706 lines
27 KiB
C++
706 lines
27 KiB
C++
//===-- ItaniumABILanguageRuntime.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 "ItaniumABILanguageRuntime.h"
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#include "Plugins/TypeSystem/Clang/TypeSystemClang.h"
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#include "lldb/Breakpoint/BreakpointLocation.h"
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#include "lldb/Core/Mangled.h"
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#include "lldb/Core/Module.h"
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#include "lldb/Core/PluginManager.h"
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#include "lldb/Core/ValueObject.h"
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#include "lldb/Core/ValueObjectMemory.h"
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#include "lldb/DataFormatters/FormattersHelpers.h"
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#include "lldb/Expression/DiagnosticManager.h"
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#include "lldb/Expression/FunctionCaller.h"
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#include "lldb/Interpreter/CommandObject.h"
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#include "lldb/Interpreter/CommandObjectMultiword.h"
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#include "lldb/Interpreter/CommandReturnObject.h"
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#include "lldb/Symbol/Symbol.h"
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#include "lldb/Symbol/SymbolFile.h"
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#include "lldb/Symbol/TypeList.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Target/RegisterContext.h"
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#include "lldb/Target/SectionLoadList.h"
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#include "lldb/Target/StopInfo.h"
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#include "lldb/Target/Target.h"
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#include "lldb/Target/Thread.h"
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#include "lldb/Utility/ConstString.h"
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#include "lldb/Utility/LLDBLog.h"
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#include "lldb/Utility/Log.h"
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#include "lldb/Utility/Scalar.h"
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#include "lldb/Utility/Status.h"
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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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LLDB_PLUGIN_DEFINE_ADV(ItaniumABILanguageRuntime, CXXItaniumABI)
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static const char *vtable_demangled_prefix = "vtable for ";
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char ItaniumABILanguageRuntime::ID = 0;
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bool ItaniumABILanguageRuntime::CouldHaveDynamicValue(ValueObject &in_value) {
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const bool check_cxx = true;
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const bool check_objc = false;
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return in_value.GetCompilerType().IsPossibleDynamicType(nullptr, check_cxx,
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check_objc);
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}
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TypeAndOrName ItaniumABILanguageRuntime::GetTypeInfo(
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ValueObject &in_value, const VTableInfo &vtable_info) {
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if (vtable_info.addr.IsSectionOffset()) {
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// See if we have cached info for this type already
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TypeAndOrName type_info = GetDynamicTypeInfo(vtable_info.addr);
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if (type_info)
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return type_info;
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if (vtable_info.symbol) {
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Log *log = GetLog(LLDBLog::Object);
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llvm::StringRef symbol_name =
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vtable_info.symbol->GetMangled().GetDemangledName().GetStringRef();
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LLDB_LOGF(log,
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"0x%16.16" PRIx64
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": static-type = '%s' has vtable symbol '%s'\n",
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in_value.GetPointerValue(),
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in_value.GetTypeName().GetCString(),
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symbol_name.str().c_str());
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// We are a C++ class, that's good. Get the class name and look it
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// up:
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llvm::StringRef class_name = symbol_name;
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class_name.consume_front(vtable_demangled_prefix);
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// We know the class name is absolute, so tell FindTypes that by
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// prefixing it with the root namespace:
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std::string lookup_name("::");
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lookup_name.append(class_name.data(), class_name.size());
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type_info.SetName(class_name);
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ConstString const_lookup_name(lookup_name);
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TypeList class_types;
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ModuleSP module_sp = vtable_info.symbol->CalculateSymbolContextModule();
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// First look in the module that the vtable symbol came from and
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// look for a single exact match.
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TypeResults results;
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TypeQuery query(const_lookup_name.GetStringRef(),
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TypeQueryOptions::e_exact_match |
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TypeQueryOptions::e_find_one);
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if (module_sp) {
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module_sp->FindTypes(query, results);
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TypeSP type_sp = results.GetFirstType();
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if (type_sp)
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class_types.Insert(type_sp);
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}
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// If we didn't find a symbol, then move on to the entire module
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// list in the target and get as many unique matches as possible
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if (class_types.Empty()) {
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query.SetFindOne(false);
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m_process->GetTarget().GetImages().FindTypes(nullptr, query, results);
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for (const auto &type_sp : results.GetTypeMap().Types())
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class_types.Insert(type_sp);
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}
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lldb::TypeSP type_sp;
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if (class_types.Empty()) {
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LLDB_LOGF(log, "0x%16.16" PRIx64 ": is not dynamic\n",
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in_value.GetPointerValue());
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return TypeAndOrName();
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}
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if (class_types.GetSize() == 1) {
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type_sp = class_types.GetTypeAtIndex(0);
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if (type_sp) {
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if (TypeSystemClang::IsCXXClassType(
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type_sp->GetForwardCompilerType())) {
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LLDB_LOGF(
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log,
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"0x%16.16" PRIx64
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": static-type = '%s' has dynamic type: uid={0x%" PRIx64
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"}, type-name='%s'\n",
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in_value.GetPointerValue(), in_value.GetTypeName().AsCString(),
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type_sp->GetID(), type_sp->GetName().GetCString());
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type_info.SetTypeSP(type_sp);
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}
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}
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} else {
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size_t i;
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if (log) {
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for (i = 0; i < class_types.GetSize(); i++) {
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type_sp = class_types.GetTypeAtIndex(i);
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if (type_sp) {
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LLDB_LOGF(
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log,
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"0x%16.16" PRIx64
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": static-type = '%s' has multiple matching dynamic "
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"types: uid={0x%" PRIx64 "}, type-name='%s'\n",
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in_value.GetPointerValue(),
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in_value.GetTypeName().AsCString(),
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type_sp->GetID(), type_sp->GetName().GetCString());
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}
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}
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}
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for (i = 0; i < class_types.GetSize(); i++) {
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type_sp = class_types.GetTypeAtIndex(i);
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if (type_sp) {
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if (TypeSystemClang::IsCXXClassType(
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type_sp->GetForwardCompilerType())) {
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LLDB_LOGF(
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log,
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"0x%16.16" PRIx64 ": static-type = '%s' has multiple "
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"matching dynamic types, picking "
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"this one: uid={0x%" PRIx64 "}, type-name='%s'\n",
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in_value.GetPointerValue(),
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in_value.GetTypeName().AsCString(),
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type_sp->GetID(), type_sp->GetName().GetCString());
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type_info.SetTypeSP(type_sp);
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}
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}
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}
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if (log) {
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LLDB_LOGF(log,
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"0x%16.16" PRIx64
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": static-type = '%s' has multiple matching dynamic "
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"types, didn't find a C++ match\n",
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in_value.GetPointerValue(),
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in_value.GetTypeName().AsCString());
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}
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}
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if (type_info)
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SetDynamicTypeInfo(vtable_info.addr, type_info);
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return type_info;
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}
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}
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return TypeAndOrName();
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}
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llvm::Error ItaniumABILanguageRuntime::TypeHasVTable(CompilerType type) {
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// Check to make sure the class has a vtable.
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CompilerType original_type = type;
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if (type.IsPointerOrReferenceType()) {
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CompilerType pointee_type = type.GetPointeeType();
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if (pointee_type)
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type = pointee_type;
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}
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// Make sure this is a class or a struct first by checking the type class
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// bitfield that gets returned.
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if ((type.GetTypeClass() & (eTypeClassStruct | eTypeClassClass)) == 0) {
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return llvm::createStringError(std::errc::invalid_argument,
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"type \"%s\" is not a class or struct or a pointer to one",
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original_type.GetTypeName().AsCString("<invalid>"));
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}
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// Check if the type has virtual functions by asking it if it is polymorphic.
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if (!type.IsPolymorphicClass()) {
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return llvm::createStringError(std::errc::invalid_argument,
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"type \"%s\" doesn't have a vtable",
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type.GetTypeName().AsCString("<invalid>"));
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}
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return llvm::Error::success();
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}
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// This function can accept both pointers or references to classes as well as
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// instances of classes. If you are using this function during dynamic type
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// detection, only valid ValueObjects that return true to
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// CouldHaveDynamicValue(...) should call this function and \a check_type
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// should be set to false. This function is also used by ValueObjectVTable
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// and is can pass in instances of classes which is not suitable for dynamic
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// type detection, these cases should pass true for \a check_type.
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llvm::Expected<LanguageRuntime::VTableInfo>
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ItaniumABILanguageRuntime::GetVTableInfo(ValueObject &in_value,
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bool check_type) {
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CompilerType type = in_value.GetCompilerType();
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if (check_type) {
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if (llvm::Error err = TypeHasVTable(type))
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return std::move(err);
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}
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ExecutionContext exe_ctx(in_value.GetExecutionContextRef());
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Process *process = exe_ctx.GetProcessPtr();
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if (process == nullptr)
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return llvm::createStringError(std::errc::invalid_argument,
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"invalid process");
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AddressType address_type;
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lldb::addr_t original_ptr = LLDB_INVALID_ADDRESS;
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if (type.IsPointerOrReferenceType())
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original_ptr = in_value.GetPointerValue(&address_type);
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else
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original_ptr = in_value.GetAddressOf(/*scalar_is_load_address=*/true,
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&address_type);
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if (original_ptr == LLDB_INVALID_ADDRESS || address_type != eAddressTypeLoad)
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return llvm::createStringError(std::errc::invalid_argument,
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"failed to get the address of the value");
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Status error;
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lldb::addr_t vtable_load_addr =
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process->ReadPointerFromMemory(original_ptr, error);
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if (!error.Success() || vtable_load_addr == LLDB_INVALID_ADDRESS)
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return llvm::createStringError(std::errc::invalid_argument,
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"failed to read vtable pointer from memory at 0x%" PRIx64,
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original_ptr);
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// The vtable load address can have authentication bits with
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// AArch64 targets on Darwin.
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vtable_load_addr = process->FixDataAddress(vtable_load_addr);
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// Find the symbol that contains the "vtable_load_addr" address
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Address vtable_addr;
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if (!process->GetTarget().ResolveLoadAddress(vtable_load_addr, vtable_addr))
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return llvm::createStringError(std::errc::invalid_argument,
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"failed to resolve vtable pointer 0x%"
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PRIx64 "to a section", vtable_load_addr);
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// Check our cache first to see if we already have this info
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{
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std::lock_guard<std::mutex> locker(m_mutex);
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auto pos = m_vtable_info_map.find(vtable_addr);
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if (pos != m_vtable_info_map.end())
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return pos->second;
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}
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Symbol *symbol = vtable_addr.CalculateSymbolContextSymbol();
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if (symbol == nullptr)
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return llvm::createStringError(std::errc::invalid_argument,
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"no symbol found for 0x%" PRIx64,
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vtable_load_addr);
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llvm::StringRef name = symbol->GetMangled().GetDemangledName().GetStringRef();
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if (name.starts_with(vtable_demangled_prefix)) {
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VTableInfo info = {vtable_addr, symbol};
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std::lock_guard<std::mutex> locker(m_mutex);
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auto pos = m_vtable_info_map[vtable_addr] = info;
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return info;
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}
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return llvm::createStringError(std::errc::invalid_argument,
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"symbol found that contains 0x%" PRIx64 " is not a vtable symbol",
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vtable_load_addr);
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}
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bool ItaniumABILanguageRuntime::GetDynamicTypeAndAddress(
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ValueObject &in_value, lldb::DynamicValueType use_dynamic,
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TypeAndOrName &class_type_or_name, Address &dynamic_address,
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Value::ValueType &value_type) {
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// For Itanium, if the type has a vtable pointer in the object, it will be at
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// offset 0 in the object. That will point to the "address point" within the
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// vtable (not the beginning of the vtable.) We can then look up the symbol
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// containing this "address point" and that symbol's name demangled will
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// contain the full class name. The second pointer above the "address point"
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// is the "offset_to_top". We'll use that to get the start of the value
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// object which holds the dynamic type.
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//
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class_type_or_name.Clear();
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value_type = Value::ValueType::Scalar;
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if (!CouldHaveDynamicValue(in_value))
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return false;
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// Check if we have a vtable pointer in this value. If we don't it will
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// return an error, else it will return a valid resolved address. We don't
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// want GetVTableInfo to check the type since we accept void * as a possible
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// dynamic type and that won't pass the type check. We already checked the
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// type above in CouldHaveDynamicValue(...).
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llvm::Expected<VTableInfo> vtable_info_or_err =
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GetVTableInfo(in_value, /*check_type=*/false);
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if (!vtable_info_or_err) {
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llvm::consumeError(vtable_info_or_err.takeError());
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return false;
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}
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const VTableInfo &vtable_info = vtable_info_or_err.get();
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class_type_or_name = GetTypeInfo(in_value, vtable_info);
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if (!class_type_or_name)
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return false;
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CompilerType type = class_type_or_name.GetCompilerType();
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// There can only be one type with a given name, so we've just found
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// duplicate definitions, and this one will do as well as any other. We
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// don't consider something to have a dynamic type if it is the same as
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// the static type. So compare against the value we were handed.
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if (!type)
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return true;
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if (TypeSystemClang::AreTypesSame(in_value.GetCompilerType(), type)) {
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// The dynamic type we found was the same type, so we don't have a
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// dynamic type here...
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return false;
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}
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// The offset_to_top is two pointers above the vtable pointer.
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Target &target = m_process->GetTarget();
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const addr_t vtable_load_addr = vtable_info.addr.GetLoadAddress(&target);
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if (vtable_load_addr == LLDB_INVALID_ADDRESS)
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return false;
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const uint32_t addr_byte_size = m_process->GetAddressByteSize();
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const lldb::addr_t offset_to_top_location =
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vtable_load_addr - 2 * addr_byte_size;
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// Watch for underflow, offset_to_top_location should be less than
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// vtable_load_addr
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if (offset_to_top_location >= vtable_load_addr)
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return false;
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Status error;
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const int64_t offset_to_top = m_process->ReadSignedIntegerFromMemory(
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offset_to_top_location, addr_byte_size, INT64_MIN, error);
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if (offset_to_top == INT64_MIN)
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return false;
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// So the dynamic type is a value that starts at offset_to_top above
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// the original address.
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lldb::addr_t dynamic_addr = in_value.GetPointerValue() + offset_to_top;
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if (!m_process->GetTarget().ResolveLoadAddress(
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dynamic_addr, dynamic_address)) {
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dynamic_address.SetRawAddress(dynamic_addr);
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}
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return true;
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}
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TypeAndOrName ItaniumABILanguageRuntime::FixUpDynamicType(
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const TypeAndOrName &type_and_or_name, ValueObject &static_value) {
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CompilerType static_type(static_value.GetCompilerType());
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Flags static_type_flags(static_type.GetTypeInfo());
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TypeAndOrName ret(type_and_or_name);
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if (type_and_or_name.HasType()) {
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// The type will always be the type of the dynamic object. If our parent's
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// type was a pointer, then our type should be a pointer to the type of the
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// dynamic object. If a reference, then the original type should be
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// okay...
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CompilerType orig_type = type_and_or_name.GetCompilerType();
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CompilerType corrected_type = orig_type;
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if (static_type_flags.AllSet(eTypeIsPointer))
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corrected_type = orig_type.GetPointerType();
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else if (static_type_flags.AllSet(eTypeIsReference))
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corrected_type = orig_type.GetLValueReferenceType();
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ret.SetCompilerType(corrected_type);
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} else {
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// If we are here we need to adjust our dynamic type name to include the
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// correct & or * symbol
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std::string corrected_name(type_and_or_name.GetName().GetCString());
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if (static_type_flags.AllSet(eTypeIsPointer))
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corrected_name.append(" *");
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else if (static_type_flags.AllSet(eTypeIsReference))
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corrected_name.append(" &");
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// the parent type should be a correctly pointer'ed or referenc'ed type
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ret.SetCompilerType(static_type);
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ret.SetName(corrected_name.c_str());
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}
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return ret;
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}
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// Static Functions
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LanguageRuntime *
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ItaniumABILanguageRuntime::CreateInstance(Process *process,
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lldb::LanguageType language) {
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// FIXME: We have to check the process and make sure we actually know that
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// this process supports
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// the Itanium ABI.
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if (language == eLanguageTypeC_plus_plus ||
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language == eLanguageTypeC_plus_plus_03 ||
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language == eLanguageTypeC_plus_plus_11 ||
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language == eLanguageTypeC_plus_plus_14)
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return new ItaniumABILanguageRuntime(process);
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else
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return nullptr;
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}
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class CommandObjectMultiwordItaniumABI_Demangle : public CommandObjectParsed {
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public:
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CommandObjectMultiwordItaniumABI_Demangle(CommandInterpreter &interpreter)
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: CommandObjectParsed(
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interpreter, "demangle", "Demangle a C++ mangled name.",
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"language cplusplus demangle [<mangled-name> ...]") {
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CommandArgumentEntry arg;
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CommandArgumentData index_arg;
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// Define the first (and only) variant of this arg.
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index_arg.arg_type = eArgTypeSymbol;
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index_arg.arg_repetition = eArgRepeatPlus;
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// There is only one variant this argument could be; put it into the
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// argument entry.
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arg.push_back(index_arg);
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// Push the data for the first argument into the m_arguments vector.
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m_arguments.push_back(arg);
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}
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~CommandObjectMultiwordItaniumABI_Demangle() override = default;
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protected:
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void DoExecute(Args &command, CommandReturnObject &result) override {
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bool demangled_any = false;
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bool error_any = false;
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for (auto &entry : command.entries()) {
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if (entry.ref().empty())
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continue;
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// the actual Mangled class should be strict about this, but on the
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// command line if you're copying mangled names out of 'nm' on Darwin,
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// they will come out with an extra underscore - be willing to strip this
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// on behalf of the user. This is the moral equivalent of the -_/-n
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|
// options to c++filt
|
|
auto name = entry.ref();
|
|
if (name.starts_with("__Z"))
|
|
name = name.drop_front();
|
|
|
|
Mangled mangled(name);
|
|
if (mangled.GuessLanguage() == lldb::eLanguageTypeC_plus_plus) {
|
|
ConstString demangled(mangled.GetDisplayDemangledName());
|
|
demangled_any = true;
|
|
result.AppendMessageWithFormat("%s ---> %s\n", entry.c_str(),
|
|
demangled.GetCString());
|
|
} else {
|
|
error_any = true;
|
|
result.AppendErrorWithFormat("%s is not a valid C++ mangled name\n",
|
|
entry.ref().str().c_str());
|
|
}
|
|
}
|
|
|
|
result.SetStatus(
|
|
error_any ? lldb::eReturnStatusFailed
|
|
: (demangled_any ? lldb::eReturnStatusSuccessFinishResult
|
|
: lldb::eReturnStatusSuccessFinishNoResult));
|
|
}
|
|
};
|
|
|
|
class CommandObjectMultiwordItaniumABI : public CommandObjectMultiword {
|
|
public:
|
|
CommandObjectMultiwordItaniumABI(CommandInterpreter &interpreter)
|
|
: CommandObjectMultiword(
|
|
interpreter, "cplusplus",
|
|
"Commands for operating on the C++ language runtime.",
|
|
"cplusplus <subcommand> [<subcommand-options>]") {
|
|
LoadSubCommand(
|
|
"demangle",
|
|
CommandObjectSP(
|
|
new CommandObjectMultiwordItaniumABI_Demangle(interpreter)));
|
|
}
|
|
|
|
~CommandObjectMultiwordItaniumABI() override = default;
|
|
};
|
|
|
|
void ItaniumABILanguageRuntime::Initialize() {
|
|
PluginManager::RegisterPlugin(
|
|
GetPluginNameStatic(), "Itanium ABI for the C++ language", CreateInstance,
|
|
[](CommandInterpreter &interpreter) -> lldb::CommandObjectSP {
|
|
return CommandObjectSP(
|
|
new CommandObjectMultiwordItaniumABI(interpreter));
|
|
});
|
|
}
|
|
|
|
void ItaniumABILanguageRuntime::Terminate() {
|
|
PluginManager::UnregisterPlugin(CreateInstance);
|
|
}
|
|
|
|
BreakpointResolverSP ItaniumABILanguageRuntime::CreateExceptionResolver(
|
|
const BreakpointSP &bkpt, bool catch_bp, bool throw_bp) {
|
|
return CreateExceptionResolver(bkpt, catch_bp, throw_bp, false);
|
|
}
|
|
|
|
BreakpointResolverSP ItaniumABILanguageRuntime::CreateExceptionResolver(
|
|
const BreakpointSP &bkpt, bool catch_bp, bool throw_bp,
|
|
bool for_expressions) {
|
|
// One complication here is that most users DON'T want to stop at
|
|
// __cxa_allocate_expression, but until we can do anything better with
|
|
// predicting unwinding the expression parser does. So we have two forms of
|
|
// the exception breakpoints, one for expressions that leaves out
|
|
// __cxa_allocate_exception, and one that includes it. The
|
|
// SetExceptionBreakpoints does the latter, the CreateExceptionBreakpoint in
|
|
// the runtime the former.
|
|
static const char *g_catch_name = "__cxa_begin_catch";
|
|
static const char *g_throw_name1 = "__cxa_throw";
|
|
static const char *g_throw_name2 = "__cxa_rethrow";
|
|
static const char *g_exception_throw_name = "__cxa_allocate_exception";
|
|
std::vector<const char *> exception_names;
|
|
exception_names.reserve(4);
|
|
if (catch_bp)
|
|
exception_names.push_back(g_catch_name);
|
|
|
|
if (throw_bp) {
|
|
exception_names.push_back(g_throw_name1);
|
|
exception_names.push_back(g_throw_name2);
|
|
}
|
|
|
|
if (for_expressions)
|
|
exception_names.push_back(g_exception_throw_name);
|
|
|
|
BreakpointResolverSP resolver_sp(new BreakpointResolverName(
|
|
bkpt, exception_names.data(), exception_names.size(),
|
|
eFunctionNameTypeBase, eLanguageTypeUnknown, 0, eLazyBoolNo));
|
|
|
|
return resolver_sp;
|
|
}
|
|
|
|
lldb::SearchFilterSP ItaniumABILanguageRuntime::CreateExceptionSearchFilter() {
|
|
Target &target = m_process->GetTarget();
|
|
|
|
FileSpecList filter_modules;
|
|
if (target.GetArchitecture().GetTriple().getVendor() == llvm::Triple::Apple) {
|
|
// Limit the number of modules that are searched for these breakpoints for
|
|
// Apple binaries.
|
|
filter_modules.EmplaceBack("libc++abi.dylib");
|
|
filter_modules.EmplaceBack("libSystem.B.dylib");
|
|
filter_modules.EmplaceBack("libc++abi.1.0.dylib");
|
|
filter_modules.EmplaceBack("libc++abi.1.dylib");
|
|
}
|
|
return target.GetSearchFilterForModuleList(&filter_modules);
|
|
}
|
|
|
|
lldb::BreakpointSP ItaniumABILanguageRuntime::CreateExceptionBreakpoint(
|
|
bool catch_bp, bool throw_bp, bool for_expressions, bool is_internal) {
|
|
Target &target = m_process->GetTarget();
|
|
FileSpecList filter_modules;
|
|
BreakpointResolverSP exception_resolver_sp =
|
|
CreateExceptionResolver(nullptr, catch_bp, throw_bp, for_expressions);
|
|
SearchFilterSP filter_sp(CreateExceptionSearchFilter());
|
|
const bool hardware = false;
|
|
const bool resolve_indirect_functions = false;
|
|
return target.CreateBreakpoint(filter_sp, exception_resolver_sp, is_internal,
|
|
hardware, resolve_indirect_functions);
|
|
}
|
|
|
|
void ItaniumABILanguageRuntime::SetExceptionBreakpoints() {
|
|
if (!m_process)
|
|
return;
|
|
|
|
const bool catch_bp = false;
|
|
const bool throw_bp = true;
|
|
const bool is_internal = true;
|
|
const bool for_expressions = true;
|
|
|
|
// For the exception breakpoints set by the Expression parser, we'll be a
|
|
// little more aggressive and stop at exception allocation as well.
|
|
|
|
if (m_cxx_exception_bp_sp) {
|
|
m_cxx_exception_bp_sp->SetEnabled(true);
|
|
} else {
|
|
m_cxx_exception_bp_sp = CreateExceptionBreakpoint(
|
|
catch_bp, throw_bp, for_expressions, is_internal);
|
|
if (m_cxx_exception_bp_sp)
|
|
m_cxx_exception_bp_sp->SetBreakpointKind("c++ exception");
|
|
}
|
|
}
|
|
|
|
void ItaniumABILanguageRuntime::ClearExceptionBreakpoints() {
|
|
if (!m_process)
|
|
return;
|
|
|
|
if (m_cxx_exception_bp_sp) {
|
|
m_cxx_exception_bp_sp->SetEnabled(false);
|
|
}
|
|
}
|
|
|
|
bool ItaniumABILanguageRuntime::ExceptionBreakpointsAreSet() {
|
|
return m_cxx_exception_bp_sp && m_cxx_exception_bp_sp->IsEnabled();
|
|
}
|
|
|
|
bool ItaniumABILanguageRuntime::ExceptionBreakpointsExplainStop(
|
|
lldb::StopInfoSP stop_reason) {
|
|
if (!m_process)
|
|
return false;
|
|
|
|
if (!stop_reason || stop_reason->GetStopReason() != eStopReasonBreakpoint)
|
|
return false;
|
|
|
|
uint64_t break_site_id = stop_reason->GetValue();
|
|
return m_process->GetBreakpointSiteList().StopPointSiteContainsBreakpoint(
|
|
break_site_id, m_cxx_exception_bp_sp->GetID());
|
|
}
|
|
|
|
ValueObjectSP ItaniumABILanguageRuntime::GetExceptionObjectForThread(
|
|
ThreadSP thread_sp) {
|
|
if (!thread_sp->SafeToCallFunctions())
|
|
return {};
|
|
|
|
TypeSystemClangSP scratch_ts_sp =
|
|
ScratchTypeSystemClang::GetForTarget(m_process->GetTarget());
|
|
if (!scratch_ts_sp)
|
|
return {};
|
|
|
|
CompilerType voidstar =
|
|
scratch_ts_sp->GetBasicType(eBasicTypeVoid).GetPointerType();
|
|
|
|
DiagnosticManager diagnostics;
|
|
ExecutionContext exe_ctx;
|
|
EvaluateExpressionOptions options;
|
|
|
|
options.SetUnwindOnError(true);
|
|
options.SetIgnoreBreakpoints(true);
|
|
options.SetStopOthers(true);
|
|
options.SetTimeout(m_process->GetUtilityExpressionTimeout());
|
|
options.SetTryAllThreads(false);
|
|
thread_sp->CalculateExecutionContext(exe_ctx);
|
|
|
|
const ModuleList &modules = m_process->GetTarget().GetImages();
|
|
SymbolContextList contexts;
|
|
SymbolContext context;
|
|
|
|
modules.FindSymbolsWithNameAndType(
|
|
ConstString("__cxa_current_exception_type"), eSymbolTypeCode, contexts);
|
|
contexts.GetContextAtIndex(0, context);
|
|
if (!context.symbol) {
|
|
return {};
|
|
}
|
|
Address addr = context.symbol->GetAddress();
|
|
|
|
Status error;
|
|
FunctionCaller *function_caller =
|
|
m_process->GetTarget().GetFunctionCallerForLanguage(
|
|
eLanguageTypeC, voidstar, addr, ValueList(), "caller", error);
|
|
|
|
ExpressionResults func_call_ret;
|
|
Value results;
|
|
func_call_ret = function_caller->ExecuteFunction(exe_ctx, nullptr, options,
|
|
diagnostics, results);
|
|
if (func_call_ret != eExpressionCompleted || !error.Success()) {
|
|
return ValueObjectSP();
|
|
}
|
|
|
|
size_t ptr_size = m_process->GetAddressByteSize();
|
|
addr_t result_ptr = results.GetScalar().ULongLong(LLDB_INVALID_ADDRESS);
|
|
addr_t exception_addr =
|
|
m_process->ReadPointerFromMemory(result_ptr - ptr_size, error);
|
|
|
|
if (!error.Success()) {
|
|
return ValueObjectSP();
|
|
}
|
|
|
|
lldb_private::formatters::InferiorSizedWord exception_isw(exception_addr,
|
|
*m_process);
|
|
ValueObjectSP exception = ValueObject::CreateValueObjectFromData(
|
|
"exception", exception_isw.GetAsData(m_process->GetByteOrder()), exe_ctx,
|
|
voidstar);
|
|
ValueObjectSP dyn_exception
|
|
= exception->GetDynamicValue(eDynamicDontRunTarget);
|
|
// If we succeed in making a dynamic value, return that:
|
|
if (dyn_exception)
|
|
return dyn_exception;
|
|
|
|
return exception;
|
|
}
|
|
|
|
TypeAndOrName ItaniumABILanguageRuntime::GetDynamicTypeInfo(
|
|
const lldb_private::Address &vtable_addr) {
|
|
std::lock_guard<std::mutex> locker(m_mutex);
|
|
DynamicTypeCache::const_iterator pos = m_dynamic_type_map.find(vtable_addr);
|
|
if (pos == m_dynamic_type_map.end())
|
|
return TypeAndOrName();
|
|
else
|
|
return pos->second;
|
|
}
|
|
|
|
void ItaniumABILanguageRuntime::SetDynamicTypeInfo(
|
|
const lldb_private::Address &vtable_addr, const TypeAndOrName &type_info) {
|
|
std::lock_guard<std::mutex> locker(m_mutex);
|
|
m_dynamic_type_map[vtable_addr] = type_info;
|
|
}
|