
Currently it is uses the same code used on linux. Will be replaced with android specific code if needed. Differential Revision: http://reviews.llvm.org/D7613 llvm-svn: 229371
469 lines
14 KiB
C++
469 lines
14 KiB
C++
//===-- NativeThreadLinux.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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#include "NativeThreadLinux.h"
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#include <signal.h>
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#include <sstream>
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#include "NativeProcessLinux.h"
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#include "NativeRegisterContextLinux_x86_64.h"
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#include "lldb/Core/Log.h"
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#include "lldb/Core/State.h"
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#include "lldb/Host/Host.h"
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#include "lldb/Host/HostInfo.h"
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#include "lldb/Host/HostNativeThread.h"
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#include "lldb/lldb-enumerations.h"
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#include "lldb/lldb-private-log.h"
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#include "llvm/ADT/SmallString.h"
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#include "Plugins/Process/POSIX/CrashReason.h"
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#include "Plugins/Process/Utility/RegisterContextLinux_arm64.h"
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#include "Plugins/Process/Utility/RegisterContextLinux_i386.h"
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#include "Plugins/Process/Utility/RegisterContextLinux_x86_64.h"
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#include "Plugins/Process/Utility/RegisterInfoInterface.h"
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using namespace lldb;
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using namespace lldb_private;
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namespace
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{
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void LogThreadStopInfo (Log &log, const ThreadStopInfo &stop_info, const char *const header)
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{
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switch (stop_info.reason)
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{
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case eStopReasonSignal:
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log.Printf ("%s: %s signal 0x%02" PRIx32, __FUNCTION__, header, stop_info.details.signal.signo);
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return;
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case eStopReasonException:
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log.Printf ("%s: %s exception type 0x%02" PRIx64, __FUNCTION__, header, stop_info.details.exception.type);
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return;
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case eStopReasonExec:
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log.Printf ("%s: %s exec, stopping signal 0x%" PRIx32, __FUNCTION__, header, stop_info.details.signal.signo);
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return;
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default:
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log.Printf ("%s: %s invalid stop reason %" PRIu32, __FUNCTION__, header, static_cast<uint32_t> (stop_info.reason));
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}
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}
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}
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NativeThreadLinux::NativeThreadLinux (NativeProcessLinux *process, lldb::tid_t tid) :
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NativeThreadProtocol (process, tid),
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m_state (StateType::eStateInvalid),
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m_stop_info (),
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m_reg_context_sp (),
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m_stop_description ()
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{
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}
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std::string
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NativeThreadLinux::GetName()
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{
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NativeProcessProtocolSP process_sp = m_process_wp.lock ();
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if (!process_sp)
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return "<unknown: no process>";
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// const NativeProcessLinux *const process = reinterpret_cast<NativeProcessLinux*> (process_sp->get ());
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llvm::SmallString<32> thread_name;
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HostNativeThread::GetName(GetID(), thread_name);
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return thread_name.c_str();
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}
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lldb::StateType
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NativeThreadLinux::GetState ()
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{
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return m_state;
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}
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bool
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NativeThreadLinux::GetStopReason (ThreadStopInfo &stop_info, std::string& description)
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{
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Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
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description.clear();
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switch (m_state)
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{
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case eStateStopped:
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case eStateCrashed:
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case eStateExited:
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case eStateSuspended:
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case eStateUnloaded:
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if (log)
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LogThreadStopInfo (*log, m_stop_info, "m_stop_info in thread:");
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stop_info = m_stop_info;
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switch (m_stop_info.reason)
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{
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case StopReason::eStopReasonException:
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case StopReason::eStopReasonBreakpoint:
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case StopReason::eStopReasonWatchpoint:
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description = m_stop_description;
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default:
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break;
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}
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if (log)
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LogThreadStopInfo (*log, stop_info, "returned stop_info:");
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return true;
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case eStateInvalid:
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case eStateConnected:
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case eStateAttaching:
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case eStateLaunching:
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case eStateRunning:
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case eStateStepping:
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case eStateDetached:
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if (log)
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{
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log->Printf ("NativeThreadLinux::%s tid %" PRIu64 " in state %s cannot answer stop reason",
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__FUNCTION__, GetID (), StateAsCString (m_state));
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}
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return false;
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}
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llvm_unreachable("unhandled StateType!");
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}
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lldb_private::NativeRegisterContextSP
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NativeThreadLinux::GetRegisterContext ()
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{
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// Return the register context if we already created it.
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if (m_reg_context_sp)
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return m_reg_context_sp;
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// First select the appropriate RegisterInfoInterface.
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RegisterInfoInterface *reg_interface = nullptr;
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NativeProcessProtocolSP m_process_sp = m_process_wp.lock ();
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if (!m_process_sp)
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return NativeRegisterContextSP ();
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ArchSpec target_arch;
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if (!m_process_sp->GetArchitecture (target_arch))
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return NativeRegisterContextSP ();
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switch (target_arch.GetTriple().getOS())
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{
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case llvm::Triple::Linux:
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switch (target_arch.GetMachine())
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{
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case llvm::Triple::aarch64:
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assert((HostInfo::GetArchitecture ().GetAddressByteSize() == 8) && "Register setting path assumes this is a 64-bit host");
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reg_interface = static_cast<RegisterInfoInterface*>(new RegisterContextLinux_arm64(target_arch));
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break;
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case llvm::Triple::x86:
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case llvm::Triple::x86_64:
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if (HostInfo::GetArchitecture().GetAddressByteSize() == 4)
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{
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// 32-bit hosts run with a RegisterContextLinux_i386 context.
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reg_interface = static_cast<RegisterInfoInterface*>(new RegisterContextLinux_i386(target_arch));
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}
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else
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{
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assert((HostInfo::GetArchitecture().GetAddressByteSize() == 8) &&
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"Register setting path assumes this is a 64-bit host");
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// X86_64 hosts know how to work with 64-bit and 32-bit EXEs using the x86_64 register context.
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reg_interface = static_cast<RegisterInfoInterface*> (new RegisterContextLinux_x86_64 (target_arch));
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}
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break;
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default:
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break;
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}
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break;
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default:
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break;
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}
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assert(reg_interface && "OS or CPU not supported!");
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if (!reg_interface)
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return NativeRegisterContextSP ();
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// Now create the register context.
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switch (target_arch.GetMachine())
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{
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#if 0
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case llvm::Triple::mips64:
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{
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RegisterContextPOSIXProcessMonitor_mips64 *reg_ctx = new RegisterContextPOSIXProcessMonitor_mips64(*this, 0, reg_interface);
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m_posix_thread = reg_ctx;
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m_reg_context_sp.reset(reg_ctx);
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break;
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}
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#endif
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case llvm::Triple::x86:
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case llvm::Triple::x86_64:
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{
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const uint32_t concrete_frame_idx = 0;
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m_reg_context_sp.reset (new NativeRegisterContextLinux_x86_64(*this, concrete_frame_idx, reg_interface));
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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 m_reg_context_sp;
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}
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Error
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NativeThreadLinux::SetWatchpoint (lldb::addr_t addr, size_t size, uint32_t watch_flags, bool hardware)
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{
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if (!hardware)
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return Error ("not implemented");
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Error error = RemoveWatchpoint(addr);
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if (error.Fail()) return error;
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NativeRegisterContextSP reg_ctx = GetRegisterContext ();
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uint32_t wp_index =
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reg_ctx->SetHardwareWatchpoint (addr, size, watch_flags);
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if (wp_index == LLDB_INVALID_INDEX32)
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return Error ("Setting hardware watchpoint failed.");
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m_watchpoint_index_map.insert({addr, wp_index});
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return Error ();
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}
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Error
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NativeThreadLinux::RemoveWatchpoint (lldb::addr_t addr)
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{
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auto wp = m_watchpoint_index_map.find(addr);
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if (wp == m_watchpoint_index_map.end())
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return Error ();
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uint32_t wp_index = wp->second;
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m_watchpoint_index_map.erase(wp);
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if (GetRegisterContext()->ClearHardwareWatchpoint(wp_index))
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return Error ();
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return Error ("Clearing hardware watchpoint failed.");
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}
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void
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NativeThreadLinux::SetLaunching ()
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{
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const StateType new_state = StateType::eStateLaunching;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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// Also mark it as stopped since launching temporarily stops the newly created thread
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// in the ptrace machinery.
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m_stop_info.reason = StopReason::eStopReasonSignal;
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m_stop_info.details.signal.signo = SIGSTOP;
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}
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void
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NativeThreadLinux::SetRunning ()
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{
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const StateType new_state = StateType::eStateRunning;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonNone;
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m_stop_description.clear();
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// If watchpoints have been set, but none on this thread,
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// then this is a new thread. So set all existing watchpoints.
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if (m_watchpoint_index_map.empty())
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{
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const auto &watchpoint_map = GetProcess()->GetWatchpointMap();
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if (watchpoint_map.empty()) return;
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GetRegisterContext()->ClearAllHardwareWatchpoints();
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for (const auto &pair : watchpoint_map)
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{
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const auto& wp = pair.second;
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SetWatchpoint(wp.m_addr, wp.m_size, wp.m_watch_flags, wp.m_hardware);
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}
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}
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}
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void
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NativeThreadLinux::SetStepping ()
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{
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const StateType new_state = StateType::eStateStepping;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonNone;
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}
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void
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NativeThreadLinux::SetStoppedBySignal (uint32_t signo)
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{
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Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
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if (log)
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log->Printf ("NativeThreadLinux::%s called with signal 0x%02" PRIx32, __FUNCTION__, signo);
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const StateType new_state = StateType::eStateStopped;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonSignal;
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m_stop_info.details.signal.signo = signo;
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}
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bool
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NativeThreadLinux::IsStopped (int *signo)
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{
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if (!StateIsStoppedState (m_state, false))
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return false;
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// If we are stopped by a signal, return the signo.
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if (signo &&
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m_state == StateType::eStateStopped &&
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m_stop_info.reason == StopReason::eStopReasonSignal)
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{
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*signo = m_stop_info.details.signal.signo;
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}
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// Regardless, we are stopped.
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return true;
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}
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void
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NativeThreadLinux::SetStoppedByExec ()
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{
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Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
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if (log)
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log->Printf ("NativeThreadLinux::%s()", __FUNCTION__);
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const StateType new_state = StateType::eStateStopped;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonExec;
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m_stop_info.details.signal.signo = SIGSTOP;
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}
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void
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NativeThreadLinux::SetStoppedByBreakpoint ()
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{
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const StateType new_state = StateType::eStateStopped;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonBreakpoint;
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m_stop_info.details.signal.signo = SIGTRAP;
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m_stop_description.clear();
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}
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void
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NativeThreadLinux::SetStoppedByWatchpoint ()
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{
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const StateType new_state = StateType::eStateStopped;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonWatchpoint;
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m_stop_info.details.signal.signo = SIGTRAP;
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NativeRegisterContextLinux_x86_64 *reg_ctx =
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reinterpret_cast<NativeRegisterContextLinux_x86_64*> (GetRegisterContext().get());
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const uint32_t num_hw_watchpoints =
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reg_ctx->NumSupportedHardwareWatchpoints();
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m_stop_description.clear ();
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for (uint32_t wp_index = 0; wp_index < num_hw_watchpoints; ++wp_index)
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if (reg_ctx->IsWatchpointHit(wp_index).Success())
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{
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std::ostringstream ostr;
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ostr << reg_ctx->GetWatchpointAddress(wp_index) << " " << wp_index;
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m_stop_description = ostr.str();
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return;
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}
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Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
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if (log)
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{
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NativeProcessProtocolSP m_process_sp = m_process_wp.lock ();
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lldb::pid_t pid = m_process_sp ? m_process_sp->GetID () : LLDB_INVALID_PROCESS_ID;
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log->Printf ("NativeThreadLinux: thread (pid=%" PRIu64 ", tid=%" PRIu64 ") "
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"stopped by a watchpoint, but failed to find it",
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pid, GetID ());
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}
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}
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bool
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NativeThreadLinux::IsStoppedAtBreakpoint ()
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{
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return GetState () == StateType::eStateStopped &&
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m_stop_info.reason == StopReason::eStopReasonBreakpoint;
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}
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bool
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NativeThreadLinux::IsStoppedAtWatchpoint ()
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{
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return GetState () == StateType::eStateStopped &&
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m_stop_info.reason == StopReason::eStopReasonWatchpoint;
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}
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void
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NativeThreadLinux::SetStoppedByTrace ()
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{
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const StateType new_state = StateType::eStateStopped;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonTrace;
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m_stop_info.details.signal.signo = SIGTRAP;
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}
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void
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NativeThreadLinux::SetCrashedWithException (const siginfo_t& info)
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{
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const StateType new_state = StateType::eStateCrashed;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonException;
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m_stop_info.details.signal.signo = info.si_signo;
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const auto reason = GetCrashReason (info);
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m_stop_description = GetCrashReasonString (reason, reinterpret_cast<lldb::addr_t> (info.si_addr));
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}
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void
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NativeThreadLinux::SetSuspended ()
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{
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const StateType new_state = StateType::eStateSuspended;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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// FIXME what makes sense here? Do we need a suspended StopReason?
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m_stop_info.reason = StopReason::eStopReasonNone;
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}
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void
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NativeThreadLinux::SetExited ()
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{
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const StateType new_state = StateType::eStateExited;
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MaybeLogStateChange (new_state);
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m_state = new_state;
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m_stop_info.reason = StopReason::eStopReasonThreadExiting;
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}
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void
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NativeThreadLinux::MaybeLogStateChange (lldb::StateType new_state)
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{
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Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
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// If we're not logging, we're done.
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if (!log)
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return;
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// If this is a state change to the same state, we're done.
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lldb::StateType old_state = m_state;
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if (new_state == old_state)
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return;
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NativeProcessProtocolSP m_process_sp = m_process_wp.lock ();
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lldb::pid_t pid = m_process_sp ? m_process_sp->GetID () : LLDB_INVALID_PROCESS_ID;
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// Log it.
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log->Printf ("NativeThreadLinux: thread (pid=%" PRIu64 ", tid=%" PRIu64 ") changing from state %s to %s", pid, GetID (), StateAsCString (old_state), StateAsCString (new_state));
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}
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