mirror of
https://github.com/carbon-language/carbon-lang.git
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This change implements the check behavior for the arrow operator. `ptr->Foo()` is rewritten as `(*ptr).Foo()` and `ptr->(X.y)` is rewritten as `(*ptr).(X.y)`
400 lines
15 KiB
C++
400 lines
15 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/context.h"
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#include "toolchain/check/convert.h"
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#include "toolchain/check/pointer_dereference.h"
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#include "toolchain/diagnostics/diagnostic_emitter.h"
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namespace Carbon::Check {
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auto HandleInfixOperatorAmp(Context& context, Parse::InfixOperatorAmpId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorAmp");
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}
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auto HandleInfixOperatorAmpEqual(Context& context,
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Parse::InfixOperatorAmpEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorAmpEqual");
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}
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auto HandleInfixOperatorAs(Context& context, Parse::InfixOperatorAsId node_id)
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-> bool {
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auto [rhs_node, rhs_id] = context.node_stack().PopExprWithNodeId();
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auto [lhs_node, lhs_id] = context.node_stack().PopExprWithNodeId();
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auto rhs_type_id = ExprAsType(context, rhs_node, rhs_id);
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context.node_stack().Push(
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node_id, ConvertForExplicitAs(context, node_id, lhs_id, rhs_type_id));
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return true;
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}
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auto HandleInfixOperatorCaret(Context& context,
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Parse::InfixOperatorCaretId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorCaret");
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}
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auto HandleInfixOperatorCaretEqual(Context& context,
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Parse::InfixOperatorCaretEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorCaretEqual");
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}
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auto HandleInfixOperatorEqual(Context& context,
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Parse::InfixOperatorEqualId node_id) -> bool {
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auto [rhs_node, rhs_id] = context.node_stack().PopExprWithNodeId();
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auto [lhs_node, lhs_id] = context.node_stack().PopExprWithNodeId();
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// TODO: handle complex assignment expression such as `a += 1`.
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if (auto lhs_cat = SemIR::GetExprCategory(context.sem_ir(), lhs_id);
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lhs_cat != SemIR::ExprCategory::DurableRef &&
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lhs_cat != SemIR::ExprCategory::Error) {
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CARBON_DIAGNOSTIC(AssignmentToNonAssignable, Error,
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"Expression is not assignable.");
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context.emitter().Emit(lhs_node, AssignmentToNonAssignable);
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}
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// TODO: Destroy the old value before reinitializing. This will require
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// building the destruction code before we build the RHS subexpression.
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rhs_id = Initialize(context, node_id, lhs_id, rhs_id);
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context.AddInst({node_id, SemIR::Assign{lhs_id, rhs_id}});
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// We model assignment as an expression, so we need to push a value for
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// it, even though it doesn't produce a value.
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// TODO: Consider changing our parse tree to model assignment as a
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// different kind of statement than an expression statement.
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context.node_stack().Push(node_id, lhs_id);
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return true;
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}
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auto HandleInfixOperatorEqualEqual(Context& context,
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Parse::InfixOperatorEqualEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorEqualEqual");
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}
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auto HandleInfixOperatorExclaimEqual(Context& context,
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Parse::InfixOperatorExclaimEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorExclaimEqual");
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}
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auto HandleInfixOperatorGreater(Context& context,
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Parse::InfixOperatorGreaterId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorGreater");
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}
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auto HandleInfixOperatorGreaterEqual(Context& context,
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Parse::InfixOperatorGreaterEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorGreaterEqual");
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}
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auto HandleInfixOperatorGreaterGreater(
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Context& context, Parse::InfixOperatorGreaterGreaterId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorGreaterGreater");
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}
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auto HandleInfixOperatorGreaterGreaterEqual(
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Context& context, Parse::InfixOperatorGreaterGreaterEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorGreaterGreaterEqual");
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}
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auto HandleInfixOperatorLess(Context& context,
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Parse::InfixOperatorLessId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorLess");
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}
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auto HandleInfixOperatorLessEqual(Context& context,
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Parse::InfixOperatorLessEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorLessEqual");
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}
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auto HandleInfixOperatorLessEqualGreater(
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Context& context, Parse::InfixOperatorLessEqualGreaterId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorLessEqualGreater");
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}
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auto HandleInfixOperatorLessLess(Context& context,
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Parse::InfixOperatorLessLessId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorLessLess");
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}
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auto HandleInfixOperatorLessLessEqual(
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Context& context, Parse::InfixOperatorLessLessEqualId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorLessLessEqual");
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}
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auto HandleInfixOperatorMinus(Context& context,
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Parse::InfixOperatorMinusId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorMinus");
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}
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auto HandleInfixOperatorMinusEqual(Context& context,
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Parse::InfixOperatorMinusEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorMinusEqual");
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}
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auto HandleInfixOperatorPercent(Context& context,
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Parse::InfixOperatorPercentId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorPercent");
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}
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auto HandleInfixOperatorPercentEqual(Context& context,
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Parse::InfixOperatorPercentEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorPercentEqual");
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}
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auto HandleInfixOperatorPipe(Context& context,
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Parse::InfixOperatorPipeId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorPipe");
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}
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auto HandleInfixOperatorPipeEqual(Context& context,
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Parse::InfixOperatorPipeEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorPipeEqual");
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}
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auto HandleInfixOperatorPlus(Context& context,
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Parse::InfixOperatorPlusId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorPlus");
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}
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auto HandleInfixOperatorPlusEqual(Context& context,
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Parse::InfixOperatorPlusEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorPlusEqual");
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}
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auto HandleInfixOperatorSlash(Context& context,
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Parse::InfixOperatorSlashId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorSlash");
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}
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auto HandleInfixOperatorSlashEqual(Context& context,
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Parse::InfixOperatorSlashEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorSlashEqual");
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}
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auto HandleInfixOperatorStar(Context& context,
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Parse::InfixOperatorStarId node_id) -> bool {
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return context.TODO(node_id, "HandleInfixOperatorStar");
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}
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auto HandleInfixOperatorStarEqual(Context& context,
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Parse::InfixOperatorStarEqualId node_id)
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-> bool {
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return context.TODO(node_id, "HandleInfixOperatorStarEqual");
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}
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auto HandlePostfixOperatorStar(Context& context,
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Parse::PostfixOperatorStarId node_id) -> bool {
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auto value_id = context.node_stack().PopExpr();
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auto inner_type_id = ExprAsType(context, node_id, value_id);
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context.AddInstAndPush(
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{node_id, SemIR::PointerType{SemIR::TypeId::TypeType, inner_type_id}});
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return true;
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}
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auto HandlePrefixOperatorAmp(Context& context,
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Parse::PrefixOperatorAmpId node_id) -> bool {
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auto value_id = context.node_stack().PopExpr();
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auto type_id = context.insts().Get(value_id).type_id();
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// Only durable reference expressions can have their address taken.
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switch (SemIR::GetExprCategory(context.sem_ir(), value_id)) {
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case SemIR::ExprCategory::DurableRef:
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case SemIR::ExprCategory::Error:
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break;
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case SemIR::ExprCategory::EphemeralRef:
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CARBON_DIAGNOSTIC(AddrOfEphemeralRef, Error,
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"Cannot take the address of a temporary object.");
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context.emitter().Emit(TokenOnly(node_id), AddrOfEphemeralRef);
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value_id = SemIR::InstId::BuiltinError;
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break;
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default:
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CARBON_DIAGNOSTIC(AddrOfNonRef, Error,
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"Cannot take the address of non-reference expression.");
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context.emitter().Emit(TokenOnly(node_id), AddrOfNonRef);
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value_id = SemIR::InstId::BuiltinError;
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break;
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}
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context.AddInstAndPush(
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{node_id, SemIR::AddrOf{context.GetPointerType(type_id), value_id}});
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return true;
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}
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auto HandlePrefixOperatorCaret(Context& context,
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Parse::PrefixOperatorCaretId node_id) -> bool {
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return context.TODO(node_id, "HandlePrefixOperatorCaret");
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}
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auto HandlePrefixOperatorConst(Context& context,
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Parse::PrefixOperatorConstId node_id) -> bool {
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auto value_id = context.node_stack().PopExpr();
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// `const (const T)` is probably not what the developer intended.
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// TODO: Detect `const (const T)*` and suggest moving the `*` inside the
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// parentheses.
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if (context.insts().Get(value_id).kind() == SemIR::ConstType::Kind) {
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CARBON_DIAGNOSTIC(RepeatedConst, Warning,
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"`const` applied repeatedly to the same type has no "
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"additional effect.");
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context.emitter().Emit(node_id, RepeatedConst);
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}
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auto inner_type_id = ExprAsType(context, node_id, value_id);
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context.AddInstAndPush(
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{node_id, SemIR::ConstType{SemIR::TypeId::TypeType, inner_type_id}});
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return true;
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}
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auto HandlePrefixOperatorMinus(Context& context,
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Parse::PrefixOperatorMinusId node_id) -> bool {
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return context.TODO(node_id, "HandlePrefixOperatorMinus");
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}
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auto HandlePrefixOperatorMinusMinus(Context& context,
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Parse::PrefixOperatorMinusMinusId node_id)
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-> bool {
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return context.TODO(node_id, "HandlePrefixOperatorMinusMinus");
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}
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auto HandlePrefixOperatorNot(Context& context,
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Parse::PrefixOperatorNotId node_id) -> bool {
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auto value_id = context.node_stack().PopExpr();
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value_id = ConvertToBoolValue(context, node_id, value_id);
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context.AddInstAndPush(
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{node_id, SemIR::UnaryOperatorNot{context.insts().Get(value_id).type_id(),
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value_id}});
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return true;
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}
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auto HandlePrefixOperatorPlusPlus(Context& context,
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Parse::PrefixOperatorPlusPlusId node_id)
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-> bool {
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return context.TODO(node_id, "HandlePrefixOperatorPlusPlus");
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}
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auto HandlePrefixOperatorStar(Context& context,
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Parse::PrefixOperatorStarId node_id) -> bool {
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auto base_id = context.node_stack().PopExpr();
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auto deref_base_id = PerformPointerDereference(
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context, node_id, base_id,
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[&context, &node_id](SemIR::TypeId not_pointer_type_id) {
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CARBON_DIAGNOSTIC(
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DerefOfNonPointer, Error,
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"Cannot dereference operand of non-pointer type `{0}`.",
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SemIR::TypeId);
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auto builder = context.emitter().Build(
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TokenOnly(node_id), DerefOfNonPointer, not_pointer_type_id);
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// TODO: Check for any facet here, rather than only a type.
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if (not_pointer_type_id == SemIR::TypeId::TypeType) {
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CARBON_DIAGNOSTIC(
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DerefOfType, Note,
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"To form a pointer type, write the `*` after the pointee type.");
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builder.Note(TokenOnly(node_id), DerefOfType);
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}
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builder.Emit();
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});
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context.node_stack().Push(node_id, deref_base_id);
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return true;
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}
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// Adds the branch for a short circuit operand.
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static auto HandleShortCircuitOperand(Context& context, Parse::NodeId node_id,
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bool is_or) -> bool {
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// Convert the condition to `bool`.
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auto cond_value_id = context.node_stack().PopExpr();
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cond_value_id = ConvertToBoolValue(context, node_id, cond_value_id);
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auto bool_type_id = context.insts().Get(cond_value_id).type_id();
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// Compute the branch value: the condition for `and`, inverted for `or`.
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SemIR::InstId branch_value_id =
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is_or ? context.AddInst({node_id, SemIR::UnaryOperatorNot{bool_type_id,
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cond_value_id}})
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: cond_value_id;
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auto short_circuit_result_id = context.AddInst(
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{node_id,
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SemIR::BoolLiteral{bool_type_id, is_or ? SemIR::BoolValue::True
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: SemIR::BoolValue::False}});
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// Create a block for the right-hand side and for the continuation.
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auto rhs_block_id =
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context.AddDominatedBlockAndBranchIf(node_id, branch_value_id);
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auto end_block_id = context.AddDominatedBlockAndBranchWithArg(
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node_id, short_circuit_result_id);
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// Push the resumption and the right-hand side blocks, and start emitting the
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// right-hand operand.
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context.inst_block_stack().Pop();
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context.inst_block_stack().Push(end_block_id);
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context.inst_block_stack().Push(rhs_block_id);
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context.AddCurrentCodeBlockToFunction(node_id);
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// HandleShortCircuitOperator will follow, and doesn't need the operand on the
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// node stack.
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return true;
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}
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auto HandleShortCircuitOperandAnd(Context& context,
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Parse::ShortCircuitOperandAndId node_id)
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-> bool {
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return HandleShortCircuitOperand(context, node_id, /*is_or=*/false);
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}
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auto HandleShortCircuitOperandOr(Context& context,
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Parse::ShortCircuitOperandOrId node_id)
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-> bool {
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return HandleShortCircuitOperand(context, node_id, /*is_or=*/true);
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}
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// Short circuit operator handling is uniform because the branching logic
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// occurs during operand handling.
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static auto HandleShortCircuitOperator(Context& context, Parse::NodeId node_id)
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-> bool {
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auto [rhs_node, rhs_id] = context.node_stack().PopExprWithNodeId();
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// The first operand is wrapped in a ShortCircuitOperand, which we
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// already handled by creating a RHS block and a resumption block, which
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// are the current block and its enclosing block.
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rhs_id = ConvertToBoolValue(context, node_id, rhs_id);
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// When the second operand is evaluated, the result of `and` and `or` is
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// its value.
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auto resume_block_id = context.inst_block_stack().PeekOrAdd(/*depth=*/1);
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context.AddInst({node_id, SemIR::BranchWithArg{resume_block_id, rhs_id}});
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context.inst_block_stack().Pop();
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context.AddCurrentCodeBlockToFunction(node_id);
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// Collect the result from either the first or second operand.
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context.AddInstAndPush(
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{node_id, SemIR::BlockArg{context.insts().Get(rhs_id).type_id(),
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resume_block_id}});
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return true;
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}
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auto HandleShortCircuitOperatorAnd(Context& context,
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Parse::ShortCircuitOperatorAndId node_id)
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-> bool {
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return HandleShortCircuitOperator(context, node_id);
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}
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auto HandleShortCircuitOperatorOr(Context& context,
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Parse::ShortCircuitOperatorOrId node_id)
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-> bool {
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return HandleShortCircuitOperator(context, node_id);
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}
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} // namespace Carbon::Check
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