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This creates a ReturnExpression. A separate change should enforce that an implicit return of `()` is only allowed in functions that have an implicit return type of `()`, and I think the structure taken here should ease that.
290 lines
8.6 KiB
C++
290 lines
8.6 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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#include "executable_semantics/ast/expression.h"
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#include <optional>
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#include "executable_semantics/common/arena.h"
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#include "executable_semantics/common/error.h"
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#include "llvm/ADT/StringExtras.h"
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#include "llvm/Support/raw_ostream.h"
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namespace Carbon {
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auto ExpressionFromParenContents(
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int line_num, const ParenContents<Expression>& paren_contents)
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-> const Expression* {
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std::optional<const Expression*> single_term = paren_contents.SingleTerm();
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if (single_term.has_value()) {
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return *single_term;
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} else {
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return TupleExpressionFromParenContents(line_num, paren_contents);
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}
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}
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auto TupleExpressionFromParenContents(
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int line_num, const ParenContents<Expression>& paren_contents)
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-> const Expression* {
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return Expression::MakeTupleLiteral(
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line_num, paren_contents.TupleElements<FieldInitializer>(line_num));
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}
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auto Expression::GetIdentifierExpression() const
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-> const IdentifierExpression& {
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return std::get<IdentifierExpression>(value);
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}
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auto Expression::GetFieldAccessExpression() const
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-> const FieldAccessExpression& {
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return std::get<FieldAccessExpression>(value);
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}
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auto Expression::GetIndexExpression() const -> const IndexExpression& {
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return std::get<IndexExpression>(value);
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}
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auto Expression::GetIntLiteral() const -> int {
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return std::get<IntLiteral>(value).value;
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}
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auto Expression::GetBoolLiteral() const -> bool {
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return std::get<BoolLiteral>(value).value;
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}
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auto Expression::GetTupleLiteral() const -> const TupleLiteral& {
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return std::get<TupleLiteral>(value);
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}
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auto Expression::GetPrimitiveOperatorExpression() const
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-> const PrimitiveOperatorExpression& {
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return std::get<PrimitiveOperatorExpression>(value);
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}
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auto Expression::GetCallExpression() const -> const CallExpression& {
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return std::get<CallExpression>(value);
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}
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auto Expression::GetFunctionTypeLiteral() const -> const FunctionTypeLiteral& {
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return std::get<FunctionTypeLiteral>(value);
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}
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auto Expression::MakeTypeTypeLiteral(int line_num) -> const Expression* {
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auto* t = global_arena->New<Expression>();
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t->line_num = line_num;
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t->value = TypeTypeLiteral();
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return t;
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}
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auto Expression::MakeIntTypeLiteral(int line_num) -> const Expression* {
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auto* t = global_arena->New<Expression>();
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t->line_num = line_num;
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t->value = IntTypeLiteral();
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return t;
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}
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auto Expression::MakeBoolTypeLiteral(int line_num) -> const Expression* {
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auto* t = global_arena->New<Expression>();
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t->line_num = line_num;
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t->value = BoolTypeLiteral();
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return t;
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}
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// Returns a Continuation type AST node at the given source location.
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auto Expression::MakeContinuationTypeLiteral(int line_num)
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-> const Expression* {
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auto* type = global_arena->New<Expression>();
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type->line_num = line_num;
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type->value = ContinuationTypeLiteral();
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return type;
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}
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auto Expression::MakeFunctionTypeLiteral(int line_num,
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const Expression* parameter,
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const Expression* return_type,
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bool is_omitted_return_type)
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-> const Expression* {
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auto* t = global_arena->New<Expression>();
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t->line_num = line_num;
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t->value =
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FunctionTypeLiteral({.parameter = parameter,
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.return_type = return_type,
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.is_omitted_return_type = is_omitted_return_type});
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return t;
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}
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auto Expression::MakeIdentifierExpression(int line_num, std::string var)
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-> const Expression* {
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auto* v = global_arena->New<Expression>();
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v->line_num = line_num;
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v->value = IdentifierExpression({.name = std::move(var)});
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return v;
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}
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auto Expression::MakeIntLiteral(int line_num, int i) -> const Expression* {
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auto* e = global_arena->New<Expression>();
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e->line_num = line_num;
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e->value = IntLiteral({.value = i});
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return e;
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}
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auto Expression::MakeBoolLiteral(int line_num, bool b) -> const Expression* {
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auto* e = global_arena->New<Expression>();
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e->line_num = line_num;
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e->value = BoolLiteral({.value = b});
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return e;
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}
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auto Expression::MakePrimitiveOperatorExpression(
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int line_num, enum Operator op, std::vector<const Expression*> args)
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-> const Expression* {
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auto* e = global_arena->New<Expression>();
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e->line_num = line_num;
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e->value =
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PrimitiveOperatorExpression({.op = op, .arguments = std::move(args)});
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return e;
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}
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auto Expression::MakeCallExpression(int line_num, const Expression* fun,
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const Expression* arg)
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-> const Expression* {
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auto* e = global_arena->New<Expression>();
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e->line_num = line_num;
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e->value = CallExpression({.function = fun, .argument = arg});
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return e;
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}
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auto Expression::MakeFieldAccessExpression(int line_num, const Expression* exp,
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std::string field)
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-> const Expression* {
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auto* e = global_arena->New<Expression>();
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e->line_num = line_num;
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e->value =
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FieldAccessExpression({.aggregate = exp, .field = std::move(field)});
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return e;
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}
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auto Expression::MakeTupleLiteral(int line_num,
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std::vector<FieldInitializer> args)
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-> const Expression* {
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auto* e = global_arena->New<Expression>();
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e->line_num = line_num;
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e->value = TupleLiteral({.fields = std::move(args)});
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return e;
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}
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auto Expression::MakeIndexExpression(int line_num, const Expression* exp,
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const Expression* i) -> const Expression* {
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auto* e = global_arena->New<Expression>();
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e->line_num = line_num;
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e->value = IndexExpression({.aggregate = exp, .offset = i});
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return e;
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}
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static void PrintOp(llvm::raw_ostream& out, Operator op) {
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switch (op) {
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case Operator::Add:
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out << "+";
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break;
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case Operator::Neg:
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case Operator::Sub:
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out << "-";
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break;
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case Operator::Mul:
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case Operator::Deref:
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case Operator::Ptr:
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out << "*";
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break;
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case Operator::Not:
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out << "not";
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break;
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case Operator::And:
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out << "and";
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break;
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case Operator::Or:
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out << "or";
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break;
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case Operator::Eq:
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out << "==";
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break;
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}
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}
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static void PrintFields(llvm::raw_ostream& out,
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const std::vector<FieldInitializer>& fields) {
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llvm::ListSeparator sep;
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for (const auto& field : fields) {
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out << sep << field.name << " = " << field.expression;
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}
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}
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void Expression::Print(llvm::raw_ostream& out) const {
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switch (tag()) {
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case ExpressionKind::IndexExpression:
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out << *GetIndexExpression().aggregate << "["
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<< *GetIndexExpression().offset << "]";
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break;
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case ExpressionKind::FieldAccessExpression:
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out << *GetFieldAccessExpression().aggregate << "."
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<< GetFieldAccessExpression().field;
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break;
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case ExpressionKind::TupleLiteral:
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out << "(";
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PrintFields(out, GetTupleLiteral().fields);
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out << ")";
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break;
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case ExpressionKind::IntLiteral:
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out << GetIntLiteral();
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break;
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case ExpressionKind::BoolLiteral:
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out << (GetBoolLiteral() ? "true" : "false");
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break;
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case ExpressionKind::PrimitiveOperatorExpression: {
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out << "(";
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PrimitiveOperatorExpression op = GetPrimitiveOperatorExpression();
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if (op.arguments.size() == 0) {
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PrintOp(out, op.op);
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} else if (op.arguments.size() == 1) {
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PrintOp(out, op.op);
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out << " " << *op.arguments[0];
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} else if (op.arguments.size() == 2) {
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out << *op.arguments[0] << " ";
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PrintOp(out, op.op);
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out << " " << *op.arguments[1];
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}
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out << ")";
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break;
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}
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case ExpressionKind::IdentifierExpression:
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out << GetIdentifierExpression().name;
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break;
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case ExpressionKind::CallExpression:
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out << *GetCallExpression().function;
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if (GetCallExpression().argument->tag() == ExpressionKind::TupleLiteral) {
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out << *GetCallExpression().argument;
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} else {
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out << "(" << *GetCallExpression().argument << ")";
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}
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break;
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case ExpressionKind::BoolTypeLiteral:
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out << "Bool";
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break;
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case ExpressionKind::IntTypeLiteral:
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out << "Int";
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break;
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case ExpressionKind::TypeTypeLiteral:
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out << "Type";
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break;
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case ExpressionKind::ContinuationTypeLiteral:
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out << "Continuation";
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break;
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case ExpressionKind::FunctionTypeLiteral:
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out << "fn " << *GetFunctionTypeLiteral().parameter << " -> "
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<< *GetFunctionTypeLiteral().return_type;
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break;
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}
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}
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} // namespace Carbon
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