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226 lines
9.1 KiB
226 lines
9.1 KiB
# Copyright 2019 The Meson development team |
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# Licensed under the Apache License, Version 2.0 (the "License"); |
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# you may not use this file except in compliance with the License. |
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# You may obtain a copy of the License at |
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# http://www.apache.org/licenses/LICENSE-2.0 |
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# Unless required by applicable law or agreed to in writing, software |
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# distributed under the License is distributed on an "AS IS" BASIS, |
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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# See the License for the specific language governing permissions and |
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# limitations under the License. |
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import typing as T |
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import hashlib |
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import os |
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from pathlib import Path, PurePath, PureWindowsPath |
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from .. import mlog |
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from . import ExtensionModule |
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from . import ModuleReturnValue |
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from ..mesonlib import ( |
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File, |
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FileOrString, |
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MesonException, |
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path_is_in_root, |
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) |
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from ..interpreterbase import FeatureNew, typed_pos_args, noKwargs, permittedKwargs |
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if T.TYPE_CHECKING: |
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from . import ModuleState |
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from ..interpreter import Interpreter |
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class FSModule(ExtensionModule): |
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def __init__(self, interpreter: 'Interpreter') -> None: |
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super().__init__(interpreter) |
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self.snippets.add('generate_dub_file') |
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def _absolute_dir(self, state: 'ModuleState', arg: str) -> Path: |
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""" |
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make an absolute path from a relative path, WITHOUT resolving symlinks |
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""" |
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return Path(state.source_root) / Path(state.subdir) / Path(arg).expanduser() |
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def _resolve_dir(self, state: 'ModuleState', arg: str) -> Path: |
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""" |
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resolves symlinks and makes absolute a directory relative to calling meson.build, |
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if not already absolute |
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""" |
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path = self._absolute_dir(state, arg) |
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try: |
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# accommodate unresolvable paths e.g. symlink loops |
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path = path.resolve() |
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except Exception: |
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# return the best we could do |
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pass |
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return path |
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def _check(self, check: str, state: 'ModuleState', args: T.Sequence[str]) -> ModuleReturnValue: |
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test_file = self._resolve_dir(state, args[0]) |
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val = getattr(test_file, check)() |
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if isinstance(val, Path): |
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val = str(val) |
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return ModuleReturnValue(val, []) |
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@noKwargs |
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@FeatureNew('fs.expanduser', '0.54.0') |
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@typed_pos_args('fs.expanduser', str) |
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def expanduser(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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return ModuleReturnValue(str(Path(args[0]).expanduser()), []) |
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@noKwargs |
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@FeatureNew('fs.is_absolute', '0.54.0') |
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@typed_pos_args('fs.is_absolute', str) |
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def is_absolute(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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return ModuleReturnValue(PurePath(args[0]).is_absolute(), []) |
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@noKwargs |
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@FeatureNew('fs.as_posix', '0.54.0') |
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@typed_pos_args('fs.as_posix', str) |
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def as_posix(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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""" |
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this function assumes you are passing a Windows path, even if on a Unix-like system |
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and so ALL '\' are turned to '/', even if you meant to escape a character |
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""" |
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return ModuleReturnValue(PureWindowsPath(args[0]).as_posix(), []) |
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@noKwargs |
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@typed_pos_args('fs.exists', str) |
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def exists(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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return self._check('exists', state, args) |
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@noKwargs |
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@typed_pos_args('fs.is_symlink', str) |
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def is_symlink(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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return ModuleReturnValue(self._absolute_dir(state, args[0]).is_symlink(), []) |
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@noKwargs |
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@typed_pos_args('fs.is_file', str) |
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def is_file(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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return self._check('is_file', state, args) |
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@noKwargs |
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@typed_pos_args('fs.is_dir', str) |
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def is_dir(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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return self._check('is_dir', state, args) |
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@noKwargs |
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@typed_pos_args('fs.hash', str, str) |
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def hash(self, state: 'ModuleState', args: T.Tuple[str, str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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file = self._resolve_dir(state, args[0]) |
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if not file.is_file(): |
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raise MesonException(f'{file} is not a file and therefore cannot be hashed') |
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try: |
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h = hashlib.new(args[1]) |
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except ValueError: |
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raise MesonException('hash algorithm {} is not available'.format(args[1])) |
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mlog.debug('computing {} sum of {} size {} bytes'.format(args[1], file, file.stat().st_size)) |
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h.update(file.read_bytes()) |
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return ModuleReturnValue(h.hexdigest(), []) |
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@noKwargs |
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@typed_pos_args('fs.size', str) |
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def size(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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file = self._resolve_dir(state, args[0]) |
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if not file.is_file(): |
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raise MesonException(f'{file} is not a file and therefore cannot be sized') |
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try: |
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return ModuleReturnValue(file.stat().st_size, []) |
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except ValueError: |
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raise MesonException('{} size could not be determined'.format(args[0])) |
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@noKwargs |
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@typed_pos_args('fs.is_samepath', str, str) |
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def is_samepath(self, state: 'ModuleState', args: T.Tuple[str, str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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file1 = self._resolve_dir(state, args[0]) |
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file2 = self._resolve_dir(state, args[1]) |
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if not file1.exists(): |
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return ModuleReturnValue(False, []) |
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if not file2.exists(): |
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return ModuleReturnValue(False, []) |
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try: |
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return ModuleReturnValue(file1.samefile(file2), []) |
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except OSError: |
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return ModuleReturnValue(False, []) |
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@noKwargs |
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@typed_pos_args('fs.replace_suffix', str, str) |
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def replace_suffix(self, state: 'ModuleState', args: T.Tuple[str, str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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original = PurePath(args[0]) |
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new = original.with_suffix(args[1]) |
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return ModuleReturnValue(str(new), []) |
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@noKwargs |
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@typed_pos_args('fs.parent', str) |
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def parent(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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original = PurePath(args[0]) |
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new = original.parent |
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return ModuleReturnValue(str(new), []) |
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@noKwargs |
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@typed_pos_args('fs.name', str) |
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def name(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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original = PurePath(args[0]) |
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new = original.name |
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return ModuleReturnValue(str(new), []) |
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@noKwargs |
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@typed_pos_args('fs.stem', str) |
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@FeatureNew('fs.stem', '0.54.0') |
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def stem(self, state: 'ModuleState', args: T.Tuple[str], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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original = PurePath(args[0]) |
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new = original.stem |
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return ModuleReturnValue(str(new), []) |
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@FeatureNew('fs.read', '0.57.0') |
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@permittedKwargs({'encoding'}) |
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@typed_pos_args('fs.read', (str, File)) |
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def read(self, state: 'ModuleState', args: T.Tuple['FileOrString'], kwargs: T.Dict[str, T.Any]) -> ModuleReturnValue: |
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"""Read a file from the source tree and return its value as a decoded |
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string. |
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If the encoding is not specified, the file is assumed to be utf-8 |
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encoded. Paths must be relative by default (to prevent accidents) and |
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are forbidden to be read from the build directory (to prevent build |
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loops) |
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""" |
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path = args[0] |
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encoding: str = kwargs.get('encoding', 'utf-8') |
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if not isinstance(encoding, str): |
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raise MesonException('`encoding` parameter must be a string') |
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src_dir = self.interpreter.environment.source_dir |
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sub_dir = self.interpreter.subdir |
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build_dir = self.interpreter.environment.get_build_dir() |
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if isinstance(path, File): |
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if path.is_built: |
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raise MesonException( |
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'fs.read_file does not accept built files() objects') |
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path = os.path.join(src_dir, path.relative_name()) |
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else: |
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if sub_dir: |
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src_dir = os.path.join(src_dir, sub_dir) |
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path = os.path.join(src_dir, path) |
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path = os.path.abspath(path) |
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if path_is_in_root(Path(path), Path(build_dir), resolve=True): |
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raise MesonException('path must not be in the build tree') |
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try: |
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with open(path, encoding=encoding) as f: |
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data = f.read() |
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except UnicodeDecodeError: |
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raise MesonException(f'decoding failed for {path}') |
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# Reconfigure when this file changes as it can contain data used by any |
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# part of the build configuration (e.g. `project(..., version: |
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# fs.read_file('VERSION')` or `configure_file(...)` |
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self.interpreter.add_build_def_file(path) |
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return ModuleReturnValue(data, []) |
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def initialize(*args: T.Any, **kwargs: T.Any) -> FSModule: |
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return FSModule(*args, **kwargs)
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