* cygtls.h (_cygtls::call_signal_handler): Rename from call_signal_handler_now. (_cygtls::push): Make second argument mandatory. (_cygtls::fixup_after_fork): Declare new function. (_cygtls::lock): Ditto. * cygtls.cc (_cygtls::fixup_after_fork): Define new function. * dcrt0.cc (cygwin_finished_initializing): Define as bool. (alloc_stack): Use _tlstop rather than arbitrary variable in probably vain attempt to avoid strange fork problem on CTRL-C. (dll_crt0_0): Remove obsolete winpids::init call. * dll_init.cc (dll_dllcrt0): Detect forkee condition as equivalent to initializing. * winsup.h (cygwin_finished_initializing): Declare as bool. * exceptions.cc (handle_exceptions): Rely on cygwin_finished_initializing to determine how to handle exception during process startup. (_cygtls::call_signal_handler): Rename from call_signal_handler_now. (_cygtls::interrupt_now): Fill in second argument to push. (signal_fixup_after_fork): Eliminate. (setup_handler): Initialize locked to avoid potential inappropriate unlock. Resume thread if it has acquired the stack lock. (ctrl_c_handler): Just exit if ctrl-c is hit before cygiwn has finished initializing. * fork.cc (sync_with_child): Don't call abort since it can cause exit deadlocks. (sync_with_child): Change debugging output slightly. (fork_child): Set cygwin_finished_initializing here. Call _cygtls fork fixup and explicitly call sigproc_init. (fork_parent): Release malloc lock on fork failure. (vfork): Call signal handler via _my_tls. * sigproc.cc (sig_send): Ditto. * syscalls.cc (readv): Ditto. * termios.cc (tcsetattr): Ditto. * wait.cc (wait4): Ditto. * signal.cc (nanosleep): Ditto. (abort): Ditto. (kill_pgrp): Avoid killing self if exiting. * sync.cc (muto::acquire): Remove (temporarily?) ill-advised exiting_thread check. * gendef (_sigfe): Be more agressive in protecting stack pointer from other access by signal thread. (_cygtls::locked): Define new function. (_sigbe): Ditto. (_cygtls::pop): Protect edx. (_cygtls::lock): Use guaranteed method to set eax to 1. (longjmp): Aggressively protect signal stack. * miscfuncs.cc (low_priority_sleep): Reduce "sleep time" for secs == 0. * pinfo.cc (winpids::set): Counterintuitively use malloc's lock to protect simultaneous access to the pids list since there are pathological conditions which can cause malloc to call winpid. (winpids::init): Eliminate. * pinfo.h (winpids::cs): Eliminate declaration. * pinfo.h (winpids::init): Eliminate definition.
		
			
				
	
	
		
			224 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
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			224 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* pinfo.h: process table info
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   Copyright 2000, 2001, 2002, 2003 Red Hat, Inc.
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This file is part of Cygwin.
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This software is a copyrighted work licensed under the terms of the
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Cygwin license.  Please consult the file "CYGWIN_LICENSE" for
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details. */
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#ifndef _PINFO_H
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#define _PINFO_H
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#include <sys/resource.h>
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#include "thread.h"
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struct commune_result
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{
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  char *s;
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  int n;
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  HANDLE handles[2];
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};
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enum picom
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{
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  PICOM_CMDLINE = 1,
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  PICOM_FIFO = 2
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};
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class _pinfo
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{
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public:
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  /* Cygwin pid */
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  pid_t pid;
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  /* Various flags indicating the state of the process.  See PID_
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     constants below. */
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  DWORD process_state;
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  /* If hProcess is set, it's because it came from a
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     CreateProcess call.  This means it's process relative
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     to the thing which created the process.  That's ok because
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     we only use this handle from the parent. */
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  HANDLE hProcess;
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#define PINFO_REDIR_SIZE ((char *) &myself.procinfo->hProcess - (char *) myself.procinfo)
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  /* Handle associated with initial Windows pid which started it all. */
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  HANDLE pid_handle;
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  /* Handle to the logical parent of this pid. */
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  HANDLE ppid_handle;
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  /* Parent process id.  */
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  pid_t ppid;
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  /* dwProcessId contains the processid used for sending signals.  It
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   * will be reset in a child process when it is capable of receiving
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   * signals.
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   */
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  DWORD dwProcessId;
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  /* Used to spawn a child for fork(), among other things. */
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  char progname[CYG_MAX_PATH];
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  /* User information.
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     The information is derived from the GetUserName system call,
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     with the name looked up in /etc/passwd and assigned a default value
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     if not found.  This data resides in the shared data area (allowing
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     tasks to store whatever they want here) so it's for informational
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     purposes only. */
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  __uid32_t uid;	/* User ID */
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  __gid32_t gid;	/* Group ID */
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  pid_t pgid;		/* Process group ID */
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  pid_t sid;		/* Session ID */
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  int ctty;		/* Control tty */
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  bool has_pgid_children;/* True if we've forked or spawned children with our GID. */
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  /* Resources used by process. */
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  long start_time;
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  struct rusage rusage_self;
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  struct rusage rusage_children;
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  /* Non-zero if process was stopped by a signal. */
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  char stopsig;
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  /* commune */
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  pid_t hello_pid;
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  HANDLE tothem;
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  HANDLE fromthem;
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  void exit (UINT n, bool norecord = 0) __attribute__ ((noreturn, regparm(2)));
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  inline void set_has_pgid_children ()
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  {
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    if (pgid == pid)
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      has_pgid_children = 1;
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  }
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  inline void set_has_pgid_children (bool val) {has_pgid_children = val;}
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  inline sigset_t& getsigmask ()
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  {
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    return sig_mask;
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  }
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  inline void setsigmask (sigset_t mask)
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  {
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    sig_mask = mask;
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  }
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  void commune_recv ();
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  commune_result commune_send (DWORD, ...);
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  bool alive ();
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  char *cmdline (size_t &);
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  void set_ctty (class tty_min *, int, class fhandler_tty_slave *);
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  friend void __stdcall set_myself (pid_t, HANDLE);
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  /* signals */
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  HANDLE sendsig;
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private:
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  sigset_t sig_mask;
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  CRITICAL_SECTION lock;
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};
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class pinfo
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{
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  HANDLE h;
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  _pinfo *procinfo;
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  bool destroy;
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public:
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  void init (pid_t n, DWORD create = 0, HANDLE h = NULL) __attribute__ ((regparm(3)));
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  pinfo () {}
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  pinfo (_pinfo *x): procinfo (x) {}
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  pinfo (pid_t n) {init (n);}
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  pinfo (pid_t n, int create) {init (n, create);}
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  void release ();
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  ~pinfo ()
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  {
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    if (destroy && procinfo)
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      release ();
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  }
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  _pinfo *operator -> () const {return procinfo;}
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  int operator == (pinfo *x) const {return x->procinfo == procinfo;}
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  int operator == (pinfo &x) const {return x.procinfo == procinfo;}
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  int operator == (_pinfo *x) const {return x == procinfo;}
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  int operator == (void *x) const {return procinfo == x;}
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  int operator == (int x) const {return (int) procinfo == (int) x;}
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  int operator == (char *x) const {return (char *) procinfo == x;}
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  _pinfo *operator * () const {return procinfo;}
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  operator _pinfo * () const {return procinfo;}
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  // operator bool () const {return (int) h;}
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#ifndef _SIGPROC_H
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  int remember () {system_printf ("remember is not here"); return 0;}
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#else
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  int remember ()
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  {
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    int res = proc_subproc (PROC_ADDCHILD, (DWORD) this);
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    destroy = res ? false : true;
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    return res;
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  }
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#endif
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  HANDLE shared_handle () {return h;}
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  void set_acl();
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};
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#define ISSTATE(p, f)	(!!((p)->process_state & f))
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#define NOTSTATE(p, f)	(!((p)->process_state & f))
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class winpids
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{
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  DWORD *pidlist;
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  DWORD npidlist;
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  pinfo *pinfolist;
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  DWORD pinfo_access;		// access type for pinfo open
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  DWORD (winpids::* enum_processes) (bool winpid);
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  DWORD enum_init (bool winpid);
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  DWORD enumNT (bool winpid);
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  DWORD enum9x (bool winpid);
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  void add (DWORD& nelem, bool, DWORD pid);
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public:
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  DWORD npids;
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  inline void reset () { npids = 0; release (); }
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  void set (bool winpid);
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  winpids (int): pinfo_access (0), enum_processes (&winpids::enum_init)
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    { reset (); }
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  winpids (DWORD acc = 0): pidlist (NULL), npidlist (0), pinfolist (NULL),
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  			   enum_processes (&winpids::enum_init), npids (0)
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  {
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    pinfo_access = acc;
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    set (0);
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  }
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  inline DWORD& winpid (int i) const {return pidlist[i];}
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  inline _pinfo *operator [] (int i) const {return (_pinfo *) pinfolist[i];}
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  ~winpids ();
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  void release ();
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};
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extern __inline pid_t
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cygwin_pid (pid_t pid)
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{
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  return (pid_t) (wincap.has_negative_pids ()) ? -(int) pid : pid;
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}
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void __stdcall pinfo_init (char **, int);
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void __stdcall set_myself (pid_t pid, HANDLE h = NULL);
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extern pinfo myself;
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#define _P_VFORK 0
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#define _P_SYSTEM 512
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extern void __stdcall pinfo_fixup_after_fork ();
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extern HANDLE hexec_proc;
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/* For mmaps across fork(). */
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int __stdcall fixup_mmaps_after_fork (HANDLE parent);
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/* for shm areas across fork (). */
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int __stdcall fixup_shms_after_fork ();
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void __stdcall fill_rusage (struct rusage *, HANDLE);
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void __stdcall add_rusage (struct rusage *, struct rusage *);
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#endif /*_PINFO_H*/
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