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610 lines
19 KiB
C++
610 lines
19 KiB
C++
//===-- ProcessElfCore.cpp --------------------------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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// C Includes
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#include <stdlib.h>
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// Other libraries and framework includes
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#include "lldb/Core/PluginManager.h"
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#include "lldb/Core/Module.h"
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#include "lldb/Core/ModuleSpec.h"
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#include "lldb/Core/Section.h"
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#include "lldb/Core/State.h"
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#include "lldb/Core/DataBufferHeap.h"
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#include "lldb/Core/Log.h"
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#include "lldb/Target/Target.h"
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#include "lldb/Target/DynamicLoader.h"
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#include "lldb/Target/UnixSignals.h"
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#include "llvm/Support/ELF.h"
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#include "Plugins/ObjectFile/ELF/ObjectFileELF.h"
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#include "Plugins/DynamicLoader/POSIX-DYLD/DynamicLoaderPOSIXDYLD.h"
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#include "Plugins/Process/Utility/FreeBSDSignals.h"
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#include "Plugins/Process/Utility/LinuxSignals.h"
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// Project includes
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#include "ProcessElfCore.h"
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#include "ThreadElfCore.h"
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using namespace lldb_private;
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ConstString
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ProcessElfCore::GetPluginNameStatic()
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{
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static ConstString g_name("elf-core");
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return g_name;
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}
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const char *
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ProcessElfCore::GetPluginDescriptionStatic()
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{
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return "ELF core dump plug-in.";
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}
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void
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ProcessElfCore::Terminate()
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{
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PluginManager::UnregisterPlugin (ProcessElfCore::CreateInstance);
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}
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lldb::ProcessSP
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ProcessElfCore::CreateInstance (Target &target, Listener &listener, const FileSpec *crash_file)
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{
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lldb::ProcessSP process_sp;
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if (crash_file)
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{
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// Read enough data for a ELF32 header or ELF64 header
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const size_t header_size = sizeof(llvm::ELF::Elf64_Ehdr);
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lldb::DataBufferSP data_sp (crash_file->ReadFileContents(0, header_size));
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if (data_sp && data_sp->GetByteSize() == header_size &&
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elf::ELFHeader::MagicBytesMatch (data_sp->GetBytes()))
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{
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elf::ELFHeader elf_header;
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DataExtractor data(data_sp, lldb::eByteOrderLittle, 4);
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lldb::offset_t data_offset = 0;
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if (elf_header.Parse(data, &data_offset))
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{
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if (elf_header.e_type == llvm::ELF::ET_CORE)
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process_sp.reset(new ProcessElfCore (target, listener, *crash_file));
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}
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}
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}
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return process_sp;
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}
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bool
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ProcessElfCore::CanDebug(Target &target, bool plugin_specified_by_name)
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{
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// For now we are just making sure the file exists for a given module
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if (!m_core_module_sp && m_core_file.Exists())
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{
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ModuleSpec core_module_spec(m_core_file, target.GetArchitecture());
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Error error (ModuleList::GetSharedModule (core_module_spec, m_core_module_sp,
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NULL, NULL, NULL));
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if (m_core_module_sp)
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{
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ObjectFile *core_objfile = m_core_module_sp->GetObjectFile();
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if (core_objfile && core_objfile->GetType() == ObjectFile::eTypeCoreFile)
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return true;
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}
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}
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return false;
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}
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//----------------------------------------------------------------------
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// ProcessElfCore constructor
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//----------------------------------------------------------------------
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ProcessElfCore::ProcessElfCore(Target& target, Listener &listener,
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const FileSpec &core_file) :
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Process (target, listener),
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m_core_module_sp (),
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m_core_file (core_file),
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m_dyld_plugin_name (),
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m_os(llvm::Triple::UnknownOS),
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m_thread_data_valid(false),
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m_thread_data(),
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m_core_aranges ()
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{
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}
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//----------------------------------------------------------------------
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// Destructor
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//----------------------------------------------------------------------
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ProcessElfCore::~ProcessElfCore()
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{
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Clear();
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// We need to call finalize on the process before destroying ourselves
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// to make sure all of the broadcaster cleanup goes as planned. If we
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// destruct this class, then Process::~Process() might have problems
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// trying to fully destroy the broadcaster.
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Finalize();
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}
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//----------------------------------------------------------------------
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// PluginInterface
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//----------------------------------------------------------------------
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ConstString
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ProcessElfCore::GetPluginName()
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{
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return GetPluginNameStatic();
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}
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uint32_t
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ProcessElfCore::GetPluginVersion()
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{
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return 1;
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}
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lldb::addr_t
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ProcessElfCore::AddAddressRangeFromLoadSegment(const elf::ELFProgramHeader *header)
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{
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lldb::addr_t addr = header->p_vaddr;
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FileRange file_range (header->p_offset, header->p_filesz);
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VMRangeToFileOffset::Entry range_entry(addr, header->p_memsz, file_range);
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VMRangeToFileOffset::Entry *last_entry = m_core_aranges.Back();
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if (last_entry &&
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last_entry->GetRangeEnd() == range_entry.GetRangeBase() &&
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last_entry->data.GetRangeEnd() == range_entry.data.GetRangeBase() &&
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last_entry->GetByteSize() == last_entry->data.GetByteSize())
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{
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last_entry->SetRangeEnd (range_entry.GetRangeEnd());
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last_entry->data.SetRangeEnd (range_entry.data.GetRangeEnd());
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}
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else
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{
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m_core_aranges.Append(range_entry);
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}
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return addr;
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}
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//----------------------------------------------------------------------
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// Process Control
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//----------------------------------------------------------------------
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Error
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ProcessElfCore::DoLoadCore ()
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{
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Error error;
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if (!m_core_module_sp)
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{
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error.SetErrorString ("invalid core module");
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return error;
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}
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ObjectFileELF *core = (ObjectFileELF *)(m_core_module_sp->GetObjectFile());
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if (core == NULL)
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{
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error.SetErrorString ("invalid core object file");
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return error;
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}
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const uint32_t num_segments = core->GetProgramHeaderCount();
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if (num_segments == 0)
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{
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error.SetErrorString ("core file has no sections");
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return error;
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}
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SetCanJIT(false);
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m_thread_data_valid = true;
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bool ranges_are_sorted = true;
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lldb::addr_t vm_addr = 0;
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/// Walk through segments and Thread and Address Map information.
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/// PT_NOTE - Contains Thread and Register information
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/// PT_LOAD - Contains a contiguous range of Process Address Space
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for(uint32_t i = 1; i <= num_segments; i++)
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{
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const elf::ELFProgramHeader *header = core->GetProgramHeaderByIndex(i);
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assert(header != NULL);
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DataExtractor data = core->GetSegmentDataByIndex(i);
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// Parse thread contexts and auxv structure
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if (header->p_type == llvm::ELF::PT_NOTE)
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ParseThreadContextsFromNoteSegment(header, data);
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// PT_LOAD segments contains address map
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if (header->p_type == llvm::ELF::PT_LOAD)
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{
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lldb::addr_t last_addr = AddAddressRangeFromLoadSegment(header);
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if (vm_addr > last_addr)
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ranges_are_sorted = false;
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vm_addr = last_addr;
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}
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}
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if (!ranges_are_sorted)
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m_core_aranges.Sort();
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// Even if the architecture is set in the target, we need to override
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// it to match the core file which is always single arch.
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ArchSpec arch (m_core_module_sp->GetArchitecture());
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if (arch.IsValid())
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m_target.SetArchitecture(arch);
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switch (m_os)
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{
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case llvm::Triple::FreeBSD:
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{
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static UnixSignalsSP s_freebsd_signals_sp(new FreeBSDSignals ());
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SetUnixSignals(s_freebsd_signals_sp);
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break;
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}
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case llvm::Triple::Linux:
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{
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static UnixSignalsSP s_linux_signals_sp(new process_linux::LinuxSignals ());
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SetUnixSignals(s_linux_signals_sp);
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break;
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}
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default:
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break;
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}
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return error;
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}
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lldb_private::DynamicLoader *
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ProcessElfCore::GetDynamicLoader ()
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{
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if (m_dyld_ap.get() == NULL)
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m_dyld_ap.reset (DynamicLoader::FindPlugin(this, DynamicLoaderPOSIXDYLD::GetPluginNameStatic().GetCString()));
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return m_dyld_ap.get();
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}
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bool
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ProcessElfCore::UpdateThreadList (ThreadList &old_thread_list, ThreadList &new_thread_list)
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{
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const uint32_t num_threads = GetNumThreadContexts ();
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if (!m_thread_data_valid)
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return false;
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for (lldb::tid_t tid = 0; tid < num_threads; ++tid)
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{
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const ThreadData &td = m_thread_data[tid];
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lldb::ThreadSP thread_sp(new ThreadElfCore (*this, tid, td));
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new_thread_list.AddThread (thread_sp);
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}
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return new_thread_list.GetSize(false) > 0;
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}
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void
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ProcessElfCore::RefreshStateAfterStop ()
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{
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}
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Error
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ProcessElfCore::DoDestroy ()
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{
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return Error();
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}
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//------------------------------------------------------------------
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// Process Queries
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//------------------------------------------------------------------
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bool
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ProcessElfCore::IsAlive ()
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{
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return true;
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}
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//------------------------------------------------------------------
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// Process Memory
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//------------------------------------------------------------------
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size_t
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ProcessElfCore::ReadMemory (lldb::addr_t addr, void *buf, size_t size, Error &error)
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{
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// Don't allow the caching that lldb_private::Process::ReadMemory does
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// since in core files we have it all cached our our core file anyway.
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return DoReadMemory (addr, buf, size, error);
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}
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size_t
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ProcessElfCore::DoReadMemory (lldb::addr_t addr, void *buf, size_t size, Error &error)
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{
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ObjectFile *core_objfile = m_core_module_sp->GetObjectFile();
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if (core_objfile == NULL)
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return 0;
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// Get the address range
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const VMRangeToFileOffset::Entry *address_range = m_core_aranges.FindEntryThatContains (addr);
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if (address_range == NULL || address_range->GetRangeEnd() < addr)
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{
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error.SetErrorStringWithFormat ("core file does not contain 0x%" PRIx64, addr);
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return 0;
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}
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// Convert the address into core file offset
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const lldb::addr_t offset = addr - address_range->GetRangeBase();
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const lldb::addr_t file_start = address_range->data.GetRangeBase();
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const lldb::addr_t file_end = address_range->data.GetRangeEnd();
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size_t bytes_to_read = size; // Number of bytes to read from the core file
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size_t bytes_copied = 0; // Number of bytes actually read from the core file
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size_t zero_fill_size = 0; // Padding
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lldb::addr_t bytes_left = 0; // Number of bytes available in the core file from the given address
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// Figure out how many on-disk bytes remain in this segment
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// starting at the given offset
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if (file_end > file_start + offset)
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bytes_left = file_end - (file_start + offset);
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// Figure out how many bytes we need to zero-fill if we are
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// reading more bytes than available in the on-disk segment
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if (bytes_to_read > bytes_left)
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{
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zero_fill_size = bytes_to_read - bytes_left;
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bytes_to_read = bytes_left;
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}
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// If there is data available on the core file read it
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if (bytes_to_read)
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bytes_copied = core_objfile->CopyData(offset + file_start, bytes_to_read, buf);
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assert(zero_fill_size <= size);
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// Pad remaining bytes
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if (zero_fill_size)
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memset(((char *)buf) + bytes_copied, 0, zero_fill_size);
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return bytes_copied + zero_fill_size;
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}
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void
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ProcessElfCore::Clear()
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{
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m_thread_list.Clear();
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m_os = llvm::Triple::UnknownOS;
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static UnixSignalsSP s_default_unix_signals_sp(new UnixSignals());
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SetUnixSignals(s_default_unix_signals_sp);
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}
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void
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ProcessElfCore::Initialize()
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{
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static bool g_initialized = false;
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if (g_initialized == false)
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{
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g_initialized = true;
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PluginManager::RegisterPlugin (GetPluginNameStatic(), GetPluginDescriptionStatic(), CreateInstance);
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}
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}
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lldb::addr_t
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ProcessElfCore::GetImageInfoAddress()
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{
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Target *target = &GetTarget();
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ObjectFile *obj_file = target->GetExecutableModule()->GetObjectFile();
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Address addr = obj_file->GetImageInfoAddress(target);
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if (addr.IsValid())
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return addr.GetLoadAddress(target);
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return LLDB_INVALID_ADDRESS;
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}
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/// Core files PT_NOTE segment descriptor types
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enum {
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NT_PRSTATUS = 1,
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NT_FPREGSET,
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NT_PRPSINFO,
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NT_TASKSTRUCT,
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NT_PLATFORM,
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NT_AUXV
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};
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namespace FREEBSD {
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enum {
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NT_PRSTATUS = 1,
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NT_FPREGSET,
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NT_PRPSINFO,
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NT_THRMISC = 7,
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NT_PROCSTAT_AUXV = 16,
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NT_PPC_VMX = 0x100
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};
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}
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// Parse a FreeBSD NT_PRSTATUS note - see FreeBSD sys/procfs.h for details.
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static void
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ParseFreeBSDPrStatus(ThreadData &thread_data, DataExtractor &data,
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ArchSpec &arch)
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{
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lldb::offset_t offset = 0;
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bool lp64 = (arch.GetMachine() == llvm::Triple::mips64 ||
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arch.GetMachine() == llvm::Triple::ppc64 ||
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arch.GetMachine() == llvm::Triple::x86_64);
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int pr_version = data.GetU32(&offset);
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Log *log (GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
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if (log)
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{
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if (pr_version > 1)
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log->Printf("FreeBSD PRSTATUS unexpected version %d", pr_version);
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}
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// Skip padding, pr_statussz, pr_gregsetsz, pr_fpregsetsz, pr_osreldate
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if (lp64)
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offset += 32;
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else
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offset += 16;
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thread_data.signo = data.GetU32(&offset); // pr_cursig
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offset += 4; // pr_pid
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if (lp64)
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offset += 4;
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size_t len = data.GetByteSize() - offset;
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thread_data.gpregset = DataExtractor(data, offset, len);
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}
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static void
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ParseFreeBSDThrMisc(ThreadData &thread_data, DataExtractor &data)
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{
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lldb::offset_t offset = 0;
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thread_data.name = data.GetCStr(&offset, 20);
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}
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/// Parse Thread context from PT_NOTE segment and store it in the thread list
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/// Notes:
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/// 1) A PT_NOTE segment is composed of one or more NOTE entries.
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/// 2) NOTE Entry contains a standard header followed by variable size data.
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/// (see ELFNote structure)
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/// 3) A Thread Context in a core file usually described by 3 NOTE entries.
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/// a) NT_PRSTATUS - Register context
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/// b) NT_PRPSINFO - Process info(pid..)
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/// c) NT_FPREGSET - Floating point registers
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/// 4) The NOTE entries can be in any order
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/// 5) If a core file contains multiple thread contexts then there is two data forms
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/// a) Each thread context(2 or more NOTE entries) contained in its own segment (PT_NOTE)
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/// b) All thread context is stored in a single segment(PT_NOTE).
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/// This case is little tricker since while parsing we have to find where the
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/// new thread starts. The current implementation marks beginning of
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/// new thread when it finds NT_PRSTATUS or NT_PRPSINFO NOTE entry.
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/// For case (b) there may be either one NT_PRPSINFO per thread, or a single
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/// one that applies to all threads (depending on the platform type).
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void
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ProcessElfCore::ParseThreadContextsFromNoteSegment(const elf::ELFProgramHeader *segment_header,
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DataExtractor segment_data)
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{
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assert(segment_header && segment_header->p_type == llvm::ELF::PT_NOTE);
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lldb::offset_t offset = 0;
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std::unique_ptr<ThreadData> thread_data(new ThreadData);
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bool have_prstatus = false;
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bool have_prpsinfo = false;
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ArchSpec arch = GetArchitecture();
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ELFLinuxPrPsInfo prpsinfo;
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ELFLinuxPrStatus prstatus;
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size_t header_size;
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size_t len;
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// Loop through the NOTE entires in the segment
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while (offset < segment_header->p_filesz)
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{
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ELFNote note = ELFNote();
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note.Parse(segment_data, &offset);
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// Beginning of new thread
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if ((note.n_type == NT_PRSTATUS && have_prstatus) ||
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(note.n_type == NT_PRPSINFO && have_prpsinfo))
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{
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assert(thread_data->gpregset.GetByteSize() > 0);
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// Add the new thread to thread list
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m_thread_data.push_back(*thread_data);
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*thread_data = ThreadData();
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have_prstatus = false;
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have_prpsinfo = false;
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}
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size_t note_start, note_size;
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note_start = offset;
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note_size = llvm::RoundUpToAlignment(note.n_descsz, 4);
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// Store the NOTE information in the current thread
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DataExtractor note_data (segment_data, note_start, note_size);
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if (note.n_name == "FreeBSD")
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{
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m_os = llvm::Triple::FreeBSD;
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switch (note.n_type)
|
|
{
|
|
case FREEBSD::NT_PRSTATUS:
|
|
have_prstatus = true;
|
|
ParseFreeBSDPrStatus(*thread_data, note_data, arch);
|
|
break;
|
|
case FREEBSD::NT_FPREGSET:
|
|
thread_data->fpregset = note_data;
|
|
break;
|
|
case FREEBSD::NT_PRPSINFO:
|
|
have_prpsinfo = true;
|
|
break;
|
|
case FREEBSD::NT_THRMISC:
|
|
ParseFreeBSDThrMisc(*thread_data, note_data);
|
|
break;
|
|
case FREEBSD::NT_PROCSTAT_AUXV:
|
|
// FIXME: FreeBSD sticks an int at the beginning of the note
|
|
m_auxv = DataExtractor(segment_data, note_start + 4, note_size - 4);
|
|
break;
|
|
case FREEBSD::NT_PPC_VMX:
|
|
thread_data->vregset = note_data;
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
switch (note.n_type)
|
|
{
|
|
case NT_PRSTATUS:
|
|
have_prstatus = true;
|
|
prstatus.Parse(note_data, arch);
|
|
thread_data->signo = prstatus.pr_cursig;
|
|
header_size = ELFLinuxPrStatus::GetSize(arch);
|
|
len = note_data.GetByteSize() - header_size;
|
|
thread_data->gpregset = DataExtractor(note_data, header_size, len);
|
|
break;
|
|
case NT_FPREGSET:
|
|
thread_data->fpregset = note_data;
|
|
break;
|
|
case NT_PRPSINFO:
|
|
have_prpsinfo = true;
|
|
prpsinfo.Parse(note_data, arch);
|
|
thread_data->name = prpsinfo.pr_fname;
|
|
break;
|
|
case NT_AUXV:
|
|
m_auxv = DataExtractor(note_data);
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
|
|
offset += note_size;
|
|
}
|
|
// Add last entry in the note section
|
|
if (thread_data && thread_data->gpregset.GetByteSize() > 0)
|
|
{
|
|
m_thread_data.push_back(*thread_data);
|
|
}
|
|
}
|
|
|
|
uint32_t
|
|
ProcessElfCore::GetNumThreadContexts ()
|
|
{
|
|
if (!m_thread_data_valid)
|
|
DoLoadCore();
|
|
return m_thread_data.size();
|
|
}
|
|
|
|
ArchSpec
|
|
ProcessElfCore::GetArchitecture()
|
|
{
|
|
ObjectFileELF *core_file = (ObjectFileELF *)(m_core_module_sp->GetObjectFile());
|
|
ArchSpec arch;
|
|
core_file->GetArchitecture(arch);
|
|
return arch;
|
|
}
|
|
|
|
const lldb::DataBufferSP
|
|
ProcessElfCore::GetAuxvData()
|
|
{
|
|
const uint8_t *start = m_auxv.GetDataStart();
|
|
size_t len = m_auxv.GetByteSize();
|
|
lldb::DataBufferSP buffer(new lldb_private::DataBufferHeap(start, len));
|
|
return buffer;
|
|
}
|