Old engine for Continuous Time Bayesian Networks. Superseded by reCTBN. 🐍
https://github.com/madlabunimib/PyCTBN
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801 lines
27 KiB
801 lines
27 KiB
4 years ago
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"""
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An exhaustive list of pandas methods exercising NDFrame.__finalize__.
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"""
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import operator
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import re
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import numpy as np
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import pytest
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import pandas as pd
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# TODO:
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# * Binary methods (mul, div, etc.)
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# * Binary outputs (align, etc.)
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# * top-level methods (concat, merge, get_dummies, etc.)
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# * window
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# * cumulative reductions
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not_implemented_mark = pytest.mark.xfail(reason="not implemented")
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mi = pd.MultiIndex.from_product([["a", "b"], [0, 1]], names=["A", "B"])
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frame_data = ({"A": [1]},)
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frame_mi_data = ({"A": [1, 2, 3, 4]}, mi)
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# Tuple of
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# - Callable: Constructor (Series, DataFrame)
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# - Tuple: Constructor args
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# - Callable: pass the constructed value with attrs set to this.
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_all_methods = [
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(
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pd.Series,
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(np.array([0], dtype="float64")),
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operator.methodcaller("view", "int64"),
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),
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(pd.Series, ([0],), operator.methodcaller("take", [])),
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(pd.Series, ([0],), operator.methodcaller("__getitem__", [True])),
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(pd.Series, ([0],), operator.methodcaller("repeat", 2)),
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pytest.param(
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(pd.Series, ([0],), operator.methodcaller("reset_index")),
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marks=pytest.mark.xfail,
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),
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(pd.Series, ([0],), operator.methodcaller("reset_index", drop=True)),
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pytest.param(
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(pd.Series, ([0],), operator.methodcaller("to_frame")), marks=pytest.mark.xfail
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),
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(pd.Series, (0, mi), operator.methodcaller("count", level="A")),
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(pd.Series, ([0, 0],), operator.methodcaller("drop_duplicates")),
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(pd.Series, ([0, 0],), operator.methodcaller("duplicated")),
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(pd.Series, ([0, 0],), operator.methodcaller("round")),
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(pd.Series, ([0, 0],), operator.methodcaller("rename", lambda x: x + 1)),
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(pd.Series, ([0, 0],), operator.methodcaller("rename", "name")),
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(pd.Series, ([0, 0],), operator.methodcaller("set_axis", ["a", "b"])),
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(pd.Series, ([0, 0],), operator.methodcaller("reindex", [1, 0])),
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(pd.Series, ([0, 0],), operator.methodcaller("drop", [0])),
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(pd.Series, (pd.array([0, pd.NA]),), operator.methodcaller("fillna", 0)),
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(pd.Series, ([0, 0],), operator.methodcaller("replace", {0: 1})),
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(pd.Series, ([0, 0],), operator.methodcaller("shift")),
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(pd.Series, ([0, 0],), operator.methodcaller("isin", [0, 1])),
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(pd.Series, ([0, 0],), operator.methodcaller("between", 0, 2)),
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(pd.Series, ([0, 0],), operator.methodcaller("isna")),
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(pd.Series, ([0, 0],), operator.methodcaller("isnull")),
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(pd.Series, ([0, 0],), operator.methodcaller("notna")),
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(pd.Series, ([0, 0],), operator.methodcaller("notnull")),
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(pd.Series, ([1],), operator.methodcaller("add", pd.Series([1]))),
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# TODO: mul, div, etc.
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(
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pd.Series,
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([0], pd.period_range("2000", periods=1)),
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operator.methodcaller("to_timestamp"),
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),
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(
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pd.Series,
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([0], pd.date_range("2000", periods=1)),
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operator.methodcaller("to_period"),
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("dot", pd.DataFrame(index=["A"])),
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),
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marks=pytest.mark.xfail(reason="Implement binary finalize"),
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),
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(pd.DataFrame, frame_data, operator.methodcaller("transpose")),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("__getitem__", "A")),
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marks=not_implemented_mark,
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),
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(pd.DataFrame, frame_data, operator.methodcaller("__getitem__", ["A"])),
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(pd.DataFrame, frame_data, operator.methodcaller("__getitem__", np.array([True]))),
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(pd.DataFrame, ({("A", "a"): [1]},), operator.methodcaller("__getitem__", ["A"])),
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(pd.DataFrame, frame_data, operator.methodcaller("query", "A == 1")),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("eval", "A + 1")),
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marks=not_implemented_mark,
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),
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(pd.DataFrame, frame_data, operator.methodcaller("select_dtypes", include="int")),
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(pd.DataFrame, frame_data, operator.methodcaller("assign", b=1)),
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(pd.DataFrame, frame_data, operator.methodcaller("set_axis", ["A"])),
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(pd.DataFrame, frame_data, operator.methodcaller("reindex", [0, 1])),
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(pd.DataFrame, frame_data, operator.methodcaller("drop", columns=["A"])),
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(pd.DataFrame, frame_data, operator.methodcaller("drop", index=[0])),
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(pd.DataFrame, frame_data, operator.methodcaller("rename", columns={"A": "a"})),
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(pd.DataFrame, frame_data, operator.methodcaller("rename", index=lambda x: x)),
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(pd.DataFrame, frame_data, operator.methodcaller("fillna", "A")),
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(pd.DataFrame, frame_data, operator.methodcaller("fillna", method="ffill")),
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(pd.DataFrame, frame_data, operator.methodcaller("set_index", "A")),
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(pd.DataFrame, frame_data, operator.methodcaller("reset_index")),
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(pd.DataFrame, frame_data, operator.methodcaller("isna")),
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(pd.DataFrame, frame_data, operator.methodcaller("isnull")),
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(pd.DataFrame, frame_data, operator.methodcaller("notna")),
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(pd.DataFrame, frame_data, operator.methodcaller("notnull")),
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(pd.DataFrame, frame_data, operator.methodcaller("dropna")),
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(pd.DataFrame, frame_data, operator.methodcaller("drop_duplicates")),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("duplicated")),
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marks=not_implemented_mark,
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),
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(pd.DataFrame, frame_data, operator.methodcaller("sort_values", by="A")),
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(pd.DataFrame, frame_data, operator.methodcaller("sort_index")),
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(pd.DataFrame, frame_data, operator.methodcaller("nlargest", 1, "A")),
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(pd.DataFrame, frame_data, operator.methodcaller("nsmallest", 1, "A")),
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(pd.DataFrame, frame_mi_data, operator.methodcaller("swaplevel"),),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("add", pd.DataFrame(*frame_data)),
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),
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marks=not_implemented_mark,
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),
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# TODO: div, mul, etc.
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("combine", pd.DataFrame(*frame_data), operator.add),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("combine_first", pd.DataFrame(*frame_data)),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("update", pd.DataFrame(*frame_data)),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("pivot", columns="A")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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{"A": [1], "B": [1]},
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operator.methodcaller("pivot_table", columns="A"),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("stack")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("explode", "A")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_mi_data, operator.methodcaller("unstack"),),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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({"A": ["a", "b", "c"], "B": [1, 3, 5], "C": [2, 4, 6]},),
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operator.methodcaller("melt", id_vars=["A"], value_vars=["B"]),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("diff")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("applymap", lambda x: x)),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("append", pd.DataFrame({"A": [1]})),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("append", pd.DataFrame({"B": [1]})),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("merge", pd.DataFrame({"A": [1]})),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("round", 2)),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("corr")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("cov")),
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marks=[
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not_implemented_mark,
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pytest.mark.filterwarnings("ignore::RuntimeWarning"),
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],
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("corrwith", pd.DataFrame(*frame_data)),
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),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("count")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_mi_data, operator.methodcaller("count", level="A")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("nunique")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("idxmin")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("idxmax")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("mode")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("quantile")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("quantile", q=[0.25, 0.75])),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("quantile")),
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marks=not_implemented_mark,
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),
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(
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pd.DataFrame,
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({"A": [1]}, [pd.Period("2000", "D")]),
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operator.methodcaller("to_timestamp"),
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),
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(
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pd.DataFrame,
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({"A": [1]}, [pd.Timestamp("2000")]),
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operator.methodcaller("to_period", freq="D"),
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),
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pytest.param(
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(pd.DataFrame, frame_mi_data, operator.methodcaller("isin", [1])),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_mi_data, operator.methodcaller("isin", pd.Series([1]))),
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marks=not_implemented_mark,
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),
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pytest.param(
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(
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pd.DataFrame,
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frame_mi_data,
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operator.methodcaller("isin", pd.DataFrame({"A": [1]})),
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),
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marks=not_implemented_mark,
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),
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(pd.DataFrame, frame_data, operator.methodcaller("swapaxes", 0, 1)),
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(pd.DataFrame, frame_mi_data, operator.methodcaller("droplevel", "A")),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("pop", "A")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("squeeze")),
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marks=not_implemented_mark,
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),
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pytest.param(
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(pd.Series, ([1, 2],), operator.methodcaller("squeeze")),
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# marks=not_implemented_mark,
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),
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(pd.Series, ([1, 2],), operator.methodcaller("rename_axis", index="a")),
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(pd.DataFrame, frame_data, operator.methodcaller("rename_axis", columns="a")),
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# Unary ops
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(pd.DataFrame, frame_data, operator.neg),
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(pd.Series, [1], operator.neg),
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(pd.DataFrame, frame_data, operator.pos),
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(pd.Series, [1], operator.pos),
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(pd.DataFrame, frame_data, operator.inv),
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(pd.Series, [1], operator.inv),
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(pd.DataFrame, frame_data, abs),
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pytest.param((pd.Series, [1], abs), marks=not_implemented_mark),
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pytest.param((pd.DataFrame, frame_data, round), marks=not_implemented_mark),
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(pd.Series, [1], round),
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(pd.DataFrame, frame_data, operator.methodcaller("take", [0, 0])),
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(pd.DataFrame, frame_mi_data, operator.methodcaller("xs", "a")),
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(pd.Series, (1, mi), operator.methodcaller("xs", "a")),
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pytest.param(
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(pd.DataFrame, frame_data, operator.methodcaller("get", "A")),
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marks=not_implemented_mark,
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),
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(
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pd.DataFrame,
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frame_data,
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operator.methodcaller("reindex_like", pd.DataFrame({"A": [1, 2, 3]})),
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),
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(
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pd.Series,
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frame_data,
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operator.methodcaller("reindex_like", pd.Series([0, 1, 2])),
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),
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(pd.DataFrame, frame_data, operator.methodcaller("add_prefix", "_")),
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(pd.DataFrame, frame_data, operator.methodcaller("add_suffix", "_")),
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(pd.Series, (1, ["a", "b"]), operator.methodcaller("add_prefix", "_")),
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(pd.Series, (1, ["a", "b"]), operator.methodcaller("add_suffix", "_")),
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(pd.Series, ([3, 2],), operator.methodcaller("sort_values")),
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(pd.Series, ([1] * 10,), operator.methodcaller("head")),
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(pd.DataFrame, ({"A": [1] * 10},), operator.methodcaller("head")),
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(pd.Series, ([1] * 10,), operator.methodcaller("tail")),
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(pd.DataFrame, ({"A": [1] * 10},), operator.methodcaller("tail")),
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(pd.Series, ([1, 2],), operator.methodcaller("sample", n=2, replace=True)),
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(pd.DataFrame, (frame_data,), operator.methodcaller("sample", n=2, replace=True)),
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(pd.Series, ([1, 2],), operator.methodcaller("astype", float)),
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(pd.DataFrame, frame_data, operator.methodcaller("astype", float)),
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(pd.Series, ([1, 2],), operator.methodcaller("copy")),
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(pd.DataFrame, frame_data, operator.methodcaller("copy")),
|
||
|
(pd.Series, ([1, 2], None, object), operator.methodcaller("infer_objects")),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": np.array([1, 2], dtype=object)},),
|
||
|
operator.methodcaller("infer_objects"),
|
||
|
),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("convert_dtypes")),
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("convert_dtypes")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
(pd.Series, ([1, None, 3],), operator.methodcaller("interpolate")),
|
||
|
(pd.DataFrame, ({"A": [1, None, 3]},), operator.methodcaller("interpolate")),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("clip", lower=1)),
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("clip", lower=1)),
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("asfreq", "H"),
|
||
|
),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("asfreq", "H"),
|
||
|
),
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("at_time", "12:00"),
|
||
|
),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("at_time", "12:00"),
|
||
|
),
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("between_time", "12:00", "13:00"),
|
||
|
),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("between_time", "12:00", "13:00"),
|
||
|
),
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("first", "3D"),
|
||
|
),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("first", "3D"),
|
||
|
),
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("last", "3D"),
|
||
|
),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("last", "3D"),
|
||
|
),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("rank")),
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("rank")),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("where", np.array([True, False]))),
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("where", np.array([[True]]))),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("mask", np.array([True, False]))),
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("mask", np.array([[True]]))),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("slice_shift")),
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("slice_shift")),
|
||
|
pytest.param(
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("tshift"),
|
||
|
),
|
||
|
marks=pytest.mark.filterwarnings("ignore::FutureWarning"),
|
||
|
),
|
||
|
pytest.param(
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("tshift"),
|
||
|
),
|
||
|
marks=pytest.mark.filterwarnings("ignore::FutureWarning"),
|
||
|
),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("truncate", before=0)),
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("truncate", before=0)),
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4, tz="UTC")),
|
||
|
operator.methodcaller("tz_convert", "CET"),
|
||
|
),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4, tz="UTC")),
|
||
|
operator.methodcaller("tz_convert", "CET"),
|
||
|
),
|
||
|
(
|
||
|
pd.Series,
|
||
|
(1, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("tz_localize", "CET"),
|
||
|
),
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
({"A": [1, 1, 1, 1]}, pd.date_range("2000", periods=4)),
|
||
|
operator.methodcaller("tz_localize", "CET"),
|
||
|
),
|
||
|
pytest.param(
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("describe")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("describe")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
(pd.Series, ([1, 2],), operator.methodcaller("pct_change")),
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("pct_change")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
(pd.Series, ([1],), operator.methodcaller("transform", lambda x: x - x.min())),
|
||
|
pytest.param(
|
||
|
(
|
||
|
pd.DataFrame,
|
||
|
frame_mi_data,
|
||
|
operator.methodcaller("transform", lambda x: x - x.min()),
|
||
|
),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
(pd.Series, ([1],), operator.methodcaller("apply", lambda x: x)),
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_mi_data, operator.methodcaller("apply", lambda x: x)),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
# Cumulative reductions
|
||
|
(pd.Series, ([1],), operator.methodcaller("cumsum")),
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("cumsum")),
|
||
|
# Reductions
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("any")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("sum")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("std")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
pytest.param(
|
||
|
(pd.DataFrame, frame_data, operator.methodcaller("mean")),
|
||
|
marks=not_implemented_mark,
|
||
|
),
|
||
|
]
|
||
|
|
||
|
|
||
|
def idfn(x):
|
||
|
xpr = re.compile(r"'(.*)?'")
|
||
|
m = xpr.search(str(x))
|
||
|
if m:
|
||
|
return m.group(1)
|
||
|
else:
|
||
|
return str(x)
|
||
|
|
||
|
|
||
|
@pytest.fixture(params=_all_methods, ids=lambda x: idfn(x[-1]))
|
||
|
def ndframe_method(request):
|
||
|
"""
|
||
|
An NDFrame method returning an NDFrame.
|
||
|
"""
|
||
|
return request.param
|
||
|
|
||
|
|
||
|
def test_finalize_called(ndframe_method):
|
||
|
cls, init_args, method = ndframe_method
|
||
|
ndframe = cls(*init_args)
|
||
|
|
||
|
ndframe.attrs = {"a": 1}
|
||
|
result = method(ndframe)
|
||
|
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
# ----------------------------------------------------------------------------
|
||
|
# Binary operations
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize("annotate", ["left", "right", "both"])
|
||
|
@pytest.mark.parametrize(
|
||
|
"args",
|
||
|
[
|
||
|
(1, pd.Series([1])),
|
||
|
(1, pd.DataFrame({"A": [1]})),
|
||
|
(pd.Series([1]), 1),
|
||
|
(pd.DataFrame({"A": [1]}), 1),
|
||
|
(pd.Series([1]), pd.Series([1])),
|
||
|
(pd.DataFrame({"A": [1]}), pd.DataFrame({"A": [1]})),
|
||
|
(pd.Series([1]), pd.DataFrame({"A": [1]})),
|
||
|
(pd.DataFrame({"A": [1]}), pd.Series([1])),
|
||
|
],
|
||
|
)
|
||
|
def test_binops(args, annotate, all_arithmetic_functions):
|
||
|
# This generates 326 tests... Is that needed?
|
||
|
left, right = args
|
||
|
if annotate == "both" and isinstance(left, int) or isinstance(right, int):
|
||
|
return
|
||
|
|
||
|
if isinstance(left, pd.DataFrame) or isinstance(right, pd.DataFrame):
|
||
|
pytest.xfail(reason="not implemented")
|
||
|
|
||
|
if annotate in {"left", "both"} and not isinstance(left, int):
|
||
|
left.attrs = {"a": 1}
|
||
|
if annotate in {"left", "both"} and not isinstance(right, int):
|
||
|
right.attrs = {"a": 1}
|
||
|
|
||
|
result = all_arithmetic_functions(left, right)
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
# ----------------------------------------------------------------------------
|
||
|
# Accessors
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"method",
|
||
|
[
|
||
|
operator.methodcaller("capitalize"),
|
||
|
operator.methodcaller("casefold"),
|
||
|
pytest.param(
|
||
|
operator.methodcaller("cat", ["a"]),
|
||
|
marks=pytest.mark.xfail(reason="finalize not called."),
|
||
|
),
|
||
|
operator.methodcaller("contains", "a"),
|
||
|
operator.methodcaller("count", "a"),
|
||
|
operator.methodcaller("encode", "utf-8"),
|
||
|
operator.methodcaller("endswith", "a"),
|
||
|
pytest.param(
|
||
|
operator.methodcaller("extract", r"(\w)(\d)"),
|
||
|
marks=pytest.mark.xfail(reason="finalize not called."),
|
||
|
),
|
||
|
pytest.param(
|
||
|
operator.methodcaller("extract", r"(\w)(\d)"),
|
||
|
marks=pytest.mark.xfail(reason="finalize not called."),
|
||
|
),
|
||
|
operator.methodcaller("find", "a"),
|
||
|
operator.methodcaller("findall", "a"),
|
||
|
operator.methodcaller("get", 0),
|
||
|
operator.methodcaller("index", "a"),
|
||
|
operator.methodcaller("len"),
|
||
|
operator.methodcaller("ljust", 4),
|
||
|
operator.methodcaller("lower"),
|
||
|
operator.methodcaller("lstrip"),
|
||
|
operator.methodcaller("match", r"\w"),
|
||
|
operator.methodcaller("normalize", "NFC"),
|
||
|
operator.methodcaller("pad", 4),
|
||
|
operator.methodcaller("partition", "a"),
|
||
|
operator.methodcaller("repeat", 2),
|
||
|
operator.methodcaller("replace", "a", "b"),
|
||
|
operator.methodcaller("rfind", "a"),
|
||
|
operator.methodcaller("rindex", "a"),
|
||
|
operator.methodcaller("rjust", 4),
|
||
|
operator.methodcaller("rpartition", "a"),
|
||
|
operator.methodcaller("rstrip"),
|
||
|
operator.methodcaller("slice", 4),
|
||
|
operator.methodcaller("slice_replace", 1, repl="a"),
|
||
|
operator.methodcaller("startswith", "a"),
|
||
|
operator.methodcaller("strip"),
|
||
|
operator.methodcaller("swapcase"),
|
||
|
operator.methodcaller("translate", {"a": "b"}),
|
||
|
operator.methodcaller("upper"),
|
||
|
operator.methodcaller("wrap", 4),
|
||
|
operator.methodcaller("zfill", 4),
|
||
|
operator.methodcaller("isalnum"),
|
||
|
operator.methodcaller("isalpha"),
|
||
|
operator.methodcaller("isdigit"),
|
||
|
operator.methodcaller("isspace"),
|
||
|
operator.methodcaller("islower"),
|
||
|
operator.methodcaller("isupper"),
|
||
|
operator.methodcaller("istitle"),
|
||
|
operator.methodcaller("isnumeric"),
|
||
|
operator.methodcaller("isdecimal"),
|
||
|
operator.methodcaller("get_dummies"),
|
||
|
],
|
||
|
ids=idfn,
|
||
|
)
|
||
|
@not_implemented_mark
|
||
|
def test_string_method(method):
|
||
|
s = pd.Series(["a1"])
|
||
|
s.attrs = {"a": 1}
|
||
|
result = method(s.str)
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"method",
|
||
|
[
|
||
|
operator.methodcaller("to_period"),
|
||
|
operator.methodcaller("tz_localize", "CET"),
|
||
|
operator.methodcaller("normalize"),
|
||
|
operator.methodcaller("strftime", "%Y"),
|
||
|
operator.methodcaller("round", "H"),
|
||
|
operator.methodcaller("floor", "H"),
|
||
|
operator.methodcaller("ceil", "H"),
|
||
|
operator.methodcaller("month_name"),
|
||
|
operator.methodcaller("day_name"),
|
||
|
],
|
||
|
ids=idfn,
|
||
|
)
|
||
|
@not_implemented_mark
|
||
|
def test_datetime_method(method):
|
||
|
s = pd.Series(pd.date_range("2000", periods=4))
|
||
|
s.attrs = {"a": 1}
|
||
|
result = method(s.dt)
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"attr",
|
||
|
[
|
||
|
"date",
|
||
|
"time",
|
||
|
"timetz",
|
||
|
"year",
|
||
|
"month",
|
||
|
"day",
|
||
|
"hour",
|
||
|
"minute",
|
||
|
"second",
|
||
|
"microsecond",
|
||
|
"nanosecond",
|
||
|
"dayofweek",
|
||
|
"dayofyear",
|
||
|
"quarter",
|
||
|
"is_month_start",
|
||
|
"is_month_end",
|
||
|
"is_quarter_start",
|
||
|
"is_quarter_end",
|
||
|
"is_year_start",
|
||
|
"is_year_end",
|
||
|
"is_leap_year",
|
||
|
"daysinmonth",
|
||
|
"days_in_month",
|
||
|
],
|
||
|
)
|
||
|
@not_implemented_mark
|
||
|
def test_datetime_property(attr):
|
||
|
s = pd.Series(pd.date_range("2000", periods=4))
|
||
|
s.attrs = {"a": 1}
|
||
|
result = getattr(s.dt, attr)
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"attr", ["days", "seconds", "microseconds", "nanoseconds", "components"]
|
||
|
)
|
||
|
@not_implemented_mark
|
||
|
def test_timedelta_property(attr):
|
||
|
s = pd.Series(pd.timedelta_range("2000", periods=4))
|
||
|
s.attrs = {"a": 1}
|
||
|
result = getattr(s.dt, attr)
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"method", [operator.methodcaller("total_seconds")],
|
||
|
)
|
||
|
@not_implemented_mark
|
||
|
def test_timedelta_methods(method):
|
||
|
s = pd.Series(pd.timedelta_range("2000", periods=4))
|
||
|
s.attrs = {"a": 1}
|
||
|
result = method(s.dt)
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"method",
|
||
|
[
|
||
|
operator.methodcaller("add_categories", ["c"]),
|
||
|
operator.methodcaller("as_ordered"),
|
||
|
operator.methodcaller("as_unordered"),
|
||
|
lambda x: getattr(x, "codes"),
|
||
|
operator.methodcaller("remove_categories", "a"),
|
||
|
operator.methodcaller("remove_unused_categories"),
|
||
|
operator.methodcaller("rename_categories", {"a": "A", "b": "B"}),
|
||
|
operator.methodcaller("reorder_categories", ["b", "a"]),
|
||
|
operator.methodcaller("set_categories", ["A", "B"]),
|
||
|
],
|
||
|
)
|
||
|
@not_implemented_mark
|
||
|
def test_categorical_accessor(method):
|
||
|
s = pd.Series(["a", "b"], dtype="category")
|
||
|
s.attrs = {"a": 1}
|
||
|
result = method(s.cat)
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
# ----------------------------------------------------------------------------
|
||
|
# Groupby
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"obj", [pd.Series([0, 0]), pd.DataFrame({"A": [0, 1], "B": [1, 2]})]
|
||
|
)
|
||
|
@pytest.mark.parametrize(
|
||
|
"method", [operator.methodcaller("sum"), lambda x: x.agg("sum")],
|
||
|
)
|
||
|
def test_groupby_finalize(obj, method):
|
||
|
obj.attrs = {"a": 1}
|
||
|
result = method(obj.groupby([0, 0]))
|
||
|
assert result.attrs == {"a": 1}
|
||
|
|
||
|
|
||
|
@pytest.mark.parametrize(
|
||
|
"obj", [pd.Series([0, 0]), pd.DataFrame({"A": [0, 1], "B": [1, 2]})]
|
||
|
)
|
||
|
@pytest.mark.parametrize(
|
||
|
"method",
|
||
|
[
|
||
|
lambda x: x.agg(["sum", "count"]),
|
||
|
lambda x: x.transform(lambda y: y),
|
||
|
lambda x: x.apply(lambda y: y),
|
||
|
],
|
||
|
)
|
||
|
@not_implemented_mark
|
||
|
def test_groupby_finalize_not_implemented(obj, method):
|
||
|
obj.attrs = {"a": 1}
|
||
|
result = method(obj.groupby([0, 0]))
|
||
|
assert result.attrs == {"a": 1}
|