2010-07-24 10:19:04 +08:00
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//===-- ProcessMonitor.h -------------------------------------- -*- 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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#ifndef liblldb_ProcessMonitor_H_
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#define liblldb_ProcessMonitor_H_
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// C Includes
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#include <semaphore.h>
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#include <signal.h>
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2010-07-24 10:19:04 +08:00
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// C++ Includes
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// Other libraries and framework includes
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#include "lldb/lldb-types.h"
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#include "lldb/Host/Mutex.h"
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namespace lldb_private
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{
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class Error;
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class Module;
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class Scalar;
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} // End lldb_private namespace.
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class ProcessLinux;
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class Operation;
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/// @class ProcessMonitor
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/// @brief Manages communication with the inferior (debugee) process.
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///
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/// Upon construction, this class prepares and launches an inferior process for
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/// debugging.
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///
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/// Changes in the inferior process state are propagated to the associated
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/// ProcessLinux instance by calling ProcessLinux::SendMessage with the
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/// appropriate ProcessMessage events.
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///
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/// A purposely minimal set of operations are provided to interrogate and change
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/// the inferior process state.
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class ProcessMonitor
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{
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public:
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/// Launches an inferior process ready for debugging. Forms the
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/// implementation of Process::DoLaunch.
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ProcessMonitor(ProcessLinux *process,
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lldb_private::Module *module,
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char const *argv[],
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char const *envp[],
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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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lldb_private::Error &error);
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2011-06-15 03:19:50 +08:00
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ProcessMonitor(ProcessLinux *process,
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lldb::pid_t pid,
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lldb_private::Error &error);
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~ProcessMonitor();
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/// Provides the process number of debugee.
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lldb::pid_t
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GetPID() const { return m_pid; }
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/// Returns the process associated with this ProcessMonitor.
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ProcessLinux &
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GetProcess() { return *m_process; }
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/// Returns a file descriptor to the controlling terminal of the inferior
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/// process.
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///
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/// Reads from this file descriptor yield both the standard output and
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/// standard error of this debugee. Even if stderr and stdout were
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/// redirected on launch it may still happen that data is available on this
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/// descriptor (if the inferior process opens /dev/tty, for example).
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///
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/// If this monitor was attached to an existing process this method returns
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/// -1.
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int
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GetTerminalFD() const { return m_terminal_fd; }
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/// Reads @p size bytes from address @vm_adder in the inferior process
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/// address space.
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///
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/// This method is provided to implement Process::DoReadMemory.
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size_t
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ReadMemory(lldb::addr_t vm_addr, void *buf, size_t size,
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lldb_private::Error &error);
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/// Writes @p size bytes from address @p vm_adder in the inferior process
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/// address space.
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///
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/// This method is provided to implement Process::DoWriteMemory.
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size_t
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WriteMemory(lldb::addr_t vm_addr, const void *buf, size_t size,
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lldb_private::Error &error);
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/// Reads the contents from the register identified by the given (architecture
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/// dependent) offset.
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///
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/// This method is provided for use by RegisterContextLinux derivatives.
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bool
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ReadRegisterValue(unsigned offset, lldb_private::RegisterValue &value);
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/// Writes the given value to the register identified by the given
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/// (architecture dependent) offset.
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///
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/// This method is provided for use by RegisterContextLinux derivatives.
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bool
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WriteRegisterValue(unsigned offset, const lldb_private::RegisterValue &value);
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/// Reads all general purpose registers into the specified buffer.
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bool
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ReadGPR(void *buf);
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/// Reads all floating point registers into the specified buffer.
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bool
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ReadFPR(void *buf);
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/// Writes all general purpose registers into the specified buffer.
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bool
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WriteGPR(void *buf);
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/// Writes all floating point registers into the specified buffer.
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bool
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WriteFPR(void *buf);
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/// Writes a siginfo_t structure corresponding to the given thread ID to the
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/// memory region pointed to by @p siginfo.
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bool
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GetSignalInfo(lldb::tid_t tid, void *siginfo);
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/// Writes the raw event message code (vis-a-vis PTRACE_GETEVENTMSG)
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/// corresponding to the given thread IDto the memory pointed to by @p
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/// message.
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bool
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GetEventMessage(lldb::tid_t tid, unsigned long *message);
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/// Resumes the given thread. If @p signo is anything but
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/// LLDB_INVALID_SIGNAL_NUMBER, deliver that signal to the thread.
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bool
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Resume(lldb::tid_t tid, uint32_t signo);
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/// Single steps the given thread. If @p signo is anything but
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/// LLDB_INVALID_SIGNAL_NUMBER, deliver that signal to the thread.
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bool
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SingleStep(lldb::tid_t tid, uint32_t signo);
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/// Sends the inferior process a PTRACE_KILL signal. The inferior will
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/// still exists and can be interrogated. Once resumed it will exit as
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/// though it received a SIGKILL.
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bool
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BringProcessIntoLimbo();
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bool
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Detach();
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private:
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ProcessLinux *m_process;
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lldb::thread_t m_operation_thread;
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lldb::pid_t m_pid;
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int m_terminal_fd;
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lldb::thread_t m_monitor_thread;
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lldb_private::Mutex m_server_mutex;
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int m_client_fd;
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int m_server_fd;
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struct OperationArgs
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{
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OperationArgs(ProcessMonitor *monitor);
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~OperationArgs();
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ProcessMonitor *m_monitor; // The monitor performing the attach.
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sem_t m_semaphore; // Posted to once operation complete.
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lldb_private::Error m_error; // Set if process operation failed.
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};
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/// @class LauchArgs
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///
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/// @brief Simple structure to pass data to the thread responsible for
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/// launching a child process.
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struct LaunchArgs : OperationArgs
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{
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LaunchArgs(ProcessMonitor *monitor,
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lldb_private::Module *module,
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char const **argv,
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char const **envp,
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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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~LaunchArgs();
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lldb_private::Module *m_module; // The executable image to launch.
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char const **m_argv; // Process arguments.
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char const **m_envp; // Process environment.
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const char *m_stdin_path; // Redirect stdin or NULL.
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const char *m_stdout_path; // Redirect stdout or NULL.
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const char *m_stderr_path; // Redirect stderr or NULL.
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};
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void
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StartLaunchOpThread(LaunchArgs *args, lldb_private::Error &error);
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void
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StopLaunchOpThread();
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static void *
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LaunchOpThread(void *arg);
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static bool
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Launch(LaunchArgs *args);
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bool
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EnableIPC();
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struct AttachArgs : OperationArgs
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{
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AttachArgs(ProcessMonitor *monitor,
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lldb::pid_t pid);
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~AttachArgs();
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lldb::pid_t m_pid; // pid of the process to be attached.
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};
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void
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StartAttachOpThread(AttachArgs *args, lldb_private::Error &error);
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void
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StopAttachOpThread();
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static void *
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AttachOpThread(void *args);
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static bool
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Attach(AttachArgs *args);
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static void
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ServeOperation(OperationArgs *args);
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static bool
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DupDescriptor(const char *path, int fd, int flags);
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static bool
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MonitorCallback(void *callback_baton,
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lldb::pid_t pid, int signal, int status);
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static ProcessMessage
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MonitorSIGTRAP(ProcessMonitor *monitor,
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const struct siginfo *info, lldb::pid_t pid);
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static ProcessMessage
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MonitorSignal(ProcessMonitor *monitor,
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const struct siginfo *info, lldb::pid_t pid);
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static ProcessMessage::CrashReason
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GetCrashReasonForSIGSEGV(const struct siginfo *info);
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static ProcessMessage::CrashReason
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GetCrashReasonForSIGILL(const struct siginfo *info);
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static ProcessMessage::CrashReason
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GetCrashReasonForSIGFPE(const struct siginfo *info);
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static ProcessMessage::CrashReason
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GetCrashReasonForSIGBUS(const struct siginfo *info);
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void
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DoOperation(Operation *op);
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/// Stops the child monitor thread.
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void
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StopMonitoringChildProcess();
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void
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StopMonitor();
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void
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CloseFD(int &fd);
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};
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#endif // #ifndef liblldb_ProcessMonitor_H_
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