xref: /freebsd/usr.sbin/rpcbind/rpcb_svc_com.c (revision 17d6c636720d00f77e5d098daf4c278f89d84f7b)
1 /*	$NetBSD: rpcb_svc_com.c,v 1.6 2000/08/03 00:07:22 fvdl Exp $	*/
2 /*	$FreeBSD$ */
3 
4 /*
5  * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
6  * unrestricted use provided that this legend is included on all tape
7  * media and as a part of the software program in whole or part.  Users
8  * may copy or modify Sun RPC without charge, but are not authorized
9  * to license or distribute it to anyone else except as part of a product or
10  * program developed by the user.
11  *
12  * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
13  * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
14  * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
15  *
16  * Sun RPC is provided with no support and without any obligation on the
17  * part of Sun Microsystems, Inc. to assist in its use, correction,
18  * modification or enhancement.
19  *
20  * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
21  * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
22  * OR ANY PART THEREOF.
23  *
24  * In no event will Sun Microsystems, Inc. be liable for any lost revenue
25  * or profits or other special, indirect and consequential damages, even if
26  * Sun has been advised of the possibility of such damages.
27  *
28  * Sun Microsystems, Inc.
29  * 2550 Garcia Avenue
30  * Mountain View, California  94043
31  */
32 /*
33  * Copyright (c) 1986 - 1991 by Sun Microsystems, Inc.
34  */
35 
36 /* #ident	"@(#)rpcb_svc_com.c	1.18	94/05/02 SMI" */
37 
38 /*
39  * rpcb_svc_com.c
40  * The commom server procedure for the rpcbind.
41  */
42 
43 #include <sys/types.h>
44 #include <sys/stat.h>
45 #include <sys/param.h>
46 #include <sys/poll.h>
47 #include <sys/socket.h>
48 #include <rpc/rpc.h>
49 #include <rpc/rpcb_prot.h>
50 #include <rpc/svc_dg.h>
51 #include <netconfig.h>
52 #include <errno.h>
53 #include <syslog.h>
54 #include <unistd.h>
55 #include <stdio.h>
56 #ifdef PORTMAP
57 #include <netinet/in.h>
58 #include <rpc/pmap_prot.h>
59 #endif /* PORTMAP */
60 #include <string.h>
61 #include <stdlib.h>
62 
63 #include "rpcbind.h"
64 
65 #define RPC_BUF_MAX	65536	/* can be raised if required */
66 
67 static char *nullstring = "";
68 static int rpcb_rmtcalls;
69 
70 struct rmtcallfd_list {
71 	int fd;
72 	SVCXPRT *xprt;
73 	char *netid;
74 	struct rmtcallfd_list *next;
75 };
76 
77 #define NFORWARD        64
78 #define MAXTIME_OFF     300     /* 5 minutes */
79 
80 struct finfo {
81 	int             flag;
82 #define FINFO_ACTIVE    0x1
83 	u_int32_t       caller_xid;
84         struct netbuf   *caller_addr;
85 	u_int32_t       forward_xid;
86 	int             forward_fd;
87 	char            *uaddr;
88 	rpcproc_t       reply_type;
89 	rpcvers_t       versnum;
90 	time_t          time;
91 };
92 static struct finfo     FINFO[NFORWARD];
93 
94 
95 static bool_t xdr_encap_parms __P((XDR *, struct encap_parms *));
96 static bool_t xdr_rmtcall_args __P((XDR *, struct r_rmtcall_args *));
97 static bool_t xdr_rmtcall_result __P((XDR *, struct r_rmtcall_args *));
98 static bool_t xdr_opaque_parms __P((XDR *, struct r_rmtcall_args *));
99 static int find_rmtcallfd_by_netid __P((char *));
100 static SVCXPRT *find_rmtcallxprt_by_fd __P((int));
101 static int forward_register __P((u_int32_t, struct netbuf *, int, char *,
102     rpcproc_t, rpcvers_t, u_int32_t *));
103 static struct finfo *forward_find __P((u_int32_t));
104 static int free_slot_by_xid __P((u_int32_t));
105 static int free_slot_by_index __P((int));
106 static int netbufcmp __P((struct netbuf *, struct netbuf *));
107 static struct netbuf *netbufdup __P((struct netbuf *));
108 static void netbuffree __P((struct netbuf *));
109 static int check_rmtcalls __P((struct pollfd *, int));
110 static void xprt_set_caller __P((SVCXPRT *, struct finfo *));
111 static void send_svcsyserr __P((SVCXPRT *, struct finfo *));
112 static void handle_reply __P((int, SVCXPRT *));
113 static void find_versions __P((rpcprog_t, char *, rpcvers_t *, rpcvers_t *));
114 static rpcblist_ptr find_service __P((rpcprog_t, rpcvers_t, char *));
115 static char *getowner __P((SVCXPRT *, char *, size_t));
116 static int add_pmaplist __P((RPCB *));
117 static int del_pmaplist __P((RPCB *));
118 
119 /*
120  * Set a mapping of program, version, netid
121  */
122 /* ARGSUSED */
123 void *
124 rpcbproc_set_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp,
125 		 rpcvers_t rpcbversnum)
126 {
127 	RPCB *regp = (RPCB *)arg;
128 	static bool_t ans;
129 	char owner[64];
130 
131 #ifdef RPCBIND_DEBUG
132 	if (debugging)
133 		fprintf(stderr, "RPCB_SET request for (%lu, %lu, %s, %s) : ",
134 		    (unsigned long)regp->r_prog, (unsigned long)regp->r_vers,
135 		    regp->r_netid, regp->r_addr);
136 #endif
137 	ans = map_set(regp, getowner(transp, owner, sizeof owner));
138 #ifdef RPCBIND_DEBUG
139 	if (debugging)
140 		fprintf(stderr, "%s\n", ans == TRUE ? "succeeded" : "failed");
141 #endif
142 	/* XXX: should have used some defined constant here */
143 	rpcbs_set(rpcbversnum - 2, ans);
144 	return (void *)&ans;
145 }
146 
147 bool_t
148 map_set(RPCB *regp, char *owner)
149 {
150 	RPCB reg, *a;
151 	rpcblist_ptr rbl, fnd;
152 
153 	reg = *regp;
154 	/*
155 	 * check to see if already used
156 	 * find_service returns a hit even if
157 	 * the versions don't match, so check for it
158 	 */
159 	fnd = find_service(reg.r_prog, reg.r_vers, reg.r_netid);
160 	if (fnd && (fnd->rpcb_map.r_vers == reg.r_vers)) {
161 		if (!strcmp(fnd->rpcb_map.r_addr, reg.r_addr))
162 			/*
163 			 * if these match then it is already
164 			 * registered so just say "OK".
165 			 */
166 			return (TRUE);
167 		else
168 			return (FALSE);
169 	}
170 	/*
171 	 * add to the end of the list
172 	 */
173 	rbl = (rpcblist_ptr) malloc((u_int)sizeof (RPCBLIST));
174 	if (rbl == (rpcblist_ptr)NULL) {
175 		return (FALSE);
176 	}
177 	a = &(rbl->rpcb_map);
178 	a->r_prog = reg.r_prog;
179 	a->r_vers = reg.r_vers;
180 	a->r_netid = strdup(reg.r_netid);
181 	a->r_addr = strdup(reg.r_addr);
182 	a->r_owner = strdup(owner);
183 	if (!a->r_addr || !a->r_netid || !a->r_owner) {
184 		if (a->r_netid)
185 			free(a->r_netid);
186 		if (a->r_addr)
187 			free(a->r_addr);
188 		if (a->r_owner)
189 			free(a->r_owner);
190 		free(rbl);
191 		return (FALSE);
192 	}
193 	rbl->rpcb_next = (rpcblist_ptr)NULL;
194 	if (list_rbl == NULL) {
195 		list_rbl = rbl;
196 	} else {
197 		for (fnd = list_rbl; fnd->rpcb_next;
198 			fnd = fnd->rpcb_next)
199 			;
200 		fnd->rpcb_next = rbl;
201 	}
202 #ifdef PORTMAP
203 	(void) add_pmaplist(regp);
204 #endif
205 	return (TRUE);
206 }
207 
208 /*
209  * Unset a mapping of program, version, netid
210  */
211 /* ARGSUSED */
212 void *
213 rpcbproc_unset_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp,
214 		   rpcvers_t rpcbversnum)
215 {
216 	RPCB *regp = (RPCB *)arg;
217 	static bool_t ans;
218 	char owner[64];
219 
220 #ifdef RPCBIND_DEBUG
221 	if (debugging)
222 		fprintf(stderr, "RPCB_UNSET request for (%lu, %lu, %s) : ",
223 		    (unsigned long)regp->r_prog, (unsigned long)regp->r_vers,
224 		    regp->r_netid);
225 #endif
226 	ans = map_unset(regp, getowner(transp, owner, sizeof owner));
227 #ifdef RPCBIND_DEBUG
228 	if (debugging)
229 		fprintf(stderr, "%s\n", ans == TRUE ? "succeeded" : "failed");
230 #endif
231 	/* XXX: should have used some defined constant here */
232 	rpcbs_unset(rpcbversnum - 2, ans);
233 	return (void *)&ans;
234 }
235 
236 bool_t
237 map_unset(RPCB *regp, char *owner)
238 {
239 	int ans = 0;
240 	rpcblist_ptr rbl, prev, tmp;
241 
242 	if (owner == NULL)
243 		return (0);
244 
245 	for (prev = NULL, rbl = list_rbl; rbl; /* cstyle */) {
246 		if ((rbl->rpcb_map.r_prog != regp->r_prog) ||
247 			(rbl->rpcb_map.r_vers != regp->r_vers) ||
248 			(regp->r_netid[0] && strcasecmp(regp->r_netid,
249 				rbl->rpcb_map.r_netid))) {
250 			/* both rbl & prev move forwards */
251 			prev = rbl;
252 			rbl = rbl->rpcb_next;
253 			continue;
254 		}
255 		/*
256 		 * Check whether appropriate uid. Unset only
257 		 * if superuser or the owner itself.
258 		 */
259 		if (strcmp(owner, "superuser") &&
260 			strcmp(rbl->rpcb_map.r_owner, owner))
261 			return (0);
262 		/* found it; rbl moves forward, prev stays */
263 		ans = 1;
264 		tmp = rbl;
265 		rbl = rbl->rpcb_next;
266 		if (prev == NULL)
267 			list_rbl = rbl;
268 		else
269 			prev->rpcb_next = rbl;
270 		free(tmp->rpcb_map.r_addr);
271 		free(tmp->rpcb_map.r_netid);
272 		free(tmp->rpcb_map.r_owner);
273 		free(tmp);
274 	}
275 #ifdef PORTMAP
276 	if (ans)
277 		(void) del_pmaplist(regp);
278 #endif
279 	/*
280 	 * We return 1 either when the entry was not there or it
281 	 * was able to unset it.  It can come to this point only if
282 	 * atleast one of the conditions is true.
283 	 */
284 	return (1);
285 }
286 
287 void
288 delete_prog(int prog)
289 {
290 	RPCB reg;
291 	register rpcblist_ptr rbl;
292 
293 	for (rbl = list_rbl; rbl != NULL; rbl = rbl->rpcb_next) {
294 		if ((rbl->rpcb_map.r_prog != prog))
295 			continue;
296 		if (is_bound(rbl->rpcb_map.r_netid, rbl->rpcb_map.r_addr))
297 			continue;
298 		reg.r_prog = rbl->rpcb_map.r_prog;
299 		reg.r_vers = rbl->rpcb_map.r_vers;
300 		reg.r_netid = strdup(rbl->rpcb_map.r_netid);
301 		(void) map_unset(&reg, "superuser");
302 		free(reg.r_netid);
303 	}
304 }
305 
306 void *
307 rpcbproc_getaddr_com(RPCB *regp, struct svc_req *rqstp, SVCXPRT *transp,
308 		     rpcvers_t rpcbversnum, rpcvers_t verstype)
309 {
310 	static char *uaddr;
311 	char *saddr = NULL;
312 	rpcblist_ptr fnd;
313 
314 	if (uaddr != NULL && uaddr != nullstring) {
315 		free(uaddr);
316 		uaddr = NULL;
317 	}
318 	fnd = find_service(regp->r_prog, regp->r_vers, transp->xp_netid);
319 	if (fnd && ((verstype == RPCB_ALLVERS) ||
320 		    (regp->r_vers == fnd->rpcb_map.r_vers))) {
321 		if (*(regp->r_addr) != '\0') {  /* may contain a hint about */
322 			saddr = regp->r_addr;   /* the interface that we    */
323 		}				/* should use */
324 		if (!(uaddr = mergeaddr(transp, transp->xp_netid,
325 				fnd->rpcb_map.r_addr, saddr))) {
326 			/* Try whatever we have */
327 			uaddr = strdup(fnd->rpcb_map.r_addr);
328 		} else if (!uaddr[0]) {
329 			/*
330 			 * The server died.  Unset all versions of this prog.
331 			 */
332 			delete_prog(regp->r_prog);
333 			uaddr = nullstring;
334 		}
335 	} else {
336 		uaddr = nullstring;
337 	}
338 #ifdef RPCBIND_DEBUG
339 	if (debugging)
340 		fprintf(stderr, "getaddr: %s\n", uaddr);
341 #endif
342 	/* XXX: should have used some defined constant here */
343 	rpcbs_getaddr(rpcbversnum - 2, regp->r_prog, regp->r_vers,
344 		transp->xp_netid, uaddr);
345 	return (void *)&uaddr;
346 }
347 
348 /* ARGSUSED */
349 void *
350 rpcbproc_gettime_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp,
351 		     rpcvers_t rpcbversnum)
352 {
353 	static time_t curtime;
354 
355 	(void) time(&curtime);
356 	return (void *)&curtime;
357 }
358 
359 /*
360  * Convert uaddr to taddr. Should be used only by
361  * local servers/clients. (kernel level stuff only)
362  */
363 /* ARGSUSED */
364 void *
365 rpcbproc_uaddr2taddr_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp,
366 			 rpcvers_t rpcbversnum)
367 {
368 	char **uaddrp = (char **)arg;
369 	struct netconfig *nconf;
370 	static struct netbuf nbuf;
371 	static struct netbuf *taddr;
372 
373 	if (taddr) {
374 		free(taddr->buf);
375 		free(taddr);
376 		taddr = NULL;
377 	}
378 	if (((nconf = rpcbind_get_conf(transp->xp_netid)) == NULL) ||
379 	    ((taddr = uaddr2taddr(nconf, *uaddrp)) == NULL)) {
380 		(void) memset((char *)&nbuf, 0, sizeof (struct netbuf));
381 		return (void *)&nbuf;
382 	}
383 	return (void *)taddr;
384 }
385 
386 /*
387  * Convert taddr to uaddr. Should be used only by
388  * local servers/clients. (kernel level stuff only)
389  */
390 /* ARGSUSED */
391 void *
392 rpcbproc_taddr2uaddr_com(void *arg, struct svc_req *rqstp, SVCXPRT *transp,
393 			 rpcvers_t rpcbversnum)
394 {
395 	struct netbuf *taddr = (struct netbuf *)arg;
396 	static char *uaddr;
397 	struct netconfig *nconf;
398 
399 #ifdef CHEW_FDS
400 	int fd;
401 
402 	if ((fd = open("/dev/null", O_RDONLY)) == -1) {
403 		uaddr = (char *)strerror(errno);
404 		return (&uaddr);
405 	}
406 #endif /* CHEW_FDS */
407 	if (uaddr != NULL && uaddr != nullstring) {
408 		free(uaddr);
409 		uaddr = NULL;
410 	}
411 	if (((nconf = rpcbind_get_conf(transp->xp_netid)) == NULL) ||
412 		((uaddr = taddr2uaddr(nconf, taddr)) == NULL)) {
413 		uaddr = nullstring;
414 	}
415 	return (void *)&uaddr;
416 }
417 
418 
419 static bool_t
420 xdr_encap_parms(XDR *xdrs, struct encap_parms *epp)
421 {
422 	return (xdr_bytes(xdrs, &(epp->args), (u_int *) &(epp->arglen), ~0));
423 }
424 
425 /*
426  * XDR remote call arguments.  It ignores the address part.
427  * written for XDR_DECODE direction only
428  */
429 static bool_t
430 xdr_rmtcall_args(XDR *xdrs, struct r_rmtcall_args *cap)
431 {
432 	/* does not get the address or the arguments */
433 	if (xdr_u_int32_t(xdrs, &(cap->rmt_prog)) &&
434 	    xdr_u_int32_t(xdrs, &(cap->rmt_vers)) &&
435 	    xdr_u_int32_t(xdrs, &(cap->rmt_proc))) {
436 		return (xdr_encap_parms(xdrs, &(cap->rmt_args)));
437 	}
438 	return (FALSE);
439 }
440 
441 /*
442  * XDR remote call results along with the address.  Ignore
443  * program number, version  number and proc number.
444  * Written for XDR_ENCODE direction only.
445  */
446 static bool_t
447 xdr_rmtcall_result(XDR *xdrs, struct r_rmtcall_args *cap)
448 {
449 	bool_t result;
450 
451 #ifdef PORTMAP
452 	if (cap->rmt_localvers == PMAPVERS) {
453 		int h1, h2, h3, h4, p1, p2;
454 		u_long port;
455 
456 		/* interpret the universal address for TCP/IP */
457 		if (sscanf(cap->rmt_uaddr, "%d.%d.%d.%d.%d.%d",
458 			&h1, &h2, &h3, &h4, &p1, &p2) != 6)
459 			return (FALSE);
460 		port = ((p1 & 0xff) << 8) + (p2 & 0xff);
461 		result = xdr_u_long(xdrs, &port);
462 	} else
463 #endif
464 		if ((cap->rmt_localvers == RPCBVERS) ||
465 		    (cap->rmt_localvers == RPCBVERS4)) {
466 		result = xdr_wrapstring(xdrs, &(cap->rmt_uaddr));
467 	} else {
468 		return (FALSE);
469 	}
470 	if (result == TRUE)
471 		return (xdr_encap_parms(xdrs, &(cap->rmt_args)));
472 	return (FALSE);
473 }
474 
475 /*
476  * only worries about the struct encap_parms part of struct r_rmtcall_args.
477  * The arglen must already be set!!
478  */
479 static bool_t
480 xdr_opaque_parms(XDR *xdrs, struct r_rmtcall_args *cap)
481 {
482 	return (xdr_opaque(xdrs, cap->rmt_args.args, cap->rmt_args.arglen));
483 }
484 
485 static struct rmtcallfd_list *rmthead;
486 static struct rmtcallfd_list *rmttail;
487 
488 int
489 create_rmtcall_fd(struct netconfig *nconf)
490 {
491 	int fd;
492 	struct rmtcallfd_list *rmt;
493 	SVCXPRT *xprt;
494 
495 	if ((fd = __rpc_nconf2fd(nconf)) == -1) {
496 		if (debugging)
497 			fprintf(stderr,
498 	"create_rmtcall_fd: couldn't open \"%s\" (errno %d)\n",
499 			nconf->nc_device, errno);
500 		return (-1);
501 	}
502 	xprt = svc_tli_create(fd, 0, (struct t_bind *) 0, 0, 0);
503 	if (xprt == NULL) {
504 		if (debugging)
505 			fprintf(stderr,
506 				"create_rmtcall_fd: svc_tli_create failed\n");
507 		return (-1);
508 	}
509 	rmt = (struct rmtcallfd_list *)malloc((u_int)
510 		sizeof (struct rmtcallfd_list));
511 	if (rmt == NULL) {
512 		syslog(LOG_ERR, "create_rmtcall_fd: no memory!");
513 		return (-1);
514 	}
515 	rmt->xprt = xprt;
516 	rmt->netid = strdup(nconf->nc_netid);
517 	xprt->xp_netid = rmt->netid;
518 	rmt->fd = fd;
519 	rmt->next = NULL;
520 	if (rmthead == NULL) {
521 		rmthead = rmt;
522 		rmttail = rmt;
523 	} else {
524 		rmttail->next = rmt;
525 		rmttail = rmt;
526 	}
527 	/* XXX not threadsafe */
528 	if (fd > svc_maxfd)
529 		svc_maxfd = fd;
530 	FD_SET(fd, &svc_fdset);
531 	return (fd);
532 }
533 
534 static int
535 find_rmtcallfd_by_netid(char *netid)
536 {
537 	struct rmtcallfd_list *rmt;
538 
539 	for (rmt = rmthead; rmt != NULL; rmt = rmt->next) {
540 		if (strcmp(netid, rmt->netid) == 0) {
541 			return (rmt->fd);
542 		}
543 	}
544 	return (-1);
545 }
546 
547 static SVCXPRT *
548 find_rmtcallxprt_by_fd(int fd)
549 {
550 	struct rmtcallfd_list *rmt;
551 
552 	for (rmt = rmthead; rmt != NULL; rmt = rmt->next) {
553 		if (fd == rmt->fd) {
554 			return (rmt->xprt);
555 		}
556 	}
557 	return (NULL);
558 }
559 
560 
561 /*
562  * Call a remote procedure service.  This procedure is very quiet when things
563  * go wrong.  The proc is written to support broadcast rpc.  In the broadcast
564  * case, a machine should shut-up instead of complain, lest the requestor be
565  * overrun with complaints at the expense of not hearing a valid reply.
566  * When receiving a request and verifying that the service exists, we
567  *
568  *	receive the request
569  *
570  *	open a new TLI endpoint on the same transport on which we received
571  *	the original request
572  *
573  *	remember the original request's XID (which requires knowing the format
574  *	of the svc_dg_data structure)
575  *
576  *	forward the request, with a new XID, to the requested service,
577  *	remembering the XID used to send this request (for later use in
578  *	reassociating the answer with the original request), the requestor's
579  *	address, the file descriptor on which the forwarded request is
580  *	made and the service's address.
581  *
582  *	mark the file descriptor on which we anticipate receiving a reply from
583  *	the service and one to select for in our private svc_run procedure
584  *
585  * At some time in the future, a reply will be received from the service to
586  * which we forwarded the request.  At that time, we detect that the socket
587  * used was for forwarding (by looking through the finfo structures to see
588  * whether the fd corresponds to one of those) and call handle_reply() to
589  *
590  *	receive the reply
591  *
592  *	bundle the reply, along with the service's universal address
593  *
594  *	create a SVCXPRT structure and use a version of svc_sendreply
595  *	that allows us to specify the reply XID and destination, send the reply
596  *	to the original requestor.
597  */
598 
599 void
600 rpcbproc_callit_com(struct svc_req *rqstp, SVCXPRT *transp,
601 		    rpcproc_t reply_type, rpcvers_t versnum)
602 {
603 	register rpcblist_ptr rbl;
604 	struct netconfig *nconf;
605 	struct netbuf *caller;
606 	struct r_rmtcall_args a;
607 	char *buf_alloc = NULL, *outbufp;
608 	char *outbuf_alloc = NULL;
609 	char buf[RPC_BUF_MAX], outbuf[RPC_BUF_MAX];
610 	struct netbuf *na = (struct netbuf *) NULL;
611 	struct rpc_msg call_msg;
612 	int outlen;
613 	u_int sendsz;
614 	XDR outxdr;
615 	AUTH *auth;
616 	int fd = -1;
617 	char *uaddr, *m_uaddr = NULL, *local_uaddr = NULL;
618 	u_int32_t *xidp;
619 	struct __rpc_sockinfo si;
620 	struct sockaddr *localsa;
621 	struct netbuf tbuf;
622 
623 	if (!__rpc_fd2sockinfo(transp->xp_fd, &si)) {
624 		if (reply_type == RPCBPROC_INDIRECT)
625 			svcerr_systemerr(transp);
626 		return;
627 	}
628 	if (si.si_socktype != SOCK_DGRAM)
629 		return;	/* Only datagram type accepted */
630 	sendsz = __rpc_get_t_size(si.si_af, si.si_proto, UDPMSGSIZE);
631 	if (sendsz == 0) {	/* data transfer not supported */
632 		if (reply_type == RPCBPROC_INDIRECT)
633 			svcerr_systemerr(transp);
634 		return;
635 	}
636 	/*
637 	 * Should be multiple of 4 for XDR.
638 	 */
639 	sendsz = ((sendsz + 3) / 4) * 4;
640 	if (sendsz > RPC_BUF_MAX) {
641 #ifdef	notyet
642 		buf_alloc = alloca(sendsz);		/* not in IDR2? */
643 #else
644 		buf_alloc = malloc(sendsz);
645 #endif	/* notyet */
646 		if (buf_alloc == NULL) {
647 			if (debugging)
648 				fprintf(stderr,
649 					"rpcbproc_callit_com:  No Memory!\n");
650 			if (reply_type == RPCBPROC_INDIRECT)
651 				svcerr_systemerr(transp);
652 			return;
653 		}
654 		a.rmt_args.args = buf_alloc;
655 	} else {
656 		a.rmt_args.args = buf;
657 	}
658 
659 	call_msg.rm_xid = 0;	/* For error checking purposes */
660 	if (!svc_getargs(transp, (xdrproc_t) xdr_rmtcall_args, (char *) &a)) {
661 		if (reply_type == RPCBPROC_INDIRECT)
662 			svcerr_decode(transp);
663 		if (debugging)
664 			fprintf(stderr,
665 			"rpcbproc_callit_com:  svc_getargs failed\n");
666 		goto error;
667 	}
668 
669 	if (!check_callit(transp, &a, versnum)) {
670 		svcerr_weakauth(transp);
671 		goto error;
672 	}
673 
674 	caller = svc_getrpccaller(transp);
675 #ifdef RPCBIND_DEBUG
676 	if (debugging) {
677 		uaddr = taddr2uaddr(rpcbind_get_conf(transp->xp_netid), caller);
678 		fprintf(stderr, "%s %s req for (%lu, %lu, %lu, %s) from %s : ",
679 			versnum == PMAPVERS ? "pmap_rmtcall" :
680 			versnum == RPCBVERS ? "rpcb_rmtcall" :
681 			versnum == RPCBVERS4 ? "rpcb_indirect" : "unknown",
682 			reply_type == RPCBPROC_INDIRECT ? "indirect" : "callit",
683 			(unsigned long)a.rmt_prog, (unsigned long)a.rmt_vers,
684 			(unsigned long)a.rmt_proc, transp->xp_netid,
685 			uaddr ? uaddr : "unknown");
686 		if (uaddr)
687 			free(uaddr);
688 	}
689 #endif
690 
691 	rbl = find_service(a.rmt_prog, a.rmt_vers, transp->xp_netid);
692 
693 	rpcbs_rmtcall(versnum - 2, reply_type, a.rmt_prog, a.rmt_vers,
694 			a.rmt_proc, transp->xp_netid, rbl);
695 
696 	if (rbl == (rpcblist_ptr)NULL) {
697 #ifdef RPCBIND_DEBUG
698 		if (debugging)
699 			fprintf(stderr, "not found\n");
700 #endif
701 		if (reply_type == RPCBPROC_INDIRECT)
702 			svcerr_noprog(transp);
703 		goto error;
704 	}
705 	if (rbl->rpcb_map.r_vers != a.rmt_vers) {
706 		if (reply_type == RPCBPROC_INDIRECT) {
707 			rpcvers_t vers_low, vers_high;
708 
709 			find_versions(a.rmt_prog, transp->xp_netid,
710 				&vers_low, &vers_high);
711 			svcerr_progvers(transp, vers_low, vers_high);
712 		}
713 		goto error;
714 	}
715 
716 #ifdef RPCBIND_DEBUG
717 	if (debugging)
718 		fprintf(stderr, "found at uaddr %s\n", rbl->rpcb_map.r_addr);
719 #endif
720 	/*
721 	 *	Check whether this entry is valid and a server is present
722 	 *	Mergeaddr() returns NULL if no such entry is present, and
723 	 *	returns "" if the entry was present but the server is not
724 	 *	present (i.e., it crashed).
725 	 */
726 	if (reply_type == RPCBPROC_INDIRECT) {
727 		uaddr = mergeaddr(transp, transp->xp_netid,
728 			rbl->rpcb_map.r_addr, NULL);
729 		if (uaddr == NULL || uaddr[0] == '\0') {
730 			svcerr_noprog(transp);
731 			if (uaddr != NULL)
732 				free(uaddr);
733 			goto error;
734 		}
735 		free(uaddr);
736 	}
737 	nconf = rpcbind_get_conf(transp->xp_netid);
738 	if (nconf == (struct netconfig *)NULL) {
739 		if (reply_type == RPCBPROC_INDIRECT)
740 			svcerr_systemerr(transp);
741 		if (debugging)
742 			fprintf(stderr,
743 			"rpcbproc_callit_com:  rpcbind_get_conf failed\n");
744 		goto error;
745 	}
746 	localsa = local_sa(((struct sockaddr *)caller->buf)->sa_family);
747 	if (localsa == NULL) {
748 		if (debugging)
749 			fprintf(stderr,
750 			"rpcbproc_callit_com: no local address\n");
751 		goto error;
752 	}
753 	tbuf.len = tbuf.maxlen = localsa->sa_len;
754 	tbuf.buf = localsa;
755 	local_uaddr =
756 	    addrmerge(&tbuf, rbl->rpcb_map.r_addr, NULL, nconf->nc_netid);
757 	m_uaddr = addrmerge(caller, rbl->rpcb_map.r_addr, NULL,
758 			nconf->nc_netid);
759 #ifdef RPCBIND_DEBUG
760 	if (debugging)
761 		fprintf(stderr, "merged uaddr %s\n", m_uaddr);
762 #endif
763 	if ((fd = find_rmtcallfd_by_netid(nconf->nc_netid)) == -1) {
764 		if (reply_type == RPCBPROC_INDIRECT)
765 			svcerr_systemerr(transp);
766 		goto error;
767 	}
768 	xidp = __rpcb_get_dg_xidp(transp);
769 	switch (forward_register(*xidp, caller, fd, m_uaddr, reply_type,
770 	    versnum, &call_msg.rm_xid)) {
771 	case 1:
772 		/* Success; forward_register() will free m_uaddr for us. */
773 		m_uaddr = NULL;
774 		break;
775 	case 0:
776 		/*
777 		 * A duplicate request for the slow server.  Let's not
778 		 * beat on it any more.
779 		 */
780 		if (debugging)
781 			fprintf(stderr,
782 			"rpcbproc_callit_com:  duplicate request\n");
783 		goto error;
784 	case -1:
785 		/*  forward_register failed.  Perhaps no memory. */
786 		if (debugging)
787 			fprintf(stderr,
788 			"rpcbproc_callit_com:  forward_register failed\n");
789 		goto error;
790 	}
791 
792 #ifdef DEBUG_RMTCALL
793 	if (debugging)
794 		fprintf(stderr,
795 			"rpcbproc_callit_com:  original XID %x, new XID %x\n",
796 				*xidp, call_msg.rm_xid);
797 #endif
798 	call_msg.rm_direction = CALL;
799 	call_msg.rm_call.cb_rpcvers = RPC_MSG_VERSION;
800 	call_msg.rm_call.cb_prog = a.rmt_prog;
801 	call_msg.rm_call.cb_vers = a.rmt_vers;
802 	if (sendsz > RPC_BUF_MAX) {
803 #ifdef	notyet
804 		outbuf_alloc = alloca(sendsz);	/* not in IDR2? */
805 #else
806 		outbuf_alloc = malloc(sendsz);
807 #endif	/* notyet */
808 		if (outbuf_alloc == NULL) {
809 			if (reply_type == RPCBPROC_INDIRECT)
810 				svcerr_systemerr(transp);
811 			if (debugging)
812 				fprintf(stderr,
813 				"rpcbproc_callit_com:  No memory!\n");
814 			goto error;
815 		}
816 		xdrmem_create(&outxdr, outbuf_alloc, sendsz, XDR_ENCODE);
817 	} else {
818 		xdrmem_create(&outxdr, outbuf, sendsz, XDR_ENCODE);
819 	}
820 	if (!xdr_callhdr(&outxdr, &call_msg)) {
821 		if (reply_type == RPCBPROC_INDIRECT)
822 			svcerr_systemerr(transp);
823 		if (debugging)
824 			fprintf(stderr,
825 			"rpcbproc_callit_com:  xdr_callhdr failed\n");
826 		goto error;
827 	}
828 	if (!xdr_u_int32_t(&outxdr, &(a.rmt_proc))) {
829 		if (reply_type == RPCBPROC_INDIRECT)
830 			svcerr_systemerr(transp);
831 		if (debugging)
832 			fprintf(stderr,
833 			"rpcbproc_callit_com:  xdr_u_long failed\n");
834 		goto error;
835 	}
836 
837 	if (rqstp->rq_cred.oa_flavor == AUTH_NULL) {
838 		auth = authnone_create();
839 	} else if (rqstp->rq_cred.oa_flavor == AUTH_SYS) {
840 		struct authunix_parms *au;
841 
842 		au = (struct authunix_parms *)rqstp->rq_clntcred;
843 		auth = authunix_create(au->aup_machname,
844 				au->aup_uid, au->aup_gid,
845 				au->aup_len, au->aup_gids);
846 		if (auth == NULL) /* fall back */
847 			auth = authnone_create();
848 	} else {
849 		/* we do not support any other authentication scheme */
850 		if (debugging)
851 			fprintf(stderr,
852 "rpcbproc_callit_com:  oa_flavor != AUTH_NONE and oa_flavor != AUTH_SYS\n");
853 		if (reply_type == RPCBPROC_INDIRECT)
854 			svcerr_weakauth(transp); /* XXX too strong.. */
855 		goto error;
856 	}
857 	if (auth == NULL) {
858 		if (reply_type == RPCBPROC_INDIRECT)
859 			svcerr_systemerr(transp);
860 		if (debugging)
861 			fprintf(stderr,
862 		"rpcbproc_callit_com:  authwhatever_create returned NULL\n");
863 		goto error;
864 	}
865 	if (!AUTH_MARSHALL(auth, &outxdr)) {
866 		if (reply_type == RPCBPROC_INDIRECT)
867 			svcerr_systemerr(transp);
868 		AUTH_DESTROY(auth);
869 		if (debugging)
870 			fprintf(stderr,
871 		"rpcbproc_callit_com:  AUTH_MARSHALL failed\n");
872 		goto error;
873 	}
874 	AUTH_DESTROY(auth);
875 	if (!xdr_opaque_parms(&outxdr, &a)) {
876 		if (reply_type == RPCBPROC_INDIRECT)
877 			svcerr_systemerr(transp);
878 		if (debugging)
879 			fprintf(stderr,
880 		"rpcbproc_callit_com:  xdr_opaque_parms failed\n");
881 		goto error;
882 	}
883 	outlen = (int) XDR_GETPOS(&outxdr);
884 	if (outbuf_alloc)
885 		outbufp = outbuf_alloc;
886 	else
887 		outbufp = outbuf;
888 
889 	na = uaddr2taddr(nconf, local_uaddr);
890 	if (!na) {
891 		if (reply_type == RPCBPROC_INDIRECT)
892 			svcerr_systemerr(transp);
893 		goto error;
894 	}
895 
896 	if (sendto(fd, outbufp, outlen, 0, (struct sockaddr *)na->buf, na->len)
897 	    != outlen) {
898 		if (debugging)
899 			fprintf(stderr,
900 	"rpcbproc_callit_com:  sendto failed:  errno %d\n", errno);
901 		if (reply_type == RPCBPROC_INDIRECT)
902 			svcerr_systemerr(transp);
903 		goto error;
904 	}
905 	goto out;
906 
907 error:
908 	if (call_msg.rm_xid != 0)
909 		(void) free_slot_by_xid(call_msg.rm_xid);
910 out:
911 	if (local_uaddr)
912 		free(local_uaddr);
913 	if (buf_alloc)
914 		free(buf_alloc);
915 	if (outbuf_alloc)
916 		free(outbuf_alloc);
917 	if (na) {
918 		free(na->buf);
919 		free(na);
920 	}
921 	if (m_uaddr != NULL)
922 		free(m_uaddr);
923 }
924 
925 /*
926  * Makes an entry into the FIFO for the given request.
927  * Returns 1 on success, 0 if this is a duplicate request, or -1 on error.
928  * *callxidp is set to the xid of the call.
929  */
930 static int
931 forward_register(u_int32_t caller_xid, struct netbuf *caller_addr,
932 		 int forward_fd, char *uaddr, rpcproc_t reply_type,
933 		 rpcvers_t versnum, u_int32_t *callxidp)
934 {
935 	int		i;
936 	int		j = 0;
937 	time_t		min_time, time_now;
938 	static u_int32_t	lastxid;
939 	int		entry = -1;
940 
941 	min_time = FINFO[0].time;
942 	time_now = time((time_t *)0);
943 	/* initialization */
944 	if (lastxid == 0)
945 		lastxid = time_now * NFORWARD;
946 
947 	/*
948 	 * Check if it is an duplicate entry. Then,
949 	 * try to find an empty slot.  If not available, then
950 	 * use the slot with the earliest time.
951 	 */
952 	for (i = 0; i < NFORWARD; i++) {
953 		if (FINFO[i].flag & FINFO_ACTIVE) {
954 			if ((FINFO[i].caller_xid == caller_xid) &&
955 			    (FINFO[i].reply_type == reply_type) &&
956 			    (FINFO[i].versnum == versnum) &&
957 			    (!netbufcmp(FINFO[i].caller_addr,
958 					    caller_addr))) {
959 				FINFO[i].time = time((time_t *)0);
960 				return (0);	/* Duplicate entry */
961 			} else {
962 				/* Should we wait any longer */
963 				if ((time_now - FINFO[i].time) > MAXTIME_OFF)
964 					(void) free_slot_by_index(i);
965 			}
966 		}
967 		if (entry == -1) {
968 			if ((FINFO[i].flag & FINFO_ACTIVE) == 0) {
969 				entry = i;
970 			} else if (FINFO[i].time < min_time) {
971 				j = i;
972 				min_time = FINFO[i].time;
973 			}
974 		}
975 	}
976 	if (entry != -1) {
977 		/* use this empty slot */
978 		j = entry;
979 	} else {
980 		(void) free_slot_by_index(j);
981 	}
982 	if ((FINFO[j].caller_addr = netbufdup(caller_addr)) == NULL) {
983 		return (-1);
984 	}
985 	rpcb_rmtcalls++;	/* no of pending calls */
986 	FINFO[j].flag = FINFO_ACTIVE;
987 	FINFO[j].reply_type = reply_type;
988 	FINFO[j].versnum = versnum;
989 	FINFO[j].time = time_now;
990 	FINFO[j].caller_xid = caller_xid;
991 	FINFO[j].forward_fd = forward_fd;
992 	/*
993 	 * Though uaddr is not allocated here, it will still be freed
994 	 * from free_slot_*().
995 	 */
996 	FINFO[j].uaddr = uaddr;
997 	lastxid = lastxid + NFORWARD;
998 	/* Don't allow a zero xid below. */
999 	if ((u_int32_t)(lastxid + NFORWARD) <= NFORWARD)
1000 		lastxid = NFORWARD;
1001 	FINFO[j].forward_xid = lastxid + j;	/* encode slot */
1002 	*callxidp = FINFO[j].forward_xid;	/* forward on this xid */
1003 	return (1);
1004 }
1005 
1006 static struct finfo *
1007 forward_find(u_int32_t reply_xid)
1008 {
1009 	int		i;
1010 
1011 	i = reply_xid % (u_int32_t)NFORWARD;
1012 	if ((FINFO[i].flag & FINFO_ACTIVE) &&
1013 	    (FINFO[i].forward_xid == reply_xid)) {
1014 		return (&FINFO[i]);
1015 	}
1016 	return (NULL);
1017 }
1018 
1019 static int
1020 free_slot_by_xid(u_int32_t xid)
1021 {
1022 	int entry;
1023 
1024 	entry = xid % (u_int32_t)NFORWARD;
1025 	return (free_slot_by_index(entry));
1026 }
1027 
1028 static int
1029 free_slot_by_index(int index)
1030 {
1031 	struct finfo	*fi;
1032 
1033 	fi = &FINFO[index];
1034 	if (fi->flag & FINFO_ACTIVE) {
1035 		netbuffree(fi->caller_addr);
1036 		/* XXX may be too big, but can't access xprt array here */
1037 		if (fi->forward_fd >= svc_maxfd)
1038 			svc_maxfd--;
1039 		free(fi->uaddr);
1040 		fi->flag &= ~FINFO_ACTIVE;
1041 		rpcb_rmtcalls--;
1042 		return (1);
1043 	}
1044 	return (0);
1045 }
1046 
1047 static int
1048 netbufcmp(struct netbuf *n1, struct netbuf *n2)
1049 {
1050 	return ((n1->len != n2->len) || memcmp(n1->buf, n2->buf, n1->len));
1051 }
1052 
1053 static struct netbuf *
1054 netbufdup(struct netbuf *ap)
1055 {
1056 	struct netbuf  *np;
1057 
1058 	if ((np = malloc(sizeof(struct netbuf))) == NULL)
1059 		return (NULL);
1060 	if ((np->buf = malloc(ap->len)) == NULL) {
1061 		free(np);
1062 		return (NULL);
1063 	}
1064 	np->maxlen = np->len = ap->len;
1065 	memcpy(np->buf, ap->buf, ap->len);
1066 	return (np);
1067 }
1068 
1069 static void
1070 netbuffree(struct netbuf *ap)
1071 {
1072 	free(ap->buf);
1073 	free(ap);
1074 }
1075 
1076 
1077 #define	MASKVAL	(POLLIN | POLLPRI | POLLRDNORM | POLLRDBAND)
1078 
1079 void
1080 my_svc_run()
1081 {
1082 	size_t nfds;
1083 	struct pollfd pollfds[FD_SETSIZE];
1084 	int poll_ret, check_ret;
1085 	int n;
1086 #ifdef SVC_RUN_DEBUG
1087 	int i;
1088 #endif
1089 	register struct pollfd	*p;
1090 
1091 	for (;;) {
1092 		p = pollfds;
1093 		for (n = 0; n <= svc_maxfd; n++) {
1094 			if (FD_ISSET(n, &svc_fdset)) {
1095 				p->fd = n;
1096 				p->events = MASKVAL;
1097 				p++;
1098 			}
1099 		}
1100 		nfds = p - pollfds;
1101 		poll_ret = 0;
1102 #ifdef SVC_RUN_DEBUG
1103 		if (debugging) {
1104 			fprintf(stderr, "polling for read on fd < ");
1105 			for (i = 0, p = pollfds; i < nfds; i++, p++)
1106 				if (p->events)
1107 					fprintf(stderr, "%d ", p->fd);
1108 			fprintf(stderr, ">\n");
1109 		}
1110 #endif
1111 		switch (poll_ret = poll(pollfds, nfds, INFTIM)) {
1112 		case -1:
1113 			/*
1114 			 * We ignore all errors, continuing with the assumption
1115 			 * that it was set by the signal handlers (or any
1116 			 * other outside event) and not caused by poll().
1117 			 */
1118 		case 0:
1119 			continue;
1120 		default:
1121 #ifdef SVC_RUN_DEBUG
1122 			if (debugging) {
1123 				fprintf(stderr, "poll returned read fds < ");
1124 				for (i = 0, p = pollfds; i < nfds; i++, p++)
1125 					if (p->revents)
1126 						fprintf(stderr, "%d ", p->fd);
1127 				fprintf(stderr, ">\n");
1128 			}
1129 #endif
1130 			/*
1131 			 * If we found as many replies on callback fds
1132 			 * as the number of descriptors selectable which
1133 			 * poll() returned, there can be no more so we
1134 			 * don't call svc_getreq_poll.  Otherwise, there
1135 			 * must be another so we must call svc_getreq_poll.
1136 			 */
1137 			if ((check_ret = check_rmtcalls(pollfds, nfds)) ==
1138 			    poll_ret)
1139 				continue;
1140 			svc_getreq_poll(pollfds, poll_ret-check_ret);
1141 		}
1142 #ifdef SVC_RUN_DEBUG
1143 		if (debugging) {
1144 			fprintf(stderr, "svc_maxfd now %u\n", svc_maxfd);
1145 		}
1146 #endif
1147 	}
1148 }
1149 
1150 static int
1151 check_rmtcalls(struct pollfd *pfds, int nfds)
1152 {
1153 	int j, ncallbacks_found = 0, rmtcalls_pending;
1154 	SVCXPRT *xprt;
1155 
1156 	if (rpcb_rmtcalls == 0)
1157 		return (0);
1158 
1159 	rmtcalls_pending = rpcb_rmtcalls;
1160 	for (j = 0; j < nfds; j++) {
1161 		if ((xprt = find_rmtcallxprt_by_fd(pfds[j].fd)) != NULL) {
1162 			if (pfds[j].revents) {
1163 				ncallbacks_found++;
1164 #ifdef DEBUG_RMTCALL
1165 			if (debugging)
1166 				fprintf(stderr,
1167 "my_svc_run:  polled on forwarding fd %d, netid %s - calling handle_reply\n",
1168 		pfds[j].fd, xprt->xp_netid);
1169 #endif
1170 				handle_reply(pfds[j].fd, xprt);
1171 				pfds[j].revents = 0;
1172 				if (ncallbacks_found >= rmtcalls_pending) {
1173 					break;
1174 				}
1175 			}
1176 		}
1177 	}
1178 	return (ncallbacks_found);
1179 }
1180 
1181 static void
1182 xprt_set_caller(SVCXPRT *xprt, struct finfo *fi)
1183 {
1184 	u_int32_t *xidp;
1185 
1186 	*(svc_getrpccaller(xprt)) = *(fi->caller_addr);
1187 	xidp = __rpcb_get_dg_xidp(xprt);
1188 	*xidp = fi->caller_xid;
1189 }
1190 
1191 /*
1192  * Call svcerr_systemerr() only if RPCBVERS4
1193  */
1194 static void
1195 send_svcsyserr(SVCXPRT *xprt, struct finfo *fi)
1196 {
1197 	if (fi->reply_type == RPCBPROC_INDIRECT) {
1198 		xprt_set_caller(xprt, fi);
1199 		svcerr_systemerr(xprt);
1200 	}
1201 	return;
1202 }
1203 
1204 static void
1205 handle_reply(int fd, SVCXPRT *xprt)
1206 {
1207 	XDR		reply_xdrs;
1208 	struct rpc_msg	reply_msg;
1209 	struct rpc_err	reply_error;
1210 	char		*buffer;
1211 	struct finfo	*fi;
1212 	int		inlen, pos, len;
1213 	struct r_rmtcall_args a;
1214 	struct sockaddr_storage ss;
1215 	socklen_t fromlen;
1216 #ifdef SVC_RUN_DEBUG
1217 	char *uaddr;
1218 #endif
1219 
1220 	buffer = malloc(RPC_BUF_MAX);
1221 	if (buffer == NULL)
1222 		goto done;
1223 
1224 	do {
1225 		inlen = recvfrom(fd, buffer, RPC_BUF_MAX, 0,
1226 			    (struct sockaddr *)&ss, &fromlen);
1227 	} while (inlen < 0 && errno == EINTR);
1228 	if (inlen < 0) {
1229 		if (debugging)
1230 			fprintf(stderr,
1231 	"handle_reply:  recvfrom returned %d, errno %d\n", inlen, errno);
1232 		goto done;
1233 	}
1234 
1235 	reply_msg.acpted_rply.ar_verf = _null_auth;
1236 	reply_msg.acpted_rply.ar_results.where = 0;
1237 	reply_msg.acpted_rply.ar_results.proc = (xdrproc_t) xdr_void;
1238 
1239 	xdrmem_create(&reply_xdrs, buffer, (u_int)inlen, XDR_DECODE);
1240 	if (!xdr_replymsg(&reply_xdrs, &reply_msg)) {
1241 		if (debugging)
1242 			(void) fprintf(stderr,
1243 				"handle_reply:  xdr_replymsg failed\n");
1244 		goto done;
1245 	}
1246 	fi = forward_find(reply_msg.rm_xid);
1247 #ifdef	SVC_RUN_DEBUG
1248 	if (debugging) {
1249 		fprintf(stderr, "handle_reply:  reply xid: %d fi addr: %p\n",
1250 			reply_msg.rm_xid, fi);
1251 	}
1252 #endif
1253 	if (fi == NULL) {
1254 		goto done;
1255 	}
1256 	_seterr_reply(&reply_msg, &reply_error);
1257 	if (reply_error.re_status != RPC_SUCCESS) {
1258 		if (debugging)
1259 			(void) fprintf(stderr, "handle_reply:  %s\n",
1260 				clnt_sperrno(reply_error.re_status));
1261 		send_svcsyserr(xprt, fi);
1262 		goto done;
1263 	}
1264 	pos = XDR_GETPOS(&reply_xdrs);
1265 	len = inlen - pos;
1266 	a.rmt_args.args = &buffer[pos];
1267 	a.rmt_args.arglen = len;
1268 	a.rmt_uaddr = fi->uaddr;
1269 	a.rmt_localvers = fi->versnum;
1270 
1271 	xprt_set_caller(xprt, fi);
1272 #ifdef	SVC_RUN_DEBUG
1273 	uaddr =	taddr2uaddr(rpcbind_get_conf("udp"),
1274 				    svc_getrpccaller(xprt));
1275 	if (debugging) {
1276 		fprintf(stderr, "handle_reply:  forwarding address %s to %s\n",
1277 			a.rmt_uaddr, uaddr ? uaddr : "unknown");
1278 	}
1279 	if (uaddr)
1280 		free(uaddr);
1281 #endif
1282 	svc_sendreply(xprt, (xdrproc_t) xdr_rmtcall_result, (char *) &a);
1283 done:
1284 	if (buffer)
1285 		free(buffer);
1286 
1287 	if (reply_msg.rm_xid == 0) {
1288 #ifdef	SVC_RUN_DEBUG
1289 	if (debugging) {
1290 		fprintf(stderr, "handle_reply:  NULL xid on exit!\n");
1291 	}
1292 #endif
1293 	} else
1294 		(void) free_slot_by_xid(reply_msg.rm_xid);
1295 	return;
1296 }
1297 
1298 static void
1299 find_versions(rpcprog_t prog, char *netid, rpcvers_t *lowvp, rpcvers_t *highvp)
1300 {
1301 	register rpcblist_ptr rbl;
1302 	int lowv = 0;
1303 	int highv = 0;
1304 
1305 	for (rbl = list_rbl; rbl != NULL; rbl = rbl->rpcb_next) {
1306 		if ((rbl->rpcb_map.r_prog != prog) ||
1307 		    ((rbl->rpcb_map.r_netid != NULL) &&
1308 			(strcasecmp(rbl->rpcb_map.r_netid, netid) != 0)))
1309 			continue;
1310 		if (lowv == 0) {
1311 			highv = rbl->rpcb_map.r_vers;
1312 			lowv = highv;
1313 		} else if (rbl->rpcb_map.r_vers < lowv) {
1314 			lowv = rbl->rpcb_map.r_vers;
1315 		} else if (rbl->rpcb_map.r_vers > highv) {
1316 			highv = rbl->rpcb_map.r_vers;
1317 		}
1318 	}
1319 	*lowvp = lowv;
1320 	*highvp = highv;
1321 	return;
1322 }
1323 
1324 /*
1325  * returns the item with the given program, version number and netid.
1326  * If that version number is not found, it returns the item with that
1327  * program number, so that address is now returned to the caller. The
1328  * caller when makes a call to this program, version number, the call
1329  * will fail and it will return with PROGVERS_MISMATCH. The user can
1330  * then determine the highest and the lowest version number for this
1331  * program using clnt_geterr() and use those program version numbers.
1332  *
1333  * Returns the RPCBLIST for the given prog, vers and netid
1334  */
1335 static rpcblist_ptr
1336 find_service(rpcprog_t prog, rpcvers_t vers, char *netid)
1337 {
1338 	register rpcblist_ptr hit = NULL;
1339 	register rpcblist_ptr rbl;
1340 
1341 	for (rbl = list_rbl; rbl != NULL; rbl = rbl->rpcb_next) {
1342 		if ((rbl->rpcb_map.r_prog != prog) ||
1343 		    ((rbl->rpcb_map.r_netid != NULL) &&
1344 			(strcasecmp(rbl->rpcb_map.r_netid, netid) != 0)))
1345 			continue;
1346 		hit = rbl;
1347 		if (rbl->rpcb_map.r_vers == vers)
1348 			break;
1349 	}
1350 	return (hit);
1351 }
1352 
1353 /*
1354  * Copies the name associated with the uid of the caller and returns
1355  * a pointer to it.  Similar to getwd().
1356  */
1357 static char *
1358 getowner(SVCXPRT *transp, char *owner, size_t ownersize)
1359 {
1360 	uid_t uid;
1361 
1362 	if (__rpc_get_local_uid(transp, &uid) < 0)
1363                 strlcpy(owner, "unknown", ownersize);
1364 	else if (uid == 0)
1365 		strlcpy(owner, "superuser", ownersize);
1366 	else
1367 		snprintf(owner, ownersize, "%d", uid);
1368 
1369 	return owner;
1370 }
1371 
1372 #ifdef PORTMAP
1373 /*
1374  * Add this to the pmap list only if it is UDP or TCP.
1375  */
1376 static int
1377 add_pmaplist(RPCB *arg)
1378 {
1379 	struct pmap pmap;
1380 	struct pmaplist *pml;
1381 	int h1, h2, h3, h4, p1, p2;
1382 
1383 	if (strcmp(arg->r_netid, udptrans) == 0) {
1384 		/* It is UDP! */
1385 		pmap.pm_prot = IPPROTO_UDP;
1386 	} else if (strcmp(arg->r_netid, tcptrans) == 0) {
1387 		/* It is TCP */
1388 		pmap.pm_prot = IPPROTO_TCP;
1389 	} else
1390 		/* Not a IP protocol */
1391 		return (0);
1392 
1393 	/* interpret the universal address for TCP/IP */
1394 	if (sscanf(arg->r_addr, "%d.%d.%d.%d.%d.%d",
1395 		&h1, &h2, &h3, &h4, &p1, &p2) != 6)
1396 		return (0);
1397 	pmap.pm_port = ((p1 & 0xff) << 8) + (p2 & 0xff);
1398 	pmap.pm_prog = arg->r_prog;
1399 	pmap.pm_vers = arg->r_vers;
1400 	/*
1401 	 * add to END of list
1402 	 */
1403 	pml = (struct pmaplist *) malloc((u_int)sizeof (struct pmaplist));
1404 	if (pml == NULL) {
1405 		(void) syslog(LOG_ERR, "rpcbind: no memory!\n");
1406 		return (1);
1407 	}
1408 	pml->pml_map = pmap;
1409 	pml->pml_next = NULL;
1410 	if (list_pml == NULL) {
1411 		list_pml = pml;
1412 	} else {
1413 		struct pmaplist *fnd;
1414 
1415 		/* Attach to the end of the list */
1416 		for (fnd = list_pml; fnd->pml_next; fnd = fnd->pml_next)
1417 			;
1418 		fnd->pml_next = pml;
1419 	}
1420 	return (0);
1421 }
1422 
1423 /*
1424  * Delete this from the pmap list only if it is UDP or TCP.
1425  */
1426 static int
1427 del_pmaplist(RPCB *arg)
1428 {
1429 	struct pmaplist *pml;
1430 	struct pmaplist *prevpml, *fnd;
1431 	long prot;
1432 
1433 	if (strcmp(arg->r_netid, udptrans) == 0) {
1434 		/* It is UDP! */
1435 		prot = IPPROTO_UDP;
1436 	} else if (strcmp(arg->r_netid, tcptrans) == 0) {
1437 		/* It is TCP */
1438 		prot = IPPROTO_TCP;
1439 	} else if (arg->r_netid[0] == NULL) {
1440 		prot = 0;	/* Remove all occurrences */
1441 	} else {
1442 		/* Not a IP protocol */
1443 		return (0);
1444 	}
1445 	for (prevpml = NULL, pml = list_pml; pml; /* cstyle */) {
1446 		if ((pml->pml_map.pm_prog != arg->r_prog) ||
1447 			(pml->pml_map.pm_vers != arg->r_vers) ||
1448 			(prot && (pml->pml_map.pm_prot != prot))) {
1449 			/* both pml & prevpml move forwards */
1450 			prevpml = pml;
1451 			pml = pml->pml_next;
1452 			continue;
1453 		}
1454 		/* found it; pml moves forward, prevpml stays */
1455 		fnd = pml;
1456 		pml = pml->pml_next;
1457 		if (prevpml == NULL)
1458 			list_pml = pml;
1459 		else
1460 			prevpml->pml_next = pml;
1461 		free(fnd);
1462 	}
1463 	return (0);
1464 }
1465 #endif /* PORTMAP */
1466