '.'.join(out_filename) + '.xml'
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# out_name = os.path.join(out_dir_path, out_filename)
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# convert_file(in_name, out_name)
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metadata_list = []
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with open('data/metadata.csv', newline='') as csvfile:
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for line in csv.reader(csvfile):
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metadata_list.append(line)
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metadata = [{} for i in range(len(metadata_list[0]) - 1)]
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for i in range(1, len(metadata_list[0])):
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metadata[i - 1]['title'] = metadata_list[0][i]
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metadata[i - 1]['subtitle'] = metadata_list[1][i]
|
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metadata[i - 1]['authors'] = metadata_list[2][i]
|
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metadata[i - 1]['first_edition'] = metadata_list[3][i]
|
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metadata[i - 1]['edition_in_corpus'] = metadata_list[4][i]
|
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metadata[i - 1]['layer_according_to_SEJO'] = metadata_list[5][i]
|
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metadata[i - 1]['audience'] = metadata_list[6][i]
|
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metadata[i - 1]['hours_of_classes'] = metadata_list[7][i]
|
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metadata[i - 1]['publisher'] = metadata_list[8][i]
|
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metadata[i - 1]['file_name'] = metadata_list[9][i]
|
||||
|
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|
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dir_path = 'data/conllu'
|
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out_path = 'data/tei/tei.xml'
|
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out_dir = 'data/conllu.conllu'
|
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# out_dir = dir_path + '/conllu_small.conllu'
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metadata_indices = [6, 16, 13, 7, 2, 1, 3, 14, 15, 0, 8, 4, 11, 9, 12, 5, 10]
|
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out_file = open(out_dir, 'w')
|
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metadata_indices = []
|
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for fn_i, filename in enumerate(os.listdir(dir_path)):
|
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in_name = os.path.join(dir_path, filename)
|
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out_filename = filename.split('.')[:-1]
|
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out_filename = '.'.join(out_filename)
|
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for m_i, el in enumerate(metadata):
|
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if el['file_name'] == out_filename:
|
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metadata_indices.append(m_i)
|
||||
out_filename = out_filename + '.xml'
|
||||
out_name = os.path.join(out_dir, out_filename)
|
||||
in_file = open(in_name, 'r')
|
||||
data = f'# newdoc id = doc{str(fn_i+1)}\n'
|
||||
data += in_file.read()
|
||||
in_file.close()
|
||||
out_file.write(data)
|
||||
out_file.close()
|
||||
|
||||
shuffled_metadata = [metadata[el] for el in metadata_indices]
|
||||
|
||||
|
||||
convert_file(out_dir, out_path, shuffled_metadata)
|
||||
2
setup.py
2
setup.py
@@ -6,7 +6,7 @@ setup(name='conversion_utils',
|
||||
url='https://gitea.cjvt.si/generic/conversion_utils',
|
||||
author='Cyprian Laskowski',
|
||||
author_email='cyp@cjvt.si',
|
||||
packages=['conversion_utils', 'conversion_utils.resources', 'conversion_utils.tests'],
|
||||
packages=['conversion_utils', 'conversion_utils.resources'],
|
||||
install_requires=['importlib_resources'],
|
||||
include_package_data=True,
|
||||
zip_safe=True)
|
||||
|
||||
@@ -1,6 +1,6 @@
|
||||
import unittest
|
||||
|
||||
from conversion_utils.jos_msds_and_properties import Converter, Msd, MsdException
|
||||
from conversion_utils.jos_msds_and_properties import Converter, Msd
|
||||
|
||||
class JosMsdToPropertiesTestCase(unittest.TestCase):
|
||||
|
||||
@@ -55,25 +55,3 @@ class JosMsdToPropertiesTestCase(unittest.TestCase):
|
||||
self.assertEqual(properties.category, 'punctuation')
|
||||
self.assertEqual(properties.lexeme_feature_map, {})
|
||||
self.assertEqual(properties.form_feature_map, {})
|
||||
|
||||
def test_good_msd_with_require_valid(self):
|
||||
properties = self.converter.msd_to_properties(Msd('Ncfpd', 'en'), 'en', require_valid_flag=True)
|
||||
self.assertEqual(properties.language, 'en')
|
||||
self.assertEqual(properties.category, 'noun')
|
||||
self.assertEqual(properties.lexeme_feature_map, {'type':'common', 'gender':'feminine'})
|
||||
self.assertEqual(properties.form_feature_map, {'number':'plural', 'case':'dative'})
|
||||
|
||||
def test_bad_msd(self):
|
||||
properties = self.converter.msd_to_properties(Msd('N---d', 'en'), 'en')
|
||||
self.assertEqual(properties.language, 'en')
|
||||
self.assertEqual(properties.category, 'noun')
|
||||
self.assertEqual(properties.lexeme_feature_map, {})
|
||||
self.assertEqual(properties.form_feature_map, {'case':'dative'})
|
||||
|
||||
def test_bad_msd_with_require_valid(self):
|
||||
try:
|
||||
self.converter.msd_to_properties(Msd('N---d', 'en'), 'en', require_valid_flag=True)
|
||||
fails = False
|
||||
except MsdException:
|
||||
fails = True
|
||||
self.assertEqual(fails, True)
|
||||
@@ -1,6 +1,6 @@
|
||||
import unittest
|
||||
|
||||
from conversion_utils.jos_msds_and_properties import Converter, Properties, MsdException
|
||||
from conversion_utils.jos_msds_and_properties import Converter, Properties
|
||||
|
||||
class JosPropertiesToMsdTestCase(unittest.TestCase):
|
||||
|
||||
@@ -41,21 +41,3 @@ class JosPropertiesToMsdTestCase(unittest.TestCase):
|
||||
msd = self.converter.properties_to_msd(Properties('punctuation', {}, {}, 'en'), 'sl')
|
||||
self.assertEqual(msd.language, 'sl')
|
||||
self.assertEqual(msd.code, 'U')
|
||||
|
||||
def test_good_msd_with_require_valid(self):
|
||||
msd = self.converter.properties_to_msd(Properties('noun', {'type':'common', 'gender':'feminine'}, {'number':'dual', 'case':'nominative'}, 'en'), 'en', require_valid_flag=True)
|
||||
self.assertEqual(msd.language, 'en')
|
||||
self.assertEqual(msd.code, 'Ncfdn')
|
||||
|
||||
def test_bad_msd(self):
|
||||
msd = self.converter.properties_to_msd(Properties('noun', {'type':'common'}, {'number':'dual'}, 'en'), 'en')
|
||||
self.assertEqual(msd.language, 'en')
|
||||
self.assertEqual(msd.code, 'Nc-d')
|
||||
|
||||
def test_bad_msd_with_require_valid(self):
|
||||
try:
|
||||
self.converter.properties_to_msd(Properties('noun', {'type':'common'}, {'number':'dual'}, 'en'), 'en', require_valid_flag=True)
|
||||
fails = False
|
||||
except MsdException:
|
||||
fails = True
|
||||
self.assertEqual(fails, True)
|
||||
Reference in New Issue
Block a user