forked from OSchip/llvm-project
394 lines
12 KiB
C++
394 lines
12 KiB
C++
//===-- source/Host/linux/Host.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 <stdio.h>
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#include <sys/utsname.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <dirent.h>
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#include <fcntl.h>
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// C++ Includes
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// Other libraries and framework includes
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// Project includes
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#include "lldb/Core/Error.h"
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#include "lldb/Core/Log.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Host/Host.h"
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#include "lldb/Host/HostInfo.h"
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#ifdef __ANDROID_NDK__
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#include "lldb/Host/android/Android.h"
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#endif
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#include "lldb/Core/DataBufferHeap.h"
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#include "lldb/Core/DataExtractor.h"
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#include "lldb/Core/ModuleSpec.h"
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#include "lldb/Symbol/ObjectFile.h"
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#include "Plugins/Process/Linux/ProcFileReader.h"
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using namespace lldb;
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using namespace lldb_private;
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typedef enum ProcessStateFlags
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{
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eProcessStateRunning = (1u << 0), // Running
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eProcessStateSleeping = (1u << 1), // Sleeping in an interruptible wait
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eProcessStateWaiting = (1u << 2), // Waiting in an uninterruptible disk sleep
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eProcessStateZombie = (1u << 3), // Zombie
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eProcessStateTracedOrStopped = (1u << 4), // Traced or stopped (on a signal)
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eProcessStatePaging = (1u << 5) // Paging
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} ProcessStateFlags;
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typedef struct ProcessStatInfo
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{
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lldb::pid_t ppid; // Parent Process ID
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uint32_t fProcessState; // ProcessStateFlags
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} ProcessStatInfo;
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// Get the process info with additional information from /proc/$PID/stat (like process state, and tracer pid).
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static bool GetProcessAndStatInfo (lldb::pid_t pid, ProcessInstanceInfo &process_info, ProcessStatInfo &stat_info, lldb::pid_t &tracerpid);
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static bool
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ReadProcPseudoFileStat (lldb::pid_t pid, ProcessStatInfo& stat_info)
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{
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// Read the /proc/$PID/stat file.
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lldb::DataBufferSP buf_sp = process_linux::ProcFileReader::ReadIntoDataBuffer (pid, "stat");
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// The filename of the executable is stored in parenthesis right after the pid. We look for the closing
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// parenthesis for the filename and work from there in case the name has something funky like ')' in it.
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const char *filename_end = strrchr ((const char *)buf_sp->GetBytes(), ')');
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if (filename_end)
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{
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char state = '\0';
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int ppid = LLDB_INVALID_PROCESS_ID;
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// Read state and ppid.
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sscanf (filename_end + 1, " %c %d", &state, &ppid);
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stat_info.ppid = ppid;
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switch (state)
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{
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case 'R':
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stat_info.fProcessState |= eProcessStateRunning;
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break;
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case 'S':
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stat_info.fProcessState |= eProcessStateSleeping;
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break;
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case 'D':
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stat_info.fProcessState |= eProcessStateWaiting;
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break;
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case 'Z':
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stat_info.fProcessState |= eProcessStateZombie;
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break;
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case 'T':
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stat_info.fProcessState |= eProcessStateTracedOrStopped;
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break;
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case 'W':
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stat_info.fProcessState |= eProcessStatePaging;
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break;
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}
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return true;
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}
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return false;
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}
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static void
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GetLinuxProcessUserAndGroup (lldb::pid_t pid, ProcessInstanceInfo &process_info, lldb::pid_t &tracerpid)
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{
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tracerpid = 0;
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uint32_t rUid = UINT32_MAX; // Real User ID
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uint32_t eUid = UINT32_MAX; // Effective User ID
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uint32_t rGid = UINT32_MAX; // Real Group ID
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uint32_t eGid = UINT32_MAX; // Effective Group ID
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// Read the /proc/$PID/status file and parse the Uid:, Gid:, and TracerPid: fields.
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lldb::DataBufferSP buf_sp = process_linux::ProcFileReader::ReadIntoDataBuffer (pid, "status");
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static const char uid_token[] = "Uid:";
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char *buf_uid = strstr ((char *)buf_sp->GetBytes(), uid_token);
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if (buf_uid)
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{
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// Real, effective, saved set, and file system UIDs. Read the first two.
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buf_uid += sizeof(uid_token);
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rUid = strtol (buf_uid, &buf_uid, 10);
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eUid = strtol (buf_uid, &buf_uid, 10);
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}
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static const char gid_token[] = "Gid:";
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char *buf_gid = strstr ((char *)buf_sp->GetBytes(), gid_token);
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if (buf_gid)
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{
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// Real, effective, saved set, and file system GIDs. Read the first two.
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buf_gid += sizeof(gid_token);
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rGid = strtol (buf_gid, &buf_gid, 10);
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eGid = strtol (buf_gid, &buf_gid, 10);
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}
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static const char tracerpid_token[] = "TracerPid:";
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char *buf_tracerpid = strstr((char *)buf_sp->GetBytes(), tracerpid_token);
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if (buf_tracerpid)
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{
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// Tracer PID. 0 if we're not being debugged.
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buf_tracerpid += sizeof(tracerpid_token);
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tracerpid = strtol (buf_tracerpid, &buf_tracerpid, 10);
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}
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process_info.SetUserID (rUid);
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process_info.SetEffectiveUserID (eUid);
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process_info.SetGroupID (rGid);
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process_info.SetEffectiveGroupID (eGid);
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}
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lldb::DataBufferSP
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Host::GetAuxvData(lldb_private::Process *process)
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{
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return process_linux::ProcFileReader::ReadIntoDataBuffer (process->GetID(), "auxv");
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}
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lldb::DataBufferSP
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Host::GetAuxvData (lldb::pid_t pid)
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{
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return process_linux::ProcFileReader::ReadIntoDataBuffer (pid, "auxv");
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}
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static bool
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IsDirNumeric(const char *dname)
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{
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for (; *dname; dname++)
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{
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if (!isdigit (*dname))
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return false;
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}
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return true;
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}
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uint32_t
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Host::FindProcesses (const ProcessInstanceInfoMatch &match_info, ProcessInstanceInfoList &process_infos)
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{
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static const char procdir[] = "/proc/";
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DIR *dirproc = opendir (procdir);
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if (dirproc)
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{
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struct dirent *direntry = NULL;
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const uid_t our_uid = getuid();
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const lldb::pid_t our_pid = getpid();
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bool all_users = match_info.GetMatchAllUsers();
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while ((direntry = readdir (dirproc)) != NULL)
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{
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if (direntry->d_type != DT_DIR || !IsDirNumeric (direntry->d_name))
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continue;
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lldb::pid_t pid = atoi (direntry->d_name);
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// Skip this process.
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if (pid == our_pid)
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continue;
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lldb::pid_t tracerpid;
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ProcessStatInfo stat_info;
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ProcessInstanceInfo process_info;
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if (!GetProcessAndStatInfo (pid, process_info, stat_info, tracerpid))
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continue;
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// Skip if process is being debugged.
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if (tracerpid != 0)
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continue;
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// Skip zombies.
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if (stat_info.fProcessState & eProcessStateZombie)
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continue;
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// Check for user match if we're not matching all users and not running as root.
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if (!all_users && (our_uid != 0) && (process_info.GetUserID() != our_uid))
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continue;
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if (match_info.Matches (process_info))
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{
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process_infos.Append (process_info);
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}
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}
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closedir (dirproc);
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}
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return process_infos.GetSize();
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}
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bool
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Host::FindProcessThreads (const lldb::pid_t pid, TidMap &tids_to_attach)
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{
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bool tids_changed = false;
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static const char procdir[] = "/proc/";
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static const char taskdir[] = "/task/";
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std::string process_task_dir = procdir + std::to_string(pid) + taskdir;
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DIR *dirproc = opendir (process_task_dir.c_str());
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if (dirproc)
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{
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struct dirent *direntry = NULL;
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while ((direntry = readdir (dirproc)) != NULL)
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{
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if (direntry->d_type != DT_DIR || !IsDirNumeric (direntry->d_name))
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continue;
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lldb::tid_t tid = atoi(direntry->d_name);
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TidMap::iterator it = tids_to_attach.find(tid);
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if (it == tids_to_attach.end())
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{
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tids_to_attach.insert(TidPair(tid, false));
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tids_changed = true;
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}
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}
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closedir (dirproc);
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}
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return tids_changed;
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}
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static bool
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GetELFProcessCPUType (const char *exe_path, ProcessInstanceInfo &process_info)
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{
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// Clear the architecture.
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process_info.GetArchitecture().Clear();
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ModuleSpecList specs;
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FileSpec filespec (exe_path, false);
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const size_t num_specs = ObjectFile::GetModuleSpecifications (filespec, 0, 0, specs);
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// GetModuleSpecifications() could fail if the executable has been deleted or is locked.
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// But it shouldn't return more than 1 architecture.
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assert(num_specs <= 1 && "Linux plugin supports only a single architecture");
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if (num_specs == 1)
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{
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ModuleSpec module_spec;
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if (specs.GetModuleSpecAtIndex (0, module_spec) && module_spec.GetArchitecture().IsValid())
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{
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process_info.GetArchitecture () = module_spec.GetArchitecture();
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return true;
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}
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}
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return false;
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}
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static bool
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GetProcessAndStatInfo (lldb::pid_t pid, ProcessInstanceInfo &process_info, ProcessStatInfo &stat_info, lldb::pid_t &tracerpid)
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{
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tracerpid = 0;
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process_info.Clear();
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::memset (&stat_info, 0, sizeof(stat_info));
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stat_info.ppid = LLDB_INVALID_PROCESS_ID;
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// Use special code here because proc/[pid]/exe is a symbolic link.
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char link_path[PATH_MAX];
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char exe_path[PATH_MAX] = "";
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if (snprintf (link_path, PATH_MAX, "/proc/%" PRIu64 "/exe", pid) <= 0)
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return false;
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ssize_t len = readlink (link_path, exe_path, sizeof(exe_path) - 1);
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if (len <= 0)
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return false;
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// readlink does not append a null byte.
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exe_path[len] = 0;
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// If the binary has been deleted, the link name has " (deleted)" appended.
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// Remove if there.
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static const ssize_t deleted_len = strlen(" (deleted)");
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if (len > deleted_len &&
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!strcmp(exe_path + len - deleted_len, " (deleted)"))
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{
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exe_path[len - deleted_len] = 0;
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}
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else
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{
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GetELFProcessCPUType (exe_path, process_info);
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}
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process_info.SetProcessID(pid);
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process_info.GetExecutableFile().SetFile(exe_path, false);
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process_info.GetArchitecture().MergeFrom(HostInfo::GetArchitecture());
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lldb::DataBufferSP buf_sp;
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// Get the process environment.
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buf_sp = process_linux::ProcFileReader::ReadIntoDataBuffer(pid, "environ");
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Args &info_env = process_info.GetEnvironmentEntries();
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char *next_var = (char *)buf_sp->GetBytes();
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char *end_buf = next_var + buf_sp->GetByteSize();
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while (next_var < end_buf && 0 != *next_var)
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{
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info_env.AppendArgument(next_var);
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next_var += strlen(next_var) + 1;
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}
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// Get the command line used to start the process.
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buf_sp = process_linux::ProcFileReader::ReadIntoDataBuffer(pid, "cmdline");
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// Grab Arg0 first, if there is one.
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char *cmd = (char *)buf_sp->GetBytes();
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if (cmd)
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{
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process_info.SetArg0(cmd);
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// Now process any remaining arguments.
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Args &info_args = process_info.GetArguments();
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char *next_arg = cmd + strlen(cmd) + 1;
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end_buf = cmd + buf_sp->GetByteSize();
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while (next_arg < end_buf && 0 != *next_arg)
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{
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info_args.AppendArgument(next_arg);
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next_arg += strlen(next_arg) + 1;
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}
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}
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// Read /proc/$PID/stat to get our parent pid.
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if (ReadProcPseudoFileStat (pid, stat_info))
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{
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process_info.SetParentProcessID (stat_info.ppid);
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}
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// Get User and Group IDs and get tracer pid.
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GetLinuxProcessUserAndGroup (pid, process_info, tracerpid);
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return true;
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}
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bool
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Host::GetProcessInfo (lldb::pid_t pid, ProcessInstanceInfo &process_info)
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{
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lldb::pid_t tracerpid;
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ProcessStatInfo stat_info;
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return GetProcessAndStatInfo (pid, process_info, stat_info, tracerpid);
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}
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size_t
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Host::GetEnvironment (StringList &env)
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{
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char **host_env = environ;
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char *env_entry;
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size_t i;
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for (i=0; (env_entry = host_env[i]) != NULL; ++i)
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env.AppendString(env_entry);
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return i;
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}
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Error
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Host::ShellExpandArguments (ProcessLaunchInfo &launch_info)
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{
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return Error("unimplemented");
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}
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