1 /* @(#)clnt_tcp.c 2.2 88/08/01 4.0 RPCSRC */
3 * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
4 * unrestricted use provided that this legend is included on all tape
5 * media and as a part of the software program in whole or part. Users
6 * may copy or modify Sun RPC without charge, but are not authorized
7 * to license or distribute it to anyone else except as part of a product or
8 * program developed by the user.
10 * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
11 * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
12 * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
14 * Sun RPC is provided with no support and without any obligation on the
15 * part of Sun Microsystems, Inc. to assist in its use, correction,
16 * modification or enhancement.
18 * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
19 * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
20 * OR ANY PART THEREOF.
22 * In no event will Sun Microsystems, Inc. be liable for any lost revenue
23 * or profits or other special, indirect and consequential damages, even if
24 * Sun has been advised of the possibility of such damages.
26 * Sun Microsystems, Inc.
28 * Mountain View, California 94043
30 #if !defined(lint) && defined(SCCSIDS)
31 static char sccsid
[] = "@(#)clnt_tcp.c 1.37 87/10/05 Copyr 1984 Sun Micro";
35 * clnt_tcp.c, Implements a TCP/IP based, client side RPC.
37 * Copyright (C) 1984, Sun Microsystems, Inc.
39 * TCP based RPC supports 'batched calls'.
40 * A sequence of calls may be batched-up in a send buffer. The rpc call
41 * return immediately to the client even though the call was not necessarily
42 * sent. The batching occurs if the results' xdr routine is NULL (0) AND
43 * the rpc timeout value is zero (see clnt.h, rpc).
45 * Clients should NOT casually batch calls that in fact return results; that is,
46 * the server side should be aware that a call is batched and not produce any
47 * return message. Batched calls that produce many result messages can
48 * deadlock (netlock) the client and the server....
50 * Now go hang yourself.
58 #include <sys/socket.h>
59 #include <rpc/pmap_clnt.h>
61 extern bool_t
xdr_opaque_auth (XDR
*, struct opaque_auth
*);
63 #define MCALL_MSG_SIZE 24
69 struct timeval ct_wait
;
70 bool_t ct_waitset
; /* wait set by clnt_control? */
71 struct sockaddr_in ct_addr
;
72 struct rpc_err ct_error
;
73 char ct_mcall
[MCALL_MSG_SIZE
]; /* marshalled callmsg */
74 u_int ct_mpos
; /* pos after marshal */
78 static int readtcp (char *, char *, int);
79 static int writetcp (char *, char *, int);
81 static enum clnt_stat
clnttcp_call (CLIENT
*, u_long
, xdrproc_t
, caddr_t
,
82 xdrproc_t
, caddr_t
, struct timeval
);
83 static void clnttcp_abort (void);
84 static void clnttcp_geterr (CLIENT
*, struct rpc_err
*);
85 static bool_t
clnttcp_freeres (CLIENT
*, xdrproc_t
, caddr_t
);
86 static bool_t
clnttcp_control (CLIENT
*, int, char *);
87 static void clnttcp_destroy (CLIENT
*);
89 static struct clnt_ops tcp_ops
=
100 * Create a client handle for a tcp/ip connection.
101 * If *sockp<0, *sockp is set to a newly created TCP socket and it is
102 * connected to raddr. If *sockp non-negative then
103 * raddr is ignored. The rpc/tcp package does buffering
104 * similar to stdio, so the client must pick send and receive buffer sizes,];
105 * 0 => use the default.
106 * If raddr->sin_port is 0, then a binder on the remote machine is
107 * consulted for the right port number.
108 * NB: *sockp is copied into a private area.
109 * NB: It is the clients responsibility to close *sockp.
110 * NB: The rpch->cl_auth is set null authentication. Caller may wish to set this
111 * something more useful.
114 clnttcp_create (struct sockaddr_in
*raddr
, u_long prog
, u_long vers
,
115 int *sockp
, u_int sendsz
, u_int recvsz
)
118 struct ct_data
*ct
= (struct ct_data
*) mem_alloc (sizeof (*ct
));
120 struct rpc_msg call_msg
;
122 h
= (CLIENT
*) mem_alloc (sizeof (*h
));
125 (void) fprintf (stderr
, _("clnttcp_create: out of memory\n"));
126 rpc_createerr
.cf_stat
= RPC_SYSTEMERROR
;
127 rpc_createerr
.cf_error
.re_errno
= errno
;
130 /* ct = (struct ct_data *) mem_alloc (sizeof (*ct)); */
133 (void) fprintf (stderr
, _("clnttcp_create: out of memory\n"));
134 rpc_createerr
.cf_stat
= RPC_SYSTEMERROR
;
135 rpc_createerr
.cf_error
.re_errno
= errno
;
140 * If no port number given ask the pmap for one
142 if (raddr
->sin_port
== 0)
145 if ((port
= pmap_getport (raddr
, prog
, vers
, IPPROTO_TCP
)) == 0)
147 mem_free ((caddr_t
) ct
, sizeof (struct ct_data
));
148 mem_free ((caddr_t
) h
, sizeof (CLIENT
));
149 return ((CLIENT
*) NULL
);
151 raddr
->sin_port
= htons (port
);
155 * If no socket given, open one
159 *sockp
= socket (AF_INET
, SOCK_STREAM
, IPPROTO_TCP
);
160 (void) bindresvport (*sockp
, (struct sockaddr_in
*) 0);
162 || (connect (*sockp
, (struct sockaddr
*) raddr
,
163 sizeof (*raddr
)) < 0))
165 rpc_createerr
.cf_stat
= RPC_SYSTEMERROR
;
166 rpc_createerr
.cf_error
.re_errno
= errno
;
168 (void) close (*sockp
);
171 ct
->ct_closeit
= TRUE
;
175 ct
->ct_closeit
= FALSE
;
179 * Set up private data struct
181 ct
->ct_sock
= *sockp
;
182 ct
->ct_wait
.tv_usec
= 0;
183 ct
->ct_waitset
= FALSE
;
184 ct
->ct_addr
= *raddr
;
187 * Initialize call message
189 (void) gettimeofday (&now
, (struct timezone
*) 0);
190 call_msg
.rm_xid
= getpid () ^ now
.tv_sec
^ now
.tv_usec
;
191 call_msg
.rm_direction
= CALL
;
192 call_msg
.rm_call
.cb_rpcvers
= RPC_MSG_VERSION
;
193 call_msg
.rm_call
.cb_prog
= prog
;
194 call_msg
.rm_call
.cb_vers
= vers
;
197 * pre-serialize the static part of the call msg and stash it away
199 xdrmem_create (&(ct
->ct_xdrs
), ct
->ct_mcall
, MCALL_MSG_SIZE
,
201 if (!xdr_callhdr (&(ct
->ct_xdrs
), &call_msg
))
205 (void) close (*sockp
);
209 ct
->ct_mpos
= XDR_GETPOS (&(ct
->ct_xdrs
));
210 XDR_DESTROY (&(ct
->ct_xdrs
));
213 * Create a client handle which uses xdrrec for serialization
214 * and authnone for authentication.
216 xdrrec_create (&(ct
->ct_xdrs
), sendsz
, recvsz
,
217 (caddr_t
) ct
, readtcp
, writetcp
);
218 h
->cl_ops
= &tcp_ops
;
219 h
->cl_private
= (caddr_t
) ct
;
220 h
->cl_auth
= authnone_create ();
225 * Something goofed, free stuff and barf
227 mem_free ((caddr_t
) ct
, sizeof (struct ct_data
));
228 mem_free ((caddr_t
) h
, sizeof (CLIENT
));
229 return ((CLIENT
*) NULL
);
232 static enum clnt_stat
233 clnttcp_call (h
, proc
, xdr_args
, args_ptr
, xdr_results
, results_ptr
, timeout
)
238 xdrproc_t xdr_results
;
240 struct timeval timeout
;
242 struct ct_data
*ct
= (struct ct_data
*) h
->cl_private
;
243 XDR
*xdrs
= &(ct
->ct_xdrs
);
244 struct rpc_msg reply_msg
;
246 u_int32_t
*msg_x_id
= (u_int32_t
*) (ct
->ct_mcall
); /* yuk */
252 ct
->ct_wait
= timeout
;
256 (xdr_results
== (xdrproc_t
) 0 && timeout
.tv_sec
== 0
257 && timeout
.tv_usec
== 0) ? FALSE
: TRUE
;
260 xdrs
->x_op
= XDR_ENCODE
;
261 ct
->ct_error
.re_status
= RPC_SUCCESS
;
262 x_id
= ntohl (--(*msg_x_id
));
263 if ((!XDR_PUTBYTES (xdrs
, ct
->ct_mcall
, ct
->ct_mpos
)) ||
264 (!XDR_PUTLONG (xdrs
, (long *) &proc
)) ||
265 (!AUTH_MARSHALL (h
->cl_auth
, xdrs
)) ||
266 (!(*xdr_args
) (xdrs
, args_ptr
)))
268 if (ct
->ct_error
.re_status
== RPC_SUCCESS
)
269 ct
->ct_error
.re_status
= RPC_CANTENCODEARGS
;
270 (void) xdrrec_endofrecord (xdrs
, TRUE
);
271 return (ct
->ct_error
.re_status
);
273 if (!xdrrec_endofrecord (xdrs
, shipnow
))
274 return ct
->ct_error
.re_status
= RPC_CANTSEND
;
278 * Hack to provide rpc-based message passing
280 if (timeout
.tv_sec
== 0 && timeout
.tv_usec
== 0)
282 return ct
->ct_error
.re_status
= RPC_TIMEDOUT
;
287 * Keep receiving until we get a valid transaction id
289 xdrs
->x_op
= XDR_DECODE
;
292 reply_msg
.acpted_rply
.ar_verf
= _null_auth
;
293 reply_msg
.acpted_rply
.ar_results
.where
= NULL
;
294 reply_msg
.acpted_rply
.ar_results
.proc
= (xdrproc_t
)xdr_void
;
295 if (!xdrrec_skiprecord (xdrs
))
296 return (ct
->ct_error
.re_status
);
297 /* now decode and validate the response header */
298 if (!xdr_replymsg (xdrs
, &reply_msg
))
300 if (ct
->ct_error
.re_status
== RPC_SUCCESS
)
302 return ct
->ct_error
.re_status
;
304 if (reply_msg
.rm_xid
== x_id
)
311 _seterr_reply (&reply_msg
, &(ct
->ct_error
));
312 if (ct
->ct_error
.re_status
== RPC_SUCCESS
)
314 if (!AUTH_VALIDATE (h
->cl_auth
, &reply_msg
.acpted_rply
.ar_verf
))
316 ct
->ct_error
.re_status
= RPC_AUTHERROR
;
317 ct
->ct_error
.re_why
= AUTH_INVALIDRESP
;
319 else if (!(*xdr_results
) (xdrs
, results_ptr
))
321 if (ct
->ct_error
.re_status
== RPC_SUCCESS
)
322 ct
->ct_error
.re_status
= RPC_CANTDECODERES
;
324 /* free verifier ... */
325 if (reply_msg
.acpted_rply
.ar_verf
.oa_base
!= NULL
)
327 xdrs
->x_op
= XDR_FREE
;
328 (void) xdr_opaque_auth (xdrs
, &(reply_msg
.acpted_rply
.ar_verf
));
330 } /* end successful completion */
333 /* maybe our credentials need to be refreshed ... */
334 if (refreshes
-- && AUTH_REFRESH (h
->cl_auth
))
336 } /* end of unsuccessful completion */
337 return ct
->ct_error
.re_status
;
341 clnttcp_geterr (h
, errp
)
343 struct rpc_err
*errp
;
346 (struct ct_data
*) h
->cl_private
;
348 *errp
= ct
->ct_error
;
352 clnttcp_freeres (cl
, xdr_res
, res_ptr
)
357 struct ct_data
*ct
= (struct ct_data
*) cl
->cl_private
;
358 XDR
*xdrs
= &(ct
->ct_xdrs
);
360 xdrs
->x_op
= XDR_FREE
;
361 return (*xdr_res
) (xdrs
, res_ptr
);
370 clnttcp_control (cl
, request
, info
)
375 struct ct_data
*ct
= (struct ct_data
*) cl
->cl_private
;
380 ct
->ct_wait
= *(struct timeval
*) info
;
381 ct
->ct_waitset
= TRUE
;
384 *(struct timeval
*) info
= ct
->ct_wait
;
386 case CLGET_SERVER_ADDR
:
387 *(struct sockaddr_in
*) info
= ct
->ct_addr
;
397 clnttcp_destroy (CLIENT
*h
)
400 (struct ct_data
*) h
->cl_private
;
404 (void) close (ct
->ct_sock
);
406 XDR_DESTROY (&(ct
->ct_xdrs
));
407 mem_free ((caddr_t
) ct
, sizeof (struct ct_data
));
408 mem_free ((caddr_t
) h
, sizeof (CLIENT
));
412 * Interface between xdr serializer and tcp connection.
413 * Behaves like the system calls, read & write, but keeps some error state
414 * around for the rpc level.
417 readtcp (char *ctptr
, char *buf
, int len
)
419 struct ct_data
*ct
= (struct ct_data
*)ctptr
;
427 FD_SET (ct
->ct_sock
, &mask
);
429 int mask
= 1 << (ct
->ct_sock
);
435 #endif /* def FD_SETSIZE */
438 struct timeval timeout
= ct
->ct_wait
;
440 switch (select (_rpc_dtablesize (), &readfds
, (fd_set
*)NULL
,
441 (fd_set
*)NULL
, &timeout
))
444 ct
->ct_error
.re_status
= RPC_TIMEDOUT
;
450 ct
->ct_error
.re_status
= RPC_CANTRECV
;
451 ct
->ct_error
.re_errno
= errno
;
456 switch (len
= read (ct
->ct_sock
, buf
, len
))
461 ct
->ct_error
.re_errno
= ECONNRESET
;
462 ct
->ct_error
.re_status
= RPC_CANTRECV
;
463 len
= -1; /* it's really an error */
467 ct
->ct_error
.re_errno
= errno
;
468 ct
->ct_error
.re_status
= RPC_CANTRECV
;
475 writetcp (char *ctptr
, char *buf
, int len
)
478 struct ct_data
*ct
= (struct ct_data
*)ctptr
;
480 for (cnt
= len
; cnt
> 0; cnt
-= i
, buf
+= i
)
482 if ((i
= write (ct
->ct_sock
, buf
, cnt
)) == -1)
484 ct
->ct_error
.re_errno
= errno
;
485 ct
->ct_error
.re_status
= RPC_CANTSEND
;