mirror of
git://sourceware.org/git/newlib-cygwin.git
synced 2025-01-29 02:20:21 +08:00
23771fa1f7
logs easier. Throughout, change /dev/tty* to /dev/pty*. Throughout, add flags argument to fhandler_*::dup methods. * devices.in: Rename (temporarily?) /dev/ttyN to /dev/ptyN. Add /dev/ptymN devices for pty masters. * devices.cc: Regenerate. * devices.h (MAX_CONSOLES): Set to max number supported by devices.in. (fh_devices::FH_PTMX): Rename from FH_PTYM. (device::operator int): Return by reference. * dtable.cc (fh_alloc): Take pc as an argument rather than just the device. This makes debugging easier since more information is available. Actually implement handling for already-allocated pty master devices. Make different decisions when generating fhandler for not-opened devices. Add kludge to deal with opening /dev/tty. (cnew_no_ctor): New macro. (build_fh_pc): Make debugging output more verbose. Use new clone() fhandler interface to duplicate archetypes. Reset last term opened. (dtable::dup_worker): Use Use new clone() fhandler interface to duplicate archetypes. Pass flags to child dup handler. (dtable::dup3): Set O_NOCTTY flag if newfd is not stdin/stdout/stderr. * fhandler.cc (fhandler_base::reset): Rename from operator =() and reduce functionality and sense of copy direction. (fhandler_base::open_with_arch): Use published interface to query io_handle(). Use new copyto() fhandler method to copy from/to found archetype. * fhandler.h: Throughout, delete size(), add copyout, clone, and fhandler_* (void *) methods. (fhandler_base::reset): Rename from operator =(). (fhandler_termios::is_dev_tty): Delete. (fhandler_termios): change "protected" region to "private". (fhandler_termios::is_dev_tty): Delete. (fhandler_termios): Rearrange protected/public. (fhandler_termios::fhandler_termios): Remember last fhandler_termios "opened". (fhandler_termios::~fhandler_termios): Forget last fhandler_termios opened. (ioctl): Rename from ioctl_termios. Take a void * argument. Reflect argument change in pinfo::set_ctty. (fhandler_console::dup): Declare new function. Set ctty here if appropriate. (fhandler_pty_master::from_master): Privatize. (fhandler_pty_master::to_master): Ditto. (fhandler_pty_master::dwProcessId): Ditto. (fhandler_pty_master::fhandler_pty_master): Add an `int' argument. (fhandler_pty_master::open_setup): Declare new function. (fhandler_pty_master::~fhandler_pty_master): Declare new method. (fhandler_nodevice): Remove commented out function declaration. * fhandler_console.cc: Use get_ttyp() instead of tc() throughout. (fhandler_console::dup): Define new function to set controlling ctty on dup, as appropriate. (fhandler_console::ioctl): Reflect ioctl_termios name change. (fhandler_console::setup): Rename from get_tty_stuff. (fhandler_console::open_setup): Reflect argument change in pinfo::set_ctty. (fhandler_console::fhandler_console): Set _tc here. * fhandler_termios.cc (handler_termios::ioctl): Rename. Take a void * arg like other ioctl functions. * fhandler_tty.cc (fhandler_pty_slave::dup): Call myself->set_ctty to potentially reset the controlling terminal. (fhandler_pty_slave::ioctl): Reflect name/arg change for ioctl_termios. (fhandler_pty_slave::fhandler_pty_slave): Take a "unit" argument. Call setup() here so that we will know the unit number of this fhandler as soon as possible. Set the unit as appropriate. (handler_pty_master::open): Move most stuff to constructor and open_setup. (handler_pty_slave::open_setup): Reflect argument change in pinfo::set_ctty. (handler_pty_master::open_setup): Define new function. (fhandler_pty_master::cleanup): Clear handles as a flag that the destructor does not have to do "close" operations. (fhandler_pty_master::close): Ditto. (fhandler_pty_master::~fhandler_pty_master): Define new method. (fhandler_pty_master::ioctl): Reflect name/arg change for ioctl_termios. (fhandler_pty_master::setup): Allocate tty here. Rely on handles being returned from allocated test rather than opening them here. Avoid setting _need_nl here since it is already zeroed in the constructor. Set up device information with DEV_TTYM_MAJOR. * path.h (path_conv &operator =): Take a const argument. (path_conv::dup): Ditto. (pathconv_arg::PC_OPEN): New enum. (pathconv_arg::PC_CTTY): Ditto. (path_types::PATH_CTTY): Ditto. (path_types::PATH_OPEN): Ditto. (path_conv::isopen): New method. (path_conv::isctty_capable): Ditto. * path.cc (path_conv::check): Set PATH_OPEN and PATH_CTTY as appropriate. * pipe.cc (fhandler_pipe::open): Use copyto to copy pipe handle. * syscall.cc (open): Reinstate fd > 2 check to disallow resetting ctty on non-std* handles. * tty.cc (tty_list::allocate): Pass out handles for allocated tty. use `not_allocated' to find unallocated ttys. Avoid keeping the lock since the allocation of the tty should be sufficient to prevent multiple access. (tty::not_allocated): Clarify comment. Rename. Return handles when an unused tty is found. Simply test for existing tty. (tty::exists): Rewrite to use `not_allocated'. * tty.h (NTTYS): Reset down to actual number supported by devices.in. (tty::not_allocated): Declare new function. (tty_list::allocate): Pass out read/write tty handles. Zero them when not found. * fhandler_proc.cc: Reflect name change from FH_PTYM -> FH_PTMX. * pinfo.h (pinfo::set_ctty): Reduce/reorder arguments passed in. * pinfo.cc (pinfo::set_ctty): Ditto. Just use tc() built into the passed-in fhandler_termios pointer. Return true if ctty is assigned. * syscalls.cc (open): Call build_fh_pc with PC_OPEN flag. Set PC_CTTY if appropriate. (stat_worker): Remove is_dev_tty () stuff.
400 lines
9.8 KiB
C++
400 lines
9.8 KiB
C++
/* pipe.cc: pipe for Cygwin.
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Copyright 1996, 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007,
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2008, 2009, 2010, 2011 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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/* FIXME: Should this really be fhandler_pipe.cc? */
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#include "winsup.h"
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#include <stdlib.h>
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#include <sys/socket.h>
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#include "cygerrno.h"
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#include "security.h"
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#include "path.h"
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#include "fhandler.h"
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#include "dtable.h"
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#include "cygheap.h"
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#include "pinfo.h"
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#include "shared_info.h"
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fhandler_pipe::fhandler_pipe ()
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: fhandler_base_overlapped (), popen_pid (0)
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{
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max_atomic_write = DEFAULT_PIPEBUFSIZE;
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need_fork_fixup (true);
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}
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int
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fhandler_pipe::init (HANDLE f, DWORD a, mode_t mode)
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{
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/* FIXME: Have to clean this up someday
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FIXME: Do we have to check for both !get_win32_name() and
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!*get_win32_name()? */
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if ((!get_win32_name () || !*get_win32_name ()) && get_name ())
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{
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char *d;
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const char *s;
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char *hold_normalized_name = (char *) alloca (strlen (get_name ()) + 1);
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for (s = get_name (), d = hold_normalized_name; *s; s++, d++)
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if (*s == '/')
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*d = '\\';
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else
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*d = *s;
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*d = '\0';
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set_name (hold_normalized_name);
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}
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bool opened_properly = a & FILE_CREATE_PIPE_INSTANCE;
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a &= ~FILE_CREATE_PIPE_INSTANCE;
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fhandler_base::init (f, a, mode);
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close_on_exec (mode & O_CLOEXEC);
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if (opened_properly)
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setup_overlapped ();
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else
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destroy_overlapped ();
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return 1;
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}
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extern "C" int sscanf (const char *, const char *, ...);
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int
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fhandler_pipe::open (int flags, mode_t mode)
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{
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HANDLE proc, pipe_hdl, nio_hdl = NULL;
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fhandler_pipe *fh = NULL;
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size_t size;
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int pid, rwflags = (flags & O_ACCMODE);
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bool inh;
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sscanf (get_name (), "/proc/%d/fd/pipe:[%d]", &pid, (int *) &pipe_hdl);
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if (pid == myself->pid)
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{
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cygheap_fdenum cfd (true);
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while (cfd.next () >= 0)
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{
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if (cfd->get_handle () != pipe_hdl)
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continue;
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if ((rwflags == O_RDONLY && !(cfd->get_access () & GENERIC_READ))
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|| (rwflags == O_WRONLY && !(cfd->get_access () & GENERIC_WRITE)))
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{
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set_errno (EACCES);
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return 0;
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}
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cfd->copyto (this);
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set_io_handle (NULL);
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pc.reset_conv_handle ();
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if (!cfd->dup (this, flags))
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return 1;
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return 0;
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}
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set_errno (ENOENT);
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return 0;
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}
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pinfo p (pid);
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if (!p)
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{
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set_errno (ESRCH);
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return 0;
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}
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if (!(proc = OpenProcess (PROCESS_DUP_HANDLE, false, p->dwProcessId)))
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{
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__seterrno ();
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return 0;
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}
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if (!(fh = p->pipe_fhandler (pipe_hdl, size)) || !size)
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{
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set_errno (ENOENT);
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goto out;
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}
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/* Too bad, but Windows only allows the same access mode when dup'ing
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the pipe. */
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if ((rwflags == O_RDONLY && !(fh->get_access () & GENERIC_READ))
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|| (rwflags == O_WRONLY && !(fh->get_access () & GENERIC_WRITE)))
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{
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set_errno (EACCES);
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goto out;
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}
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inh = !(flags & O_CLOEXEC);
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if (!DuplicateHandle (proc, pipe_hdl, GetCurrentProcess (), &nio_hdl,
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0, inh, DUPLICATE_SAME_ACCESS))
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{
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__seterrno ();
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goto out;
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}
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init (nio_hdl, fh->get_access (), mode & O_TEXT ?: O_BINARY);
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cfree (fh);
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CloseHandle (proc);
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return 1;
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out:
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if (nio_hdl)
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CloseHandle (nio_hdl);
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if (fh)
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free (fh);
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if (proc)
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CloseHandle (proc);
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return 0;
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}
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_off64_t
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fhandler_pipe::lseek (_off64_t offset, int whence)
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{
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debug_printf ("(%d, %d)", offset, whence);
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set_errno (ESPIPE);
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return -1;
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}
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int
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fhandler_pipe::fadvise (_off64_t offset, _off64_t length, int advice)
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{
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set_errno (ESPIPE);
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return -1;
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}
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int
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fhandler_pipe::ftruncate (_off64_t length, bool allow_truncate)
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{
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set_errno (allow_truncate ? EINVAL : ESPIPE);
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return -1;
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}
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char *
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fhandler_pipe::get_proc_fd_name (char *buf)
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{
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__small_sprintf (buf, "pipe:[%d]", get_handle ());
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return buf;
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}
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int
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fhandler_pipe::dup (fhandler_base *child, int flags)
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{
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fhandler_pipe *ftp = (fhandler_pipe *) child;
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ftp->set_popen_pid (0);
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int res;
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if (get_handle () && fhandler_base_overlapped::dup (child, flags))
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res = -1;
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else
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res = 0;
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debug_printf ("res %d", res);
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return res;
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}
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#define PIPE_INTRO "\\\\.\\pipe\\cygwin-"
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/* Create a pipe, and return handles to the read and write ends,
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just like CreatePipe, but ensure that the write end permits
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FILE_READ_ATTRIBUTES access, on later versions of win32 where
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this is supported. This access is needed by NtQueryInformationFile,
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which is used to implement select and nonblocking writes.
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Note that the return value is either 0 or GetLastError,
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unlike CreatePipe, which returns a bool for success or failure. */
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int
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fhandler_pipe::create_selectable (LPSECURITY_ATTRIBUTES sa_ptr, HANDLE& r,
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HANDLE& w, DWORD psize, const char *name)
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{
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/* Default to error. */
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r = w = INVALID_HANDLE_VALUE;
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/* Ensure that there is enough pipe buffer space for atomic writes. */
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if (psize < DEFAULT_PIPEBUFSIZE)
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psize = DEFAULT_PIPEBUFSIZE;
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char pipename[MAX_PATH];
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const size_t len = __small_sprintf (pipename, PIPE_INTRO "%S-",
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&installation_key);
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/* FIXME: Eventually make ttys work with overlapped I/O. */
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DWORD overlapped = name ? 0 : FILE_FLAG_OVERLAPPED;
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/* Retry CreateNamedPipe as long as the pipe name is in use.
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Retrying will probably never be necessary, but we want
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to be as robust as possible. */
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DWORD err;
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do
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{
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static volatile ULONG pipe_unique_id;
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if (!name)
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__small_sprintf (pipename + len, "pipe-%p-%p", myself->pid,
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InterlockedIncrement ((LONG *) &pipe_unique_id));
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else
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strcpy (pipename + len, name);
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debug_printf ("CreateNamedPipe: name %s, size %lu", pipename, psize);
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err = 0;
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/* Use CreateNamedPipe instead of CreatePipe, because the latter
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returns a write handle that does not permit FILE_READ_ATTRIBUTES
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access, on versions of win32 earlier than WinXP SP2.
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CreatePipe also stupidly creates a full duplex pipe, which is
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a waste, since only a single direction is actually used.
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It's important to only allow a single instance, to ensure that
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the pipe was not created earlier by some other process, even if
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the pid has been reused. We avoid FILE_FLAG_FIRST_PIPE_INSTANCE
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because that is only available for Win2k SP2 and WinXP. */
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r = CreateNamedPipe (pipename, PIPE_ACCESS_INBOUND | overlapped,
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PIPE_TYPE_BYTE | PIPE_READMODE_BYTE, 1, psize,
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psize, NMPWAIT_USE_DEFAULT_WAIT, sa_ptr);
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if (r != INVALID_HANDLE_VALUE)
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{
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debug_printf ("pipe read handle %p", r);
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break;
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}
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err = GetLastError ();
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switch (err)
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{
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case ERROR_PIPE_BUSY:
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/* The pipe is already open with compatible parameters.
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Pick a new name and retry. */
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debug_printf ("pipe busy", name ? ", retrying" : "");
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break;
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case ERROR_ACCESS_DENIED:
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/* The pipe is already open with incompatible parameters.
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Pick a new name and retry. */
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debug_printf ("pipe access denied%s", name ? ", retrying" : "");
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break;
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default:
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{
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err = GetLastError ();
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debug_printf ("CreatePipe failed, %E");
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return err;
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}
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}
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}
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while (!name);
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if (err)
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return err;
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debug_printf ("CreateFile: name %s", pipename);
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/* Open the named pipe for writing.
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Be sure to permit FILE_READ_ATTRIBUTES access. */
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w = CreateFile (pipename, GENERIC_WRITE | FILE_READ_ATTRIBUTES, 0, sa_ptr,
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OPEN_EXISTING, overlapped, 0);
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if (!w || w == INVALID_HANDLE_VALUE)
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{
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/* Failure. */
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DWORD err = GetLastError ();
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debug_printf ("CreateFile failed, %E");
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CloseHandle (r);
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return err;
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}
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debug_printf ("pipe write handle %p", w);
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/* Success. */
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return 0;
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}
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int
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fhandler_pipe::create (fhandler_pipe *fhs[2], unsigned psize, int mode)
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{
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HANDLE r, w;
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SECURITY_ATTRIBUTES *sa = sec_none_cloexec (mode);
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int res = -1;
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int ret = create_selectable (sa, r, w, psize);
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if (ret)
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__seterrno_from_win_error (ret);
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else if ((fhs[0] = (fhandler_pipe *) build_fh_dev (*piper_dev)) == NULL)
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{
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CloseHandle (r);
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CloseHandle (w);
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}
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else if ((fhs[1] = (fhandler_pipe *) build_fh_dev (*pipew_dev)) == NULL)
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{
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delete fhs[0];
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CloseHandle (w);
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}
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else
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{
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mode |= mode & O_TEXT ?: O_BINARY;
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fhs[0]->init (r, FILE_CREATE_PIPE_INSTANCE | GENERIC_READ, mode);
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fhs[1]->init (w, FILE_CREATE_PIPE_INSTANCE | GENERIC_WRITE, mode);
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res = 0;
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}
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syscall_printf ("%d = pipe ([%p, %p], %d, %p)", res, fhs[0], fhs[1], psize, mode);
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return res;
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}
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int
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fhandler_pipe::ioctl (unsigned int cmd, void *p)
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{
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int n;
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switch (cmd)
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{
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case FIONREAD:
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if (get_device () == FH_PIPEW)
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{
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set_errno (EINVAL);
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return -1;
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}
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if (!PeekNamedPipe (get_handle (), NULL, 0, NULL, (DWORD *) &n, NULL))
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{
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__seterrno ();
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return -1;
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}
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break;
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default:
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return fhandler_base::ioctl (cmd, p);
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break;
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}
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*(int *) p = n;
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return 0;
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}
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int __stdcall
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fhandler_pipe::fstatvfs (struct statvfs *sfs)
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{
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set_errno (EBADF);
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return -1;
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}
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extern "C" int
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_pipe (int filedes[2], unsigned int psize, int mode)
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{
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fhandler_pipe *fhs[2];
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int res = fhandler_pipe::create (fhs, psize, mode);
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if (!res)
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{
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cygheap_fdnew fdin;
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cygheap_fdnew fdout (fdin, false);
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char buf[sizeof ("/dev/fd/pipe:[2147483647]")];
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__small_sprintf (buf, "/dev/fd/pipe:[%d]", (int) fdin);
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fhs[0]->pc.set_normalized_path (buf);
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__small_sprintf (buf, "pipe:[%d]", (int) fdout);
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fhs[1]->pc.set_normalized_path (buf);
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fdin = fhs[0];
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fdout = fhs[1];
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filedes[0] = fdin;
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filedes[1] = fdout;
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debug_printf ("%d, %d", (int) fdin, (int) fdout);
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}
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return res;
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}
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extern "C" int
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pipe (int filedes[2])
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{
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return _pipe (filedes, DEFAULT_PIPEBUFSIZE, O_BINARY);
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}
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extern "C" int
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pipe2 (int filedes[2], int mode)
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{
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return _pipe (filedes, DEFAULT_PIPEBUFSIZE, mode);
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}
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