clnt_dg.c revision 1.27 1 1.27 christos /* $NetBSD: clnt_dg.c,v 1.27 2013/03/05 19:55:22 christos Exp $ */
2 1.1 fvdl
3 1.1 fvdl /*
4 1.1 fvdl * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
5 1.1 fvdl * unrestricted use provided that this legend is included on all tape
6 1.1 fvdl * media and as a part of the software program in whole or part. Users
7 1.1 fvdl * may copy or modify Sun RPC without charge, but are not authorized
8 1.1 fvdl * to license or distribute it to anyone else except as part of a product or
9 1.1 fvdl * program developed by the user.
10 1.1 fvdl *
11 1.1 fvdl * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
12 1.1 fvdl * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
13 1.1 fvdl * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
14 1.1 fvdl *
15 1.1 fvdl * Sun RPC is provided with no support and without any obligation on the
16 1.1 fvdl * part of Sun Microsystems, Inc. to assist in its use, correction,
17 1.1 fvdl * modification or enhancement.
18 1.1 fvdl *
19 1.1 fvdl * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
20 1.1 fvdl * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
21 1.1 fvdl * OR ANY PART THEREOF.
22 1.1 fvdl *
23 1.1 fvdl * In no event will Sun Microsystems, Inc. be liable for any lost revenue
24 1.1 fvdl * or profits or other special, indirect and consequential damages, even if
25 1.1 fvdl * Sun has been advised of the possibility of such damages.
26 1.1 fvdl *
27 1.1 fvdl * Sun Microsystems, Inc.
28 1.1 fvdl * 2550 Garcia Avenue
29 1.1 fvdl * Mountain View, California 94043
30 1.1 fvdl */
31 1.1 fvdl /*
32 1.1 fvdl * Copyright (c) 1986-1991 by Sun Microsystems Inc.
33 1.1 fvdl */
34 1.1 fvdl
35 1.1 fvdl /* #ident "@(#)clnt_dg.c 1.23 94/04/22 SMI" */
36 1.1 fvdl
37 1.12 itojun #include <sys/cdefs.h>
38 1.12 itojun #if defined(LIBC_SCCS) && !defined(lint)
39 1.1 fvdl #if 0
40 1.1 fvdl static char sccsid[] = "@(#)clnt_dg.c 1.19 89/03/16 Copyr 1988 Sun Micro";
41 1.12 itojun #else
42 1.27 christos __RCSID("$NetBSD: clnt_dg.c,v 1.27 2013/03/05 19:55:22 christos Exp $");
43 1.1 fvdl #endif
44 1.1 fvdl #endif
45 1.1 fvdl
46 1.1 fvdl /*
47 1.1 fvdl * Implements a connectionless client side RPC.
48 1.1 fvdl */
49 1.1 fvdl
50 1.1 fvdl #include "namespace.h"
51 1.1 fvdl #include "reentrant.h"
52 1.21 chs #include <sys/poll.h>
53 1.1 fvdl #include <sys/types.h>
54 1.1 fvdl #include <sys/time.h>
55 1.1 fvdl #include <sys/socket.h>
56 1.1 fvdl #include <sys/ioctl.h>
57 1.1 fvdl #include <rpc/rpc.h>
58 1.7 lukem #include <assert.h>
59 1.1 fvdl #include <errno.h>
60 1.1 fvdl #include <stdlib.h>
61 1.2 thorpej #include <string.h>
62 1.1 fvdl #include <signal.h>
63 1.1 fvdl #include <unistd.h>
64 1.1 fvdl #include <err.h>
65 1.27 christos
66 1.27 christos #include "svc_fdset.h"
67 1.8 fvdl #include "rpc_internal.h"
68 1.1 fvdl
69 1.1 fvdl #ifdef __weak_alias
70 1.1 fvdl __weak_alias(clnt_dg_create,_clnt_dg_create)
71 1.1 fvdl #endif
72 1.1 fvdl
73 1.1 fvdl #define RPC_MAX_BACKOFF 30 /* seconds */
74 1.1 fvdl
75 1.1 fvdl
76 1.26 matt static struct clnt_ops *clnt_dg_ops(void);
77 1.26 matt static bool_t time_not_ok(struct timeval *);
78 1.26 matt static enum clnt_stat clnt_dg_call(CLIENT *, rpcproc_t, xdrproc_t,
79 1.26 matt const char *, xdrproc_t, caddr_t, struct timeval);
80 1.26 matt static void clnt_dg_geterr(CLIENT *, struct rpc_err *);
81 1.26 matt static bool_t clnt_dg_freeres(CLIENT *, xdrproc_t, caddr_t);
82 1.26 matt static void clnt_dg_abort(CLIENT *);
83 1.26 matt static bool_t clnt_dg_control(CLIENT *, u_int, char *);
84 1.26 matt static void clnt_dg_destroy(CLIENT *);
85 1.1 fvdl
86 1.1 fvdl
87 1.1 fvdl
88 1.1 fvdl
89 1.1 fvdl /*
90 1.1 fvdl * This machinery implements per-fd locks for MT-safety. It is not
91 1.1 fvdl * sufficient to do per-CLIENT handle locks for MT-safety because a
92 1.1 fvdl * user may create more than one CLIENT handle with the same fd behind
93 1.1 fvdl * it. Therfore, we allocate an array of flags (dg_fd_locks), protected
94 1.1 fvdl * by the clnt_fd_lock mutex, and an array (dg_cv) of condition variables
95 1.1 fvdl * similarly protected. Dg_fd_lock[fd] == 1 => a call is activte on some
96 1.1 fvdl * CLIENT handle created for that fd.
97 1.1 fvdl * The current implementation holds locks across the entire RPC and reply,
98 1.1 fvdl * including retransmissions. Yes, this is silly, and as soon as this
99 1.1 fvdl * code is proven to work, this should be the first thing fixed. One step
100 1.1 fvdl * at a time.
101 1.1 fvdl */
102 1.1 fvdl static int *dg_fd_locks;
103 1.9 thorpej #ifdef _REENTRANT
104 1.9 thorpej #define __rpc_lock_value __isthreaded;
105 1.1 fvdl extern mutex_t clnt_fd_lock;
106 1.1 fvdl static cond_t *dg_cv;
107 1.1 fvdl #define release_fd_lock(fd, mask) { \
108 1.1 fvdl mutex_lock(&clnt_fd_lock); \
109 1.1 fvdl dg_fd_locks[fd] = 0; \
110 1.1 fvdl mutex_unlock(&clnt_fd_lock); \
111 1.22 christos thr_sigsetmask(SIG_SETMASK, &(mask), NULL); \
112 1.1 fvdl cond_signal(&dg_cv[fd]); \
113 1.1 fvdl }
114 1.1 fvdl #else
115 1.1 fvdl #define release_fd_lock(fd,mask)
116 1.1 fvdl #define __rpc_lock_value 0
117 1.1 fvdl #endif
118 1.1 fvdl
119 1.1 fvdl static const char mem_err_clnt_dg[] = "clnt_dg_create: out of memory";
120 1.1 fvdl
121 1.1 fvdl /* VARIABLES PROTECTED BY clnt_fd_lock: dg_fd_locks, dg_cv */
122 1.1 fvdl
123 1.1 fvdl /*
124 1.1 fvdl * Private data kept per client handle
125 1.1 fvdl */
126 1.1 fvdl struct cu_data {
127 1.1 fvdl int cu_fd; /* connections fd */
128 1.1 fvdl bool_t cu_closeit; /* opened by library */
129 1.1 fvdl struct sockaddr_storage cu_raddr; /* remote address */
130 1.1 fvdl int cu_rlen;
131 1.1 fvdl struct timeval cu_wait; /* retransmit interval */
132 1.1 fvdl struct timeval cu_total; /* total time for the call */
133 1.1 fvdl struct rpc_err cu_error;
134 1.1 fvdl XDR cu_outxdrs;
135 1.1 fvdl u_int cu_xdrpos;
136 1.1 fvdl u_int cu_sendsz; /* send size */
137 1.1 fvdl char *cu_outbuf;
138 1.1 fvdl u_int cu_recvsz; /* recv size */
139 1.21 chs struct pollfd cu_pfdp;
140 1.1 fvdl char cu_inbuf[1];
141 1.1 fvdl };
142 1.1 fvdl
143 1.1 fvdl /*
144 1.1 fvdl * Connection less client creation returns with client handle parameters.
145 1.1 fvdl * Default options are set, which the user can change using clnt_control().
146 1.1 fvdl * fd should be open and bound.
147 1.1 fvdl * NB: The rpch->cl_auth is initialized to null authentication.
148 1.1 fvdl * Caller may wish to set this something more useful.
149 1.1 fvdl *
150 1.1 fvdl * sendsz and recvsz are the maximum allowable packet sizes that can be
151 1.1 fvdl * sent and received. Normally they are the same, but they can be
152 1.1 fvdl * changed to improve the program efficiency and buffer allocation.
153 1.1 fvdl * If they are 0, use the transport default.
154 1.1 fvdl *
155 1.1 fvdl * If svcaddr is NULL, returns NULL.
156 1.1 fvdl */
157 1.1 fvdl CLIENT *
158 1.26 matt clnt_dg_create(
159 1.26 matt int fd, /* open file descriptor */
160 1.26 matt const struct netbuf *svcaddr, /* servers address */
161 1.26 matt rpcprog_t program, /* program number */
162 1.26 matt rpcvers_t version, /* version number */
163 1.26 matt u_int sendsz, /* buffer recv size */
164 1.26 matt u_int recvsz) /* buffer send size */
165 1.1 fvdl {
166 1.3 christos CLIENT *cl = NULL; /* client handle */
167 1.3 christos struct cu_data *cu = NULL; /* private data */
168 1.1 fvdl struct rpc_msg call_msg;
169 1.9 thorpej #ifdef _REENTRANT
170 1.1 fvdl sigset_t mask;
171 1.1 fvdl #endif
172 1.1 fvdl sigset_t newmask;
173 1.1 fvdl struct __rpc_sockinfo si;
174 1.1 fvdl int one = 1;
175 1.1 fvdl
176 1.1 fvdl sigfillset(&newmask);
177 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
178 1.1 fvdl mutex_lock(&clnt_fd_lock);
179 1.22 christos if (dg_fd_locks == NULL) {
180 1.9 thorpej #ifdef _REENTRANT
181 1.9 thorpej size_t cv_allocsz;
182 1.1 fvdl #endif
183 1.3 christos size_t fd_allocsz;
184 1.1 fvdl int dtbsize = __rpc_dtbsize();
185 1.1 fvdl
186 1.1 fvdl fd_allocsz = dtbsize * sizeof (int);
187 1.22 christos dg_fd_locks = mem_alloc(fd_allocsz);
188 1.22 christos if (dg_fd_locks == NULL) {
189 1.1 fvdl mutex_unlock(&clnt_fd_lock);
190 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
191 1.1 fvdl goto err1;
192 1.1 fvdl } else
193 1.1 fvdl memset(dg_fd_locks, '\0', fd_allocsz);
194 1.1 fvdl
195 1.9 thorpej #ifdef _REENTRANT
196 1.1 fvdl cv_allocsz = dtbsize * sizeof (cond_t);
197 1.22 christos dg_cv = mem_alloc(cv_allocsz);
198 1.22 christos if (dg_cv == NULL) {
199 1.1 fvdl mem_free(dg_fd_locks, fd_allocsz);
200 1.22 christos dg_fd_locks = NULL;
201 1.1 fvdl mutex_unlock(&clnt_fd_lock);
202 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
203 1.1 fvdl goto err1;
204 1.1 fvdl } else {
205 1.1 fvdl int i;
206 1.1 fvdl
207 1.1 fvdl for (i = 0; i < dtbsize; i++)
208 1.1 fvdl cond_init(&dg_cv[i], 0, (void *) 0);
209 1.1 fvdl }
210 1.1 fvdl #endif
211 1.1 fvdl }
212 1.1 fvdl
213 1.1 fvdl mutex_unlock(&clnt_fd_lock);
214 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
215 1.1 fvdl
216 1.3 christos if (svcaddr == NULL) {
217 1.1 fvdl rpc_createerr.cf_stat = RPC_UNKNOWNADDR;
218 1.3 christos return (NULL);
219 1.1 fvdl }
220 1.1 fvdl
221 1.1 fvdl if (!__rpc_fd2sockinfo(fd, &si)) {
222 1.1 fvdl rpc_createerr.cf_stat = RPC_TLIERROR;
223 1.1 fvdl rpc_createerr.cf_error.re_errno = 0;
224 1.3 christos return (NULL);
225 1.1 fvdl }
226 1.1 fvdl /*
227 1.1 fvdl * Find the receive and the send size
228 1.1 fvdl */
229 1.1 fvdl sendsz = __rpc_get_t_size(si.si_af, si.si_proto, (int)sendsz);
230 1.1 fvdl recvsz = __rpc_get_t_size(si.si_af, si.si_proto, (int)recvsz);
231 1.1 fvdl if ((sendsz == 0) || (recvsz == 0)) {
232 1.1 fvdl rpc_createerr.cf_stat = RPC_TLIERROR; /* XXX */
233 1.1 fvdl rpc_createerr.cf_error.re_errno = 0;
234 1.3 christos return (NULL);
235 1.1 fvdl }
236 1.1 fvdl
237 1.3 christos if ((cl = mem_alloc(sizeof (CLIENT))) == NULL)
238 1.1 fvdl goto err1;
239 1.1 fvdl /*
240 1.1 fvdl * Should be multiple of 4 for XDR.
241 1.1 fvdl */
242 1.1 fvdl sendsz = ((sendsz + 3) / 4) * 4;
243 1.1 fvdl recvsz = ((recvsz + 3) / 4) * 4;
244 1.15 yamt cu = malloc(sizeof (*cu) + sendsz + recvsz);
245 1.3 christos if (cu == NULL)
246 1.1 fvdl goto err1;
247 1.15 yamt memset(cu, 0, sizeof(*cu));
248 1.3 christos (void) memcpy(&cu->cu_raddr, svcaddr->buf, (size_t)svcaddr->len);
249 1.1 fvdl cu->cu_rlen = svcaddr->len;
250 1.1 fvdl cu->cu_outbuf = &cu->cu_inbuf[recvsz];
251 1.1 fvdl /* Other values can also be set through clnt_control() */
252 1.27 christos #ifdef RUMP_RPC
253 1.1 fvdl cu->cu_wait.tv_sec = 15; /* heuristically chosen */
254 1.1 fvdl cu->cu_wait.tv_usec = 0;
255 1.27 christos #else
256 1.27 christos cu->cu_wait.tv_sec = 0; /* for testing, 10x / second */
257 1.27 christos cu->cu_wait.tv_usec = 100000;
258 1.27 christos #endif
259 1.1 fvdl cu->cu_total.tv_sec = -1;
260 1.1 fvdl cu->cu_total.tv_usec = -1;
261 1.1 fvdl cu->cu_sendsz = sendsz;
262 1.1 fvdl cu->cu_recvsz = recvsz;
263 1.11 itojun call_msg.rm_xid = __RPC_GETXID();
264 1.1 fvdl call_msg.rm_call.cb_prog = program;
265 1.1 fvdl call_msg.rm_call.cb_vers = version;
266 1.1 fvdl xdrmem_create(&(cu->cu_outxdrs), cu->cu_outbuf, sendsz, XDR_ENCODE);
267 1.1 fvdl if (! xdr_callhdr(&(cu->cu_outxdrs), &call_msg)) {
268 1.1 fvdl rpc_createerr.cf_stat = RPC_CANTENCODEARGS; /* XXX */
269 1.1 fvdl rpc_createerr.cf_error.re_errno = 0;
270 1.1 fvdl goto err2;
271 1.1 fvdl }
272 1.1 fvdl cu->cu_xdrpos = XDR_GETPOS(&(cu->cu_outxdrs));
273 1.1 fvdl
274 1.1 fvdl /* XXX fvdl - do we still want this? */
275 1.1 fvdl #if 0
276 1.1 fvdl (void)bindresvport_sa(fd, (struct sockaddr *)svcaddr->buf);
277 1.1 fvdl #endif
278 1.1 fvdl ioctl(fd, FIONBIO, (char *)(void *)&one);
279 1.1 fvdl
280 1.1 fvdl /*
281 1.1 fvdl * By default, closeit is always FALSE. It is users responsibility
282 1.1 fvdl * to do a close on it, else the user may use clnt_control
283 1.1 fvdl * to let clnt_destroy do it for him/her.
284 1.1 fvdl */
285 1.1 fvdl cu->cu_closeit = FALSE;
286 1.1 fvdl cu->cu_fd = fd;
287 1.21 chs cu->cu_pfdp.fd = cu->cu_fd;
288 1.21 chs cu->cu_pfdp.events = POLLIN | POLLPRI | POLLRDNORM | POLLRDBAND;
289 1.1 fvdl cl->cl_ops = clnt_dg_ops();
290 1.3 christos cl->cl_private = (caddr_t)(void *)cu;
291 1.1 fvdl cl->cl_auth = authnone_create();
292 1.3 christos cl->cl_tp = NULL;
293 1.3 christos cl->cl_netid = NULL;
294 1.1 fvdl return (cl);
295 1.1 fvdl err1:
296 1.1 fvdl warnx(mem_err_clnt_dg);
297 1.1 fvdl rpc_createerr.cf_stat = RPC_SYSTEMERROR;
298 1.1 fvdl rpc_createerr.cf_error.re_errno = errno;
299 1.1 fvdl err2:
300 1.1 fvdl if (cl) {
301 1.3 christos mem_free(cl, sizeof (CLIENT));
302 1.1 fvdl if (cu)
303 1.3 christos mem_free(cu, sizeof (*cu) + sendsz + recvsz);
304 1.1 fvdl }
305 1.3 christos return (NULL);
306 1.1 fvdl }
307 1.1 fvdl
308 1.1 fvdl static enum clnt_stat
309 1.26 matt clnt_dg_call(
310 1.26 matt CLIENT * cl, /* client handle */
311 1.26 matt rpcproc_t proc, /* procedure number */
312 1.26 matt xdrproc_t xargs, /* xdr routine for args */
313 1.26 matt const char * argsp, /* pointer to args */
314 1.26 matt xdrproc_t xresults, /* xdr routine for results */
315 1.26 matt caddr_t resultsp, /* pointer to results */
316 1.26 matt struct timeval utimeout) /* seconds to wait before giving up */
317 1.1 fvdl {
318 1.7 lukem struct cu_data *cu;
319 1.3 christos XDR *xdrs;
320 1.3 christos size_t outlen;
321 1.1 fvdl struct rpc_msg reply_msg;
322 1.1 fvdl XDR reply_xdrs;
323 1.1 fvdl bool_t ok;
324 1.1 fvdl int nrefreshes = 2; /* number of times to refresh cred */
325 1.1 fvdl struct timeval timeout;
326 1.1 fvdl struct timeval retransmit_time;
327 1.18 rpaulo struct timeval next_sendtime, starttime, time_waited, tv;
328 1.9 thorpej #ifdef _REENTRANT
329 1.21 chs sigset_t mask, *maskp = &mask;
330 1.21 chs #else
331 1.21 chs sigset_t *maskp = NULL;
332 1.1 fvdl #endif
333 1.1 fvdl sigset_t newmask;
334 1.3 christos ssize_t recvlen = 0;
335 1.16 christos struct timespec ts;
336 1.18 rpaulo int n;
337 1.1 fvdl
338 1.7 lukem _DIAGASSERT(cl != NULL);
339 1.7 lukem
340 1.7 lukem cu = (struct cu_data *)cl->cl_private;
341 1.7 lukem
342 1.1 fvdl sigfillset(&newmask);
343 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
344 1.1 fvdl mutex_lock(&clnt_fd_lock);
345 1.1 fvdl while (dg_fd_locks[cu->cu_fd])
346 1.1 fvdl cond_wait(&dg_cv[cu->cu_fd], &clnt_fd_lock);
347 1.1 fvdl dg_fd_locks[cu->cu_fd] = __rpc_lock_value;
348 1.1 fvdl mutex_unlock(&clnt_fd_lock);
349 1.1 fvdl if (cu->cu_total.tv_usec == -1) {
350 1.1 fvdl timeout = utimeout; /* use supplied timeout */
351 1.1 fvdl } else {
352 1.1 fvdl timeout = cu->cu_total; /* use default timeout */
353 1.1 fvdl }
354 1.1 fvdl
355 1.1 fvdl time_waited.tv_sec = 0;
356 1.1 fvdl time_waited.tv_usec = 0;
357 1.18 rpaulo retransmit_time = next_sendtime = cu->cu_wait;
358 1.18 rpaulo gettimeofday(&starttime, NULL);
359 1.18 rpaulo
360 1.1 fvdl call_again:
361 1.1 fvdl xdrs = &(cu->cu_outxdrs);
362 1.1 fvdl xdrs->x_op = XDR_ENCODE;
363 1.1 fvdl XDR_SETPOS(xdrs, cu->cu_xdrpos);
364 1.1 fvdl /*
365 1.1 fvdl * the transaction is the first thing in the out buffer
366 1.1 fvdl */
367 1.3 christos (*(u_int32_t *)(void *)(cu->cu_outbuf))++;
368 1.6 christos if ((! XDR_PUTINT32(xdrs, (int32_t *)&proc)) ||
369 1.1 fvdl (! AUTH_MARSHALL(cl->cl_auth, xdrs)) ||
370 1.20 yamt (! (*xargs)(xdrs, __UNCONST(argsp)))) {
371 1.18 rpaulo cu->cu_error.re_status = RPC_CANTENCODEARGS;
372 1.18 rpaulo goto out;
373 1.1 fvdl }
374 1.3 christos outlen = (size_t)XDR_GETPOS(xdrs);
375 1.1 fvdl
376 1.1 fvdl send_again:
377 1.23 lukem if ((size_t)sendto(cu->cu_fd, cu->cu_outbuf, outlen, 0,
378 1.3 christos (struct sockaddr *)(void *)&cu->cu_raddr, (socklen_t)cu->cu_rlen)
379 1.1 fvdl != outlen) {
380 1.1 fvdl cu->cu_error.re_errno = errno;
381 1.18 rpaulo cu->cu_error.re_status = RPC_CANTSEND;
382 1.18 rpaulo goto out;
383 1.1 fvdl }
384 1.1 fvdl
385 1.1 fvdl /*
386 1.1 fvdl * Hack to provide rpc-based message passing
387 1.1 fvdl */
388 1.1 fvdl if (timeout.tv_sec == 0 && timeout.tv_usec == 0) {
389 1.18 rpaulo cu->cu_error.re_status = RPC_TIMEDOUT;
390 1.18 rpaulo goto out;
391 1.1 fvdl }
392 1.1 fvdl /*
393 1.1 fvdl * sub-optimal code appears here because we have
394 1.1 fvdl * some clock time to spare while the packets are in flight.
395 1.1 fvdl * (We assume that this is actually only executed once.)
396 1.1 fvdl */
397 1.1 fvdl reply_msg.acpted_rply.ar_verf = _null_auth;
398 1.1 fvdl reply_msg.acpted_rply.ar_results.where = resultsp;
399 1.1 fvdl reply_msg.acpted_rply.ar_results.proc = xresults;
400 1.1 fvdl
401 1.1 fvdl
402 1.1 fvdl for (;;) {
403 1.18 rpaulo /* Decide how long to wait. */
404 1.18 rpaulo if (timercmp(&next_sendtime, &timeout, <))
405 1.18 rpaulo timersub(&next_sendtime, &time_waited, &tv);
406 1.18 rpaulo else
407 1.18 rpaulo timersub(&timeout, &time_waited, &tv);
408 1.18 rpaulo if (tv.tv_sec < 0 || tv.tv_usec < 0)
409 1.18 rpaulo tv.tv_sec = tv.tv_usec = 0;
410 1.18 rpaulo TIMEVAL_TO_TIMESPEC(&tv, &ts);
411 1.18 rpaulo
412 1.21 chs n = pollts(&cu->cu_pfdp, 1, &ts, maskp);
413 1.18 rpaulo if (n == 1) {
414 1.18 rpaulo /* We have some data now */
415 1.18 rpaulo do {
416 1.18 rpaulo recvlen = recvfrom(cu->cu_fd, cu->cu_inbuf,
417 1.18 rpaulo cu->cu_recvsz, 0, NULL, NULL);
418 1.18 rpaulo } while (recvlen < 0 && errno == EINTR);
419 1.18 rpaulo
420 1.18 rpaulo if (recvlen < 0 && errno != EWOULDBLOCK) {
421 1.1 fvdl cu->cu_error.re_errno = errno;
422 1.18 rpaulo cu->cu_error.re_status = RPC_CANTRECV;
423 1.18 rpaulo goto out;
424 1.1 fvdl }
425 1.25 mrg if (recvlen >= (ssize_t)sizeof(uint32_t)) {
426 1.25 mrg if (memcmp(cu->cu_inbuf, cu->cu_outbuf,
427 1.25 mrg sizeof(uint32_t)) == 0)
428 1.25 mrg /* Assume we have the proper reply. */
429 1.25 mrg break;
430 1.25 mrg }
431 1.18 rpaulo }
432 1.18 rpaulo if (n == -1) {
433 1.19 christos cu->cu_error.re_errno = errno;
434 1.19 christos cu->cu_error.re_status = RPC_CANTRECV;
435 1.19 christos goto out;
436 1.1 fvdl }
437 1.1 fvdl
438 1.18 rpaulo gettimeofday(&tv, NULL);
439 1.18 rpaulo timersub(&tv, &starttime, &time_waited);
440 1.18 rpaulo
441 1.18 rpaulo /* Check for timeout. */
442 1.18 rpaulo if (timercmp(&time_waited, &timeout, >)) {
443 1.18 rpaulo cu->cu_error.re_status = RPC_TIMEDOUT;
444 1.18 rpaulo goto out;
445 1.18 rpaulo }
446 1.18 rpaulo
447 1.18 rpaulo /* Retransmit if necessary. */
448 1.18 rpaulo if (timercmp(&time_waited, &next_sendtime, >)) {
449 1.18 rpaulo /* update retransmit_time */
450 1.18 rpaulo if (retransmit_time.tv_sec < RPC_MAX_BACKOFF)
451 1.18 rpaulo timeradd(&retransmit_time, &retransmit_time,
452 1.18 rpaulo &retransmit_time);
453 1.18 rpaulo timeradd(&next_sendtime, &retransmit_time,
454 1.18 rpaulo &next_sendtime);
455 1.18 rpaulo goto send_again;
456 1.1 fvdl }
457 1.1 fvdl }
458 1.1 fvdl
459 1.1 fvdl /*
460 1.1 fvdl * now decode and validate the response
461 1.1 fvdl */
462 1.1 fvdl
463 1.13 drochner xdrmem_create(&reply_xdrs, cu->cu_inbuf, (u_int)recvlen, XDR_DECODE);
464 1.1 fvdl ok = xdr_replymsg(&reply_xdrs, &reply_msg);
465 1.1 fvdl /* XDR_DESTROY(&reply_xdrs); save a few cycles on noop destroy */
466 1.1 fvdl if (ok) {
467 1.1 fvdl if ((reply_msg.rm_reply.rp_stat == MSG_ACCEPTED) &&
468 1.1 fvdl (reply_msg.acpted_rply.ar_stat == SUCCESS))
469 1.1 fvdl cu->cu_error.re_status = RPC_SUCCESS;
470 1.1 fvdl else
471 1.1 fvdl _seterr_reply(&reply_msg, &(cu->cu_error));
472 1.1 fvdl
473 1.1 fvdl if (cu->cu_error.re_status == RPC_SUCCESS) {
474 1.1 fvdl if (! AUTH_VALIDATE(cl->cl_auth,
475 1.1 fvdl &reply_msg.acpted_rply.ar_verf)) {
476 1.1 fvdl cu->cu_error.re_status = RPC_AUTHERROR;
477 1.1 fvdl cu->cu_error.re_why = AUTH_INVALIDRESP;
478 1.1 fvdl }
479 1.1 fvdl if (reply_msg.acpted_rply.ar_verf.oa_base != NULL) {
480 1.1 fvdl xdrs->x_op = XDR_FREE;
481 1.1 fvdl (void) xdr_opaque_auth(xdrs,
482 1.1 fvdl &(reply_msg.acpted_rply.ar_verf));
483 1.1 fvdl }
484 1.1 fvdl } /* end successful completion */
485 1.1 fvdl /*
486 1.1 fvdl * If unsuccesful AND error is an authentication error
487 1.1 fvdl * then refresh credentials and try again, else break
488 1.1 fvdl */
489 1.1 fvdl else if (cu->cu_error.re_status == RPC_AUTHERROR)
490 1.1 fvdl /* maybe our credentials need to be refreshed ... */
491 1.1 fvdl if (nrefreshes > 0 && AUTH_REFRESH(cl->cl_auth)) {
492 1.1 fvdl nrefreshes--;
493 1.1 fvdl goto call_again;
494 1.1 fvdl }
495 1.1 fvdl /* end of unsuccessful completion */
496 1.1 fvdl } /* end of valid reply message */
497 1.1 fvdl else {
498 1.1 fvdl cu->cu_error.re_status = RPC_CANTDECODERES;
499 1.1 fvdl
500 1.1 fvdl }
501 1.18 rpaulo out:
502 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
503 1.1 fvdl return (cu->cu_error.re_status);
504 1.1 fvdl }
505 1.1 fvdl
506 1.1 fvdl static void
507 1.26 matt clnt_dg_geterr(CLIENT *cl, struct rpc_err *errp)
508 1.1 fvdl {
509 1.7 lukem struct cu_data *cu;
510 1.1 fvdl
511 1.7 lukem _DIAGASSERT(cl != NULL);
512 1.7 lukem _DIAGASSERT(errp != NULL);
513 1.7 lukem
514 1.7 lukem cu = (struct cu_data *)cl->cl_private;
515 1.1 fvdl *errp = cu->cu_error;
516 1.1 fvdl }
517 1.1 fvdl
518 1.1 fvdl static bool_t
519 1.26 matt clnt_dg_freeres(CLIENT *cl, xdrproc_t xdr_res, caddr_t res_ptr)
520 1.1 fvdl {
521 1.7 lukem struct cu_data *cu;
522 1.7 lukem XDR *xdrs;
523 1.1 fvdl bool_t dummy;
524 1.9 thorpej #ifdef _REENTRANT
525 1.1 fvdl sigset_t mask;
526 1.1 fvdl #endif
527 1.1 fvdl sigset_t newmask;
528 1.1 fvdl
529 1.7 lukem _DIAGASSERT(cl != NULL);
530 1.7 lukem cu = (struct cu_data *)cl->cl_private;
531 1.7 lukem xdrs = &(cu->cu_outxdrs);
532 1.7 lukem
533 1.1 fvdl sigfillset(&newmask);
534 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
535 1.1 fvdl mutex_lock(&clnt_fd_lock);
536 1.1 fvdl while (dg_fd_locks[cu->cu_fd])
537 1.1 fvdl cond_wait(&dg_cv[cu->cu_fd], &clnt_fd_lock);
538 1.1 fvdl xdrs->x_op = XDR_FREE;
539 1.1 fvdl dummy = (*xdr_res)(xdrs, res_ptr);
540 1.1 fvdl mutex_unlock(&clnt_fd_lock);
541 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &mask, NULL);
542 1.1 fvdl cond_signal(&dg_cv[cu->cu_fd]);
543 1.1 fvdl return (dummy);
544 1.1 fvdl }
545 1.1 fvdl
546 1.1 fvdl /*ARGSUSED*/
547 1.1 fvdl static void
548 1.26 matt clnt_dg_abort(CLIENT *h)
549 1.1 fvdl {
550 1.1 fvdl }
551 1.1 fvdl
552 1.1 fvdl static bool_t
553 1.26 matt clnt_dg_control(CLIENT *cl, u_int request, char *info)
554 1.1 fvdl {
555 1.7 lukem struct cu_data *cu;
556 1.1 fvdl struct netbuf *addr;
557 1.9 thorpej #ifdef _REENTRANT
558 1.1 fvdl sigset_t mask;
559 1.1 fvdl #endif
560 1.1 fvdl sigset_t newmask;
561 1.1 fvdl
562 1.7 lukem _DIAGASSERT(cl != NULL);
563 1.7 lukem /* info is handled below */
564 1.7 lukem
565 1.7 lukem cu = (struct cu_data *)cl->cl_private;
566 1.7 lukem
567 1.1 fvdl sigfillset(&newmask);
568 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
569 1.1 fvdl mutex_lock(&clnt_fd_lock);
570 1.1 fvdl while (dg_fd_locks[cu->cu_fd])
571 1.1 fvdl cond_wait(&dg_cv[cu->cu_fd], &clnt_fd_lock);
572 1.1 fvdl dg_fd_locks[cu->cu_fd] = __rpc_lock_value;
573 1.1 fvdl mutex_unlock(&clnt_fd_lock);
574 1.1 fvdl switch (request) {
575 1.1 fvdl case CLSET_FD_CLOSE:
576 1.1 fvdl cu->cu_closeit = TRUE;
577 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
578 1.1 fvdl return (TRUE);
579 1.1 fvdl case CLSET_FD_NCLOSE:
580 1.1 fvdl cu->cu_closeit = FALSE;
581 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
582 1.1 fvdl return (TRUE);
583 1.1 fvdl }
584 1.1 fvdl
585 1.1 fvdl /* for other requests which use info */
586 1.1 fvdl if (info == NULL) {
587 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
588 1.1 fvdl return (FALSE);
589 1.1 fvdl }
590 1.1 fvdl switch (request) {
591 1.1 fvdl case CLSET_TIMEOUT:
592 1.3 christos if (time_not_ok((struct timeval *)(void *)info)) {
593 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
594 1.1 fvdl return (FALSE);
595 1.1 fvdl }
596 1.3 christos cu->cu_total = *(struct timeval *)(void *)info;
597 1.1 fvdl break;
598 1.1 fvdl case CLGET_TIMEOUT:
599 1.3 christos *(struct timeval *)(void *)info = cu->cu_total;
600 1.1 fvdl break;
601 1.1 fvdl case CLGET_SERVER_ADDR: /* Give him the fd address */
602 1.1 fvdl /* Now obsolete. Only for backward compatibility */
603 1.3 christos (void) memcpy(info, &cu->cu_raddr, (size_t)cu->cu_rlen);
604 1.1 fvdl break;
605 1.1 fvdl case CLSET_RETRY_TIMEOUT:
606 1.3 christos if (time_not_ok((struct timeval *)(void *)info)) {
607 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
608 1.1 fvdl return (FALSE);
609 1.1 fvdl }
610 1.3 christos cu->cu_wait = *(struct timeval *)(void *)info;
611 1.1 fvdl break;
612 1.1 fvdl case CLGET_RETRY_TIMEOUT:
613 1.3 christos *(struct timeval *)(void *)info = cu->cu_wait;
614 1.1 fvdl break;
615 1.1 fvdl case CLGET_FD:
616 1.3 christos *(int *)(void *)info = cu->cu_fd;
617 1.1 fvdl break;
618 1.1 fvdl case CLGET_SVC_ADDR:
619 1.3 christos addr = (struct netbuf *)(void *)info;
620 1.1 fvdl addr->buf = &cu->cu_raddr;
621 1.1 fvdl addr->len = cu->cu_rlen;
622 1.1 fvdl addr->maxlen = sizeof cu->cu_raddr;
623 1.1 fvdl break;
624 1.1 fvdl case CLSET_SVC_ADDR: /* set to new address */
625 1.3 christos addr = (struct netbuf *)(void *)info;
626 1.10 yamt if (addr->len < sizeof cu->cu_raddr) {
627 1.10 yamt release_fd_lock(cu->cu_fd, mask);
628 1.1 fvdl return (FALSE);
629 1.10 yamt }
630 1.14 christos (void) memcpy(&cu->cu_raddr, addr->buf, (size_t)addr->len);
631 1.1 fvdl cu->cu_rlen = addr->len;
632 1.1 fvdl break;
633 1.1 fvdl case CLGET_XID:
634 1.1 fvdl /*
635 1.1 fvdl * use the knowledge that xid is the
636 1.1 fvdl * first element in the call structure *.
637 1.1 fvdl * This will get the xid of the PREVIOUS call
638 1.1 fvdl */
639 1.3 christos *(u_int32_t *)(void *)info =
640 1.3 christos ntohl(*(u_int32_t *)(void *)cu->cu_outbuf);
641 1.1 fvdl break;
642 1.1 fvdl
643 1.1 fvdl case CLSET_XID:
644 1.1 fvdl /* This will set the xid of the NEXT call */
645 1.3 christos *(u_int32_t *)(void *)cu->cu_outbuf =
646 1.3 christos htonl(*(u_int32_t *)(void *)info - 1);
647 1.1 fvdl /* decrement by 1 as clnt_dg_call() increments once */
648 1.1 fvdl break;
649 1.1 fvdl
650 1.1 fvdl case CLGET_VERS:
651 1.1 fvdl /*
652 1.1 fvdl * This RELIES on the information that, in the call body,
653 1.1 fvdl * the version number field is the fifth field from the
654 1.1 fvdl * begining of the RPC header. MUST be changed if the
655 1.1 fvdl * call_struct is changed
656 1.1 fvdl */
657 1.3 christos *(u_int32_t *)(void *)info =
658 1.3 christos ntohl(*(u_int32_t *)(void *)(cu->cu_outbuf +
659 1.3 christos 4 * BYTES_PER_XDR_UNIT));
660 1.1 fvdl break;
661 1.1 fvdl
662 1.1 fvdl case CLSET_VERS:
663 1.3 christos *(u_int32_t *)(void *)(cu->cu_outbuf + 4 * BYTES_PER_XDR_UNIT)
664 1.3 christos = htonl(*(u_int32_t *)(void *)info);
665 1.1 fvdl break;
666 1.1 fvdl
667 1.1 fvdl case CLGET_PROG:
668 1.1 fvdl /*
669 1.1 fvdl * This RELIES on the information that, in the call body,
670 1.1 fvdl * the program number field is the fourth field from the
671 1.1 fvdl * begining of the RPC header. MUST be changed if the
672 1.1 fvdl * call_struct is changed
673 1.1 fvdl */
674 1.3 christos *(u_int32_t *)(void *)info =
675 1.3 christos ntohl(*(u_int32_t *)(void *)(cu->cu_outbuf +
676 1.3 christos 3 * BYTES_PER_XDR_UNIT));
677 1.1 fvdl break;
678 1.1 fvdl
679 1.1 fvdl case CLSET_PROG:
680 1.3 christos *(u_int32_t *)(void *)(cu->cu_outbuf + 3 * BYTES_PER_XDR_UNIT)
681 1.3 christos = htonl(*(u_int32_t *)(void *)info);
682 1.1 fvdl break;
683 1.1 fvdl
684 1.1 fvdl default:
685 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
686 1.1 fvdl return (FALSE);
687 1.1 fvdl }
688 1.1 fvdl release_fd_lock(cu->cu_fd, mask);
689 1.1 fvdl return (TRUE);
690 1.1 fvdl }
691 1.1 fvdl
692 1.1 fvdl static void
693 1.26 matt clnt_dg_destroy(CLIENT *cl)
694 1.1 fvdl {
695 1.7 lukem struct cu_data *cu;
696 1.7 lukem int cu_fd;
697 1.9 thorpej #ifdef _REENTRANT
698 1.1 fvdl sigset_t mask;
699 1.1 fvdl #endif
700 1.1 fvdl sigset_t newmask;
701 1.1 fvdl
702 1.7 lukem _DIAGASSERT(cl != NULL);
703 1.7 lukem
704 1.7 lukem cu = (struct cu_data *)cl->cl_private;
705 1.7 lukem cu_fd = cu->cu_fd;
706 1.7 lukem
707 1.1 fvdl sigfillset(&newmask);
708 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
709 1.1 fvdl mutex_lock(&clnt_fd_lock);
710 1.1 fvdl while (dg_fd_locks[cu_fd])
711 1.1 fvdl cond_wait(&dg_cv[cu_fd], &clnt_fd_lock);
712 1.1 fvdl if (cu->cu_closeit)
713 1.1 fvdl (void) close(cu_fd);
714 1.1 fvdl XDR_DESTROY(&(cu->cu_outxdrs));
715 1.3 christos mem_free(cu, (sizeof (*cu) + cu->cu_sendsz + cu->cu_recvsz));
716 1.1 fvdl if (cl->cl_netid && cl->cl_netid[0])
717 1.1 fvdl mem_free(cl->cl_netid, strlen(cl->cl_netid) +1);
718 1.1 fvdl if (cl->cl_tp && cl->cl_tp[0])
719 1.1 fvdl mem_free(cl->cl_tp, strlen(cl->cl_tp) +1);
720 1.3 christos mem_free(cl, sizeof (CLIENT));
721 1.1 fvdl mutex_unlock(&clnt_fd_lock);
722 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &mask, NULL);
723 1.1 fvdl cond_signal(&dg_cv[cu_fd]);
724 1.1 fvdl }
725 1.1 fvdl
726 1.1 fvdl static struct clnt_ops *
727 1.26 matt clnt_dg_ops(void)
728 1.1 fvdl {
729 1.1 fvdl static struct clnt_ops ops;
730 1.9 thorpej #ifdef _REENTRANT
731 1.1 fvdl extern mutex_t ops_lock;
732 1.1 fvdl sigset_t mask;
733 1.1 fvdl #endif
734 1.1 fvdl sigset_t newmask;
735 1.1 fvdl
736 1.1 fvdl /* VARIABLES PROTECTED BY ops_lock: ops */
737 1.1 fvdl
738 1.1 fvdl sigfillset(&newmask);
739 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
740 1.1 fvdl mutex_lock(&ops_lock);
741 1.1 fvdl if (ops.cl_call == NULL) {
742 1.1 fvdl ops.cl_call = clnt_dg_call;
743 1.1 fvdl ops.cl_abort = clnt_dg_abort;
744 1.1 fvdl ops.cl_geterr = clnt_dg_geterr;
745 1.1 fvdl ops.cl_freeres = clnt_dg_freeres;
746 1.1 fvdl ops.cl_destroy = clnt_dg_destroy;
747 1.1 fvdl ops.cl_control = clnt_dg_control;
748 1.1 fvdl }
749 1.1 fvdl mutex_unlock(&ops_lock);
750 1.1 fvdl thr_sigsetmask(SIG_SETMASK, &mask, NULL);
751 1.1 fvdl return (&ops);
752 1.1 fvdl }
753 1.1 fvdl
754 1.1 fvdl /*
755 1.1 fvdl * Make sure that the time is not garbage. -1 value is allowed.
756 1.1 fvdl */
757 1.1 fvdl static bool_t
758 1.26 matt time_not_ok(struct timeval *t)
759 1.1 fvdl {
760 1.7 lukem
761 1.7 lukem _DIAGASSERT(t != NULL);
762 1.7 lukem
763 1.1 fvdl return (t->tv_sec < -1 || t->tv_sec > 100000000 ||
764 1.1 fvdl t->tv_usec < -1 || t->tv_usec > 1000000);
765 1.1 fvdl }
766