98 lines
2.4 KiB
Python
98 lines
2.4 KiB
Python
import numpy as np
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import pytest
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from pandas._libs.tslibs import (
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Period,
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Resolution,
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to_offset,
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)
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from pandas._libs.tslibs.dtypes import _attrname_to_abbrevs
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@pytest.mark.parametrize(
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"freqstr,exp_freqstr",
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[("D", "D"), ("W", "D"), ("M", "D"), ("S", "S"), ("T", "S"), ("H", "S")],
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)
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def test_get_to_timestamp_base(freqstr, exp_freqstr):
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off = to_offset(freqstr)
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per = Period._from_ordinal(1, off)
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exp_code = to_offset(exp_freqstr)._period_dtype_code
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result_code = per._dtype._get_to_timestamp_base()
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assert result_code == exp_code
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@pytest.mark.parametrize(
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"freqstr,expected",
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[
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("A", "year"),
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("Q", "quarter"),
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("M", "month"),
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("D", "day"),
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("H", "hour"),
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("T", "minute"),
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("S", "second"),
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("L", "millisecond"),
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("U", "microsecond"),
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("N", "nanosecond"),
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],
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)
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def test_get_attrname_from_abbrev(freqstr, expected):
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assert Resolution.get_reso_from_freqstr(freqstr).attrname == expected
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@pytest.mark.parametrize("freq", ["D", "H", "T", "S", "L", "U", "N"])
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def test_get_freq_roundtrip2(freq):
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obj = Resolution.get_reso_from_freqstr(freq)
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result = _attrname_to_abbrevs[obj.attrname]
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assert freq == result
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@pytest.mark.parametrize(
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"args,expected",
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[
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((1.5, "T"), (90, "S")),
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((62.4, "T"), (3744, "S")),
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((1.04, "H"), (3744, "S")),
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((1, "D"), (1, "D")),
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((0.342931, "H"), (1234551600, "U")),
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((1.2345, "D"), (106660800, "L")),
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],
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)
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def test_resolution_bumping(args, expected):
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# see gh-14378
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off = to_offset(str(args[0]) + args[1])
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assert off.n == expected[0]
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assert off._prefix == expected[1]
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@pytest.mark.parametrize(
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"args",
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[
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(0.5, "N"),
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# Too much precision in the input can prevent.
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(0.3429324798798269273987982, "H"),
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],
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)
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def test_cat(args):
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msg = "Invalid frequency"
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with pytest.raises(ValueError, match=msg):
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to_offset(str(args[0]) + args[1])
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@pytest.mark.parametrize(
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"freqstr,expected",
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[
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("1H", "2021-01-01T09:00:00"),
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("1D", "2021-01-02T08:00:00"),
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("1W", "2021-01-03T08:00:00"),
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("1M", "2021-01-31T08:00:00"),
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("1Y", "2021-12-31T08:00:00"),
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],
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)
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def test_compatibility(freqstr, expected):
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ts_np = np.datetime64("2021-01-01T08:00:00.00")
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do = to_offset(freqstr)
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assert ts_np + do == np.datetime64(expected)
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