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import collections.abc |
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import functools |
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import itertools |
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import subprocess |
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import warnings |
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from collections import abc |
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from importlib import import_module |
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from inspect import getfullargspec |
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from itertools import repeat |
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def _ntuple(n): |
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def parse(x): |
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if isinstance(x, collections.abc.Iterable): |
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return x |
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return tuple(repeat(x, n)) |
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return parse |
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to_1tuple = _ntuple(1) |
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to_2tuple = _ntuple(2) |
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to_3tuple = _ntuple(3) |
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to_4tuple = _ntuple(4) |
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to_ntuple = _ntuple |
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def is_str(x): |
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"""Whether the input is an string instance. |
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Note: This method is deprecated since python 2 is no longer supported. |
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""" |
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return isinstance(x, str) |
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def import_modules_from_strings(imports, allow_failed_imports=False): |
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"""Import modules from the given list of strings. |
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Args: |
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imports (list | str | None): The given module names to be imported. |
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allow_failed_imports (bool): If True, the failed imports will return |
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None. Otherwise, an ImportError is raise. Default: False. |
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Returns: |
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list[module] | module | None: The imported modules. |
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Examples: |
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>>> osp, sys = import_modules_from_strings( |
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... ['os.path', 'sys']) |
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>>> import os.path as osp_ |
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>>> import sys as sys_ |
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>>> assert osp == osp_ |
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>>> assert sys == sys_ |
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""" |
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if not imports: |
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return |
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single_import = False |
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if isinstance(imports, str): |
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single_import = True |
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imports = [imports] |
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if not isinstance(imports, list): |
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raise TypeError( |
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f'custom_imports must be a list but got type {type(imports)}') |
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imported = [] |
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for imp in imports: |
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if not isinstance(imp, str): |
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raise TypeError( |
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f'{imp} is of type {type(imp)} and cannot be imported.') |
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try: |
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imported_tmp = import_module(imp) |
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except ImportError: |
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if allow_failed_imports: |
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warnings.warn(f'{imp} failed to import and is ignored.', |
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UserWarning) |
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imported_tmp = None |
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else: |
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raise ImportError |
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imported.append(imported_tmp) |
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if single_import: |
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imported = imported[0] |
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return imported |
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def iter_cast(inputs, dst_type, return_type=None): |
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"""Cast elements of an iterable object into some type. |
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Args: |
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inputs (Iterable): The input object. |
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dst_type (type): Destination type. |
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return_type (type, optional): If specified, the output object will be |
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converted to this type, otherwise an iterator. |
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Returns: |
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iterator or specified type: The converted object. |
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""" |
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if not isinstance(inputs, abc.Iterable): |
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raise TypeError('inputs must be an iterable object') |
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if not isinstance(dst_type, type): |
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raise TypeError('"dst_type" must be a valid type') |
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out_iterable = map(dst_type, inputs) |
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if return_type is None: |
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return out_iterable |
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else: |
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return return_type(out_iterable) |
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def list_cast(inputs, dst_type): |
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"""Cast elements of an iterable object into a list of some type. |
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A partial method of :func:`iter_cast`. |
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""" |
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return iter_cast(inputs, dst_type, return_type=list) |
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def tuple_cast(inputs, dst_type): |
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"""Cast elements of an iterable object into a tuple of some type. |
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A partial method of :func:`iter_cast`. |
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""" |
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return iter_cast(inputs, dst_type, return_type=tuple) |
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def is_seq_of(seq, expected_type, seq_type=None): |
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"""Check whether it is a sequence of some type. |
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Args: |
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seq (Sequence): The sequence to be checked. |
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expected_type (type): Expected type of sequence items. |
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seq_type (type, optional): Expected sequence type. |
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Returns: |
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bool: Whether the sequence is valid. |
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""" |
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if seq_type is None: |
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exp_seq_type = abc.Sequence |
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else: |
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assert isinstance(seq_type, type) |
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exp_seq_type = seq_type |
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if not isinstance(seq, exp_seq_type): |
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return False |
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for item in seq: |
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if not isinstance(item, expected_type): |
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return False |
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return True |
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def is_list_of(seq, expected_type): |
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"""Check whether it is a list of some type. |
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A partial method of :func:`is_seq_of`. |
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""" |
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return is_seq_of(seq, expected_type, seq_type=list) |
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def is_tuple_of(seq, expected_type): |
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"""Check whether it is a tuple of some type. |
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A partial method of :func:`is_seq_of`. |
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""" |
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return is_seq_of(seq, expected_type, seq_type=tuple) |
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def slice_list(in_list, lens): |
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"""Slice a list into several sub lists by a list of given length. |
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Args: |
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in_list (list): The list to be sliced. |
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lens(int or list): The expected length of each out list. |
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Returns: |
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list: A list of sliced list. |
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""" |
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if isinstance(lens, int): |
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assert len(in_list) % lens == 0 |
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lens = [lens] * int(len(in_list) / lens) |
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if not isinstance(lens, list): |
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raise TypeError('"indices" must be an integer or a list of integers') |
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elif sum(lens) != len(in_list): |
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raise ValueError('sum of lens and list length does not ' |
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f'match: {sum(lens)} != {len(in_list)}') |
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out_list = [] |
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idx = 0 |
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for i in range(len(lens)): |
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out_list.append(in_list[idx:idx + lens[i]]) |
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idx += lens[i] |
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return out_list |
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def concat_list(in_list): |
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"""Concatenate a list of list into a single list. |
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Args: |
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in_list (list): The list of list to be merged. |
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Returns: |
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list: The concatenated flat list. |
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""" |
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return list(itertools.chain(*in_list)) |
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def check_prerequisites( |
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prerequisites, |
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checker, |
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msg_tmpl='Prerequisites "{}" are required in method "{}" but not ' |
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'found, please install them first.'): |
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"""A decorator factory to check if prerequisites are satisfied. |
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Args: |
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prerequisites (str of list[str]): Prerequisites to be checked. |
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checker (callable): The checker method that returns True if a |
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prerequisite is meet, False otherwise. |
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msg_tmpl (str): The message template with two variables. |
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Returns: |
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decorator: A specific decorator. |
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""" |
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def wrap(func): |
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@functools.wraps(func) |
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def wrapped_func(*args, **kwargs): |
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requirements = [prerequisites] if isinstance( |
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prerequisites, str) else prerequisites |
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missing = [] |
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for item in requirements: |
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if not checker(item): |
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missing.append(item) |
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if missing: |
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print(msg_tmpl.format(', '.join(missing), func.__name__)) |
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raise RuntimeError('Prerequisites not meet.') |
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else: |
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return func(*args, **kwargs) |
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return wrapped_func |
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return wrap |
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def _check_py_package(package): |
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try: |
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import_module(package) |
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except ImportError: |
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return False |
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else: |
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return True |
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def _check_executable(cmd): |
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if subprocess.call(f'which {cmd}', shell=True) != 0: |
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return False |
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else: |
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return True |
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def requires_package(prerequisites): |
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"""A decorator to check if some python packages are installed. |
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Example: |
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>>> @requires_package('numpy') |
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>>> func(arg1, args): |
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>>> return numpy.zeros(1) |
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array([0.]) |
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>>> @requires_package(['numpy', 'non_package']) |
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>>> func(arg1, args): |
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>>> return numpy.zeros(1) |
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ImportError |
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""" |
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return check_prerequisites(prerequisites, checker=_check_py_package) |
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def requires_executable(prerequisites): |
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"""A decorator to check if some executable files are installed. |
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Example: |
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>>> @requires_executable('ffmpeg') |
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>>> func(arg1, args): |
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>>> print(1) |
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1 |
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""" |
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return check_prerequisites(prerequisites, checker=_check_executable) |
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def deprecated_api_warning(name_dict, cls_name=None): |
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"""A decorator to check if some arguments are deprecate and try to replace |
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deprecate src_arg_name to dst_arg_name. |
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Args: |
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name_dict(dict): |
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key (str): Deprecate argument names. |
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val (str): Expected argument names. |
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Returns: |
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func: New function. |
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""" |
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def api_warning_wrapper(old_func): |
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@functools.wraps(old_func) |
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def new_func(*args, **kwargs): |
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args_info = getfullargspec(old_func) |
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func_name = old_func.__name__ |
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if cls_name is not None: |
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func_name = f'{cls_name}.{func_name}' |
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if args: |
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arg_names = args_info.args[:len(args)] |
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for src_arg_name, dst_arg_name in name_dict.items(): |
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if src_arg_name in arg_names: |
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warnings.warn( |
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f'"{src_arg_name}" is deprecated in ' |
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f'`{func_name}`, please use "{dst_arg_name}" ' |
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'instead') |
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arg_names[arg_names.index(src_arg_name)] = dst_arg_name |
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if kwargs: |
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for src_arg_name, dst_arg_name in name_dict.items(): |
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if src_arg_name in kwargs: |
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assert dst_arg_name not in kwargs, ( |
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f'The expected behavior is to replace ' |
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f'the deprecated key `{src_arg_name}` to ' |
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f'new key `{dst_arg_name}`, but got them ' |
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f'in the arguments at the same time, which ' |
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f'is confusing. `{src_arg_name} will be ' |
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f'deprecated in the future, please ' |
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f'use `{dst_arg_name}` instead.') |
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warnings.warn( |
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f'"{src_arg_name}" is deprecated in ' |
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f'`{func_name}`, please use "{dst_arg_name}" ' |
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'instead') |
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kwargs[dst_arg_name] = kwargs.pop(src_arg_name) |
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output = old_func(*args, **kwargs) |
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return output |
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return new_func |
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return api_warning_wrapper |
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def is_method_overridden(method, base_class, derived_class): |
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"""Check if a method of base class is overridden in derived class. |
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Args: |
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method (str): the method name to check. |
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base_class (type): the class of the base class. |
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derived_class (type | Any): the class or instance of the derived class. |
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""" |
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assert isinstance(base_class, type), \ |
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"base_class doesn't accept instance, Please pass class instead." |
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if not isinstance(derived_class, type): |
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derived_class = derived_class.__class__ |
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base_method = getattr(base_class, method) |
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derived_method = getattr(derived_class, method) |
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return derived_method != base_method |
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def has_method(obj: object, method: str) -> bool: |
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"""Check whether the object has a method. |
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Args: |
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method (str): The method name to check. |
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obj (object): The object to check. |
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Returns: |
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bool: True if the object has the method else False. |
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""" |
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return hasattr(obj, method) and callable(getattr(obj, method)) |
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