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324 lines
10 KiB
Python
324 lines
10 KiB
Python
# Created By: Virgil Dupras
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# Created On: 2011-01-11
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# Copyright 2015 Hardcoded Software (http://www.hardcoded.net)
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#
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# This software is licensed under the "GPLv3" License as described in the "LICENSE" file,
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# which should be included with this package. The terms are also available at
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# http://www.gnu.org/licenses/gpl-3.0.html
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from math import ceil
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from pathlib import Path
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from hscommon.path import pathify, log_io_error
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from typing import IO, Any, Callable, Generator, Iterable, List, Tuple, Union
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def nonone(value: Any, replace_value: Any) -> Any:
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"""Returns ``value`` if ``value`` is not ``None``. Returns ``replace_value`` otherwise."""
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if value is None:
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return replace_value
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else:
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return value
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def tryint(value: Any, default: int = 0) -> int:
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"""Tries to convert ``value`` to in ``int`` and returns ``default`` if it fails."""
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try:
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return int(value)
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except (TypeError, ValueError):
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return default
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# --- Sequence related
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def dedupe(iterable: Iterable[Any]) -> List[Any]:
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"""Returns a list of elements in ``iterable`` with all dupes removed.
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The order of the elements is preserved.
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"""
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result = []
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seen = {}
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for item in iterable:
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if item in seen:
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continue
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seen[item] = 1
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result.append(item)
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return result
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def flatten(iterables: Iterable[Iterable], start_with: Iterable[Any] = None) -> List[Any]:
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"""Takes a list of lists ``iterables`` and returns a list containing elements of every list.
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If ``start_with`` is not ``None``, the result will start with ``start_with`` items, exactly as
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if ``start_with`` would be the first item of lists.
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"""
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result: List[Any] = []
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if start_with:
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result.extend(start_with)
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for iterable in iterables:
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result.extend(iterable)
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return result
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def first(iterable: Iterable[Any]):
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"""Returns the first item of ``iterable``."""
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try:
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return next(iter(iterable))
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except StopIteration:
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return None
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def extract(predicate: Callable[[Any], bool], iterable: Iterable[Any]) -> Tuple[List[Any], List[Any]]:
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"""Separates the wheat from the shaft (`predicate` defines what's the wheat), and returns both."""
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wheat = []
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shaft = []
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for item in iterable:
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if predicate(item):
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wheat.append(item)
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else:
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shaft.append(item)
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return wheat, shaft
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def allsame(iterable: Iterable[Any]) -> bool:
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"""Returns whether all elements of 'iterable' are the same."""
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it = iter(iterable)
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try:
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first_item = next(it)
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except StopIteration:
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raise ValueError("iterable cannot be empty")
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return all(element == first_item for element in it)
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def iterconsume(seq: List[Any], reverse: bool = True) -> Generator[Any, None, None]:
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"""Iterate over ``seq`` and pops yielded objects.
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Because we use the ``pop()`` method, we reverse ``seq`` before proceeding. If you don't need
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to do that, set ``reverse`` to ``False``.
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This is useful in tight memory situation where you are looping over a sequence of objects that
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are going to be discarded afterwards. If you're creating other objects during that iteration
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you might want to use this to avoid ``MemoryError``.
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"""
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if reverse:
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seq.reverse()
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while seq:
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yield seq.pop()
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# --- String related
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def escape(s: str, to_escape: str, escape_with: str = "\\") -> str:
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"""Returns ``s`` with characters in ``to_escape`` all prepended with ``escape_with``."""
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return "".join((escape_with + c if c in to_escape else c) for c in s)
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def get_file_ext(filename: str) -> str:
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"""Returns the lowercase extension part of filename, without the dot."""
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pos = filename.rfind(".")
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if pos > -1:
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return filename[pos + 1 :].lower()
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else:
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return ""
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def rem_file_ext(filename: str) -> str:
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"""Returns the filename without extension."""
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pos = filename.rfind(".")
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if pos > -1:
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return filename[:pos]
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else:
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return filename
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# TODO type hint number
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def pluralize(number, word: str, decimals: int = 0, plural_word: Union[str, None] = None) -> str:
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"""Returns a pluralized string with ``number`` in front of ``word``.
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Adds a 's' to s if ``number`` > 1.
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``number``: The number to go in front of s
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``word``: The word to go after number
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``decimals``: The number of digits after the dot
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``plural_word``: If the plural rule for word is more complex than adding a 's', specify a plural
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"""
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number = round(number, decimals)
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plural_format = "%%1.%df %%s" % decimals
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if number > 1:
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if plural_word is None:
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word += "s"
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else:
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word = plural_word
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return plural_format % (number, word)
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def format_time(seconds: int, with_hours: bool = True) -> str:
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"""Transforms seconds in a hh:mm:ss string.
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If ``with_hours`` if false, the format is mm:ss.
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"""
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minus = seconds < 0
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if minus:
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seconds *= -1
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m, s = divmod(seconds, 60)
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if with_hours:
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h, m = divmod(m, 60)
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r = "%02d:%02d:%02d" % (h, m, s)
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else:
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r = "%02d:%02d" % (m, s)
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if minus:
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return "-" + r
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else:
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return r
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def format_time_decimal(seconds: int) -> str:
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"""Transforms seconds in a strings like '3.4 minutes'."""
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minus = seconds < 0
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if minus:
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seconds *= -1
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if seconds < 60:
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r = pluralize(seconds, "second", 1)
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elif seconds < 3600:
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r = pluralize(seconds / 60.0, "minute", 1)
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elif seconds < 86400:
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r = pluralize(seconds / 3600.0, "hour", 1)
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else:
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r = pluralize(seconds / 86400.0, "day", 1)
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if minus:
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return "-" + r
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else:
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return r
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SIZE_DESC = ("B", "KB", "MB", "GB", "TB", "PB", "EB", "ZB", "YB")
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SIZE_VALS = tuple(1024**i for i in range(1, 9))
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def format_size(size: int, decimal: int = 0, forcepower: int = -1, showdesc: bool = True) -> str:
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"""Transform a byte count in a formatted string (KB, MB etc..).
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``size`` is the number of bytes to format.
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``decimal`` is the number digits after the dot.
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``forcepower`` is the desired suffix. 0 is B, 1 is KB, 2 is MB etc.. if kept at -1, the suffix
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will be automatically chosen (so the resulting number is always below 1024).
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if ``showdesc`` is ``True``, the suffix will be shown after the number.
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Usage example::
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>>> format_size(1234, decimal=2, showdesc=True)
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'1.21 KB'
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"""
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if forcepower < 0:
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i = 0
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while size >= SIZE_VALS[i]:
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i += 1
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else:
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i = forcepower
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if i > 0:
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div = SIZE_VALS[i - 1]
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else:
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div = 1
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size_format = "%%%d.%df" % (decimal, decimal)
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negative = size < 0
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divided_size = (0.0 + abs(size)) / div
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if decimal == 0:
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divided_size = ceil(divided_size)
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else:
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divided_size = ceil(divided_size * (10**decimal)) / (10**decimal)
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if negative:
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divided_size *= -1
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result = size_format % divided_size
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if showdesc:
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result += " " + SIZE_DESC[i]
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return result
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def multi_replace(s: str, replace_from: Union[str, List[str]], replace_to: Union[str, List[str]] = "") -> str:
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"""A function like str.replace() with multiple replacements.
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``replace_from`` is a list of things you want to replace. Ex: ['a','bc','d']
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``replace_to`` is a list of what you want to replace to.
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If ``replace_to`` is a list and has the same length as ``replace_from``, ``replace_from``
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items will be translated to corresponding ``replace_to``. A ``replace_to`` list must
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have the same length as ``replace_from``
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If ``replace_to`` is a string, all ``replace_from`` occurence will be replaced
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by that string.
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``replace_from`` can also be a str. If it is, every char in it will be translated
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as if ``replace_from`` would be a list of chars. If ``replace_to`` is a str and has
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the same length as ``replace_from``, it will be transformed into a list.
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"""
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if isinstance(replace_to, str) and (len(replace_from) != len(replace_to)):
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replace_to = [replace_to for _ in replace_from]
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if len(replace_from) != len(replace_to):
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raise ValueError("len(replace_from) must be equal to len(replace_to)")
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replace = list(zip(replace_from, replace_to))
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for r_from, r_to in [r for r in replace if r[0] in s]:
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s = s.replace(r_from, r_to)
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return s
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# --- Files related
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@log_io_error
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@pathify
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def delete_if_empty(path: Path, files_to_delete: List[str] = []) -> bool:
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"""Deletes the directory at 'path' if it is empty or if it only contains files_to_delete."""
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if not path.exists() or not path.is_dir():
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return False
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contents = list(path.glob("*"))
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if any(p for p in contents if (p.name not in files_to_delete) or p.is_dir()):
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return False
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for p in contents:
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p.unlink()
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path.rmdir()
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return True
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def open_if_filename(
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infile: Union[Path, str, IO],
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mode: str = "rb",
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) -> Tuple[IO, bool]:
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"""If ``infile`` is a string, it opens and returns it. If it's already a file object, it simply returns it.
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This function returns ``(file, should_close_flag)``. The should_close_flag is True is a file has
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effectively been opened (if we already pass a file object, we assume that the responsibility for
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closing the file has already been taken). Example usage::
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fp, shouldclose = open_if_filename(infile)
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dostuff()
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if shouldclose:
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fp.close()
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"""
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if isinstance(infile, Path):
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return (infile.open(mode), True)
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if isinstance(infile, str):
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return (open(infile, mode), True)
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else:
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return (infile, False)
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class FileOrPath:
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"""Does the same as :func:`open_if_filename`, but it can be used with a ``with`` statement.
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Example::
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with FileOrPath(infile):
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dostuff()
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"""
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def __init__(self, file_or_path: Union[Path, str], mode: str = "rb") -> None:
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self.file_or_path = file_or_path
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self.mode = mode
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self.mustclose = False
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self.fp: Union[IO, None] = None
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def __enter__(self) -> IO:
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self.fp, self.mustclose = open_if_filename(self.file_or_path, self.mode)
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return self.fp
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def __exit__(self, exc_type, exc_value, traceback) -> None:
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if self.fp and self.mustclose:
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self.fp.close()
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