hotspot/agent/src/os/linux/ps_proc.c
author rbackman
Wed, 13 Feb 2013 09:46:19 +0100
changeset 15734 68f78eb98356
parent 7662 5f31baaff55b
child 20295 a5dd1b071c32
permissions -rw-r--r--
8008088: SA can hang the VM Reviewed-by: mgronlun, sla, dholmes
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/*
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 * Copyright (c) 2003, 2013, Oracle and/or its affiliates. All rights reserved.
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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 *
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 * This code is free software; you can redistribute it and/or modify it
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 * under the terms of the GNU General Public License version 2 only, as
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 * published by the Free Software Foundation.
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 *
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 * This code is distributed in the hope that it will be useful, but WITHOUT
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 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
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 * version 2 for more details (a copy is included in the LICENSE file that
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 * accompanied this code).
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 *
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 * You should have received a copy of the GNU General Public License version
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 * 2 along with this work; if not, write to the Free Software Foundation,
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 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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 *
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 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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 * or visit www.oracle.com if you need additional information or have any
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 * questions.
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 *
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 */
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <signal.h>
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#include <errno.h>
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#include <sys/ptrace.h>
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#include "libproc_impl.h"
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#if defined(x86_64) && !defined(amd64)
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#define amd64 1
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#endif
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#ifndef __WALL
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#define __WALL          0x40000000  // Copied from /usr/include/linux/wait.h
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#endif
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// This file has the libproc implementation specific to live process
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// For core files, refer to ps_core.c
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static inline uintptr_t align(uintptr_t ptr, size_t size) {
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  return (ptr & ~(size - 1));
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}
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// ---------------------------------------------
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// ptrace functions
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// ---------------------------------------------
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// read "size" bytes of data from "addr" within the target process.
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// unlike the standard ptrace() function, process_read_data() can handle
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// unaligned address - alignment check, if required, should be done
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// before calling process_read_data.
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static bool process_read_data(struct ps_prochandle* ph, uintptr_t addr, char *buf, size_t size) {
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  long rslt;
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  size_t i, words;
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  uintptr_t end_addr = addr + size;
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  uintptr_t aligned_addr = align(addr, sizeof(long));
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  if (aligned_addr != addr) {
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    char *ptr = (char *)&rslt;
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    errno = 0;
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    rslt = ptrace(PTRACE_PEEKDATA, ph->pid, aligned_addr, 0);
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    if (errno) {
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      print_debug("ptrace(PTRACE_PEEKDATA, ..) failed for %d bytes @ %lx\n", size, addr);
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      return false;
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    }
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    for (; aligned_addr != addr; aligned_addr++, ptr++);
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    for (; ((intptr_t)aligned_addr % sizeof(long)) && aligned_addr < end_addr;
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        aligned_addr++)
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       *(buf++) = *(ptr++);
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  }
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  words = (end_addr - aligned_addr) / sizeof(long);
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  // assert((intptr_t)aligned_addr % sizeof(long) == 0);
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  for (i = 0; i < words; i++) {
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    errno = 0;
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    rslt = ptrace(PTRACE_PEEKDATA, ph->pid, aligned_addr, 0);
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    if (errno) {
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      print_debug("ptrace(PTRACE_PEEKDATA, ..) failed for %d bytes @ %lx\n", size, addr);
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      return false;
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    }
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    *(long *)buf = rslt;
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    buf += sizeof(long);
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    aligned_addr += sizeof(long);
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  }
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  if (aligned_addr != end_addr) {
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    char *ptr = (char *)&rslt;
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    errno = 0;
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    rslt = ptrace(PTRACE_PEEKDATA, ph->pid, aligned_addr, 0);
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    if (errno) {
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      print_debug("ptrace(PTRACE_PEEKDATA, ..) failed for %d bytes @ %lx\n", size, addr);
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      return false;
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    }
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    for (; aligned_addr != end_addr; aligned_addr++)
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       *(buf++) = *(ptr++);
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  }
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  return true;
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}
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// null implementation for write
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static bool process_write_data(struct ps_prochandle* ph,
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                             uintptr_t addr, const char *buf , size_t size) {
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  return false;
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}
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// "user" should be a pointer to a user_regs_struct
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static bool process_get_lwp_regs(struct ps_prochandle* ph, pid_t pid, struct user_regs_struct *user) {
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  // we have already attached to all thread 'pid's, just use ptrace call
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  // to get regset now. Note that we don't cache regset upfront for processes.
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// Linux on x86 and sparc are different.  On x86 ptrace(PTRACE_GETREGS, ...)
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// uses pointer from 4th argument and ignores 3rd argument.  On sparc it uses
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// pointer from 3rd argument and ignores 4th argument
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#if defined(sparc) || defined(sparcv9)
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#define ptrace_getregs(request, pid, addr, data) ptrace(request, pid, addr, data)
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#else
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#define ptrace_getregs(request, pid, addr, data) ptrace(request, pid, data, addr)
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#endif
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#if defined(_LP64) && defined(PTRACE_GETREGS64)
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#define PTRACE_GETREGS_REQ PTRACE_GETREGS64
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#elif defined(PTRACE_GETREGS)
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#define PTRACE_GETREGS_REQ PTRACE_GETREGS
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#elif defined(PT_GETREGS)
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#define PTRACE_GETREGS_REQ PT_GETREGS
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#endif
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#ifdef PTRACE_GETREGS_REQ
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 if (ptrace_getregs(PTRACE_GETREGS_REQ, pid, user, NULL) < 0) {
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   print_debug("ptrace(PTRACE_GETREGS, ...) failed for lwp %d\n", pid);
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   return false;
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 }
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 return true;
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#else
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 print_debug("ptrace(PTRACE_GETREGS, ...) not supported\n");
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 return false;
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#endif
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}
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static bool ptrace_continue(pid_t pid, int signal) {
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  // pass the signal to the process so we don't swallow it
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  if (ptrace(PTRACE_CONT, pid, NULL, signal) < 0) {
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    print_debug("ptrace(PTRACE_CONT, ..) failed for %d\n", pid);
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    return false;
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  }
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  return true;
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}
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// waits until the ATTACH has stopped the process
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// by signal SIGSTOP
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static bool ptrace_waitpid(pid_t pid) {
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  int ret;
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  int status;
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  while (true) {
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    // Wait for debuggee to stop.
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    ret = waitpid(pid, &status, 0);
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    if (ret == -1 && errno == ECHILD) {
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      // try cloned process.
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      ret = waitpid(pid, &status, __WALL);
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    }
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    if (ret >= 0) {
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      if (WIFSTOPPED(status)) {
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        // Any signal will stop the thread, make sure it is SIGSTOP. Otherwise SIGSTOP
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        // will still be pending and delivered when the process is DETACHED and the process
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        // will go to sleep.
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        if (WSTOPSIG(status) == SIGSTOP) {
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          // Debuggee stopped by SIGSTOP.
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          return true;
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        }
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        if (!ptrace_continue(pid, WSTOPSIG(status))) {
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          print_error("Failed to correctly attach to VM. VM might HANG! [PTRACE_CONT failed, stopped by %d]\n", WSTOPSIG(status));
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          return false;
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        }
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      } else {
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        print_debug("waitpid(): Child process exited/terminated (status = 0x%x)\n", status);
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        return false;
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      }
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    } else {
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      switch (errno) {
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        case EINTR:
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          continue;
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          break;
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        case ECHILD:
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          print_debug("waitpid() failed. Child process pid (%d) does not exist \n", pid);
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          break;
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        case EINVAL:
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          print_debug("waitpid() failed. Invalid options argument.\n");
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          break;
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        default:
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          print_debug("waitpid() failed. Unexpected error %d\n",errno);
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          break;
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      }
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      return false;
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    }
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  }
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}
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// attach to a process/thread specified by "pid"
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static bool ptrace_attach(pid_t pid) {
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  if (ptrace(PTRACE_ATTACH, pid, NULL, NULL) < 0) {
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    print_debug("ptrace(PTRACE_ATTACH, ..) failed for %d\n", pid);
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    return false;
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  } else {
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    return ptrace_waitpid(pid);
1
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  }
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}
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// -------------------------------------------------------
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// functions for obtaining library information
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// -------------------------------------------------------
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/*
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 * splits a string _str_ into substrings with delimiter _delim_ by replacing old * delimiters with _new_delim_ (ideally, '\0'). the address of each substring
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 * is stored in array _ptrs_ as the return value. the maximum capacity of _ptrs_ * array is specified by parameter _n_.
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 * RETURN VALUE: total number of substrings (always <= _n_)
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 * NOTE: string _str_ is modified if _delim_!=_new_delim_
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 */
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static int split_n_str(char * str, int n, char ** ptrs, char delim, char new_delim)
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{
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   int i;
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   for(i = 0; i < n; i++) ptrs[i] = NULL;
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   if (str == NULL || n < 1 ) return 0;
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   i = 0;
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   // skipping leading blanks
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   while(*str&&*str==delim) str++;
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   while(*str&&i<n){
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     ptrs[i++] = str;
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     while(*str&&*str!=delim) str++;
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     while(*str&&*str==delim) *(str++) = new_delim;
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   }
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   return i;
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}
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/*
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 * fgets without storing '\n' at the end of the string
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 */
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static char * fgets_no_cr(char * buf, int n, FILE *fp)
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{
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   char * rslt = fgets(buf, n, fp);
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   if (rslt && buf && *buf){
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       char *p = strchr(buf, '\0');
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       if (*--p=='\n') *p='\0';
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   }
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   return rslt;
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}
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   256
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// callback for read_thread_info
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static bool add_new_thread(struct ps_prochandle* ph, pthread_t pthread_id, lwpid_t lwp_id) {
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  return add_thread_info(ph, pthread_id, lwp_id) != NULL;
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}
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static bool read_lib_info(struct ps_prochandle* ph) {
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  char fname[32];
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  char buf[256];
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  FILE *fp = NULL;
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  sprintf(fname, "/proc/%d/maps", ph->pid);
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  fp = fopen(fname, "r");
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  if (fp == NULL) {
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    print_debug("can't open /proc/%d/maps file\n", ph->pid);
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    return false;
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   272
  }
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  while(fgets_no_cr(buf, 256, fp)){
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    char * word[6];
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    int nwords = split_n_str(buf, 6, word, ' ', '\0');
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    if (nwords > 5 && find_lib(ph, word[5]) == false) {
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       intptr_t base;
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       lib_info* lib;
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#ifdef _LP64
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       sscanf(word[0], "%lx", &base);
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#else
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       sscanf(word[0], "%x", &base);
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#endif
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       if ((lib = add_lib_info(ph, word[5], (uintptr_t)base)) == NULL)
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          continue; // ignore, add_lib_info prints error
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   287
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       // we don't need to keep the library open, symtab is already
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       // built. Only for core dump we need to keep the fd open.
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       close(lib->fd);
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       lib->fd = -1;
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   292
    }
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   293
  }
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  fclose(fp);
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  return true;
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   296
}
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   297
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// detach a given pid
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static bool ptrace_detach(pid_t pid) {
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  if (pid && ptrace(PTRACE_DETACH, pid, NULL, NULL) < 0) {
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   301
    print_debug("ptrace(PTRACE_DETACH, ..) failed for %d\n", pid);
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   302
    return false;
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   303
  } else {
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   304
    return true;
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   305
  }
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   306
}
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   307
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   308
// detach all pids of a ps_prochandle
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   309
static void detach_all_pids(struct ps_prochandle* ph) {
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   310
  thread_info* thr = ph->threads;
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   311
  while (thr) {
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     ptrace_detach(thr->lwp_id);
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   313
     thr = thr->next;
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  }
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   315
}
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   316
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   317
static void process_cleanup(struct ps_prochandle* ph) {
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   318
  detach_all_pids(ph);
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   319
}
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   320
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static ps_prochandle_ops process_ops = {
223
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  .release=  process_cleanup,
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   323
  .p_pread=  process_read_data,
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   324
  .p_pwrite= process_write_data,
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   325
  .get_lwp_regs= process_get_lwp_regs
1
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   326
};
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   327
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   328
// attach to the process. One and only one exposed stuff
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   329
struct ps_prochandle* Pgrab(pid_t pid) {
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   330
  struct ps_prochandle* ph = NULL;
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   331
  thread_info* thr = NULL;
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   332
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   333
  if ( (ph = (struct ps_prochandle*) calloc(1, sizeof(struct ps_prochandle))) == NULL) {
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   334
     print_debug("can't allocate memory for ps_prochandle\n");
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   335
     return NULL;
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   336
  }
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   337
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   338
  if (ptrace_attach(pid) != true) {
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   339
     free(ph);
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   340
     return NULL;
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   341
  }
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   342
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   343
  // initialize ps_prochandle
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  ph->pid = pid;
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   345
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   346
  // initialize vtable
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   347
  ph->ops = &process_ops;
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   348
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   349
  // read library info and symbol tables, must do this before attaching threads,
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   350
  // as the symbols in the pthread library will be used to figure out
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   351
  // the list of threads within the same process.
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   352
  read_lib_info(ph);
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   353
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   354
  // read thread info
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   355
  read_thread_info(ph, add_new_thread);
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   356
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   357
  // attach to the threads
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   358
  thr = ph->threads;
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   359
  while (thr) {
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   360
     // don't attach to the main thread again
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   361
     if (ph->pid != thr->lwp_id && ptrace_attach(thr->lwp_id) != true) {
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   362
        // even if one attach fails, we get return NULL
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   363
        Prelease(ph);
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   364
        return NULL;
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   365
     }
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   366
     thr = thr->next;
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   367
  }
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   368
  return ph;
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   369
}