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This is really a set of closely related changes: 1) We really shouldn't be creating a Check::Unit for _Lower_. This fixes that by storing the diagnostic converter for reuse. 2) Rather than passing in node converters to Check as their own array, pass diagnostic converters as part of Check::Unit. 3) To support creating the converters early, pass SemIR::File pre-constructed. 4) Since SemIR::File construction was used to track "checked", add `is_checked` for that. 5) Clarifies a subtle edge case around `input_filename_` use with `-`. Note the key consequence of this change, where I actually started, is that `Check` only has one array of `Check::Unit` instead of receiving `NodeLocConverter` as a separate array.
181 lines
6.9 KiB
C++
181 lines
6.9 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 "toolchain/check/sem_ir_diagnostic_converter.h"
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#include "toolchain/sem_ir/stringify_type.h"
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namespace Carbon::Check {
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auto SemIRDiagnosticConverter::ConvertLoc(SemIRLoc loc,
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ContextFnT context_fn) const
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-> DiagnosticLoc {
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// Cursors for the current IR and instruction in that IR.
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const auto* cursor_ir = sem_ir_;
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auto cursor_inst_id = SemIR::InstId::Invalid;
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// Notes an import on the diagnostic and updates cursors to point at the
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// imported IR.
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auto follow_import_ref = [&](SemIR::ImportIRInstId import_ir_inst_id) {
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auto import_ir_inst = cursor_ir->import_ir_insts().Get(import_ir_inst_id);
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const auto& import_ir = cursor_ir->import_irs().Get(import_ir_inst.ir_id);
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CARBON_CHECK(import_ir.decl_id.is_valid(),
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"If we get invalid locations here, we may need to more "
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"thoroughly track ImportDecls.");
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DiagnosticLoc in_import_loc;
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auto import_loc_id = cursor_ir->insts().GetLocId(import_ir.decl_id);
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if (import_loc_id.is_node_id()) {
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// For imports in the current file, the location is simple.
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in_import_loc = ConvertLocInFile(cursor_ir, import_loc_id.node_id(),
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loc.token_only, context_fn);
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} else if (import_loc_id.is_import_ir_inst_id()) {
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// For implicit imports, we need to unravel the location a little
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// further.
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auto implicit_import_ir_inst =
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cursor_ir->import_ir_insts().Get(import_loc_id.import_ir_inst_id());
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const auto& implicit_ir =
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cursor_ir->import_irs().Get(implicit_import_ir_inst.ir_id);
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auto implicit_loc_id =
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implicit_ir.sem_ir->insts().GetLocId(implicit_import_ir_inst.inst_id);
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CARBON_CHECK(implicit_loc_id.is_node_id(),
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"Should only be one layer of implicit imports");
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in_import_loc =
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ConvertLocInFile(implicit_ir.sem_ir, implicit_loc_id.node_id(),
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loc.token_only, context_fn);
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}
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// TODO: Add an "In implicit import of prelude." note for the case where we
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// don't have a location.
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if (import_loc_id.is_valid()) {
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// TODO: Include the name of the imported library in the diagnostic.
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CARBON_DIAGNOSTIC(InImport, LocationInfo, "in import");
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context_fn(in_import_loc, InImport);
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}
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cursor_ir = import_ir.sem_ir;
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cursor_inst_id = import_ir_inst.inst_id;
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};
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// If the location is is an import, follows it and returns nullopt.
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// Otherwise, it's a parse node, so return the final location.
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auto handle_loc = [&](SemIR::LocId loc_id) -> std::optional<DiagnosticLoc> {
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if (loc_id.is_import_ir_inst_id()) {
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follow_import_ref(loc_id.import_ir_inst_id());
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return std::nullopt;
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} else {
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// Parse nodes always refer to the current IR.
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return ConvertLocInFile(cursor_ir, loc_id.node_id(), loc.token_only,
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context_fn);
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}
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};
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// Handle the base location.
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if (loc.is_inst_id) {
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cursor_inst_id = loc.inst_id;
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} else {
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if (auto diag_loc = handle_loc(loc.loc_id)) {
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return *diag_loc;
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}
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CARBON_CHECK(cursor_inst_id.is_valid(), "Should have been set");
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}
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while (true) {
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if (cursor_inst_id.is_valid()) {
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auto cursor_inst = cursor_ir->insts().Get(cursor_inst_id);
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if (auto bind_ref = cursor_inst.TryAs<SemIR::ExportDecl>();
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bind_ref && bind_ref->value_id.is_valid()) {
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cursor_inst_id = bind_ref->value_id;
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continue;
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}
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// If the parse node is valid, use it for the location.
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if (auto loc_id = cursor_ir->insts().GetLocId(cursor_inst_id);
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loc_id.is_valid()) {
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if (auto diag_loc = handle_loc(loc_id)) {
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return *diag_loc;
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}
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continue;
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}
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// If a namespace has an instruction for an import, switch to looking at
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// it.
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if (auto ns = cursor_inst.TryAs<SemIR::Namespace>()) {
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if (ns->import_id.is_valid()) {
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cursor_inst_id = ns->import_id;
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continue;
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}
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}
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}
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// Invalid parse node but not an import; just nothing to point at.
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return ConvertLocInFile(cursor_ir, Parse::NodeId::Invalid, loc.token_only,
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context_fn);
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}
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}
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auto SemIRDiagnosticConverter::ConvertArg(llvm::Any arg) const -> llvm::Any {
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if (auto* library_name_id = llvm::any_cast<SemIR::LibraryNameId>(&arg)) {
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std::string library_name;
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if (*library_name_id == SemIR::LibraryNameId::Default) {
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library_name = "default library";
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} else if (!library_name_id->is_valid()) {
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library_name = "library <invalid>";
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} else {
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llvm::raw_string_ostream stream(library_name);
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stream << "library \"";
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stream << sem_ir_->string_literal_values().Get(
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library_name_id->AsStringLiteralValueId());
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stream << "\"";
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}
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return library_name;
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}
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if (auto* name_id = llvm::any_cast<SemIR::NameId>(&arg)) {
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return sem_ir_->names().GetFormatted(*name_id).str();
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}
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if (auto* type_of_expr = llvm::any_cast<TypeOfInstId>(&arg)) {
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if (!type_of_expr->inst_id.is_valid()) {
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return "<none>";
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}
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// TODO: Where possible, produce a better description of the type based on
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// the expression.
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return "`" +
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StringifyTypeExpr(
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*sem_ir_,
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sem_ir_->types().GetInstId(
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sem_ir_->insts().Get(type_of_expr->inst_id).type_id())) +
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"`";
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}
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if (auto* type_expr = llvm::any_cast<InstIdAsType>(&arg)) {
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return "`" + StringifyTypeExpr(*sem_ir_, type_expr->inst_id) + "`";
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}
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if (auto* type_expr = llvm::any_cast<InstIdAsRawType>(&arg)) {
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return StringifyTypeExpr(*sem_ir_, type_expr->inst_id);
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}
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if (auto* type = llvm::any_cast<TypeIdAsRawType>(&arg)) {
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return StringifyTypeExpr(*sem_ir_,
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sem_ir_->types().GetInstId(type->type_id));
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}
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if (auto* type_id = llvm::any_cast<SemIR::TypeId>(&arg)) {
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return "`" +
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StringifyTypeExpr(*sem_ir_, sem_ir_->types().GetInstId(*type_id)) +
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"`";
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}
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if (auto* typed_int = llvm::any_cast<TypedInt>(&arg)) {
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return llvm::APSInt(typed_int->value,
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!sem_ir_->types().IsSignedInt(typed_int->type));
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}
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return DiagnosticConverter<SemIRLoc>::ConvertArg(arg);
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}
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auto SemIRDiagnosticConverter::ConvertLocInFile(const SemIR::File* sem_ir,
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Parse::NodeId node_id,
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bool token_only,
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ContextFnT context_fn) const
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-> DiagnosticLoc {
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return node_converters_[sem_ir->check_ir_id().index]->ConvertLoc(
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Parse::NodeLoc(node_id, token_only), context_fn);
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}
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} // namespace Carbon::Check
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