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vfs: use @abstractmethod instead of homebrewing abstract methods...
vfs: use @abstractmethod instead of homebrewing abstract methods The latter confuses PyCharm after adding more type annotations when, for example, `abstractvfs.rename()` calls `_auditpath()`- the latter unconditionally raised an error, so PyCharm thought the code that came after is unreachable. It also tricked pytype into marking the return type as `Never`, which isn't available until Python 3.11 (outside of `typing_extensions`). This also avoid PyCharm warnings that the call to the superclass constructor was missed (it couldn't be called because it raised an error to prevent instantiation). The statichttprepo module needed to be given an override for one of the abstract methods, so that it can be instantiated. In `abstractvfs`, this method is only called by `rename()`, so I think we can leave this empty. We raise an error in case somebody accidentally calls it in the future- it would have raised this same error prior to this change. I couldn't wrangle `import-checker.py` into accepting importing `ABC` and `abstractmethod`- for each subsequent import, it reports something like: stdlib import "contextlib" follows local import: abc I suspect the problem is that near the `if fullname != '__future__'` check, if the module doesn't fall into the error case, `seenlocal` gets set to the module name. That causes it to be treated like a local module on the next iteration, even though it is in `stdlib_modules`.

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_re.py
101 lines | 2.7 KiB | text/x-python | PythonLexer
from datetime import date, datetime, time, timedelta, timezone, tzinfo
from functools import lru_cache
import re
from typing import Any, Optional, Union
from ._types import ParseFloat
# E.g.
# - 00:32:00.999999
# - 00:32:00
_TIME_RE_STR = r"([01][0-9]|2[0-3]):([0-5][0-9]):([0-5][0-9])(?:\.([0-9]{1,6})[0-9]*)?"
RE_NUMBER = re.compile(
r"""
0
(?:
x[0-9A-Fa-f](?:_?[0-9A-Fa-f])* # hex
|
b[01](?:_?[01])* # bin
|
o[0-7](?:_?[0-7])* # oct
)
|
[+-]?(?:0|[1-9](?:_?[0-9])*) # dec, integer part
(?P<floatpart>
(?:\.[0-9](?:_?[0-9])*)? # optional fractional part
(?:[eE][+-]?[0-9](?:_?[0-9])*)? # optional exponent part
)
""",
flags=re.VERBOSE,
)
RE_LOCALTIME = re.compile(_TIME_RE_STR)
RE_DATETIME = re.compile(
fr"""
([0-9]{{4}})-(0[1-9]|1[0-2])-(0[1-9]|[12][0-9]|3[01]) # date, e.g. 1988-10-27
(?:
[Tt ]
{_TIME_RE_STR}
(?:([Zz])|([+-])([01][0-9]|2[0-3]):([0-5][0-9]))? # optional time offset
)?
""",
flags=re.VERBOSE,
)
def match_to_datetime(match: "re.Match") -> Union[datetime, date]:
"""Convert a `RE_DATETIME` match to `datetime.datetime` or `datetime.date`.
Raises ValueError if the match does not correspond to a valid date
or datetime.
"""
(
year_str,
month_str,
day_str,
hour_str,
minute_str,
sec_str,
micros_str,
zulu_time,
offset_sign_str,
offset_hour_str,
offset_minute_str,
) = match.groups()
year, month, day = int(year_str), int(month_str), int(day_str)
if hour_str is None:
return date(year, month, day)
hour, minute, sec = int(hour_str), int(minute_str), int(sec_str)
micros = int(micros_str.ljust(6, "0")) if micros_str else 0
if offset_sign_str:
tz: Optional[tzinfo] = cached_tz(
offset_hour_str, offset_minute_str, offset_sign_str
)
elif zulu_time:
tz = timezone.utc
else: # local date-time
tz = None
return datetime(year, month, day, hour, minute, sec, micros, tzinfo=tz)
@lru_cache(maxsize=None)
def cached_tz(hour_str: str, minute_str: str, sign_str: str) -> timezone:
sign = 1 if sign_str == "+" else -1
return timezone(
timedelta(
hours=sign * int(hour_str),
minutes=sign * int(minute_str),
)
)
def match_to_localtime(match: "re.Match") -> time:
hour_str, minute_str, sec_str, micros_str = match.groups()
micros = int(micros_str.ljust(6, "0")) if micros_str else 0
return time(int(hour_str), int(minute_str), int(sec_str), micros)
def match_to_number(match: "re.Match", parse_float: "ParseFloat") -> Any:
if match.group("floatpart"):
return parse_float(match.group())
return int(match.group(), 0)