mirror of
https://github.com/carbon-language/carbon-lang.git
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* implement tuple restrictions: (1) named fields after positional, (2) order matters * after_named_member => seen_named_member
320 lines
8.5 KiB
C++
320 lines
8.5 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 <iostream>
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namespace Carbon {
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auto MakeTypeType(int line_num) -> const Expression* {
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auto* t = new Expression();
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t->tag = ExpressionKind::TypeT;
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t->line_num = line_num;
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return t;
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}
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auto MakeIntType(int line_num) -> const Expression* {
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auto* t = new Expression();
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t->tag = ExpressionKind::IntT;
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t->line_num = line_num;
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return t;
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}
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auto MakeBoolType(int line_num) -> const Expression* {
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auto* t = new Expression();
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t->tag = ExpressionKind::BoolT;
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t->line_num = line_num;
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return t;
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}
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auto MakeAutoType(int line_num) -> const Expression* {
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auto* t = new Expression();
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t->tag = ExpressionKind::AutoT;
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t->line_num = line_num;
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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 MakeContinuationType(int line_num) -> const Expression* {
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auto* type = new Expression();
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type->tag = ExpressionKind::ContinuationT;
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type->line_num = line_num;
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return type;
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}
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auto MakeFunType(int line_num, const Expression* param, const Expression* ret)
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-> const Expression* {
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auto* t = new Expression();
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t->tag = ExpressionKind::FunctionT;
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t->line_num = line_num;
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t->u.function_type.parameter = param;
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t->u.function_type.return_type = ret;
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return t;
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}
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auto MakeVar(int line_num, std::string var) -> const Expression* {
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auto* v = new Expression();
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v->line_num = line_num;
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v->tag = ExpressionKind::Variable;
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v->u.variable.name = new std::string(std::move(var));
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return v;
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}
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auto MakeVarPat(int line_num, std::string var, const Expression* type)
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-> const Expression* {
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auto* v = new Expression();
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v->line_num = line_num;
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v->tag = ExpressionKind::PatternVariable;
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v->u.pattern_variable.name = new std::string(std::move(var));
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v->u.pattern_variable.type = type;
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return v;
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}
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auto MakeInt(int line_num, int i) -> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::Integer;
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e->u.integer = i;
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return e;
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}
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auto MakeBool(int line_num, bool b) -> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::Boolean;
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e->u.boolean = b;
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return e;
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}
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auto MakeOp(int line_num, enum Operator op,
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std::vector<const Expression*>* args) -> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::PrimitiveOp;
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e->u.primitive_op.op = op;
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e->u.primitive_op.arguments = args;
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return e;
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}
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auto MakeUnOp(int line_num, enum Operator op, const Expression* arg)
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-> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::PrimitiveOp;
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e->u.primitive_op.op = op;
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auto* args = new std::vector<const Expression*>();
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args->push_back(arg);
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e->u.primitive_op.arguments = args;
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return e;
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}
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auto MakeBinOp(int line_num, enum Operator op, const Expression* arg1,
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const Expression* arg2) -> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::PrimitiveOp;
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e->u.primitive_op.op = op;
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auto* args = new std::vector<const Expression*>();
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args->push_back(arg1);
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args->push_back(arg2);
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e->u.primitive_op.arguments = args;
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return e;
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}
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auto MakeCall(int line_num, const Expression* fun, const Expression* arg)
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-> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::Call;
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e->u.call.function = fun;
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e->u.call.argument = arg;
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return e;
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}
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auto MakeGetField(int line_num, const Expression* exp, std::string field)
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-> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::GetField;
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e->u.get_field.aggregate = exp;
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e->u.get_field.field = new std::string(std::move(field));
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return e;
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}
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auto MakeTuple(int line_num,
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std::vector<std::pair<std::string, const Expression*>>* args)
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-> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::Tuple;
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int i = 0;
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bool seen_named_member = false;
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for (auto& arg : *args) {
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if (arg.first == "") {
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if (seen_named_member) {
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std::cerr << line_num
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<< ": positional members must come before named members"
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<< std::endl;
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exit(-1);
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}
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arg.first = std::to_string(i);
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++i;
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} else {
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seen_named_member = true;
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}
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}
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e->u.tuple.fields = args;
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return e;
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}
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// Create an AST node for an empty tuple.
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// TODO(geoffromer): remove this and rewrite its callers to use
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// `MakeTuple(line_num, {})`, once that works.
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auto MakeUnit(int line_num) -> const Expression* {
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auto* unit = new Expression();
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unit->line_num = line_num;
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unit->tag = ExpressionKind::Tuple;
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auto* args = new std::vector<std::pair<std::string, const Expression*>>();
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unit->u.tuple.fields = args;
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return unit;
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}
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auto MakeIndex(int line_num, const Expression* exp, const Expression* i)
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-> const Expression* {
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auto* e = new Expression();
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e->line_num = line_num;
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e->tag = ExpressionKind::Index;
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e->u.index.aggregate = exp;
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e->u.index.offset = i;
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return e;
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}
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static void PrintOp(Operator op) {
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switch (op) {
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case Operator::Neg:
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std::cout << "-";
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break;
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case Operator::Add:
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std::cout << "+";
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break;
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case Operator::Sub:
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std::cout << "-";
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break;
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case Operator::Not:
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std::cout << "not";
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break;
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case Operator::And:
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std::cout << "and";
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break;
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case Operator::Or:
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std::cout << "or";
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break;
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case Operator::Eq:
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std::cout << "==";
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break;
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}
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}
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static void PrintFields(
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std::vector<std::pair<std::string, const Expression*>>* fields) {
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int i = 0;
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for (auto iter = fields->begin(); iter != fields->end(); ++iter, ++i) {
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if (i != 0) {
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std::cout << ", ";
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}
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std::cout << iter->first << " = ";
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PrintExp(iter->second);
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}
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}
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void PrintExp(const Expression* e) {
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switch (e->tag) {
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case ExpressionKind::Index:
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PrintExp(e->u.index.aggregate);
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std::cout << "[";
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PrintExp(e->u.index.offset);
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std::cout << "]";
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break;
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case ExpressionKind::GetField:
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PrintExp(e->u.get_field.aggregate);
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std::cout << ".";
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std::cout << *e->u.get_field.field;
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break;
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case ExpressionKind::Tuple:
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std::cout << "(";
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PrintFields(e->u.tuple.fields);
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std::cout << ")";
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break;
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case ExpressionKind::Integer:
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std::cout << e->u.integer;
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break;
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case ExpressionKind::Boolean:
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std::cout << std::boolalpha;
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std::cout << e->u.boolean;
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break;
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case ExpressionKind::PrimitiveOp:
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std::cout << "(";
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if (e->u.primitive_op.arguments->size() == 0) {
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PrintOp(e->u.primitive_op.op);
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} else if (e->u.primitive_op.arguments->size() == 1) {
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PrintOp(e->u.primitive_op.op);
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std::cout << " ";
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auto iter = e->u.primitive_op.arguments->begin();
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PrintExp(*iter);
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} else if (e->u.primitive_op.arguments->size() == 2) {
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auto iter = e->u.primitive_op.arguments->begin();
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PrintExp(*iter);
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std::cout << " ";
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PrintOp(e->u.primitive_op.op);
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std::cout << " ";
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++iter;
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PrintExp(*iter);
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}
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std::cout << ")";
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break;
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case ExpressionKind::Variable:
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std::cout << *e->u.variable.name;
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break;
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case ExpressionKind::PatternVariable:
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PrintExp(e->u.pattern_variable.type);
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std::cout << ": ";
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std::cout << *e->u.pattern_variable.name;
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break;
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case ExpressionKind::Call:
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PrintExp(e->u.call.function);
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if (e->u.call.argument->tag == ExpressionKind::Tuple) {
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PrintExp(e->u.call.argument);
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} else {
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std::cout << "(";
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PrintExp(e->u.call.argument);
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std::cout << ")";
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}
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break;
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case ExpressionKind::BoolT:
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std::cout << "Bool";
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break;
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case ExpressionKind::IntT:
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std::cout << "Int";
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break;
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case ExpressionKind::TypeT:
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std::cout << "Type";
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break;
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case ExpressionKind::AutoT:
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std::cout << "auto";
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break;
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case ExpressionKind::ContinuationT:
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std::cout << "Continuation";
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break;
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case ExpressionKind::FunctionT:
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std::cout << "fn ";
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PrintExp(e->u.function_type.parameter);
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std::cout << " -> ";
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PrintExp(e->u.function_type.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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