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carbon-lang/executable_semantics/ast/statement.h
T
Jon Meow 70797e8bf8 Mass rename SourceLoc and Tag (#860)
This does a mass rename of:

-   `SourceLoc()` -> `source_loc()` for property naming
    - `loc` -> `source_loc_` for underscore+consistency
    - Generally changing function args to `source_loc` for consistency
-   `Tag()` -> `kind()` for property naming and `Kind` parity
    - `tag` -> `kind_` for underscore

Also renames `Pos` and `Results` on `Action`. These are a bit of an exception in that most base classes only have `Tag` and maybe `SourceLoc`, whereas `Action` has a little more. I felt okay having `source_loc()` and `kind()` on the base class where children do `Exp()` and the like, but it felt weird to me to mix it on the same class.

The reason for doing this cross-class in one PR is so that I can do it efficiently with a global replace in the codebase, rather than e.g. changing `Expression` but having to read through compiler errors to determine where it's calling `Expression`'s `Tag` versus a different `Tag`. The end result should be equivalent.
2021-09-29 16:52:12 -07:00

345 lines
10 KiB
C++

// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
// Exceptions. See /LICENSE for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
#ifndef EXECUTABLE_SEMANTICS_AST_STATEMENT_H_
#define EXECUTABLE_SEMANTICS_AST_STATEMENT_H_
#include <vector>
#include "common/ostream.h"
#include "executable_semantics/ast/expression.h"
#include "executable_semantics/ast/pattern.h"
#include "executable_semantics/ast/source_location.h"
#include "executable_semantics/common/arena.h"
#include "llvm/ADT/ArrayRef.h"
#include "llvm/Support/Compiler.h"
namespace Carbon {
class Statement {
public:
enum class Kind {
ExpressionStatement,
Assign,
VariableDefinition,
If,
Return,
Sequence,
Block,
While,
Break,
Continue,
Match,
Continuation, // Create a first-class continuation.
Run, // Run a continuation to the next await or until it finishes.
Await, // Pause execution of the continuation.
};
void Print(llvm::raw_ostream& out) const { PrintDepth(-1, out); }
void PrintDepth(int depth, llvm::raw_ostream& out) const;
LLVM_DUMP_METHOD void Dump() const { Print(llvm::errs()); }
// Returns the enumerator corresponding to the most-derived type of this
// object.
auto kind() const -> Kind { return kind_; }
auto source_loc() const -> SourceLocation { return source_loc_; }
protected:
// Constructs an Statement representing syntax at the given line number.
// `kind` must be the enumerator corresponding to the most-derived type being
// constructed.
Statement(Kind kind, SourceLocation source_loc)
: kind_(kind), source_loc_(source_loc) {}
private:
const Kind kind_;
SourceLocation source_loc_;
};
class ExpressionStatement : public Statement {
public:
ExpressionStatement(SourceLocation source_loc, Nonnull<Expression*> exp)
: Statement(Kind::ExpressionStatement, source_loc), exp(exp) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::ExpressionStatement;
}
auto Exp() const -> Nonnull<const Expression*> { return exp; }
auto Exp() -> Nonnull<Expression*> { return exp; }
private:
Nonnull<Expression*> exp;
};
class Assign : public Statement {
public:
Assign(SourceLocation source_loc, Nonnull<Expression*> lhs,
Nonnull<Expression*> rhs)
: Statement(Kind::Assign, source_loc), lhs(lhs), rhs(rhs) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Assign;
}
auto Lhs() const -> Nonnull<const Expression*> { return lhs; }
auto Lhs() -> Nonnull<Expression*> { return lhs; }
auto Rhs() const -> Nonnull<const Expression*> { return rhs; }
auto Rhs() -> Nonnull<Expression*> { return rhs; }
private:
Nonnull<Expression*> lhs;
Nonnull<Expression*> rhs;
};
class VariableDefinition : public Statement {
public:
VariableDefinition(SourceLocation source_loc, Nonnull<Pattern*> pat,
Nonnull<Expression*> init)
: Statement(Kind::VariableDefinition, source_loc), pat(pat), init(init) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::VariableDefinition;
}
auto Pat() const -> Nonnull<const Pattern*> { return pat; }
auto Pat() -> Nonnull<Pattern*> { return pat; }
auto Init() const -> Nonnull<const Expression*> { return init; }
auto Init() -> Nonnull<Expression*> { return init; }
private:
Nonnull<Pattern*> pat;
Nonnull<Expression*> init;
};
class If : public Statement {
public:
If(SourceLocation source_loc, Nonnull<Expression*> cond,
Nonnull<Statement*> then_stmt,
std::optional<Nonnull<Statement*>> else_stmt)
: Statement(Kind::If, source_loc),
cond(cond),
then_stmt(then_stmt),
else_stmt(else_stmt) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::If;
}
auto Cond() const -> Nonnull<const Expression*> { return cond; }
auto Cond() -> Nonnull<Expression*> { return cond; }
auto ThenStmt() const -> Nonnull<const Statement*> { return then_stmt; }
auto ThenStmt() -> Nonnull<Statement*> { return then_stmt; }
auto ElseStmt() const -> std::optional<Nonnull<const Statement*>> {
return else_stmt;
}
auto ElseStmt() -> std::optional<Nonnull<Statement*>> { return else_stmt; }
private:
Nonnull<Expression*> cond;
Nonnull<Statement*> then_stmt;
std::optional<Nonnull<Statement*>> else_stmt;
};
class Return : public Statement {
public:
Return(Nonnull<Arena*> arena, SourceLocation source_loc)
: Return(source_loc, arena->New<TupleLiteral>(source_loc), true) {}
Return(SourceLocation source_loc, Nonnull<Expression*> exp,
bool is_omitted_exp)
: Statement(Kind::Return, source_loc),
exp(exp),
is_omitted_exp(is_omitted_exp) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Return;
}
auto Exp() const -> Nonnull<const Expression*> { return exp; }
auto Exp() -> Nonnull<Expression*> { return exp; }
auto IsOmittedExp() const -> bool { return is_omitted_exp; }
private:
Nonnull<Expression*> exp;
bool is_omitted_exp;
};
class Sequence : public Statement {
public:
Sequence(SourceLocation source_loc, Nonnull<Statement*> stmt,
std::optional<Nonnull<Statement*>> next)
: Statement(Kind::Sequence, source_loc), stmt(stmt), next(next) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Sequence;
}
auto Stmt() const -> Nonnull<const Statement*> { return stmt; }
auto Stmt() -> Nonnull<Statement*> { return stmt; }
auto Next() const -> std::optional<Nonnull<const Statement*>> { return next; }
auto Next() -> std::optional<Nonnull<Statement*>> { return next; }
private:
Nonnull<Statement*> stmt;
std::optional<Nonnull<Statement*>> next;
};
class Block : public Statement {
public:
Block(SourceLocation source_loc, std::optional<Nonnull<Statement*>> stmt)
: Statement(Kind::Block, source_loc), stmt(stmt) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Block;
}
auto Stmt() const -> std::optional<Nonnull<const Statement*>> { return stmt; }
auto Stmt() -> std::optional<Nonnull<Statement*>> { return stmt; }
private:
std::optional<Nonnull<Statement*>> stmt;
};
class While : public Statement {
public:
While(SourceLocation source_loc, Nonnull<Expression*> cond,
Nonnull<Statement*> body)
: Statement(Kind::While, source_loc), cond(cond), body(body) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::While;
}
auto Cond() const -> Nonnull<const Expression*> { return cond; }
auto Cond() -> Nonnull<Expression*> { return cond; }
auto Body() const -> Nonnull<const Statement*> { return body; }
auto Body() -> Nonnull<Statement*> { return body; }
private:
Nonnull<Expression*> cond;
Nonnull<Statement*> body;
};
class Break : public Statement {
public:
explicit Break(SourceLocation source_loc)
: Statement(Kind::Break, source_loc) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Break;
}
};
class Continue : public Statement {
public:
explicit Continue(SourceLocation source_loc)
: Statement(Kind::Continue, source_loc) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Continue;
}
};
class Match : public Statement {
public:
class Clause {
public:
Clause(Nonnull<Pattern*> pattern, Nonnull<Statement*> statement)
: pattern_(pattern), statement_(statement) {}
auto pattern() const -> const Pattern& { return *pattern_; }
auto pattern() -> Pattern& { return *pattern_; }
auto statement() const -> const Statement& { return *statement_; }
auto statement() -> Statement& { return *statement_; }
private:
Nonnull<Pattern*> pattern_;
Nonnull<Statement*> statement_;
};
Match(SourceLocation source_loc, Nonnull<Expression*> expression,
std::vector<Clause> clauses)
: Statement(Kind::Match, source_loc),
expression_(expression),
clauses_(std::move(clauses)) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Match;
}
auto expression() const -> const Expression& { return *expression_; }
auto expression() -> Expression& { return *expression_; }
auto clauses() const -> llvm::ArrayRef<Clause> { return clauses_; }
auto clauses() -> llvm::MutableArrayRef<Clause> { return clauses_; }
private:
Nonnull<Expression*> expression_;
std::vector<Clause> clauses_;
};
// A continuation statement.
//
// __continuation <continuation_variable> {
// <body>
// }
class Continuation : public Statement {
public:
Continuation(SourceLocation source_loc, std::string continuation_variable,
Nonnull<Statement*> body)
: Statement(Kind::Continuation, source_loc),
continuation_variable(std::move(continuation_variable)),
body(body) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Continuation;
}
auto ContinuationVariable() const -> const std::string& {
return continuation_variable;
}
auto Body() const -> Nonnull<const Statement*> { return body; }
auto Body() -> Nonnull<Statement*> { return body; }
private:
std::string continuation_variable;
Nonnull<Statement*> body;
};
// A run statement.
//
// __run <argument>;
class Run : public Statement {
public:
Run(SourceLocation source_loc, Nonnull<Expression*> argument)
: Statement(Kind::Run, source_loc), argument(argument) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Run;
}
auto Argument() const -> Nonnull<const Expression*> { return argument; }
auto Argument() -> Nonnull<Expression*> { return argument; }
private:
Nonnull<Expression*> argument;
};
// An await statement.
//
// __await;
class Await : public Statement {
public:
explicit Await(SourceLocation source_loc)
: Statement(Kind::Await, source_loc) {}
static auto classof(const Statement* stmt) -> bool {
return stmt->kind() == Kind::Await;
}
};
} // namespace Carbon
#endif // EXECUTABLE_SEMANTICS_AST_STATEMENT_H_