Files
carbon-lang/toolchain/check/return.cpp
T
Jon Ross-Perkins 422cc3d48a Move diagnostic usings off Context (#5007)
There aren't remaining uses on `Context` other than `DiagnosticEmitter`
itself. I'm adding `SemIRLoc` because I feel odd about having both
`Carbon::Check::DiagnosticBuilder` and
`Carbon::DiagnosticEmitter<T>::DiagnosticBuilder`, but it seems
relatively little additional typing outside the handful of
`DiagnosticEmitter` uses on `Context` itself:

```
Context::DiagnosticEmitter
DiagnosticEmitter<SemIRLoc>

Context::DiagnosticBuilder
SemIRLocDiagnosticBuilder

Context::BuildDiagnosticFn
BuildSemIRLocDiagnosticFn
```

Also clean up #include's while I'm finishing here.
2025-02-26 18:44:36 +00:00

202 lines
8.1 KiB
C++

// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
// Exceptions. See /LICENSE for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
#include "toolchain/check/return.h"
#include "toolchain/check/context.h"
#include "toolchain/check/convert.h"
#include "toolchain/check/inst.h"
namespace Carbon::Check {
// Gets the function that lexically encloses the current location.
auto GetCurrentFunctionForReturn(Context& context) -> SemIR::Function& {
CARBON_CHECK(!context.return_scope_stack().empty(),
"Handling return but not in a function");
auto function_id = context.insts()
.GetAs<SemIR::FunctionDecl>(
context.return_scope_stack().back().decl_id)
.function_id;
return context.functions().Get(function_id);
}
auto GetCurrentReturnSlot(Context& context) -> SemIR::InstId {
// TODO: this does some unnecessary work to compute non-lexical scopes,
// so a separate API on ScopeStack could be more efficient.
auto return_slot_id = context.scope_stack()
.LookupInLexicalScopes(SemIR::NameId::ReturnSlot)
.first;
return return_slot_id;
}
// Gets the currently in scope `returned var`, if any, that would be returned
// by a `return var;`.
static auto GetCurrentReturnedVar(Context& context) -> SemIR::InstId {
CARBON_CHECK(!context.return_scope_stack().empty(),
"Handling return but not in a function");
return context.return_scope_stack().back().returned_var;
}
// Produces a note that the given function has no explicit return type.
static auto NoteNoReturnTypeProvided(DiagnosticBuilder& diag,
const SemIR::Function& function) {
CARBON_DIAGNOSTIC(ReturnTypeOmittedNote, Note,
"there was no return type provided");
diag.Note(function.latest_decl_id(), ReturnTypeOmittedNote);
}
// Produces a note describing the return type of the given function, which
// must be a function whose definition is currently being checked.
static auto NoteReturnType(Context& context, DiagnosticBuilder& diag,
const SemIR::Function& function) {
auto out_param_pattern = context.insts().GetAs<SemIR::OutParamPattern>(
function.return_slot_pattern_id);
auto return_type_inst_id =
context.insts()
.GetAs<SemIR::ReturnSlotPattern>(out_param_pattern.subpattern_id)
.type_inst_id;
CARBON_DIAGNOSTIC(ReturnTypeHereNote, Note, "return type of function is {0}",
InstIdAsType);
diag.Note(function.return_slot_pattern_id, ReturnTypeHereNote,
return_type_inst_id);
}
// Produces a note pointing at the currently in scope `returned var`.
static auto NoteReturnedVar(DiagnosticBuilder& diag,
SemIR::InstId returned_var_id) {
CARBON_DIAGNOSTIC(ReturnedVarHere, Note, "`returned var` was declared here");
diag.Note(returned_var_id, ReturnedVarHere);
}
auto RegisterReturnedVar(Context& context, Parse::NodeId returned_node,
Parse::NodeId type_node, SemIR::TypeId type_id,
SemIR::InstId bind_id) -> void {
auto& function = GetCurrentFunctionForReturn(context);
auto return_info =
SemIR::ReturnTypeInfo::ForFunction(context.sem_ir(), function);
if (!return_info.is_valid()) {
// We already diagnosed this when we started defining the function.
return;
}
// A `returned var` requires an explicit return type.
if (!return_info.type_id.has_value()) {
CARBON_DIAGNOSTIC(ReturnedVarWithNoReturnType, Error,
"cannot declare a `returned var` in this function");
auto diag =
context.emitter().Build(returned_node, ReturnedVarWithNoReturnType);
NoteNoReturnTypeProvided(diag, function);
diag.Emit();
return;
}
// The declared type of the var must match the return type of the function.
if (return_info.type_id != type_id) {
CARBON_DIAGNOSTIC(ReturnedVarWrongType, Error,
"type {0} of `returned var` does not match "
"return type of enclosing function",
SemIR::TypeId);
auto diag =
context.emitter().Build(type_node, ReturnedVarWrongType, type_id);
NoteReturnType(context, diag, function);
diag.Emit();
}
auto existing_id = context.scope_stack().SetReturnedVarOrGetExisting(bind_id);
if (existing_id.has_value()) {
CARBON_DIAGNOSTIC(ReturnedVarShadowed, Error,
"cannot declare a `returned var` in the scope of "
"another `returned var`");
auto diag = context.emitter().Build(bind_id, ReturnedVarShadowed);
NoteReturnedVar(diag, existing_id);
diag.Emit();
}
}
auto BuildReturnWithNoExpr(Context& context, Parse::ReturnStatementId node_id)
-> void {
const auto& function = GetCurrentFunctionForReturn(context);
auto return_type_id = function.GetDeclaredReturnType(context.sem_ir());
if (return_type_id.has_value()) {
CARBON_DIAGNOSTIC(ReturnStatementMissingExpr, Error,
"missing return value");
auto diag = context.emitter().Build(node_id, ReturnStatementMissingExpr);
NoteReturnType(context, diag, function);
diag.Emit();
}
AddInst<SemIR::Return>(context, node_id, {});
}
auto BuildReturnWithExpr(Context& context, Parse::ReturnStatementId node_id,
SemIR::InstId expr_id) -> void {
const auto& function = GetCurrentFunctionForReturn(context);
auto returned_var_id = GetCurrentReturnedVar(context);
auto return_slot_id = SemIR::InstId::None;
auto return_info =
SemIR::ReturnTypeInfo::ForFunction(context.sem_ir(), function);
if (!return_info.type_id.has_value()) {
CARBON_DIAGNOSTIC(
ReturnStatementDisallowExpr, Error,
"no return expression should be provided in this context");
auto diag = context.emitter().Build(node_id, ReturnStatementDisallowExpr);
NoteNoReturnTypeProvided(diag, function);
diag.Emit();
expr_id = SemIR::ErrorInst::SingletonInstId;
} else if (returned_var_id.has_value()) {
CARBON_DIAGNOSTIC(
ReturnExprWithReturnedVar, Error,
"can only `return var;` in the scope of a `returned var`");
auto diag = context.emitter().Build(node_id, ReturnExprWithReturnedVar);
NoteReturnedVar(diag, returned_var_id);
diag.Emit();
expr_id = SemIR::ErrorInst::SingletonInstId;
} else if (!return_info.is_valid()) {
// We already diagnosed that the return type is invalid. Don't try to
// convert to it.
expr_id = SemIR::ErrorInst::SingletonInstId;
} else if (return_info.has_return_slot()) {
return_slot_id = GetCurrentReturnSlot(context);
CARBON_CHECK(return_slot_id.has_value());
// Note that this can import a function and invalidate `function`.
expr_id = Initialize(context, node_id, return_slot_id, expr_id);
} else {
expr_id =
ConvertToValueOfType(context, node_id, expr_id, return_info.type_id);
}
AddInst<SemIR::ReturnExpr>(context, node_id,
{.expr_id = expr_id, .dest_id = return_slot_id});
}
auto BuildReturnVar(Context& context, Parse::ReturnStatementId node_id)
-> void {
const auto& function = GetCurrentFunctionForReturn(context);
auto returned_var_id = GetCurrentReturnedVar(context);
if (!returned_var_id.has_value()) {
CARBON_DIAGNOSTIC(ReturnVarWithNoReturnedVar, Error,
"`return var;` with no `returned var` in scope");
context.emitter().Emit(node_id, ReturnVarWithNoReturnedVar);
returned_var_id = SemIR::ErrorInst::SingletonInstId;
}
auto return_slot_id = GetCurrentReturnSlot(context);
if (!SemIR::ReturnTypeInfo::ForFunction(context.sem_ir(), function)
.has_return_slot()) {
// If we don't have a return slot, we're returning by value. Convert to a
// value expression.
returned_var_id = ConvertToValueExpr(context, returned_var_id);
return_slot_id = SemIR::InstId::None;
}
AddInst<SemIR::ReturnExpr>(
context, node_id,
{.expr_id = returned_var_id, .dest_id = return_slot_id});
}
} // namespace Carbon::Check