This renames the LLDB error class to Status, as discussed on the lldb-dev mailing list. A change of this magnitude cannot easily be done without find and replace, but that has potential to catch unwanted occurrences of common strings such as "Error". Every effort was made to find all the obvious things such as the word "Error" appearing in a string, etc, but it's possible there are still some lingering occurences left around. Hopefully nothing too serious. llvm-svn: 302872
279 lines
9.6 KiB
C++
279 lines
9.6 KiB
C++
//===-- RNBContext.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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//
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// Created by Greg Clayton on 12/12/07.
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//
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//===----------------------------------------------------------------------===//
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#include "RNBContext.h"
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#include <sstream>
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#include <sys/stat.h>
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#if defined(__APPLE__)
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#include <pthread.h>
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#include <sched.h>
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#endif
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#include "CFString.h"
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#include "DNB.h"
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#include "DNBLog.h"
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#include "RNBRemote.h"
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//----------------------------------------------------------------------
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// Destructor
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//----------------------------------------------------------------------
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RNBContext::~RNBContext() { SetProcessID(INVALID_NUB_PROCESS); }
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//----------------------------------------------------------------------
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// RNBContext constructor
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//----------------------------------------------------------------------
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const char *RNBContext::EnvironmentAtIndex(size_t index) {
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if (index < m_env_vec.size())
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return m_env_vec[index].c_str();
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else
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return NULL;
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}
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const char *RNBContext::ArgumentAtIndex(size_t index) {
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if (index < m_arg_vec.size())
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return m_arg_vec[index].c_str();
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else
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return NULL;
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}
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bool RNBContext::SetWorkingDirectory(const char *path) {
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struct stat working_directory_stat;
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if (::stat(path, &working_directory_stat) != 0) {
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m_working_directory.clear();
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return false;
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}
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m_working_directory.assign(path);
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return true;
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}
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void RNBContext::SetProcessID(nub_process_t pid) {
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// Delete and events we created
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if (m_pid != INVALID_NUB_PROCESS) {
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StopProcessStatusThread();
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// Unregister this context as a client of the process's events.
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}
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// Assign our new process ID
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m_pid = pid;
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if (pid != INVALID_NUB_PROCESS) {
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StartProcessStatusThread();
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}
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}
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void RNBContext::StartProcessStatusThread() {
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DNBLogThreadedIf(LOG_RNB_PROC, "RNBContext::%s called", __FUNCTION__);
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if ((m_events.GetEventBits() & event_proc_thread_running) == 0) {
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int err = ::pthread_create(&m_pid_pthread, NULL,
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ThreadFunctionProcessStatus, this);
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if (err == 0) {
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// Our thread was successfully kicked off, wait for it to
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// set the started event so we can safely continue
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m_events.WaitForSetEvents(event_proc_thread_running);
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DNBLogThreadedIf(LOG_RNB_PROC, "RNBContext::%s thread got started!",
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__FUNCTION__);
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} else {
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DNBLogThreadedIf(LOG_RNB_PROC,
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"RNBContext::%s thread failed to start: err = %i",
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__FUNCTION__, err);
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m_events.ResetEvents(event_proc_thread_running);
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m_events.SetEvents(event_proc_thread_exiting);
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}
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}
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}
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void RNBContext::StopProcessStatusThread() {
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DNBLogThreadedIf(LOG_RNB_PROC, "RNBContext::%s called", __FUNCTION__);
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if ((m_events.GetEventBits() & event_proc_thread_running) ==
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event_proc_thread_running) {
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struct timespec timeout_abstime;
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DNBTimer::OffsetTimeOfDay(&timeout_abstime, 2, 0);
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// Wait for 2 seconds for the rx thread to exit
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if (m_events.WaitForSetEvents(RNBContext::event_proc_thread_exiting,
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&timeout_abstime) ==
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RNBContext::event_proc_thread_exiting) {
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DNBLogThreadedIf(LOG_RNB_PROC,
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"RNBContext::%s thread stopped as requeseted",
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__FUNCTION__);
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} else {
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DNBLogThreadedIf(LOG_RNB_PROC,
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"RNBContext::%s thread did not stop in 2 seconds...",
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__FUNCTION__);
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// Kill the RX thread???
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}
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}
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}
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//----------------------------------------------------------------------
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// This thread's sole purpose is to watch for any status changes in the
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// child process.
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//----------------------------------------------------------------------
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void *RNBContext::ThreadFunctionProcessStatus(void *arg) {
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RNBRemoteSP remoteSP(g_remoteSP);
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RNBRemote *remote = remoteSP.get();
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if (remote == NULL)
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return NULL;
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RNBContext &ctx = remote->Context();
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nub_process_t pid = ctx.ProcessID();
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DNBLogThreadedIf(LOG_RNB_PROC,
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"RNBContext::%s (arg=%p, pid=%4.4x): thread starting...",
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__FUNCTION__, arg, pid);
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ctx.Events().SetEvents(RNBContext::event_proc_thread_running);
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#if defined(__APPLE__)
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pthread_setname_np("child process status watcher thread");
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#if defined(__arm__) || defined(__arm64__) || defined(__aarch64__)
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struct sched_param thread_param;
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int thread_sched_policy;
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if (pthread_getschedparam(pthread_self(), &thread_sched_policy,
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&thread_param) == 0) {
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thread_param.sched_priority = 47;
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pthread_setschedparam(pthread_self(), thread_sched_policy, &thread_param);
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}
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#endif
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#endif
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bool done = false;
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while (!done) {
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DNBLogThreadedIf(LOG_RNB_PROC,
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"RNBContext::%s calling DNBProcessWaitForEvent(pid, "
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"eEventProcessRunningStateChanged | "
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"eEventProcessStoppedStateChanged | eEventStdioAvailable "
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"| eEventProfileDataAvailable, true)...",
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__FUNCTION__);
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nub_event_t pid_status_event = DNBProcessWaitForEvents(
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pid,
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eEventProcessRunningStateChanged | eEventProcessStoppedStateChanged |
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eEventStdioAvailable | eEventProfileDataAvailable,
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true, NULL);
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DNBLogThreadedIf(LOG_RNB_PROC,
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"RNBContext::%s calling DNBProcessWaitForEvent(pid, "
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"eEventProcessRunningStateChanged | "
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"eEventProcessStoppedStateChanged | eEventStdioAvailable "
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"| eEventProfileDataAvailable, true) => 0x%8.8x",
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__FUNCTION__, pid_status_event);
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if (pid_status_event == 0) {
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DNBLogThreadedIf(LOG_RNB_PROC, "RNBContext::%s (pid=%4.4x) got ZERO back "
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"from DNBProcessWaitForEvent....",
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__FUNCTION__, pid);
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// done = true;
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} else {
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if (pid_status_event & eEventStdioAvailable) {
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DNBLogThreadedIf(
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LOG_RNB_PROC,
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"RNBContext::%s (pid=%4.4x) got stdio available event....",
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__FUNCTION__, pid);
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ctx.Events().SetEvents(RNBContext::event_proc_stdio_available);
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// Wait for the main thread to consume this notification if it requested
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// we wait for it
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ctx.Events().WaitForResetAck(RNBContext::event_proc_stdio_available);
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}
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if (pid_status_event & eEventProfileDataAvailable) {
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DNBLogThreadedIf(
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LOG_RNB_PROC,
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"RNBContext::%s (pid=%4.4x) got profile data event....",
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__FUNCTION__, pid);
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ctx.Events().SetEvents(RNBContext::event_proc_profile_data);
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// Wait for the main thread to consume this notification if it requested
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// we wait for it
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ctx.Events().WaitForResetAck(RNBContext::event_proc_profile_data);
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}
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if (pid_status_event & (eEventProcessRunningStateChanged |
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eEventProcessStoppedStateChanged)) {
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nub_state_t pid_state = DNBProcessGetState(pid);
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DNBLogThreadedIf(
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LOG_RNB_PROC,
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"RNBContext::%s (pid=%4.4x) got process state change: %s",
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__FUNCTION__, pid, DNBStateAsString(pid_state));
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// Let the main thread know there is a process state change to see
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ctx.Events().SetEvents(RNBContext::event_proc_state_changed);
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// Wait for the main thread to consume this notification if it requested
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// we wait for it
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ctx.Events().WaitForResetAck(RNBContext::event_proc_state_changed);
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switch (pid_state) {
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case eStateStopped:
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break;
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case eStateInvalid:
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case eStateExited:
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case eStateDetached:
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done = true;
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break;
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default:
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break;
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}
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}
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// Reset any events that we consumed.
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DNBProcessResetEvents(pid, pid_status_event);
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}
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}
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DNBLogThreadedIf(LOG_RNB_PROC,
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"RNBContext::%s (arg=%p, pid=%4.4x): thread exiting...",
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__FUNCTION__, arg, pid);
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ctx.Events().ResetEvents(event_proc_thread_running);
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ctx.Events().SetEvents(event_proc_thread_exiting);
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return NULL;
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}
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const char *RNBContext::EventsAsString(nub_event_t events, std::string &s) {
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s.clear();
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if (events & event_proc_state_changed)
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s += "proc_state_changed ";
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if (events & event_proc_thread_running)
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s += "proc_thread_running ";
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if (events & event_proc_thread_exiting)
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s += "proc_thread_exiting ";
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if (events & event_proc_stdio_available)
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s += "proc_stdio_available ";
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if (events & event_proc_profile_data)
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s += "proc_profile_data ";
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if (events & event_darwin_log_data_available)
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s += "darwin_log_data_available ";
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if (events & event_read_packet_available)
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s += "read_packet_available ";
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if (events & event_read_thread_running)
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s += "read_thread_running ";
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if (events & event_read_thread_running)
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s += "read_thread_running ";
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return s.c_str();
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}
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const char *RNBContext::LaunchStatusAsString(std::string &s) {
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s.clear();
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const char *err_str = m_launch_status.AsString();
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if (err_str)
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s = err_str;
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else {
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char error_num_str[64];
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snprintf(error_num_str, sizeof(error_num_str), "%u",
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m_launch_status.Status());
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s = error_num_str;
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}
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return s.c_str();
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}
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bool RNBContext::ProcessStateRunning() const {
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nub_state_t pid_state = DNBProcessGetState(m_pid);
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return pid_state == eStateRunning || pid_state == eStateStepping;
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}
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