krpc_subr.c revision 1.7 1 1.7 gwr /* $NetBSD: krpc_subr.c,v 1.7 1994/09/26 16:42:31 gwr Exp $ */
2 1.3 cgd
3 1.1 glass /*
4 1.1 glass * Copyright (c) 1994 Gordon Ross, Adam Glass
5 1.1 glass * Copyright (c) 1992 Regents of the University of California.
6 1.1 glass * All rights reserved.
7 1.1 glass *
8 1.1 glass * This software was developed by the Computer Systems Engineering group
9 1.1 glass * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
10 1.1 glass * contributed to Berkeley.
11 1.1 glass *
12 1.1 glass * Redistribution and use in source and binary forms, with or without
13 1.1 glass * modification, are permitted provided that the following conditions
14 1.1 glass * are met:
15 1.1 glass * 1. Redistributions of source code must retain the above copyright
16 1.1 glass * notice, this list of conditions and the following disclaimer.
17 1.1 glass * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 glass * notice, this list of conditions and the following disclaimer in the
19 1.1 glass * documentation and/or other materials provided with the distribution.
20 1.1 glass * 3. All advertising materials mentioning features or use of this software
21 1.1 glass * must display the following acknowledgement:
22 1.1 glass * This product includes software developed by the University of
23 1.1 glass * California, Lawrence Berkeley Laboratory and its contributors.
24 1.1 glass * 4. Neither the name of the University nor the names of its contributors
25 1.1 glass * may be used to endorse or promote products derived from this software
26 1.1 glass * without specific prior written permission.
27 1.1 glass *
28 1.1 glass * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
29 1.1 glass * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30 1.1 glass * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31 1.1 glass * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
32 1.1 glass * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33 1.1 glass * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34 1.1 glass * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
35 1.1 glass * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36 1.1 glass * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
37 1.1 glass * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
38 1.1 glass * SUCH DAMAGE.
39 1.1 glass *
40 1.1 glass * partially based on:
41 1.1 glass * libnetboot/rpc.c
42 1.1 glass * @(#) Header: rpc.c,v 1.12 93/09/28 08:31:56 leres Exp (LBL)
43 1.1 glass */
44 1.1 glass
45 1.1 glass #include <sys/param.h>
46 1.1 glass #include <sys/conf.h>
47 1.1 glass #include <sys/ioctl.h>
48 1.1 glass #include <sys/proc.h>
49 1.1 glass #include <sys/mount.h>
50 1.1 glass #include <sys/mbuf.h>
51 1.1 glass #include <sys/socket.h>
52 1.1 glass #include <sys/systm.h>
53 1.1 glass #include <sys/reboot.h>
54 1.1 glass
55 1.1 glass #include <net/if.h>
56 1.1 glass #include <netinet/in.h>
57 1.1 glass
58 1.1 glass #include <nfs/rpcv2.h>
59 1.7 gwr #include <nfs/krpc.h>
60 1.1 glass
61 1.1 glass /*
62 1.1 glass * Kernel support for Sun RPC
63 1.1 glass *
64 1.1 glass * Used currently for bootstrapping in nfs diskless configurations.
65 1.1 glass *
66 1.1 glass * Note: will not work on variable-sized rpc args/results.
67 1.1 glass * implicit size-limit of an mbuf.
68 1.1 glass */
69 1.1 glass
70 1.1 glass /*
71 1.1 glass * Generic RPC headers
72 1.1 glass */
73 1.1 glass
74 1.1 glass struct auth_info {
75 1.1 glass int rp_atype; /* auth type */
76 1.1 glass u_long rp_alen; /* auth length */
77 1.1 glass };
78 1.1 glass
79 1.1 glass struct rpc_call {
80 1.1 glass u_long rp_xid; /* request transaction id */
81 1.1 glass int rp_direction; /* call direction (0) */
82 1.1 glass u_long rp_rpcvers; /* rpc version (2) */
83 1.1 glass u_long rp_prog; /* program */
84 1.1 glass u_long rp_vers; /* version */
85 1.1 glass u_long rp_proc; /* procedure */
86 1.1 glass struct auth_info rp_auth;
87 1.1 glass struct auth_info rp_verf;
88 1.1 glass };
89 1.1 glass
90 1.1 glass struct rpc_reply {
91 1.1 glass u_long rp_xid; /* request transaction id */
92 1.1 glass int rp_direction; /* call direction (1) */
93 1.1 glass int rp_astatus; /* accept status (0: accepted) */
94 1.1 glass union {
95 1.1 glass u_long rpu_errno;
96 1.1 glass struct {
97 1.1 glass struct auth_info rp_auth;
98 1.1 glass u_long rp_rstatus; /* reply status */
99 1.1 glass } rpu_ok;
100 1.1 glass } rp_u;
101 1.1 glass };
102 1.1 glass
103 1.1 glass #define MIN_REPLY_HDR 16 /* xid, dir, astat, errno */
104 1.1 glass
105 1.1 glass /*
106 1.2 gwr * What is the longest we will wait before re-sending a request?
107 1.2 gwr * Note this is also the frequency of "RPC timeout" messages.
108 1.2 gwr * The re-send loop count sup linearly to this maximum, so the
109 1.2 gwr * first complaint will happen after (1+2+3+4+5)=15 seconds.
110 1.2 gwr */
111 1.2 gwr #define MAX_RESEND_DELAY 5 /* seconds */
112 1.2 gwr
113 1.2 gwr /*
114 1.1 glass * Call portmap to lookup a port number for a particular rpc program
115 1.2 gwr * Returns non-zero error on failure.
116 1.1 glass */
117 1.1 glass int
118 1.7 gwr krpc_portmap(sin, prog, vers, portp)
119 1.7 gwr struct sockaddr_in *sin; /* server address */
120 1.1 glass u_long prog, vers; /* host order */
121 1.1 glass u_short *portp; /* network order */
122 1.1 glass {
123 1.1 glass struct sdata {
124 1.1 glass u_long prog; /* call program */
125 1.1 glass u_long vers; /* call version */
126 1.1 glass u_long proto; /* call protocol */
127 1.1 glass u_long port; /* call port (unused) */
128 1.1 glass } *sdata;
129 1.1 glass struct rdata {
130 1.1 glass u_short pad;
131 1.1 glass u_short port;
132 1.1 glass } *rdata;
133 1.1 glass struct mbuf *m;
134 1.1 glass int error;
135 1.1 glass
136 1.1 glass /* The portmapper port is fixed. */
137 1.1 glass if (prog == PMAPPROG) {
138 1.1 glass *portp = htons(PMAPPORT);
139 1.1 glass return 0;
140 1.1 glass }
141 1.1 glass
142 1.2 gwr m = m_gethdr(M_WAIT, MT_DATA);
143 1.1 glass if (m == NULL)
144 1.1 glass return ENOBUFS;
145 1.1 glass m->m_len = sizeof(*sdata);
146 1.2 gwr m->m_pkthdr.len = m->m_len;
147 1.1 glass sdata = mtod(m, struct sdata *);
148 1.1 glass
149 1.1 glass /* Do the RPC to get it. */
150 1.1 glass sdata->prog = htonl(prog);
151 1.1 glass sdata->vers = htonl(vers);
152 1.1 glass sdata->proto = htonl(IPPROTO_UDP);
153 1.1 glass sdata->port = 0;
154 1.1 glass
155 1.7 gwr sin->sin_port = htons(PMAPPORT);
156 1.7 gwr error = krpc_call(sin, PMAPPROG, PMAPVERS,
157 1.7 gwr PMAPPROC_GETPORT, &m, NULL);
158 1.1 glass if (error)
159 1.1 glass return error;
160 1.1 glass
161 1.1 glass rdata = mtod(m, struct rdata *);
162 1.1 glass *portp = rdata->port;
163 1.1 glass
164 1.1 glass m_freem(m);
165 1.1 glass return 0;
166 1.1 glass }
167 1.1 glass
168 1.1 glass /*
169 1.1 glass * Do a remote procedure call (RPC) and wait for its reply.
170 1.7 gwr * If from_p is non-null, then we are doing broadcast, and
171 1.7 gwr * the address from whence the response came is saved there.
172 1.1 glass */
173 1.1 glass int
174 1.7 gwr krpc_call(sa, prog, vers, func, data, from_p)
175 1.7 gwr struct sockaddr_in *sa;
176 1.1 glass u_long prog, vers, func;
177 1.1 glass struct mbuf **data; /* input/output */
178 1.7 gwr struct mbuf **from_p; /* output */
179 1.1 glass {
180 1.1 glass struct socket *so;
181 1.1 glass struct sockaddr_in *sin;
182 1.7 gwr struct mbuf *m, *nam, *mhead, *from;
183 1.1 glass struct rpc_call *call;
184 1.1 glass struct rpc_reply *reply;
185 1.1 glass struct uio auio;
186 1.1 glass int error, rcvflg, timo, secs, len;
187 1.1 glass static u_long xid = ~0xFF;
188 1.5 gwr u_short tport;
189 1.1 glass
190 1.1 glass /*
191 1.1 glass * Validate address family.
192 1.1 glass * Sorry, this is INET specific...
193 1.1 glass */
194 1.7 gwr if (sa->sin_family != AF_INET)
195 1.1 glass return (EAFNOSUPPORT);
196 1.1 glass
197 1.1 glass /* Free at end if not null. */
198 1.1 glass nam = mhead = NULL;
199 1.7 gwr from = NULL;
200 1.1 glass
201 1.1 glass /*
202 1.1 glass * Create socket and set its recieve timeout.
203 1.1 glass */
204 1.1 glass if ((error = socreate(AF_INET, &so, SOCK_DGRAM, 0)))
205 1.1 glass goto out;
206 1.1 glass
207 1.1 glass m = m_get(M_WAIT, MT_SOOPTS);
208 1.1 glass if (m == NULL) {
209 1.1 glass error = ENOBUFS;
210 1.1 glass goto out;
211 1.7 gwr } else {
212 1.7 gwr struct timeval *tv;
213 1.7 gwr tv = mtod(m, struct timeval *);
214 1.7 gwr m->m_len = sizeof(*tv);
215 1.7 gwr tv->tv_sec = 1;
216 1.7 gwr tv->tv_usec = 0;
217 1.7 gwr if ((error = sosetopt(so, SOL_SOCKET, SO_RCVTIMEO, m)))
218 1.7 gwr goto out;
219 1.7 gwr }
220 1.7 gwr
221 1.7 gwr /*
222 1.7 gwr * Enable broadcast if necessary.
223 1.7 gwr */
224 1.7 gwr if (from_p) {
225 1.7 gwr int *on;
226 1.7 gwr m = m_get(M_WAIT, MT_SOOPTS);
227 1.7 gwr if (m == NULL) {
228 1.7 gwr error = ENOBUFS;
229 1.7 gwr goto out;
230 1.7 gwr }
231 1.7 gwr on = mtod(m, int *);
232 1.7 gwr m->m_len = sizeof(*on);
233 1.7 gwr *on = 1;
234 1.7 gwr if ((error = sosetopt(so, SOL_SOCKET, SO_BROADCAST, m)))
235 1.7 gwr goto out;
236 1.1 glass }
237 1.1 glass
238 1.1 glass /*
239 1.5 gwr * Bind the local endpoint to a reserved port,
240 1.5 gwr * because some NFS servers refuse requests from
241 1.5 gwr * non-reserved (non-privileged) ports.
242 1.5 gwr */
243 1.5 gwr m = m_getclr(M_WAIT, MT_SONAME);
244 1.5 gwr sin = mtod(m, struct sockaddr_in *);
245 1.5 gwr sin->sin_len = m->m_len = sizeof(*sin);
246 1.5 gwr sin->sin_family = AF_INET;
247 1.5 gwr sin->sin_addr.s_addr = INADDR_ANY;
248 1.5 gwr tport = IPPORT_RESERVED;
249 1.5 gwr do {
250 1.5 gwr tport--;
251 1.5 gwr sin->sin_port = htons(tport);
252 1.5 gwr error = sobind(so, m);
253 1.5 gwr } while (error == EADDRINUSE &&
254 1.5 gwr tport > IPPORT_RESERVED / 2);
255 1.5 gwr m_freem(m);
256 1.5 gwr if (error) {
257 1.5 gwr printf("bind failed\n");
258 1.5 gwr goto out;
259 1.5 gwr }
260 1.5 gwr
261 1.5 gwr /*
262 1.1 glass * Setup socket address for the server.
263 1.1 glass */
264 1.1 glass nam = m_get(M_WAIT, MT_SONAME);
265 1.1 glass if (nam == NULL) {
266 1.1 glass error = ENOBUFS;
267 1.1 glass goto out;
268 1.1 glass }
269 1.1 glass sin = mtod(nam, struct sockaddr_in *);
270 1.7 gwr bcopy((caddr_t)sa, (caddr_t)sin, (nam->m_len = sa->sin_len));
271 1.1 glass
272 1.1 glass /*
273 1.2 gwr * Prepend RPC message header.
274 1.1 glass */
275 1.2 gwr m = *data;
276 1.2 gwr *data = NULL;
277 1.2 gwr #ifdef DIAGNOSTIC
278 1.2 gwr if ((m->m_flags & M_PKTHDR) == 0)
279 1.2 gwr panic("krpc_call: send data w/o pkthdr");
280 1.2 gwr if (m->m_pkthdr.len < m->m_len)
281 1.2 gwr panic("krpc_call: pkthdr.len not set");
282 1.2 gwr #endif
283 1.2 gwr mhead = m_prepend(m, sizeof(*call), M_WAIT);
284 1.1 glass if (mhead == NULL) {
285 1.1 glass error = ENOBUFS;
286 1.1 glass goto out;
287 1.1 glass }
288 1.2 gwr mhead->m_pkthdr.len += sizeof(*call);
289 1.2 gwr mhead->m_pkthdr.rcvif = NULL;
290 1.2 gwr
291 1.2 gwr /*
292 1.2 gwr * Fill in the RPC header
293 1.2 gwr */
294 1.1 glass call = mtod(mhead, struct rpc_call *);
295 1.1 glass bzero((caddr_t)call, sizeof(*call));
296 1.7 gwr xid++;
297 1.7 gwr call->rp_xid = htonl(xid);
298 1.1 glass /* call->rp_direction = 0; */
299 1.1 glass call->rp_rpcvers = htonl(2);
300 1.1 glass call->rp_prog = htonl(prog);
301 1.1 glass call->rp_vers = htonl(vers);
302 1.1 glass call->rp_proc = htonl(func);
303 1.1 glass /* call->rp_auth = 0; */
304 1.1 glass /* call->rp_verf = 0; */
305 1.1 glass
306 1.1 glass /*
307 1.2 gwr * Send it, repeatedly, until a reply is received,
308 1.2 gwr * but delay each re-send by an increasing amount.
309 1.2 gwr * If the delay hits the maximum, start complaining.
310 1.1 glass */
311 1.1 glass timo = 0;
312 1.1 glass for (;;) {
313 1.1 glass /* Send RPC request (or re-send). */
314 1.1 glass m = m_copym(mhead, 0, M_COPYALL, M_WAIT);
315 1.2 gwr if (m == NULL) {
316 1.2 gwr error = ENOBUFS;
317 1.2 gwr goto out;
318 1.2 gwr }
319 1.1 glass error = sosend(so, nam, NULL, m, NULL, 0);
320 1.2 gwr if (error) {
321 1.2 gwr printf("krpc_call: sosend: %d\n", error);
322 1.1 glass goto out;
323 1.2 gwr }
324 1.1 glass m = NULL;
325 1.1 glass
326 1.2 gwr /* Determine new timeout. */
327 1.2 gwr if (timo < MAX_RESEND_DELAY)
328 1.1 glass timo++;
329 1.1 glass else
330 1.2 gwr printf("RPC timeout for server 0x%x\n",
331 1.1 glass ntohl(sin->sin_addr.s_addr));
332 1.1 glass
333 1.1 glass /*
334 1.1 glass * Wait for up to timo seconds for a reply.
335 1.1 glass * The socket receive timeout was set to 1 second.
336 1.1 glass */
337 1.1 glass secs = timo;
338 1.1 glass while (secs > 0) {
339 1.7 gwr if (from) {
340 1.7 gwr m_freem(from);
341 1.7 gwr from = NULL;
342 1.7 gwr }
343 1.7 gwr if (m) {
344 1.7 gwr m_freem(m);
345 1.7 gwr m = NULL;
346 1.7 gwr }
347 1.1 glass auio.uio_resid = len = 1<<16;
348 1.1 glass rcvflg = 0;
349 1.7 gwr error = soreceive(so, &from, &auio, &m, NULL, &rcvflg);
350 1.1 glass if (error == EWOULDBLOCK) {
351 1.1 glass secs--;
352 1.1 glass continue;
353 1.1 glass }
354 1.1 glass if (error)
355 1.1 glass goto out;
356 1.1 glass len -= auio.uio_resid;
357 1.1 glass
358 1.7 gwr /* Does the reply contain at least a header? */
359 1.7 gwr if (len < MIN_REPLY_HDR)
360 1.7 gwr continue;
361 1.7 gwr if (m->m_len < MIN_REPLY_HDR)
362 1.7 gwr continue;
363 1.7 gwr reply = mtod(m, struct rpc_reply *);
364 1.7 gwr
365 1.7 gwr /* Is it the right reply? */
366 1.7 gwr if (reply->rp_direction != htonl(RPC_REPLY))
367 1.7 gwr continue;
368 1.7 gwr
369 1.7 gwr if (reply->rp_xid != htonl(xid))
370 1.7 gwr continue;
371 1.7 gwr
372 1.7 gwr /* Was RPC accepted? (authorization OK) */
373 1.7 gwr if (reply->rp_astatus != 0) {
374 1.7 gwr error = ntohl(reply->rp_u.rpu_errno);
375 1.7 gwr printf("rpc denied, error=%d\n", error);
376 1.1 glass continue;
377 1.1 glass }
378 1.7 gwr
379 1.7 gwr /* Did the call succeed? */
380 1.7 gwr if ((error = ntohl(reply->rp_u.rpu_ok.rp_rstatus)) != 0) {
381 1.7 gwr printf("rpc status=%d\n", error);
382 1.7 gwr continue;
383 1.1 glass }
384 1.7 gwr
385 1.7 gwr goto gotreply; /* break two levels */
386 1.7 gwr
387 1.1 glass } /* while secs */
388 1.1 glass } /* forever send/receive */
389 1.4 pk
390 1.4 pk error = ETIMEDOUT;
391 1.4 pk goto out;
392 1.4 pk
393 1.1 glass gotreply:
394 1.1 glass
395 1.1 glass /*
396 1.5 gwr * Pull as much as we can into first mbuf, to make
397 1.5 gwr * result buffer contiguous. Note that if the entire
398 1.6 cgd * result won't fit into one mbuf, you're out of luck.
399 1.5 gwr * XXX - Should not rely on making the entire reply
400 1.5 gwr * contiguous (fix callers instead). -gwr
401 1.2 gwr */
402 1.2 gwr #ifdef DIAGNOSTIC
403 1.2 gwr if ((m->m_flags & M_PKTHDR) == 0)
404 1.2 gwr panic("krpc_call: received pkt w/o header?");
405 1.2 gwr #endif
406 1.2 gwr len = m->m_pkthdr.len;
407 1.2 gwr if (m->m_len < len) {
408 1.2 gwr m = m_pullup(m, len);
409 1.2 gwr if (m == NULL) {
410 1.2 gwr error = ENOBUFS;
411 1.2 gwr goto out;
412 1.2 gwr }
413 1.7 gwr reply = mtod(m, struct rpc_reply *);
414 1.2 gwr }
415 1.2 gwr
416 1.2 gwr /*
417 1.2 gwr * Strip RPC header
418 1.2 gwr */
419 1.1 glass len = sizeof(*reply);
420 1.1 glass if (reply->rp_u.rpu_ok.rp_auth.rp_atype != 0) {
421 1.1 glass len += ntohl(reply->rp_u.rpu_ok.rp_auth.rp_alen);
422 1.1 glass len = (len + 3) & ~3; /* XXX? */
423 1.1 glass }
424 1.1 glass m_adj(m, len);
425 1.2 gwr
426 1.1 glass /* result */
427 1.1 glass *data = m;
428 1.7 gwr if (from_p) {
429 1.7 gwr *from_p = from;
430 1.7 gwr from = NULL;
431 1.7 gwr }
432 1.1 glass
433 1.1 glass out:
434 1.1 glass if (nam) m_freem(nam);
435 1.1 glass if (mhead) m_freem(mhead);
436 1.7 gwr if (from) m_freem(from);
437 1.1 glass soclose(so);
438 1.1 glass return error;
439 1.1 glass }
440