c433f4617f
cygerrno.h. * include/cygwin/config.h (__DYNAMIC_REENT__): Define. * include/cygwin/version.h: Bump API minor version. * cygwin.din: Export __getreent * cygerrno.h: Include errno.h. Fix places where _impure_ptr is used directly to store the errno value. * debug.cc (__set_errno): Ditto. * errno.cc: Remove _RRENT_ONLY define to get errno.cc compiled. * signal.cc: Rename _reent_clib to _REENT throughout. * thread.h (reent_clib): Remove prototype. * thread.cc (reent_clib): Rename reent_clib to __getreent. Return _impure_ptr until MTinterface is initialized. (reent_winsup): Fix a possible SEGV when _r == NULL. Return NULL instead. * MTinterface::fixup_after_fork: Switch reent back to _impure_ptr to keep signal handling running when fork is called from a thread other than the mainthread.
363 lines
8.2 KiB
C++
363 lines
8.2 KiB
C++
/* cygserver_transport_pipes.cc
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Copyright 2001, 2002 Red Hat Inc.
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Written by Robert Collins <rbtcollins@hotmail.com>
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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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/* to allow this to link into cygwin and the .dll, a little magic is needed. */
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#ifdef __OUTSIDE_CYGWIN__
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#include "woutsup.h"
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#else
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#include "winsup.h"
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#endif
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#include <sys/types.h>
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#include <assert.h>
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#include <netdb.h>
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#include <pthread.h>
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#include <unistd.h>
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#include "cygerrno.h"
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#include "cygwin/cygserver_transport.h"
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#include "cygwin/cygserver_transport_pipes.h"
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#ifndef __INSIDE_CYGWIN__
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#include "cygwin/cygserver.h"
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#endif
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enum
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{
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MAX_WAIT_NAMED_PIPE_RETRY = 64,
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WAIT_NAMED_PIPE_TIMEOUT = 10 // milliseconds
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};
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#ifndef __INSIDE_CYGWIN__
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static pthread_once_t pipe_instance_lock_once = PTHREAD_ONCE_INIT;
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static CRITICAL_SECTION pipe_instance_lock;
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static long pipe_instance = 0;
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static void
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initialise_pipe_instance_lock ()
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{
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assert (pipe_instance == 0);
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InitializeCriticalSection (&pipe_instance_lock);
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}
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#endif /* !__INSIDE_CYGWIN__ */
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#ifndef __INSIDE_CYGWIN__
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transport_layer_pipes::transport_layer_pipes (const HANDLE hPipe)
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: _pipe_name (""),
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_hPipe (hPipe),
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_is_accepted_endpoint (true),
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_is_listening_endpoint (false)
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{
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assert (_hPipe);
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assert (_hPipe != INVALID_HANDLE_VALUE);
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init_security ();
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}
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#endif /* !__INSIDE_CYGWIN__ */
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transport_layer_pipes::transport_layer_pipes ()
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: _pipe_name ("\\\\.\\pipe\\cygwin_lpc"),
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_hPipe (NULL),
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_is_accepted_endpoint (false),
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_is_listening_endpoint (false)
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{
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init_security ();
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}
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void
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transport_layer_pipes::init_security ()
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{
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assert (wincap.has_security ());
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/* FIXME: pthread_once or equivalent needed */
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InitializeSecurityDescriptor (&_sd, SECURITY_DESCRIPTOR_REVISION);
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SetSecurityDescriptorDacl (&_sd, TRUE, NULL, FALSE);
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_sec_all_nih.nLength = sizeof (SECURITY_ATTRIBUTES);
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_sec_all_nih.lpSecurityDescriptor = &_sd;
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_sec_all_nih.bInheritHandle = FALSE;
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}
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transport_layer_pipes::~transport_layer_pipes ()
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{
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close ();
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}
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#ifndef __INSIDE_CYGWIN__
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int
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transport_layer_pipes::listen ()
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{
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assert (!_hPipe);
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assert (!_is_accepted_endpoint);
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assert (!_is_listening_endpoint);
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_is_listening_endpoint = true;
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/* no-op */
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return 0;
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}
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class transport_layer_pipes *
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transport_layer_pipes::accept (bool *const recoverable)
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{
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assert (!_hPipe);
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assert (!_is_accepted_endpoint);
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assert (_is_listening_endpoint);
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pthread_once (&pipe_instance_lock_once, &initialise_pipe_instance_lock);
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EnterCriticalSection (&pipe_instance_lock);
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// Read: http://www.securityinternals.com/research/papers/namedpipe.php
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// See also the Microsoft security bulletins MS00-053 and MS01-031.
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// FIXME: Remove FILE_CREATE_PIPE_INSTANCE.
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const bool first_instance = (pipe_instance == 0);
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const HANDLE accept_pipe =
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CreateNamedPipe (_pipe_name,
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(PIPE_ACCESS_DUPLEX
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| (first_instance ? FILE_FLAG_FIRST_PIPE_INSTANCE : 0)),
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(PIPE_TYPE_BYTE | PIPE_WAIT),
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PIPE_UNLIMITED_INSTANCES,
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0, 0, 1000,
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&_sec_all_nih);
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const bool duplicate = (accept_pipe == INVALID_HANDLE_VALUE
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&& pipe_instance == 0
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&& GetLastError () == ERROR_ACCESS_DENIED);
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if (accept_pipe != INVALID_HANDLE_VALUE)
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InterlockedIncrement (&pipe_instance);
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LeaveCriticalSection (&pipe_instance_lock);
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if (duplicate)
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{
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*recoverable = false;
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system_printf ("failed to create named pipe: "
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"is the daemon already running?");
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return NULL;
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}
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if (accept_pipe == INVALID_HANDLE_VALUE)
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{
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debug_printf ("error creating pipe (%lu).", GetLastError ());
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*recoverable = true; // FIXME: case analysis?
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return NULL;
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}
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assert (accept_pipe);
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if (!ConnectNamedPipe (accept_pipe, NULL)
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&& GetLastError () != ERROR_PIPE_CONNECTED)
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{
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debug_printf ("error connecting to pipe (%lu)", GetLastError ());
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(void) CloseHandle (accept_pipe);
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*recoverable = true; // FIXME: case analysis?
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return NULL;
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}
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return safe_new (transport_layer_pipes, accept_pipe);
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}
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#endif /* !__INSIDE_CYGWIN__ */
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void
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transport_layer_pipes::close ()
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{
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// verbose: debug_printf ("closing pipe %p", _hPipe);
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if (_hPipe)
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{
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assert (_hPipe != INVALID_HANDLE_VALUE);
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#ifndef __INSIDE_CYGWIN__
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if (_is_accepted_endpoint)
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{
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(void) FlushFileBuffers (_hPipe); // Blocks until client reads.
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(void) DisconnectNamedPipe (_hPipe);
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EnterCriticalSection (&pipe_instance_lock);
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(void) CloseHandle (_hPipe);
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assert (pipe_instance > 0);
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InterlockedDecrement (&pipe_instance);
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LeaveCriticalSection (&pipe_instance_lock);
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}
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else
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(void) CloseHandle (_hPipe);
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#else /* __INSIDE_CYGWIN__ */
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assert (!_is_accepted_endpoint);
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(void) ForceCloseHandle (_hPipe);
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#endif /* __INSIDE_CYGWIN__ */
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_hPipe = NULL;
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}
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}
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ssize_t
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transport_layer_pipes::read (void *const buf, const size_t len)
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{
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// verbose: debug_printf ("reading from pipe %p", _hPipe);
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assert (_hPipe);
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assert (_hPipe != INVALID_HANDLE_VALUE);
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assert (!_is_listening_endpoint);
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DWORD count;
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if (!ReadFile (_hPipe, buf, len, &count, NULL))
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{
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debug_printf ("error reading from pipe (%lu)", GetLastError ());
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set_errno (EINVAL); // FIXME?
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return -1;
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}
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return count;
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}
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ssize_t
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transport_layer_pipes::write (void *const buf, const size_t len)
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{
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// verbose: debug_printf ("writing to pipe %p", _hPipe);
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assert (_hPipe);
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assert (_hPipe != INVALID_HANDLE_VALUE);
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assert (!_is_listening_endpoint);
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DWORD count;
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if (!WriteFile (_hPipe, buf, len, &count, NULL))
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{
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debug_printf ("error writing to pipe, error = %lu", GetLastError ());
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set_errno (EINVAL); // FIXME?
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return -1;
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}
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return count;
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}
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/*
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* This routine holds a static variable, assume_cygserver, that is set
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* if the transport has good reason to think that cygserver is
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* running, i.e. if if successfully connected to it with the previous
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* attempt. If this is set, the code tries a lot harder to get a
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* connection, making the assumption that any failures are just
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* congestion and overloading problems.
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*/
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int
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transport_layer_pipes::connect ()
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{
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assert (!_hPipe);
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assert (!_is_accepted_endpoint);
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assert (!_is_listening_endpoint);
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static bool assume_cygserver = false;
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BOOL rc = TRUE;
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int retries = 0;
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while (rc)
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{
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_hPipe = CreateFile (_pipe_name,
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GENERIC_READ | GENERIC_WRITE,
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FILE_SHARE_READ | FILE_SHARE_WRITE,
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&_sec_all_nih,
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OPEN_EXISTING,
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SECURITY_IMPERSONATION,
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NULL);
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if (_hPipe != INVALID_HANDLE_VALUE)
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{
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assert (_hPipe);
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#ifdef __INSIDE_CYGWIN__
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ProtectHandle (_hPipe);
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#endif
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assume_cygserver = true;
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return 0;
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}
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_hPipe = NULL;
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if (!assume_cygserver && GetLastError () != ERROR_PIPE_BUSY)
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{
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debug_printf ("Error opening the pipe (%lu)", GetLastError ());
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return -1;
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}
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/* Note: `If no instances of the specified named pipe exist, the
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* WaitNamedPipe function returns immediately, regardless of the
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* time-out value.' Thus the explicit Sleep if the call fails
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* with ERROR_FILE_NOT_FOUND.
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*/
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while (retries != MAX_WAIT_NAMED_PIPE_RETRY
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&& !(rc = WaitNamedPipe (_pipe_name, WAIT_NAMED_PIPE_TIMEOUT)))
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{
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if (GetLastError () == ERROR_FILE_NOT_FOUND)
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Sleep (0); // Give the server a chance.
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retries += 1;
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}
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}
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assert (retries == MAX_WAIT_NAMED_PIPE_RETRY);
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system_printf ("lost connection to cygserver, error = %lu",
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GetLastError ());
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assume_cygserver = false;
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return -1;
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}
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#ifndef __INSIDE_CYGWIN__
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void
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transport_layer_pipes::impersonate_client ()
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{
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assert (_hPipe);
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assert (_hPipe != INVALID_HANDLE_VALUE);
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assert (_is_accepted_endpoint);
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// verbose: debug_printf ("impersonating pipe %p", _hPipe);
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if (_hPipe)
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{
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assert (_hPipe != INVALID_HANDLE_VALUE);
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if (!ImpersonateNamedPipeClient (_hPipe))
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debug_printf ("Failed to Impersonate the client, (%lu)",
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GetLastError ());
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}
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// verbose: debug_printf ("I am who you are");
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}
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void
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transport_layer_pipes::revert_to_self ()
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{
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assert (_is_accepted_endpoint);
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RevertToSelf ();
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// verbose: debug_printf ("I am who I yam");
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}
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#endif /* !__INSIDE_CYGWIN__ */
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