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git.saurik.com Git - apple/libinfo.git/blob - rpc.subproj/svc_udp.c
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7 * Reserved. This file contains Original Code and/or Modifications of
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22 * @APPLE_LICENSE_HEADER_END@
25 * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
26 * unrestricted use provided that this legend is included on all tape
27 * media and as a part of the software program in whole or part. Users
28 * may copy or modify Sun RPC without charge, but are not authorized
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30 * program developed by the user.
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34 * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
36 * Sun RPC is provided with no support and without any obligation on the
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38 * modification or enhancement.
40 * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
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42 * OR ANY PART THEREOF.
44 * In no event will Sun Microsystems, Inc. be liable for any lost revenue
45 * or profits or other special, indirect and consequential damages, even if
46 * Sun has been advised of the possibility of such damages.
48 * Sun Microsystems, Inc.
50 * Mountain View, California 94043
53 #if defined(LIBC_SCCS) && !defined(lint)
54 /*static char *sccsid = "from: @(#)svc_udp.c 1.24 87/08/11 Copyr 1984 Sun Micro";*/
55 /*static char *sccsid = "from: @(#)svc_udp.c 2.2 88/07/29 4.0 RPCSRC";*/
56 static char *rcsid
= "$Id: svc_udp.c,v 1.5 2004/10/13 00:24:07 jkh Exp $";
61 * Server side for UDP/IP based RPC. (Does some caching in the hopes of
62 * achieving execute-at-most-once semantics.)
64 * Copyright (C) 1984, Sun Microsystems, Inc.
67 #include "libinfo_common.h"
75 #include <sys/socket.h>
76 #include <sys/param.h>
79 extern int bindresvport();
81 #define rpc_buffer(xprt) ((xprt)->xp_p1)
83 static bool_t
svcudp_recv();
84 static bool_t
svcudp_reply();
85 static enum xprt_stat
svcudp_stat();
86 static bool_t
svcudp_getargs();
87 static bool_t
svcudp_freeargs();
88 static void svcudp_destroy();
90 static struct xp_ops svcudp_op
= {
102 * kept in xprt->xp_p2
105 u_int su_iosz
; /* byte size of send.recv buffer */
107 uint32_t su_xid
; /* transaction id */
109 u_long su_xid
; /* transaction id */
111 XDR su_xdrs
; /* XDR handle */
112 char su_verfbody
[MAX_AUTH_BYTES
]; /* verifier body */
113 char * su_cache
; /* cached data, NULL if no cache */
115 #define su_data(xprt) ((struct svcudp_data *)(xprt->xp_p2))
119 * xprt = svcudp_create(sock);
121 * If sock<0 then a socket is created, else sock is used.
122 * If the socket, sock is not bound to a port then svcudp_create
123 * binds it to an arbitrary port. In any (successful) case,
124 * xprt->xp_sock is the registered socket number and xprt->xp_port is the
125 * associated port number.
126 * Once *xprt is initialized, it is registered as a transporter;
127 * see (svc.h, xprt_register).
128 * The routines returns NULL if a problem occurred.
132 svcudp_bufcreate(sock
, sendsz
, recvsz
)
134 u_int sendsz
, recvsz
;
136 bool_t madesock
= FALSE
;
137 register SVCXPRT
*xprt
;
138 register struct svcudp_data
*su
;
139 struct sockaddr_in addr
;
140 unsigned int len
= sizeof(struct sockaddr_in
);
142 if (sock
== RPC_ANYSOCK
) {
143 if ((sock
= socket(AF_INET
, SOCK_DGRAM
, IPPROTO_UDP
)) < 0) {
144 perror("svcudp_create: socket creation problem");
145 return ((SVCXPRT
*)NULL
);
149 bzero((char *)&addr
, sizeof (addr
));
150 addr
.sin_family
= AF_INET
;
151 if (bindresvport(sock
, &addr
)) {
153 (void)bind(sock
, (struct sockaddr
*)&addr
, len
);
155 if (getsockname(sock
, (struct sockaddr
*)&addr
, &len
) != 0) {
156 perror("svcudp_create - cannot getsockname");
159 return ((SVCXPRT
*)NULL
);
161 xprt
= (SVCXPRT
*)mem_alloc(sizeof(SVCXPRT
));
163 (void)fprintf(stderr
, "svcudp_create: out of memory\n");
166 su
= (struct svcudp_data
*)mem_alloc(sizeof(*su
));
168 mem_free(xprt
, sizeof(SVCXPRT
));
169 (void)fprintf(stderr
, "svcudp_create: out of memory\n");
172 su
->su_iosz
= ((MAX(sendsz
, recvsz
) + 3) / 4) * 4;
173 if ((rpc_buffer(xprt
) = mem_alloc(su
->su_iosz
)) == NULL
) {
174 mem_free(xprt
, sizeof(SVCXPRT
));
175 mem_free(su
, sizeof(*su
));
176 (void)fprintf(stderr
, "svcudp_create: out of memory\n");
180 &(su
->su_xdrs
), rpc_buffer(xprt
), su
->su_iosz
, XDR_DECODE
);
182 xprt
->xp_p2
= (caddr_t
)su
;
183 xprt
->xp_verf
.oa_base
= su
->su_verfbody
;
184 xprt
->xp_ops
= &svcudp_op
;
185 xprt
->xp_port
= ntohs(addr
.sin_port
);
186 xprt
->xp_sock
= sock
;
197 return(svcudp_bufcreate(sock
, UDPMSGSIZE
, UDPMSGSIZE
));
200 static enum xprt_stat
208 static int cache_get();
209 static void cache_set();
212 svcudp_recv(xprt
, msg
)
213 register SVCXPRT
*xprt
;
216 register struct svcudp_data
*su
= su_data(xprt
);
217 register XDR
*xdrs
= &(su
->su_xdrs
);
227 xprt
->xp_addrlen
= sizeof(struct sockaddr_in
);
228 rlen
= recvfrom(xprt
->xp_sock
, rpc_buffer(xprt
), (int) su
->su_iosz
, 0, (struct sockaddr
*)&(xprt
->xp_raddr
), (unsigned int *)&(xprt
->xp_addrlen
));
229 if (rlen
== -1 && errno
== EINTR
)
232 if (rlen
< 4*sizeof(uint32_t))
235 if (rlen
< 4*sizeof(u_long
))
238 xdrs
->x_op
= XDR_DECODE
;
240 if (! xdr_callmsg(xdrs
, msg
))
242 su
->su_xid
= msg
->rm_xid
;
243 if (su
->su_cache
!= NULL
) {
244 if (cache_get(xprt
, msg
, &reply
, &replylen
)) {
245 (void) sendto(xprt
->xp_sock
, reply
, (int) replylen
, 0,
246 (struct sockaddr
*) &xprt
->xp_raddr
, xprt
->xp_addrlen
);
254 svcudp_reply(xprt
, msg
)
255 register SVCXPRT
*xprt
;
258 register struct svcudp_data
*su
= su_data(xprt
);
259 register XDR
*xdrs
= &(su
->su_xdrs
);
261 register bool_t stat
= FALSE
;
263 xdrs
->x_op
= XDR_ENCODE
;
265 msg
->rm_xid
= su
->su_xid
;
266 if (xdr_replymsg(xdrs
, msg
)) {
267 slen
= (int)XDR_GETPOS(xdrs
);
268 if (sendto(xprt
->xp_sock
, rpc_buffer(xprt
), slen
, 0,
269 (struct sockaddr
*)&(xprt
->xp_raddr
), xprt
->xp_addrlen
)
272 if (su
->su_cache
&& slen
>= 0) {
274 cache_set(xprt
, (uint32_t) slen
);
276 cache_set(xprt
, (u_long
) slen
);
285 svcudp_getargs(xprt
, xdr_args
, args_ptr
)
291 return ((*xdr_args
)(&(su_data(xprt
)->su_xdrs
), args_ptr
, 0));
295 svcudp_freeargs(xprt
, xdr_args
, args_ptr
)
300 register XDR
*xdrs
= &(su_data(xprt
)->su_xdrs
);
302 xdrs
->x_op
= XDR_FREE
;
303 return ((*xdr_args
)(xdrs
, args_ptr
, 0));
308 register SVCXPRT
*xprt
;
310 register struct svcudp_data
*su
= su_data(xprt
);
312 xprt_unregister(xprt
);
313 (void)close(xprt
->xp_sock
);
314 XDR_DESTROY(&(su
->su_xdrs
));
315 mem_free(rpc_buffer(xprt
), su
->su_iosz
);
316 mem_free((caddr_t
)su
, sizeof(struct svcudp_data
));
317 mem_free((caddr_t
)xprt
, sizeof(SVCXPRT
));
321 /***********this could be a separate file*********************/
324 * Fifo cache for udp server
325 * Copies pointers to reply buffers into fifo cache
326 * Buffers are sent again if retransmissions are detected.
329 #define SPARSENESS 4 /* 75% sparse */
331 #define CACHE_PERROR(msg) \
332 (void) fprintf(stderr,"%s\n", msg)
334 #define ALLOC(type, size) \
335 (type *) mem_alloc((unsigned) (sizeof(type) * (size)))
337 #define BZERO(addr, type, size) \
338 bzero((char *) addr, sizeof(type) * (int) (size))
341 * An entry in the cache
343 typedef struct cache_node
*cache_ptr
;
346 * Index into cache is xid, proc, vers, prog and address
359 struct sockaddr_in cache_addr
;
361 * The cached reply and length
365 uint32_t cache_replylen
;
367 u_long cache_replylen
;
370 * Next node on the list, if there is a collision
372 cache_ptr cache_next
;
382 uint32_t uc_size
; /* size of cache */
384 u_long uc_size
; /* size of cache */
386 cache_ptr
*uc_entries
; /* hash table of entries in cache */
387 cache_ptr
*uc_fifo
; /* fifo list of entries in cache */
389 uint32_t uc_nextvictim
; /* points to next victim in fifo list */
390 uint32_t uc_prog
; /* saved program number */
391 uint32_t uc_vers
; /* saved version number */
392 uint32_t uc_proc
; /* saved procedure number */
394 u_long uc_nextvictim
; /* points to next victim in fifo list */
395 u_long uc_prog
; /* saved program number */
396 u_long uc_vers
; /* saved version number */
397 u_long uc_proc
; /* saved procedure number */
399 struct sockaddr_in uc_addr
; /* saved caller's address */
404 * the hashing function
406 #define CACHE_LOC(transp, xid) \
407 (xid % (SPARSENESS*((struct udp_cache *) su_data(transp)->su_cache)->uc_size))
411 * Enable use of the cache.
412 * Note: there is no disable.
415 svcudp_enablecache(transp
, size
)
423 struct svcudp_data
*su
= su_data(transp
);
424 struct udp_cache
*uc
;
426 if (su
->su_cache
!= NULL
) {
427 CACHE_PERROR("enablecache: cache already enabled");
430 uc
= ALLOC(struct udp_cache
, 1);
432 CACHE_PERROR("enablecache: could not allocate cache");
436 uc
->uc_nextvictim
= 0;
437 uc
->uc_entries
= ALLOC(cache_ptr
, size
* SPARSENESS
);
438 if (uc
->uc_entries
== NULL
) {
439 mem_free(uc
, sizeof(*uc
));
440 CACHE_PERROR("enablecache: could not allocate cache data");
443 BZERO(uc
->uc_entries
, cache_ptr
, size
* SPARSENESS
);
444 uc
->uc_fifo
= ALLOC(cache_ptr
, size
);
445 if (uc
->uc_fifo
== NULL
) {
446 mem_free(uc
->uc_entries
, sizeof(struct udp_cache
)*size
* SPARSENESS
);
447 mem_free(uc
, sizeof(struct udp_cache
));
448 CACHE_PERROR("enablecache: could not allocate cache fifo");
451 BZERO(uc
->uc_fifo
, cache_ptr
, size
);
452 su
->su_cache
= (char *) uc
;
458 * Set an entry in the cache
461 cache_set(xprt
, replylen
)
469 register cache_ptr victim
;
470 register cache_ptr
*vicp
;
471 register struct svcudp_data
*su
= su_data(xprt
);
472 struct udp_cache
*uc
= (struct udp_cache
*) su
->su_cache
;
477 * Find space for the new entry, either by
478 * reusing an old entry, or by mallocing a new one
480 victim
= uc
->uc_fifo
[uc
->uc_nextvictim
];
481 if (victim
!= NULL
) {
482 loc
= CACHE_LOC(xprt
, victim
->cache_xid
);
483 for (vicp
= &uc
->uc_entries
[loc
];
484 *vicp
!= NULL
&& *vicp
!= victim
;
485 vicp
= &(*vicp
)->cache_next
)
488 CACHE_PERROR("cache_set: victim not found");
491 *vicp
= victim
->cache_next
; /* remote from cache */
492 newbuf
= victim
->cache_reply
;
494 victim
= ALLOC(struct cache_node
, 1);
495 if (victim
== NULL
) {
496 CACHE_PERROR("cache_set: victim alloc failed");
499 newbuf
= mem_alloc(su
->su_iosz
);
500 if (newbuf
== NULL
) {
501 mem_free(victim
, sizeof(*victim
));
502 CACHE_PERROR("cache_set: could not allocate new rpc_buffer");
510 victim
->cache_replylen
= replylen
;
511 victim
->cache_reply
= rpc_buffer(xprt
);
512 rpc_buffer(xprt
) = newbuf
;
513 xdrmem_create(&(su
->su_xdrs
), rpc_buffer(xprt
), su
->su_iosz
, XDR_ENCODE
);
514 victim
->cache_xid
= su
->su_xid
;
515 victim
->cache_proc
= uc
->uc_proc
;
516 victim
->cache_vers
= uc
->uc_vers
;
517 victim
->cache_prog
= uc
->uc_prog
;
518 victim
->cache_addr
= uc
->uc_addr
;
519 loc
= CACHE_LOC(xprt
, victim
->cache_xid
);
520 victim
->cache_next
= uc
->uc_entries
[loc
];
521 uc
->uc_entries
[loc
] = victim
;
522 uc
->uc_fifo
[uc
->uc_nextvictim
++] = victim
;
523 uc
->uc_nextvictim
%= uc
->uc_size
;
527 * Try to get an entry from the cache
528 * return 1 if found, 0 if not found
531 cache_get(xprt
, msg
, replyp
, replylenp
)
542 register cache_ptr ent
;
543 register struct svcudp_data
*su
= su_data(xprt
);
544 register struct udp_cache
*uc
= (struct udp_cache
*) su
->su_cache
;
546 # define EQADDR(a1, a2) (bcmp((char*)&a1, (char*)&a2, sizeof(a1)) == 0)
548 loc
= CACHE_LOC(xprt
, su
->su_xid
);
549 for (ent
= uc
->uc_entries
[loc
]; ent
!= NULL
; ent
= ent
->cache_next
) {
550 if (ent
->cache_xid
== su
->su_xid
&&
551 ent
->cache_proc
== uc
->uc_proc
&&
552 ent
->cache_vers
== uc
->uc_vers
&&
553 ent
->cache_prog
== uc
->uc_prog
&&
554 EQADDR(ent
->cache_addr
, uc
->uc_addr
)) {
555 *replyp
= ent
->cache_reply
;
556 *replylenp
= ent
->cache_replylen
;
561 * Failed to find entry
562 * Remember a few things so we can do a set later
564 uc
->uc_proc
= msg
->rm_call
.cb_proc
;
565 uc
->uc_vers
= msg
->rm_call
.cb_vers
;
566 uc
->uc_prog
= msg
->rm_call
.cb_prog
;
567 uc
->uc_addr
= xprt
->xp_raddr
;