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This starts detecting naming collisions as a consequence of being able to determine when the name is declared twice in a given scope. Co-authored-by: Geoff Romer <gromer@google.com>
199 lines
6.7 KiB
C++
199 lines
6.7 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_names.h"
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#include "executable_semantics/ast/declaration.h"
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#include "llvm/Support/Casting.h"
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using llvm::cast;
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namespace Carbon {
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namespace {
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// Populates names for a pattern. See PopulateNamesInDeclaration for overall
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// flow.
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void PopulateNamesInPattern(const Pattern& pattern, StaticScope& static_scope) {
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switch (pattern.kind()) {
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case Pattern::Kind::AlternativePattern: {
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const auto& alt = cast<AlternativePattern>(pattern);
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PopulateNamesInPattern(alt.arguments(), static_scope);
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break;
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}
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case Pattern::Kind::BindingPattern: {
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const auto& binding = cast<BindingPattern>(pattern);
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if (binding.name().has_value()) {
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static_scope.Add(*binding.name(), &binding);
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}
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break;
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}
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case Pattern::Kind::TuplePattern: {
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const auto& tuple = cast<TuplePattern>(pattern);
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for (auto* field : tuple.fields()) {
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PopulateNamesInPattern(*field, static_scope);
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}
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break;
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}
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case Pattern::Kind::AutoPattern:
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case Pattern::Kind::ExpressionPattern:
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// These don't add names.
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break;
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}
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}
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// Populates names for a statement. See PopulateNamesInDeclaration for overall
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// flow.
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void PopulateNamesInStatement(Arena* arena,
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std::optional<Nonnull<Statement*>> opt_statement,
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StaticScope& static_scope) {
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if (!opt_statement.has_value()) {
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return;
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}
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Statement& statement = **opt_statement;
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switch (statement.kind()) {
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case Statement::Kind::Block: {
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// Defines a new scope for names.
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auto& block = cast<Block>(statement);
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for (const auto& statement : block.statements()) {
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PopulateNamesInStatement(arena, statement, block.static_scope());
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}
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break;
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}
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case Statement::Kind::Continuation: {
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// Defines a new name and contains a block.
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auto& cont = cast<Continuation>(statement);
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static_scope.Add(cont.continuation_variable(), &cont);
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PopulateNamesInStatement(arena, &cont.body(), static_scope);
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break;
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}
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case Statement::Kind::VariableDefinition: {
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// Defines a new name.
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const auto& var = cast<VariableDefinition>(statement);
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PopulateNamesInPattern(var.pattern(), static_scope);
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break;
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}
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case Statement::Kind::If: {
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// Contains blocks.
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auto& if_stmt = cast<If>(statement);
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PopulateNamesInStatement(arena, &if_stmt.then_block(), static_scope);
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PopulateNamesInStatement(arena, if_stmt.else_block(), static_scope);
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break;
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}
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case Statement::Kind::While: {
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// Contains a block.
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auto& while_stmt = cast<While>(statement);
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PopulateNamesInStatement(arena, &while_stmt.body(), static_scope);
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break;
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}
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case Statement::Kind::Match: {
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// Contains blocks.
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auto& match = cast<Match>(statement);
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for (auto& clause : match.clauses()) {
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PopulateNamesInPattern(clause.pattern(), clause.static_scope());
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PopulateNamesInStatement(arena, &clause.statement(),
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clause.static_scope());
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}
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break;
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}
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case Statement::Kind::Assign:
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case Statement::Kind::Await:
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case Statement::Kind::Break:
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case Statement::Kind::Continue:
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case Statement::Kind::ExpressionStatement:
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case Statement::Kind::Return:
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case Statement::Kind::Run:
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// Neither contains names nor a scope.
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break;
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}
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}
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// Populates names for a member. See PopulateNamesInDeclaration for overall
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// flow.
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void PopulateNamesInMember(Arena* arena, const Member& member,
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StaticScope& static_scope) {
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switch (member.kind()) {
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case Member::Kind::FieldMember: {
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const auto& field = cast<FieldMember>(member);
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if (field.binding().name().has_value()) {
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static_scope.Add(*field.binding().name(), &member);
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}
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break;
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}
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}
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}
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// Populates declared names at scoped boundaries, such as file-level or
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// function bodies. This doesn't currently recurse into expressions, but
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// likely will in the future in order to resolve names in lambdas.
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void PopulateNamesInDeclaration(Arena* arena, Declaration& declaration,
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StaticScope& static_scope) {
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switch (declaration.kind()) {
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case Declaration::Kind::FunctionDeclaration: {
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auto& func = cast<FunctionDeclaration>(declaration);
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static_scope.Add(func.name(), &declaration);
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for (const auto& param : func.deduced_parameters()) {
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func.static_scope().Add(param.name(), ¶m);
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}
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PopulateNamesInPattern(func.param_pattern(), func.static_scope());
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PopulateNamesInStatement(arena, func.body(), static_scope);
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break;
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}
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case Declaration::Kind::ClassDeclaration: {
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auto& class_def = cast<ClassDeclaration>(declaration).definition();
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static_scope.Add(class_def.name(), &declaration);
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for (auto* member : class_def.members()) {
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PopulateNamesInMember(arena, *member, class_def.static_scope());
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}
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break;
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}
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case Declaration::Kind::ChoiceDeclaration: {
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auto& choice = cast<ChoiceDeclaration>(declaration);
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static_scope.Add(choice.name(), &declaration);
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for (auto& alt : choice.alternatives()) {
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choice.static_scope().Add(alt.name(), &alt);
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}
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// Populate name into declared_names.
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// Init the choice's declared_names, and populate it with the
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// alternatives.
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break;
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}
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case Declaration::Kind::VariableDeclaration:
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auto& var = cast<VariableDeclaration>(declaration);
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if (var.binding().name().has_value()) {
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static_scope.Add(*(var.binding().name()), &var.binding());
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}
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return;
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}
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}
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// TODO: ResolveNames for Expression, Member, Pattern, and Statement will be
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// needed for recursion.
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// Recurses through a declaration to find and resolve IdentifierExpressions
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// using declared_names.
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void ResolveNamesInDeclaration(Declaration& declaration,
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const StaticScope& static_scope) {
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switch (declaration.kind()) {
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case Declaration::Kind::FunctionDeclaration:
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case Declaration::Kind::ClassDeclaration:
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case Declaration::Kind::ChoiceDeclaration:
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case Declaration::Kind::VariableDeclaration:
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break;
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}
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}
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} // namespace
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void ResolveNames(Arena* arena, AST& ast) {
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for (auto declaration : ast.declarations) {
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PopulateNamesInDeclaration(arena, *declaration, ast.static_scope);
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}
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for (auto declaration : ast.declarations) {
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ResolveNamesInDeclaration(*declaration, ast.static_scope);
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}
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}
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} // namespace Carbon
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