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This CL adds helper methods to the RelationalExpression to determine the type of relation. Bug: tint:5 Change-Id: I232c3a2e9f27a7efb91735516ee7e9cfc97882ae Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/18825 Reviewed-by: David Neto <dneto@google.com>
226 lines
7.1 KiB
C++
226 lines
7.1 KiB
C++
// Copyright 2020 The Tint Authors.
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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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#ifndef SRC_AST_RELATIONAL_EXPRESSION_H_
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#define SRC_AST_RELATIONAL_EXPRESSION_H_
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#include <memory>
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#include <utility>
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#include "src/ast/expression.h"
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#include "src/ast/literal.h"
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namespace tint {
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namespace ast {
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/// The relation type
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enum class Relation {
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kNone = 0,
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kAnd,
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kOr,
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kXor,
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kLogicalAnd,
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kLogicalOr,
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kEqual,
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kNotEqual,
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kLessThan,
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kGreaterThan,
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kLessThanEqual,
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kGreaterThanEqual,
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kShiftLeft,
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kShiftRight,
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kShiftRightArith,
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kAdd,
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kSubtract,
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kMultiply,
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kDivide,
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kModulo,
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};
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/// A Relational Expression
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class RelationalExpression : public Expression {
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public:
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/// Constructor
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RelationalExpression();
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/// Constructor
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/// @param relation the relation type
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/// @param lhs the left side of the expression
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/// @param rhs the right side of the expression
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RelationalExpression(Relation relation,
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std::unique_ptr<Expression> lhs,
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std::unique_ptr<Expression> rhs);
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/// Constructor
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/// @param source the relational expression source
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/// @param relation the relation type
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/// @param lhs the left side of the expression
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/// @param rhs the right side of the expression
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RelationalExpression(const Source& source,
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Relation relation,
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std::unique_ptr<Expression> lhs,
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std::unique_ptr<Expression> rhs);
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/// Move constructor
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RelationalExpression(RelationalExpression&&) = default;
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~RelationalExpression() override;
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/// Sets the relation type
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/// @param relation the relation type
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void set_relation(Relation relation) { relation_ = relation; }
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/// @returns the relation
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Relation relation() const { return relation_; }
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/// @returns true if the relation is and
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bool IsAnd() const { return relation_ == Relation::kAnd; }
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/// @returns true if the relation is or
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bool IsOr() const { return relation_ == Relation::kOr; }
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/// @returns true if the relation is xor
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bool IsXor() const { return relation_ == Relation::kXor; }
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/// @returns true if the relation is logical and
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bool IsLogicalAnd() const { return relation_ == Relation::kLogicalAnd; }
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/// @returns true if the relation is logical or
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bool IsLogicalOr() const { return relation_ == Relation::kLogicalOr; }
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/// @returns true if the relation is equal
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bool IsEqual() const { return relation_ == Relation::kEqual; }
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/// @returns true if the relation is not equal
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bool IsNotEqual() const { return relation_ == Relation::kNotEqual; }
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/// @returns true if the relation is less than
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bool IsLessThan() const { return relation_ == Relation::kLessThan; }
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/// @returns true if the relation is greater than
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bool IsGreaterThan() const { return relation_ == Relation::kGreaterThan; }
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/// @returns true if the relation is less than equal
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bool IsLessThanEqual() const { return relation_ == Relation::kLessThanEqual; }
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/// @returns true if the relation is greater than equal
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bool IsGreaterThanEqual() const {
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return relation_ == Relation::kGreaterThanEqual;
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}
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/// @returns true if the relation is shift left
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bool IsShiftLeft() const { return relation_ == Relation::kShiftLeft; }
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/// @returns true if the relation is shift right
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bool IsShiftRight() const { return relation_ == Relation::kShiftRight; }
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/// @returns true if the relation is shift right arith
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bool IsShiftRightArith() const {
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return relation_ == Relation::kShiftRightArith;
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}
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/// @returns true if the relation is add
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bool IsAdd() const { return relation_ == Relation::kAdd; }
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/// @returns true if the relation is subtract
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bool IsSubtract() const { return relation_ == Relation::kSubtract; }
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/// @returns true if the relation is multiply
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bool IsMultiply() const { return relation_ == Relation::kMultiply; }
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/// @returns true if the relation is divide
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bool IsDivide() const { return relation_ == Relation::kDivide; }
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/// @returns true if the relation is modulo
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bool IsModulo() const { return relation_ == Relation::kModulo; }
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/// Sets the left side of the expression
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/// @param lhs the left side to set
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void set_lhs(std::unique_ptr<Expression> lhs) { lhs_ = std::move(lhs); }
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/// @returns the left side expression
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Expression* lhs() const { return lhs_.get(); }
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/// Sets the right side of the expression
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/// @param rhs the right side to set
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void set_rhs(std::unique_ptr<Expression> rhs) { rhs_ = std::move(rhs); }
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/// @returns the right side expression
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Expression* rhs() const { return rhs_.get(); }
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/// @returns true if this is a relational expression
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bool IsRelational() const override { return true; }
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/// @returns true if the node is valid
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bool IsValid() const override;
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/// Writes a representation of the node to the output stream
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/// @param out the stream to write to
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/// @param indent number of spaces to indent the node when writing
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void to_str(std::ostream& out, size_t indent) const override;
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private:
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RelationalExpression(const RelationalExpression&) = delete;
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Relation relation_ = Relation::kNone;
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std::unique_ptr<Expression> lhs_;
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std::unique_ptr<Expression> rhs_;
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};
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inline std::ostream& operator<<(std::ostream& out, Relation relation) {
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switch (relation) {
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case Relation::kNone:
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out << "none";
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break;
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case Relation::kAnd:
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out << "and";
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break;
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case Relation::kOr:
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out << "or";
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break;
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case Relation::kXor:
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out << "xor";
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break;
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case Relation::kLogicalAnd:
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out << "logical_and";
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break;
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case Relation::kLogicalOr:
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out << "logical_or";
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break;
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case Relation::kEqual:
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out << "equal";
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break;
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case Relation::kNotEqual:
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out << "not_equal";
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break;
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case Relation::kLessThan:
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out << "less_than";
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break;
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case Relation::kGreaterThan:
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out << "greater_than";
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break;
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case Relation::kLessThanEqual:
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out << "less_than_equal";
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break;
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case Relation::kGreaterThanEqual:
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out << "greater_than_equal";
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break;
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case Relation::kShiftLeft:
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out << "shift_left";
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break;
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case Relation::kShiftRight:
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out << "shift_right";
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break;
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case Relation::kShiftRightArith:
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out << "shift_right_arith";
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break;
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case Relation::kAdd:
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out << "add";
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break;
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case Relation::kSubtract:
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out << "subtract";
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break;
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case Relation::kMultiply:
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out << "multiply";
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break;
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case Relation::kDivide:
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out << "divide";
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break;
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case Relation::kModulo:
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out << "modulo";
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break;
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}
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return out;
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}
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} // namespace ast
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} // namespace tint
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#endif // SRC_AST_RELATIONAL_EXPRESSION_H_
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