ValueObject is part of lldbCore for historical reasons, but conceptually
it deserves to be its own library. This does introduce a (link-time) circular
dependency between lldbCore and lldbValueObject, which is unfortunate
but probably unavoidable because so many things in LLDB rely on
ValueObject. We already have cycles and these libraries are never built
as dylibs so while this doesn't improve the situation, it also doesn't
make things worse.
The header includes were updated with the following command:
```
find . -type f -exec sed -i.bak "s%include \"lldb/Core/ValueObject%include \"lldb/ValueObject/ValueObject%" '{}' \;
```
184 lines
5.5 KiB
C++
184 lines
5.5 KiB
C++
//===-- LibStdcppUniquePointer.cpp ----------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "LibStdcpp.h"
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#include "lldb/DataFormatters/FormattersHelpers.h"
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#include "lldb/DataFormatters/TypeSynthetic.h"
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#include "lldb/Utility/ConstString.h"
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#include "lldb/ValueObject/ValueObject.h"
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#include <memory>
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#include <vector>
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using namespace lldb;
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using namespace lldb_private;
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using namespace lldb_private::formatters;
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namespace {
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class LibStdcppUniquePtrSyntheticFrontEnd : public SyntheticChildrenFrontEnd {
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public:
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explicit LibStdcppUniquePtrSyntheticFrontEnd(lldb::ValueObjectSP valobj_sp);
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llvm::Expected<uint32_t> CalculateNumChildren() override;
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lldb::ValueObjectSP GetChildAtIndex(uint32_t idx) override;
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lldb::ChildCacheState Update() override;
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bool MightHaveChildren() override;
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size_t GetIndexOfChildWithName(ConstString name) override;
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bool GetSummary(Stream &stream, const TypeSummaryOptions &options);
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private:
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// The lifetime of a ValueObject and all its derivative ValueObjects
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// (children, clones, etc.) is managed by a ClusterManager. These
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// objects are only destroyed when every shared pointer to any of them
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// is destroyed, so we must not store a shared pointer to any ValueObject
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// derived from our backend ValueObject (since we're in the same cluster).
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ValueObject* m_ptr_obj = nullptr;
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ValueObject* m_obj_obj = nullptr;
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ValueObject* m_del_obj = nullptr;
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ValueObjectSP GetTuple();
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};
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} // end of anonymous namespace
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LibStdcppUniquePtrSyntheticFrontEnd::LibStdcppUniquePtrSyntheticFrontEnd(
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lldb::ValueObjectSP valobj_sp)
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: SyntheticChildrenFrontEnd(*valobj_sp) {
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Update();
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}
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ValueObjectSP LibStdcppUniquePtrSyntheticFrontEnd::GetTuple() {
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ValueObjectSP valobj_backend_sp = m_backend.GetSP();
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if (!valobj_backend_sp)
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return nullptr;
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ValueObjectSP valobj_sp = valobj_backend_sp->GetNonSyntheticValue();
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if (!valobj_sp)
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return nullptr;
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ValueObjectSP obj_child_sp = valobj_sp->GetChildMemberWithName("_M_t");
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if (!obj_child_sp)
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return nullptr;
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ValueObjectSP obj_subchild_sp = obj_child_sp->GetChildMemberWithName("_M_t");
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// if there is a _M_t subchild, the tuple is found in the obj_subchild_sp
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// (for libstdc++ 6.0.23).
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if (obj_subchild_sp) {
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return obj_subchild_sp;
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}
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return obj_child_sp;
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}
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lldb::ChildCacheState LibStdcppUniquePtrSyntheticFrontEnd::Update() {
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ValueObjectSP tuple_sp = GetTuple();
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if (!tuple_sp)
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return lldb::ChildCacheState::eRefetch;
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std::unique_ptr<SyntheticChildrenFrontEnd> tuple_frontend(
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LibStdcppTupleSyntheticFrontEndCreator(nullptr, tuple_sp));
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ValueObjectSP ptr_obj = tuple_frontend->GetChildAtIndex(0);
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if (ptr_obj)
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m_ptr_obj = ptr_obj->Clone(ConstString("pointer")).get();
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// Add a 'deleter' child if there was a non-empty deleter type specified.
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//
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// The object might have size=1 in the TypeSystem but occupies no dedicated
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// storage due to no_unique_address, so infer the actual size from the total
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// size of the unique_ptr class. If sizeof(unique_ptr) == sizeof(void*) then
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// the deleter is empty and should be hidden.
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if (tuple_sp->GetByteSize() > ptr_obj->GetByteSize()) {
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ValueObjectSP del_obj = tuple_frontend->GetChildAtIndex(1);
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if (del_obj)
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m_del_obj = del_obj->Clone(ConstString("deleter")).get();
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}
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m_obj_obj = nullptr;
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return lldb::ChildCacheState::eRefetch;
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}
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bool LibStdcppUniquePtrSyntheticFrontEnd::MightHaveChildren() { return true; }
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lldb::ValueObjectSP
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LibStdcppUniquePtrSyntheticFrontEnd::GetChildAtIndex(uint32_t idx) {
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if (idx == 0 && m_ptr_obj)
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return m_ptr_obj->GetSP();
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if (idx == 1 && m_del_obj)
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return m_del_obj->GetSP();
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if (idx == 2) {
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if (m_ptr_obj && !m_obj_obj) {
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Status error;
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ValueObjectSP obj_obj = m_ptr_obj->Dereference(error);
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if (error.Success()) {
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m_obj_obj = obj_obj->Clone(ConstString("object")).get();
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}
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}
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if (m_obj_obj)
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return m_obj_obj->GetSP();
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}
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return lldb::ValueObjectSP();
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}
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llvm::Expected<uint32_t>
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LibStdcppUniquePtrSyntheticFrontEnd::CalculateNumChildren() {
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if (m_del_obj)
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return 2;
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return 1;
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}
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size_t LibStdcppUniquePtrSyntheticFrontEnd::GetIndexOfChildWithName(
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ConstString name) {
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if (name == "ptr" || name == "pointer")
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return 0;
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if (name == "del" || name == "deleter")
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return 1;
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if (name == "obj" || name == "object" || name == "$$dereference$$")
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return 2;
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return UINT32_MAX;
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}
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bool LibStdcppUniquePtrSyntheticFrontEnd::GetSummary(
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Stream &stream, const TypeSummaryOptions &options) {
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if (!m_ptr_obj)
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return false;
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bool success;
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uint64_t ptr_value = m_ptr_obj->GetValueAsUnsigned(0, &success);
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if (!success)
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return false;
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if (ptr_value == 0)
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stream.Printf("nullptr");
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else
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stream.Printf("0x%" PRIx64, ptr_value);
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return true;
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}
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SyntheticChildrenFrontEnd *
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lldb_private::formatters::LibStdcppUniquePtrSyntheticFrontEndCreator(
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CXXSyntheticChildren *, lldb::ValueObjectSP valobj_sp) {
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return (valobj_sp ? new LibStdcppUniquePtrSyntheticFrontEnd(valobj_sp)
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: nullptr);
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}
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bool lldb_private::formatters::LibStdcppUniquePointerSummaryProvider(
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ValueObject &valobj, Stream &stream, const TypeSummaryOptions &options) {
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LibStdcppUniquePtrSyntheticFrontEnd formatter(valobj.GetSP());
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return formatter.GetSummary(stream, options);
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}
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