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* Replaced std::exit() with return llvm::Expected/llvm::Error<T> for expected errors like invalid syntax. * Use llvm::formatv() for formatting lexer error messages. x * Addresed merge errors. * Fixed impl scope. * Made ErrorBuilder::operator<< nodiscard, to catch code forgetting 'return' in 'return FATAL_COMPILATION_ERROR()'. * FatalComplationError() -> ParseAndLexContext::RecordLexerError(). Other usages of ERROR_TOKEN in lexer.lpp were actually supposed to be END_OF_FILE. * Update executable_semantics/syntax/parse_and_lex_context.h Co-authored-by: Jon Meow <jperkins@google.com> * Code review fixes. * Update executable_semantics/syntax/parser.ypp Co-authored-by: Jon Meow <jperkins@google.com> * More code review fixes. * Update executable_semantics/interpreter/type_checker.h Co-authored-by: Jon Meow <jperkins@google.com> * Yet more code review fixes... * Update executable_semantics/syntax/lexer.lpp Co-authored-by: Jon Meow <jperkins@google.com> * code review comments * Update executable_semantics/interpreter/interpreter.cpp Co-authored-by: Geoff Romer <gromer@google.com> * Apply suggestions from code review Co-authored-by: Jon Meow <jperkins@google.com> * Update executable_semantics/syntax/lexer.lpp Co-authored-by: Jon Meow <jperkins@google.com> * code review * code review * Apply suggestions from code review Co-authored-by: Jon Meow <jperkins@google.com> * formatted code * review comments * Switched to the new ErrorOr<V> error implementation * code review comments * fixed comment * restored ostream.h as #976 makes the change unnecesary * review comments Co-authored-by: Jon Meow <jperkins@google.com> Co-authored-by: Geoff Romer <gromer@google.com>
169 lines
6.2 KiB
C++
169 lines
6.2 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/interpreter/resolve_control_flow.h"
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#include "executable_semantics/ast/declaration.h"
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#include "executable_semantics/ast/return_term.h"
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#include "executable_semantics/ast/statement.h"
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#include "executable_semantics/common/error.h"
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#include "llvm/Support/Casting.h"
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#include "llvm/Support/Error.h"
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using llvm::cast;
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namespace Carbon {
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// Aggregate information about a function being analyzed.
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struct FunctionData {
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// The function declaration.
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Nonnull<FunctionDeclaration*> declaration;
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// True if the function has a deduced return type, and we've already seen
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// a `return` statement in its body.
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bool saw_return_in_auto = false;
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};
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// Resolves control-flow edges such as `Return::function()` and `Break::loop()`
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// in the AST rooted at `statement`. `loop` is the innermost loop that
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// statically encloses `statement`, or nullopt if there is no such loop.
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// `function` carries information about the function body that `statement`
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// belongs to, and that information may be updated by this call. `function`
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// can be nullopt if `statement` does not belong to a function body, for
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// example if it is part of a continuation body instead.
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static auto ResolveControlFlow(Nonnull<Statement*> statement,
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std::optional<Nonnull<const Statement*>> loop,
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std::optional<Nonnull<FunctionData*>> function)
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-> ErrorOr<Success> {
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switch (statement->kind()) {
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case StatementKind::Return: {
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if (!function.has_value()) {
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return FATAL_COMPILATION_ERROR(statement->source_loc())
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<< "return is not within a function body";
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}
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const ReturnTerm& function_return =
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(*function)->declaration->return_term();
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if (function_return.is_auto()) {
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if ((*function)->saw_return_in_auto) {
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return FATAL_COMPILATION_ERROR(statement->source_loc())
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<< "Only one return is allowed in a function with an `auto` "
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"return type.";
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}
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(*function)->saw_return_in_auto = true;
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}
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auto& ret = cast<Return>(*statement);
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ret.set_function((*function)->declaration);
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if (ret.is_omitted_expression() != function_return.is_omitted()) {
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return FATAL_COMPILATION_ERROR(ret.source_loc())
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<< ret << " should"
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<< (function_return.is_omitted() ? " not" : "")
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<< " provide a return value, to match the function's signature.";
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}
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return Success();
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}
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case StatementKind::Break:
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if (!loop.has_value()) {
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return FATAL_COMPILATION_ERROR(statement->source_loc())
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<< "break is not within a loop body";
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}
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cast<Break>(*statement).set_loop(*loop);
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return Success();
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case StatementKind::Continue:
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if (!loop.has_value()) {
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return FATAL_COMPILATION_ERROR(statement->source_loc())
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<< "continue is not within a loop body";
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}
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cast<Continue>(*statement).set_loop(*loop);
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return Success();
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case StatementKind::If: {
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auto& if_stmt = cast<If>(*statement);
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RETURN_IF_ERROR(
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ResolveControlFlow(&if_stmt.then_block(), loop, function));
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if (if_stmt.else_block().has_value()) {
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RETURN_IF_ERROR(
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ResolveControlFlow(*if_stmt.else_block(), loop, function));
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}
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return Success();
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}
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case StatementKind::Block: {
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auto& block = cast<Block>(*statement);
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for (auto* block_statement : block.statements()) {
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RETURN_IF_ERROR(ResolveControlFlow(block_statement, loop, function));
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}
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return Success();
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}
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case StatementKind::While:
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RETURN_IF_ERROR(ResolveControlFlow(&cast<While>(*statement).body(),
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statement, function));
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return Success();
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case StatementKind::Match: {
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auto& match = cast<Match>(*statement);
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for (Match::Clause& clause : match.clauses()) {
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RETURN_IF_ERROR(
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ResolveControlFlow(&clause.statement(), loop, function));
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}
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return Success();
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}
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case StatementKind::Continuation:
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RETURN_IF_ERROR(ResolveControlFlow(&cast<Continuation>(*statement).body(),
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std::nullopt, std::nullopt));
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return Success();
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case StatementKind::ExpressionStatement:
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case StatementKind::Assign:
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case StatementKind::VariableDefinition:
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case StatementKind::Run:
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case StatementKind::Await:
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return Success();
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}
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}
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auto ResolveControlFlow(Nonnull<Declaration*> declaration) -> ErrorOr<Success> {
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switch (declaration->kind()) {
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case DeclarationKind::FunctionDeclaration: {
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auto& function = cast<FunctionDeclaration>(*declaration);
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if (function.body().has_value()) {
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FunctionData data = {.declaration = &function};
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RETURN_IF_ERROR(
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ResolveControlFlow(*function.body(), std::nullopt, &data));
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}
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break;
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}
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case DeclarationKind::ClassDeclaration: {
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auto& class_decl = cast<ClassDeclaration>(*declaration);
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for (Nonnull<Declaration*> member : class_decl.members()) {
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RETURN_IF_ERROR(ResolveControlFlow(member));
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}
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break;
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}
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case DeclarationKind::InterfaceDeclaration: {
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auto& iface_decl = cast<InterfaceDeclaration>(*declaration);
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for (Nonnull<Declaration*> member : iface_decl.members()) {
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RETURN_IF_ERROR(ResolveControlFlow(member));
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}
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break;
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}
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case DeclarationKind::ImplDeclaration: {
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auto& impl_decl = cast<ImplDeclaration>(*declaration);
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for (Nonnull<Declaration*> member : impl_decl.members()) {
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RETURN_IF_ERROR(ResolveControlFlow(member));
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}
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break;
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}
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case DeclarationKind::ChoiceDeclaration:
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case DeclarationKind::VariableDeclaration:
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// do nothing
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break;
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}
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return Success();
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}
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auto ResolveControlFlow(AST& ast) -> ErrorOr<Success> {
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for (auto declaration : ast.declarations) {
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RETURN_IF_ERROR(ResolveControlFlow(declaration));
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}
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return Success();
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}
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} // namespace Carbon
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