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112 lines (83 loc) · 3.06 KB
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# Copyright 2023 Google LLC
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
from __future__ import annotations
import abc
import dataclasses
import itertools
import typing
from typing import Optional
import bigframes.dtypes
import bigframes.operations
def const(
value: typing.Hashable, dtype: Optional[bigframes.dtypes.Dtype] = None
) -> Expression:
return ScalarConstantExpression(value, dtype)
def free_var(id: str) -> Expression:
return UnboundVariableExpression(id)
@dataclasses.dataclass(frozen=True)
class Expression(abc.ABC):
"""An expression represents a computation taking N scalar inputs and producing a single output scalar."""
@property
def unbound_variables(self) -> typing.Tuple[str, ...]:
return ()
def rename(self, name_mapping: dict[str, str]) -> Expression:
return self
@abc.abstractproperty
def is_const(self) -> bool:
return False
@dataclasses.dataclass(frozen=True)
class ScalarConstantExpression(Expression):
"""An expression representing a scalar constant."""
# TODO: Further constrain?
value: typing.Hashable
dtype: Optional[bigframes.dtypes.Dtype] = None
@property
def is_const(self) -> bool:
return True
@dataclasses.dataclass(frozen=True)
class UnboundVariableExpression(Expression):
"""A variable expression representing an unbound variable."""
id: str
@property
def unbound_variables(self) -> typing.Tuple[str, ...]:
return (self.id,)
def rename(self, name_mapping: dict[str, str]) -> Expression:
if self.id in name_mapping:
return UnboundVariableExpression(name_mapping[self.id])
else:
return self
@property
def is_const(self) -> bool:
return False
@dataclasses.dataclass(frozen=True)
class OpExpression(Expression):
"""An expression representing a scalar operation applied to 1 or more argument sub-expressions."""
op: bigframes.operations.RowOp
inputs: typing.Tuple[Expression, ...]
def __post_init__(self):
assert self.op.arguments == len(self.inputs)
@property
def unbound_variables(self) -> typing.Tuple[str, ...]:
return tuple(
itertools.chain.from_iterable(
map(lambda x: x.unbound_variables, self.inputs)
)
)
def rename(self, name_mapping: dict[str, str]) -> Expression:
return OpExpression(
self.op, tuple(input.rename(name_mapping) for input in self.inputs)
)
@property
def is_const(self) -> bool:
return all(child.is_const for child in self.inputs)