263 lines
7.2 KiB
Python
263 lines
7.2 KiB
Python
# Copyright (c) 2025 PaddlePaddle Authors. All Rights Reserved.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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from __future__ import annotations
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from typing import TYPE_CHECKING
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import paddle
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from ..utils.exceptions import InnerError
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if TYPE_CHECKING:
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from ..opcode_translator.executor.guard import StringifiedExpression
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class ConstraintNode:
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def __init__(self, inputs: list[ConstraintNode]):
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self.inputs = inputs
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def create_guard_expr(
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self, extern_vars: dict[str, StringifiedExpression]
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) -> StringifiedExpression:
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raise NotImplementedError
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def create_guard_node(
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self, extern_vars: dict[str, paddle.framework.core.ExprNodeBase]
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) -> paddle.framework.core.ExprNodeBase:
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raise NotImplementedError(
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f"{self.__class__.__name__}.create_guard_node is not implemented"
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)
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class LeafConstraintNode(ConstraintNode):
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def __init__(self):
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super().__init__([])
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class UnaryConstraintNode(ConstraintNode):
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READABLE_SYMBOL: str
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def __init__(self, input: ConstraintNode):
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super().__init__([input])
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self.input = input
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def __repr__(self) -> str:
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return f"{self.__class__.__name__}({self.input})"
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def create_guard_expr(
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self, extern_vars: dict[str, StringifiedExpression]
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) -> StringifiedExpression:
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from ..opcode_translator.executor.guard import (
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StringifiedExpression,
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union_free_vars,
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)
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input = self.input.create_guard_expr(extern_vars)
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return StringifiedExpression(
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f"{self.READABLE_SYMBOL}({{}})",
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[input],
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union_free_vars(input.free_vars),
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)
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def create_guard_node(
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self, extern_vars: dict[str, paddle.framework.core.ExprNodeBase]
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) -> paddle.framework.core.ExprNodeBase:
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input = self.input.create_guard_node(extern_vars)
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return paddle.framework.core.UnaryExprNode(input, self.READABLE_SYMBOL)
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class BinaryConstraintNode(ConstraintNode):
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READABLE_SYMBOL: str
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def __init__(self, lhs: ConstraintNode, rhs: ConstraintNode):
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super().__init__([lhs, rhs])
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self.lhs = lhs
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self.rhs = rhs
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def create_guard_expr(
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self, extern_vars: dict[str, StringifiedExpression]
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) -> StringifiedExpression:
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from ..opcode_translator.executor.guard import (
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StringifiedExpression,
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union_free_vars,
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)
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lhs = self.lhs.create_guard_expr(extern_vars)
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rhs = self.rhs.create_guard_expr(extern_vars)
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return StringifiedExpression(
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f"({{}} {self.READABLE_SYMBOL} {{}})",
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[lhs, rhs],
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union_free_vars(lhs.free_vars, rhs.free_vars),
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)
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def create_guard_node(
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self, extern_vars: dict[str, paddle.framework.core.ExprNodeBase]
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) -> paddle.framework.core.ExprNodeBase:
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lhs = self.lhs.create_guard_node(extern_vars)
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rhs = self.rhs.create_guard_node(extern_vars)
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return paddle.framework.core.BinaryExprNode(
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lhs, rhs, self.READABLE_SYMBOL
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)
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def __repr__(self):
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return f"{self.__class__.__name__}({self.lhs}, {self.rhs})"
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class ConstantConstraintNode(LeafConstraintNode):
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def __init__(self, value):
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super().__init__()
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self.value = value
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def create_guard_expr(
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self, extern_vars: dict[str, StringifiedExpression]
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) -> StringifiedExpression:
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from ..opcode_translator.executor.guard import (
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StringifiedExpression,
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)
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return StringifiedExpression(f"{self.value!r}", [], {})
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def create_guard_node(
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self, extern_vars: dict[str, paddle.framework.core.ExprNodeBase]
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) -> paddle.framework.core.ExprNodeBase:
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return paddle.framework.core.ConstantExprNode(self.value)
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def __repr__(self):
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return f"{self.__class__.__name__}({self.value})"
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class SymbolicConstraintNode(LeafConstraintNode):
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def __init__(self, name: str):
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super().__init__()
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self.name = name
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def create_guard_expr(
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self, extern_vars: dict[str, StringifiedExpression]
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) -> StringifiedExpression:
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from ..opcode_translator.executor.guard import (
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StringifiedExpression,
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union_free_vars,
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)
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if self.name not in extern_vars:
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raise InnerError(
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f"Symbolic variable {self.name} not found in extern_vars."
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)
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return StringifiedExpression(
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"{}",
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[extern_vars[self.name]],
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union_free_vars(extern_vars[self.name].free_vars),
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)
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def create_guard_node(
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self, extern_vars: dict[str, paddle.framework.core.ExprNodeBase]
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) -> paddle.framework.core.ExprNodeBase:
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if self.name not in extern_vars:
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raise InnerError(
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f"Symbolic variable {self.name} not found in extern_vars."
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)
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return extern_vars[self.name]
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def __repr__(self):
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return f"{self.__class__.__name__}({self.name})"
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class NegativeConstraintNode(UnaryConstraintNode):
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READABLE_SYMBOL = "-"
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class BitwiseNotConstraintNode(UnaryConstraintNode):
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READABLE_SYMBOL = "~"
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class AddConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "+"
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class SubConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "-"
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class MulConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "*"
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class TrueDivConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "/"
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class FloorDivConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "//"
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class ModConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "%"
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class PowConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "**"
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class BitwiseLShiftConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "<<"
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class BitwiseRShiftConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = ">>"
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class BitwiseAndConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "&"
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class BitwiseOrConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "|"
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class BitwiseXorConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "^"
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class LogicalToBoolConstraintNode(UnaryConstraintNode):
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READABLE_SYMBOL = "bool"
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class LogicalNotConstraintNode(UnaryConstraintNode):
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READABLE_SYMBOL = "not"
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class EqualConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "=="
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class NotEqualConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "!="
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class LessThanConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "<"
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class LessEqualConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = "<="
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class GreaterThanConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = ">"
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class GreaterEqualConstraintNode(BinaryConstraintNode):
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READABLE_SYMBOL = ">="
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