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rich
RSK World
travel-assistant-bot
Travel Assistant Bot - Python + Flask + OpenAI API + Travel Bot + Flight Search + Hotel Booking + Weather
rich
  • __pycache__
  • __init__.py5.9 KB
  • __main__.py8.3 KB
  • _cell_widths.py10 KB
  • _emoji_codes.py136.9 KB
  • _emoji_replace.py1 KB
  • _export_format.py2.1 KB
  • _extension.py265 B
  • _fileno.py799 B
  • _inspect.py9.5 KB
  • _log_render.py3.1 KB
  • _loop.py1.2 KB
  • _null_file.py1.4 KB
  • _palettes.py6.9 KB
  • _pick.py423 B
  • _ratio.py5.3 KB
  • _spinners.py19.5 KB
  • _stack.py351 B
  • _timer.py417 B
  • _win32_console.py22.3 KB
  • _windows.py1.9 KB
  • _windows_renderer.py2.7 KB
  • _wrap.py3.3 KB
  • abc.py890 B
  • align.py10.1 KB
  • ansi.py6.7 KB
  • bar.py3.2 KB
  • box.py10.6 KB
  • cells.py4.7 KB
  • color.py17.8 KB
  • color_triplet.py1 KB
  • columns.py7 KB
  • console.py96.8 KB
  • constrain.py1.3 KB
  • containers.py5.4 KB
  • control.py6.5 KB
  • default_styles.py7.9 KB
  • diagnose.py972 B
  • emoji.py2.4 KB
  • errors.py642 B
  • file_proxy.py1.6 KB
  • filesize.py2.4 KB
  • highlighter.py9.4 KB
  • json.py4.9 KB
  • jupyter.py3.2 KB
  • layout.py13.7 KB
  • live.py13.9 KB
  • live_render.py3.6 KB
  • logging.py11.6 KB
  • markup.py8.3 KB
  • measure.py5.2 KB
  • padding.py4.9 KB
  • pager.py828 B
  • palette.py3.3 KB
  • panel.py10.5 KB
  • pretty.py35 KB
  • progress.py58.3 KB
  • progress_bar.py8 KB
  • prompt.py11 KB
  • protocol.py1.4 KB
  • py.typed0 B
  • region.py166 B
  • repr.py4.3 KB
  • rule.py4.5 KB
  • scope.py2.8 KB
  • screen.py1.6 KB
  • segment.py23.7 KB
  • spinner.py4.2 KB
  • status.py4.3 KB
  • style.py26.4 KB
  • styled.py1.2 KB
  • syntax.py34.6 KB
  • table.py38.8 KB
  • terminal_theme.py3.3 KB
  • text.py46.2 KB
  • theme.py3.7 KB
  • themes.py102 B
  • traceback.py28.9 KB
  • tree.py9 KB
__main__.pycore.pypackages.pyhighlighter.pydownload.pyweakref_finalize.pyabc.pyerrors.pyresponse.py
.venv/Lib/site-packages/pip/_vendor/distro/__main__.py
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from .distro import main

if __name__ == "__main__":
    main()
5 lines•64 B
python
.venv/Lib/site-packages/pip/_vendor/idna/core.py
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from . import idnadata
import bisect
import unicodedata
import re
from typing import Union, Optional
from .intranges import intranges_contain

_virama_combining_class = 9
_alabel_prefix = b'xn--'
_unicode_dots_re = re.compile('[\u002e\u3002\uff0e\uff61]')

class IDNAError(UnicodeError):
    """ Base exception for all IDNA-encoding related problems """
    pass


class IDNABidiError(IDNAError):
    """ Exception when bidirectional requirements are not satisfied """
    pass


class InvalidCodepoint(IDNAError):
    """ Exception when a disallowed or unallocated codepoint is used """
    pass


class InvalidCodepointContext(IDNAError):
    """ Exception when the codepoint is not valid in the context it is used """
    pass


def _combining_class(cp: int) -> int:
    v = unicodedata.combining(chr(cp))
    if v == 0:
        if not unicodedata.name(chr(cp)):
            raise ValueError('Unknown character in unicodedata')
    return v

def _is_script(cp: str, script: str) -> bool:
    return intranges_contain(ord(cp), idnadata.scripts[script])

def _punycode(s: str) -> bytes:
    return s.encode('punycode')

def _unot(s: int) -> str:
    return 'U+{:04X}'.format(s)


def valid_label_length(label: Union[bytes, str]) -> bool:
    if len(label) > 63:
        return False
    return True


def valid_string_length(label: Union[bytes, str], trailing_dot: bool) -> bool:
    if len(label) > (254 if trailing_dot else 253):
        return False
    return True


def check_bidi(label: str, check_ltr: bool = False) -> bool:
    # Bidi rules should only be applied if string contains RTL characters
    bidi_label = False
    for (idx, cp) in enumerate(label, 1):
        direction = unicodedata.bidirectional(cp)
        if direction == '':
            # String likely comes from a newer version of Unicode
            raise IDNABidiError('Unknown directionality in label {} at position {}'.format(repr(label), idx))
        if direction in ['R', 'AL', 'AN']:
            bidi_label = True
    if not bidi_label and not check_ltr:
        return True

    # Bidi rule 1
    direction = unicodedata.bidirectional(label[0])
    if direction in ['R', 'AL']:
        rtl = True
    elif direction == 'L':
        rtl = False
    else:
        raise IDNABidiError('First codepoint in label {} must be directionality L, R or AL'.format(repr(label)))

    valid_ending = False
    number_type = None  # type: Optional[str]
    for (idx, cp) in enumerate(label, 1):
        direction = unicodedata.bidirectional(cp)

        if rtl:
            # Bidi rule 2
            if not direction in ['R', 'AL', 'AN', 'EN', 'ES', 'CS', 'ET', 'ON', 'BN', 'NSM']:
                raise IDNABidiError('Invalid direction for codepoint at position {} in a right-to-left label'.format(idx))
            # Bidi rule 3
            if direction in ['R', 'AL', 'EN', 'AN']:
                valid_ending = True
            elif direction != 'NSM':
                valid_ending = False
            # Bidi rule 4
            if direction in ['AN', 'EN']:
                if not number_type:
                    number_type = direction
                else:
                    if number_type != direction:
                        raise IDNABidiError('Can not mix numeral types in a right-to-left label')
        else:
            # Bidi rule 5
            if not direction in ['L', 'EN', 'ES', 'CS', 'ET', 'ON', 'BN', 'NSM']:
                raise IDNABidiError('Invalid direction for codepoint at position {} in a left-to-right label'.format(idx))
            # Bidi rule 6
            if direction in ['L', 'EN']:
                valid_ending = True
            elif direction != 'NSM':
                valid_ending = False

    if not valid_ending:
        raise IDNABidiError('Label ends with illegal codepoint directionality')

    return True


def check_initial_combiner(label: str) -> bool:
    if unicodedata.category(label[0])[0] == 'M':
        raise IDNAError('Label begins with an illegal combining character')
    return True


def check_hyphen_ok(label: str) -> bool:
    if label[2:4] == '--':
        raise IDNAError('Label has disallowed hyphens in 3rd and 4th position')
    if label[0] == '-' or label[-1] == '-':
        raise IDNAError('Label must not start or end with a hyphen')
    return True


def check_nfc(label: str) -> None:
    if unicodedata.normalize('NFC', label) != label:
        raise IDNAError('Label must be in Normalization Form C')


def valid_contextj(label: str, pos: int) -> bool:
    cp_value = ord(label[pos])

    if cp_value == 0x200c:

        if pos > 0:
            if _combining_class(ord(label[pos - 1])) == _virama_combining_class:
                return True

        ok = False
        for i in range(pos-1, -1, -1):
            joining_type = idnadata.joining_types.get(ord(label[i]))
            if joining_type == ord('T'):
                continue
            elif joining_type in [ord('L'), ord('D')]:
                ok = True
                break
            else:
                break

        if not ok:
            return False

        ok = False
        for i in range(pos+1, len(label)):
            joining_type = idnadata.joining_types.get(ord(label[i]))
            if joining_type == ord('T'):
                continue
            elif joining_type in [ord('R'), ord('D')]:
                ok = True
                break
            else:
                break
        return ok

    if cp_value == 0x200d:

        if pos > 0:
            if _combining_class(ord(label[pos - 1])) == _virama_combining_class:
                return True
        return False

    else:

        return False


def valid_contexto(label: str, pos: int, exception: bool = False) -> bool:
    cp_value = ord(label[pos])

    if cp_value == 0x00b7:
        if 0 < pos < len(label)-1:
            if ord(label[pos - 1]) == 0x006c and ord(label[pos + 1]) == 0x006c:
                return True
        return False

    elif cp_value == 0x0375:
        if pos < len(label)-1 and len(label) > 1:
            return _is_script(label[pos + 1], 'Greek')
        return False

    elif cp_value == 0x05f3 or cp_value == 0x05f4:
        if pos > 0:
            return _is_script(label[pos - 1], 'Hebrew')
        return False

    elif cp_value == 0x30fb:
        for cp in label:
            if cp == '\u30fb':
                continue
            if _is_script(cp, 'Hiragana') or _is_script(cp, 'Katakana') or _is_script(cp, 'Han'):
                return True
        return False

    elif 0x660 <= cp_value <= 0x669:
        for cp in label:
            if 0x6f0 <= ord(cp) <= 0x06f9:
                return False
        return True

    elif 0x6f0 <= cp_value <= 0x6f9:
        for cp in label:
            if 0x660 <= ord(cp) <= 0x0669:
                return False
        return True

    return False


def check_label(label: Union[str, bytes, bytearray]) -> None:
    if isinstance(label, (bytes, bytearray)):
        label = label.decode('utf-8')
    if len(label) == 0:
        raise IDNAError('Empty Label')

    check_nfc(label)
    check_hyphen_ok(label)
    check_initial_combiner(label)

    for (pos, cp) in enumerate(label):
        cp_value = ord(cp)
        if intranges_contain(cp_value, idnadata.codepoint_classes['PVALID']):
            continue
        elif intranges_contain(cp_value, idnadata.codepoint_classes['CONTEXTJ']):
            if not valid_contextj(label, pos):
                raise InvalidCodepointContext('Joiner {} not allowed at position {} in {}'.format(
                    _unot(cp_value), pos+1, repr(label)))
        elif intranges_contain(cp_value, idnadata.codepoint_classes['CONTEXTO']):
            if not valid_contexto(label, pos):
                raise InvalidCodepointContext('Codepoint {} not allowed at position {} in {}'.format(_unot(cp_value), pos+1, repr(label)))
        else:
            raise InvalidCodepoint('Codepoint {} at position {} of {} not allowed'.format(_unot(cp_value), pos+1, repr(label)))

    check_bidi(label)


def alabel(label: str) -> bytes:
    try:
        label_bytes = label.encode('ascii')
        ulabel(label_bytes)
        if not valid_label_length(label_bytes):
            raise IDNAError('Label too long')
        return label_bytes
    except UnicodeEncodeError:
        pass

    check_label(label)
    label_bytes = _alabel_prefix + _punycode(label)

    if not valid_label_length(label_bytes):
        raise IDNAError('Label too long')

    return label_bytes


def ulabel(label: Union[str, bytes, bytearray]) -> str:
    if not isinstance(label, (bytes, bytearray)):
        try:
            label_bytes = label.encode('ascii')
        except UnicodeEncodeError:
            check_label(label)
            return label
    else:
        label_bytes = label

    label_bytes = label_bytes.lower()
    if label_bytes.startswith(_alabel_prefix):
        label_bytes = label_bytes[len(_alabel_prefix):]
        if not label_bytes:
            raise IDNAError('Malformed A-label, no Punycode eligible content found')
        if label_bytes.decode('ascii')[-1] == '-':
            raise IDNAError('A-label must not end with a hyphen')
    else:
        check_label(label_bytes)
        return label_bytes.decode('ascii')

    try:
        label = label_bytes.decode('punycode')
    except UnicodeError:
        raise IDNAError('Invalid A-label')
    check_label(label)
    return label


def uts46_remap(domain: str, std3_rules: bool = True, transitional: bool = False) -> str:
    """Re-map the characters in the string according to UTS46 processing."""
    from .uts46data import uts46data
    output = ''

    for pos, char in enumerate(domain):
        code_point = ord(char)
        try:
            uts46row = uts46data[code_point if code_point < 256 else
                bisect.bisect_left(uts46data, (code_point, 'Z')) - 1]
            status = uts46row[1]
            replacement = None  # type: Optional[str]
            if len(uts46row) == 3:
                replacement = uts46row[2]
            if (status == 'V' or
                    (status == 'D' and not transitional) or
                    (status == '3' and not std3_rules and replacement is None)):
                output += char
            elif replacement is not None and (status == 'M' or
                    (status == '3' and not std3_rules) or
                    (status == 'D' and transitional)):
                output += replacement
            elif status != 'I':
                raise IndexError()
        except IndexError:
            raise InvalidCodepoint(
                'Codepoint {} not allowed at position {} in {}'.format(
                _unot(code_point), pos + 1, repr(domain)))

    return unicodedata.normalize('NFC', output)


def encode(s: Union[str, bytes, bytearray], strict: bool = False, uts46: bool = False, std3_rules: bool = False, transitional: bool = False) -> bytes:
    if not isinstance(s, str):
        try:
            s = str(s, 'ascii')
        except UnicodeDecodeError:
            raise IDNAError('should pass a unicode string to the function rather than a byte string.')
    if uts46:
        s = uts46_remap(s, std3_rules, transitional)
    trailing_dot = False
    result = []
    if strict:
        labels = s.split('.')
    else:
        labels = _unicode_dots_re.split(s)
    if not labels or labels == ['']:
        raise IDNAError('Empty domain')
    if labels[-1] == '':
        del labels[-1]
        trailing_dot = True
    for label in labels:
        s = alabel(label)
        if s:
            result.append(s)
        else:
            raise IDNAError('Empty label')
    if trailing_dot:
        result.append(b'')
    s = b'.'.join(result)
    if not valid_string_length(s, trailing_dot):
        raise IDNAError('Domain too long')
    return s


def decode(s: Union[str, bytes, bytearray], strict: bool = False, uts46: bool = False, std3_rules: bool = False) -> str:
    try:
        if not isinstance(s, str):
            s = str(s, 'ascii')
    except UnicodeDecodeError:
        raise IDNAError('Invalid ASCII in A-label')
    if uts46:
        s = uts46_remap(s, std3_rules, False)
    trailing_dot = False
    result = []
    if not strict:
        labels = _unicode_dots_re.split(s)
    else:
        labels = s.split('.')
    if not labels or labels == ['']:
        raise IDNAError('Empty domain')
    if not labels[-1]:
        del labels[-1]
        trailing_dot = True
    for label in labels:
        s = ulabel(label)
        if s:
            result.append(s)
        else:
            raise IDNAError('Empty label')
    if trailing_dot:
        result.append('')
    return '.'.join(result)
396 lines•12.4 KB
python
.venv/Lib/site-packages/pip/_vendor/requests/packages.py
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import sys

from .compat import chardet

# This code exists for backwards compatibility reasons.
# I don't like it either. Just look the other way. :)

for package in ("urllib3", "idna"):
    vendored_package = "pip._vendor." + package
    locals()[package] = __import__(vendored_package)
    # This traversal is apparently necessary such that the identities are
    # preserved (requests.packages.urllib3.* is urllib3.*)
    for mod in list(sys.modules):
        if mod == vendored_package or mod.startswith(vendored_package + '.'):
            unprefixed_mod = mod[len("pip._vendor."):]
            sys.modules['pip._vendor.requests.packages.' + unprefixed_mod] = sys.modules[mod]

if chardet is not None:
    target = chardet.__name__
    for mod in list(sys.modules):
        if mod == target or mod.startswith(f"{target}."):
            imported_mod = sys.modules[mod]
            sys.modules[f"requests.packages.{mod}"] = imported_mod
            mod = mod.replace(target, "chardet")
            sys.modules[f"requests.packages.{mod}"] = imported_mod
26 lines•1 KB
python
.venv/Lib/site-packages/pip/_vendor/rich/highlighter.py
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import re
from abc import ABC, abstractmethod
from typing import List, Union

from .text import Span, Text


def _combine_regex(*regexes: str) -> str:
    """Combine a number of regexes in to a single regex.

    Returns:
        str: New regex with all regexes ORed together.
    """
    return "|".join(regexes)


class Highlighter(ABC):
    """Abstract base class for highlighters."""

    def __call__(self, text: Union[str, Text]) -> Text:
        """Highlight a str or Text instance.

        Args:
            text (Union[str, ~Text]): Text to highlight.

        Raises:
            TypeError: If not called with text or str.

        Returns:
            Text: A test instance with highlighting applied.
        """
        if isinstance(text, str):
            highlight_text = Text(text)
        elif isinstance(text, Text):
            highlight_text = text.copy()
        else:
            raise TypeError(f"str or Text instance required, not {text!r}")
        self.highlight(highlight_text)
        return highlight_text

    @abstractmethod
    def highlight(self, text: Text) -> None:
        """Apply highlighting in place to text.

        Args:
            text (~Text): A text object highlight.
        """


class NullHighlighter(Highlighter):
    """A highlighter object that doesn't highlight.

    May be used to disable highlighting entirely.

    """

    def highlight(self, text: Text) -> None:
        """Nothing to do"""


class RegexHighlighter(Highlighter):
    """Applies highlighting from a list of regular expressions."""

    highlights: List[str] = []
    base_style: str = ""

    def highlight(self, text: Text) -> None:
        """Highlight :class:`rich.text.Text` using regular expressions.

        Args:
            text (~Text): Text to highlighted.

        """

        highlight_regex = text.highlight_regex
        for re_highlight in self.highlights:
            highlight_regex(re_highlight, style_prefix=self.base_style)


class ReprHighlighter(RegexHighlighter):
    """Highlights the text typically produced from ``__repr__`` methods."""

    base_style = "repr."
    highlights = [
        r"(?P<tag_start><)(?P<tag_name>[-\w.:|]*)(?P<tag_contents>[\w\W]*)(?P<tag_end>>)",
        r'(?P<attrib_name>[\w_]{1,50})=(?P<attrib_value>"?[\w_]+"?)?',
        r"(?P<brace>[][{}()])",
        _combine_regex(
            r"(?P<ipv4>[0-9]{1,3}\.[0-9]{1,3}\.[0-9]{1,3}\.[0-9]{1,3})",
            r"(?P<ipv6>([A-Fa-f0-9]{1,4}::?){1,7}[A-Fa-f0-9]{1,4})",
            r"(?P<eui64>(?:[0-9A-Fa-f]{1,2}-){7}[0-9A-Fa-f]{1,2}|(?:[0-9A-Fa-f]{1,2}:){7}[0-9A-Fa-f]{1,2}|(?:[0-9A-Fa-f]{4}\.){3}[0-9A-Fa-f]{4})",
            r"(?P<eui48>(?:[0-9A-Fa-f]{1,2}-){5}[0-9A-Fa-f]{1,2}|(?:[0-9A-Fa-f]{1,2}:){5}[0-9A-Fa-f]{1,2}|(?:[0-9A-Fa-f]{4}\.){2}[0-9A-Fa-f]{4})",
            r"(?P<uuid>[a-fA-F0-9]{8}-[a-fA-F0-9]{4}-[a-fA-F0-9]{4}-[a-fA-F0-9]{4}-[a-fA-F0-9]{12})",
            r"(?P<call>[\w.]*?)\(",
            r"\b(?P<bool_true>True)\b|\b(?P<bool_false>False)\b|\b(?P<none>None)\b",
            r"(?P<ellipsis>\.\.\.)",
            r"(?P<number_complex>(?<!\w)(?:\-?[0-9]+\.?[0-9]*(?:e[-+]?\d+?)?)(?:[-+](?:[0-9]+\.?[0-9]*(?:e[-+]?\d+)?))?j)",
            r"(?P<number>(?<!\w)\-?[0-9]+\.?[0-9]*(e[-+]?\d+?)?\b|0x[0-9a-fA-F]*)",
            r"(?P<path>\B(/[-\w._+]+)*\/)(?P<filename>[-\w._+]*)?",
            r"(?<![\\\w])(?P<str>b?'''.*?(?<!\\)'''|b?'.*?(?<!\\)'|b?\"\"\".*?(?<!\\)\"\"\"|b?\".*?(?<!\\)\")",
            r"(?P<url>(file|https|http|ws|wss)://[-0-9a-zA-Z$_+!`(),.?/;:&=%#~]*)",
        ),
    ]


class JSONHighlighter(RegexHighlighter):
    """Highlights JSON"""

    # Captures the start and end of JSON strings, handling escaped quotes
    JSON_STR = r"(?<![\\\w])(?P<str>b?\".*?(?<!\\)\")"
    JSON_WHITESPACE = {" ", "\n", "\r", "\t"}

    base_style = "json."
    highlights = [
        _combine_regex(
            r"(?P<brace>[\{\[\(\)\]\}])",
            r"\b(?P<bool_true>true)\b|\b(?P<bool_false>false)\b|\b(?P<null>null)\b",
            r"(?P<number>(?<!\w)\-?[0-9]+\.?[0-9]*(e[\-\+]?\d+?)?\b|0x[0-9a-fA-F]*)",
            JSON_STR,
        ),
    ]

    def highlight(self, text: Text) -> None:
        super().highlight(text)

        # Additional work to handle highlighting JSON keys
        plain = text.plain
        append = text.spans.append
        whitespace = self.JSON_WHITESPACE
        for match in re.finditer(self.JSON_STR, plain):
            start, end = match.span()
            cursor = end
            while cursor < len(plain):
                char = plain[cursor]
                cursor += 1
                if char == ":":
                    append(Span(start, end, "json.key"))
                elif char in whitespace:
                    continue
                break


class ISO8601Highlighter(RegexHighlighter):
    """Highlights the ISO8601 date time strings.
    Regex reference: https://www.oreilly.com/library/view/regular-expressions-cookbook/9781449327453/ch04s07.html
    """

    base_style = "iso8601."
    highlights = [
        #
        # Dates
        #
        # Calendar month (e.g. 2008-08). The hyphen is required
        r"^(?P<year>[0-9]{4})-(?P<month>1[0-2]|0[1-9])$",
        # Calendar date w/o hyphens (e.g. 20080830)
        r"^(?P<date>(?P<year>[0-9]{4})(?P<month>1[0-2]|0[1-9])(?P<day>3[01]|0[1-9]|[12][0-9]))$",
        # Ordinal date (e.g. 2008-243). The hyphen is optional
        r"^(?P<date>(?P<year>[0-9]{4})-?(?P<day>36[0-6]|3[0-5][0-9]|[12][0-9]{2}|0[1-9][0-9]|00[1-9]))$",
        #
        # Weeks
        #
        # Week of the year (e.g., 2008-W35). The hyphen is optional
        r"^(?P<date>(?P<year>[0-9]{4})-?W(?P<week>5[0-3]|[1-4][0-9]|0[1-9]))$",
        # Week date (e.g., 2008-W35-6). The hyphens are optional
        r"^(?P<date>(?P<year>[0-9]{4})-?W(?P<week>5[0-3]|[1-4][0-9]|0[1-9])-?(?P<day>[1-7]))$",
        #
        # Times
        #
        # Hours and minutes (e.g., 17:21). The colon is optional
        r"^(?P<time>(?P<hour>2[0-3]|[01][0-9]):?(?P<minute>[0-5][0-9]))$",
        # Hours, minutes, and seconds w/o colons (e.g., 172159)
        r"^(?P<time>(?P<hour>2[0-3]|[01][0-9])(?P<minute>[0-5][0-9])(?P<second>[0-5][0-9]))$",
        # Time zone designator (e.g., Z, +07 or +07:00). The colons and the minutes are optional
        r"^(?P<timezone>(Z|[+-](?:2[0-3]|[01][0-9])(?::?(?:[0-5][0-9]))?))$",
        # Hours, minutes, and seconds with time zone designator (e.g., 17:21:59+07:00).
        # All the colons are optional. The minutes in the time zone designator are also optional
        r"^(?P<time>(?P<hour>2[0-3]|[01][0-9])(?P<minute>[0-5][0-9])(?P<second>[0-5][0-9]))(?P<timezone>Z|[+-](?:2[0-3]|[01][0-9])(?::?(?:[0-5][0-9]))?)$",
        #
        # Date and Time
        #
        # Calendar date with hours, minutes, and seconds (e.g., 2008-08-30 17:21:59 or 20080830 172159).
        # A space is required between the date and the time. The hyphens and colons are optional.
        # This regex matches dates and times that specify some hyphens or colons but omit others.
        # This does not follow ISO 8601
        r"^(?P<date>(?P<year>[0-9]{4})(?P<hyphen>-)?(?P<month>1[0-2]|0[1-9])(?(hyphen)-)(?P<day>3[01]|0[1-9]|[12][0-9])) (?P<time>(?P<hour>2[0-3]|[01][0-9])(?(hyphen):)(?P<minute>[0-5][0-9])(?(hyphen):)(?P<second>[0-5][0-9]))$",
        #
        # XML Schema dates and times
        #
        # Date, with optional time zone (e.g., 2008-08-30 or 2008-08-30+07:00).
        # Hyphens are required. This is the XML Schema 'date' type
        r"^(?P<date>(?P<year>-?(?:[1-9][0-9]*)?[0-9]{4})-(?P<month>1[0-2]|0[1-9])-(?P<day>3[01]|0[1-9]|[12][0-9]))(?P<timezone>Z|[+-](?:2[0-3]|[01][0-9]):[0-5][0-9])?$",
        # Time, with optional fractional seconds and time zone (e.g., 01:45:36 or 01:45:36.123+07:00).
        # There is no limit on the number of digits for the fractional seconds. This is the XML Schema 'time' type
        r"^(?P<time>(?P<hour>2[0-3]|[01][0-9]):(?P<minute>[0-5][0-9]):(?P<second>[0-5][0-9])(?P<frac>\.[0-9]+)?)(?P<timezone>Z|[+-](?:2[0-3]|[01][0-9]):[0-5][0-9])?$",
        # Date and time, with optional fractional seconds and time zone (e.g., 2008-08-30T01:45:36 or 2008-08-30T01:45:36.123Z).
        # This is the XML Schema 'dateTime' type
        r"^(?P<date>(?P<year>-?(?:[1-9][0-9]*)?[0-9]{4})-(?P<month>1[0-2]|0[1-9])-(?P<day>3[01]|0[1-9]|[12][0-9]))T(?P<time>(?P<hour>2[0-3]|[01][0-9]):(?P<minute>[0-5][0-9]):(?P<second>[0-5][0-9])(?P<ms>\.[0-9]+)?)(?P<timezone>Z|[+-](?:2[0-3]|[01][0-9]):[0-5][0-9])?$",
    ]


if __name__ == "__main__":  # pragma: no cover
    from .console import Console

    console = Console()
    console.print("[bold green]hello world![/bold green]")
    console.print("'[bold green]hello world![/bold green]'")

    console.print(" /foo")
    console.print("/foo/")
    console.print("/foo/bar")
    console.print("foo/bar/baz")

    console.print("/foo/bar/baz?foo=bar+egg&egg=baz")
    console.print("/foo/bar/baz/")
    console.print("/foo/bar/baz/egg")
    console.print("/foo/bar/baz/egg.py")
    console.print("/foo/bar/baz/egg.py word")
    console.print(" /foo/bar/baz/egg.py word")
    console.print("foo /foo/bar/baz/egg.py word")
    console.print("foo /foo/bar/ba._++z/egg+.py word")
    console.print("https://example.org?foo=bar#header")

    console.print(1234567.34)
    console.print(1 / 2)
    console.print(-1 / 123123123123)

    console.print(
        "127.0.1.1 bar 192.168.1.4 2001:0db8:85a3:0000:0000:8a2e:0370:7334 foo"
    )
    import json

    console.print_json(json.dumps(obj={"name": "apple", "count": 1}), indent=None)
233 lines•9.4 KB
python
.venv/Lib/site-packages/pip/_internal/network/download.py
Raw Download
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"""Download files with progress indicators.
"""

import email.message
import logging
import mimetypes
import os
from typing import Iterable, Optional, Tuple

from pip._vendor.requests.models import Response

from pip._internal.cli.progress_bars import get_download_progress_renderer
from pip._internal.exceptions import NetworkConnectionError
from pip._internal.models.index import PyPI
from pip._internal.models.link import Link
from pip._internal.network.cache import is_from_cache
from pip._internal.network.session import PipSession
from pip._internal.network.utils import HEADERS, raise_for_status, response_chunks
from pip._internal.utils.misc import format_size, redact_auth_from_url, splitext

logger = logging.getLogger(__name__)


def _get_http_response_size(resp: Response) -> Optional[int]:
    try:
        return int(resp.headers["content-length"])
    except (ValueError, KeyError, TypeError):
        return None


def _prepare_download(
    resp: Response,
    link: Link,
    progress_bar: str,
) -> Iterable[bytes]:
    total_length = _get_http_response_size(resp)

    if link.netloc == PyPI.file_storage_domain:
        url = link.show_url
    else:
        url = link.url_without_fragment

    logged_url = redact_auth_from_url(url)

    if total_length:
        logged_url = f"{logged_url} ({format_size(total_length)})"

    if is_from_cache(resp):
        logger.info("Using cached %s", logged_url)
    else:
        logger.info("Downloading %s", logged_url)

    if logger.getEffectiveLevel() > logging.INFO:
        show_progress = False
    elif is_from_cache(resp):
        show_progress = False
    elif not total_length:
        show_progress = True
    elif total_length > (512 * 1024):
        show_progress = True
    else:
        show_progress = False

    chunks = response_chunks(resp)

    if not show_progress:
        return chunks

    renderer = get_download_progress_renderer(bar_type=progress_bar, size=total_length)
    return renderer(chunks)


def sanitize_content_filename(filename: str) -> str:
    """
    Sanitize the "filename" value from a Content-Disposition header.
    """
    return os.path.basename(filename)


def parse_content_disposition(content_disposition: str, default_filename: str) -> str:
    """
    Parse the "filename" value from a Content-Disposition header, and
    return the default filename if the result is empty.
    """
    m = email.message.Message()
    m["content-type"] = content_disposition
    filename = m.get_param("filename")
    if filename:
        # We need to sanitize the filename to prevent directory traversal
        # in case the filename contains ".." path parts.
        filename = sanitize_content_filename(str(filename))
    return filename or default_filename


def _get_http_response_filename(resp: Response, link: Link) -> str:
    """Get an ideal filename from the given HTTP response, falling back to
    the link filename if not provided.
    """
    filename = link.filename  # fallback
    # Have a look at the Content-Disposition header for a better guess
    content_disposition = resp.headers.get("content-disposition")
    if content_disposition:
        filename = parse_content_disposition(content_disposition, filename)
    ext: Optional[str] = splitext(filename)[1]
    if not ext:
        ext = mimetypes.guess_extension(resp.headers.get("content-type", ""))
        if ext:
            filename += ext
    if not ext and link.url != resp.url:
        ext = os.path.splitext(resp.url)[1]
        if ext:
            filename += ext
    return filename


def _http_get_download(session: PipSession, link: Link) -> Response:
    target_url = link.url.split("#", 1)[0]
    resp = session.get(target_url, headers=HEADERS, stream=True)
    raise_for_status(resp)
    return resp


class Downloader:
    def __init__(
        self,
        session: PipSession,
        progress_bar: str,
    ) -> None:
        self._session = session
        self._progress_bar = progress_bar

    def __call__(self, link: Link, location: str) -> Tuple[str, str]:
        """Download the file given by link into location."""
        try:
            resp = _http_get_download(self._session, link)
        except NetworkConnectionError as e:
            assert e.response is not None
            logger.critical(
                "HTTP error %s while getting %s", e.response.status_code, link
            )
            raise

        filename = _get_http_response_filename(resp, link)
        filepath = os.path.join(location, filename)

        chunks = _prepare_download(resp, link, self._progress_bar)
        with open(filepath, "wb") as content_file:
            for chunk in chunks:
                content_file.write(chunk)
        content_type = resp.headers.get("Content-Type", "")
        return filepath, content_type


class BatchDownloader:
    def __init__(
        self,
        session: PipSession,
        progress_bar: str,
    ) -> None:
        self._session = session
        self._progress_bar = progress_bar

    def __call__(
        self, links: Iterable[Link], location: str
    ) -> Iterable[Tuple[Link, Tuple[str, str]]]:
        """Download the files given by links into location."""
        for link in links:
            try:
                resp = _http_get_download(self._session, link)
            except NetworkConnectionError as e:
                assert e.response is not None
                logger.critical(
                    "HTTP error %s while getting %s",
                    e.response.status_code,
                    link,
                )
                raise

            filename = _get_http_response_filename(resp, link)
            filepath = os.path.join(location, filename)

            chunks = _prepare_download(resp, link, self._progress_bar)
            with open(filepath, "wb") as content_file:
                for chunk in chunks:
                    content_file.write(chunk)
            content_type = resp.headers.get("Content-Type", "")
            yield link, (filepath, content_type)
188 lines•5.9 KB
python
.venv/Lib/site-packages/pip/_vendor/urllib3/packages/backports/weakref_finalize.py
Raw Download
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# -*- coding: utf-8 -*-
"""
backports.weakref_finalize
~~~~~~~~~~~~~~~~~~

Backports the Python 3 ``weakref.finalize`` method.
"""
from __future__ import absolute_import

import itertools
import sys
from weakref import ref

__all__ = ["weakref_finalize"]


class weakref_finalize(object):
    """Class for finalization of weakrefable objects
    finalize(obj, func, *args, **kwargs) returns a callable finalizer
    object which will be called when obj is garbage collected. The
    first time the finalizer is called it evaluates func(*arg, **kwargs)
    and returns the result. After this the finalizer is dead, and
    calling it just returns None.
    When the program exits any remaining finalizers for which the
    atexit attribute is true will be run in reverse order of creation.
    By default atexit is true.
    """

    # Finalizer objects don't have any state of their own.  They are
    # just used as keys to lookup _Info objects in the registry.  This
    # ensures that they cannot be part of a ref-cycle.

    __slots__ = ()
    _registry = {}
    _shutdown = False
    _index_iter = itertools.count()
    _dirty = False
    _registered_with_atexit = False

    class _Info(object):
        __slots__ = ("weakref", "func", "args", "kwargs", "atexit", "index")

    def __init__(self, obj, func, *args, **kwargs):
        if not self._registered_with_atexit:
            # We may register the exit function more than once because
            # of a thread race, but that is harmless
            import atexit

            atexit.register(self._exitfunc)
            weakref_finalize._registered_with_atexit = True
        info = self._Info()
        info.weakref = ref(obj, self)
        info.func = func
        info.args = args
        info.kwargs = kwargs or None
        info.atexit = True
        info.index = next(self._index_iter)
        self._registry[self] = info
        weakref_finalize._dirty = True

    def __call__(self, _=None):
        """If alive then mark as dead and return func(*args, **kwargs);
        otherwise return None"""
        info = self._registry.pop(self, None)
        if info and not self._shutdown:
            return info.func(*info.args, **(info.kwargs or {}))

    def detach(self):
        """If alive then mark as dead and return (obj, func, args, kwargs);
        otherwise return None"""
        info = self._registry.get(self)
        obj = info and info.weakref()
        if obj is not None and self._registry.pop(self, None):
            return (obj, info.func, info.args, info.kwargs or {})

    def peek(self):
        """If alive then return (obj, func, args, kwargs);
        otherwise return None"""
        info = self._registry.get(self)
        obj = info and info.weakref()
        if obj is not None:
            return (obj, info.func, info.args, info.kwargs or {})

    @property
    def alive(self):
        """Whether finalizer is alive"""
        return self in self._registry

    @property
    def atexit(self):
        """Whether finalizer should be called at exit"""
        info = self._registry.get(self)
        return bool(info) and info.atexit

    @atexit.setter
    def atexit(self, value):
        info = self._registry.get(self)
        if info:
            info.atexit = bool(value)

    def __repr__(self):
        info = self._registry.get(self)
        obj = info and info.weakref()
        if obj is None:
            return "<%s object at %#x; dead>" % (type(self).__name__, id(self))
        else:
            return "<%s object at %#x; for %r at %#x>" % (
                type(self).__name__,
                id(self),
                type(obj).__name__,
                id(obj),
            )

    @classmethod
    def _select_for_exit(cls):
        # Return live finalizers marked for exit, oldest first
        L = [(f, i) for (f, i) in cls._registry.items() if i.atexit]
        L.sort(key=lambda item: item[1].index)
        return [f for (f, i) in L]

    @classmethod
    def _exitfunc(cls):
        # At shutdown invoke finalizers for which atexit is true.
        # This is called once all other non-daemonic threads have been
        # joined.
        reenable_gc = False
        try:
            if cls._registry:
                import gc

                if gc.isenabled():
                    reenable_gc = True
                    gc.disable()
                pending = None
                while True:
                    if pending is None or weakref_finalize._dirty:
                        pending = cls._select_for_exit()
                        weakref_finalize._dirty = False
                    if not pending:
                        break
                    f = pending.pop()
                    try:
                        # gc is disabled, so (assuming no daemonic
                        # threads) the following is the only line in
                        # this function which might trigger creation
                        # of a new finalizer
                        f()
                    except Exception:
                        sys.excepthook(*sys.exc_info())
                    assert f not in cls._registry
        finally:
            # prevent any more finalizers from executing during shutdown
            weakref_finalize._shutdown = True
            if reenable_gc:
                gc.enable()
156 lines•5.2 KB
python
.venv/Lib/site-packages/pip/_vendor/rich/abc.py
Raw Download
Find: Go to:
from abc import ABC


class RichRenderable(ABC):
    """An abstract base class for Rich renderables.

    Note that there is no need to extend this class, the intended use is to check if an
    object supports the Rich renderable protocol. For example::

        if isinstance(my_object, RichRenderable):
            console.print(my_object)

    """

    @classmethod
    def __subclasshook__(cls, other: type) -> bool:
        """Check if this class supports the rich render protocol."""
        return hasattr(other, "__rich_console__") or hasattr(other, "__rich__")


if __name__ == "__main__":  # pragma: no cover
    from pip._vendor.rich.text import Text

    t = Text()
    print(isinstance(Text, RichRenderable))
    print(isinstance(t, RichRenderable))

    class Foo:
        pass

    f = Foo()
    print(isinstance(f, RichRenderable))
    print(isinstance("", RichRenderable))
34 lines•890 B
python
.venv/Lib/site-packages/pip/_vendor/rich/errors.py
Raw Download
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class ConsoleError(Exception):
    """An error in console operation."""


class StyleError(Exception):
    """An error in styles."""


class StyleSyntaxError(ConsoleError):
    """Style was badly formatted."""


class MissingStyle(StyleError):
    """No such style."""


class StyleStackError(ConsoleError):
    """Style stack is invalid."""


class NotRenderableError(ConsoleError):
    """Object is not renderable."""


class MarkupError(ConsoleError):
    """Markup was badly formatted."""


class LiveError(ConsoleError):
    """Error related to Live display."""


class NoAltScreen(ConsoleError):
    """Alt screen mode was required."""
35 lines•642 B
python
.venv/Lib/site-packages/pip/_vendor/urllib3/response.py
Raw Download
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from __future__ import absolute_import

import io
import logging
import sys
import warnings
import zlib
from contextlib import contextmanager
from socket import error as SocketError
from socket import timeout as SocketTimeout

brotli = None

from . import util
from ._collections import HTTPHeaderDict
from .connection import BaseSSLError, HTTPException
from .exceptions import (
    BodyNotHttplibCompatible,
    DecodeError,
    HTTPError,
    IncompleteRead,
    InvalidChunkLength,
    InvalidHeader,
    ProtocolError,
    ReadTimeoutError,
    ResponseNotChunked,
    SSLError,
)
from .packages import six
from .util.response import is_fp_closed, is_response_to_head

log = logging.getLogger(__name__)


class DeflateDecoder(object):
    def __init__(self):
        self._first_try = True
        self._data = b""
        self._obj = zlib.decompressobj()

    def __getattr__(self, name):
        return getattr(self._obj, name)

    def decompress(self, data):
        if not data:
            return data

        if not self._first_try:
            return self._obj.decompress(data)

        self._data += data
        try:
            decompressed = self._obj.decompress(data)
            if decompressed:
                self._first_try = False
                self._data = None
            return decompressed
        except zlib.error:
            self._first_try = False
            self._obj = zlib.decompressobj(-zlib.MAX_WBITS)
            try:
                return self.decompress(self._data)
            finally:
                self._data = None


class GzipDecoderState(object):

    FIRST_MEMBER = 0
    OTHER_MEMBERS = 1
    SWALLOW_DATA = 2


class GzipDecoder(object):
    def __init__(self):
        self._obj = zlib.decompressobj(16 + zlib.MAX_WBITS)
        self._state = GzipDecoderState.FIRST_MEMBER

    def __getattr__(self, name):
        return getattr(self._obj, name)

    def decompress(self, data):
        ret = bytearray()
        if self._state == GzipDecoderState.SWALLOW_DATA or not data:
            return bytes(ret)
        while True:
            try:
                ret += self._obj.decompress(data)
            except zlib.error:
                previous_state = self._state
                # Ignore data after the first error
                self._state = GzipDecoderState.SWALLOW_DATA
                if previous_state == GzipDecoderState.OTHER_MEMBERS:
                    # Allow trailing garbage acceptable in other gzip clients
                    return bytes(ret)
                raise
            data = self._obj.unused_data
            if not data:
                return bytes(ret)
            self._state = GzipDecoderState.OTHER_MEMBERS
            self._obj = zlib.decompressobj(16 + zlib.MAX_WBITS)


if brotli is not None:

    class BrotliDecoder(object):
        # Supports both 'brotlipy' and 'Brotli' packages
        # since they share an import name. The top branches
        # are for 'brotlipy' and bottom branches for 'Brotli'
        def __init__(self):
            self._obj = brotli.Decompressor()
            if hasattr(self._obj, "decompress"):
                self.decompress = self._obj.decompress
            else:
                self.decompress = self._obj.process

        def flush(self):
            if hasattr(self._obj, "flush"):
                return self._obj.flush()
            return b""


class MultiDecoder(object):
    """
    From RFC7231:
        If one or more encodings have been applied to a representation, the
        sender that applied the encodings MUST generate a Content-Encoding
        header field that lists the content codings in the order in which
        they were applied.
    """

    def __init__(self, modes):
        self._decoders = [_get_decoder(m.strip()) for m in modes.split(",")]

    def flush(self):
        return self._decoders[0].flush()

    def decompress(self, data):
        for d in reversed(self._decoders):
            data = d.decompress(data)
        return data


def _get_decoder(mode):
    if "," in mode:
        return MultiDecoder(mode)

    if mode == "gzip":
        return GzipDecoder()

    if brotli is not None and mode == "br":
        return BrotliDecoder()

    return DeflateDecoder()


class HTTPResponse(io.IOBase):
    """
    HTTP Response container.

    Backwards-compatible with :class:`http.client.HTTPResponse` but the response ``body`` is
    loaded and decoded on-demand when the ``data`` property is accessed.  This
    class is also compatible with the Python standard library's :mod:`io`
    module, and can hence be treated as a readable object in the context of that
    framework.

    Extra parameters for behaviour not present in :class:`http.client.HTTPResponse`:

    :param preload_content:
        If True, the response's body will be preloaded during construction.

    :param decode_content:
        If True, will attempt to decode the body based on the
        'content-encoding' header.

    :param original_response:
        When this HTTPResponse wrapper is generated from an :class:`http.client.HTTPResponse`
        object, it's convenient to include the original for debug purposes. It's
        otherwise unused.

    :param retries:
        The retries contains the last :class:`~urllib3.util.retry.Retry` that
        was used during the request.

    :param enforce_content_length:
        Enforce content length checking. Body returned by server must match
        value of Content-Length header, if present. Otherwise, raise error.
    """

    CONTENT_DECODERS = ["gzip", "deflate"]
    if brotli is not None:
        CONTENT_DECODERS += ["br"]
    REDIRECT_STATUSES = [301, 302, 303, 307, 308]

    def __init__(
        self,
        body="",
        headers=None,
        status=0,
        version=0,
        reason=None,
        strict=0,
        preload_content=True,
        decode_content=True,
        original_response=None,
        pool=None,
        connection=None,
        msg=None,
        retries=None,
        enforce_content_length=False,
        request_method=None,
        request_url=None,
        auto_close=True,
    ):

        if isinstance(headers, HTTPHeaderDict):
            self.headers = headers
        else:
            self.headers = HTTPHeaderDict(headers)
        self.status = status
        self.version = version
        self.reason = reason
        self.strict = strict
        self.decode_content = decode_content
        self.retries = retries
        self.enforce_content_length = enforce_content_length
        self.auto_close = auto_close

        self._decoder = None
        self._body = None
        self._fp = None
        self._original_response = original_response
        self._fp_bytes_read = 0
        self.msg = msg
        self._request_url = request_url

        if body and isinstance(body, (six.string_types, bytes)):
            self._body = body

        self._pool = pool
        self._connection = connection

        if hasattr(body, "read"):
            self._fp = body

        # Are we using the chunked-style of transfer encoding?
        self.chunked = False
        self.chunk_left = None
        tr_enc = self.headers.get("transfer-encoding", "").lower()
        # Don't incur the penalty of creating a list and then discarding it
        encodings = (enc.strip() for enc in tr_enc.split(","))
        if "chunked" in encodings:
            self.chunked = True

        # Determine length of response
        self.length_remaining = self._init_length(request_method)

        # If requested, preload the body.
        if preload_content and not self._body:
            self._body = self.read(decode_content=decode_content)

    def get_redirect_location(self):
        """
        Should we redirect and where to?

        :returns: Truthy redirect location string if we got a redirect status
            code and valid location. ``None`` if redirect status and no
            location. ``False`` if not a redirect status code.
        """
        if self.status in self.REDIRECT_STATUSES:
            return self.headers.get("location")

        return False

    def release_conn(self):
        if not self._pool or not self._connection:
            return

        self._pool._put_conn(self._connection)
        self._connection = None

    def drain_conn(self):
        """
        Read and discard any remaining HTTP response data in the response connection.

        Unread data in the HTTPResponse connection blocks the connection from being released back to the pool.
        """
        try:
            self.read()
        except (HTTPError, SocketError, BaseSSLError, HTTPException):
            pass

    @property
    def data(self):
        # For backwards-compat with earlier urllib3 0.4 and earlier.
        if self._body:
            return self._body

        if self._fp:
            return self.read(cache_content=True)

    @property
    def connection(self):
        return self._connection

    def isclosed(self):
        return is_fp_closed(self._fp)

    def tell(self):
        """
        Obtain the number of bytes pulled over the wire so far. May differ from
        the amount of content returned by :meth:``urllib3.response.HTTPResponse.read``
        if bytes are encoded on the wire (e.g, compressed).
        """
        return self._fp_bytes_read

    def _init_length(self, request_method):
        """
        Set initial length value for Response content if available.
        """
        length = self.headers.get("content-length")

        if length is not None:
            if self.chunked:
                # This Response will fail with an IncompleteRead if it can't be
                # received as chunked. This method falls back to attempt reading
                # the response before raising an exception.
                log.warning(
                    "Received response with both Content-Length and "
                    "Transfer-Encoding set. This is expressly forbidden "
                    "by RFC 7230 sec 3.3.2. Ignoring Content-Length and "
                    "attempting to process response as Transfer-Encoding: "
                    "chunked."
                )
                return None

            try:
                # RFC 7230 section 3.3.2 specifies multiple content lengths can
                # be sent in a single Content-Length header
                # (e.g. Content-Length: 42, 42). This line ensures the values
                # are all valid ints and that as long as the `set` length is 1,
                # all values are the same. Otherwise, the header is invalid.
                lengths = set([int(val) for val in length.split(",")])
                if len(lengths) > 1:
                    raise InvalidHeader(
                        "Content-Length contained multiple "
                        "unmatching values (%s)" % length
                    )
                length = lengths.pop()
            except ValueError:
                length = None
            else:
                if length < 0:
                    length = None

        # Convert status to int for comparison
        # In some cases, httplib returns a status of "_UNKNOWN"
        try:
            status = int(self.status)
        except ValueError:
            status = 0

        # Check for responses that shouldn't include a body
        if status in (204, 304) or 100 <= status < 200 or request_method == "HEAD":
            length = 0

        return length

    def _init_decoder(self):
        """
        Set-up the _decoder attribute if necessary.
        """
        # Note: content-encoding value should be case-insensitive, per RFC 7230
        # Section 3.2
        content_encoding = self.headers.get("content-encoding", "").lower()
        if self._decoder is None:
            if content_encoding in self.CONTENT_DECODERS:
                self._decoder = _get_decoder(content_encoding)
            elif "," in content_encoding:
                encodings = [
                    e.strip()
                    for e in content_encoding.split(",")
                    if e.strip() in self.CONTENT_DECODERS
                ]
                if len(encodings):
                    self._decoder = _get_decoder(content_encoding)

    DECODER_ERROR_CLASSES = (IOError, zlib.error)
    if brotli is not None:
        DECODER_ERROR_CLASSES += (brotli.error,)

    def _decode(self, data, decode_content, flush_decoder):
        """
        Decode the data passed in and potentially flush the decoder.
        """
        if not decode_content:
            return data

        try:
            if self._decoder:
                data = self._decoder.decompress(data)
        except self.DECODER_ERROR_CLASSES as e:
            content_encoding = self.headers.get("content-encoding", "").lower()
            raise DecodeError(
                "Received response with content-encoding: %s, but "
                "failed to decode it." % content_encoding,
                e,
            )
        if flush_decoder:
            data += self._flush_decoder()

        return data

    def _flush_decoder(self):
        """
        Flushes the decoder. Should only be called if the decoder is actually
        being used.
        """
        if self._decoder:
            buf = self._decoder.decompress(b"")
            return buf + self._decoder.flush()

        return b""

    @contextmanager
    def _error_catcher(self):
        """
        Catch low-level python exceptions, instead re-raising urllib3
        variants, so that low-level exceptions are not leaked in the
        high-level api.

        On exit, release the connection back to the pool.
        """
        clean_exit = False

        try:
            try:
                yield

            except SocketTimeout:
                # FIXME: Ideally we'd like to include the url in the ReadTimeoutError but
                # there is yet no clean way to get at it from this context.
                raise ReadTimeoutError(self._pool, None, "Read timed out.")

            except BaseSSLError as e:
                # FIXME: Is there a better way to differentiate between SSLErrors?
                if "read operation timed out" not in str(e):
                    # SSL errors related to framing/MAC get wrapped and reraised here
                    raise SSLError(e)

                raise ReadTimeoutError(self._pool, None, "Read timed out.")

            except (HTTPException, SocketError) as e:
                # This includes IncompleteRead.
                raise ProtocolError("Connection broken: %r" % e, e)

            # If no exception is thrown, we should avoid cleaning up
            # unnecessarily.
            clean_exit = True
        finally:
            # If we didn't terminate cleanly, we need to throw away our
            # connection.
            if not clean_exit:
                # The response may not be closed but we're not going to use it
                # anymore so close it now to ensure that the connection is
                # released back to the pool.
                if self._original_response:
                    self._original_response.close()

                # Closing the response may not actually be sufficient to close
                # everything, so if we have a hold of the connection close that
                # too.
                if self._connection:
                    self._connection.close()

            # If we hold the original response but it's closed now, we should
            # return the connection back to the pool.
            if self._original_response and self._original_response.isclosed():
                self.release_conn()

    def _fp_read(self, amt):
        """
        Read a response with the thought that reading the number of bytes
        larger than can fit in a 32-bit int at a time via SSL in some
        known cases leads to an overflow error that has to be prevented
        if `amt` or `self.length_remaining` indicate that a problem may
        happen.

        The known cases:
          * 3.8 <= CPython < 3.9.7 because of a bug
            https://github.com/urllib3/urllib3/issues/2513#issuecomment-1152559900.
          * urllib3 injected with pyOpenSSL-backed SSL-support.
          * CPython < 3.10 only when `amt` does not fit 32-bit int.
        """
        assert self._fp
        c_int_max = 2 ** 31 - 1
        if (
            (
                (amt and amt > c_int_max)
                or (self.length_remaining and self.length_remaining > c_int_max)
            )
            and not util.IS_SECURETRANSPORT
            and (util.IS_PYOPENSSL or sys.version_info < (3, 10))
        ):
            buffer = io.BytesIO()
            # Besides `max_chunk_amt` being a maximum chunk size, it
            # affects memory overhead of reading a response by this
            # method in CPython.
            # `c_int_max` equal to 2 GiB - 1 byte is the actual maximum
            # chunk size that does not lead to an overflow error, but
            # 256 MiB is a compromise.
            max_chunk_amt = 2 ** 28
            while amt is None or amt != 0:
                if amt is not None:
                    chunk_amt = min(amt, max_chunk_amt)
                    amt -= chunk_amt
                else:
                    chunk_amt = max_chunk_amt
                data = self._fp.read(chunk_amt)
                if not data:
                    break
                buffer.write(data)
                del data  # to reduce peak memory usage by `max_chunk_amt`.
            return buffer.getvalue()
        else:
            # StringIO doesn't like amt=None
            return self._fp.read(amt) if amt is not None else self._fp.read()

    def read(self, amt=None, decode_content=None, cache_content=False):
        """
        Similar to :meth:`http.client.HTTPResponse.read`, but with two additional
        parameters: ``decode_content`` and ``cache_content``.

        :param amt:
            How much of the content to read. If specified, caching is skipped
            because it doesn't make sense to cache partial content as the full
            response.

        :param decode_content:
            If True, will attempt to decode the body based on the
            'content-encoding' header.

        :param cache_content:
            If True, will save the returned data such that the same result is
            returned despite of the state of the underlying file object. This
            is useful if you want the ``.data`` property to continue working
            after having ``.read()`` the file object. (Overridden if ``amt`` is
            set.)
        """
        self._init_decoder()
        if decode_content is None:
            decode_content = self.decode_content

        if self._fp is None:
            return

        flush_decoder = False
        fp_closed = getattr(self._fp, "closed", False)

        with self._error_catcher():
            data = self._fp_read(amt) if not fp_closed else b""
            if amt is None:
                flush_decoder = True
            else:
                cache_content = False
                if (
                    amt != 0 and not data
                ):  # Platform-specific: Buggy versions of Python.
                    # Close the connection when no data is returned
                    #
                    # This is redundant to what httplib/http.client _should_
                    # already do.  However, versions of python released before
                    # December 15, 2012 (http://bugs.python.org/issue16298) do
                    # not properly close the connection in all cases. There is
                    # no harm in redundantly calling close.
                    self._fp.close()
                    flush_decoder = True
                    if self.enforce_content_length and self.length_remaining not in (
                        0,
                        None,
                    ):
                        # This is an edge case that httplib failed to cover due
                        # to concerns of backward compatibility. We're
                        # addressing it here to make sure IncompleteRead is
                        # raised during streaming, so all calls with incorrect
                        # Content-Length are caught.
                        raise IncompleteRead(self._fp_bytes_read, self.length_remaining)

        if data:
            self._fp_bytes_read += len(data)
            if self.length_remaining is not None:
                self.length_remaining -= len(data)

            data = self._decode(data, decode_content, flush_decoder)

            if cache_content:
                self._body = data

        return data

    def stream(self, amt=2 ** 16, decode_content=None):
        """
        A generator wrapper for the read() method. A call will block until
        ``amt`` bytes have been read from the connection or until the
        connection is closed.

        :param amt:
            How much of the content to read. The generator will return up to
            much data per iteration, but may return less. This is particularly
            likely when using compressed data. However, the empty string will
            never be returned.

        :param decode_content:
            If True, will attempt to decode the body based on the
            'content-encoding' header.
        """
        if self.chunked and self.supports_chunked_reads():
            for line in self.read_chunked(amt, decode_content=decode_content):
                yield line
        else:
            while not is_fp_closed(self._fp):
                data = self.read(amt=amt, decode_content=decode_content)

                if data:
                    yield data

    @classmethod
    def from_httplib(ResponseCls, r, **response_kw):
        """
        Given an :class:`http.client.HTTPResponse` instance ``r``, return a
        corresponding :class:`urllib3.response.HTTPResponse` object.

        Remaining parameters are passed to the HTTPResponse constructor, along
        with ``original_response=r``.
        """
        headers = r.msg

        if not isinstance(headers, HTTPHeaderDict):
            if six.PY2:
                # Python 2.7
                headers = HTTPHeaderDict.from_httplib(headers)
            else:
                headers = HTTPHeaderDict(headers.items())

        # HTTPResponse objects in Python 3 don't have a .strict attribute
        strict = getattr(r, "strict", 0)
        resp = ResponseCls(
            body=r,
            headers=headers,
            status=r.status,
            version=r.version,
            reason=r.reason,
            strict=strict,
            original_response=r,
            **response_kw
        )
        return resp

    # Backwards-compatibility methods for http.client.HTTPResponse
    def getheaders(self):
        warnings.warn(
            "HTTPResponse.getheaders() is deprecated and will be removed "
            "in urllib3 v2.1.0. Instead access HTTPResponse.headers directly.",
            category=DeprecationWarning,
            stacklevel=2,
        )
        return self.headers

    def getheader(self, name, default=None):
        warnings.warn(
            "HTTPResponse.getheader() is deprecated and will be removed "
            "in urllib3 v2.1.0. Instead use HTTPResponse.headers.get(name, default).",
            category=DeprecationWarning,
            stacklevel=2,
        )
        return self.headers.get(name, default)

    # Backwards compatibility for http.cookiejar
    def info(self):
        return self.headers

    # Overrides from io.IOBase
    def close(self):
        if not self.closed:
            self._fp.close()

        if self._connection:
            self._connection.close()

        if not self.auto_close:
            io.IOBase.close(self)

    @property
    def closed(self):
        if not self.auto_close:
            return io.IOBase.closed.__get__(self)
        elif self._fp is None:
            return True
        elif hasattr(self._fp, "isclosed"):
            return self._fp.isclosed()
        elif hasattr(self._fp, "closed"):
            return self._fp.closed
        else:
            return True

    def fileno(self):
        if self._fp is None:
            raise IOError("HTTPResponse has no file to get a fileno from")
        elif hasattr(self._fp, "fileno"):
            return self._fp.fileno()
        else:
            raise IOError(
                "The file-like object this HTTPResponse is wrapped "
                "around has no file descriptor"
            )

    def flush(self):
        if (
            self._fp is not None
            and hasattr(self._fp, "flush")
            and not getattr(self._fp, "closed", False)
        ):
            return self._fp.flush()

    def readable(self):
        # This method is required for `io` module compatibility.
        return True

    def readinto(self, b):
        # This method is required for `io` module compatibility.
        temp = self.read(len(b))
        if len(temp) == 0:
            return 0
        else:
            b[: len(temp)] = temp
            return len(temp)

    def supports_chunked_reads(self):
        """
        Checks if the underlying file-like object looks like a
        :class:`http.client.HTTPResponse` object. We do this by testing for
        the fp attribute. If it is present we assume it returns raw chunks as
        processed by read_chunked().
        """
        return hasattr(self._fp, "fp")

    def _update_chunk_length(self):
        # First, we'll figure out length of a chunk and then
        # we'll try to read it from socket.
        if self.chunk_left is not None:
            return
        line = self._fp.fp.readline()
        line = line.split(b";", 1)[0]
        try:
            self.chunk_left = int(line, 16)
        except ValueError:
            # Invalid chunked protocol response, abort.
            self.close()
            raise InvalidChunkLength(self, line)

    def _handle_chunk(self, amt):
        returned_chunk = None
        if amt is None:
            chunk = self._fp._safe_read(self.chunk_left)
            returned_chunk = chunk
            self._fp._safe_read(2)  # Toss the CRLF at the end of the chunk.
            self.chunk_left = None
        elif amt < self.chunk_left:
            value = self._fp._safe_read(amt)
            self.chunk_left = self.chunk_left - amt
            returned_chunk = value
        elif amt == self.chunk_left:
            value = self._fp._safe_read(amt)
            self._fp._safe_read(2)  # Toss the CRLF at the end of the chunk.
            self.chunk_left = None
            returned_chunk = value
        else:  # amt > self.chunk_left
            returned_chunk = self._fp._safe_read(self.chunk_left)
            self._fp._safe_read(2)  # Toss the CRLF at the end of the chunk.
            self.chunk_left = None
        return returned_chunk

    def read_chunked(self, amt=None, decode_content=None):
        """
        Similar to :meth:`HTTPResponse.read`, but with an additional
        parameter: ``decode_content``.

        :param amt:
            How much of the content to read. If specified, caching is skipped
            because it doesn't make sense to cache partial content as the full
            response.

        :param decode_content:
            If True, will attempt to decode the body based on the
            'content-encoding' header.
        """
        self._init_decoder()
        # FIXME: Rewrite this method and make it a class with a better structured logic.
        if not self.chunked:
            raise ResponseNotChunked(
                "Response is not chunked. "
                "Header 'transfer-encoding: chunked' is missing."
            )
        if not self.supports_chunked_reads():
            raise BodyNotHttplibCompatible(
                "Body should be http.client.HTTPResponse like. "
                "It should have have an fp attribute which returns raw chunks."
            )

        with self._error_catcher():
            # Don't bother reading the body of a HEAD request.
            if self._original_response and is_response_to_head(self._original_response):
                self._original_response.close()
                return

            # If a response is already read and closed
            # then return immediately.
            if self._fp.fp is None:
                return

            while True:
                self._update_chunk_length()
                if self.chunk_left == 0:
                    break
                chunk = self._handle_chunk(amt)
                decoded = self._decode(
                    chunk, decode_content=decode_content, flush_decoder=False
                )
                if decoded:
                    yield decoded

            if decode_content:
                # On CPython and PyPy, we should never need to flush the
                # decoder. However, on Jython we *might* need to, so
                # lets defensively do it anyway.
                decoded = self._flush_decoder()
                if decoded:  # Platform-specific: Jython.
                    yield decoded

            # Chunk content ends with \r\n: discard it.
            while True:
                line = self._fp.fp.readline()
                if not line:
                    # Some sites may not end with '\r\n'.
                    break
                if line == b"\r\n":
                    break

            # We read everything; close the "file".
            if self._original_response:
                self._original_response.close()

    def geturl(self):
        """
        Returns the URL that was the source of this response.
        If the request that generated this response redirected, this method
        will return the final redirect location.
        """
        if self.retries is not None and len(self.retries.history):
            return self.retries.history[-1].redirect_location
        else:
            return self._request_url

    def __iter__(self):
        buffer = []
        for chunk in self.stream(decode_content=True):
            if b"\n" in chunk:
                chunk = chunk.split(b"\n")
                yield b"".join(buffer) + chunk[0] + b"\n"
                for x in chunk[1:-1]:
                    yield x + b"\n"
                if chunk[-1]:
                    buffer = [chunk[-1]]
                else:
                    buffer = []
            else:
                buffer.append(chunk)
        if buffer:
            yield b"".join(buffer)
880 lines•29.9 KB
python
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