528 lines
11 KiB
C++
528 lines
11 KiB
C++
//===-- ProcessLinux.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 <errno.h>
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// C++ Includes
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// Other libraries and framework includes
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#include "lldb/Core/PluginManager.h"
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#include "lldb/Host/Host.h"
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#include "lldb/Symbol/ObjectFile.h"
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#include "lldb/Target/DynamicLoader.h"
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#include "lldb/Target/Target.h"
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#include "ProcessLinux.h"
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#include "ProcessMonitor.h"
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#include "LinuxThread.h"
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using namespace lldb;
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using namespace lldb_private;
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//------------------------------------------------------------------------------
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// Static functions.
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Process*
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ProcessLinux::CreateInstance(Target& target, Listener &listener)
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{
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return new ProcessLinux(target, listener);
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}
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void
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ProcessLinux::Initialize()
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{
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static bool g_initialized = false;
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if (!g_initialized)
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{
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PluginManager::RegisterPlugin(GetPluginNameStatic(),
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GetPluginDescriptionStatic(),
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CreateInstance);
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g_initialized = true;
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}
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}
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void
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ProcessLinux::Terminate()
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{
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}
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const char *
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ProcessLinux::GetPluginNameStatic()
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{
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return "plugin.process.linux";
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}
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const char *
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ProcessLinux::GetPluginDescriptionStatic()
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{
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return "Process plugin for Linux";
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}
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//------------------------------------------------------------------------------
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// Constructors and destructors.
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ProcessLinux::ProcessLinux(Target& target, Listener &listener)
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: Process(target, listener),
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m_monitor(NULL),
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m_module(NULL),
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m_in_limbo(false),
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m_exit_now(false)
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{
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// FIXME: Putting this code in the ctor and saving the byte order in a
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// member variable is a hack to avoid const qual issues in GetByteOrder.
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ObjectFile *obj_file = GetTarget().GetExecutableModule()->GetObjectFile();
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m_byte_order = obj_file->GetByteOrder();
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}
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ProcessLinux::~ProcessLinux()
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{
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delete m_monitor;
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}
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//------------------------------------------------------------------------------
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// Process protocol.
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bool
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ProcessLinux::CanDebug(Target &target)
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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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ModuleSP exe_module_sp(target.GetExecutableModule());
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if (exe_module_sp.get())
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return exe_module_sp->GetFileSpec().Exists();
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return false;
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}
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Error
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ProcessLinux::DoAttachToProcessWithID(lldb::pid_t pid)
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{
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return Error(1, eErrorTypeGeneric);
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}
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Error
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ProcessLinux::WillLaunch(Module* module)
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{
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Error error;
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return error;
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}
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Error
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ProcessLinux::DoLaunch(Module *module,
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char const *argv[],
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char const *envp[],
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uint32_t launch_flags,
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const char *stdin_path,
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const char *stdout_path,
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const char *stderr_path,
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const char *working_directory)
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{
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Error error;
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assert(m_monitor == NULL);
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SetPrivateState(eStateLaunching);
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m_monitor = new ProcessMonitor(this, module,
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argv, envp,
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stdin_path, stdout_path, stderr_path,
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error);
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m_module = module;
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if (!error.Success())
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return error;
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SetID(m_monitor->GetPID());
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return error;
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}
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void
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ProcessLinux::DidLaunch()
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{
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}
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Error
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ProcessLinux::DoResume()
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{
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StateType state = GetPrivateState();
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assert(state == eStateStopped || state == eStateCrashed);
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// We are about to resume a thread that will cause the process to exit so
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// set our exit status now. Do not change our state if the inferior
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// crashed.
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if (state == eStateStopped)
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{
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if (m_in_limbo)
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SetExitStatus(m_exit_status, NULL);
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else
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SetPrivateState(eStateRunning);
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}
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bool did_resume = false;
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uint32_t thread_count = m_thread_list.GetSize(false);
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for (uint32_t i = 0; i < thread_count; ++i)
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{
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LinuxThread *thread = static_cast<LinuxThread*>(
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m_thread_list.GetThreadAtIndex(i, false).get());
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did_resume = thread->Resume() || did_resume;
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}
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assert(did_resume && "Process resume failed!");
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return Error();
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}
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addr_t
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ProcessLinux::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();
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if (addr.IsValid())
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return addr.GetLoadAddress(target);
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else
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return LLDB_INVALID_ADDRESS;
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}
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Error
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ProcessLinux::DoHalt(bool &caused_stop)
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{
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Error error;
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if (IsStopped())
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{
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caused_stop = false;
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}
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else if (kill(GetID(), SIGSTOP))
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{
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caused_stop = false;
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error.SetErrorToErrno();
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}
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else
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{
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caused_stop = true;
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}
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return error;
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}
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Error
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ProcessLinux::DoDetach()
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{
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return Error(1, eErrorTypeGeneric);
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}
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Error
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ProcessLinux::DoSignal(int signal)
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{
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Error error;
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if (kill(GetID(), signal))
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error.SetErrorToErrno();
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return error;
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}
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Error
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ProcessLinux::DoDestroy()
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{
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Error error;
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if (!HasExited())
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{
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// Drive the exit event to completion (do not keep the inferior in
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// limbo).
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m_exit_now = true;
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if (kill(m_monitor->GetPID(), SIGKILL) && error.Success())
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{
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error.SetErrorToErrno();
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return error;
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}
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SetPrivateState(eStateExited);
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}
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return error;
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}
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void
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ProcessLinux::SendMessage(const ProcessMessage &message)
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{
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Mutex::Locker lock(m_message_mutex);
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switch (message.GetKind())
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{
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default:
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assert(false && "Unexpected process message!");
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break;
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case ProcessMessage::eInvalidMessage:
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return;
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case ProcessMessage::eLimboMessage:
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m_in_limbo = true;
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m_exit_status = message.GetExitStatus();
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if (m_exit_now)
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{
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SetPrivateState(eStateExited);
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m_monitor->Detach();
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}
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else
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SetPrivateState(eStateStopped);
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break;
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case ProcessMessage::eExitMessage:
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m_exit_status = message.GetExitStatus();
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SetExitStatus(m_exit_status, NULL);
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break;
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case ProcessMessage::eTraceMessage:
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case ProcessMessage::eBreakpointMessage:
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SetPrivateState(eStateStopped);
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break;
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case ProcessMessage::eSignalMessage:
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case ProcessMessage::eSignalDeliveredMessage:
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SetPrivateState(eStateStopped);
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break;
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case ProcessMessage::eCrashMessage:
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SetPrivateState(eStateCrashed);
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break;
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}
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m_message_queue.push(message);
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}
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void
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ProcessLinux::RefreshStateAfterStop()
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{
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Mutex::Locker lock(m_message_mutex);
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if (m_message_queue.empty())
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return;
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ProcessMessage &message = m_message_queue.front();
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// Resolve the thread this message corresponds to and pass it along.
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lldb::tid_t tid = message.GetTID();
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LinuxThread *thread = static_cast<LinuxThread*>(
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GetThreadList().FindThreadByID(tid, false).get());
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thread->Notify(message);
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m_message_queue.pop();
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}
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bool
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ProcessLinux::IsAlive()
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{
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StateType state = GetPrivateState();
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return state != eStateExited && state != eStateInvalid;
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}
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size_t
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ProcessLinux::DoReadMemory(addr_t vm_addr,
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void *buf, size_t size, Error &error)
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{
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return m_monitor->ReadMemory(vm_addr, buf, size, error);
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}
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size_t
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ProcessLinux::DoWriteMemory(addr_t vm_addr, const void *buf, size_t size,
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Error &error)
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{
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return m_monitor->WriteMemory(vm_addr, buf, size, error);
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}
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addr_t
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ProcessLinux::DoAllocateMemory(size_t size, uint32_t permissions,
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Error &error)
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{
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return 0;
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}
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addr_t
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ProcessLinux::AllocateMemory(size_t size, uint32_t permissions, Error &error)
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{
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return 0;
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}
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Error
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ProcessLinux::DoDeallocateMemory(lldb::addr_t ptr)
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{
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return Error(1, eErrorTypeGeneric);
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}
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size_t
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ProcessLinux::GetSoftwareBreakpointTrapOpcode(BreakpointSite* bp_site)
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{
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static const uint8_t g_i386_opcode[] = { 0xCC };
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ArchSpec arch = GetTarget().GetArchitecture();
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const uint8_t *opcode = NULL;
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size_t opcode_size = 0;
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switch (arch.GetCore())
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{
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default:
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assert(false && "CPU type not supported!");
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break;
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case ArchSpec::eCore_x86_32_i386:
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case ArchSpec::eCore_x86_64_x86_64:
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opcode = g_i386_opcode;
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opcode_size = sizeof(g_i386_opcode);
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break;
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}
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bp_site->SetTrapOpcode(opcode, opcode_size);
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return opcode_size;
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}
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Error
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ProcessLinux::EnableBreakpoint(BreakpointSite *bp_site)
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{
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return EnableSoftwareBreakpoint(bp_site);
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}
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Error
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ProcessLinux::DisableBreakpoint(BreakpointSite *bp_site)
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{
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return DisableSoftwareBreakpoint(bp_site);
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}
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uint32_t
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ProcessLinux::UpdateThreadListIfNeeded()
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{
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// Do not allow recursive updates.
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return m_thread_list.GetSize(false);
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}
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ByteOrder
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ProcessLinux::GetByteOrder() const
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{
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// FIXME: We should be able to extract this value directly. See comment in
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// ProcessLinux().
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return m_byte_order;
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}
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size_t
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ProcessLinux::PutSTDIN(const char *buf, size_t len, Error &error)
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{
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ssize_t status;
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if ((status = write(m_monitor->GetTerminalFD(), buf, len)) < 0)
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{
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error.SetErrorToErrno();
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return 0;
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}
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return status;
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}
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size_t
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ProcessLinux::GetSTDOUT(char *buf, size_t len, Error &error)
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{
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ssize_t bytes_read;
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// The terminal file descriptor is always in non-block mode.
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if ((bytes_read = read(m_monitor->GetTerminalFD(), buf, len)) < 0)
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{
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if (errno != EAGAIN)
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error.SetErrorToErrno();
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return 0;
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}
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return bytes_read;
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}
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size_t
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ProcessLinux::GetSTDERR(char *buf, size_t len, Error &error)
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{
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return GetSTDOUT(buf, len, error);
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}
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UnixSignals &
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ProcessLinux::GetUnixSignals()
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{
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return m_linux_signals;
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}
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//------------------------------------------------------------------------------
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// ProcessInterface protocol.
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const char *
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ProcessLinux::GetPluginName()
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{
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return "process.linux";
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}
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const char *
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ProcessLinux::GetShortPluginName()
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{
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return "process.linux";
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}
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uint32_t
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ProcessLinux::GetPluginVersion()
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{
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return 1;
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}
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void
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ProcessLinux::GetPluginCommandHelp(const char *command, Stream *strm)
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{
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}
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Error
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ProcessLinux::ExecutePluginCommand(Args &command, Stream *strm)
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{
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return Error(1, eErrorTypeGeneric);
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}
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Log *
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ProcessLinux::EnablePluginLogging(Stream *strm, Args &command)
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{
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return NULL;
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}
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//------------------------------------------------------------------------------
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// Utility functions.
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bool
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ProcessLinux::HasExited()
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{
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switch (GetPrivateState())
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{
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default:
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break;
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case eStateDetached:
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case eStateExited:
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return true;
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}
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return false;
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}
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bool
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ProcessLinux::IsStopped()
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{
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switch (GetPrivateState())
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{
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default:
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break;
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case eStateStopped:
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case eStateCrashed:
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case eStateSuspended:
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return true;
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}
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return false;
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}
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