Download benchmark/python/py-relevant-negative-fraction/reference-solution.patch from RedinGhost/beforedone-paper: direct link, hf CLI and curl.
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1.52 kB
| diff --git a/src/humanize/number.py b/src/humanize/number.py | |
| index 2fb22c6..c072f1a 100644 | |
| --- a/src/humanize/number.py | |
| +++ b/src/humanize/number.py | |
| def apnumber(value: NumberOrString) -> str: | |
| return _(_APNUMBER_WORDS[value]) | |
| -def fractional(value: NumberOrString) -> str: | |
| +def fractional(value: NumberOrString, *, max_denominator: int = 1000) -> str: | |
| """Convert to fractional number. | |
| There will be some cases where one might not want to show ugly decimal places for | |
| def fractional(value: NumberOrString) -> str: | |
| Args: | |
| value (int, float, str): Integer to convert. | |
| + max_denominator (int): Largest denominator allowed in the approximation. | |
| Returns: | |
| str: Fractional number as a string. | |
| """ | |
| import math | |
| + if ( | |
| + isinstance(max_denominator, bool) | |
| + or not isinstance(max_denominator, int) | |
| + or max_denominator <= 0 | |
| + ): | |
| + raise ValueError("max_denominator must be a positive integer") | |
| + | |
| try: | |
| number = float(value) | |
| if not math.isfinite(number): | |
| def fractional(value: NumberOrString) -> str: | |
| from fractions import Fraction | |
| whole_number = int(number) | |
| - frac = Fraction(number - whole_number).limit_denominator(1000) | |
| + frac = Fraction(number - whole_number).limit_denominator(max_denominator) | |
| numerator = frac.numerator | |
| denominator = frac.denominator | |
| if whole_number and not numerator and denominator == 1: | |