2 * asynchronous DNS services
4 * (C) 1996,1997 Alex Korobka.
6 * TODO: Fork dns lookup helper during the startup (with a pipe
7 * for communication) and make it fork for a database request
8 * instead of forking the main process (i.e. something like
17 #include <sys/ioctl.h>
18 #include <sys/types.h>
24 # include <sys/so_ioctl.h>
26 #ifdef HAVE_SYS_PARAM_H
27 # include <sys/param.h>
29 #ifdef HAVE_SYS_FILIO_H
30 # include <sys/filio.h>
33 # include <sys/file.h>
41 #include "selectors.h"
43 #include "sig_context.h"
47 #define FASYNC FIOASYNC
50 /* async DNS op control struct */
65 extern HANDLE16
__ws_gethandle( void* ptr
);
66 extern void* __ws_memalloc( int size
);
67 extern void __ws_memfree( void* ptr
);
69 /* NOTE: ws_async_op list is traversed inside the SIGIO handler! */
71 static int __async_io_max_fd
= 0;
72 static fd_set __async_io_fdset
;
73 static ws_async_op
* __async_op_list
= NULL
;
75 static void fixup_wshe(struct ws_hostent
* p_wshe
, void* base
);
76 static void fixup_wspe(struct ws_protoent
* p_wspe
, void* base
);
77 static void fixup_wsse(struct ws_servent
* p_wsse
, void* base
);
79 /* ----------------------------------- async/non-blocking I/O */
81 int WINSOCK_async_io(int fd
, int async
)
86 fcntl(fd
, F_SETOWN
, getpid());
89 fd_flags
= fcntl(fd
, F_GETFL
, 0);
90 if (fcntl(fd
, F_SETFL
, (async
)? fd_flags
| FASYNC
91 : fd_flags
& ~FASYNC
) != -1) return 0;
95 int WINSOCK_unblock_io(int fd
, int noblock
)
99 fd_flags
= fcntl(fd
, F_GETFL
, 0);
100 if (fcntl(fd
, F_SETFL
, (noblock
)? fd_flags
| O_NONBLOCK
101 : fd_flags
& ~O_NONBLOCK
) != -1) return 0;
105 int WINSOCK_check_async_op(ws_async_op
* p_aop
)
107 ws_async_op
* p
= __async_op_list
;
108 while( p
) if( p
== p_aop
) return 1;
113 int WINSOCK_cancel_async_op(ws_async_op
* p_aop
)
117 if( WINSOCK_check_async_op(p_aop
) )
119 if( !(p_aop
->flags
& WSMSG_DEAD_AOP
) )
121 kill(p_aop
->pid
, SIGKILL
);
122 waitpid(p_aop
->pid
, NULL
, 0); /* just in case */
125 WINSOCK_unlink_async_op(p_aop
);
126 EVENT_DeleteIO( p_aop
->fd
[0], EVENT_IO_READ
);
128 p_aop
->hWnd
= p_aop
->uMsg
= 0;
134 void WINSOCK_cancel_task_aops(HTASK16 hTask
, void (*__opfree
)(void*))
136 /* SIGIO safe, hTask == 0 cancels all outstanding async ops */
138 int num
= 0, num_dead
= 0;
139 ws_async_op
* p
, *next
;
141 TRACE(winsock
," cancelling async DNS requests... \n");
143 SIGNAL_MaskAsyncEvents( TRUE
);
144 next
= __async_op_list
;
147 HTASK16 hWndTask
= GetWindowTask16(p
->hWnd
);
150 if(!hTask
|| !hWndTask
|| (hTask
== hWndTask
))
153 if( p
->flags
& WSMSG_DEAD_AOP
)
156 WINSOCK_cancel_async_op(p
);
157 if( __opfree
) __opfree(p
);
160 SIGNAL_MaskAsyncEvents( FALSE
);
161 TRACE(winsock
," -> %i total (%i active)\n", num
, num
- num_dead
);
164 void WINSOCK_link_async_op(ws_async_op
* p_aop
)
169 SIGNAL_MaskAsyncEvents( TRUE
);
170 if( __async_op_list
)
172 ws_async_op
* p
= __async_op_list
;
173 __async_op_list
->prev
= p_aop
;
175 /* traverse the list and retire dead ops created
176 * by the signal handler (see below). */
180 if( p
->flags
& WSMSG_DEAD_AOP
)
182 ws_async_op
* dead
= p
;
184 TRACE(winsock
,"\treaping dead aop [%08x]\n", (unsigned)p
);
187 WINSOCK_unlink_async_op( dead
);
188 __ws_memfree( dead
);
194 else FD_ZERO(&__async_io_fdset
);
195 p_aop
->next
= __async_op_list
;
196 __async_op_list
= p_aop
;
197 SIGNAL_MaskAsyncEvents( FALSE
);
199 FD_SET(p_aop
->fd
[0], &__async_io_fdset
);
200 if( p_aop
->fd
[0] > __async_io_max_fd
)
201 __async_io_max_fd
= p_aop
->fd
[0];
204 void WINSOCK_unlink_async_op(ws_async_op
* p_aop
)
208 if( p_aop
== __async_op_list
) __async_op_list
= p_aop
->next
;
210 p_aop
->prev
->next
= p_aop
->next
;
211 if( p_aop
->next
) p_aop
->next
->prev
= p_aop
->prev
;
213 FD_CLR(p_aop
->fd
[0], &__async_io_fdset
);
214 if( p_aop
->fd
[0] == __async_io_max_fd
)
218 /* ----------------------------------- SIGIO handler -
220 * link_async_op/unlink_async_op allow to install generic
221 * async IO handlers (provided that aop_control function is defined).
223 * Note: pipe-based handlers must raise explicit SIGIO with kill(2).
226 HANDLER_DEF(WINSOCK_sigio
)
228 struct timeval timeout
;
234 check_set
= __async_io_fdset
;
235 memset(&timeout
, 0, sizeof(timeout
));
237 while( select(__async_io_max_fd
+ 1,
238 &check_set
, NULL
, NULL
, &timeout
) > 0)
240 for( p_aop
= __async_op_list
;
241 p_aop
; p_aop
= p_aop
->next
)
242 if( FD_ISSET(p_aop
->fd
[0], &check_set
) )
243 if( p_aop
->aop_control(p_aop
, AOP_IO
) == AOP_CONTROL_REMOVE
)
245 /* NOTE: memory management is signal-unsafe, therefore
246 * we can only set a flag to remove this p_aop later on.
249 p_aop
->flags
= WSMSG_DEAD_AOP
;
251 FD_CLR(p_aop
->fd
[0],&__async_io_fdset
);
252 if( p_aop
->fd
[0] == __async_io_max_fd
)
253 __async_io_max_fd
= p_aop
->fd
[0];
256 kill(p_aop
->pid
, SIGKILL
);
257 waitpid(p_aop
->pid
, NULL
, WNOHANG
);
261 check_set
= __async_io_fdset
;
265 /* ----------------------------------- getXbyY requests */
267 /* child process control struct */
268 static ws_async_ctl async_ctl
;
270 static int aop_control(ws_async_op
* p_aop
, int flag
)
274 /* success: LOWORD(lLength) has the length of the struct
276 * failure: LOWORD(lLength) is zero, HIWORD(lLength) contains
280 read(p_aop
->fd
[0], &lLength
, sizeof(unsigned));
281 if( LOWORD(lLength
) )
283 if( (int)LOWORD(lLength
) <= p_aop
->buflen
)
285 char* buffer
= (p_aop
->flags
& WSMSG_WIN32_AOP
)
286 ? p_aop
->b
.lin_base
: (char*)PTR_SEG_TO_LIN(p_aop
->b
.seg_base
);
288 read(p_aop
->fd
[0], buffer
, LOWORD(lLength
));
289 switch( p_aop
->flags
& WSMSG_ASYNC_RQMASK
)
291 case WSMSG_ASYNC_HOSTBYNAME
:
292 case WSMSG_ASYNC_HOSTBYADDR
:
293 fixup_wshe((struct ws_hostent
*)buffer
, p_aop
->b
.ptr_base
); break;
294 case WSMSG_ASYNC_PROTOBYNAME
:
295 case WSMSG_ASYNC_PROTOBYNUM
:
296 fixup_wspe((struct ws_protoent
*)buffer
, p_aop
->b
.ptr_base
); break;
297 case WSMSG_ASYNC_SERVBYNAME
:
298 case WSMSG_ASYNC_SERVBYPORT
:
299 fixup_wsse((struct ws_servent
*)buffer
, p_aop
->b
.ptr_base
); break;
301 if( p_aop
->flags
) WARN(winsock
,"Received unknown async request!\n");
302 return AOP_CONTROL_REMOVE
;
305 else lLength
= ((UINT32
)LOWORD(lLength
)) | ((unsigned)WSAENOBUFS
<< 16);
308 /* was a __WS_ASYNC_DEBUG statement */
309 TRACE(winsock
, "DNS aop completed: hWnd [%04x], uMsg [%04x], "
310 "aop [%04x], event [%08lx]\n",
311 p_aop
->hWnd
, p_aop
->uMsg
, __ws_gethandle(p_aop
), (LPARAM
)lLength
);
313 /* FIXME: update num_async_rq */
314 EVENT_DeleteIO( p_aop
->fd
[0], EVENT_IO_READ
);
315 PostMessage32A( p_aop
->hWnd
, p_aop
->uMsg
, __ws_gethandle(p_aop
), (LPARAM
)lLength
);
317 return AOP_CONTROL_REMOVE
; /* one-shot request */
321 HANDLE16
__WSAsyncDBQuery(LPWSINFO pwsi
, HWND32 hWnd
, UINT32 uMsg
, INT32 type
,
322 LPCSTR init
, INT32 len
, LPCSTR proto
, void* sbuf
, INT32 buflen
, UINT32 flag
)
324 /* queue 'flag' request and fork off its handler */
326 async_ctl
.ws_aop
= (ws_async_op
*)__ws_memalloc(sizeof(ws_async_op
));
328 if( async_ctl
.ws_aop
)
330 HANDLE16 handle
= __ws_gethandle(async_ctl
.ws_aop
);
332 if( pipe(async_ctl
.ws_aop
->fd
) == 0 )
334 async_ctl
.rq
.init
= (char*)init
;
335 async_ctl
.ilength
= len
;
336 async_ctl
.buffer
= (char*)proto
;
337 async_ctl
.type
= type
;
339 async_ctl
.ws_aop
->hWnd
= hWnd
;
340 async_ctl
.ws_aop
->uMsg
= uMsg
;
341 async_ctl
.ws_aop
->b
.ptr_base
= sbuf
;
342 async_ctl
.ws_aop
->buflen
= buflen
;
343 async_ctl
.ws_aop
->flags
= flag
;
344 async_ctl
.ws_aop
->aop_control
= &aop_control
;
346 WINSOCK_link_async_op( async_ctl
.ws_aop
);
348 EVENT_AddIO( async_ctl
.ws_aop
->fd
[0], EVENT_IO_READ
);
349 pwsi
->num_async_rq
++;
351 async_ctl
.ws_aop
->pid
= fork();
352 if( async_ctl
.ws_aop
->pid
)
354 TRACE(winsock
, "\tasync_op = %04x (child %i)\n",
355 handle
, async_ctl
.ws_aop
->pid
);
357 close(async_ctl
.ws_aop
->fd
[1]); /* write endpoint */
358 if( async_ctl
.ws_aop
->pid
> 0 )
359 return __ws_gethandle(async_ctl
.ws_aop
);
363 pwsi
->num_async_rq
--;
364 EVENT_DeleteIO( async_ctl
.ws_aop
->fd
[0], EVENT_IO_READ
);
365 close(async_ctl
.ws_aop
->fd
[0]);
366 pwsi
->err
= WSAEWOULDBLOCK
;
370 extern BOOL32 THREAD_InitDone
;
372 THREAD_InitDone
= FALSE
;
375 close(async_ctl
.ws_aop
->fd
[0]); /* read endpoint */
376 switch( flag
& WSMSG_ASYNC_RQMASK
)
378 case WSMSG_ASYNC_HOSTBYADDR
:
379 case WSMSG_ASYNC_HOSTBYNAME
:
380 WS_do_async_gethost(pwsi
, flag
);
382 case WSMSG_ASYNC_PROTOBYNUM
:
383 case WSMSG_ASYNC_PROTOBYNAME
:
384 WS_do_async_getproto(pwsi
, flag
);
386 case WSMSG_ASYNC_SERVBYPORT
:
387 case WSMSG_ASYNC_SERVBYNAME
:
388 WS_do_async_getserv(pwsi
, flag
);
391 _exit(0); /* skip atexit()'ed cleanup */
394 else pwsi
->err
= wsaErrno(); /* failed to create pipe */
396 __ws_memfree((void*)async_ctl
.ws_aop
);
397 } else pwsi
->err
= WSAEWOULDBLOCK
;
401 static int _async_notify()
403 /* use half-duplex pipe to send variable length packets
404 * to the parent process */
406 write(async_ctl
.ws_aop
->fd
[1], &async_ctl
.ilength
, sizeof(unsigned));
407 write(async_ctl
.ws_aop
->fd
[1], async_ctl
.buffer
, async_ctl
.ilength
);
410 kill(getppid(), SIGIO
); /* simulate async I/O */
413 /* was a __WS_ASYNC_DEBUG statement */
414 TRACE(winsock
, "handler - notify aop [%d, buf %d]\n",
415 async_ctl
.ilength
, async_ctl
.ws_aop
->buflen
);
419 static void _async_fail()
421 /* write a DWORD with error code (low word is zero) */
424 (h_errno
< 0) ? (unsigned)WSAMAKEASYNCREPLY( 0, wsaErrno() )
425 : (unsigned)WSAMAKEASYNCREPLY( 0, wsaHerrno() );
426 write(async_ctl
.ws_aop
->fd
[1], &async_ctl
.ilength
, sizeof(unsigned) );
428 kill(getppid(), SIGIO
); /* simulate async I/O */
431 /* was a __WS_ASYNC_DEBUG statement */
432 TRACE(winsock
, "handler - failed aop [%d, buf %d]\n",
433 async_ctl
.ilength
, async_ctl
.ws_aop
->buflen
);
436 void dump_ws_hostent_offset(struct ws_hostent
* wshe
)
439 char* base
= (char*)wshe
;
442 DUMP("h_name = %08x\t[%s]\n",
443 (unsigned)wshe
->h_name
, base
+ (unsigned)wshe
->h_name
);
444 DUMP("h_aliases = %08x\t[%08x]\n",
445 (unsigned)wshe
->h_aliases
, (unsigned)(base
+(unsigned)wshe
->h_aliases
));
446 ptr
= (unsigned*)(base
+ (unsigned)wshe
->h_aliases
);
447 for(i
= 0; ptr
[i
]; i
++ )
449 DUMP("%i - %08x [%s]\n", i
+ 1, ptr
[i
], ((char*)base
) + ptr
[i
]);
451 DUMP("h_length = %i\n", wshe
->h_length
);
454 void WS_do_async_gethost(LPWSINFO pwsi
, unsigned flag
)
457 struct hostent
* p_he
;
459 close(async_ctl
.ws_aop
->fd
[0]);
461 p_he
= (flag
& WSMSG_ASYNC_HOSTBYNAME
)
462 ? gethostbyname(async_ctl
.rq
.name
)
463 : gethostbyaddr(async_ctl
.rq
.name
,
464 async_ctl
.ilength
, async_ctl
.type
);
466 TRACE(winsock
,"DNS: got hostent for [%s]\n", async_ctl
.rq
.name
);
468 if( p_he
) /* convert to the Winsock format with internal pointers as offsets */
469 size
= WS_dup_he(pwsi
, p_he
, WS_DUP_OFFSET
|
470 ((flag
& WSMSG_WIN32_AOP
) ? WS_DUP_LINEAR
: WS_DUP_SEGPTR
) );
473 async_ctl
.buffer
= (char*)pwsi
->he
;
474 async_ctl
.ilength
= (unsigned)WSAMAKEASYNCREPLY( (UINT16
)size
, 0 );
475 _async_notify( flag
);
480 void WS_do_async_getproto(LPWSINFO pwsi
, unsigned flag
)
483 struct protoent
* p_pe
;
485 close(async_ctl
.ws_aop
->fd
[0]);
486 p_pe
= (flag
& WSMSG_ASYNC_PROTOBYNAME
)
487 ? getprotobyname(async_ctl
.rq
.name
)
488 : getprotobynumber(async_ctl
.type
);
490 TRACE(winsock
,"DNS: got protoent for [%s]\n", async_ctl
.rq
.name
);
492 if( p_pe
) /* convert to the Winsock format with internal pointers as offsets */
493 size
= WS_dup_pe(pwsi
, p_pe
, WS_DUP_OFFSET
|
494 ((flag
& WSMSG_WIN32_AOP
) ? WS_DUP_LINEAR
: WS_DUP_SEGPTR
) );
497 async_ctl
.buffer
= (char*)pwsi
->pe
;
498 async_ctl
.ilength
= (unsigned)WSAMAKEASYNCREPLY( (UINT16
)size
, 0 );
499 _async_notify( flag
);
504 void WS_do_async_getserv(LPWSINFO pwsi
, unsigned flag
)
507 struct servent
* p_se
;
509 close(async_ctl
.ws_aop
->fd
[0]);
510 p_se
= (flag
& WSMSG_ASYNC_SERVBYNAME
)
511 ? getservbyname(async_ctl
.rq
.name
, async_ctl
.buffer
)
512 : getservbyport(async_ctl
.type
, async_ctl
.buffer
);
514 if( p_se
) /* convert to the Winsock format with internal pointers as offsets */
515 size
= WS_dup_se(pwsi
, p_se
, WS_DUP_OFFSET
|
516 ((flag
& WSMSG_WIN32_AOP
) ? WS_DUP_LINEAR
: WS_DUP_SEGPTR
) );
519 async_ctl
.buffer
= (char*)pwsi
->se
;
520 async_ctl
.ilength
= (unsigned)WSAMAKEASYNCREPLY( (UINT16
)size
, 0 );
521 _async_notify( flag
);
526 /* ----------------------------------- helper functions -
528 * Raw results from the pipe contain internal pointers stored as
529 * offsets relative to the beginning of the buffer and we need
530 * to apply a fixup before passing them to applications.
532 * NOTE: It is possible to exploit the fact that fork() doesn't
533 * change the buffer address by storing fixed up pointers right
534 * in the handler. However, this will get in the way if we ever
535 * get around to implementing DNS helper daemon a-la Netscape 4.x.
538 void fixup_wshe(struct ws_hostent
* p_wshe
, void* base
)
540 /* add 'base' to ws_hostent pointers to convert them from offsets */
543 unsigned* p_aliases
,*p_addr
;
545 p_aliases
= (unsigned*)((char*)p_wshe
+ (unsigned)p_wshe
->h_aliases
);
546 p_addr
= (unsigned*)((char*)p_wshe
+ (unsigned)p_wshe
->h_addr_list
);
547 ((unsigned)(p_wshe
->h_name
)) += (unsigned)base
;
548 ((unsigned)(p_wshe
->h_aliases
)) += (unsigned)base
;
549 ((unsigned)(p_wshe
->h_addr_list
)) += (unsigned)base
;
550 for(i
=0;p_aliases
[i
];i
++) p_aliases
[i
] += (unsigned)base
;
551 for(i
=0;p_addr
[i
];i
++) p_addr
[i
] += (unsigned)base
;
554 void fixup_wspe(struct ws_protoent
* p_wspe
, void* base
)
557 unsigned* p_aliases
= (unsigned*)((char*)p_wspe
+ (unsigned)p_wspe
->p_aliases
);
558 ((unsigned)(p_wspe
->p_name
)) += (unsigned)base
;
559 ((unsigned)(p_wspe
->p_aliases
)) += (unsigned)base
;
560 for(i
=0;p_aliases
[i
];i
++) p_aliases
[i
] += (unsigned)base
;
563 void fixup_wsse(struct ws_servent
* p_wsse
, void* base
)
566 unsigned* p_aliases
= (unsigned*)((char*)p_wsse
+ (unsigned)p_wsse
->s_aliases
);
567 ((unsigned)(p_wsse
->s_name
)) += (unsigned)base
;
568 ((p_wsse
->s_proto
)) += (unsigned)base
;
569 ((p_wsse
->s_aliases
)) += (unsigned)base
;
570 for(i
=0;p_aliases
[i
];i
++) p_aliases
[i
] += (unsigned)base
;