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travel-assistant-bot
/
.venv
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pip
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packaging
RSK World
travel-assistant-bot
Travel Assistant Bot - Python + Flask + OpenAI API + Travel Bot + Flight Search + Hotel Booking + Weather
packaging
  • __pycache__
  • __init__.py496 B
  • _elffile.py3.2 KB
  • _manylinux.py9.4 KB
  • _musllinux.py2.6 KB
  • _parser.py10 KB
  • _structures.py1.4 KB
  • _tokenizer.py5.1 KB
  • markers.py10.4 KB
  • metadata.py31.6 KB
  • py.typed0 B
  • requirements.py2.9 KB
  • specifiers.py38.8 KB
  • tags.py20.9 KB
  • utils.py5.2 KB
  • version.py15.8 KB
lazy_wheel.py__init__.pycheck.py
.venv/Lib/site-packages/pip/_internal/network/lazy_wheel.py
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"""Lazy ZIP over HTTP"""

__all__ = ["HTTPRangeRequestUnsupported", "dist_from_wheel_url"]

from bisect import bisect_left, bisect_right
from contextlib import contextmanager
from tempfile import NamedTemporaryFile
from typing import Any, Dict, Generator, List, Optional, Tuple
from zipfile import BadZipFile, ZipFile

from pip._vendor.packaging.utils import canonicalize_name
from pip._vendor.requests.models import CONTENT_CHUNK_SIZE, Response

from pip._internal.metadata import BaseDistribution, MemoryWheel, get_wheel_distribution
from pip._internal.network.session import PipSession
from pip._internal.network.utils import HEADERS, raise_for_status, response_chunks


class HTTPRangeRequestUnsupported(Exception):
    pass


def dist_from_wheel_url(name: str, url: str, session: PipSession) -> BaseDistribution:
    """Return a distribution object from the given wheel URL.

    This uses HTTP range requests to only fetch the portion of the wheel
    containing metadata, just enough for the object to be constructed.
    If such requests are not supported, HTTPRangeRequestUnsupported
    is raised.
    """
    with LazyZipOverHTTP(url, session) as zf:
        # For read-only ZIP files, ZipFile only needs methods read,
        # seek, seekable and tell, not the whole IO protocol.
        wheel = MemoryWheel(zf.name, zf)  # type: ignore
        # After context manager exit, wheel.name
        # is an invalid file by intention.
        return get_wheel_distribution(wheel, canonicalize_name(name))


class LazyZipOverHTTP:
    """File-like object mapped to a ZIP file over HTTP.

    This uses HTTP range requests to lazily fetch the file's content,
    which is supposed to be fed to ZipFile.  If such requests are not
    supported by the server, raise HTTPRangeRequestUnsupported
    during initialization.
    """

    def __init__(
        self, url: str, session: PipSession, chunk_size: int = CONTENT_CHUNK_SIZE
    ) -> None:
        head = session.head(url, headers=HEADERS)
        raise_for_status(head)
        assert head.status_code == 200
        self._session, self._url, self._chunk_size = session, url, chunk_size
        self._length = int(head.headers["Content-Length"])
        self._file = NamedTemporaryFile()
        self.truncate(self._length)
        self._left: List[int] = []
        self._right: List[int] = []
        if "bytes" not in head.headers.get("Accept-Ranges", "none"):
            raise HTTPRangeRequestUnsupported("range request is not supported")
        self._check_zip()

    @property
    def mode(self) -> str:
        """Opening mode, which is always rb."""
        return "rb"

    @property
    def name(self) -> str:
        """Path to the underlying file."""
        return self._file.name

    def seekable(self) -> bool:
        """Return whether random access is supported, which is True."""
        return True

    def close(self) -> None:
        """Close the file."""
        self._file.close()

    @property
    def closed(self) -> bool:
        """Whether the file is closed."""
        return self._file.closed

    def read(self, size: int = -1) -> bytes:
        """Read up to size bytes from the object and return them.

        As a convenience, if size is unspecified or -1,
        all bytes until EOF are returned.  Fewer than
        size bytes may be returned if EOF is reached.
        """
        download_size = max(size, self._chunk_size)
        start, length = self.tell(), self._length
        stop = length if size < 0 else min(start + download_size, length)
        start = max(0, stop - download_size)
        self._download(start, stop - 1)
        return self._file.read(size)

    def readable(self) -> bool:
        """Return whether the file is readable, which is True."""
        return True

    def seek(self, offset: int, whence: int = 0) -> int:
        """Change stream position and return the new absolute position.

        Seek to offset relative position indicated by whence:
        * 0: Start of stream (the default).  pos should be >= 0;
        * 1: Current position - pos may be negative;
        * 2: End of stream - pos usually negative.
        """
        return self._file.seek(offset, whence)

    def tell(self) -> int:
        """Return the current position."""
        return self._file.tell()

    def truncate(self, size: Optional[int] = None) -> int:
        """Resize the stream to the given size in bytes.

        If size is unspecified resize to the current position.
        The current stream position isn't changed.

        Return the new file size.
        """
        return self._file.truncate(size)

    def writable(self) -> bool:
        """Return False."""
        return False

    def __enter__(self) -> "LazyZipOverHTTP":
        self._file.__enter__()
        return self

    def __exit__(self, *exc: Any) -> None:
        self._file.__exit__(*exc)

    @contextmanager
    def _stay(self) -> Generator[None, None, None]:
        """Return a context manager keeping the position.

        At the end of the block, seek back to original position.
        """
        pos = self.tell()
        try:
            yield
        finally:
            self.seek(pos)

    def _check_zip(self) -> None:
        """Check and download until the file is a valid ZIP."""
        end = self._length - 1
        for start in reversed(range(0, end, self._chunk_size)):
            self._download(start, end)
            with self._stay():
                try:
                    # For read-only ZIP files, ZipFile only needs
                    # methods read, seek, seekable and tell.
                    ZipFile(self)
                except BadZipFile:
                    pass
                else:
                    break

    def _stream_response(
        self, start: int, end: int, base_headers: Dict[str, str] = HEADERS
    ) -> Response:
        """Return HTTP response to a range request from start to end."""
        headers = base_headers.copy()
        headers["Range"] = f"bytes={start}-{end}"
        # TODO: Get range requests to be correctly cached
        headers["Cache-Control"] = "no-cache"
        return self._session.get(self._url, headers=headers, stream=True)

    def _merge(
        self, start: int, end: int, left: int, right: int
    ) -> Generator[Tuple[int, int], None, None]:
        """Return a generator of intervals to be fetched.

        Args:
            start (int): Start of needed interval
            end (int): End of needed interval
            left (int): Index of first overlapping downloaded data
            right (int): Index after last overlapping downloaded data
        """
        lslice, rslice = self._left[left:right], self._right[left:right]
        i = start = min([start] + lslice[:1])
        end = max([end] + rslice[-1:])
        for j, k in zip(lslice, rslice):
            if j > i:
                yield i, j - 1
            i = k + 1
        if i <= end:
            yield i, end
        self._left[left:right], self._right[left:right] = [start], [end]

    def _download(self, start: int, end: int) -> None:
        """Download bytes from start to end inclusively."""
        with self._stay():
            left = bisect_left(self._right, start)
            right = bisect_right(self._left, end)
            for start, end in self._merge(start, end, left, right):
                response = self._stream_response(start, end)
                response.raise_for_status()
                self.seek(start)
                for chunk in response_chunks(response, self._chunk_size):
                    self._file.write(chunk)
211 lines•7.4 KB
python
.venv/Lib/site-packages/pip/_internal/models/__init__.py
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"""A package that contains models that represent entities.
"""
3 lines•63 B
python
.venv/Lib/site-packages/pip/_internal/operations/check.py
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"""Validation of dependencies of packages
"""

import logging
from contextlib import suppress
from email.parser import Parser
from functools import reduce
from typing import (
    Callable,
    Dict,
    FrozenSet,
    Generator,
    Iterable,
    List,
    NamedTuple,
    Optional,
    Set,
    Tuple,
)

from pip._vendor.packaging.requirements import Requirement
from pip._vendor.packaging.tags import Tag, parse_tag
from pip._vendor.packaging.utils import NormalizedName, canonicalize_name
from pip._vendor.packaging.version import Version

from pip._internal.distributions import make_distribution_for_install_requirement
from pip._internal.metadata import get_default_environment
from pip._internal.metadata.base import BaseDistribution
from pip._internal.req.req_install import InstallRequirement

logger = logging.getLogger(__name__)


class PackageDetails(NamedTuple):
    version: Version
    dependencies: List[Requirement]


# Shorthands
PackageSet = Dict[NormalizedName, PackageDetails]
Missing = Tuple[NormalizedName, Requirement]
Conflicting = Tuple[NormalizedName, Version, Requirement]

MissingDict = Dict[NormalizedName, List[Missing]]
ConflictingDict = Dict[NormalizedName, List[Conflicting]]
CheckResult = Tuple[MissingDict, ConflictingDict]
ConflictDetails = Tuple[PackageSet, CheckResult]


def create_package_set_from_installed() -> Tuple[PackageSet, bool]:
    """Converts a list of distributions into a PackageSet."""
    package_set = {}
    problems = False
    env = get_default_environment()
    for dist in env.iter_installed_distributions(local_only=False, skip=()):
        name = dist.canonical_name
        try:
            dependencies = list(dist.iter_dependencies())
            package_set[name] = PackageDetails(dist.version, dependencies)
        except (OSError, ValueError) as e:
            # Don't crash on unreadable or broken metadata.
            logger.warning("Error parsing dependencies of %s: %s", name, e)
            problems = True
    return package_set, problems


def check_package_set(
    package_set: PackageSet, should_ignore: Optional[Callable[[str], bool]] = None
) -> CheckResult:
    """Check if a package set is consistent

    If should_ignore is passed, it should be a callable that takes a
    package name and returns a boolean.
    """

    missing = {}
    conflicting = {}

    for package_name, package_detail in package_set.items():
        # Info about dependencies of package_name
        missing_deps: Set[Missing] = set()
        conflicting_deps: Set[Conflicting] = set()

        if should_ignore and should_ignore(package_name):
            continue

        for req in package_detail.dependencies:
            name = canonicalize_name(req.name)

            # Check if it's missing
            if name not in package_set:
                missed = True
                if req.marker is not None:
                    missed = req.marker.evaluate({"extra": ""})
                if missed:
                    missing_deps.add((name, req))
                continue

            # Check if there's a conflict
            version = package_set[name].version
            if not req.specifier.contains(version, prereleases=True):
                conflicting_deps.add((name, version, req))

        if missing_deps:
            missing[package_name] = sorted(missing_deps, key=str)
        if conflicting_deps:
            conflicting[package_name] = sorted(conflicting_deps, key=str)

    return missing, conflicting


def check_install_conflicts(to_install: List[InstallRequirement]) -> ConflictDetails:
    """For checking if the dependency graph would be consistent after \
    installing given requirements
    """
    # Start from the current state
    package_set, _ = create_package_set_from_installed()
    # Install packages
    would_be_installed = _simulate_installation_of(to_install, package_set)

    # Only warn about directly-dependent packages; create a whitelist of them
    whitelist = _create_whitelist(would_be_installed, package_set)

    return (
        package_set,
        check_package_set(
            package_set, should_ignore=lambda name: name not in whitelist
        ),
    )


def check_unsupported(
    packages: Iterable[BaseDistribution],
    supported_tags: Iterable[Tag],
) -> Generator[BaseDistribution, None, None]:
    for p in packages:
        with suppress(FileNotFoundError):
            wheel_file = p.read_text("WHEEL")
            wheel_tags: FrozenSet[Tag] = reduce(
                frozenset.union,
                map(parse_tag, Parser().parsestr(wheel_file).get_all("Tag", [])),
                frozenset(),
            )
            if wheel_tags.isdisjoint(supported_tags):
                yield p


def _simulate_installation_of(
    to_install: List[InstallRequirement], package_set: PackageSet
) -> Set[NormalizedName]:
    """Computes the version of packages after installing to_install."""
    # Keep track of packages that were installed
    installed = set()

    # Modify it as installing requirement_set would (assuming no errors)
    for inst_req in to_install:
        abstract_dist = make_distribution_for_install_requirement(inst_req)
        dist = abstract_dist.get_metadata_distribution()
        name = dist.canonical_name
        package_set[name] = PackageDetails(dist.version, list(dist.iter_dependencies()))

        installed.add(name)

    return installed


def _create_whitelist(
    would_be_installed: Set[NormalizedName], package_set: PackageSet
) -> Set[NormalizedName]:
    packages_affected = set(would_be_installed)

    for package_name in package_set:
        if package_name in packages_affected:
            continue

        for req in package_set[package_name].dependencies:
            if canonicalize_name(req.name) in packages_affected:
                packages_affected.add(package_name)
                break

    return packages_affected
182 lines•5.8 KB
python
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