diff --git a/venv/Lib/site-packages/pip/_vendor/packaking/markers.py b/venv/Lib/site-packages/pip/_vendor/packaking/markers.py new file mode 100644 index 0000000..ca3706f --- /dev/null +++ b/venv/Lib/site-packages/pip/_vendor/packaking/markers.py @@ -0,0 +1,388 @@ +# This file is dual licensed under the terms of the Apache License, Version +# 2.0, and the BSD License. See the LICENSE file in the root of this repository +# for complete details. + +from __future__ import annotations + +import operator +import os +import platform +import sys +from typing import AbstractSet, Callable, Literal, Mapping, TypedDict, Union, cast + +from ._parser import MarkerAtom, MarkerList, Op, Value, Variable +from ._parser import parse_marker as _parse_marker +from ._tokenizer import ParserSyntaxError +from .specifiers import InvalidSpecifier, Specifier +from .utils import canonicalize_name + +__all__ = [ + "Environment", + "EvaluateContext", + "InvalidMarker", + "Marker", + "UndefinedComparison", + "UndefinedEnvironmentName", + "default_environment", +] + +Operator = Callable[[str, Union[str, AbstractSet[str]]], bool] +EvaluateContext = Literal["metadata", "lock_file", "requirement"] +MARKERS_ALLOWING_SET = {"extras", "dependency_groups"} +MARKERS_REQUIRING_VERSION = { + "implementation_version", + "platform_release", + "python_full_version", + "python_version", +} + + +class InvalidMarker(ValueError): + """ + An invalid marker was found, users should refer to PEP 508. + """ + + +class UndefinedComparison(ValueError): + """ + An invalid operation was attempted on a value that doesn't support it. + """ + + +class UndefinedEnvironmentName(ValueError): + """ + A name was attempted to be used that does not exist inside of the + environment. + """ + + +class Environment(TypedDict): + implementation_name: str + """The implementation's identifier, e.g. ``'cpython'``.""" + + implementation_version: str + """ + The implementation's version, e.g. ``'3.13.0a2'`` for CPython 3.13.0a2, or + ``'7.3.13'`` for PyPy3.10 v7.3.13. + """ + + os_name: str + """ + The value of :py:data:`os.name`. The name of the operating system dependent module + imported, e.g. ``'posix'``. + """ + + platform_machine: str + """ + Returns the machine type, e.g. ``'i386'``. + + An empty string if the value cannot be determined. + """ + + platform_release: str + """ + The system's release, e.g. ``'2.2.0'`` or ``'NT'``. + + An empty string if the value cannot be determined. + """ + + platform_system: str + """ + The system/OS name, e.g. ``'Linux'``, ``'Windows'`` or ``'Java'``. + + An empty string if the value cannot be determined. + """ + + platform_version: str + """ + The system's release version, e.g. ``'#3 on degas'``. + + An empty string if the value cannot be determined. + """ + + python_full_version: str + """ + The Python version as string ``'major.minor.patchlevel'``. + + Note that unlike the Python :py:data:`sys.version`, this value will always include + the patchlevel (it defaults to 0). + """ + + platform_python_implementation: str + """ + A string identifying the Python implementation, e.g. ``'CPython'``. + """ + + python_version: str + """The Python version as string ``'major.minor'``.""" + + sys_platform: str + """ + This string contains a platform identifier that can be used to append + platform-specific components to :py:data:`sys.path`, for instance. + + For Unix systems, except on Linux and AIX, this is the lowercased OS name as + returned by ``uname -s`` with the first part of the version as returned by + ``uname -r`` appended, e.g. ``'sunos5'`` or ``'freebsd8'``, at the time when Python + was built. + """ + + +def _normalize_extras( + result: MarkerList | MarkerAtom | str, +) -> MarkerList | MarkerAtom | str: + if not isinstance(result, tuple): + return result + + lhs, op, rhs = result + if isinstance(lhs, Variable) and lhs.value == "extra": + normalized_extra = canonicalize_name(rhs.value) + rhs = Value(normalized_extra) + elif isinstance(rhs, Variable) and rhs.value == "extra": + normalized_extra = canonicalize_name(lhs.value) + lhs = Value(normalized_extra) + return lhs, op, rhs + + +def _normalize_extra_values(results: MarkerList) -> MarkerList: + """ + Normalize extra values. + """ + + return [_normalize_extras(r) for r in results] + + +def _format_marker( + marker: list[str] | MarkerAtom | str, first: bool | None = True +) -> str: + assert isinstance(marker, (list, tuple, str)) + + # Sometimes we have a structure like [[...]] which is a single item list + # where the single item is itself it's own list. In that case we want skip + # the rest of this function so that we don't get extraneous () on the + # outside. + if ( + isinstance(marker, list) + and len(marker) == 1 + and isinstance(marker[0], (list, tuple)) + ): + return _format_marker(marker[0]) + + if isinstance(marker, list): + inner = (_format_marker(m, first=False) for m in marker) + if first: + return " ".join(inner) + else: + return "(" + " ".join(inner) + ")" + elif isinstance(marker, tuple): + return " ".join([m.serialize() for m in marker]) + else: + return marker + + +_operators: dict[str, Operator] = { + "in": lambda lhs, rhs: lhs in rhs, + "not in": lambda lhs, rhs: lhs not in rhs, + "<": lambda _lhs, _rhs: False, + "<=": operator.eq, + "==": operator.eq, + "!=": operator.ne, + ">=": operator.eq, + ">": lambda _lhs, _rhs: False, +} + + +def _eval_op(lhs: str, op: Op, rhs: str | AbstractSet[str], *, key: str) -> bool: + op_str = op.serialize() + if key in MARKERS_REQUIRING_VERSION: + try: + spec = Specifier(f"{op_str}{rhs}") + except InvalidSpecifier: + pass + else: + return spec.contains(lhs, prereleases=True) + + oper: Operator | None = _operators.get(op_str) + if oper is None: + raise UndefinedComparison(f"Undefined {op!r} on {lhs!r} and {rhs!r}.") + + return oper(lhs, rhs) + + +def _normalize( + lhs: str, rhs: str | AbstractSet[str], key: str +) -> tuple[str, str | AbstractSet[str]]: + # PEP 685 - Comparison of extra names for optional distribution dependencies + # https://peps.python.org/pep-0685/ + # > When comparing extra names, tools MUST normalize the names being + # > compared using the semantics outlined in PEP 503 for names + if key == "extra": + assert isinstance(rhs, str), "extra value must be a string" + # Both sides are normalized at this point already + return (lhs, rhs) + if key in MARKERS_ALLOWING_SET: + if isinstance(rhs, str): # pragma: no cover + return (canonicalize_name(lhs), canonicalize_name(rhs)) + else: + return (canonicalize_name(lhs), {canonicalize_name(v) for v in rhs}) + + # other environment markers don't have such standards + return lhs, rhs + + +def _evaluate_markers( + markers: MarkerList, environment: dict[str, str | AbstractSet[str]] +) -> bool: + groups: list[list[bool]] = [[]] + + for marker in markers: + if isinstance(marker, list): + groups[-1].append(_evaluate_markers(marker, environment)) + elif isinstance(marker, tuple): + lhs, op, rhs = marker + + if isinstance(lhs, Variable): + environment_key = lhs.value + lhs_value = environment[environment_key] + rhs_value = rhs.value + else: + lhs_value = lhs.value + environment_key = rhs.value + rhs_value = environment[environment_key] + + assert isinstance(lhs_value, str), "lhs must be a string" + lhs_value, rhs_value = _normalize(lhs_value, rhs_value, key=environment_key) + groups[-1].append(_eval_op(lhs_value, op, rhs_value, key=environment_key)) + elif marker == "or": + groups.append([]) + elif marker == "and": + pass + else: # pragma: nocover + raise TypeError(f"Unexpected marker {marker!r}") + + return any(all(item) for item in groups) + + +def format_full_version(info: sys._version_info) -> str: + version = f"{info.major}.{info.minor}.{info.micro}" + kind = info.releaselevel + if kind != "final": + version += kind[0] + str(info.serial) + return version + + +def default_environment() -> Environment: + iver = format_full_version(sys.implementation.version) + implementation_name = sys.implementation.name + return { + "implementation_name": implementation_name, + "implementation_version": iver, + "os_name": os.name, + "platform_machine": platform.machine(), + "platform_release": platform.release(), + "platform_system": platform.system(), + "platform_version": platform.version(), + "python_full_version": platform.python_version(), + "platform_python_implementation": platform.python_implementation(), + "python_version": ".".join(platform.python_version_tuple()[:2]), + "sys_platform": sys.platform, + } + + +class Marker: + def __init__(self, marker: str) -> None: + # Note: We create a Marker object without calling this constructor in + # packaging.requirements.Requirement. If any additional logic is + # added here, make sure to mirror/adapt Requirement. + + # If this fails and throws an error, the repr still expects _markers to + # be defined. + self._markers: MarkerList = [] + + try: + self._markers = _normalize_extra_values(_parse_marker(marker)) + # The attribute `_markers` can be described in terms of a recursive type: + # MarkerList = List[Union[Tuple[Node, ...], str, MarkerList]] + # + # For example, the following expression: + # python_version > "3.6" or (python_version == "3.6" and os_name == "unix") + # + # is parsed into: + # [ + # (, ')>, ), + # 'and', + # [ + # (, , ), + # 'or', + # (, , ) + # ] + # ] + except ParserSyntaxError as e: + raise InvalidMarker(str(e)) from e + + def __str__(self) -> str: + return _format_marker(self._markers) + + def __repr__(self) -> str: + return f"<{self.__class__.__name__}('{self}')>" + + def __hash__(self) -> int: + return hash(str(self)) + + def __eq__(self, other: object) -> bool: + if not isinstance(other, Marker): + return NotImplemented + + return str(self) == str(other) + + def evaluate( + self, + environment: Mapping[str, str | AbstractSet[str]] | None = None, + context: EvaluateContext = "metadata", + ) -> bool: + """Evaluate a marker. + + Return the boolean from evaluating the given marker against the + environment. environment is an optional argument to override all or + part of the determined environment. The *context* parameter specifies what + context the markers are being evaluated for, which influences what markers + are considered valid. Acceptable values are "metadata" (for core metadata; + default), "lock_file", and "requirement" (i.e. all other situations). + + The environment is determined from the current Python process. + """ + current_environment = cast( + "dict[str, str | AbstractSet[str]]", default_environment() + ) + if context == "lock_file": + current_environment.update( + extras=frozenset(), dependency_groups=frozenset() + ) + elif context == "metadata": + current_environment["extra"] = "" + + if environment is not None: + current_environment.update(environment) + if "extra" in current_environment: + # The API used to allow setting extra to None. We need to handle + # this case for backwards compatibility. Also skip running + # normalize name if extra is empty. + extra = cast("str | None", current_environment["extra"]) + current_environment["extra"] = canonicalize_name(extra) if extra else "" + + return _evaluate_markers( + self._markers, _repair_python_full_version(current_environment) + ) + + +def _repair_python_full_version( + env: dict[str, str | AbstractSet[str]], +) -> dict[str, str | AbstractSet[str]]: + """ + Work around platform.python_version() returning something that is not PEP 440 + compliant for non-tagged Python builds. + """ + python_full_version = cast("str", env["python_full_version"]) + if python_full_version.endswith("+"): + env["python_full_version"] = f"{python_full_version}local" + return env diff --git a/venv/Lib/site-packages/pip/_vendor/packaking/metadata.py b/venv/Lib/site-packages/pip/_vendor/packaking/metadata.py new file mode 100644 index 0000000..253f6b1 --- /dev/null +++ b/venv/Lib/site-packages/pip/_vendor/packaking/metadata.py @@ -0,0 +1,978 @@ +from __future__ import annotations + +import email.feedparser +import email.header +import email.message +import email.parser +import email.policy +import keyword +import pathlib +import sys +import typing +from typing import ( + Any, + Callable, + Generic, + Literal, + TypedDict, + cast, +) + +from . import licenses, requirements, specifiers, utils +from . import version as version_module + +if typing.TYPE_CHECKING: + from .licenses import NormalizedLicenseExpression + +T = typing.TypeVar("T") + + +if sys.version_info >= (3, 11): # pragma: no cover + ExceptionGroup = ExceptionGroup # noqa: F821 +else: # pragma: no cover + + class ExceptionGroup(Exception): + """A minimal implementation of :external:exc:`ExceptionGroup` from Python 3.11. + + If :external:exc:`ExceptionGroup` is already defined by Python itself, + that version is used instead. + """ + + message: str + exceptions: list[Exception] + + def __init__(self, message: str, exceptions: list[Exception]) -> None: + self.message = message + self.exceptions = exceptions + + def __repr__(self) -> str: + return f"{self.__class__.__name__}({self.message!r}, {self.exceptions!r})" + + +class InvalidMetadata(ValueError): + """A metadata field contains invalid data.""" + + field: str + """The name of the field that contains invalid data.""" + + def __init__(self, field: str, message: str) -> None: + self.field = field + super().__init__(message) + + +# The RawMetadata class attempts to make as few assumptions about the underlying +# serialization formats as possible. The idea is that as long as a serialization +# formats offer some very basic primitives in *some* way then we can support +# serializing to and from that format. +class RawMetadata(TypedDict, total=False): + """A dictionary of raw core metadata. + + Each field in core metadata maps to a key of this dictionary (when data is + provided). The key is lower-case and underscores are used instead of dashes + compared to the equivalent core metadata field. Any core metadata field that + can be specified multiple times or can hold multiple values in a single + field have a key with a plural name. See :class:`Metadata` whose attributes + match the keys of this dictionary. + + Core metadata fields that can be specified multiple times are stored as a + list or dict depending on which is appropriate for the field. Any fields + which hold multiple values in a single field are stored as a list. + + """ + + # Metadata 1.0 - PEP 241 + metadata_version: str + name: str + version: str + platforms: list[str] + summary: str + description: str + keywords: list[str] + home_page: str + author: str + author_email: str + license: str + + # Metadata 1.1 - PEP 314 + supported_platforms: list[str] + download_url: str + classifiers: list[str] + requires: list[str] + provides: list[str] + obsoletes: list[str] + + # Metadata 1.2 - PEP 345 + maintainer: str + maintainer_email: str + requires_dist: list[str] + provides_dist: list[str] + obsoletes_dist: list[str] + requires_python: str + requires_external: list[str] + project_urls: dict[str, str] + + # Metadata 2.0 + # PEP 426 attempted to completely revamp the metadata format + # but got stuck without ever being able to build consensus on + # it and ultimately ended up withdrawn. + # + # However, a number of tools had started emitting METADATA with + # `2.0` Metadata-Version, so for historical reasons, this version + # was skipped. + + # Metadata 2.1 - PEP 566 + description_content_type: str + provides_extra: list[str] + + # Metadata 2.2 - PEP 643 + dynamic: list[str] + + # Metadata 2.3 - PEP 685 + # No new fields were added in PEP 685, just some edge case were + # tightened up to provide better interoperability. + + # Metadata 2.4 - PEP 639 + license_expression: str + license_files: list[str] + + # Metadata 2.5 - PEP 794 + import_names: list[str] + import_namespaces: list[str] + + +# 'keywords' is special as it's a string in the core metadata spec, but we +# represent it as a list. +_STRING_FIELDS = { + "author", + "author_email", + "description", + "description_content_type", + "download_url", + "home_page", + "license", + "license_expression", + "maintainer", + "maintainer_email", + "metadata_version", + "name", + "requires_python", + "summary", + "version", +} + +_LIST_FIELDS = { + "classifiers", + "dynamic", + "license_files", + "obsoletes", + "obsoletes_dist", + "platforms", + "provides", + "provides_dist", + "provides_extra", + "requires", + "requires_dist", + "requires_external", + "supported_platforms", + "import_names", + "import_namespaces", +} + +_DICT_FIELDS = { + "project_urls", +} + + +def _parse_keywords(data: str) -> list[str]: + """Split a string of comma-separated keywords into a list of keywords.""" + return [k.strip() for k in data.split(",")] + + +def _parse_project_urls(data: list[str]) -> dict[str, str]: + """Parse a list of label/URL string pairings separated by a comma.""" + urls = {} + for pair in data: + # Our logic is slightly tricky here as we want to try and do + # *something* reasonable with malformed data. + # + # The main thing that we have to worry about, is data that does + # not have a ',' at all to split the label from the Value. There + # isn't a singular right answer here, and we will fail validation + # later on (if the caller is validating) so it doesn't *really* + # matter, but since the missing value has to be an empty str + # and our return value is dict[str, str], if we let the key + # be the missing value, then they'd have multiple '' values that + # overwrite each other in a accumulating dict. + # + # The other potential issue is that it's possible to have the + # same label multiple times in the metadata, with no solid "right" + # answer with what to do in that case. As such, we'll do the only + # thing we can, which is treat the field as unparsable and add it + # to our list of unparsed fields. + # + # TODO: The spec doesn't say anything about if the keys should be + # considered case sensitive or not... logically they should + # be case-preserving and case-insensitive, but doing that + # would open up more cases where we might have duplicate + # entries. + label, _, url = (s.strip() for s in pair.partition(",")) + + if label in urls: + # The label already exists in our set of urls, so this field + # is unparsable, and we can just add the whole thing to our + # unparsable data and stop processing it. + raise KeyError("duplicate labels in project urls") + urls[label] = url + + return urls + + +def _get_payload(msg: email.message.Message, source: bytes | str) -> str: + """Get the body of the message.""" + # If our source is a str, then our caller has managed encodings for us, + # and we don't need to deal with it. + if isinstance(source, str): + payload = msg.get_payload() + assert isinstance(payload, str) + return payload + # If our source is a bytes, then we're managing the encoding and we need + # to deal with it. + else: + bpayload = msg.get_payload(decode=True) + assert isinstance(bpayload, bytes) + try: + return bpayload.decode("utf8", "strict") + except UnicodeDecodeError as exc: + raise ValueError("payload in an invalid encoding") from exc + + +# The various parse_FORMAT functions here are intended to be as lenient as +# possible in their parsing, while still returning a correctly typed +# RawMetadata. +# +# To aid in this, we also generally want to do as little touching of the +# data as possible, except where there are possibly some historic holdovers +# that make valid data awkward to work with. +# +# While this is a lower level, intermediate format than our ``Metadata`` +# class, some light touch ups can make a massive difference in usability. + +# Map METADATA fields to RawMetadata. +_EMAIL_TO_RAW_MAPPING = { + "author": "author", + "author-email": "author_email", + "classifier": "classifiers", + "description": "description", + "description-content-type": "description_content_type", + "download-url": "download_url", + "dynamic": "dynamic", + "home-page": "home_page", + "import-name": "import_names", + "import-namespace": "import_namespaces", + "keywords": "keywords", + "license": "license", + "license-expression": "license_expression", + "license-file": "license_files", + "maintainer": "maintainer", + "maintainer-email": "maintainer_email", + "metadata-version": "metadata_version", + "name": "name", + "obsoletes": "obsoletes", + "obsoletes-dist": "obsoletes_dist", + "platform": "platforms", + "project-url": "project_urls", + "provides": "provides", + "provides-dist": "provides_dist", + "provides-extra": "provides_extra", + "requires": "requires", + "requires-dist": "requires_dist", + "requires-external": "requires_external", + "requires-python": "requires_python", + "summary": "summary", + "supported-platform": "supported_platforms", + "version": "version", +} +_RAW_TO_EMAIL_MAPPING = {raw: email for email, raw in _EMAIL_TO_RAW_MAPPING.items()} + + +# This class is for writing RFC822 messages +class RFC822Policy(email.policy.EmailPolicy): + """ + This is :class:`email.policy.EmailPolicy`, but with a simple ``header_store_parse`` + implementation that handles multi-line values, and some nice defaults. + """ + + utf8 = True + mangle_from_ = False + max_line_length = 0 + + def header_store_parse(self, name: str, value: str) -> tuple[str, str]: + size = len(name) + 2 + value = value.replace("\n", "\n" + " " * size) + return (name, value) + + +# This class is for writing RFC822 messages +class RFC822Message(email.message.EmailMessage): + """ + This is :class:`email.message.EmailMessage` with two small changes: it defaults to + our `RFC822Policy`, and it correctly writes unicode when being called + with `bytes()`. + """ + + def __init__(self) -> None: + super().__init__(policy=RFC822Policy()) + + def as_bytes( + self, unixfrom: bool = False, policy: email.policy.Policy | None = None + ) -> bytes: + """ + Return the bytes representation of the message. + + This handles unicode encoding. + """ + return self.as_string(unixfrom, policy=policy).encode("utf-8") + + +def parse_email(data: bytes | str) -> tuple[RawMetadata, dict[str, list[str]]]: + """Parse a distribution's metadata stored as email headers (e.g. from ``METADATA``). + + This function returns a two-item tuple of dicts. The first dict is of + recognized fields from the core metadata specification. Fields that can be + parsed and translated into Python's built-in types are converted + appropriately. All other fields are left as-is. Fields that are allowed to + appear multiple times are stored as lists. + + The second dict contains all other fields from the metadata. This includes + any unrecognized fields. It also includes any fields which are expected to + be parsed into a built-in type but were not formatted appropriately. Finally, + any fields that are expected to appear only once but are repeated are + included in this dict. + + """ + raw: dict[str, str | list[str] | dict[str, str]] = {} + unparsed: dict[str, list[str]] = {} + + if isinstance(data, str): + parsed = email.parser.Parser(policy=email.policy.compat32).parsestr(data) + else: + parsed = email.parser.BytesParser(policy=email.policy.compat32).parsebytes(data) + + # We have to wrap parsed.keys() in a set, because in the case of multiple + # values for a key (a list), the key will appear multiple times in the + # list of keys, but we're avoiding that by using get_all(). + for name_with_case in frozenset(parsed.keys()): + # Header names in RFC are case insensitive, so we'll normalize to all + # lower case to make comparisons easier. + name = name_with_case.lower() + + # We use get_all() here, even for fields that aren't multiple use, + # because otherwise someone could have e.g. two Name fields, and we + # would just silently ignore it rather than doing something about it. + headers = parsed.get_all(name) or [] + + # The way the email module works when parsing bytes is that it + # unconditionally decodes the bytes as ascii using the surrogateescape + # handler. When you pull that data back out (such as with get_all() ), + # it looks to see if the str has any surrogate escapes, and if it does + # it wraps it in a Header object instead of returning the string. + # + # As such, we'll look for those Header objects, and fix up the encoding. + value = [] + # Flag if we have run into any issues processing the headers, thus + # signalling that the data belongs in 'unparsed'. + valid_encoding = True + for h in headers: + # It's unclear if this can return more types than just a Header or + # a str, so we'll just assert here to make sure. + assert isinstance(h, (email.header.Header, str)) + + # If it's a header object, we need to do our little dance to get + # the real data out of it. In cases where there is invalid data + # we're going to end up with mojibake, but there's no obvious, good + # way around that without reimplementing parts of the Header object + # ourselves. + # + # That should be fine since, if mojibacked happens, this key is + # going into the unparsed dict anyways. + if isinstance(h, email.header.Header): + # The Header object stores it's data as chunks, and each chunk + # can be independently encoded, so we'll need to check each + # of them. + chunks: list[tuple[bytes, str | None]] = [] + for binary, _encoding in email.header.decode_header(h): + try: + binary.decode("utf8", "strict") + except UnicodeDecodeError: + # Enable mojibake. + encoding = "latin1" + valid_encoding = False + else: + encoding = "utf8" + chunks.append((binary, encoding)) + + # Turn our chunks back into a Header object, then let that + # Header object do the right thing to turn them into a + # string for us. + value.append(str(email.header.make_header(chunks))) + # This is already a string, so just add it. + else: + value.append(h) + + # We've processed all of our values to get them into a list of str, + # but we may have mojibake data, in which case this is an unparsed + # field. + if not valid_encoding: + unparsed[name] = value + continue + + raw_name = _EMAIL_TO_RAW_MAPPING.get(name) + if raw_name is None: + # This is a bit of a weird situation, we've encountered a key that + # we don't know what it means, so we don't know whether it's meant + # to be a list or not. + # + # Since we can't really tell one way or another, we'll just leave it + # as a list, even though it may be a single item list, because that's + # what makes the most sense for email headers. + unparsed[name] = value + continue + + # If this is one of our string fields, then we'll check to see if our + # value is a list of a single item. If it is then we'll assume that + # it was emitted as a single string, and unwrap the str from inside + # the list. + # + # If it's any other kind of data, then we haven't the faintest clue + # what we should parse it as, and we have to just add it to our list + # of unparsed stuff. + if raw_name in _STRING_FIELDS and len(value) == 1: + raw[raw_name] = value[0] + # If this is import_names, we need to special case the empty field + # case, which converts to an empty list instead of None. We can't let + # the empty case slip through, as it will fail validation. + elif raw_name == "import_names" and value == [""]: + raw[raw_name] = [] + # If this is one of our list of string fields, then we can just assign + # the value, since email *only* has strings, and our get_all() call + # above ensures that this is a list. + elif raw_name in _LIST_FIELDS: + raw[raw_name] = value + # Special Case: Keywords + # The keywords field is implemented in the metadata spec as a str, + # but it conceptually is a list of strings, and is serialized using + # ", ".join(keywords), so we'll do some light data massaging to turn + # this into what it logically is. + elif raw_name == "keywords" and len(value) == 1: + raw[raw_name] = _parse_keywords(value[0]) + # Special Case: Project-URL + # The project urls is implemented in the metadata spec as a list of + # specially-formatted strings that represent a key and a value, which + # is fundamentally a mapping, however the email format doesn't support + # mappings in a sane way, so it was crammed into a list of strings + # instead. + # + # We will do a little light data massaging to turn this into a map as + # it logically should be. + elif raw_name == "project_urls": + try: + raw[raw_name] = _parse_project_urls(value) + except KeyError: + unparsed[name] = value + # Nothing that we've done has managed to parse this, so it'll just + # throw it in our unparsable data and move on. + else: + unparsed[name] = value + + # We need to support getting the Description from the message payload in + # addition to getting it from the the headers. This does mean, though, there + # is the possibility of it being set both ways, in which case we put both + # in 'unparsed' since we don't know which is right. + try: + payload = _get_payload(parsed, data) + except ValueError: + unparsed.setdefault("description", []).append( + parsed.get_payload(decode=isinstance(data, bytes)) # type: ignore[call-overload] + ) + else: + if payload: + # Check to see if we've already got a description, if so then both + # it, and this body move to unparsable. + if "description" in raw: + description_header = cast("str", raw.pop("description")) + unparsed.setdefault("description", []).extend( + [description_header, payload] + ) + elif "description" in unparsed: + unparsed["description"].append(payload) + else: + raw["description"] = payload + + # We need to cast our `raw` to a metadata, because a TypedDict only support + # literal key names, but we're computing our key names on purpose, but the + # way this function is implemented, our `TypedDict` can only have valid key + # names. + return cast("RawMetadata", raw), unparsed + + +_NOT_FOUND = object() + + +# Keep the two values in sync. +_VALID_METADATA_VERSIONS = ["1.0", "1.1", "1.2", "2.1", "2.2", "2.3", "2.4", "2.5"] +_MetadataVersion = Literal["1.0", "1.1", "1.2", "2.1", "2.2", "2.3", "2.4", "2.5"] + +_REQUIRED_ATTRS = frozenset(["metadata_version", "name", "version"]) + + +class _Validator(Generic[T]): + """Validate a metadata field. + + All _process_*() methods correspond to a core metadata field. The method is + called with the field's raw value. If the raw value is valid it is returned + in its "enriched" form (e.g. ``version.Version`` for the ``Version`` field). + If the raw value is invalid, :exc:`InvalidMetadata` is raised (with a cause + as appropriate). + """ + + name: str + raw_name: str + added: _MetadataVersion + + def __init__( + self, + *, + added: _MetadataVersion = "1.0", + ) -> None: + self.added = added + + def __set_name__(self, _owner: Metadata, name: str) -> None: + self.name = name + self.raw_name = _RAW_TO_EMAIL_MAPPING[name] + + def __get__(self, instance: Metadata, _owner: type[Metadata]) -> T: + # With Python 3.8, the caching can be replaced with functools.cached_property(). + # No need to check the cache as attribute lookup will resolve into the + # instance's __dict__ before __get__ is called. + cache = instance.__dict__ + value = instance._raw.get(self.name) + + # To make the _process_* methods easier, we'll check if the value is None + # and if this field is NOT a required attribute, and if both of those + # things are true, we'll skip the the converter. This will mean that the + # converters never have to deal with the None union. + if self.name in _REQUIRED_ATTRS or value is not None: + try: + converter: Callable[[Any], T] = getattr(self, f"_process_{self.name}") + except AttributeError: + pass + else: + value = converter(value) + + cache[self.name] = value + try: + del instance._raw[self.name] # type: ignore[misc] + except KeyError: + pass + + return cast("T", value) + + def _invalid_metadata( + self, msg: str, cause: Exception | None = None + ) -> InvalidMetadata: + exc = InvalidMetadata( + self.raw_name, msg.format_map({"field": repr(self.raw_name)}) + ) + exc.__cause__ = cause + return exc + + def _process_metadata_version(self, value: str) -> _MetadataVersion: + # Implicitly makes Metadata-Version required. + if value not in _VALID_METADATA_VERSIONS: + raise self._invalid_metadata(f"{value!r} is not a valid metadata version") + return cast("_MetadataVersion", value) + + def _process_name(self, value: str) -> str: + if not value: + raise self._invalid_metadata("{field} is a required field") + # Validate the name as a side-effect. + try: + utils.canonicalize_name(value, validate=True) + except utils.InvalidName as exc: + raise self._invalid_metadata( + f"{value!r} is invalid for {{field}}", cause=exc + ) from exc + else: + return value + + def _process_version(self, value: str) -> version_module.Version: + if not value: + raise self._invalid_metadata("{field} is a required field") + try: + return version_module.parse(value) + except version_module.InvalidVersion as exc: + raise self._invalid_metadata( + f"{value!r} is invalid for {{field}}", cause=exc + ) from exc + + def _process_summary(self, value: str) -> str: + """Check the field contains no newlines.""" + if "\n" in value: + raise self._invalid_metadata("{field} must be a single line") + return value + + def _process_description_content_type(self, value: str) -> str: + content_types = {"text/plain", "text/x-rst", "text/markdown"} + message = email.message.EmailMessage() + message["content-type"] = value + + content_type, parameters = ( + # Defaults to `text/plain` if parsing failed. + message.get_content_type().lower(), + message["content-type"].params, + ) + # Check if content-type is valid or defaulted to `text/plain` and thus was + # not parseable. + if content_type not in content_types or content_type not in value.lower(): + raise self._invalid_metadata( + f"{{field}} must be one of {list(content_types)}, not {value!r}" + ) + + charset = parameters.get("charset", "UTF-8") + if charset != "UTF-8": + raise self._invalid_metadata( + f"{{field}} can only specify the UTF-8 charset, not {list(charset)}" + ) + + markdown_variants = {"GFM", "CommonMark"} + variant = parameters.get("variant", "GFM") # Use an acceptable default. + if content_type == "text/markdown" and variant not in markdown_variants: + raise self._invalid_metadata( + f"valid Markdown variants for {{field}} are {list(markdown_variants)}, " + f"not {variant!r}", + ) + return value + + def _process_dynamic(self, value: list[str]) -> list[str]: + for dynamic_field in map(str.lower, value): + if dynamic_field in {"name", "version", "metadata-version"}: + raise self._invalid_metadata( + f"{dynamic_field!r} is not allowed as a dynamic field" + ) + elif dynamic_field not in _EMAIL_TO_RAW_MAPPING: + raise self._invalid_metadata( + f"{dynamic_field!r} is not a valid dynamic field" + ) + return list(map(str.lower, value)) + + def _process_provides_extra( + self, + value: list[str], + ) -> list[utils.NormalizedName]: + normalized_names = [] + try: + for name in value: + normalized_names.append(utils.canonicalize_name(name, validate=True)) + except utils.InvalidName as exc: + raise self._invalid_metadata( + f"{name!r} is invalid for {{field}}", cause=exc + ) from exc + else: + return normalized_names + + def _process_requires_python(self, value: str) -> specifiers.SpecifierSet: + try: + return specifiers.SpecifierSet(value) + except specifiers.InvalidSpecifier as exc: + raise self._invalid_metadata( + f"{value!r} is invalid for {{field}}", cause=exc + ) from exc + + def _process_requires_dist( + self, + value: list[str], + ) -> list[requirements.Requirement]: + reqs = [] + try: + for req in value: + reqs.append(requirements.Requirement(req)) + except requirements.InvalidRequirement as exc: + raise self._invalid_metadata( + f"{req!r} is invalid for {{field}}", cause=exc + ) from exc + else: + return reqs + + def _process_license_expression(self, value: str) -> NormalizedLicenseExpression: + try: + return licenses.canonicalize_license_expression(value) + except ValueError as exc: + raise self._invalid_metadata( + f"{value!r} is invalid for {{field}}", cause=exc + ) from exc + + def _process_license_files(self, value: list[str]) -> list[str]: + paths = [] + for path in value: + if ".." in path: + raise self._invalid_metadata( + f"{path!r} is invalid for {{field}}, " + "parent directory indicators are not allowed" + ) + if "*" in path: + raise self._invalid_metadata( + f"{path!r} is invalid for {{field}}, paths must be resolved" + ) + if ( + pathlib.PurePosixPath(path).is_absolute() + or pathlib.PureWindowsPath(path).is_absolute() + ): + raise self._invalid_metadata( + f"{path!r} is invalid for {{field}}, paths must be relative" + ) + if pathlib.PureWindowsPath(path).as_posix() != path: + raise self._invalid_metadata( + f"{path!r} is invalid for {{field}}, paths must use '/' delimiter" + ) + paths.append(path) + return paths + + def _process_import_names(self, value: list[str]) -> list[str]: + for import_name in value: + name, semicolon, private = import_name.partition(";") + name = name.rstrip() + for identifier in name.split("."): + if not identifier.isidentifier(): + raise self._invalid_metadata( + f"{name!r} is invalid for {{field}}; " + f"{identifier!r} is not a valid identifier" + ) + elif keyword.iskeyword(identifier): + raise self._invalid_metadata( + f"{name!r} is invalid for {{field}}; " + f"{identifier!r} is a keyword" + ) + if semicolon and private.lstrip() != "private": + raise self._invalid_metadata( + f"{import_name!r} is invalid for {{field}}; " + "the only valid option is 'private'" + ) + return value + + _process_import_namespaces = _process_import_names + + +class Metadata: + """Representation of distribution metadata. + + Compared to :class:`RawMetadata`, this class provides objects representing + metadata fields instead of only using built-in types. Any invalid metadata + will cause :exc:`InvalidMetadata` to be raised (with a + :py:attr:`~BaseException.__cause__` attribute as appropriate). + """ + + _raw: RawMetadata + + @classmethod + def from_raw(cls, data: RawMetadata, *, validate: bool = True) -> Metadata: + """Create an instance from :class:`RawMetadata`. + + If *validate* is true, all metadata will be validated. All exceptions + related to validation will be gathered and raised as an :class:`ExceptionGroup`. + """ + ins = cls() + ins._raw = data.copy() # Mutations occur due to caching enriched values. + + if validate: + exceptions: list[Exception] = [] + try: + metadata_version = ins.metadata_version + metadata_age = _VALID_METADATA_VERSIONS.index(metadata_version) + except InvalidMetadata as metadata_version_exc: + exceptions.append(metadata_version_exc) + metadata_version = None + + # Make sure to check for the fields that are present, the required + # fields (so their absence can be reported). + fields_to_check = frozenset(ins._raw) | _REQUIRED_ATTRS + # Remove fields that have already been checked. + fields_to_check -= {"metadata_version"} + + for key in fields_to_check: + try: + if metadata_version: + # Can't use getattr() as that triggers descriptor protocol which + # will fail due to no value for the instance argument. + try: + field_metadata_version = cls.__dict__[key].added + except KeyError: + exc = InvalidMetadata(key, f"unrecognized field: {key!r}") + exceptions.append(exc) + continue + field_age = _VALID_METADATA_VERSIONS.index( + field_metadata_version + ) + if field_age > metadata_age: + field = _RAW_TO_EMAIL_MAPPING[key] + exc = InvalidMetadata( + field, + f"{field} introduced in metadata version " + f"{field_metadata_version}, not {metadata_version}", + ) + exceptions.append(exc) + continue + getattr(ins, key) + except InvalidMetadata as exc: + exceptions.append(exc) + + if exceptions: + raise ExceptionGroup("invalid metadata", exceptions) + + return ins + + @classmethod + def from_email(cls, data: bytes | str, *, validate: bool = True) -> Metadata: + """Parse metadata from email headers. + + If *validate* is true, the metadata will be validated. All exceptions + related to validation will be gathered and raised as an :class:`ExceptionGroup`. + """ + raw, unparsed = parse_email(data) + + if validate: + exceptions: list[Exception] = [] + for unparsed_key in unparsed: + if unparsed_key in _EMAIL_TO_RAW_MAPPING: + message = f"{unparsed_key!r} has invalid data" + else: + message = f"unrecognized field: {unparsed_key!r}" + exceptions.append(InvalidMetadata(unparsed_key, message)) + + if exceptions: + raise ExceptionGroup("unparsed", exceptions) + + try: + return cls.from_raw(raw, validate=validate) + except ExceptionGroup as exc_group: + raise ExceptionGroup( + "invalid or unparsed metadata", exc_group.exceptions + ) from None + + metadata_version: _Validator[_MetadataVersion] = _Validator() + """:external:ref:`core-metadata-metadata-version` + (required; validated to be a valid metadata version)""" + # `name` is not normalized/typed to NormalizedName so as to provide access to + # the original/raw name. + name: _Validator[str] = _Validator() + """:external:ref:`core-metadata-name` + (required; validated using :func:`~packaging.utils.canonicalize_name` and its + *validate* parameter)""" + version: _Validator[version_module.Version] = _Validator() + """:external:ref:`core-metadata-version` (required)""" + dynamic: _Validator[list[str] | None] = _Validator( + added="2.2", + ) + """:external:ref:`core-metadata-dynamic` + (validated against core metadata field names and lowercased)""" + platforms: _Validator[list[str] | None] = _Validator() + """:external:ref:`core-metadata-platform`""" + supported_platforms: _Validator[list[str] | None] = _Validator(added="1.1") + """:external:ref:`core-metadata-supported-platform`""" + summary: _Validator[str | None] = _Validator() + """:external:ref:`core-metadata-summary` (validated to contain no newlines)""" + description: _Validator[str | None] = _Validator() # TODO 2.1: can be in body + """:external:ref:`core-metadata-description`""" + description_content_type: _Validator[str | None] = _Validator(added="2.1") + """:external:ref:`core-metadata-description-content-type` (validated)""" + keywords: _Validator[list[str] | None] = _Validator() + """:external:ref:`core-metadata-keywords`""" + home_page: _Validator[str | None] = _Validator() + """:external:ref:`core-metadata-home-page`""" + download_url: _Validator[str | None] = _Validator(added="1.1") + """:external:ref:`core-metadata-download-url`""" + author: _Validator[str | None] = _Validator() + """:external:ref:`core-metadata-author`""" + author_email: _Validator[str | None] = _Validator() + """:external:ref:`core-metadata-author-email`""" + maintainer: _Validator[str | None] = _Validator(added="1.2") + """:external:ref:`core-metadata-maintainer`""" + maintainer_email: _Validator[str | None] = _Validator(added="1.2") + """:external:ref:`core-metadata-maintainer-email`""" + license: _Validator[str | None] = _Validator() + """:external:ref:`core-metadata-license`""" + license_expression: _Validator[NormalizedLicenseExpression | None] = _Validator( + added="2.4" + ) + """:external:ref:`core-metadata-license-expression`""" + license_files: _Validator[list[str] | None] = _Validator(added="2.4") + """:external:ref:`core-metadata-license-file`""" + classifiers: _Validator[list[str] | None] = _Validator(added="1.1") + """:external:ref:`core-metadata-classifier`""" + requires_dist: _Validator[list[requirements.Requirement] | None] = _Validator( + added="1.2" + ) + """:external:ref:`core-metadata-requires-dist`""" + requires_python: _Validator[specifiers.SpecifierSet | None] = _Validator( + added="1.2" + ) + """:external:ref:`core-metadata-requires-python`""" + # Because `Requires-External` allows for non-PEP 440 version specifiers, we + # don't do any processing on the values. + requires_external: _Validator[list[str] | None] = _Validator(added="1.2") + """:external:ref:`core-metadata-requires-external`""" + project_urls: _Validator[dict[str, str] | None] = _Validator(added="1.2") + """:external:ref:`core-metadata-project-url`""" + # PEP 685 lets us raise an error if an extra doesn't pass `Name` validation + # regardless of metadata version. + provides_extra: _Validator[list[utils.NormalizedName] | None] = _Validator( + added="2.1", + ) + """:external:ref:`core-metadata-provides-extra`""" + provides_dist: _Validator[list[str] | None] = _Validator(added="1.2") + """:external:ref:`core-metadata-provides-dist`""" + obsoletes_dist: _Validator[list[str] | None] = _Validator(added="1.2") + """:external:ref:`core-metadata-obsoletes-dist`""" + import_names: _Validator[list[str] | None] = _Validator(added="2.5") + """:external:ref:`core-metadata-import-name`""" + import_namespaces: _Validator[list[str] | None] = _Validator(added="2.5") + """:external:ref:`core-metadata-import-namespace`""" + requires: _Validator[list[str] | None] = _Validator(added="1.1") + """``Requires`` (deprecated)""" + provides: _Validator[list[str] | None] = _Validator(added="1.1") + """``Provides`` (deprecated)""" + obsoletes: _Validator[list[str] | None] = _Validator(added="1.1") + """``Obsoletes`` (deprecated)""" + + def as_rfc822(self) -> RFC822Message: + """ + Return an RFC822 message with the metadata. + """ + message = RFC822Message() + self._write_metadata(message) + return message + + def _write_metadata(self, message: RFC822Message) -> None: + """ + Return an RFC822 message with the metadata. + """ + for name, validator in self.__class__.__dict__.items(): + if isinstance(validator, _Validator) and name != "description": + value = getattr(self, name) + email_name = _RAW_TO_EMAIL_MAPPING[name] + if value is not None: + if email_name == "project-url": + for label, url in value.items(): + message[email_name] = f"{label}, {url}" + elif email_name == "keywords": + message[email_name] = ",".join(value) + elif email_name == "import-name" and value == []: + message[email_name] = "" + elif isinstance(value, list): + for item in value: + message[email_name] = str(item) + else: + message[email_name] = str(value) + + # The description is a special case because it is in the body of the message. + if self.description is not None: + message.set_payload(self.description) diff --git a/venv/Lib/site-packages/pip/_vendor/packaking/py.typed b/venv/Lib/site-packages/pip/_vendor/packaking/py.typed new file mode 100644 index 0000000..06d7405 Binary files /dev/null and b/venv/Lib/site-packages/pip/_vendor/packaking/py.typed differ diff --git a/venv/Lib/site-packages/pip/_vendor/packaking/pylock.py b/venv/Lib/site-packages/pip/_vendor/packaking/pylock.py new file mode 100644 index 0000000..a564f15 --- /dev/null +++ b/venv/Lib/site-packages/pip/_vendor/packaking/pylock.py @@ -0,0 +1,635 @@ +from __future__ import annotations + +import dataclasses +import logging +import re +from collections.abc import Mapping, Sequence +from dataclasses import dataclass +from datetime import datetime +from typing import ( + TYPE_CHECKING, + Any, + Callable, + Protocol, + TypeVar, +) + +from .markers import Marker +from .specifiers import SpecifierSet +from .utils import NormalizedName, is_normalized_name +from .version import Version + +if TYPE_CHECKING: # pragma: no cover + from pathlib import Path + + from typing_extensions import Self + +_logger = logging.getLogger(__name__) + +__all__ = [ + "Package", + "PackageArchive", + "PackageDirectory", + "PackageSdist", + "PackageVcs", + "PackageWheel", + "Pylock", + "PylockUnsupportedVersionError", + "PylockValidationError", + "is_valid_pylock_path", +] + +_T = TypeVar("_T") +_T2 = TypeVar("_T2") + + +class _FromMappingProtocol(Protocol): # pragma: no cover + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: ... + + +_FromMappingProtocolT = TypeVar("_FromMappingProtocolT", bound=_FromMappingProtocol) + + +_PYLOCK_FILE_NAME_RE = re.compile(r"^pylock\.([^.]+)\.toml$") + + +def is_valid_pylock_path(path: Path) -> bool: + """Check if the given path is a valid pylock file path.""" + return path.name == "pylock.toml" or bool(_PYLOCK_FILE_NAME_RE.match(path.name)) + + +def _toml_key(key: str) -> str: + return key.replace("_", "-") + + +def _toml_value(key: str, value: Any) -> Any: # noqa: ANN401 + if isinstance(value, (Version, Marker, SpecifierSet)): + return str(value) + if isinstance(value, Sequence) and key == "environments": + return [str(v) for v in value] + return value + + +def _toml_dict_factory(data: list[tuple[str, Any]]) -> dict[str, Any]: + return { + _toml_key(key): _toml_value(key, value) + for key, value in data + if value is not None + } + + +def _get(d: Mapping[str, Any], expected_type: type[_T], key: str) -> _T | None: + """Get a value from the dictionary and verify it's the expected type.""" + if (value := d.get(key)) is None: + return None + if not isinstance(value, expected_type): + raise PylockValidationError( + f"Unexpected type {type(value).__name__} " + f"(expected {expected_type.__name__})", + context=key, + ) + return value + + +def _get_required(d: Mapping[str, Any], expected_type: type[_T], key: str) -> _T: + """Get a required value from the dictionary and verify it's the expected type.""" + if (value := _get(d, expected_type, key)) is None: + raise _PylockRequiredKeyError(key) + return value + + +def _get_sequence( + d: Mapping[str, Any], expected_item_type: type[_T], key: str +) -> Sequence[_T] | None: + """Get a list value from the dictionary and verify it's the expected items type.""" + if (value := _get(d, Sequence, key)) is None: # type: ignore[type-abstract] + return None + if isinstance(value, (str, bytes)): + # special case: str and bytes are Sequences, but we want to reject it + raise PylockValidationError( + f"Unexpected type {type(value).__name__} (expected Sequence)", + context=key, + ) + for i, item in enumerate(value): + if not isinstance(item, expected_item_type): + raise PylockValidationError( + f"Unexpected type {type(item).__name__} " + f"(expected {expected_item_type.__name__})", + context=f"{key}[{i}]", + ) + return value + + +def _get_as( + d: Mapping[str, Any], + expected_type: type[_T], + target_type: Callable[[_T], _T2], + key: str, +) -> _T2 | None: + """Get a value from the dictionary, verify it's the expected type, + and convert to the target type. + + This assumes the target_type constructor accepts the value. + """ + if (value := _get(d, expected_type, key)) is None: + return None + try: + return target_type(value) + except Exception as e: + raise PylockValidationError(e, context=key) from e + + +def _get_required_as( + d: Mapping[str, Any], + expected_type: type[_T], + target_type: Callable[[_T], _T2], + key: str, +) -> _T2: + """Get a required value from the dict, verify it's the expected type, + and convert to the target type.""" + if (value := _get_as(d, expected_type, target_type, key)) is None: + raise _PylockRequiredKeyError(key) + return value + + +def _get_sequence_as( + d: Mapping[str, Any], + expected_item_type: type[_T], + target_item_type: Callable[[_T], _T2], + key: str, +) -> list[_T2] | None: + """Get list value from dictionary and verify expected items type.""" + if (value := _get_sequence(d, expected_item_type, key)) is None: + return None + result = [] + try: + for item in value: + typed_item = target_item_type(item) + result.append(typed_item) + except Exception as e: + raise PylockValidationError(e, context=f"{key}[{len(result)}]") from e + return result + + +def _get_object( + d: Mapping[str, Any], target_type: type[_FromMappingProtocolT], key: str +) -> _FromMappingProtocolT | None: + """Get a dictionary value from the dictionary and convert it to a dataclass.""" + if (value := _get(d, Mapping, key)) is None: # type: ignore[type-abstract] + return None + try: + return target_type._from_dict(value) + except Exception as e: + raise PylockValidationError(e, context=key) from e + + +def _get_sequence_of_objects( + d: Mapping[str, Any], target_item_type: type[_FromMappingProtocolT], key: str +) -> list[_FromMappingProtocolT] | None: + """Get a list value from the dictionary and convert its items to a dataclass.""" + if (value := _get_sequence(d, Mapping, key)) is None: # type: ignore[type-abstract] + return None + result: list[_FromMappingProtocolT] = [] + try: + for item in value: + typed_item = target_item_type._from_dict(item) + result.append(typed_item) + except Exception as e: + raise PylockValidationError(e, context=f"{key}[{len(result)}]") from e + return result + + +def _get_required_sequence_of_objects( + d: Mapping[str, Any], target_item_type: type[_FromMappingProtocolT], key: str +) -> Sequence[_FromMappingProtocolT]: + """Get a required list value from the dictionary and convert its items to a + dataclass.""" + if (result := _get_sequence_of_objects(d, target_item_type, key)) is None: + raise _PylockRequiredKeyError(key) + return result + + +def _validate_normalized_name(name: str) -> NormalizedName: + """Validate that a string is a NormalizedName.""" + if not is_normalized_name(name): + raise PylockValidationError(f"Name {name!r} is not normalized") + return NormalizedName(name) + + +def _validate_path_url(path: str | None, url: str | None) -> None: + if not path and not url: + raise PylockValidationError("path or url must be provided") + + +def _validate_hashes(hashes: Mapping[str, Any]) -> Mapping[str, Any]: + if not hashes: + raise PylockValidationError("At least one hash must be provided") + if not all(isinstance(hash_val, str) for hash_val in hashes.values()): + raise PylockValidationError("Hash values must be strings") + return hashes + + +class PylockValidationError(Exception): + """Raised when when input data is not spec-compliant.""" + + context: str | None = None + message: str + + def __init__( + self, + cause: str | Exception, + *, + context: str | None = None, + ) -> None: + if isinstance(cause, PylockValidationError): + if cause.context: + self.context = ( + f"{context}.{cause.context}" if context else cause.context + ) + else: + self.context = context + self.message = cause.message + else: + self.context = context + self.message = str(cause) + + def __str__(self) -> str: + if self.context: + return f"{self.message} in {self.context!r}" + return self.message + + +class _PylockRequiredKeyError(PylockValidationError): + def __init__(self, key: str) -> None: + super().__init__("Missing required value", context=key) + + +class PylockUnsupportedVersionError(PylockValidationError): + """Raised when encountering an unsupported `lock_version`.""" + + +@dataclass(frozen=True, init=False) +class PackageVcs: + type: str + url: str | None = None + path: str | None = None + requested_revision: str | None = None + commit_id: str # type: ignore[misc] + subdirectory: str | None = None + + def __init__( + self, + *, + type: str, + url: str | None = None, + path: str | None = None, + requested_revision: str | None = None, + commit_id: str, + subdirectory: str | None = None, + ) -> None: + # In Python 3.10+ make dataclass kw_only=True and remove __init__ + object.__setattr__(self, "type", type) + object.__setattr__(self, "url", url) + object.__setattr__(self, "path", path) + object.__setattr__(self, "requested_revision", requested_revision) + object.__setattr__(self, "commit_id", commit_id) + object.__setattr__(self, "subdirectory", subdirectory) + + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: + package_vcs = cls( + type=_get_required(d, str, "type"), + url=_get(d, str, "url"), + path=_get(d, str, "path"), + requested_revision=_get(d, str, "requested-revision"), + commit_id=_get_required(d, str, "commit-id"), + subdirectory=_get(d, str, "subdirectory"), + ) + _validate_path_url(package_vcs.path, package_vcs.url) + return package_vcs + + +@dataclass(frozen=True, init=False) +class PackageDirectory: + path: str + editable: bool | None = None + subdirectory: str | None = None + + def __init__( + self, + *, + path: str, + editable: bool | None = None, + subdirectory: str | None = None, + ) -> None: + # In Python 3.10+ make dataclass kw_only=True and remove __init__ + object.__setattr__(self, "path", path) + object.__setattr__(self, "editable", editable) + object.__setattr__(self, "subdirectory", subdirectory) + + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: + return cls( + path=_get_required(d, str, "path"), + editable=_get(d, bool, "editable"), + subdirectory=_get(d, str, "subdirectory"), + ) + + +@dataclass(frozen=True, init=False) +class PackageArchive: + url: str | None = None + path: str | None = None + size: int | None = None + upload_time: datetime | None = None + hashes: Mapping[str, str] # type: ignore[misc] + subdirectory: str | None = None + + def __init__( + self, + *, + url: str | None = None, + path: str | None = None, + size: int | None = None, + upload_time: datetime | None = None, + hashes: Mapping[str, str], + subdirectory: str | None = None, + ) -> None: + # In Python 3.10+ make dataclass kw_only=True and remove __init__ + object.__setattr__(self, "url", url) + object.__setattr__(self, "path", path) + object.__setattr__(self, "size", size) + object.__setattr__(self, "upload_time", upload_time) + object.__setattr__(self, "hashes", hashes) + object.__setattr__(self, "subdirectory", subdirectory) + + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: + package_archive = cls( + url=_get(d, str, "url"), + path=_get(d, str, "path"), + size=_get(d, int, "size"), + upload_time=_get(d, datetime, "upload-time"), + hashes=_get_required_as(d, Mapping, _validate_hashes, "hashes"), # type: ignore[type-abstract] + subdirectory=_get(d, str, "subdirectory"), + ) + _validate_path_url(package_archive.path, package_archive.url) + return package_archive + + +@dataclass(frozen=True, init=False) +class PackageSdist: + name: str | None = None + upload_time: datetime | None = None + url: str | None = None + path: str | None = None + size: int | None = None + hashes: Mapping[str, str] # type: ignore[misc] + + def __init__( + self, + *, + name: str | None = None, + upload_time: datetime | None = None, + url: str | None = None, + path: str | None = None, + size: int | None = None, + hashes: Mapping[str, str], + ) -> None: + # In Python 3.10+ make dataclass kw_only=True and remove __init__ + object.__setattr__(self, "name", name) + object.__setattr__(self, "upload_time", upload_time) + object.__setattr__(self, "url", url) + object.__setattr__(self, "path", path) + object.__setattr__(self, "size", size) + object.__setattr__(self, "hashes", hashes) + + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: + package_sdist = cls( + name=_get(d, str, "name"), + upload_time=_get(d, datetime, "upload-time"), + url=_get(d, str, "url"), + path=_get(d, str, "path"), + size=_get(d, int, "size"), + hashes=_get_required_as(d, Mapping, _validate_hashes, "hashes"), # type: ignore[type-abstract] + ) + _validate_path_url(package_sdist.path, package_sdist.url) + return package_sdist + + +@dataclass(frozen=True, init=False) +class PackageWheel: + name: str | None = None + upload_time: datetime | None = None + url: str | None = None + path: str | None = None + size: int | None = None + hashes: Mapping[str, str] # type: ignore[misc] + + def __init__( + self, + *, + name: str | None = None, + upload_time: datetime | None = None, + url: str | None = None, + path: str | None = None, + size: int | None = None, + hashes: Mapping[str, str], + ) -> None: + # In Python 3.10+ make dataclass kw_only=True and remove __init__ + object.__setattr__(self, "name", name) + object.__setattr__(self, "upload_time", upload_time) + object.__setattr__(self, "url", url) + object.__setattr__(self, "path", path) + object.__setattr__(self, "size", size) + object.__setattr__(self, "hashes", hashes) + + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: + package_wheel = cls( + name=_get(d, str, "name"), + upload_time=_get(d, datetime, "upload-time"), + url=_get(d, str, "url"), + path=_get(d, str, "path"), + size=_get(d, int, "size"), + hashes=_get_required_as(d, Mapping, _validate_hashes, "hashes"), # type: ignore[type-abstract] + ) + _validate_path_url(package_wheel.path, package_wheel.url) + return package_wheel + + +@dataclass(frozen=True, init=False) +class Package: + name: NormalizedName + version: Version | None = None + marker: Marker | None = None + requires_python: SpecifierSet | None = None + dependencies: Sequence[Mapping[str, Any]] | None = None + vcs: PackageVcs | None = None + directory: PackageDirectory | None = None + archive: PackageArchive | None = None + index: str | None = None + sdist: PackageSdist | None = None + wheels: Sequence[PackageWheel] | None = None + attestation_identities: Sequence[Mapping[str, Any]] | None = None + tool: Mapping[str, Any] | None = None + + def __init__( + self, + *, + name: NormalizedName, + version: Version | None = None, + marker: Marker | None = None, + requires_python: SpecifierSet | None = None, + dependencies: Sequence[Mapping[str, Any]] | None = None, + vcs: PackageVcs | None = None, + directory: PackageDirectory | None = None, + archive: PackageArchive | None = None, + index: str | None = None, + sdist: PackageSdist | None = None, + wheels: Sequence[PackageWheel] | None = None, + attestation_identities: Sequence[Mapping[str, Any]] | None = None, + tool: Mapping[str, Any] | None = None, + ) -> None: + # In Python 3.10+ make dataclass kw_only=True and remove __init__ + object.__setattr__(self, "name", name) + object.__setattr__(self, "version", version) + object.__setattr__(self, "marker", marker) + object.__setattr__(self, "requires_python", requires_python) + object.__setattr__(self, "dependencies", dependencies) + object.__setattr__(self, "vcs", vcs) + object.__setattr__(self, "directory", directory) + object.__setattr__(self, "archive", archive) + object.__setattr__(self, "index", index) + object.__setattr__(self, "sdist", sdist) + object.__setattr__(self, "wheels", wheels) + object.__setattr__(self, "attestation_identities", attestation_identities) + object.__setattr__(self, "tool", tool) + + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: + package = cls( + name=_get_required_as(d, str, _validate_normalized_name, "name"), + version=_get_as(d, str, Version, "version"), + requires_python=_get_as(d, str, SpecifierSet, "requires-python"), + dependencies=_get_sequence(d, Mapping, "dependencies"), # type: ignore[type-abstract] + marker=_get_as(d, str, Marker, "marker"), + vcs=_get_object(d, PackageVcs, "vcs"), + directory=_get_object(d, PackageDirectory, "directory"), + archive=_get_object(d, PackageArchive, "archive"), + index=_get(d, str, "index"), + sdist=_get_object(d, PackageSdist, "sdist"), + wheels=_get_sequence_of_objects(d, PackageWheel, "wheels"), + attestation_identities=_get_sequence(d, Mapping, "attestation-identities"), # type: ignore[type-abstract] + tool=_get(d, Mapping, "tool"), # type: ignore[type-abstract] + ) + distributions = bool(package.sdist) + len(package.wheels or []) + direct_urls = ( + bool(package.vcs) + bool(package.directory) + bool(package.archive) + ) + if distributions > 0 and direct_urls > 0: + raise PylockValidationError( + "None of vcs, directory, archive must be set if sdist or wheels are set" + ) + if distributions == 0 and direct_urls != 1: + raise PylockValidationError( + "Exactly one of vcs, directory, archive must be set " + "if sdist and wheels are not set" + ) + try: + for i, attestation_identity in enumerate( # noqa: B007 + package.attestation_identities or [] + ): + _get_required(attestation_identity, str, "kind") + except Exception as e: + raise PylockValidationError( + e, context=f"attestation-identities[{i}]" + ) from e + return package + + @property + def is_direct(self) -> bool: + return not (self.sdist or self.wheels) + + +@dataclass(frozen=True, init=False) +class Pylock: + """A class representing a pylock file.""" + + lock_version: Version + environments: Sequence[Marker] | None = None + requires_python: SpecifierSet | None = None + extras: Sequence[NormalizedName] | None = None + dependency_groups: Sequence[str] | None = None + default_groups: Sequence[str] | None = None + created_by: str # type: ignore[misc] + packages: Sequence[Package] # type: ignore[misc] + tool: Mapping[str, Any] | None = None + + def __init__( + self, + *, + lock_version: Version, + environments: Sequence[Marker] | None = None, + requires_python: SpecifierSet | None = None, + extras: Sequence[NormalizedName] | None = None, + dependency_groups: Sequence[str] | None = None, + default_groups: Sequence[str] | None = None, + created_by: str, + packages: Sequence[Package], + tool: Mapping[str, Any] | None = None, + ) -> None: + # In Python 3.10+ make dataclass kw_only=True and remove __init__ + object.__setattr__(self, "lock_version", lock_version) + object.__setattr__(self, "environments", environments) + object.__setattr__(self, "requires_python", requires_python) + object.__setattr__(self, "extras", extras) + object.__setattr__(self, "dependency_groups", dependency_groups) + object.__setattr__(self, "default_groups", default_groups) + object.__setattr__(self, "created_by", created_by) + object.__setattr__(self, "packages", packages) + object.__setattr__(self, "tool", tool) + + @classmethod + def _from_dict(cls, d: Mapping[str, Any]) -> Self: + pylock = cls( + lock_version=_get_required_as(d, str, Version, "lock-version"), + environments=_get_sequence_as(d, str, Marker, "environments"), + extras=_get_sequence_as(d, str, _validate_normalized_name, "extras"), + dependency_groups=_get_sequence(d, str, "dependency-groups"), + default_groups=_get_sequence(d, str, "default-groups"), + created_by=_get_required(d, str, "created-by"), + requires_python=_get_as(d, str, SpecifierSet, "requires-python"), + packages=_get_required_sequence_of_objects(d, Package, "packages"), + tool=_get(d, Mapping, "tool"), # type: ignore[type-abstract] + ) + if not Version("1") <= pylock.lock_version < Version("2"): + raise PylockUnsupportedVersionError( + f"pylock version {pylock.lock_version} is not supported" + ) + if pylock.lock_version > Version("1.0"): + _logger.warning( + "pylock minor version %s is not supported", pylock.lock_version + ) + return pylock + + @classmethod + def from_dict(cls, d: Mapping[str, Any], /) -> Self: + """Create and validate a Pylock instance from a TOML dictionary. + + Raises :class:`PylockValidationError` if the input data is not + spec-compliant. + """ + return cls._from_dict(d) + + def to_dict(self) -> Mapping[str, Any]: + """Convert the Pylock instance to a TOML dictionary.""" + return dataclasses.asdict(self, dict_factory=_toml_dict_factory) + + def validate(self) -> None: + """Validate the Pylock instance against the specification. + + Raises :class:`PylockValidationError` otherwise.""" + self.from_dict(self.to_dict()) diff --git a/venv/Lib/site-packages/pip/_vendor/packaking/requirements.py b/venv/Lib/site-packages/pip/_vendor/packaking/requirements.py new file mode 100644 index 0000000..3079be6 --- /dev/null +++ b/venv/Lib/site-packages/pip/_vendor/packaking/requirements.py @@ -0,0 +1,86 @@ +# This file is dual licensed under the terms of the Apache License, Version +# 2.0, and the BSD License. See the LICENSE file in the root of this repository +# for complete details. +from __future__ import annotations + +from typing import Iterator + +from ._parser import parse_requirement as _parse_requirement +from ._tokenizer import ParserSyntaxError +from .markers import Marker, _normalize_extra_values +from .specifiers import SpecifierSet +from .utils import canonicalize_name + + +class InvalidRequirement(ValueError): + """ + An invalid requirement was found, users should refer to PEP 508. + """ + + +class Requirement: + """Parse a requirement. + + Parse a given requirement string into its parts, such as name, specifier, + URL, and extras. Raises InvalidRequirement on a badly-formed requirement + string. + """ + + # TODO: Can we test whether something is contained within a requirement? + # If so how do we do that? Do we need to test against the _name_ of + # the thing as well as the version? What about the markers? + # TODO: Can we normalize the name and extra name? + + def __init__(self, requirement_string: str) -> None: + try: + parsed = _parse_requirement(requirement_string) + except ParserSyntaxError as e: + raise InvalidRequirement(str(e)) from e + + self.name: str = parsed.name + self.url: str | None = parsed.url or None + self.extras: set[str] = set(parsed.extras or []) + self.specifier: SpecifierSet = SpecifierSet(parsed.specifier) + self.marker: Marker | None = None + if parsed.marker is not None: + self.marker = Marker.__new__(Marker) + self.marker._markers = _normalize_extra_values(parsed.marker) + + def _iter_parts(self, name: str) -> Iterator[str]: + yield name + + if self.extras: + formatted_extras = ",".join(sorted(self.extras)) + yield f"[{formatted_extras}]" + + if self.specifier: + yield str(self.specifier) + + if self.url: + yield f" @ {self.url}" + if self.marker: + yield " " + + if self.marker: + yield f"; {self.marker}" + + def __str__(self) -> str: + return "".join(self._iter_parts(self.name)) + + def __repr__(self) -> str: + return f"<{self.__class__.__name__}('{self}')>" + + def __hash__(self) -> int: + return hash(tuple(self._iter_parts(canonicalize_name(self.name)))) + + def __eq__(self, other: object) -> bool: + if not isinstance(other, Requirement): + return NotImplemented + + return ( + canonicalize_name(self.name) == canonicalize_name(other.name) + and self.extras == other.extras + and self.specifier == other.specifier + and self.url == other.url + and self.marker == other.marker + )