rpc_generic.c revision 1.2.4.2 1 1.2.4.2 minoura /* $NetBSD: rpc_generic.c,v 1.2.4.2 2000/06/23 16:17:46 minoura Exp $ */
2 1.2.4.2 minoura
3 1.2.4.2 minoura /*
4 1.2.4.2 minoura * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
5 1.2.4.2 minoura * unrestricted use provided that this legend is included on all tape
6 1.2.4.2 minoura * media and as a part of the software program in whole or part. Users
7 1.2.4.2 minoura * may copy or modify Sun RPC without charge, but are not authorized
8 1.2.4.2 minoura * to license or distribute it to anyone else except as part of a product or
9 1.2.4.2 minoura * program developed by the user.
10 1.2.4.2 minoura *
11 1.2.4.2 minoura * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
12 1.2.4.2 minoura * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
13 1.2.4.2 minoura * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
14 1.2.4.2 minoura *
15 1.2.4.2 minoura * Sun RPC is provided with no support and without any obligation on the
16 1.2.4.2 minoura * part of Sun Microsystems, Inc. to assist in its use, correction,
17 1.2.4.2 minoura * modification or enhancement.
18 1.2.4.2 minoura *
19 1.2.4.2 minoura * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
20 1.2.4.2 minoura * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
21 1.2.4.2 minoura * OR ANY PART THEREOF.
22 1.2.4.2 minoura *
23 1.2.4.2 minoura * In no event will Sun Microsystems, Inc. be liable for any lost revenue
24 1.2.4.2 minoura * or profits or other special, indirect and consequential damages, even if
25 1.2.4.2 minoura * Sun has been advised of the possibility of such damages.
26 1.2.4.2 minoura *
27 1.2.4.2 minoura * Sun Microsystems, Inc.
28 1.2.4.2 minoura * 2550 Garcia Avenue
29 1.2.4.2 minoura * Mountain View, California 94043
30 1.2.4.2 minoura */
31 1.2.4.2 minoura /*
32 1.2.4.2 minoura * Copyright (c) 1986-1991 by Sun Microsystems Inc.
33 1.2.4.2 minoura */
34 1.2.4.2 minoura
35 1.2.4.2 minoura /* #pragma ident "@(#)rpc_generic.c 1.17 94/04/24 SMI" */
36 1.2.4.2 minoura
37 1.2.4.2 minoura /*
38 1.2.4.2 minoura * rpc_generic.c, Miscl routines for RPC.
39 1.2.4.2 minoura *
40 1.2.4.2 minoura */
41 1.2.4.2 minoura
42 1.2.4.2 minoura #include <sys/types.h>
43 1.2.4.2 minoura #include <sys/param.h>
44 1.2.4.2 minoura #include <sys/socket.h>
45 1.2.4.2 minoura #include <sys/un.h>
46 1.2.4.2 minoura #include <sys/resource.h>
47 1.2.4.2 minoura #include <netinet/in.h>
48 1.2.4.2 minoura #include <arpa/inet.h>
49 1.2.4.2 minoura #include <rpc/rpc.h>
50 1.2.4.2 minoura #include <ctype.h>
51 1.2.4.2 minoura #include <stdio.h>
52 1.2.4.2 minoura #include <netdb.h>
53 1.2.4.2 minoura #include <netconfig.h>
54 1.2.4.2 minoura #include <malloc.h>
55 1.2.4.2 minoura #include <string.h>
56 1.2.4.2 minoura #include <syslog.h>
57 1.2.4.2 minoura #include <rpc/nettype.h>
58 1.2.4.2 minoura #include "rpc_com.h"
59 1.2.4.2 minoura
60 1.2.4.2 minoura struct handle {
61 1.2.4.2 minoura NCONF_HANDLE *nhandle;
62 1.2.4.2 minoura int nflag; /* Whether NETPATH or NETCONFIG */
63 1.2.4.2 minoura int nettype;
64 1.2.4.2 minoura };
65 1.2.4.2 minoura
66 1.2.4.2 minoura struct _rpcnettype {
67 1.2.4.2 minoura const char *name;
68 1.2.4.2 minoura const int type;
69 1.2.4.2 minoura } _rpctypelist[] = {
70 1.2.4.2 minoura { "netpath", _RPC_NETPATH },
71 1.2.4.2 minoura { "visible", _RPC_VISIBLE },
72 1.2.4.2 minoura { "circuit_v", _RPC_CIRCUIT_V },
73 1.2.4.2 minoura { "datagram_v", _RPC_DATAGRAM_V },
74 1.2.4.2 minoura { "circuit_n", _RPC_CIRCUIT_N },
75 1.2.4.2 minoura { "datagram_n", _RPC_DATAGRAM_N },
76 1.2.4.2 minoura { "tcp", _RPC_TCP },
77 1.2.4.2 minoura { "udp", _RPC_UDP },
78 1.2.4.2 minoura { 0, _RPC_NONE }
79 1.2.4.2 minoura };
80 1.2.4.2 minoura
81 1.2.4.2 minoura struct netid_af {
82 1.2.4.2 minoura const char *netid;
83 1.2.4.2 minoura int af;
84 1.2.4.2 minoura int protocol;
85 1.2.4.2 minoura };
86 1.2.4.2 minoura
87 1.2.4.2 minoura static struct netid_af na_cvt[] = {
88 1.2.4.2 minoura { "udp", AF_INET, IPPROTO_UDP },
89 1.2.4.2 minoura { "tcp", AF_INET, IPPROTO_TCP },
90 1.2.4.2 minoura #ifdef INET6
91 1.2.4.2 minoura { "udp6", AF_INET6, IPPROTO_UDP },
92 1.2.4.2 minoura { "tcp6", AF_INET6, IPPROTO_TCP },
93 1.2.4.2 minoura #endif
94 1.2.4.2 minoura { "local", AF_LOCAL, 0 }
95 1.2.4.2 minoura };
96 1.2.4.2 minoura
97 1.2.4.2 minoura static char *strlocase __P((char *));
98 1.2.4.2 minoura static int getnettype __P((char *));
99 1.2.4.2 minoura
100 1.2.4.2 minoura /*
101 1.2.4.2 minoura * Cache the result of getrlimit(), so we don't have to do an
102 1.2.4.2 minoura * expensive call every time.
103 1.2.4.2 minoura */
104 1.2.4.2 minoura int
105 1.2.4.2 minoura __rpc_dtbsize()
106 1.2.4.2 minoura {
107 1.2.4.2 minoura static int tbsize;
108 1.2.4.2 minoura struct rlimit rl;
109 1.2.4.2 minoura
110 1.2.4.2 minoura if (tbsize) {
111 1.2.4.2 minoura return (tbsize);
112 1.2.4.2 minoura }
113 1.2.4.2 minoura if (getrlimit(RLIMIT_NOFILE, &rl) == 0) {
114 1.2.4.2 minoura return (tbsize = rl.rlim_max);
115 1.2.4.2 minoura }
116 1.2.4.2 minoura /*
117 1.2.4.2 minoura * Something wrong. I'll try to save face by returning a
118 1.2.4.2 minoura * pessimistic number.
119 1.2.4.2 minoura */
120 1.2.4.2 minoura return (32);
121 1.2.4.2 minoura }
122 1.2.4.2 minoura
123 1.2.4.2 minoura
124 1.2.4.2 minoura /*
125 1.2.4.2 minoura * Find the appropriate buffer size
126 1.2.4.2 minoura */
127 1.2.4.2 minoura u_int
128 1.2.4.2 minoura __rpc_get_t_size(af, proto, size)
129 1.2.4.2 minoura int af, proto;
130 1.2.4.2 minoura int size; /* Size requested */
131 1.2.4.2 minoura {
132 1.2.4.2 minoura int maxsize;
133 1.2.4.2 minoura
134 1.2.4.2 minoura switch (proto) {
135 1.2.4.2 minoura case IPPROTO_TCP:
136 1.2.4.2 minoura maxsize = 65536; /* XXX */
137 1.2.4.2 minoura break;
138 1.2.4.2 minoura case IPPROTO_UDP:
139 1.2.4.2 minoura maxsize = 8192; /* XXX */
140 1.2.4.2 minoura break;
141 1.2.4.2 minoura default:
142 1.2.4.2 minoura maxsize = RPC_MAXDATASIZE;
143 1.2.4.2 minoura break;
144 1.2.4.2 minoura }
145 1.2.4.2 minoura if (size == 0)
146 1.2.4.2 minoura return maxsize;
147 1.2.4.2 minoura
148 1.2.4.2 minoura /* Check whether the value is within the upper max limit */
149 1.2.4.2 minoura return (size > maxsize ? (u_int)maxsize : (u_int)size);
150 1.2.4.2 minoura }
151 1.2.4.2 minoura
152 1.2.4.2 minoura /*
153 1.2.4.2 minoura * Find the appropriate address buffer size
154 1.2.4.2 minoura */
155 1.2.4.2 minoura u_int
156 1.2.4.2 minoura __rpc_get_a_size(af)
157 1.2.4.2 minoura int af;
158 1.2.4.2 minoura {
159 1.2.4.2 minoura switch (af) {
160 1.2.4.2 minoura case AF_INET:
161 1.2.4.2 minoura return sizeof (struct sockaddr_in);
162 1.2.4.2 minoura #ifdef INET6
163 1.2.4.2 minoura case AF_INET6:
164 1.2.4.2 minoura return sizeof (struct sockaddr_in6);
165 1.2.4.2 minoura #endif
166 1.2.4.2 minoura case AF_LOCAL:
167 1.2.4.2 minoura return sizeof (struct sockaddr_un);
168 1.2.4.2 minoura default:
169 1.2.4.2 minoura break;
170 1.2.4.2 minoura }
171 1.2.4.2 minoura return ((u_int)RPC_MAXADDRSIZE);
172 1.2.4.2 minoura }
173 1.2.4.2 minoura
174 1.2.4.2 minoura static char *
175 1.2.4.2 minoura strlocase(p)
176 1.2.4.2 minoura char *p;
177 1.2.4.2 minoura {
178 1.2.4.2 minoura char *t = p;
179 1.2.4.2 minoura
180 1.2.4.2 minoura for (; *p; p++)
181 1.2.4.2 minoura if (isupper(*p))
182 1.2.4.2 minoura *p = tolower(*p);
183 1.2.4.2 minoura return (t);
184 1.2.4.2 minoura }
185 1.2.4.2 minoura
186 1.2.4.2 minoura /*
187 1.2.4.2 minoura * Returns the type of the network as defined in <rpc/nettype.h>
188 1.2.4.2 minoura * If nettype is NULL, it defaults to NETPATH.
189 1.2.4.2 minoura */
190 1.2.4.2 minoura static int
191 1.2.4.2 minoura getnettype(nettype)
192 1.2.4.2 minoura char *nettype;
193 1.2.4.2 minoura {
194 1.2.4.2 minoura int i;
195 1.2.4.2 minoura
196 1.2.4.2 minoura if ((nettype == NULL) || (nettype[0] == NULL)) {
197 1.2.4.2 minoura return (_RPC_NETPATH); /* Default */
198 1.2.4.2 minoura }
199 1.2.4.2 minoura
200 1.2.4.2 minoura nettype = strlocase(nettype);
201 1.2.4.2 minoura for (i = 0; _rpctypelist[i].name; i++)
202 1.2.4.2 minoura if (strcmp(nettype, _rpctypelist[i].name) == 0) {
203 1.2.4.2 minoura return (_rpctypelist[i].type);
204 1.2.4.2 minoura }
205 1.2.4.2 minoura return (_rpctypelist[i].type);
206 1.2.4.2 minoura }
207 1.2.4.2 minoura
208 1.2.4.2 minoura /*
209 1.2.4.2 minoura * For the given nettype (tcp or udp only), return the first structure found.
210 1.2.4.2 minoura * This should be freed by calling freenetconfigent()
211 1.2.4.2 minoura */
212 1.2.4.2 minoura struct netconfig *
213 1.2.4.2 minoura __rpc_getconfip(nettype)
214 1.2.4.2 minoura char *nettype;
215 1.2.4.2 minoura {
216 1.2.4.2 minoura char *netid;
217 1.2.4.2 minoura char *netid_tcp = (char *) NULL;
218 1.2.4.2 minoura char *netid_udp = (char *) NULL;
219 1.2.4.2 minoura static char *netid_tcp_main;
220 1.2.4.2 minoura static char *netid_udp_main;
221 1.2.4.2 minoura struct netconfig *dummy;
222 1.2.4.2 minoura #ifdef __REENT
223 1.2.4.2 minoura int main_thread;
224 1.2.4.2 minoura static thread_key_t tcp_key, udp_key;
225 1.2.4.2 minoura extern mutex_t tsd_lock;
226 1.2.4.2 minoura
227 1.2.4.2 minoura if ((main_thread = _thr_main())) {
228 1.2.4.2 minoura netid_udp = netid_udp_main;
229 1.2.4.2 minoura netid_tcp = netid_tcp_main;
230 1.2.4.2 minoura } else {
231 1.2.4.2 minoura if (tcp_key == 0) {
232 1.2.4.2 minoura mutex_lock(&tsd_lock);
233 1.2.4.2 minoura if (tcp_key == 0)
234 1.2.4.2 minoura thr_keycreate(&tcp_key, free);
235 1.2.4.2 minoura mutex_unlock(&tsd_lock);
236 1.2.4.2 minoura }
237 1.2.4.2 minoura thr_getspecific(tcp_key, (void **) &netid_tcp);
238 1.2.4.2 minoura if (udp_key == 0) {
239 1.2.4.2 minoura mutex_lock(&tsd_lock);
240 1.2.4.2 minoura if (udp_key == 0)
241 1.2.4.2 minoura thr_keycreate(&udp_key, free);
242 1.2.4.2 minoura mutex_unlock(&tsd_lock);
243 1.2.4.2 minoura }
244 1.2.4.2 minoura thr_getspecific(udp_key, (void **) &netid_udp);
245 1.2.4.2 minoura }
246 1.2.4.2 minoura #else
247 1.2.4.2 minoura netid_udp = netid_udp_main;
248 1.2.4.2 minoura netid_tcp = netid_tcp_main;
249 1.2.4.2 minoura #endif
250 1.2.4.2 minoura if (!netid_udp && !netid_tcp) {
251 1.2.4.2 minoura struct netconfig *nconf;
252 1.2.4.2 minoura void *confighandle;
253 1.2.4.2 minoura
254 1.2.4.2 minoura if (!(confighandle = setnetconfig())) {
255 1.2.4.2 minoura syslog (LOG_ERR, "rpc: failed to open " NETCONFIG);
256 1.2.4.2 minoura return (NULL);
257 1.2.4.2 minoura }
258 1.2.4.2 minoura while ((nconf = getnetconfig(confighandle))) {
259 1.2.4.2 minoura if (strcmp(nconf->nc_protofmly, NC_INET) == 0) {
260 1.2.4.2 minoura if (strcmp(nconf->nc_proto, NC_TCP) == 0) {
261 1.2.4.2 minoura netid_tcp = strdup(nconf->nc_netid);
262 1.2.4.2 minoura #ifdef __REENT
263 1.2.4.2 minoura if (main_thread)
264 1.2.4.2 minoura netid_tcp_main = netid_tcp;
265 1.2.4.2 minoura else
266 1.2.4.2 minoura thr_setspecific(tcp_key,
267 1.2.4.2 minoura (void *) netid_tcp);
268 1.2.4.2 minoura #else
269 1.2.4.2 minoura netid_tcp_main = netid_tcp;
270 1.2.4.2 minoura #endif
271 1.2.4.2 minoura } else
272 1.2.4.2 minoura if (strcmp(nconf->nc_proto, NC_UDP) == 0) {
273 1.2.4.2 minoura netid_udp = strdup(nconf->nc_netid);
274 1.2.4.2 minoura #ifdef __REENT
275 1.2.4.2 minoura if (main_thread)
276 1.2.4.2 minoura netid_udp_main = netid_udp;
277 1.2.4.2 minoura else
278 1.2.4.2 minoura thr_setspecific(udp_key,
279 1.2.4.2 minoura (void *) netid_udp);
280 1.2.4.2 minoura #else
281 1.2.4.2 minoura netid_udp_main = netid_udp;
282 1.2.4.2 minoura #endif
283 1.2.4.2 minoura }
284 1.2.4.2 minoura }
285 1.2.4.2 minoura }
286 1.2.4.2 minoura endnetconfig(confighandle);
287 1.2.4.2 minoura }
288 1.2.4.2 minoura if (strcmp(nettype, "udp") == 0)
289 1.2.4.2 minoura netid = netid_udp;
290 1.2.4.2 minoura else if (strcmp(nettype, "tcp") == 0)
291 1.2.4.2 minoura netid = netid_tcp;
292 1.2.4.2 minoura else {
293 1.2.4.2 minoura return ((struct netconfig *)NULL);
294 1.2.4.2 minoura }
295 1.2.4.2 minoura if ((netid == NULL) || (netid[0] == NULL)) {
296 1.2.4.2 minoura return ((struct netconfig *)NULL);
297 1.2.4.2 minoura }
298 1.2.4.2 minoura dummy = getnetconfigent(netid);
299 1.2.4.2 minoura return (dummy);
300 1.2.4.2 minoura }
301 1.2.4.2 minoura
302 1.2.4.2 minoura /*
303 1.2.4.2 minoura * Returns the type of the nettype, which should then be used with
304 1.2.4.2 minoura * __rpc_getconf().
305 1.2.4.2 minoura */
306 1.2.4.2 minoura void *
307 1.2.4.2 minoura __rpc_setconf(nettype)
308 1.2.4.2 minoura char *nettype;
309 1.2.4.2 minoura {
310 1.2.4.2 minoura struct handle *handle;
311 1.2.4.2 minoura
312 1.2.4.2 minoura handle = (struct handle *) malloc(sizeof (struct handle));
313 1.2.4.2 minoura if (handle == NULL) {
314 1.2.4.2 minoura return (NULL);
315 1.2.4.2 minoura }
316 1.2.4.2 minoura switch (handle->nettype = getnettype(nettype)) {
317 1.2.4.2 minoura case _RPC_NETPATH:
318 1.2.4.2 minoura case _RPC_CIRCUIT_N:
319 1.2.4.2 minoura case _RPC_DATAGRAM_N:
320 1.2.4.2 minoura if (!(handle->nhandle = setnetpath())) {
321 1.2.4.2 minoura free(handle);
322 1.2.4.2 minoura return (NULL);
323 1.2.4.2 minoura }
324 1.2.4.2 minoura handle->nflag = TRUE;
325 1.2.4.2 minoura break;
326 1.2.4.2 minoura case _RPC_VISIBLE:
327 1.2.4.2 minoura case _RPC_CIRCUIT_V:
328 1.2.4.2 minoura case _RPC_DATAGRAM_V:
329 1.2.4.2 minoura case _RPC_TCP:
330 1.2.4.2 minoura case _RPC_UDP:
331 1.2.4.2 minoura if (!(handle->nhandle = setnetconfig())) {
332 1.2.4.2 minoura syslog (LOG_ERR, "rpc: failed to open " NETCONFIG);
333 1.2.4.2 minoura free(handle);
334 1.2.4.2 minoura return (NULL);
335 1.2.4.2 minoura }
336 1.2.4.2 minoura handle->nflag = FALSE;
337 1.2.4.2 minoura break;
338 1.2.4.2 minoura default:
339 1.2.4.2 minoura return (NULL);
340 1.2.4.2 minoura }
341 1.2.4.2 minoura
342 1.2.4.2 minoura return (handle);
343 1.2.4.2 minoura }
344 1.2.4.2 minoura
345 1.2.4.2 minoura /*
346 1.2.4.2 minoura * Returns the next netconfig struct for the given "net" type.
347 1.2.4.2 minoura * __rpc_setconf() should have been called previously.
348 1.2.4.2 minoura */
349 1.2.4.2 minoura struct netconfig *
350 1.2.4.2 minoura __rpc_getconf(vhandle)
351 1.2.4.2 minoura void *vhandle;
352 1.2.4.2 minoura {
353 1.2.4.2 minoura struct handle *handle;
354 1.2.4.2 minoura struct netconfig *nconf;
355 1.2.4.2 minoura
356 1.2.4.2 minoura handle = (struct handle *)vhandle;
357 1.2.4.2 minoura if (handle == NULL) {
358 1.2.4.2 minoura return (NULL);
359 1.2.4.2 minoura }
360 1.2.4.2 minoura while (1) {
361 1.2.4.2 minoura if (handle->nflag)
362 1.2.4.2 minoura nconf = getnetpath(handle->nhandle);
363 1.2.4.2 minoura else
364 1.2.4.2 minoura nconf = getnetconfig(handle->nhandle);
365 1.2.4.2 minoura if (nconf == (struct netconfig *)NULL)
366 1.2.4.2 minoura break;
367 1.2.4.2 minoura if ((nconf->nc_semantics != NC_TPI_CLTS) &&
368 1.2.4.2 minoura (nconf->nc_semantics != NC_TPI_COTS) &&
369 1.2.4.2 minoura (nconf->nc_semantics != NC_TPI_COTS_ORD))
370 1.2.4.2 minoura continue;
371 1.2.4.2 minoura switch (handle->nettype) {
372 1.2.4.2 minoura case _RPC_VISIBLE:
373 1.2.4.2 minoura if (!(nconf->nc_flag & NC_VISIBLE))
374 1.2.4.2 minoura continue;
375 1.2.4.2 minoura /* FALLTHROUGH */
376 1.2.4.2 minoura case _RPC_NETPATH: /* Be happy */
377 1.2.4.2 minoura break;
378 1.2.4.2 minoura case _RPC_CIRCUIT_V:
379 1.2.4.2 minoura if (!(nconf->nc_flag & NC_VISIBLE))
380 1.2.4.2 minoura continue;
381 1.2.4.2 minoura /* FALLTHROUGH */
382 1.2.4.2 minoura case _RPC_CIRCUIT_N:
383 1.2.4.2 minoura if ((nconf->nc_semantics != NC_TPI_COTS) &&
384 1.2.4.2 minoura (nconf->nc_semantics != NC_TPI_COTS_ORD))
385 1.2.4.2 minoura continue;
386 1.2.4.2 minoura break;
387 1.2.4.2 minoura case _RPC_DATAGRAM_V:
388 1.2.4.2 minoura if (!(nconf->nc_flag & NC_VISIBLE))
389 1.2.4.2 minoura continue;
390 1.2.4.2 minoura /* FALLTHROUGH */
391 1.2.4.2 minoura case _RPC_DATAGRAM_N:
392 1.2.4.2 minoura if (nconf->nc_semantics != NC_TPI_CLTS)
393 1.2.4.2 minoura continue;
394 1.2.4.2 minoura break;
395 1.2.4.2 minoura case _RPC_TCP:
396 1.2.4.2 minoura if (((nconf->nc_semantics != NC_TPI_COTS) &&
397 1.2.4.2 minoura (nconf->nc_semantics != NC_TPI_COTS_ORD)) ||
398 1.2.4.2 minoura (strcmp(nconf->nc_protofmly, NC_INET)
399 1.2.4.2 minoura #ifdef INET6
400 1.2.4.2 minoura && strcmp(nconf->nc_protofmly, NC_INET6))
401 1.2.4.2 minoura #else
402 1.2.4.2 minoura )
403 1.2.4.2 minoura #endif
404 1.2.4.2 minoura ||
405 1.2.4.2 minoura strcmp(nconf->nc_proto, NC_TCP))
406 1.2.4.2 minoura continue;
407 1.2.4.2 minoura break;
408 1.2.4.2 minoura case _RPC_UDP:
409 1.2.4.2 minoura if ((nconf->nc_semantics != NC_TPI_CLTS) ||
410 1.2.4.2 minoura (strcmp(nconf->nc_protofmly, NC_INET)
411 1.2.4.2 minoura #ifdef INET6
412 1.2.4.2 minoura && strcmp(nconf->nc_protofmly, NC_INET6))
413 1.2.4.2 minoura #else
414 1.2.4.2 minoura )
415 1.2.4.2 minoura #endif
416 1.2.4.2 minoura ||
417 1.2.4.2 minoura strcmp(nconf->nc_proto, NC_UDP))
418 1.2.4.2 minoura continue;
419 1.2.4.2 minoura break;
420 1.2.4.2 minoura }
421 1.2.4.2 minoura break;
422 1.2.4.2 minoura }
423 1.2.4.2 minoura return (nconf);
424 1.2.4.2 minoura }
425 1.2.4.2 minoura
426 1.2.4.2 minoura void
427 1.2.4.2 minoura __rpc_endconf(vhandle)
428 1.2.4.2 minoura void * vhandle;
429 1.2.4.2 minoura {
430 1.2.4.2 minoura struct handle *handle;
431 1.2.4.2 minoura
432 1.2.4.2 minoura handle = (struct handle *) vhandle;
433 1.2.4.2 minoura if (handle == NULL) {
434 1.2.4.2 minoura return;
435 1.2.4.2 minoura }
436 1.2.4.2 minoura if (handle->nflag) {
437 1.2.4.2 minoura endnetpath(handle->nhandle);
438 1.2.4.2 minoura } else {
439 1.2.4.2 minoura endnetconfig(handle->nhandle);
440 1.2.4.2 minoura }
441 1.2.4.2 minoura free(handle);
442 1.2.4.2 minoura }
443 1.2.4.2 minoura
444 1.2.4.2 minoura /*
445 1.2.4.2 minoura * Used to ping the NULL procedure for clnt handle.
446 1.2.4.2 minoura * Returns NULL if fails, else a non-NULL pointer.
447 1.2.4.2 minoura */
448 1.2.4.2 minoura void *
449 1.2.4.2 minoura rpc_nullproc(clnt)
450 1.2.4.2 minoura CLIENT *clnt;
451 1.2.4.2 minoura {
452 1.2.4.2 minoura struct timeval TIMEOUT = {25, 0};
453 1.2.4.2 minoura
454 1.2.4.2 minoura if (clnt_call(clnt, NULLPROC, (xdrproc_t) xdr_void, (char *)NULL,
455 1.2.4.2 minoura (xdrproc_t) xdr_void, (char *)NULL, TIMEOUT) != RPC_SUCCESS) {
456 1.2.4.2 minoura return ((void *) NULL);
457 1.2.4.2 minoura }
458 1.2.4.2 minoura return ((void *) clnt);
459 1.2.4.2 minoura }
460 1.2.4.2 minoura
461 1.2.4.2 minoura /*
462 1.2.4.2 minoura * Try all possible transports until
463 1.2.4.2 minoura * one succeeds in finding the netconf for the given fd.
464 1.2.4.2 minoura */
465 1.2.4.2 minoura struct netconfig *
466 1.2.4.2 minoura __rpcgettp(fd)
467 1.2.4.2 minoura int fd;
468 1.2.4.2 minoura {
469 1.2.4.2 minoura const char *netid;
470 1.2.4.2 minoura struct __rpc_sockinfo si;
471 1.2.4.2 minoura
472 1.2.4.2 minoura if (!__rpc_fd2sockinfo(fd, &si))
473 1.2.4.2 minoura return NULL;
474 1.2.4.2 minoura
475 1.2.4.2 minoura if (!__rpc_sockinfo2netid(&si, &netid))
476 1.2.4.2 minoura return NULL;
477 1.2.4.2 minoura
478 1.2.4.2 minoura return getnetconfigent((char *)netid);
479 1.2.4.2 minoura }
480 1.2.4.2 minoura
481 1.2.4.2 minoura int
482 1.2.4.2 minoura __rpc_fd2sockinfo(int fd, struct __rpc_sockinfo *sip)
483 1.2.4.2 minoura {
484 1.2.4.2 minoura socklen_t len;
485 1.2.4.2 minoura int type, proto;
486 1.2.4.2 minoura struct sockaddr_storage ss;
487 1.2.4.2 minoura
488 1.2.4.2 minoura len = sizeof ss;
489 1.2.4.2 minoura if (getsockname(fd, (struct sockaddr *)&ss, &len) < 0)
490 1.2.4.2 minoura return 0;
491 1.2.4.2 minoura sip->si_alen = len;
492 1.2.4.2 minoura
493 1.2.4.2 minoura len = sizeof type;
494 1.2.4.2 minoura if (getsockopt(fd, SOL_SOCKET, SO_TYPE, &type, &len) < 0)
495 1.2.4.2 minoura return 0;
496 1.2.4.2 minoura
497 1.2.4.2 minoura /* XXX */
498 1.2.4.2 minoura if (ss.ss_family != AF_LOCAL) {
499 1.2.4.2 minoura if (type == SOCK_STREAM)
500 1.2.4.2 minoura proto = IPPROTO_TCP;
501 1.2.4.2 minoura else if (type == SOCK_DGRAM)
502 1.2.4.2 minoura proto = IPPROTO_UDP;
503 1.2.4.2 minoura else
504 1.2.4.2 minoura return 0;
505 1.2.4.2 minoura } else
506 1.2.4.2 minoura proto = 0;
507 1.2.4.2 minoura
508 1.2.4.2 minoura sip->si_af = ss.ss_family;
509 1.2.4.2 minoura sip->si_proto = proto;
510 1.2.4.2 minoura sip->si_socktype = type;
511 1.2.4.2 minoura
512 1.2.4.2 minoura return 1;
513 1.2.4.2 minoura }
514 1.2.4.2 minoura
515 1.2.4.2 minoura /*
516 1.2.4.2 minoura * Linear search, but the number of entries is small.
517 1.2.4.2 minoura */
518 1.2.4.2 minoura int
519 1.2.4.2 minoura __rpc_nconf2sockinfo(const struct netconfig *nconf, struct __rpc_sockinfo *sip)
520 1.2.4.2 minoura {
521 1.2.4.2 minoura int i;
522 1.2.4.2 minoura
523 1.2.4.2 minoura for (i = 0; i < (sizeof na_cvt) / (sizeof (struct netid_af)); i++)
524 1.2.4.2 minoura if (!strcmp(na_cvt[i].netid, nconf->nc_netid)) {
525 1.2.4.2 minoura sip->si_af = na_cvt[i].af;
526 1.2.4.2 minoura sip->si_proto = na_cvt[i].protocol;
527 1.2.4.2 minoura sip->si_socktype =
528 1.2.4.2 minoura __rpc_seman2socktype(nconf->nc_semantics);
529 1.2.4.2 minoura if (sip->si_socktype == -1)
530 1.2.4.2 minoura return 0;
531 1.2.4.2 minoura sip->si_alen = __rpc_get_a_size(sip->si_af);
532 1.2.4.2 minoura return 1;
533 1.2.4.2 minoura }
534 1.2.4.2 minoura
535 1.2.4.2 minoura return 0;
536 1.2.4.2 minoura }
537 1.2.4.2 minoura
538 1.2.4.2 minoura int
539 1.2.4.2 minoura __rpc_nconf2fd(const struct netconfig *nconf)
540 1.2.4.2 minoura {
541 1.2.4.2 minoura struct __rpc_sockinfo si;
542 1.2.4.2 minoura
543 1.2.4.2 minoura if (!__rpc_nconf2sockinfo(nconf, &si))
544 1.2.4.2 minoura return 0;
545 1.2.4.2 minoura
546 1.2.4.2 minoura return socket(si.si_af, si.si_socktype, si.si_proto);
547 1.2.4.2 minoura }
548 1.2.4.2 minoura
549 1.2.4.2 minoura int
550 1.2.4.2 minoura __rpc_sockinfo2netid(struct __rpc_sockinfo *sip, const char **netid)
551 1.2.4.2 minoura {
552 1.2.4.2 minoura int i;
553 1.2.4.2 minoura
554 1.2.4.2 minoura for (i = 0; i < (sizeof na_cvt) / (sizeof (struct netid_af)); i++)
555 1.2.4.2 minoura if (na_cvt[i].af == sip->si_af &&
556 1.2.4.2 minoura na_cvt[i].protocol == sip->si_proto) {
557 1.2.4.2 minoura if (netid)
558 1.2.4.2 minoura *netid = na_cvt[i].netid;
559 1.2.4.2 minoura return 1;
560 1.2.4.2 minoura }
561 1.2.4.2 minoura
562 1.2.4.2 minoura return 0;
563 1.2.4.2 minoura }
564 1.2.4.2 minoura
565 1.2.4.2 minoura char *
566 1.2.4.2 minoura taddr2uaddr(const struct netconfig *nconf, const struct netbuf *nbuf)
567 1.2.4.2 minoura {
568 1.2.4.2 minoura struct __rpc_sockinfo si;
569 1.2.4.2 minoura
570 1.2.4.2 minoura if (!__rpc_nconf2sockinfo(nconf, &si))
571 1.2.4.2 minoura return NULL;
572 1.2.4.2 minoura return __rpc_taddr2uaddr_af(si.si_af, nbuf);
573 1.2.4.2 minoura }
574 1.2.4.2 minoura
575 1.2.4.2 minoura struct netbuf *
576 1.2.4.2 minoura uaddr2taddr(const struct netconfig *nconf, const char *uaddr)
577 1.2.4.2 minoura {
578 1.2.4.2 minoura struct __rpc_sockinfo si;
579 1.2.4.2 minoura
580 1.2.4.2 minoura if (!__rpc_nconf2sockinfo(nconf, &si))
581 1.2.4.2 minoura return NULL;
582 1.2.4.2 minoura return __rpc_uaddr2taddr_af(si.si_af, uaddr);
583 1.2.4.2 minoura }
584 1.2.4.2 minoura
585 1.2.4.2 minoura char *
586 1.2.4.2 minoura __rpc_taddr2uaddr_af(int af, const struct netbuf *nbuf)
587 1.2.4.2 minoura {
588 1.2.4.2 minoura char *ret;
589 1.2.4.2 minoura struct sockaddr_in *sin;
590 1.2.4.2 minoura struct sockaddr_un *sun;
591 1.2.4.2 minoura char namebuf[INET_ADDRSTRLEN];
592 1.2.4.2 minoura #ifdef INET6
593 1.2.4.2 minoura struct sockaddr_in6 *sin6;
594 1.2.4.2 minoura char namebuf6[INET6_ADDRSTRLEN];
595 1.2.4.2 minoura #endif
596 1.2.4.2 minoura u_int16_t port;
597 1.2.4.2 minoura
598 1.2.4.2 minoura switch (af) {
599 1.2.4.2 minoura case AF_INET:
600 1.2.4.2 minoura sin = nbuf->buf;
601 1.2.4.2 minoura if (inet_ntop(af, &sin->sin_addr, namebuf, sizeof namebuf)
602 1.2.4.2 minoura == NULL)
603 1.2.4.2 minoura return NULL;
604 1.2.4.2 minoura port = ntohs(sin->sin_port);
605 1.2.4.2 minoura if (asprintf(&ret, "%s.%u.%u", namebuf, port >> 8, port & 0xff)
606 1.2.4.2 minoura < 0)
607 1.2.4.2 minoura return NULL;
608 1.2.4.2 minoura break;
609 1.2.4.2 minoura #ifdef INET6
610 1.2.4.2 minoura case AF_INET6:
611 1.2.4.2 minoura sin6 = nbuf->buf;
612 1.2.4.2 minoura if (inet_ntop(af, &sin6->sin6_addr, namebuf6, sizeof namebuf6)
613 1.2.4.2 minoura == NULL)
614 1.2.4.2 minoura return NULL;
615 1.2.4.2 minoura port = ntohs(sin6->sin6_port);
616 1.2.4.2 minoura if (asprintf(&ret, "%s.%u.%u", namebuf6, port >> 8, port & 0xff)
617 1.2.4.2 minoura < 0)
618 1.2.4.2 minoura return NULL;
619 1.2.4.2 minoura break;
620 1.2.4.2 minoura #endif
621 1.2.4.2 minoura case AF_LOCAL:
622 1.2.4.2 minoura sun = nbuf->buf;
623 1.2.4.2 minoura sun->sun_path[sizeof(sun->sun_path) - 1] = '\0'; /* safety */
624 1.2.4.2 minoura ret = strdup(sun->sun_path);
625 1.2.4.2 minoura break;
626 1.2.4.2 minoura default:
627 1.2.4.2 minoura return NULL;
628 1.2.4.2 minoura }
629 1.2.4.2 minoura
630 1.2.4.2 minoura return ret;
631 1.2.4.2 minoura }
632 1.2.4.2 minoura
633 1.2.4.2 minoura struct netbuf *
634 1.2.4.2 minoura __rpc_uaddr2taddr_af(int af, const char *uaddr)
635 1.2.4.2 minoura {
636 1.2.4.2 minoura struct netbuf *ret = NULL;
637 1.2.4.2 minoura char *addrstr, *p;
638 1.2.4.2 minoura unsigned port, portlo, porthi;
639 1.2.4.2 minoura struct sockaddr_in *sin;
640 1.2.4.2 minoura #ifdef INET6
641 1.2.4.2 minoura struct sockaddr_in6 *sin6;
642 1.2.4.2 minoura #endif
643 1.2.4.2 minoura struct sockaddr_un *sun;
644 1.2.4.2 minoura
645 1.2.4.2 minoura addrstr = strdup(uaddr);
646 1.2.4.2 minoura if (addrstr == NULL)
647 1.2.4.2 minoura return NULL;
648 1.2.4.2 minoura
649 1.2.4.2 minoura /*
650 1.2.4.2 minoura * AF_LOCAL addresses are expected to be absolute
651 1.2.4.2 minoura * pathnames, anything else will be AF_INET or AF_INET6.
652 1.2.4.2 minoura */
653 1.2.4.2 minoura if (*addrstr != '/') {
654 1.2.4.2 minoura p = strrchr(addrstr, '.');
655 1.2.4.2 minoura if (p == NULL)
656 1.2.4.2 minoura goto out;
657 1.2.4.2 minoura portlo = (unsigned)atoi(p + 1);
658 1.2.4.2 minoura *p = '\0';
659 1.2.4.2 minoura
660 1.2.4.2 minoura p = strrchr(addrstr, '.');
661 1.2.4.2 minoura if (p == NULL)
662 1.2.4.2 minoura goto out;
663 1.2.4.2 minoura porthi = (unsigned)atoi(p + 1);
664 1.2.4.2 minoura *p = '\0';
665 1.2.4.2 minoura port = (porthi << 8) | portlo;
666 1.2.4.2 minoura }
667 1.2.4.2 minoura
668 1.2.4.2 minoura ret = (struct netbuf *)malloc(sizeof *ret);
669 1.2.4.2 minoura
670 1.2.4.2 minoura switch (af) {
671 1.2.4.2 minoura case AF_INET:
672 1.2.4.2 minoura sin = (struct sockaddr_in *)malloc(sizeof *sin);
673 1.2.4.2 minoura if (sin == NULL)
674 1.2.4.2 minoura goto out;
675 1.2.4.2 minoura memset(sin, 0, sizeof *sin);
676 1.2.4.2 minoura sin->sin_family = AF_INET;
677 1.2.4.2 minoura sin->sin_port = htons(port);
678 1.2.4.2 minoura if (inet_pton(AF_INET, addrstr, &sin->sin_addr) <= 0) {
679 1.2.4.2 minoura free(sin);
680 1.2.4.2 minoura free(ret);
681 1.2.4.2 minoura ret = NULL;
682 1.2.4.2 minoura goto out;
683 1.2.4.2 minoura }
684 1.2.4.2 minoura sin->sin_len = ret->maxlen = ret->len = sizeof *sin;
685 1.2.4.2 minoura ret->buf = sin;
686 1.2.4.2 minoura break;
687 1.2.4.2 minoura #ifdef INET6
688 1.2.4.2 minoura case AF_INET6:
689 1.2.4.2 minoura sin6 = (struct sockaddr_in6 *)malloc(sizeof *sin6);
690 1.2.4.2 minoura if (sin6 == NULL)
691 1.2.4.2 minoura goto out;
692 1.2.4.2 minoura memset(sin6, 0, sizeof *sin6);
693 1.2.4.2 minoura sin6->sin6_family = AF_INET6;
694 1.2.4.2 minoura sin6->sin6_port = htons(port);
695 1.2.4.2 minoura if (inet_pton(AF_INET6, addrstr, &sin6->sin6_addr) <= 0) {
696 1.2.4.2 minoura free(sin);
697 1.2.4.2 minoura free(ret);
698 1.2.4.2 minoura ret = NULL;
699 1.2.4.2 minoura goto out;
700 1.2.4.2 minoura }
701 1.2.4.2 minoura sin6->sin6_len = ret->maxlen = ret->len = sizeof *sin6;
702 1.2.4.2 minoura ret->buf = sin6;
703 1.2.4.2 minoura break;
704 1.2.4.2 minoura #endif
705 1.2.4.2 minoura case AF_LOCAL:
706 1.2.4.2 minoura sun = (struct sockaddr_un *)malloc(sizeof *sun);
707 1.2.4.2 minoura if (sun == NULL)
708 1.2.4.2 minoura goto out;
709 1.2.4.2 minoura memset(sun, 0, sizeof *sun);
710 1.2.4.2 minoura sun->sun_family = AF_LOCAL;
711 1.2.4.2 minoura strncpy(sun->sun_path, addrstr, sizeof(sun->sun_path) - 1);
712 1.2.4.2 minoura default:
713 1.2.4.2 minoura break;
714 1.2.4.2 minoura }
715 1.2.4.2 minoura out:
716 1.2.4.2 minoura free(addrstr);
717 1.2.4.2 minoura return ret;
718 1.2.4.2 minoura }
719 1.2.4.2 minoura
720 1.2.4.2 minoura int
721 1.2.4.2 minoura __rpc_seman2socktype(int semantics)
722 1.2.4.2 minoura {
723 1.2.4.2 minoura switch (semantics) {
724 1.2.4.2 minoura case NC_TPI_CLTS:
725 1.2.4.2 minoura return SOCK_DGRAM;
726 1.2.4.2 minoura case NC_TPI_COTS_ORD:
727 1.2.4.2 minoura return SOCK_STREAM;
728 1.2.4.2 minoura case NC_TPI_RAW:
729 1.2.4.2 minoura return SOCK_RAW;
730 1.2.4.2 minoura default:
731 1.2.4.2 minoura break;
732 1.2.4.2 minoura }
733 1.2.4.2 minoura
734 1.2.4.2 minoura return -1;
735 1.2.4.2 minoura }
736 1.2.4.2 minoura
737 1.2.4.2 minoura int
738 1.2.4.2 minoura __rpc_socktype2seman(int socktype)
739 1.2.4.2 minoura {
740 1.2.4.2 minoura switch (socktype) {
741 1.2.4.2 minoura case SOCK_DGRAM:
742 1.2.4.2 minoura return NC_TPI_CLTS;
743 1.2.4.2 minoura case SOCK_STREAM:
744 1.2.4.2 minoura return NC_TPI_COTS_ORD;
745 1.2.4.2 minoura case SOCK_RAW:
746 1.2.4.2 minoura return NC_TPI_RAW;
747 1.2.4.2 minoura default:
748 1.2.4.2 minoura break;
749 1.2.4.2 minoura }
750 1.2.4.2 minoura
751 1.2.4.2 minoura return -1;
752 1.2.4.2 minoura }
753 1.2.4.2 minoura
754 1.2.4.2 minoura /*
755 1.2.4.2 minoura * XXXX - IPv6 scope IDs can't be handled in universal addresses.
756 1.2.4.2 minoura * Here, we compare the original server address to that of the RPC
757 1.2.4.2 minoura * service we just received back from a call to rpcbind on the remote
758 1.2.4.2 minoura * machine. If they are both "link local" or "site local", copy
759 1.2.4.2 minoura * the scope id of the server address over to the service address.
760 1.2.4.2 minoura */
761 1.2.4.2 minoura int
762 1.2.4.2 minoura __rpc_fixup_addr(struct netbuf *new, const struct netbuf *svc)
763 1.2.4.2 minoura {
764 1.2.4.2 minoura #ifdef INET6
765 1.2.4.2 minoura struct sockaddr *sa_new, *sa_svc;
766 1.2.4.2 minoura struct sockaddr_in6 *sin6_new, *sin6_svc;
767 1.2.4.2 minoura
768 1.2.4.2 minoura sa_svc = (struct sockaddr *)svc->buf;
769 1.2.4.2 minoura sa_new = (struct sockaddr *)new->buf;
770 1.2.4.2 minoura
771 1.2.4.2 minoura if (sa_new->sa_family == sa_svc->sa_family &&
772 1.2.4.2 minoura sa_new->sa_family == AF_INET6) {
773 1.2.4.2 minoura sin6_new = (struct sockaddr_in6 *)new->buf;
774 1.2.4.2 minoura sin6_svc = (struct sockaddr_in6 *)svc->buf;
775 1.2.4.2 minoura
776 1.2.4.2 minoura if ((IN6_IS_ADDR_LINKLOCAL(&sin6_new->sin6_addr) &&
777 1.2.4.2 minoura IN6_IS_ADDR_LINKLOCAL(&sin6_svc->sin6_addr)) ||
778 1.2.4.2 minoura (IN6_IS_ADDR_SITELOCAL(&sin6_new->sin6_addr) &&
779 1.2.4.2 minoura IN6_IS_ADDR_SITELOCAL(&sin6_svc->sin6_addr))) {
780 1.2.4.2 minoura sin6_new->sin6_scope_id = sin6_svc->sin6_scope_id;
781 1.2.4.2 minoura }
782 1.2.4.2 minoura }
783 1.2.4.2 minoura #endif
784 1.2.4.2 minoura return 1;
785 1.2.4.2 minoura }
786 1.2.4.2 minoura
787 1.2.4.2 minoura int
788 1.2.4.2 minoura __rpc_sockisbound(int fd)
789 1.2.4.2 minoura {
790 1.2.4.2 minoura struct sockaddr_storage ss;
791 1.2.4.2 minoura socklen_t slen;
792 1.2.4.2 minoura
793 1.2.4.2 minoura slen = sizeof (struct sockaddr_storage);
794 1.2.4.2 minoura if (getsockname(fd, (struct sockaddr *)&ss, &slen) < 0)
795 1.2.4.2 minoura return 0;
796 1.2.4.2 minoura
797 1.2.4.2 minoura switch (ss.ss_family) {
798 1.2.4.2 minoura case AF_INET:
799 1.2.4.2 minoura return (((struct sockaddr_in *)&ss)->sin_port != 0);
800 1.2.4.2 minoura #ifdef INET6
801 1.2.4.2 minoura case AF_INET6:
802 1.2.4.2 minoura return (((struct sockaddr_in6 *)&ss)->sin6_port != 0);
803 1.2.4.2 minoura #endif
804 1.2.4.2 minoura case AF_LOCAL:
805 1.2.4.2 minoura /* XXX check this */
806 1.2.4.2 minoura return
807 1.2.4.2 minoura (((struct sockaddr_un *)&ss)->sun_path[0] != '\0');
808 1.2.4.2 minoura default:
809 1.2.4.2 minoura break;
810 1.2.4.2 minoura }
811 1.2.4.2 minoura
812 1.2.4.2 minoura return 0;
813 1.2.4.2 minoura }
814