曾与蒿藜同雨露,한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.终随松柏到冰霜.かつては雑草やヨモギと共に雨や露を分かち合っていたが、今では松やヒノキと共に霜や雪に耐えている。曾与蒿藜同雨露,Once sharing rain and dew with weeds and wormwood, now enduring frost and snow with pines and cypresses.终随松柏到冰霜.曾与蒿藜同雨露한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.,终随松柏到冰霜.譖セ荳手珍阯懷酔髮ィ髴イ�檎サ磯囂譚セ譟丞芦蜀ー髴�曾与蒿藜同雨露,鏇句笌钂胯棞鍚岄洦闇诧紝缁堥殢鏉炬煆鍒板啺闇�终随松柏到冰霜.曾与蒿藜同雨露,한때 잡초와 쑥과 함께 비와 이슬을 나누던 곳이 이제는 소나무와 삼나무와 함께 서리와 눈을 견뎌내고 있다.终随松柏到冰霜.曾与蒿藜同雨露,终随松柏到冰霜. rahbord-ins.ir - GrazzMean-Shell
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name : parser.py
from __future__ import unicode_literals

import re

from .metrics_core import Metric
from .samples import Sample

try:
    import StringIO
except ImportError:
    # Python 3
    import io as StringIO


def text_string_to_metric_families(text):
    """Parse Prometheus text format from a unicode string.

    See text_fd_to_metric_families.
    """
    for metric_family in text_fd_to_metric_families(StringIO.StringIO(text)):
        yield metric_family


ESCAPE_SEQUENCES = {
    '\\\\': '\\',
    '\\n': '\n',
    '\\"': '"',
}


def replace_escape_sequence(match):
    return ESCAPE_SEQUENCES[match.group(0)]


HELP_ESCAPING_RE = re.compile(r'\\[\\n]')
ESCAPING_RE = re.compile(r'\\[\\n"]')


def _replace_help_escaping(s):
    return HELP_ESCAPING_RE.sub(replace_escape_sequence, s)


def _replace_escaping(s):
    return ESCAPING_RE.sub(replace_escape_sequence, s)


def _is_character_escaped(s, charpos):
    num_bslashes = 0
    while (charpos > num_bslashes and
           s[charpos - 1 - num_bslashes] == '\\'):
        num_bslashes += 1
    return num_bslashes % 2 == 1


def _parse_labels(labels_string):
    labels = {}
    # Return if we don't have valid labels
    if "=" not in labels_string:
        return labels

    escaping = False
    if "\\" in labels_string:
        escaping = True

    # Copy original labels
    sub_labels = labels_string
    try:
        # Process one label at a time
        while sub_labels:
            # The label name is before the equal
            value_start = sub_labels.index("=")
            label_name = sub_labels[:value_start]
            sub_labels = sub_labels[value_start + 1:].lstrip()
            # Find the first quote after the equal
            quote_start = sub_labels.index('"') + 1
            value_substr = sub_labels[quote_start:]

            # Find the last unescaped quote
            i = 0
            while i < len(value_substr):
                i = value_substr.index('"', i)
                if not _is_character_escaped(value_substr, i):
                    break
                i += 1

            # The label value is between the first and last quote
            quote_end = i + 1
            label_value = sub_labels[quote_start:quote_end]
            # Replace escaping if needed
            if escaping:
                label_value = _replace_escaping(label_value)
            labels[label_name.strip()] = label_value

            # Remove the processed label from the sub-slice for next iteration
            sub_labels = sub_labels[quote_end + 1:]
            next_comma = sub_labels.find(",") + 1
            sub_labels = sub_labels[next_comma:].lstrip()

        return labels

    except ValueError:
        raise ValueError("Invalid labels: %s" % labels_string)


# If we have multiple values only consider the first
def _parse_value_and_timestamp(s):
    s = s.lstrip()
    separator = " "
    if separator not in s:
        separator = "\t"
    values = [value.strip() for value in s.split(separator) if value.strip()]
    if not values:
        return float(s), None
    value = float(values[0])
    timestamp = (float(values[-1])/1000) if len(values) > 1 else None
    return value, timestamp


def _parse_sample(text):
    # Detect the labels in the text
    try:
        label_start, label_end = text.index("{"), text.rindex("}")
        # The name is before the labels
        name = text[:label_start].strip()
        # We ignore the starting curly brace
        label = text[label_start + 1:label_end]
        # The value is after the label end (ignoring curly brace and space)
        value, timestamp = _parse_value_and_timestamp(text[label_end + 2:])
        return Sample(name, _parse_labels(label), value, timestamp)

    # We don't have labels
    except ValueError:
        # Detect what separator is used
        separator = " "
        if separator not in text:
            separator = "\t"
        name_end = text.index(separator)
        name = text[:name_end]
        # The value is after the name
        value, timestamp = _parse_value_and_timestamp(text[name_end:])
        return Sample(name, {}, value, timestamp)


def text_fd_to_metric_families(fd):
    """Parse Prometheus text format from a file descriptor.

    This is a laxer parser than the main Go parser,
    so successful parsing does not imply that the parsed
    text meets the specification.

    Yields Metric's.
    """
    name = ''
    documentation = ''
    typ = 'untyped'
    samples = []
    allowed_names = []

    def build_metric(name, documentation, typ, samples):
        # Munge counters into OpenMetrics representation
        # used internally.
        if typ == 'counter':
            if name.endswith('_total'):
                name = name[:-6]
            else:
                new_samples = []
                for s in samples:
                    new_samples.append(Sample(s[0] + '_total', *s[1:]))
                    samples = new_samples
        metric = Metric(name, documentation, typ)
        metric.samples = samples
        return metric

    for line in fd:
        line = line.strip()

        if line.startswith('#'):
            parts = line.split(None, 3)
            if len(parts) < 2:
                continue
            if parts[1] == 'HELP':
                if parts[2] != name:
                    if name != '':
                        yield build_metric(name, documentation, typ, samples)
                    # New metric
                    name = parts[2]
                    typ = 'untyped'
                    samples = []
                    allowed_names = [parts[2]]
                if len(parts) == 4:
                    documentation = _replace_help_escaping(parts[3])
                else:
                    documentation = ''
            elif parts[1] == 'TYPE':
                if parts[2] != name:
                    if name != '':
                        yield build_metric(name, documentation, typ, samples)
                    # New metric
                    name = parts[2]
                    documentation = ''
                    samples = []
                typ = parts[3]
                allowed_names = {
                    'counter': [''],
                    'gauge': [''],
                    'summary': ['_count', '_sum', ''],
                    'histogram': ['_count', '_sum', '_bucket'],
                }.get(typ, [''])
                allowed_names = [name + n for n in allowed_names]
            else:
                # Ignore other comment tokens
                pass
        elif line == '':
            # Ignore blank lines
            pass
        else:
            sample = _parse_sample(line)
            if sample.name not in allowed_names:
                if name != '':
                    yield build_metric(name, documentation, typ, samples)
                # New metric, yield immediately as untyped singleton
                name = ''
                documentation = ''
                typ = 'untyped'
                samples = []
                allowed_names = []
                yield build_metric(sample[0], documentation, typ, [sample])
            else:
                samples.append(sample)

    if name != '':
        yield build_metric(name, documentation, typ, samples)
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