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Sorry about the big change, this is hard to split. ParenContents is used by both, templated, and expects the same pointer type. While I could duplicate ParenContents with some ExpressionParenContents or PatternParenContents, that seems a little kludgy versus a single large change handling both. The worst of it is that Expression is already pretty sweeping, Pattern is really just incrementally adding. That said, I believe this includes a couple fixes I found with incorrect use of dyn_cast in typecheck.cpp (checked nullptr at the wrong step in 2 code locations). There's also a missing `*` in member.cpp this caught. I adjust passing of expressions for Return due to nullness (I felt adding another constructor was the best solution). I add a `.Release()` to BisonWrap due to things like `$3.first` needing some way to work through BIsonWrap. I felt this was better than `operator->`, but feel free to comment if you prefer the other path (`.Release()` conveniently lets me do pair unwrapping, so it felt a better solution). I do add a TODO to think about better Ptr-to-Ptr cast<> support too, though, as that doesn't work cleanly with LLVM's infra. But so far it seems to only come up in one spot, so I'm not prioritizing it.
302 lines
8.0 KiB
C++
302 lines
8.0 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#ifndef EXECUTABLE_SEMANTICS_AST_STATEMENT_H_
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#define EXECUTABLE_SEMANTICS_AST_STATEMENT_H_
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#include <list>
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#include "common/ostream.h"
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#include "executable_semantics/ast/expression.h"
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#include "executable_semantics/ast/pattern.h"
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#include "executable_semantics/ast/source_location.h"
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#include "executable_semantics/common/arena.h"
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#include "llvm/Support/Compiler.h"
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namespace Carbon {
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class Statement {
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public:
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enum class Kind {
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ExpressionStatement,
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Assign,
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VariableDefinition,
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If,
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Return,
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Sequence,
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Block,
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While,
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Break,
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Continue,
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Match,
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Continuation, // Create a first-class continuation.
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Run, // Run a continuation to the next await or until it finishes.
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Await, // Pause execution of the continuation.
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};
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// Returns the enumerator corresponding to the most-derived type of this
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// object.
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auto Tag() const -> Kind { return tag; }
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auto SourceLoc() const -> SourceLocation { return loc; }
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void Print(llvm::raw_ostream& out) const { PrintDepth(-1, out); }
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void PrintDepth(int depth, llvm::raw_ostream& out) const;
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LLVM_DUMP_METHOD void Dump() const { Print(llvm::errs()); }
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protected:
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// Constructs an Statement representing syntax at the given line number.
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// `tag` must be the enumerator corresponding to the most-derived type being
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// constructed.
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Statement(Kind tag, SourceLocation loc) : tag(tag), loc(loc) {}
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private:
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const Kind tag;
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SourceLocation loc;
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};
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class ExpressionStatement : public Statement {
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public:
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ExpressionStatement(SourceLocation loc, Ptr<const Expression> exp)
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: Statement(Kind::ExpressionStatement, loc), exp(exp) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::ExpressionStatement;
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}
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auto Exp() const -> Ptr<const Expression> { return exp; }
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private:
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Ptr<const Expression> exp;
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};
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class Assign : public Statement {
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public:
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Assign(SourceLocation loc, Ptr<const Expression> lhs,
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Ptr<const Expression> rhs)
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: Statement(Kind::Assign, loc), lhs(lhs), rhs(rhs) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Assign;
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}
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auto Lhs() const -> Ptr<const Expression> { return lhs; }
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auto Rhs() const -> Ptr<const Expression> { return rhs; }
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private:
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Ptr<const Expression> lhs;
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Ptr<const Expression> rhs;
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};
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class VariableDefinition : public Statement {
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public:
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VariableDefinition(SourceLocation loc, Ptr<const Pattern> pat,
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Ptr<const Expression> init)
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: Statement(Kind::VariableDefinition, loc), pat(pat), init(init) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::VariableDefinition;
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}
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auto Pat() const -> Ptr<const Pattern> { return pat; }
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auto Init() const -> Ptr<const Expression> { return init; }
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private:
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Ptr<const Pattern> pat;
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Ptr<const Expression> init;
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};
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class If : public Statement {
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public:
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If(SourceLocation loc, Ptr<const Expression> cond, const Statement* then_stmt,
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const Statement* else_stmt)
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: Statement(Kind::If, loc),
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cond(cond),
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then_stmt(then_stmt),
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else_stmt(else_stmt) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::If;
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}
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auto Cond() const -> Ptr<const Expression> { return cond; }
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auto ThenStmt() const -> const Statement* { return then_stmt; }
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auto ElseStmt() const -> const Statement* { return else_stmt; }
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private:
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Ptr<const Expression> cond;
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const Statement* then_stmt;
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const Statement* else_stmt;
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};
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class Return : public Statement {
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public:
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explicit Return(SourceLocation loc)
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: Return(loc, global_arena->New<TupleLiteral>(loc), true) {}
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Return(SourceLocation loc, Ptr<const Expression> exp, bool is_omitted_exp)
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: Statement(Kind::Return, loc),
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exp(exp),
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is_omitted_exp(is_omitted_exp) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Return;
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}
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auto Exp() const -> Ptr<const Expression> { return exp; }
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auto IsOmittedExp() const -> bool { return is_omitted_exp; }
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private:
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Ptr<const Expression> exp;
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bool is_omitted_exp;
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};
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class Sequence : public Statement {
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public:
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Sequence(SourceLocation loc, const Statement* stmt, const Statement* next)
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: Statement(Kind::Sequence, loc), stmt(stmt), next(next) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Sequence;
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}
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auto Stmt() const -> const Statement* { return stmt; }
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auto Next() const -> const Statement* { return next; }
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private:
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const Statement* stmt;
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const Statement* next;
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};
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class Block : public Statement {
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public:
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Block(SourceLocation loc, const Statement* stmt)
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: Statement(Kind::Block, loc), stmt(stmt) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Block;
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}
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auto Stmt() const -> const Statement* { return stmt; }
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private:
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const Statement* stmt;
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};
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class While : public Statement {
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public:
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While(SourceLocation loc, Ptr<const Expression> cond, const Statement* body)
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: Statement(Kind::While, loc), cond(cond), body(body) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::While;
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}
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auto Cond() const -> Ptr<const Expression> { return cond; }
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auto Body() const -> const Statement* { return body; }
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private:
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Ptr<const Expression> cond;
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const Statement* body;
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};
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class Break : public Statement {
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public:
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explicit Break(SourceLocation loc) : Statement(Kind::Break, loc) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Break;
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}
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};
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class Continue : public Statement {
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public:
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explicit Continue(SourceLocation loc) : Statement(Kind::Continue, loc) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Continue;
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}
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};
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class Match : public Statement {
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public:
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Match(SourceLocation loc, Ptr<const Expression> exp,
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std::list<std::pair<Ptr<const Pattern>, const Statement*>>* clauses)
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: Statement(Kind::Match, loc), exp(exp), clauses(clauses) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Match;
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}
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auto Exp() const -> Ptr<const Expression> { return exp; }
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auto Clauses() const
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-> const std::list<std::pair<Ptr<const Pattern>, const Statement*>>* {
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return clauses;
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}
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private:
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Ptr<const Expression> exp;
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std::list<std::pair<Ptr<const Pattern>, const Statement*>>* clauses;
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};
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// A continuation statement.
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//
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// __continuation <continuation_variable> {
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// <body>
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// }
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class Continuation : public Statement {
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public:
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Continuation(SourceLocation loc, std::string continuation_variable,
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const Statement* body)
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: Statement(Kind::Continuation, loc),
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continuation_variable(std::move(continuation_variable)),
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body(body) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Continuation;
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}
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auto ContinuationVariable() const -> const std::string& {
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return continuation_variable;
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}
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auto Body() const -> const Statement* { return body; }
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private:
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std::string continuation_variable;
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const Statement* body;
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};
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// A run statement.
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//
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// __run <argument>;
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class Run : public Statement {
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public:
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Run(SourceLocation loc, Ptr<const Expression> argument)
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: Statement(Kind::Run, loc), argument(argument) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Run;
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}
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auto Argument() const -> Ptr<const Expression> { return argument; }
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private:
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Ptr<const Expression> argument;
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};
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// An await statement.
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//
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// __await;
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class Await : public Statement {
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public:
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explicit Await(SourceLocation loc) : Statement(Kind::Await, loc) {}
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static auto classof(const Statement* stmt) -> bool {
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return stmt->Tag() == Kind::Await;
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}
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};
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} // namespace Carbon
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#endif // EXECUTABLE_SEMANTICS_AST_STATEMENT_H_
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