Пример #1
0
def parse_line_comment(source: Source) -> Comment:
    source.expect('#')
    source.consume_regex(COMMENT_REGEX)
    text = source.last_consumed

    source.expect_regex(re.compile(r'(?P<res>\n|\Z)'))
    return Comment(text)
Пример #2
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def _parse_string(source: Source, string_regex=BASIC_STRING, separator='"') -> str:
    source.expect(separator)
    res = []
    while True:
        if not source.consume_regex(string_regex):
            raise DoesNotMatch('Invalid string starting from {text}'
                               .format(text=source._text[:100]))
        res.append(source.last_consumed)

        # start of some escape character
        if not source.consume('\\'):
            break
        # do nothing if new line chars encountered
        # corresponds to \
        if source.consume_regex(NEWLINE_ESCAPE_CHARS_REGEX):
            pass

        # read unicode characters
        elif source.consume_regex(SHORT_UNICODE_REGEX) or source.consume_regex(LONG_UNICODE_REGEX):
            res.append(chr(int(source.last_consumed, 16)))

        else:
            # fail if no escape character follows
            source.expect_regex(ESCAPE_CHARS_REGEX)
            res.append(ESCAPES_MAPPING[source.last_consumed])

    source.expect(separator)
    return ''.join(res)
Пример #3
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def parse_value(source: Source) -> ValueType:
    boolean_match = source.consume_regex(re.compile(r'(?P<res>(true)|(false))'))
    if boolean_match:
        return source.last_consumed == 'true'

    if source.seek('"""'):
        return _parse_multiline_string(source)

    if source.seek('"'):
        return _parse_basic_string(source)

    if source.seek('\'\'\''):
        return _parse_multiline_literal_string(source)

    if source.seek('\''):
        return _parse_literal_string(source)

    # datetime_match = source.consume_regex(DATETIME_REGEX)
    # if datetime_match:
    #     return _parse_datetime(source.last_consumed)

    number_match = source.consume_regex(NUMBER_REGEX)
    if number_match:
        return _parse_number(source.last_consumed)

    if source.seek('['):
        return _parse_array(source)

    if source.seek('{'):
        return _parse_inline_table(source)

    raise DoesNotMatch('Cannot find valid TOML value in string {text}'
                       .format(text=source._text[:100]))
Пример #4
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def parse_kv_entry(source: Source) -> KVEntry:
    key = parse_keyword(source)

    source.consume_regex(WHITESPACE_REGEX)
    source.expect('=')
    source.consume_regex(WHITESPACE_REGEX)

    val = parse_value(source)
    return KVEntry(key, val)
Пример #5
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def _parse_regex(s: Source, regex: Pattern) -> str:
    match = s.consume_regex(regex)
    if not match:
        raise DoesNotMatch('Cannot match {text}... to regex {regex}'.format(
            text=s._text[:100],
            regex=regex
        ))

    return s.last_consumed
Пример #6
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def _parse_table_name(source: Source) -> Tuple[str, ...]:
    source.consume_regex(WHITESPACE_REGEX)
    keys = [parse_keyword(source)]
    source.consume_regex(WHITESPACE_REGEX)

    while source.consume('.'):
        source.consume_regex(WHITESPACE_REGEX)
        key = parse_keyword(source)
        keys.append(key)
        source.consume_regex(WHITESPACE_REGEX)

    return tuple(keys)
Пример #7
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def _parse_literal_string(source: Source, string_regex=LITERAL_STRING, separator='\'') -> str:
    source.expect(separator)

    is_matched = source.consume_regex(string_regex)
    if not is_matched:
        raise DoesNotMatch()

    parsed_str = source.last_consumed
    source.expect(separator)

    return parsed_str
Пример #8
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def parse_keyword(source: Source) -> str:
    if source.seek('"'):
        return _parse_basic_string(source)

    if source.seek('\''):
        return _parse_literal_string(source)

    match = source.consume_regex(KEYWORD_REGEX)
    if not match:
        raise DoesNotMatch()

    return source.last_consumed
Пример #9
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def _parse_array(source: Source) -> List[ValueType]:
    array_type = None  # type: type
    items = []  # type: List[ValueType]
    source.expect('[')

    try:
        while True:
            source.consume_regex(ENCLOSING_WHITESPACE_CHARS)
            parsed_val = parse_value(source)

            if array_type is not None and \
                    not isinstance(parsed_val, array_type):
                raise MixedTypesArray

            if array_type is None:
                array_type = type(parsed_val)

            items.append(parsed_val)

            source.consume_regex(ENCLOSING_WHITESPACE_CHARS)
            source.expect(',')
    except (ExpectationError, DoesNotMatch):
        pass

    source.consume_regex(ENCLOSING_WHITESPACE_CHARS)
    source.expect(']')
    return items
Пример #10
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def parse_statements(text: str) -> List[Any]:
    source = Source(text)
    statements = []
    while len(source._text) > 0:
        source.consume_regex(ENCLOSING_WHITESPACE_CHARS)
        # source.consume_regex(TILL_NEW_LINE_REGEX)
        # is_consumed = source.consume('\n')
        # if is_consumed:
        #     statements.append(NewLine())

        statement = parse_statement(source)
        # source.consume_regex(TILL_NEW_LINE_REGEX)
        # #
        # is_consumed = source.consume('\n')
        # if is_consumed:
        #     statements.append(NewLine())
        source.consume_regex(ENCLOSING_WHITESPACE_CHARS)

        statements.append(statement)

    source.expect_eof()
    return statements
Пример #11
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def _parse_inline_table(source: Source) -> InlineTable:
    table = InlineTable()
    source.expect('{')
    if not source.consume('}'):
        source.consume_regex(WHITESPACE_REGEX)
        kv_entry = parse_kv_entry(source)

        if source.last_consumed == '}':
            raise InvalidTomlError('Cannot have nested inline tables.')

        table[kv_entry.key] = kv_entry.val

        while source.consume(','):
            source.consume_regex(WHITESPACE_REGEX)
            kv_entry = parse_kv_entry(source)
            table[kv_entry.key] = kv_entry.val
            source.consume_regex(WHITESPACE_REGEX)

        source.expect('}')

    return table