nfs_socket.c revision 1.31 1 1.31 christos /* $NetBSD: nfs_socket.c,v 1.31 1996/10/13 01:39:07 christos Exp $ */
2 1.15 cgd
3 1.1 cgd /*
4 1.24 fvdl * Copyright (c) 1989, 1991, 1993, 1995
5 1.14 mycroft * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This code is derived from software contributed to Berkeley by
8 1.1 cgd * Rick Macklem at The University of Guelph.
9 1.1 cgd *
10 1.1 cgd * Redistribution and use in source and binary forms, with or without
11 1.1 cgd * modification, are permitted provided that the following conditions
12 1.1 cgd * are met:
13 1.1 cgd * 1. Redistributions of source code must retain the above copyright
14 1.1 cgd * notice, this list of conditions and the following disclaimer.
15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer in the
17 1.1 cgd * documentation and/or other materials provided with the distribution.
18 1.1 cgd * 3. All advertising materials mentioning features or use of this software
19 1.1 cgd * must display the following acknowledgement:
20 1.1 cgd * This product includes software developed by the University of
21 1.1 cgd * California, Berkeley and its contributors.
22 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
23 1.1 cgd * may be used to endorse or promote products derived from this software
24 1.1 cgd * without specific prior written permission.
25 1.1 cgd *
26 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
27 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
28 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
29 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
30 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
31 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
32 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
33 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
34 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36 1.1 cgd * SUCH DAMAGE.
37 1.1 cgd *
38 1.24 fvdl * @(#)nfs_socket.c 8.5 (Berkeley) 3/30/95
39 1.1 cgd */
40 1.1 cgd
41 1.1 cgd /*
42 1.1 cgd * Socket operations for use by nfs
43 1.1 cgd */
44 1.1 cgd
45 1.9 mycroft #include <sys/param.h>
46 1.9 mycroft #include <sys/systm.h>
47 1.9 mycroft #include <sys/proc.h>
48 1.9 mycroft #include <sys/mount.h>
49 1.9 mycroft #include <sys/kernel.h>
50 1.9 mycroft #include <sys/mbuf.h>
51 1.9 mycroft #include <sys/vnode.h>
52 1.9 mycroft #include <sys/domain.h>
53 1.9 mycroft #include <sys/protosw.h>
54 1.9 mycroft #include <sys/socket.h>
55 1.9 mycroft #include <sys/socketvar.h>
56 1.9 mycroft #include <sys/syslog.h>
57 1.9 mycroft #include <sys/tprintf.h>
58 1.23 christos #include <sys/namei.h>
59 1.1 cgd
60 1.9 mycroft #include <netinet/in.h>
61 1.9 mycroft #include <netinet/tcp.h>
62 1.24 fvdl
63 1.9 mycroft #include <nfs/rpcv2.h>
64 1.24 fvdl #include <nfs/nfsproto.h>
65 1.9 mycroft #include <nfs/nfs.h>
66 1.9 mycroft #include <nfs/xdr_subs.h>
67 1.9 mycroft #include <nfs/nfsm_subs.h>
68 1.9 mycroft #include <nfs/nfsmount.h>
69 1.14 mycroft #include <nfs/nfsnode.h>
70 1.14 mycroft #include <nfs/nfsrtt.h>
71 1.14 mycroft #include <nfs/nqnfs.h>
72 1.23 christos #include <nfs/nfs_var.h>
73 1.1 cgd
74 1.1 cgd #define TRUE 1
75 1.1 cgd #define FALSE 0
76 1.1 cgd
77 1.1 cgd /*
78 1.14 mycroft * Estimate rto for an nfs rpc sent via. an unreliable datagram.
79 1.14 mycroft * Use the mean and mean deviation of rtt for the appropriate type of rpc
80 1.14 mycroft * for the frequent rpcs and a default for the others.
81 1.14 mycroft * The justification for doing "other" this way is that these rpcs
82 1.14 mycroft * happen so infrequently that timer est. would probably be stale.
83 1.14 mycroft * Also, since many of these rpcs are
84 1.14 mycroft * non-idempotent, a conservative timeout is desired.
85 1.14 mycroft * getattr, lookup - A+2D
86 1.14 mycroft * read, write - A+4D
87 1.14 mycroft * other - nm_timeo
88 1.14 mycroft */
89 1.14 mycroft #define NFS_RTO(n, t) \
90 1.14 mycroft ((t) == 0 ? (n)->nm_timeo : \
91 1.14 mycroft ((t) < 3 ? \
92 1.14 mycroft (((((n)->nm_srtt[t-1] + 3) >> 2) + (n)->nm_sdrtt[t-1] + 1) >> 1) : \
93 1.14 mycroft ((((n)->nm_srtt[t-1] + 7) >> 3) + (n)->nm_sdrtt[t-1] + 1)))
94 1.14 mycroft #define NFS_SRTT(r) (r)->r_nmp->nm_srtt[proct[(r)->r_procnum] - 1]
95 1.14 mycroft #define NFS_SDRTT(r) (r)->r_nmp->nm_sdrtt[proct[(r)->r_procnum] - 1]
96 1.14 mycroft /*
97 1.1 cgd * External data, mostly RPC constants in XDR form
98 1.1 cgd */
99 1.22 cgd extern u_int32_t rpc_reply, rpc_msgdenied, rpc_mismatch, rpc_vers,
100 1.24 fvdl rpc_auth_unix, rpc_msgaccepted, rpc_call, rpc_autherr,
101 1.14 mycroft rpc_auth_kerb;
102 1.24 fvdl extern u_int32_t nfs_prog, nqnfs_prog;
103 1.14 mycroft extern time_t nqnfsstarttime;
104 1.24 fvdl extern struct nfsstats nfsstats;
105 1.24 fvdl extern int nfsv3_procid[NFS_NPROCS];
106 1.24 fvdl extern int nfs_ticks;
107 1.14 mycroft
108 1.14 mycroft /*
109 1.14 mycroft * Defines which timer to use for the procnum.
110 1.14 mycroft * 0 - default
111 1.14 mycroft * 1 - getattr
112 1.14 mycroft * 2 - lookup
113 1.14 mycroft * 3 - read
114 1.14 mycroft * 4 - write
115 1.14 mycroft */
116 1.14 mycroft static int proct[NFS_NPROCS] = {
117 1.24 fvdl 0, 1, 0, 2, 1, 3, 3, 4, 0, 0, 0, 0, 0, 0, 0, 0, 3, 3, 0, 0, 0, 0, 0,
118 1.24 fvdl 0, 0, 0,
119 1.1 cgd };
120 1.14 mycroft
121 1.14 mycroft /*
122 1.14 mycroft * There is a congestion window for outstanding rpcs maintained per mount
123 1.14 mycroft * point. The cwnd size is adjusted in roughly the way that:
124 1.14 mycroft * Van Jacobson, Congestion avoidance and Control, In "Proceedings of
125 1.14 mycroft * SIGCOMM '88". ACM, August 1988.
126 1.14 mycroft * describes for TCP. The cwnd size is chopped in half on a retransmit timeout
127 1.14 mycroft * and incremented by 1/cwnd when each rpc reply is received and a full cwnd
128 1.14 mycroft * of rpcs is in progress.
129 1.14 mycroft * (The sent count and cwnd are scaled for integer arith.)
130 1.14 mycroft * Variants of "slow start" were tried and were found to be too much of a
131 1.14 mycroft * performance hit (ave. rtt 3 times larger),
132 1.14 mycroft * I suspect due to the large rtt that nfs rpcs have.
133 1.14 mycroft */
134 1.14 mycroft #define NFS_CWNDSCALE 256
135 1.14 mycroft #define NFS_MAXCWND (NFS_CWNDSCALE * 32)
136 1.14 mycroft static int nfs_backoff[8] = { 2, 4, 8, 16, 32, 64, 128, 256, };
137 1.14 mycroft int nfsrtton = 0;
138 1.14 mycroft struct nfsrtt nfsrtt;
139 1.1 cgd
140 1.1 cgd /*
141 1.1 cgd * Initialize sockets and congestion for a new NFS connection.
142 1.1 cgd * We do not free the sockaddr if error.
143 1.1 cgd */
144 1.23 christos int
145 1.14 mycroft nfs_connect(nmp, rep)
146 1.1 cgd register struct nfsmount *nmp;
147 1.14 mycroft struct nfsreq *rep;
148 1.1 cgd {
149 1.1 cgd register struct socket *so;
150 1.14 mycroft int s, error, rcvreserve, sndreserve;
151 1.11 cgd struct sockaddr *saddr;
152 1.14 mycroft struct sockaddr_in *sin;
153 1.1 cgd struct mbuf *m;
154 1.22 cgd u_int16_t tport;
155 1.1 cgd
156 1.1 cgd nmp->nm_so = (struct socket *)0;
157 1.11 cgd saddr = mtod(nmp->nm_nam, struct sockaddr *);
158 1.24 fvdl error = socreate(saddr->sa_family, &nmp->nm_so, nmp->nm_sotype,
159 1.24 fvdl nmp->nm_soproto);
160 1.23 christos if (error)
161 1.1 cgd goto bad;
162 1.1 cgd so = nmp->nm_so;
163 1.1 cgd nmp->nm_soflags = so->so_proto->pr_flags;
164 1.1 cgd
165 1.2 cgd /*
166 1.2 cgd * Some servers require that the client port be a reserved port number.
167 1.2 cgd */
168 1.14 mycroft if (saddr->sa_family == AF_INET && (nmp->nm_flag & NFSMNT_RESVPORT)) {
169 1.2 cgd MGET(m, M_WAIT, MT_SONAME);
170 1.2 cgd sin = mtod(m, struct sockaddr_in *);
171 1.2 cgd sin->sin_len = m->m_len = sizeof (struct sockaddr_in);
172 1.2 cgd sin->sin_family = AF_INET;
173 1.2 cgd sin->sin_addr.s_addr = INADDR_ANY;
174 1.2 cgd tport = IPPORT_RESERVED - 1;
175 1.2 cgd sin->sin_port = htons(tport);
176 1.14 mycroft while ((error = sobind(so, m)) == EADDRINUSE &&
177 1.2 cgd --tport > IPPORT_RESERVED / 2)
178 1.2 cgd sin->sin_port = htons(tport);
179 1.2 cgd m_freem(m);
180 1.14 mycroft if (error)
181 1.14 mycroft goto bad;
182 1.2 cgd }
183 1.2 cgd
184 1.1 cgd /*
185 1.1 cgd * Protocols that do not require connections may be optionally left
186 1.1 cgd * unconnected for servers that reply from a port other than NFS_PORT.
187 1.1 cgd */
188 1.1 cgd if (nmp->nm_flag & NFSMNT_NOCONN) {
189 1.1 cgd if (nmp->nm_soflags & PR_CONNREQUIRED) {
190 1.1 cgd error = ENOTCONN;
191 1.1 cgd goto bad;
192 1.1 cgd }
193 1.1 cgd } else {
194 1.24 fvdl error = soconnect(so, nmp->nm_nam);
195 1.24 fvdl if (error)
196 1.1 cgd goto bad;
197 1.1 cgd
198 1.1 cgd /*
199 1.1 cgd * Wait for the connection to complete. Cribbed from the
200 1.14 mycroft * connect system call but with the wait timing out so
201 1.14 mycroft * that interruptible mounts don't hang here for a long time.
202 1.1 cgd */
203 1.21 mycroft s = splsoftnet();
204 1.14 mycroft while ((so->so_state & SS_ISCONNECTING) && so->so_error == 0) {
205 1.14 mycroft (void) tsleep((caddr_t)&so->so_timeo, PSOCK,
206 1.14 mycroft "nfscon", 2 * hz);
207 1.14 mycroft if ((so->so_state & SS_ISCONNECTING) &&
208 1.14 mycroft so->so_error == 0 && rep &&
209 1.24 fvdl (error = nfs_sigintr(nmp, rep, rep->r_procp)) != 0){
210 1.14 mycroft so->so_state &= ~SS_ISCONNECTING;
211 1.14 mycroft splx(s);
212 1.14 mycroft goto bad;
213 1.14 mycroft }
214 1.14 mycroft }
215 1.1 cgd if (so->so_error) {
216 1.1 cgd error = so->so_error;
217 1.14 mycroft so->so_error = 0;
218 1.14 mycroft splx(s);
219 1.1 cgd goto bad;
220 1.1 cgd }
221 1.14 mycroft splx(s);
222 1.14 mycroft }
223 1.14 mycroft if (nmp->nm_flag & (NFSMNT_SOFT | NFSMNT_INT)) {
224 1.14 mycroft so->so_rcv.sb_timeo = (5 * hz);
225 1.14 mycroft so->so_snd.sb_timeo = (5 * hz);
226 1.14 mycroft } else {
227 1.14 mycroft so->so_rcv.sb_timeo = 0;
228 1.14 mycroft so->so_snd.sb_timeo = 0;
229 1.1 cgd }
230 1.1 cgd if (nmp->nm_sotype == SOCK_DGRAM) {
231 1.26 fvdl sndreserve = nmp->nm_wsize + NFS_MAXPKTHDR;
232 1.25 fvdl rcvreserve = max(nmp->nm_rsize, nmp->nm_readdirsize) +
233 1.25 fvdl NFS_MAXPKTHDR;
234 1.14 mycroft } else if (nmp->nm_sotype == SOCK_SEQPACKET) {
235 1.26 fvdl sndreserve = (nmp->nm_wsize + NFS_MAXPKTHDR) * 2;
236 1.26 fvdl rcvreserve = (max(nmp->nm_rsize, nmp->nm_readdirsize) +
237 1.25 fvdl NFS_MAXPKTHDR) * 2;
238 1.1 cgd } else {
239 1.14 mycroft if (nmp->nm_sotype != SOCK_STREAM)
240 1.14 mycroft panic("nfscon sotype");
241 1.1 cgd if (so->so_proto->pr_flags & PR_CONNREQUIRED) {
242 1.1 cgd MGET(m, M_WAIT, MT_SOOPTS);
243 1.22 cgd *mtod(m, int32_t *) = 1;
244 1.22 cgd m->m_len = sizeof(int32_t);
245 1.1 cgd sosetopt(so, SOL_SOCKET, SO_KEEPALIVE, m);
246 1.1 cgd }
247 1.14 mycroft if (so->so_proto->pr_protocol == IPPROTO_TCP) {
248 1.1 cgd MGET(m, M_WAIT, MT_SOOPTS);
249 1.22 cgd *mtod(m, int32_t *) = 1;
250 1.22 cgd m->m_len = sizeof(int32_t);
251 1.1 cgd sosetopt(so, IPPROTO_TCP, TCP_NODELAY, m);
252 1.1 cgd }
253 1.22 cgd sndreserve = (nmp->nm_wsize + NFS_MAXPKTHDR +
254 1.22 cgd sizeof (u_int32_t)) * 2;
255 1.22 cgd rcvreserve = (nmp->nm_rsize + NFS_MAXPKTHDR +
256 1.22 cgd sizeof (u_int32_t)) * 2;
257 1.1 cgd }
258 1.24 fvdl error = soreserve(so, sndreserve, rcvreserve);
259 1.24 fvdl if (error)
260 1.14 mycroft goto bad;
261 1.1 cgd so->so_rcv.sb_flags |= SB_NOINTR;
262 1.1 cgd so->so_snd.sb_flags |= SB_NOINTR;
263 1.1 cgd
264 1.1 cgd /* Initialize other non-zero congestion variables */
265 1.14 mycroft nmp->nm_srtt[0] = nmp->nm_srtt[1] = nmp->nm_srtt[2] = nmp->nm_srtt[3] =
266 1.14 mycroft nmp->nm_srtt[4] = (NFS_TIMEO << 3);
267 1.14 mycroft nmp->nm_sdrtt[0] = nmp->nm_sdrtt[1] = nmp->nm_sdrtt[2] =
268 1.14 mycroft nmp->nm_sdrtt[3] = nmp->nm_sdrtt[4] = 0;
269 1.14 mycroft nmp->nm_cwnd = NFS_MAXCWND / 2; /* Initial send window */
270 1.1 cgd nmp->nm_sent = 0;
271 1.14 mycroft nmp->nm_timeouts = 0;
272 1.1 cgd return (0);
273 1.1 cgd
274 1.1 cgd bad:
275 1.1 cgd nfs_disconnect(nmp);
276 1.1 cgd return (error);
277 1.1 cgd }
278 1.1 cgd
279 1.1 cgd /*
280 1.1 cgd * Reconnect routine:
281 1.1 cgd * Called when a connection is broken on a reliable protocol.
282 1.1 cgd * - clean up the old socket
283 1.1 cgd * - nfs_connect() again
284 1.1 cgd * - set R_MUSTRESEND for all outstanding requests on mount point
285 1.1 cgd * If this fails the mount point is DEAD!
286 1.14 mycroft * nb: Must be called with the nfs_sndlock() set on the mount point.
287 1.1 cgd */
288 1.23 christos int
289 1.14 mycroft nfs_reconnect(rep)
290 1.1 cgd register struct nfsreq *rep;
291 1.1 cgd {
292 1.1 cgd register struct nfsreq *rp;
293 1.14 mycroft register struct nfsmount *nmp = rep->r_nmp;
294 1.1 cgd int error;
295 1.1 cgd
296 1.14 mycroft nfs_disconnect(nmp);
297 1.23 christos while ((error = nfs_connect(nmp, rep)) != 0) {
298 1.14 mycroft if (error == EINTR || error == ERESTART)
299 1.1 cgd return (EINTR);
300 1.1 cgd (void) tsleep((caddr_t)&lbolt, PSOCK, "nfscon", 0);
301 1.1 cgd }
302 1.1 cgd
303 1.1 cgd /*
304 1.1 cgd * Loop through outstanding request list and fix up all requests
305 1.1 cgd * on old socket.
306 1.1 cgd */
307 1.16 mycroft for (rp = nfs_reqq.tqh_first; rp != 0; rp = rp->r_chain.tqe_next) {
308 1.1 cgd if (rp->r_nmp == nmp)
309 1.1 cgd rp->r_flags |= R_MUSTRESEND;
310 1.1 cgd }
311 1.1 cgd return (0);
312 1.1 cgd }
313 1.1 cgd
314 1.1 cgd /*
315 1.1 cgd * NFS disconnect. Clean up and unlink.
316 1.1 cgd */
317 1.1 cgd void
318 1.1 cgd nfs_disconnect(nmp)
319 1.1 cgd register struct nfsmount *nmp;
320 1.1 cgd {
321 1.1 cgd register struct socket *so;
322 1.1 cgd
323 1.1 cgd if (nmp->nm_so) {
324 1.1 cgd so = nmp->nm_so;
325 1.1 cgd nmp->nm_so = (struct socket *)0;
326 1.1 cgd soshutdown(so, 2);
327 1.1 cgd soclose(so);
328 1.1 cgd }
329 1.1 cgd }
330 1.1 cgd
331 1.1 cgd /*
332 1.1 cgd * This is the nfs send routine. For connection based socket types, it
333 1.14 mycroft * must be called with an nfs_sndlock() on the socket.
334 1.1 cgd * "rep == NULL" indicates that it has been called from a server.
335 1.14 mycroft * For the client side:
336 1.14 mycroft * - return EINTR if the RPC is terminated, 0 otherwise
337 1.14 mycroft * - set R_MUSTRESEND if the send fails for any reason
338 1.14 mycroft * - do any cleanup required by recoverable socket errors (???)
339 1.14 mycroft * For the server side:
340 1.14 mycroft * - return EINTR or ERESTART if interrupted by a signal
341 1.14 mycroft * - return EPIPE if a connection is lost for connection based sockets (TCP...)
342 1.14 mycroft * - do any cleanup required by recoverable socket errors (???)
343 1.1 cgd */
344 1.23 christos int
345 1.1 cgd nfs_send(so, nam, top, rep)
346 1.1 cgd register struct socket *so;
347 1.1 cgd struct mbuf *nam;
348 1.1 cgd register struct mbuf *top;
349 1.1 cgd struct nfsreq *rep;
350 1.1 cgd {
351 1.1 cgd struct mbuf *sendnam;
352 1.14 mycroft int error, soflags, flags;
353 1.1 cgd
354 1.1 cgd if (rep) {
355 1.1 cgd if (rep->r_flags & R_SOFTTERM) {
356 1.1 cgd m_freem(top);
357 1.1 cgd return (EINTR);
358 1.1 cgd }
359 1.14 mycroft if ((so = rep->r_nmp->nm_so) == NULL) {
360 1.14 mycroft rep->r_flags |= R_MUSTRESEND;
361 1.14 mycroft m_freem(top);
362 1.14 mycroft return (0);
363 1.14 mycroft }
364 1.1 cgd rep->r_flags &= ~R_MUSTRESEND;
365 1.1 cgd soflags = rep->r_nmp->nm_soflags;
366 1.1 cgd } else
367 1.1 cgd soflags = so->so_proto->pr_flags;
368 1.1 cgd if ((soflags & PR_CONNREQUIRED) || (so->so_state & SS_ISCONNECTED))
369 1.1 cgd sendnam = (struct mbuf *)0;
370 1.1 cgd else
371 1.1 cgd sendnam = nam;
372 1.14 mycroft if (so->so_type == SOCK_SEQPACKET)
373 1.14 mycroft flags = MSG_EOR;
374 1.14 mycroft else
375 1.14 mycroft flags = 0;
376 1.1 cgd
377 1.1 cgd error = sosend(so, sendnam, (struct uio *)0, top,
378 1.14 mycroft (struct mbuf *)0, flags);
379 1.14 mycroft if (error) {
380 1.14 mycroft if (rep) {
381 1.14 mycroft log(LOG_INFO, "nfs send error %d for server %s\n",error,
382 1.14 mycroft rep->r_nmp->nm_mountp->mnt_stat.f_mntfromname);
383 1.14 mycroft /*
384 1.14 mycroft * Deal with errors for the client side.
385 1.14 mycroft */
386 1.14 mycroft if (rep->r_flags & R_SOFTTERM)
387 1.14 mycroft error = EINTR;
388 1.14 mycroft else
389 1.14 mycroft rep->r_flags |= R_MUSTRESEND;
390 1.14 mycroft } else
391 1.14 mycroft log(LOG_INFO, "nfsd send error %d\n", error);
392 1.14 mycroft
393 1.14 mycroft /*
394 1.14 mycroft * Handle any recoverable (soft) socket errors here. (???)
395 1.14 mycroft */
396 1.14 mycroft if (error != EINTR && error != ERESTART &&
397 1.14 mycroft error != EWOULDBLOCK && error != EPIPE)
398 1.1 cgd error = 0;
399 1.1 cgd }
400 1.1 cgd return (error);
401 1.1 cgd }
402 1.1 cgd
403 1.14 mycroft #ifdef NFSCLIENT
404 1.1 cgd /*
405 1.1 cgd * Receive a Sun RPC Request/Reply. For SOCK_DGRAM, the work is all
406 1.1 cgd * done by soreceive(), but for SOCK_STREAM we must deal with the Record
407 1.1 cgd * Mark and consolidate the data into a new mbuf list.
408 1.1 cgd * nb: Sometimes TCP passes the data up to soreceive() in long lists of
409 1.1 cgd * small mbufs.
410 1.1 cgd * For SOCK_STREAM we must be very careful to read an entire record once
411 1.1 cgd * we have read any of it, even if the system call has been interrupted.
412 1.1 cgd */
413 1.23 christos int
414 1.14 mycroft nfs_receive(rep, aname, mp)
415 1.14 mycroft register struct nfsreq *rep;
416 1.1 cgd struct mbuf **aname;
417 1.1 cgd struct mbuf **mp;
418 1.1 cgd {
419 1.14 mycroft register struct socket *so;
420 1.1 cgd struct uio auio;
421 1.1 cgd struct iovec aio;
422 1.1 cgd register struct mbuf *m;
423 1.14 mycroft struct mbuf *control;
424 1.22 cgd u_int32_t len;
425 1.1 cgd struct mbuf **getnam;
426 1.14 mycroft int error, sotype, rcvflg;
427 1.14 mycroft struct proc *p = curproc; /* XXX */
428 1.1 cgd
429 1.1 cgd /*
430 1.1 cgd * Set up arguments for soreceive()
431 1.1 cgd */
432 1.1 cgd *mp = (struct mbuf *)0;
433 1.1 cgd *aname = (struct mbuf *)0;
434 1.14 mycroft sotype = rep->r_nmp->nm_sotype;
435 1.1 cgd
436 1.1 cgd /*
437 1.1 cgd * For reliable protocols, lock against other senders/receivers
438 1.1 cgd * in case a reconnect is necessary.
439 1.1 cgd * For SOCK_STREAM, first get the Record Mark to find out how much
440 1.1 cgd * more there is to get.
441 1.1 cgd * We must lock the socket against other receivers
442 1.1 cgd * until we have an entire rpc request/reply.
443 1.1 cgd */
444 1.14 mycroft if (sotype != SOCK_DGRAM) {
445 1.24 fvdl error = nfs_sndlock(&rep->r_nmp->nm_flag, rep);
446 1.24 fvdl if (error)
447 1.14 mycroft return (error);
448 1.1 cgd tryagain:
449 1.1 cgd /*
450 1.1 cgd * Check for fatal errors and resending request.
451 1.1 cgd */
452 1.14 mycroft /*
453 1.14 mycroft * Ugh: If a reconnect attempt just happened, nm_so
454 1.14 mycroft * would have changed. NULL indicates a failed
455 1.14 mycroft * attempt that has essentially shut down this
456 1.14 mycroft * mount point.
457 1.14 mycroft */
458 1.14 mycroft if (rep->r_mrep || (rep->r_flags & R_SOFTTERM)) {
459 1.14 mycroft nfs_sndunlock(&rep->r_nmp->nm_flag);
460 1.14 mycroft return (EINTR);
461 1.14 mycroft }
462 1.24 fvdl so = rep->r_nmp->nm_so;
463 1.24 fvdl if (!so) {
464 1.24 fvdl error = nfs_reconnect(rep);
465 1.24 fvdl if (error) {
466 1.14 mycroft nfs_sndunlock(&rep->r_nmp->nm_flag);
467 1.14 mycroft return (error);
468 1.14 mycroft }
469 1.14 mycroft goto tryagain;
470 1.14 mycroft }
471 1.14 mycroft while (rep->r_flags & R_MUSTRESEND) {
472 1.14 mycroft m = m_copym(rep->r_mreq, 0, M_COPYALL, M_WAIT);
473 1.14 mycroft nfsstats.rpcretries++;
474 1.23 christos error = nfs_send(so, rep->r_nmp->nm_nam, m, rep);
475 1.23 christos if (error) {
476 1.14 mycroft if (error == EINTR || error == ERESTART ||
477 1.24 fvdl (error = nfs_reconnect(rep)) != 0) {
478 1.14 mycroft nfs_sndunlock(&rep->r_nmp->nm_flag);
479 1.14 mycroft return (error);
480 1.14 mycroft }
481 1.14 mycroft goto tryagain;
482 1.1 cgd }
483 1.1 cgd }
484 1.14 mycroft nfs_sndunlock(&rep->r_nmp->nm_flag);
485 1.14 mycroft if (sotype == SOCK_STREAM) {
486 1.1 cgd aio.iov_base = (caddr_t) &len;
487 1.22 cgd aio.iov_len = sizeof(u_int32_t);
488 1.1 cgd auio.uio_iov = &aio;
489 1.1 cgd auio.uio_iovcnt = 1;
490 1.1 cgd auio.uio_segflg = UIO_SYSSPACE;
491 1.1 cgd auio.uio_rw = UIO_READ;
492 1.1 cgd auio.uio_offset = 0;
493 1.22 cgd auio.uio_resid = sizeof(u_int32_t);
494 1.14 mycroft auio.uio_procp = p;
495 1.1 cgd do {
496 1.14 mycroft rcvflg = MSG_WAITALL;
497 1.14 mycroft error = soreceive(so, (struct mbuf **)0, &auio,
498 1.1 cgd (struct mbuf **)0, (struct mbuf **)0, &rcvflg);
499 1.14 mycroft if (error == EWOULDBLOCK && rep) {
500 1.1 cgd if (rep->r_flags & R_SOFTTERM)
501 1.1 cgd return (EINTR);
502 1.14 mycroft }
503 1.1 cgd } while (error == EWOULDBLOCK);
504 1.1 cgd if (!error && auio.uio_resid > 0) {
505 1.14 mycroft log(LOG_INFO,
506 1.14 mycroft "short receive (%d/%d) from nfs server %s\n",
507 1.22 cgd sizeof(u_int32_t) - auio.uio_resid,
508 1.22 cgd sizeof(u_int32_t),
509 1.1 cgd rep->r_nmp->nm_mountp->mnt_stat.f_mntfromname);
510 1.1 cgd error = EPIPE;
511 1.1 cgd }
512 1.1 cgd if (error)
513 1.1 cgd goto errout;
514 1.1 cgd len = ntohl(len) & ~0x80000000;
515 1.1 cgd /*
516 1.1 cgd * This is SERIOUS! We are out of sync with the sender
517 1.1 cgd * and forcing a disconnect/reconnect is all I can do.
518 1.1 cgd */
519 1.1 cgd if (len > NFS_MAXPACKET) {
520 1.14 mycroft log(LOG_ERR, "%s (%d) from nfs server %s\n",
521 1.14 mycroft "impossible packet length",
522 1.14 mycroft len,
523 1.14 mycroft rep->r_nmp->nm_mountp->mnt_stat.f_mntfromname);
524 1.1 cgd error = EFBIG;
525 1.1 cgd goto errout;
526 1.1 cgd }
527 1.1 cgd auio.uio_resid = len;
528 1.1 cgd do {
529 1.1 cgd rcvflg = MSG_WAITALL;
530 1.1 cgd error = soreceive(so, (struct mbuf **)0,
531 1.1 cgd &auio, mp, (struct mbuf **)0, &rcvflg);
532 1.1 cgd } while (error == EWOULDBLOCK || error == EINTR ||
533 1.1 cgd error == ERESTART);
534 1.1 cgd if (!error && auio.uio_resid > 0) {
535 1.14 mycroft log(LOG_INFO,
536 1.14 mycroft "short receive (%d/%d) from nfs server %s\n",
537 1.14 mycroft len - auio.uio_resid, len,
538 1.14 mycroft rep->r_nmp->nm_mountp->mnt_stat.f_mntfromname);
539 1.1 cgd error = EPIPE;
540 1.1 cgd }
541 1.1 cgd } else {
542 1.14 mycroft /*
543 1.14 mycroft * NB: Since uio_resid is big, MSG_WAITALL is ignored
544 1.14 mycroft * and soreceive() will return when it has either a
545 1.14 mycroft * control msg or a data msg.
546 1.14 mycroft * We have no use for control msg., but must grab them
547 1.14 mycroft * and then throw them away so we know what is going
548 1.14 mycroft * on.
549 1.14 mycroft */
550 1.14 mycroft auio.uio_resid = len = 100000000; /* Anything Big */
551 1.14 mycroft auio.uio_procp = p;
552 1.1 cgd do {
553 1.1 cgd rcvflg = 0;
554 1.1 cgd error = soreceive(so, (struct mbuf **)0,
555 1.14 mycroft &auio, mp, &control, &rcvflg);
556 1.14 mycroft if (control)
557 1.14 mycroft m_freem(control);
558 1.1 cgd if (error == EWOULDBLOCK && rep) {
559 1.1 cgd if (rep->r_flags & R_SOFTTERM)
560 1.1 cgd return (EINTR);
561 1.1 cgd }
562 1.14 mycroft } while (error == EWOULDBLOCK ||
563 1.14 mycroft (!error && *mp == NULL && control));
564 1.14 mycroft if ((rcvflg & MSG_EOR) == 0)
565 1.31 christos printf("Egad!!\n");
566 1.1 cgd if (!error && *mp == NULL)
567 1.1 cgd error = EPIPE;
568 1.1 cgd len -= auio.uio_resid;
569 1.1 cgd }
570 1.1 cgd errout:
571 1.14 mycroft if (error && error != EINTR && error != ERESTART) {
572 1.1 cgd m_freem(*mp);
573 1.1 cgd *mp = (struct mbuf *)0;
574 1.14 mycroft if (error != EPIPE)
575 1.1 cgd log(LOG_INFO,
576 1.1 cgd "receive error %d from nfs server %s\n",
577 1.1 cgd error,
578 1.1 cgd rep->r_nmp->nm_mountp->mnt_stat.f_mntfromname);
579 1.14 mycroft error = nfs_sndlock(&rep->r_nmp->nm_flag, rep);
580 1.14 mycroft if (!error)
581 1.14 mycroft error = nfs_reconnect(rep);
582 1.1 cgd if (!error)
583 1.1 cgd goto tryagain;
584 1.1 cgd }
585 1.1 cgd } else {
586 1.14 mycroft if ((so = rep->r_nmp->nm_so) == NULL)
587 1.14 mycroft return (EACCES);
588 1.1 cgd if (so->so_state & SS_ISCONNECTED)
589 1.1 cgd getnam = (struct mbuf **)0;
590 1.1 cgd else
591 1.1 cgd getnam = aname;
592 1.1 cgd auio.uio_resid = len = 1000000;
593 1.14 mycroft auio.uio_procp = p;
594 1.1 cgd do {
595 1.1 cgd rcvflg = 0;
596 1.1 cgd error = soreceive(so, getnam, &auio, mp,
597 1.1 cgd (struct mbuf **)0, &rcvflg);
598 1.14 mycroft if (error == EWOULDBLOCK &&
599 1.1 cgd (rep->r_flags & R_SOFTTERM))
600 1.1 cgd return (EINTR);
601 1.1 cgd } while (error == EWOULDBLOCK);
602 1.1 cgd len -= auio.uio_resid;
603 1.1 cgd }
604 1.1 cgd if (error) {
605 1.1 cgd m_freem(*mp);
606 1.1 cgd *mp = (struct mbuf *)0;
607 1.1 cgd }
608 1.1 cgd /*
609 1.14 mycroft * Search for any mbufs that are not a multiple of 4 bytes long
610 1.14 mycroft * or with m_data not longword aligned.
611 1.1 cgd * These could cause pointer alignment problems, so copy them to
612 1.1 cgd * well aligned mbufs.
613 1.1 cgd */
614 1.14 mycroft nfs_realign(*mp, 5 * NFSX_UNSIGNED);
615 1.1 cgd return (error);
616 1.1 cgd }
617 1.1 cgd
618 1.1 cgd /*
619 1.1 cgd * Implement receipt of reply on a socket.
620 1.1 cgd * We must search through the list of received datagrams matching them
621 1.1 cgd * with outstanding requests using the xid, until ours is found.
622 1.1 cgd */
623 1.1 cgd /* ARGSUSED */
624 1.23 christos int
625 1.14 mycroft nfs_reply(myrep)
626 1.1 cgd struct nfsreq *myrep;
627 1.1 cgd {
628 1.1 cgd register struct nfsreq *rep;
629 1.14 mycroft register struct nfsmount *nmp = myrep->r_nmp;
630 1.22 cgd register int32_t t1;
631 1.14 mycroft struct mbuf *mrep, *nam, *md;
632 1.22 cgd u_int32_t rxid, *tl;
633 1.14 mycroft caddr_t dpos, cp2;
634 1.14 mycroft int error;
635 1.1 cgd
636 1.1 cgd /*
637 1.1 cgd * Loop around until we get our own reply
638 1.1 cgd */
639 1.1 cgd for (;;) {
640 1.1 cgd /*
641 1.1 cgd * Lock against other receivers so that I don't get stuck in
642 1.1 cgd * sbwait() after someone else has received my reply for me.
643 1.1 cgd * Also necessary for connection based protocols to avoid
644 1.1 cgd * race conditions during a reconnect.
645 1.1 cgd */
646 1.24 fvdl error = nfs_rcvlock(myrep);
647 1.24 fvdl if (error)
648 1.14 mycroft return (error);
649 1.1 cgd /* Already received, bye bye */
650 1.1 cgd if (myrep->r_mrep != NULL) {
651 1.14 mycroft nfs_rcvunlock(&nmp->nm_flag);
652 1.1 cgd return (0);
653 1.1 cgd }
654 1.1 cgd /*
655 1.1 cgd * Get the next Rpc reply off the socket
656 1.1 cgd */
657 1.14 mycroft error = nfs_receive(myrep, &nam, &mrep);
658 1.14 mycroft nfs_rcvunlock(&nmp->nm_flag);
659 1.14 mycroft if (error) {
660 1.1 cgd
661 1.1 cgd /*
662 1.1 cgd * Ignore routing errors on connectionless protocols??
663 1.1 cgd */
664 1.1 cgd if (NFSIGNORE_SOERROR(nmp->nm_soflags, error)) {
665 1.1 cgd nmp->nm_so->so_error = 0;
666 1.14 mycroft if (myrep->r_flags & R_GETONEREP)
667 1.14 mycroft return (0);
668 1.1 cgd continue;
669 1.1 cgd }
670 1.1 cgd return (error);
671 1.1 cgd }
672 1.14 mycroft if (nam)
673 1.14 mycroft m_freem(nam);
674 1.1 cgd
675 1.1 cgd /*
676 1.1 cgd * Get the xid and check that it is an rpc reply
677 1.1 cgd */
678 1.14 mycroft md = mrep;
679 1.14 mycroft dpos = mtod(md, caddr_t);
680 1.22 cgd nfsm_dissect(tl, u_int32_t *, 2*NFSX_UNSIGNED);
681 1.14 mycroft rxid = *tl++;
682 1.14 mycroft if (*tl != rpc_reply) {
683 1.14 mycroft if (nmp->nm_flag & NFSMNT_NQNFS) {
684 1.14 mycroft if (nqnfs_callback(nmp, mrep, md, dpos))
685 1.14 mycroft nfsstats.rpcinvalid++;
686 1.14 mycroft } else {
687 1.14 mycroft nfsstats.rpcinvalid++;
688 1.14 mycroft m_freem(mrep);
689 1.14 mycroft }
690 1.14 mycroft nfsmout:
691 1.14 mycroft if (myrep->r_flags & R_GETONEREP)
692 1.14 mycroft return (0);
693 1.1 cgd continue;
694 1.1 cgd }
695 1.14 mycroft
696 1.1 cgd /*
697 1.1 cgd * Loop through the request list to match up the reply
698 1.1 cgd * Iff no match, just drop the datagram
699 1.1 cgd */
700 1.16 mycroft for (rep = nfs_reqq.tqh_first; rep != 0;
701 1.16 mycroft rep = rep->r_chain.tqe_next) {
702 1.1 cgd if (rep->r_mrep == NULL && rxid == rep->r_xid) {
703 1.1 cgd /* Found it.. */
704 1.14 mycroft rep->r_mrep = mrep;
705 1.14 mycroft rep->r_md = md;
706 1.14 mycroft rep->r_dpos = dpos;
707 1.14 mycroft if (nfsrtton) {
708 1.14 mycroft struct rttl *rt;
709 1.14 mycroft
710 1.14 mycroft rt = &nfsrtt.rttl[nfsrtt.pos];
711 1.14 mycroft rt->proc = rep->r_procnum;
712 1.14 mycroft rt->rto = NFS_RTO(nmp, proct[rep->r_procnum]);
713 1.14 mycroft rt->sent = nmp->nm_sent;
714 1.14 mycroft rt->cwnd = nmp->nm_cwnd;
715 1.14 mycroft rt->srtt = nmp->nm_srtt[proct[rep->r_procnum] - 1];
716 1.14 mycroft rt->sdrtt = nmp->nm_sdrtt[proct[rep->r_procnum] - 1];
717 1.14 mycroft rt->fsid = nmp->nm_mountp->mnt_stat.f_fsid;
718 1.14 mycroft rt->tstamp = time;
719 1.14 mycroft if (rep->r_flags & R_TIMING)
720 1.14 mycroft rt->rtt = rep->r_rtt;
721 1.14 mycroft else
722 1.14 mycroft rt->rtt = 1000000;
723 1.14 mycroft nfsrtt.pos = (nfsrtt.pos + 1) % NFSRTTLOGSIZ;
724 1.14 mycroft }
725 1.1 cgd /*
726 1.14 mycroft * Update congestion window.
727 1.14 mycroft * Do the additive increase of
728 1.14 mycroft * one rpc/rtt.
729 1.14 mycroft */
730 1.14 mycroft if (nmp->nm_cwnd <= nmp->nm_sent) {
731 1.14 mycroft nmp->nm_cwnd +=
732 1.14 mycroft (NFS_CWNDSCALE * NFS_CWNDSCALE +
733 1.14 mycroft (nmp->nm_cwnd >> 1)) / nmp->nm_cwnd;
734 1.14 mycroft if (nmp->nm_cwnd > NFS_MAXCWND)
735 1.14 mycroft nmp->nm_cwnd = NFS_MAXCWND;
736 1.14 mycroft }
737 1.14 mycroft rep->r_flags &= ~R_SENT;
738 1.14 mycroft nmp->nm_sent -= NFS_CWNDSCALE;
739 1.14 mycroft /*
740 1.14 mycroft * Update rtt using a gain of 0.125 on the mean
741 1.14 mycroft * and a gain of 0.25 on the deviation.
742 1.1 cgd */
743 1.1 cgd if (rep->r_flags & R_TIMING) {
744 1.14 mycroft /*
745 1.14 mycroft * Since the timer resolution of
746 1.14 mycroft * NFS_HZ is so course, it can often
747 1.14 mycroft * result in r_rtt == 0. Since
748 1.14 mycroft * r_rtt == N means that the actual
749 1.14 mycroft * rtt is between N+dt and N+2-dt ticks,
750 1.14 mycroft * add 1.
751 1.14 mycroft */
752 1.14 mycroft t1 = rep->r_rtt + 1;
753 1.14 mycroft t1 -= (NFS_SRTT(rep) >> 3);
754 1.14 mycroft NFS_SRTT(rep) += t1;
755 1.14 mycroft if (t1 < 0)
756 1.14 mycroft t1 = -t1;
757 1.14 mycroft t1 -= (NFS_SDRTT(rep) >> 2);
758 1.14 mycroft NFS_SDRTT(rep) += t1;
759 1.1 cgd }
760 1.14 mycroft nmp->nm_timeouts = 0;
761 1.1 cgd break;
762 1.1 cgd }
763 1.1 cgd }
764 1.1 cgd /*
765 1.1 cgd * If not matched to a request, drop it.
766 1.1 cgd * If it's mine, get out.
767 1.1 cgd */
768 1.16 mycroft if (rep == 0) {
769 1.1 cgd nfsstats.rpcunexpected++;
770 1.14 mycroft m_freem(mrep);
771 1.14 mycroft } else if (rep == myrep) {
772 1.14 mycroft if (rep->r_mrep == NULL)
773 1.14 mycroft panic("nfsreply nil");
774 1.14 mycroft return (0);
775 1.14 mycroft }
776 1.14 mycroft if (myrep->r_flags & R_GETONEREP)
777 1.1 cgd return (0);
778 1.1 cgd }
779 1.1 cgd }
780 1.1 cgd
781 1.1 cgd /*
782 1.1 cgd * nfs_request - goes something like this
783 1.1 cgd * - fill in request struct
784 1.1 cgd * - links it into list
785 1.1 cgd * - calls nfs_send() for first transmit
786 1.1 cgd * - calls nfs_receive() to get reply
787 1.1 cgd * - break down rpc header and return with nfs reply pointed to
788 1.1 cgd * by mrep or error
789 1.1 cgd * nb: always frees up mreq mbuf list
790 1.1 cgd */
791 1.23 christos int
792 1.14 mycroft nfs_request(vp, mrest, procnum, procp, cred, mrp, mdp, dposp)
793 1.1 cgd struct vnode *vp;
794 1.14 mycroft struct mbuf *mrest;
795 1.1 cgd int procnum;
796 1.1 cgd struct proc *procp;
797 1.14 mycroft struct ucred *cred;
798 1.1 cgd struct mbuf **mrp;
799 1.1 cgd struct mbuf **mdp;
800 1.1 cgd caddr_t *dposp;
801 1.1 cgd {
802 1.1 cgd register struct mbuf *m, *mrep;
803 1.1 cgd register struct nfsreq *rep;
804 1.22 cgd register u_int32_t *tl;
805 1.14 mycroft register int i;
806 1.1 cgd struct nfsmount *nmp;
807 1.14 mycroft struct mbuf *md, *mheadend;
808 1.14 mycroft struct nfsnode *np;
809 1.24 fvdl char nickv[RPCX_NICKVERF];
810 1.14 mycroft time_t reqtime, waituntil;
811 1.14 mycroft caddr_t dpos, cp2;
812 1.14 mycroft int t1, nqlflag, cachable, s, error = 0, mrest_len, auth_len, auth_type;
813 1.14 mycroft int trylater_delay = NQ_TRYLATERDEL, trylater_cnt = 0, failed_auth = 0;
814 1.24 fvdl int verf_len, verf_type;
815 1.22 cgd u_int32_t xid;
816 1.14 mycroft u_quad_t frev;
817 1.24 fvdl char *auth_str, *verf_str;
818 1.24 fvdl NFSKERBKEY_T key; /* save session key */
819 1.1 cgd
820 1.14 mycroft nmp = VFSTONFS(vp->v_mount);
821 1.1 cgd MALLOC(rep, struct nfsreq *, sizeof(struct nfsreq), M_NFSREQ, M_WAITOK);
822 1.1 cgd rep->r_nmp = nmp;
823 1.1 cgd rep->r_vp = vp;
824 1.1 cgd rep->r_procp = procp;
825 1.14 mycroft rep->r_procnum = procnum;
826 1.14 mycroft i = 0;
827 1.14 mycroft m = mrest;
828 1.1 cgd while (m) {
829 1.14 mycroft i += m->m_len;
830 1.1 cgd m = m->m_next;
831 1.1 cgd }
832 1.14 mycroft mrest_len = i;
833 1.14 mycroft
834 1.14 mycroft /*
835 1.14 mycroft * Get the RPC header with authorization.
836 1.14 mycroft */
837 1.14 mycroft kerbauth:
838 1.24 fvdl verf_str = auth_str = (char *)0;
839 1.14 mycroft if (nmp->nm_flag & NFSMNT_KERB) {
840 1.24 fvdl verf_str = nickv;
841 1.24 fvdl verf_len = sizeof (nickv);
842 1.24 fvdl auth_type = RPCAUTH_KERB4;
843 1.24 fvdl bzero((caddr_t)key, sizeof (key));
844 1.24 fvdl if (failed_auth || nfs_getnickauth(nmp, cred, &auth_str,
845 1.24 fvdl &auth_len, verf_str, verf_len)) {
846 1.24 fvdl error = nfs_getauth(nmp, rep, cred, &auth_str,
847 1.24 fvdl &auth_len, verf_str, &verf_len, key);
848 1.14 mycroft if (error) {
849 1.14 mycroft free((caddr_t)rep, M_NFSREQ);
850 1.14 mycroft m_freem(mrest);
851 1.14 mycroft return (error);
852 1.14 mycroft }
853 1.1 cgd }
854 1.14 mycroft } else {
855 1.14 mycroft auth_type = RPCAUTH_UNIX;
856 1.20 mycroft auth_len = (((cred->cr_ngroups > nmp->nm_numgrps) ?
857 1.20 mycroft nmp->nm_numgrps : cred->cr_ngroups) << 2) +
858 1.14 mycroft 5 * NFSX_UNSIGNED;
859 1.14 mycroft }
860 1.24 fvdl m = nfsm_rpchead(cred, nmp->nm_flag, procnum, auth_type, auth_len,
861 1.24 fvdl auth_str, verf_len, verf_str, mrest, mrest_len, &mheadend, &xid);
862 1.14 mycroft if (auth_str)
863 1.14 mycroft free(auth_str, M_TEMP);
864 1.14 mycroft
865 1.1 cgd /*
866 1.14 mycroft * For stream protocols, insert a Sun RPC Record Mark.
867 1.1 cgd */
868 1.14 mycroft if (nmp->nm_sotype == SOCK_STREAM) {
869 1.14 mycroft M_PREPEND(m, NFSX_UNSIGNED, M_WAIT);
870 1.22 cgd *mtod(m, u_int32_t *) = htonl(0x80000000 |
871 1.14 mycroft (m->m_pkthdr.len - NFSX_UNSIGNED));
872 1.1 cgd }
873 1.14 mycroft rep->r_mreq = m;
874 1.14 mycroft rep->r_xid = xid;
875 1.14 mycroft tryagain:
876 1.14 mycroft if (nmp->nm_flag & NFSMNT_SOFT)
877 1.14 mycroft rep->r_retry = nmp->nm_retry;
878 1.14 mycroft else
879 1.14 mycroft rep->r_retry = NFS_MAXREXMIT + 1; /* past clip limit */
880 1.14 mycroft rep->r_rtt = rep->r_rexmit = 0;
881 1.14 mycroft if (proct[procnum] > 0)
882 1.14 mycroft rep->r_flags = R_TIMING;
883 1.14 mycroft else
884 1.14 mycroft rep->r_flags = 0;
885 1.14 mycroft rep->r_mrep = NULL;
886 1.1 cgd
887 1.1 cgd /*
888 1.1 cgd * Do the client side RPC.
889 1.1 cgd */
890 1.1 cgd nfsstats.rpcrequests++;
891 1.1 cgd /*
892 1.1 cgd * Chain request into list of outstanding requests. Be sure
893 1.1 cgd * to put it LAST so timer finds oldest requests first.
894 1.1 cgd */
895 1.14 mycroft s = splsoftclock();
896 1.16 mycroft TAILQ_INSERT_TAIL(&nfs_reqq, rep, r_chain);
897 1.14 mycroft
898 1.14 mycroft /* Get send time for nqnfs */
899 1.14 mycroft reqtime = time.tv_sec;
900 1.14 mycroft
901 1.1 cgd /*
902 1.1 cgd * If backing off another request or avoiding congestion, don't
903 1.1 cgd * send this one now but let timer do it. If not timing a request,
904 1.1 cgd * do it now.
905 1.1 cgd */
906 1.14 mycroft if (nmp->nm_so && (nmp->nm_sotype != SOCK_DGRAM ||
907 1.14 mycroft (nmp->nm_flag & NFSMNT_DUMBTIMR) ||
908 1.14 mycroft nmp->nm_sent < nmp->nm_cwnd)) {
909 1.1 cgd splx(s);
910 1.1 cgd if (nmp->nm_soflags & PR_CONNREQUIRED)
911 1.14 mycroft error = nfs_sndlock(&nmp->nm_flag, rep);
912 1.14 mycroft if (!error) {
913 1.14 mycroft m = m_copym(m, 0, M_COPYALL, M_WAIT);
914 1.14 mycroft error = nfs_send(nmp->nm_so, nmp->nm_nam, m, rep);
915 1.14 mycroft if (nmp->nm_soflags & PR_CONNREQUIRED)
916 1.14 mycroft nfs_sndunlock(&nmp->nm_flag);
917 1.14 mycroft }
918 1.14 mycroft if (!error && (rep->r_flags & R_MUSTRESEND) == 0) {
919 1.14 mycroft nmp->nm_sent += NFS_CWNDSCALE;
920 1.14 mycroft rep->r_flags |= R_SENT;
921 1.14 mycroft }
922 1.14 mycroft } else {
923 1.1 cgd splx(s);
924 1.14 mycroft rep->r_rtt = -1;
925 1.14 mycroft }
926 1.1 cgd
927 1.1 cgd /*
928 1.1 cgd * Wait for the reply from our send or the timer's.
929 1.1 cgd */
930 1.14 mycroft if (!error || error == EPIPE)
931 1.14 mycroft error = nfs_reply(rep);
932 1.1 cgd
933 1.1 cgd /*
934 1.1 cgd * RPC done, unlink the request.
935 1.1 cgd */
936 1.14 mycroft s = splsoftclock();
937 1.16 mycroft TAILQ_REMOVE(&nfs_reqq, rep, r_chain);
938 1.1 cgd splx(s);
939 1.1 cgd
940 1.1 cgd /*
941 1.14 mycroft * Decrement the outstanding request count.
942 1.14 mycroft */
943 1.14 mycroft if (rep->r_flags & R_SENT) {
944 1.14 mycroft rep->r_flags &= ~R_SENT; /* paranoia */
945 1.14 mycroft nmp->nm_sent -= NFS_CWNDSCALE;
946 1.14 mycroft }
947 1.14 mycroft
948 1.14 mycroft /*
949 1.1 cgd * If there was a successful reply and a tprintf msg.
950 1.1 cgd * tprintf a response.
951 1.1 cgd */
952 1.1 cgd if (!error && (rep->r_flags & R_TPRINTFMSG))
953 1.1 cgd nfs_msg(rep->r_procp, nmp->nm_mountp->mnt_stat.f_mntfromname,
954 1.1 cgd "is alive again");
955 1.1 cgd mrep = rep->r_mrep;
956 1.14 mycroft md = rep->r_md;
957 1.14 mycroft dpos = rep->r_dpos;
958 1.14 mycroft if (error) {
959 1.14 mycroft m_freem(rep->r_mreq);
960 1.14 mycroft free((caddr_t)rep, M_NFSREQ);
961 1.1 cgd return (error);
962 1.14 mycroft }
963 1.1 cgd
964 1.1 cgd /*
965 1.1 cgd * break down the rpc header and check if ok
966 1.1 cgd */
967 1.24 fvdl nfsm_dissect(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
968 1.1 cgd if (*tl++ == rpc_msgdenied) {
969 1.1 cgd if (*tl == rpc_mismatch)
970 1.1 cgd error = EOPNOTSUPP;
971 1.14 mycroft else if ((nmp->nm_flag & NFSMNT_KERB) && *tl++ == rpc_autherr) {
972 1.24 fvdl if (!failed_auth) {
973 1.14 mycroft failed_auth++;
974 1.14 mycroft mheadend->m_next = (struct mbuf *)0;
975 1.14 mycroft m_freem(mrep);
976 1.14 mycroft m_freem(rep->r_mreq);
977 1.14 mycroft goto kerbauth;
978 1.14 mycroft } else
979 1.14 mycroft error = EAUTH;
980 1.14 mycroft } else
981 1.1 cgd error = EACCES;
982 1.1 cgd m_freem(mrep);
983 1.14 mycroft m_freem(rep->r_mreq);
984 1.14 mycroft free((caddr_t)rep, M_NFSREQ);
985 1.1 cgd return (error);
986 1.1 cgd }
987 1.14 mycroft
988 1.1 cgd /*
989 1.24 fvdl * Grab any Kerberos verifier, otherwise just throw it away.
990 1.1 cgd */
991 1.24 fvdl verf_type = fxdr_unsigned(int, *tl++);
992 1.24 fvdl i = fxdr_unsigned(int32_t, *tl);
993 1.24 fvdl if ((nmp->nm_flag & NFSMNT_KERB) && verf_type == RPCAUTH_KERB4) {
994 1.24 fvdl error = nfs_savenickauth(nmp, cred, i, key, &md, &dpos, mrep);
995 1.24 fvdl if (error)
996 1.24 fvdl goto nfsmout;
997 1.24 fvdl } else if (i > 0)
998 1.24 fvdl nfsm_adv(nfsm_rndup(i));
999 1.22 cgd nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
1000 1.1 cgd /* 0 == ok */
1001 1.1 cgd if (*tl == 0) {
1002 1.22 cgd nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
1003 1.1 cgd if (*tl != 0) {
1004 1.1 cgd error = fxdr_unsigned(int, *tl);
1005 1.24 fvdl if ((nmp->nm_flag & NFSMNT_NFSV3) &&
1006 1.24 fvdl error == NFSERR_TRYLATER) {
1007 1.24 fvdl m_freem(mrep);
1008 1.14 mycroft error = 0;
1009 1.14 mycroft waituntil = time.tv_sec + trylater_delay;
1010 1.14 mycroft while (time.tv_sec < waituntil)
1011 1.14 mycroft (void) tsleep((caddr_t)&lbolt,
1012 1.14 mycroft PSOCK, "nqnfstry", 0);
1013 1.14 mycroft trylater_delay *= nfs_backoff[trylater_cnt];
1014 1.14 mycroft if (trylater_cnt < 7)
1015 1.14 mycroft trylater_cnt++;
1016 1.14 mycroft goto tryagain;
1017 1.14 mycroft }
1018 1.14 mycroft
1019 1.14 mycroft /*
1020 1.14 mycroft * If the File Handle was stale, invalidate the
1021 1.14 mycroft * lookup cache, just in case.
1022 1.14 mycroft */
1023 1.14 mycroft if (error == ESTALE)
1024 1.14 mycroft cache_purge(vp);
1025 1.24 fvdl if (nmp->nm_flag & NFSMNT_NFSV3) {
1026 1.24 fvdl *mrp = mrep;
1027 1.24 fvdl *mdp = md;
1028 1.24 fvdl *dposp = dpos;
1029 1.24 fvdl error |= NFSERR_RETERR;
1030 1.24 fvdl } else
1031 1.24 fvdl m_freem(mrep);
1032 1.14 mycroft m_freem(rep->r_mreq);
1033 1.14 mycroft free((caddr_t)rep, M_NFSREQ);
1034 1.1 cgd return (error);
1035 1.1 cgd }
1036 1.14 mycroft
1037 1.14 mycroft /*
1038 1.14 mycroft * For nqnfs, get any lease in reply
1039 1.14 mycroft */
1040 1.14 mycroft if (nmp->nm_flag & NFSMNT_NQNFS) {
1041 1.22 cgd nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
1042 1.14 mycroft if (*tl) {
1043 1.14 mycroft np = VTONFS(vp);
1044 1.14 mycroft nqlflag = fxdr_unsigned(int, *tl);
1045 1.22 cgd nfsm_dissect(tl, u_int32_t *, 4*NFSX_UNSIGNED);
1046 1.14 mycroft cachable = fxdr_unsigned(int, *tl++);
1047 1.14 mycroft reqtime += fxdr_unsigned(int, *tl++);
1048 1.14 mycroft if (reqtime > time.tv_sec) {
1049 1.14 mycroft fxdr_hyper(tl, &frev);
1050 1.14 mycroft nqnfs_clientlease(nmp, np, nqlflag,
1051 1.14 mycroft cachable, reqtime, frev);
1052 1.14 mycroft }
1053 1.14 mycroft }
1054 1.14 mycroft }
1055 1.1 cgd *mrp = mrep;
1056 1.1 cgd *mdp = md;
1057 1.1 cgd *dposp = dpos;
1058 1.14 mycroft m_freem(rep->r_mreq);
1059 1.14 mycroft FREE((caddr_t)rep, M_NFSREQ);
1060 1.1 cgd return (0);
1061 1.1 cgd }
1062 1.1 cgd m_freem(mrep);
1063 1.24 fvdl error = EPROTONOSUPPORT;
1064 1.24 fvdl nfsmout:
1065 1.14 mycroft m_freem(rep->r_mreq);
1066 1.14 mycroft free((caddr_t)rep, M_NFSREQ);
1067 1.1 cgd return (error);
1068 1.1 cgd }
1069 1.14 mycroft #endif /* NFSCLIENT */
1070 1.1 cgd
1071 1.1 cgd /*
1072 1.1 cgd * Generate the rpc reply header
1073 1.1 cgd * siz arg. is used to decide if adding a cluster is worthwhile
1074 1.1 cgd */
1075 1.23 christos int
1076 1.24 fvdl nfs_rephead(siz, nd, slp, err, cache, frev, mrq, mbp, bposp)
1077 1.1 cgd int siz;
1078 1.24 fvdl struct nfsrv_descript *nd;
1079 1.24 fvdl struct nfssvc_sock *slp;
1080 1.1 cgd int err;
1081 1.14 mycroft int cache;
1082 1.14 mycroft u_quad_t *frev;
1083 1.1 cgd struct mbuf **mrq;
1084 1.1 cgd struct mbuf **mbp;
1085 1.1 cgd caddr_t *bposp;
1086 1.1 cgd {
1087 1.22 cgd register u_int32_t *tl;
1088 1.14 mycroft register struct mbuf *mreq;
1089 1.1 cgd caddr_t bpos;
1090 1.14 mycroft struct mbuf *mb, *mb2;
1091 1.1 cgd
1092 1.14 mycroft MGETHDR(mreq, M_WAIT, MT_DATA);
1093 1.1 cgd mb = mreq;
1094 1.14 mycroft /*
1095 1.14 mycroft * If this is a big reply, use a cluster else
1096 1.14 mycroft * try and leave leading space for the lower level headers.
1097 1.14 mycroft */
1098 1.14 mycroft siz += RPC_REPLYSIZ;
1099 1.14 mycroft if (siz >= MINCLSIZE) {
1100 1.1 cgd MCLGET(mreq, M_WAIT);
1101 1.14 mycroft } else
1102 1.14 mycroft mreq->m_data += max_hdr;
1103 1.22 cgd tl = mtod(mreq, u_int32_t *);
1104 1.24 fvdl mreq->m_len = 6 * NFSX_UNSIGNED;
1105 1.24 fvdl bpos = ((caddr_t)tl) + mreq->m_len;
1106 1.14 mycroft *tl++ = txdr_unsigned(nd->nd_retxid);
1107 1.1 cgd *tl++ = rpc_reply;
1108 1.24 fvdl if (err == ERPCMISMATCH || (err & NFSERR_AUTHERR)) {
1109 1.1 cgd *tl++ = rpc_msgdenied;
1110 1.24 fvdl if (err & NFSERR_AUTHERR) {
1111 1.14 mycroft *tl++ = rpc_autherr;
1112 1.24 fvdl *tl = txdr_unsigned(err & ~NFSERR_AUTHERR);
1113 1.14 mycroft mreq->m_len -= NFSX_UNSIGNED;
1114 1.14 mycroft bpos -= NFSX_UNSIGNED;
1115 1.14 mycroft } else {
1116 1.14 mycroft *tl++ = rpc_mismatch;
1117 1.24 fvdl *tl++ = txdr_unsigned(RPC_VER2);
1118 1.24 fvdl *tl = txdr_unsigned(RPC_VER2);
1119 1.14 mycroft }
1120 1.1 cgd } else {
1121 1.1 cgd *tl++ = rpc_msgaccepted;
1122 1.24 fvdl
1123 1.24 fvdl /*
1124 1.24 fvdl * For Kerberos authentication, we must send the nickname
1125 1.24 fvdl * verifier back, otherwise just RPCAUTH_NULL.
1126 1.24 fvdl */
1127 1.24 fvdl if (nd->nd_flag & ND_KERBFULL) {
1128 1.24 fvdl register struct nfsuid *nuidp;
1129 1.24 fvdl struct timeval ktvin, ktvout;
1130 1.24 fvdl
1131 1.24 fvdl for (nuidp = NUIDHASH(slp, nd->nd_cr.cr_uid)->lh_first;
1132 1.24 fvdl nuidp != 0; nuidp = nuidp->nu_hash.le_next) {
1133 1.24 fvdl if (nuidp->nu_cr.cr_uid == nd->nd_cr.cr_uid &&
1134 1.24 fvdl (!nd->nd_nam2 || netaddr_match(NU_NETFAM(nuidp),
1135 1.24 fvdl &nuidp->nu_haddr, nd->nd_nam2)))
1136 1.24 fvdl break;
1137 1.24 fvdl }
1138 1.24 fvdl if (nuidp) {
1139 1.24 fvdl ktvin.tv_sec =
1140 1.24 fvdl txdr_unsigned(nuidp->nu_timestamp.tv_sec - 1);
1141 1.24 fvdl ktvin.tv_usec =
1142 1.24 fvdl txdr_unsigned(nuidp->nu_timestamp.tv_usec);
1143 1.24 fvdl
1144 1.24 fvdl /*
1145 1.24 fvdl * Encrypt the timestamp in ecb mode using the
1146 1.24 fvdl * session key.
1147 1.24 fvdl */
1148 1.24 fvdl #ifdef NFSKERB
1149 1.24 fvdl XXX
1150 1.24 fvdl #endif
1151 1.24 fvdl
1152 1.24 fvdl *tl++ = rpc_auth_kerb;
1153 1.24 fvdl *tl++ = txdr_unsigned(3 * NFSX_UNSIGNED);
1154 1.24 fvdl *tl = ktvout.tv_sec;
1155 1.24 fvdl nfsm_build(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
1156 1.24 fvdl *tl++ = ktvout.tv_usec;
1157 1.24 fvdl *tl++ = txdr_unsigned(nuidp->nu_cr.cr_uid);
1158 1.24 fvdl } else {
1159 1.24 fvdl *tl++ = 0;
1160 1.24 fvdl *tl++ = 0;
1161 1.24 fvdl }
1162 1.24 fvdl } else {
1163 1.24 fvdl *tl++ = 0;
1164 1.24 fvdl *tl++ = 0;
1165 1.24 fvdl }
1166 1.1 cgd switch (err) {
1167 1.1 cgd case EPROGUNAVAIL:
1168 1.1 cgd *tl = txdr_unsigned(RPC_PROGUNAVAIL);
1169 1.1 cgd break;
1170 1.1 cgd case EPROGMISMATCH:
1171 1.1 cgd *tl = txdr_unsigned(RPC_PROGMISMATCH);
1172 1.24 fvdl nfsm_build(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
1173 1.24 fvdl if (nd->nd_flag & ND_NQNFS) {
1174 1.24 fvdl *tl++ = txdr_unsigned(3);
1175 1.24 fvdl *tl = txdr_unsigned(3);
1176 1.24 fvdl } else {
1177 1.24 fvdl *tl++ = txdr_unsigned(2);
1178 1.24 fvdl *tl = txdr_unsigned(3);
1179 1.24 fvdl }
1180 1.1 cgd break;
1181 1.1 cgd case EPROCUNAVAIL:
1182 1.1 cgd *tl = txdr_unsigned(RPC_PROCUNAVAIL);
1183 1.1 cgd break;
1184 1.24 fvdl case EBADRPC:
1185 1.24 fvdl *tl = txdr_unsigned(RPC_GARBAGE);
1186 1.24 fvdl break;
1187 1.1 cgd default:
1188 1.1 cgd *tl = 0;
1189 1.24 fvdl if (err != NFSERR_RETVOID) {
1190 1.22 cgd nfsm_build(tl, u_int32_t *, NFSX_UNSIGNED);
1191 1.14 mycroft if (err)
1192 1.24 fvdl *tl = txdr_unsigned(nfsrv_errmap(nd, err));
1193 1.14 mycroft else
1194 1.24 fvdl *tl = 0;
1195 1.1 cgd }
1196 1.1 cgd break;
1197 1.1 cgd };
1198 1.1 cgd }
1199 1.14 mycroft
1200 1.14 mycroft /*
1201 1.14 mycroft * For nqnfs, piggyback lease as requested.
1202 1.14 mycroft */
1203 1.24 fvdl if ((nd->nd_flag & ND_NQNFS) && err == 0) {
1204 1.24 fvdl if (nd->nd_flag & ND_LEASE) {
1205 1.24 fvdl nfsm_build(tl, u_int32_t *, 5 * NFSX_UNSIGNED);
1206 1.24 fvdl *tl++ = txdr_unsigned(nd->nd_flag & ND_LEASE);
1207 1.14 mycroft *tl++ = txdr_unsigned(cache);
1208 1.14 mycroft *tl++ = txdr_unsigned(nd->nd_duration);
1209 1.14 mycroft txdr_hyper(frev, tl);
1210 1.14 mycroft } else {
1211 1.22 cgd nfsm_build(tl, u_int32_t *, NFSX_UNSIGNED);
1212 1.14 mycroft *tl = 0;
1213 1.14 mycroft }
1214 1.14 mycroft }
1215 1.1 cgd *mrq = mreq;
1216 1.1 cgd *mbp = mb;
1217 1.1 cgd *bposp = bpos;
1218 1.24 fvdl if (err != 0 && err != NFSERR_RETVOID)
1219 1.1 cgd nfsstats.srvrpc_errs++;
1220 1.1 cgd return (0);
1221 1.1 cgd }
1222 1.1 cgd
1223 1.1 cgd /*
1224 1.1 cgd * Nfs timer routine
1225 1.1 cgd * Scan the nfsreq list and retranmit any requests that have timed out
1226 1.1 cgd * To avoid retransmission attempts on STREAM sockets (in the future) make
1227 1.1 cgd * sure to set the r_retry field to 0 (implies nm_retry == 0).
1228 1.1 cgd */
1229 1.7 mycroft void
1230 1.14 mycroft nfs_timer(arg)
1231 1.24 fvdl void *arg; /* never used */
1232 1.1 cgd {
1233 1.1 cgd register struct nfsreq *rep;
1234 1.1 cgd register struct mbuf *m;
1235 1.1 cgd register struct socket *so;
1236 1.1 cgd register struct nfsmount *nmp;
1237 1.14 mycroft register int timeo;
1238 1.27 thorpej int s, error;
1239 1.27 thorpej #ifdef NFSSERVER
1240 1.24 fvdl register struct nfssvc_sock *slp;
1241 1.14 mycroft static long lasttime = 0;
1242 1.27 thorpej u_quad_t cur_usec;
1243 1.23 christos #endif
1244 1.1 cgd
1245 1.21 mycroft s = splsoftnet();
1246 1.16 mycroft for (rep = nfs_reqq.tqh_first; rep != 0; rep = rep->r_chain.tqe_next) {
1247 1.1 cgd nmp = rep->r_nmp;
1248 1.14 mycroft if (rep->r_mrep || (rep->r_flags & R_SOFTTERM))
1249 1.1 cgd continue;
1250 1.14 mycroft if (nfs_sigintr(nmp, rep, rep->r_procp)) {
1251 1.1 cgd rep->r_flags |= R_SOFTTERM;
1252 1.1 cgd continue;
1253 1.1 cgd }
1254 1.14 mycroft if (rep->r_rtt >= 0) {
1255 1.14 mycroft rep->r_rtt++;
1256 1.14 mycroft if (nmp->nm_flag & NFSMNT_DUMBTIMR)
1257 1.14 mycroft timeo = nmp->nm_timeo;
1258 1.14 mycroft else
1259 1.14 mycroft timeo = NFS_RTO(nmp, proct[rep->r_procnum]);
1260 1.14 mycroft if (nmp->nm_timeouts > 0)
1261 1.14 mycroft timeo *= nfs_backoff[nmp->nm_timeouts - 1];
1262 1.14 mycroft if (rep->r_rtt <= timeo)
1263 1.14 mycroft continue;
1264 1.14 mycroft if (nmp->nm_timeouts < 8)
1265 1.14 mycroft nmp->nm_timeouts++;
1266 1.1 cgd }
1267 1.1 cgd /*
1268 1.1 cgd * Check for server not responding
1269 1.1 cgd */
1270 1.1 cgd if ((rep->r_flags & R_TPRINTFMSG) == 0 &&
1271 1.14 mycroft rep->r_rexmit > nmp->nm_deadthresh) {
1272 1.1 cgd nfs_msg(rep->r_procp,
1273 1.1 cgd nmp->nm_mountp->mnt_stat.f_mntfromname,
1274 1.1 cgd "not responding");
1275 1.1 cgd rep->r_flags |= R_TPRINTFMSG;
1276 1.1 cgd }
1277 1.1 cgd if (rep->r_rexmit >= rep->r_retry) { /* too many */
1278 1.1 cgd nfsstats.rpctimeouts++;
1279 1.1 cgd rep->r_flags |= R_SOFTTERM;
1280 1.1 cgd continue;
1281 1.1 cgd }
1282 1.14 mycroft if (nmp->nm_sotype != SOCK_DGRAM) {
1283 1.14 mycroft if (++rep->r_rexmit > NFS_MAXREXMIT)
1284 1.14 mycroft rep->r_rexmit = NFS_MAXREXMIT;
1285 1.14 mycroft continue;
1286 1.14 mycroft }
1287 1.14 mycroft if ((so = nmp->nm_so) == NULL)
1288 1.1 cgd continue;
1289 1.1 cgd
1290 1.1 cgd /*
1291 1.1 cgd * If there is enough space and the window allows..
1292 1.1 cgd * Resend it
1293 1.14 mycroft * Set r_rtt to -1 in case we fail to send it now.
1294 1.1 cgd */
1295 1.14 mycroft rep->r_rtt = -1;
1296 1.1 cgd if (sbspace(&so->so_snd) >= rep->r_mreq->m_pkthdr.len &&
1297 1.14 mycroft ((nmp->nm_flag & NFSMNT_DUMBTIMR) ||
1298 1.14 mycroft (rep->r_flags & R_SENT) ||
1299 1.14 mycroft nmp->nm_sent < nmp->nm_cwnd) &&
1300 1.14 mycroft (m = m_copym(rep->r_mreq, 0, M_COPYALL, M_DONTWAIT))){
1301 1.1 cgd if ((nmp->nm_flag & NFSMNT_NOCONN) == 0)
1302 1.1 cgd error = (*so->so_proto->pr_usrreq)(so, PRU_SEND, m,
1303 1.28 mycroft (struct mbuf *)0, (struct mbuf *)0, (struct proc *)0);
1304 1.1 cgd else
1305 1.1 cgd error = (*so->so_proto->pr_usrreq)(so, PRU_SEND, m,
1306 1.28 mycroft nmp->nm_nam, (struct mbuf *)0, (struct proc *)0);
1307 1.1 cgd if (error) {
1308 1.1 cgd if (NFSIGNORE_SOERROR(nmp->nm_soflags, error))
1309 1.1 cgd so->so_error = 0;
1310 1.1 cgd } else {
1311 1.1 cgd /*
1312 1.14 mycroft * Iff first send, start timing
1313 1.14 mycroft * else turn timing off, backoff timer
1314 1.14 mycroft * and divide congestion window by 2.
1315 1.1 cgd */
1316 1.14 mycroft if (rep->r_flags & R_SENT) {
1317 1.14 mycroft rep->r_flags &= ~R_TIMING;
1318 1.14 mycroft if (++rep->r_rexmit > NFS_MAXREXMIT)
1319 1.14 mycroft rep->r_rexmit = NFS_MAXREXMIT;
1320 1.14 mycroft nmp->nm_cwnd >>= 1;
1321 1.14 mycroft if (nmp->nm_cwnd < NFS_CWNDSCALE)
1322 1.14 mycroft nmp->nm_cwnd = NFS_CWNDSCALE;
1323 1.14 mycroft nfsstats.rpcretries++;
1324 1.14 mycroft } else {
1325 1.14 mycroft rep->r_flags |= R_SENT;
1326 1.14 mycroft nmp->nm_sent += NFS_CWNDSCALE;
1327 1.14 mycroft }
1328 1.14 mycroft rep->r_rtt = 0;
1329 1.1 cgd }
1330 1.1 cgd }
1331 1.1 cgd }
1332 1.14 mycroft
1333 1.14 mycroft #ifdef NFSSERVER
1334 1.14 mycroft /*
1335 1.14 mycroft * Call the nqnfs server timer once a second to handle leases.
1336 1.14 mycroft */
1337 1.14 mycroft if (lasttime != time.tv_sec) {
1338 1.14 mycroft lasttime = time.tv_sec;
1339 1.14 mycroft nqnfs_serverd();
1340 1.14 mycroft }
1341 1.24 fvdl
1342 1.24 fvdl /*
1343 1.24 fvdl * Scan the write gathering queues for writes that need to be
1344 1.24 fvdl * completed now.
1345 1.24 fvdl */
1346 1.24 fvdl cur_usec = (u_quad_t)time.tv_sec * 1000000 + (u_quad_t)time.tv_usec;
1347 1.24 fvdl for (slp = nfssvc_sockhead.tqh_first; slp != 0;
1348 1.24 fvdl slp = slp->ns_chain.tqe_next) {
1349 1.24 fvdl if (slp->ns_tq.lh_first && slp->ns_tq.lh_first->nd_time<=cur_usec)
1350 1.24 fvdl nfsrv_wakenfsd(slp);
1351 1.24 fvdl }
1352 1.14 mycroft #endif /* NFSSERVER */
1353 1.1 cgd splx(s);
1354 1.24 fvdl timeout(nfs_timer, (void *)0, nfs_ticks);
1355 1.1 cgd }
1356 1.1 cgd
1357 1.1 cgd /*
1358 1.14 mycroft * Test for a termination condition pending on the process.
1359 1.14 mycroft * This is used for NFSMNT_INT mounts.
1360 1.1 cgd */
1361 1.23 christos int
1362 1.14 mycroft nfs_sigintr(nmp, rep, p)
1363 1.14 mycroft struct nfsmount *nmp;
1364 1.14 mycroft struct nfsreq *rep;
1365 1.14 mycroft register struct proc *p;
1366 1.14 mycroft {
1367 1.14 mycroft
1368 1.14 mycroft if (rep && (rep->r_flags & R_SOFTTERM))
1369 1.14 mycroft return (EINTR);
1370 1.14 mycroft if (!(nmp->nm_flag & NFSMNT_INT))
1371 1.14 mycroft return (0);
1372 1.14 mycroft if (p && p->p_siglist &&
1373 1.14 mycroft (((p->p_siglist & ~p->p_sigmask) & ~p->p_sigignore) &
1374 1.14 mycroft NFSINT_SIGMASK))
1375 1.14 mycroft return (EINTR);
1376 1.14 mycroft return (0);
1377 1.14 mycroft }
1378 1.1 cgd
1379 1.1 cgd /*
1380 1.14 mycroft * Lock a socket against others.
1381 1.14 mycroft * Necessary for STREAM sockets to ensure you get an entire rpc request/reply
1382 1.14 mycroft * and also to avoid race conditions between the processes with nfs requests
1383 1.14 mycroft * in progress when a reconnect is necessary.
1384 1.1 cgd */
1385 1.23 christos int
1386 1.14 mycroft nfs_sndlock(flagp, rep)
1387 1.14 mycroft register int *flagp;
1388 1.14 mycroft struct nfsreq *rep;
1389 1.14 mycroft {
1390 1.14 mycroft struct proc *p;
1391 1.14 mycroft int slpflag = 0, slptimeo = 0;
1392 1.14 mycroft
1393 1.14 mycroft if (rep) {
1394 1.14 mycroft p = rep->r_procp;
1395 1.14 mycroft if (rep->r_nmp->nm_flag & NFSMNT_INT)
1396 1.14 mycroft slpflag = PCATCH;
1397 1.14 mycroft } else
1398 1.14 mycroft p = (struct proc *)0;
1399 1.14 mycroft while (*flagp & NFSMNT_SNDLOCK) {
1400 1.14 mycroft if (nfs_sigintr(rep->r_nmp, rep, p))
1401 1.14 mycroft return (EINTR);
1402 1.14 mycroft *flagp |= NFSMNT_WANTSND;
1403 1.14 mycroft (void) tsleep((caddr_t)flagp, slpflag | (PZERO - 1), "nfsndlck",
1404 1.14 mycroft slptimeo);
1405 1.14 mycroft if (slpflag == PCATCH) {
1406 1.14 mycroft slpflag = 0;
1407 1.14 mycroft slptimeo = 2 * hz;
1408 1.14 mycroft }
1409 1.14 mycroft }
1410 1.14 mycroft *flagp |= NFSMNT_SNDLOCK;
1411 1.14 mycroft return (0);
1412 1.14 mycroft }
1413 1.1 cgd
1414 1.14 mycroft /*
1415 1.14 mycroft * Unlock the stream socket for others.
1416 1.14 mycroft */
1417 1.14 mycroft void
1418 1.14 mycroft nfs_sndunlock(flagp)
1419 1.14 mycroft register int *flagp;
1420 1.1 cgd {
1421 1.1 cgd
1422 1.14 mycroft if ((*flagp & NFSMNT_SNDLOCK) == 0)
1423 1.14 mycroft panic("nfs sndunlock");
1424 1.14 mycroft *flagp &= ~NFSMNT_SNDLOCK;
1425 1.14 mycroft if (*flagp & NFSMNT_WANTSND) {
1426 1.14 mycroft *flagp &= ~NFSMNT_WANTSND;
1427 1.14 mycroft wakeup((caddr_t)flagp);
1428 1.1 cgd }
1429 1.14 mycroft }
1430 1.14 mycroft
1431 1.23 christos int
1432 1.14 mycroft nfs_rcvlock(rep)
1433 1.14 mycroft register struct nfsreq *rep;
1434 1.14 mycroft {
1435 1.14 mycroft register int *flagp = &rep->r_nmp->nm_flag;
1436 1.14 mycroft int slpflag, slptimeo = 0;
1437 1.14 mycroft
1438 1.14 mycroft if (*flagp & NFSMNT_INT)
1439 1.14 mycroft slpflag = PCATCH;
1440 1.14 mycroft else
1441 1.14 mycroft slpflag = 0;
1442 1.14 mycroft while (*flagp & NFSMNT_RCVLOCK) {
1443 1.14 mycroft if (nfs_sigintr(rep->r_nmp, rep, rep->r_procp))
1444 1.14 mycroft return (EINTR);
1445 1.14 mycroft *flagp |= NFSMNT_WANTRCV;
1446 1.14 mycroft (void) tsleep((caddr_t)flagp, slpflag | (PZERO - 1), "nfsrcvlk",
1447 1.14 mycroft slptimeo);
1448 1.14 mycroft if (slpflag == PCATCH) {
1449 1.14 mycroft slpflag = 0;
1450 1.14 mycroft slptimeo = 2 * hz;
1451 1.1 cgd }
1452 1.1 cgd }
1453 1.14 mycroft *flagp |= NFSMNT_RCVLOCK;
1454 1.14 mycroft return (0);
1455 1.14 mycroft }
1456 1.14 mycroft
1457 1.14 mycroft /*
1458 1.14 mycroft * Unlock the stream socket for others.
1459 1.14 mycroft */
1460 1.14 mycroft void
1461 1.14 mycroft nfs_rcvunlock(flagp)
1462 1.14 mycroft register int *flagp;
1463 1.14 mycroft {
1464 1.14 mycroft
1465 1.14 mycroft if ((*flagp & NFSMNT_RCVLOCK) == 0)
1466 1.14 mycroft panic("nfs rcvunlock");
1467 1.14 mycroft *flagp &= ~NFSMNT_RCVLOCK;
1468 1.14 mycroft if (*flagp & NFSMNT_WANTRCV) {
1469 1.14 mycroft *flagp &= ~NFSMNT_WANTRCV;
1470 1.14 mycroft wakeup((caddr_t)flagp);
1471 1.14 mycroft }
1472 1.1 cgd }
1473 1.1 cgd
1474 1.14 mycroft /*
1475 1.14 mycroft * Check for badly aligned mbuf data areas and
1476 1.14 mycroft * realign data in an mbuf list by copying the data areas up, as required.
1477 1.14 mycroft */
1478 1.14 mycroft void
1479 1.14 mycroft nfs_realign(m, hsiz)
1480 1.14 mycroft register struct mbuf *m;
1481 1.14 mycroft int hsiz;
1482 1.1 cgd {
1483 1.14 mycroft register struct mbuf *m2;
1484 1.14 mycroft register int siz, mlen, olen;
1485 1.14 mycroft register caddr_t tcp, fcp;
1486 1.14 mycroft struct mbuf *mnew;
1487 1.1 cgd
1488 1.14 mycroft while (m) {
1489 1.14 mycroft /*
1490 1.14 mycroft * This never happens for UDP, rarely happens for TCP
1491 1.14 mycroft * but frequently happens for iso transport.
1492 1.14 mycroft */
1493 1.22 cgd if ((m->m_len & 0x3) || (mtod(m, long) & 0x3)) {
1494 1.14 mycroft olen = m->m_len;
1495 1.14 mycroft fcp = mtod(m, caddr_t);
1496 1.22 cgd if ((long)fcp & 0x3) {
1497 1.14 mycroft m->m_flags &= ~M_PKTHDR;
1498 1.14 mycroft if (m->m_flags & M_EXT)
1499 1.14 mycroft m->m_data = m->m_ext.ext_buf +
1500 1.14 mycroft ((m->m_ext.ext_size - olen) & ~0x3);
1501 1.14 mycroft else
1502 1.14 mycroft m->m_data = m->m_dat;
1503 1.14 mycroft }
1504 1.14 mycroft m->m_len = 0;
1505 1.14 mycroft tcp = mtod(m, caddr_t);
1506 1.14 mycroft mnew = m;
1507 1.14 mycroft m2 = m->m_next;
1508 1.14 mycroft
1509 1.14 mycroft /*
1510 1.14 mycroft * If possible, only put the first invariant part
1511 1.14 mycroft * of the RPC header in the first mbuf.
1512 1.14 mycroft */
1513 1.14 mycroft mlen = M_TRAILINGSPACE(m);
1514 1.14 mycroft if (olen <= hsiz && mlen > hsiz)
1515 1.14 mycroft mlen = hsiz;
1516 1.14 mycroft
1517 1.14 mycroft /*
1518 1.14 mycroft * Loop through the mbuf list consolidating data.
1519 1.14 mycroft */
1520 1.14 mycroft while (m) {
1521 1.14 mycroft while (olen > 0) {
1522 1.14 mycroft if (mlen == 0) {
1523 1.14 mycroft m2->m_flags &= ~M_PKTHDR;
1524 1.14 mycroft if (m2->m_flags & M_EXT)
1525 1.14 mycroft m2->m_data = m2->m_ext.ext_buf;
1526 1.14 mycroft else
1527 1.14 mycroft m2->m_data = m2->m_dat;
1528 1.14 mycroft m2->m_len = 0;
1529 1.14 mycroft mlen = M_TRAILINGSPACE(m2);
1530 1.14 mycroft tcp = mtod(m2, caddr_t);
1531 1.14 mycroft mnew = m2;
1532 1.14 mycroft m2 = m2->m_next;
1533 1.14 mycroft }
1534 1.14 mycroft siz = min(mlen, olen);
1535 1.14 mycroft if (tcp != fcp)
1536 1.14 mycroft bcopy(fcp, tcp, siz);
1537 1.14 mycroft mnew->m_len += siz;
1538 1.14 mycroft mlen -= siz;
1539 1.14 mycroft olen -= siz;
1540 1.14 mycroft tcp += siz;
1541 1.14 mycroft fcp += siz;
1542 1.1 cgd }
1543 1.14 mycroft m = m->m_next;
1544 1.14 mycroft if (m) {
1545 1.14 mycroft olen = m->m_len;
1546 1.14 mycroft fcp = mtod(m, caddr_t);
1547 1.14 mycroft }
1548 1.14 mycroft }
1549 1.14 mycroft
1550 1.14 mycroft /*
1551 1.14 mycroft * Finally, set m_len == 0 for any trailing mbufs that have
1552 1.14 mycroft * been copied out of.
1553 1.14 mycroft */
1554 1.14 mycroft while (m2) {
1555 1.14 mycroft m2->m_len = 0;
1556 1.14 mycroft m2 = m2->m_next;
1557 1.1 cgd }
1558 1.14 mycroft return;
1559 1.14 mycroft }
1560 1.14 mycroft m = m->m_next;
1561 1.1 cgd }
1562 1.1 cgd }
1563 1.1 cgd
1564 1.1 cgd /*
1565 1.14 mycroft * Parse an RPC request
1566 1.14 mycroft * - verify it
1567 1.14 mycroft * - fill in the cred struct.
1568 1.1 cgd */
1569 1.23 christos int
1570 1.24 fvdl nfs_getreq(nd, nfsd, has_header)
1571 1.24 fvdl register struct nfsrv_descript *nd;
1572 1.24 fvdl struct nfsd *nfsd;
1573 1.14 mycroft int has_header;
1574 1.1 cgd {
1575 1.14 mycroft register int len, i;
1576 1.22 cgd register u_int32_t *tl;
1577 1.22 cgd register int32_t t1;
1578 1.14 mycroft struct uio uio;
1579 1.14 mycroft struct iovec iov;
1580 1.24 fvdl caddr_t dpos, cp2, cp;
1581 1.22 cgd u_int32_t nfsvers, auth_type;
1582 1.24 fvdl uid_t nickuid;
1583 1.24 fvdl int error = 0, nqnfs = 0, ticklen;
1584 1.14 mycroft struct mbuf *mrep, *md;
1585 1.24 fvdl register struct nfsuid *nuidp;
1586 1.24 fvdl struct timeval tvin, tvout;
1587 1.14 mycroft
1588 1.14 mycroft mrep = nd->nd_mrep;
1589 1.14 mycroft md = nd->nd_md;
1590 1.14 mycroft dpos = nd->nd_dpos;
1591 1.14 mycroft if (has_header) {
1592 1.24 fvdl nfsm_dissect(tl, u_int32_t *, 10 * NFSX_UNSIGNED);
1593 1.24 fvdl nd->nd_retxid = fxdr_unsigned(u_int32_t, *tl++);
1594 1.14 mycroft if (*tl++ != rpc_call) {
1595 1.14 mycroft m_freem(mrep);
1596 1.14 mycroft return (EBADRPC);
1597 1.14 mycroft }
1598 1.24 fvdl } else
1599 1.24 fvdl nfsm_dissect(tl, u_int32_t *, 8 * NFSX_UNSIGNED);
1600 1.14 mycroft nd->nd_repstat = 0;
1601 1.24 fvdl nd->nd_flag = 0;
1602 1.14 mycroft if (*tl++ != rpc_vers) {
1603 1.14 mycroft nd->nd_repstat = ERPCMISMATCH;
1604 1.14 mycroft nd->nd_procnum = NFSPROC_NOOP;
1605 1.14 mycroft return (0);
1606 1.14 mycroft }
1607 1.14 mycroft if (*tl != nfs_prog) {
1608 1.24 fvdl if (*tl == nqnfs_prog)
1609 1.14 mycroft nqnfs++;
1610 1.24 fvdl else {
1611 1.14 mycroft nd->nd_repstat = EPROGUNAVAIL;
1612 1.14 mycroft nd->nd_procnum = NFSPROC_NOOP;
1613 1.14 mycroft return (0);
1614 1.14 mycroft }
1615 1.14 mycroft }
1616 1.14 mycroft tl++;
1617 1.24 fvdl nfsvers = fxdr_unsigned(u_int32_t, *tl++);
1618 1.24 fvdl if (((nfsvers < NFS_VER2 || nfsvers > NFS_VER3) && !nqnfs) ||
1619 1.24 fvdl (nfsvers != NQNFS_VER3 && nqnfs)) {
1620 1.14 mycroft nd->nd_repstat = EPROGMISMATCH;
1621 1.14 mycroft nd->nd_procnum = NFSPROC_NOOP;
1622 1.14 mycroft return (0);
1623 1.14 mycroft }
1624 1.24 fvdl if (nqnfs)
1625 1.24 fvdl nd->nd_flag = (ND_NFSV3 | ND_NQNFS);
1626 1.24 fvdl else if (nfsvers == NFS_VER3)
1627 1.24 fvdl nd->nd_flag = ND_NFSV3;
1628 1.24 fvdl nd->nd_procnum = fxdr_unsigned(u_int32_t, *tl++);
1629 1.14 mycroft if (nd->nd_procnum == NFSPROC_NULL)
1630 1.14 mycroft return (0);
1631 1.14 mycroft if (nd->nd_procnum >= NFS_NPROCS ||
1632 1.24 fvdl (!nqnfs && nd->nd_procnum >= NQNFSPROC_GETLEASE) ||
1633 1.24 fvdl (!nd->nd_flag && nd->nd_procnum > NFSV2PROC_STATFS)) {
1634 1.14 mycroft nd->nd_repstat = EPROCUNAVAIL;
1635 1.14 mycroft nd->nd_procnum = NFSPROC_NOOP;
1636 1.1 cgd return (0);
1637 1.14 mycroft }
1638 1.24 fvdl if ((nd->nd_flag & ND_NFSV3) == 0)
1639 1.24 fvdl nd->nd_procnum = nfsv3_procid[nd->nd_procnum];
1640 1.14 mycroft auth_type = *tl++;
1641 1.14 mycroft len = fxdr_unsigned(int, *tl++);
1642 1.14 mycroft if (len < 0 || len > RPCAUTH_MAXSIZ) {
1643 1.14 mycroft m_freem(mrep);
1644 1.14 mycroft return (EBADRPC);
1645 1.14 mycroft }
1646 1.14 mycroft
1647 1.24 fvdl nd->nd_flag &= ~ND_KERBAUTH;
1648 1.14 mycroft /*
1649 1.14 mycroft * Handle auth_unix or auth_kerb.
1650 1.14 mycroft */
1651 1.14 mycroft if (auth_type == rpc_auth_unix) {
1652 1.14 mycroft len = fxdr_unsigned(int, *++tl);
1653 1.14 mycroft if (len < 0 || len > NFS_MAXNAMLEN) {
1654 1.14 mycroft m_freem(mrep);
1655 1.14 mycroft return (EBADRPC);
1656 1.14 mycroft }
1657 1.14 mycroft nfsm_adv(nfsm_rndup(len));
1658 1.24 fvdl nfsm_dissect(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
1659 1.24 fvdl bzero((caddr_t)&nd->nd_cr, sizeof (struct ucred));
1660 1.24 fvdl nd->nd_cr.cr_ref = 1;
1661 1.14 mycroft nd->nd_cr.cr_uid = fxdr_unsigned(uid_t, *tl++);
1662 1.14 mycroft nd->nd_cr.cr_gid = fxdr_unsigned(gid_t, *tl++);
1663 1.14 mycroft len = fxdr_unsigned(int, *tl);
1664 1.14 mycroft if (len < 0 || len > RPCAUTH_UNIXGIDS) {
1665 1.14 mycroft m_freem(mrep);
1666 1.14 mycroft return (EBADRPC);
1667 1.14 mycroft }
1668 1.24 fvdl nfsm_dissect(tl, u_int32_t *, (len + 2) * NFSX_UNSIGNED);
1669 1.18 mycroft for (i = 0; i < len; i++)
1670 1.24 fvdl if (i < NGROUPS)
1671 1.24 fvdl nd->nd_cr.cr_groups[i] = fxdr_unsigned(gid_t, *tl++);
1672 1.24 fvdl else
1673 1.24 fvdl tl++;
1674 1.19 mycroft nd->nd_cr.cr_ngroups = (len > NGROUPS) ? NGROUPS : len;
1675 1.24 fvdl if (nd->nd_cr.cr_ngroups > 1)
1676 1.24 fvdl nfsrvw_sort(nd->nd_cr.cr_groups, nd->nd_cr.cr_ngroups);
1677 1.24 fvdl len = fxdr_unsigned(int, *++tl);
1678 1.24 fvdl if (len < 0 || len > RPCAUTH_MAXSIZ) {
1679 1.14 mycroft m_freem(mrep);
1680 1.14 mycroft return (EBADRPC);
1681 1.14 mycroft }
1682 1.24 fvdl if (len > 0)
1683 1.24 fvdl nfsm_adv(nfsm_rndup(len));
1684 1.24 fvdl } else if (auth_type == rpc_auth_kerb) {
1685 1.24 fvdl switch (fxdr_unsigned(int, *tl++)) {
1686 1.24 fvdl case RPCAKN_FULLNAME:
1687 1.24 fvdl ticklen = fxdr_unsigned(int, *tl);
1688 1.24 fvdl *((u_int32_t *)nfsd->nfsd_authstr) = *tl;
1689 1.24 fvdl uio.uio_resid = nfsm_rndup(ticklen) + NFSX_UNSIGNED;
1690 1.24 fvdl nfsd->nfsd_authlen = uio.uio_resid + NFSX_UNSIGNED;
1691 1.24 fvdl if (uio.uio_resid > (len - 2 * NFSX_UNSIGNED)) {
1692 1.24 fvdl m_freem(mrep);
1693 1.24 fvdl return (EBADRPC);
1694 1.24 fvdl }
1695 1.24 fvdl uio.uio_offset = 0;
1696 1.24 fvdl uio.uio_iov = &iov;
1697 1.24 fvdl uio.uio_iovcnt = 1;
1698 1.24 fvdl uio.uio_segflg = UIO_SYSSPACE;
1699 1.24 fvdl iov.iov_base = (caddr_t)&nfsd->nfsd_authstr[4];
1700 1.24 fvdl iov.iov_len = RPCAUTH_MAXSIZ - 4;
1701 1.24 fvdl nfsm_mtouio(&uio, uio.uio_resid);
1702 1.24 fvdl nfsm_dissect(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
1703 1.24 fvdl if (*tl++ != rpc_auth_kerb ||
1704 1.24 fvdl fxdr_unsigned(int, *tl) != 4 * NFSX_UNSIGNED) {
1705 1.31 christos printf("Bad kerb verifier\n");
1706 1.24 fvdl nd->nd_repstat = (NFSERR_AUTHERR|AUTH_BADVERF);
1707 1.24 fvdl nd->nd_procnum = NFSPROC_NOOP;
1708 1.24 fvdl return (0);
1709 1.24 fvdl }
1710 1.24 fvdl nfsm_dissect(cp, caddr_t, 4 * NFSX_UNSIGNED);
1711 1.24 fvdl tl = (u_int32_t *)cp;
1712 1.24 fvdl if (fxdr_unsigned(int, *tl) != RPCAKN_FULLNAME) {
1713 1.31 christos printf("Not fullname kerb verifier\n");
1714 1.24 fvdl nd->nd_repstat = (NFSERR_AUTHERR|AUTH_BADVERF);
1715 1.24 fvdl nd->nd_procnum = NFSPROC_NOOP;
1716 1.24 fvdl return (0);
1717 1.24 fvdl }
1718 1.24 fvdl cp += NFSX_UNSIGNED;
1719 1.24 fvdl bcopy(cp, nfsd->nfsd_verfstr, 3 * NFSX_UNSIGNED);
1720 1.24 fvdl nfsd->nfsd_verflen = 3 * NFSX_UNSIGNED;
1721 1.24 fvdl nd->nd_flag |= ND_KERBFULL;
1722 1.24 fvdl nfsd->nfsd_flag |= NFSD_NEEDAUTH;
1723 1.24 fvdl break;
1724 1.24 fvdl case RPCAKN_NICKNAME:
1725 1.24 fvdl if (len != 2 * NFSX_UNSIGNED) {
1726 1.31 christos printf("Kerb nickname short\n");
1727 1.24 fvdl nd->nd_repstat = (NFSERR_AUTHERR|AUTH_BADCRED);
1728 1.24 fvdl nd->nd_procnum = NFSPROC_NOOP;
1729 1.24 fvdl return (0);
1730 1.24 fvdl }
1731 1.24 fvdl nickuid = fxdr_unsigned(uid_t, *tl);
1732 1.24 fvdl nfsm_dissect(tl, u_int32_t *, 2 * NFSX_UNSIGNED);
1733 1.24 fvdl if (*tl++ != rpc_auth_kerb ||
1734 1.24 fvdl fxdr_unsigned(int, *tl) != 3 * NFSX_UNSIGNED) {
1735 1.31 christos printf("Kerb nick verifier bad\n");
1736 1.24 fvdl nd->nd_repstat = (NFSERR_AUTHERR|AUTH_BADVERF);
1737 1.24 fvdl nd->nd_procnum = NFSPROC_NOOP;
1738 1.24 fvdl return (0);
1739 1.24 fvdl }
1740 1.24 fvdl nfsm_dissect(tl, u_int32_t *, 3 * NFSX_UNSIGNED);
1741 1.24 fvdl tvin.tv_sec = *tl++;
1742 1.24 fvdl tvin.tv_usec = *tl;
1743 1.24 fvdl
1744 1.24 fvdl for (nuidp = NUIDHASH(nfsd->nfsd_slp,nickuid)->lh_first;
1745 1.24 fvdl nuidp != 0; nuidp = nuidp->nu_hash.le_next) {
1746 1.24 fvdl if (nuidp->nu_cr.cr_uid == nickuid &&
1747 1.24 fvdl (!nd->nd_nam2 ||
1748 1.24 fvdl netaddr_match(NU_NETFAM(nuidp),
1749 1.24 fvdl &nuidp->nu_haddr, nd->nd_nam2)))
1750 1.24 fvdl break;
1751 1.24 fvdl }
1752 1.24 fvdl if (!nuidp) {
1753 1.24 fvdl nd->nd_repstat =
1754 1.24 fvdl (NFSERR_AUTHERR|AUTH_REJECTCRED);
1755 1.24 fvdl nd->nd_procnum = NFSPROC_NOOP;
1756 1.24 fvdl return (0);
1757 1.24 fvdl }
1758 1.24 fvdl
1759 1.24 fvdl /*
1760 1.24 fvdl * Now, decrypt the timestamp using the session key
1761 1.24 fvdl * and validate it.
1762 1.24 fvdl */
1763 1.24 fvdl #ifdef NFSKERB
1764 1.24 fvdl XXX
1765 1.24 fvdl #endif
1766 1.14 mycroft
1767 1.24 fvdl tvout.tv_sec = fxdr_unsigned(long, tvout.tv_sec);
1768 1.24 fvdl tvout.tv_usec = fxdr_unsigned(long, tvout.tv_usec);
1769 1.24 fvdl if (nuidp->nu_expire < time.tv_sec ||
1770 1.24 fvdl nuidp->nu_timestamp.tv_sec > tvout.tv_sec ||
1771 1.24 fvdl (nuidp->nu_timestamp.tv_sec == tvout.tv_sec &&
1772 1.24 fvdl nuidp->nu_timestamp.tv_usec > tvout.tv_usec)) {
1773 1.24 fvdl nuidp->nu_expire = 0;
1774 1.24 fvdl nd->nd_repstat =
1775 1.24 fvdl (NFSERR_AUTHERR|AUTH_REJECTVERF);
1776 1.24 fvdl nd->nd_procnum = NFSPROC_NOOP;
1777 1.24 fvdl return (0);
1778 1.24 fvdl }
1779 1.24 fvdl nfsrv_setcred(&nuidp->nu_cr, &nd->nd_cr);
1780 1.24 fvdl nd->nd_flag |= ND_KERBNICK;
1781 1.24 fvdl };
1782 1.24 fvdl } else {
1783 1.24 fvdl nd->nd_repstat = (NFSERR_AUTHERR | AUTH_REJECTCRED);
1784 1.24 fvdl nd->nd_procnum = NFSPROC_NOOP;
1785 1.24 fvdl return (0);
1786 1.14 mycroft }
1787 1.14 mycroft
1788 1.14 mycroft /*
1789 1.14 mycroft * For nqnfs, get piggybacked lease request.
1790 1.14 mycroft */
1791 1.14 mycroft if (nqnfs && nd->nd_procnum != NQNFSPROC_EVICTED) {
1792 1.22 cgd nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
1793 1.24 fvdl nd->nd_flag |= fxdr_unsigned(int, *tl);
1794 1.24 fvdl if (nd->nd_flag & ND_LEASE) {
1795 1.22 cgd nfsm_dissect(tl, u_int32_t *, NFSX_UNSIGNED);
1796 1.24 fvdl nd->nd_duration = fxdr_unsigned(u_int32_t, *tl);
1797 1.14 mycroft } else
1798 1.14 mycroft nd->nd_duration = NQ_MINLEASE;
1799 1.24 fvdl } else
1800 1.14 mycroft nd->nd_duration = NQ_MINLEASE;
1801 1.14 mycroft nd->nd_md = md;
1802 1.14 mycroft nd->nd_dpos = dpos;
1803 1.14 mycroft return (0);
1804 1.14 mycroft nfsmout:
1805 1.14 mycroft return (error);
1806 1.1 cgd }
1807 1.1 cgd
1808 1.24 fvdl int
1809 1.1 cgd nfs_msg(p, server, msg)
1810 1.1 cgd struct proc *p;
1811 1.1 cgd char *server, *msg;
1812 1.1 cgd {
1813 1.1 cgd tpr_t tpr;
1814 1.1 cgd
1815 1.1 cgd if (p)
1816 1.1 cgd tpr = tprintf_open(p);
1817 1.1 cgd else
1818 1.1 cgd tpr = NULL;
1819 1.1 cgd tprintf(tpr, "nfs server %s: %s\n", server, msg);
1820 1.1 cgd tprintf_close(tpr);
1821 1.24 fvdl return (0);
1822 1.1 cgd }
1823 1.1 cgd
1824 1.14 mycroft #ifdef NFSSERVER
1825 1.24 fvdl int (*nfsrv3_procs[NFS_NPROCS]) __P((struct nfsrv_descript *,
1826 1.24 fvdl struct nfssvc_sock *, struct proc *,
1827 1.23 christos struct mbuf **)) = {
1828 1.14 mycroft nfsrv_null,
1829 1.14 mycroft nfsrv_getattr,
1830 1.14 mycroft nfsrv_setattr,
1831 1.14 mycroft nfsrv_lookup,
1832 1.24 fvdl nfsrv3_access,
1833 1.14 mycroft nfsrv_readlink,
1834 1.14 mycroft nfsrv_read,
1835 1.14 mycroft nfsrv_write,
1836 1.14 mycroft nfsrv_create,
1837 1.24 fvdl nfsrv_mkdir,
1838 1.24 fvdl nfsrv_symlink,
1839 1.24 fvdl nfsrv_mknod,
1840 1.14 mycroft nfsrv_remove,
1841 1.24 fvdl nfsrv_rmdir,
1842 1.14 mycroft nfsrv_rename,
1843 1.14 mycroft nfsrv_link,
1844 1.14 mycroft nfsrv_readdir,
1845 1.24 fvdl nfsrv_readdirplus,
1846 1.14 mycroft nfsrv_statfs,
1847 1.24 fvdl nfsrv_fsinfo,
1848 1.24 fvdl nfsrv_pathconf,
1849 1.24 fvdl nfsrv_commit,
1850 1.14 mycroft nqnfsrv_getlease,
1851 1.14 mycroft nqnfsrv_vacated,
1852 1.14 mycroft nfsrv_noop,
1853 1.24 fvdl nfsrv_noop
1854 1.14 mycroft };
1855 1.14 mycroft
1856 1.1 cgd /*
1857 1.14 mycroft * Socket upcall routine for the nfsd sockets.
1858 1.14 mycroft * The caddr_t arg is a pointer to the "struct nfssvc_sock".
1859 1.14 mycroft * Essentially do as much as possible non-blocking, else punt and it will
1860 1.14 mycroft * be called with M_WAIT from an nfsd.
1861 1.1 cgd */
1862 1.14 mycroft void
1863 1.14 mycroft nfsrv_rcv(so, arg, waitflag)
1864 1.14 mycroft struct socket *so;
1865 1.14 mycroft caddr_t arg;
1866 1.14 mycroft int waitflag;
1867 1.1 cgd {
1868 1.14 mycroft register struct nfssvc_sock *slp = (struct nfssvc_sock *)arg;
1869 1.14 mycroft register struct mbuf *m;
1870 1.14 mycroft struct mbuf *mp, *nam;
1871 1.14 mycroft struct uio auio;
1872 1.14 mycroft int flags, error;
1873 1.1 cgd
1874 1.14 mycroft if ((slp->ns_flag & SLP_VALID) == 0)
1875 1.14 mycroft return;
1876 1.14 mycroft #ifdef notdef
1877 1.14 mycroft /*
1878 1.14 mycroft * Define this to test for nfsds handling this under heavy load.
1879 1.14 mycroft */
1880 1.14 mycroft if (waitflag == M_DONTWAIT) {
1881 1.14 mycroft slp->ns_flag |= SLP_NEEDQ; goto dorecs;
1882 1.1 cgd }
1883 1.14 mycroft #endif
1884 1.14 mycroft auio.uio_procp = NULL;
1885 1.14 mycroft if (so->so_type == SOCK_STREAM) {
1886 1.14 mycroft /*
1887 1.14 mycroft * If there are already records on the queue, defer soreceive()
1888 1.14 mycroft * to an nfsd so that there is feedback to the TCP layer that
1889 1.14 mycroft * the nfs servers are heavily loaded.
1890 1.14 mycroft */
1891 1.14 mycroft if (slp->ns_rec && waitflag == M_DONTWAIT) {
1892 1.14 mycroft slp->ns_flag |= SLP_NEEDQ;
1893 1.14 mycroft goto dorecs;
1894 1.14 mycroft }
1895 1.14 mycroft
1896 1.14 mycroft /*
1897 1.14 mycroft * Do soreceive().
1898 1.14 mycroft */
1899 1.14 mycroft auio.uio_resid = 1000000000;
1900 1.14 mycroft flags = MSG_DONTWAIT;
1901 1.14 mycroft error = soreceive(so, &nam, &auio, &mp, (struct mbuf **)0, &flags);
1902 1.14 mycroft if (error || mp == (struct mbuf *)0) {
1903 1.14 mycroft if (error == EWOULDBLOCK)
1904 1.14 mycroft slp->ns_flag |= SLP_NEEDQ;
1905 1.14 mycroft else
1906 1.14 mycroft slp->ns_flag |= SLP_DISCONN;
1907 1.14 mycroft goto dorecs;
1908 1.14 mycroft }
1909 1.14 mycroft m = mp;
1910 1.14 mycroft if (slp->ns_rawend) {
1911 1.14 mycroft slp->ns_rawend->m_next = m;
1912 1.14 mycroft slp->ns_cc += 1000000000 - auio.uio_resid;
1913 1.14 mycroft } else {
1914 1.14 mycroft slp->ns_raw = m;
1915 1.14 mycroft slp->ns_cc = 1000000000 - auio.uio_resid;
1916 1.14 mycroft }
1917 1.14 mycroft while (m->m_next)
1918 1.14 mycroft m = m->m_next;
1919 1.14 mycroft slp->ns_rawend = m;
1920 1.14 mycroft
1921 1.14 mycroft /*
1922 1.14 mycroft * Now try and parse record(s) out of the raw stream data.
1923 1.14 mycroft */
1924 1.24 fvdl error = nfsrv_getstream(slp, waitflag);
1925 1.24 fvdl if (error) {
1926 1.14 mycroft if (error == EPERM)
1927 1.14 mycroft slp->ns_flag |= SLP_DISCONN;
1928 1.14 mycroft else
1929 1.14 mycroft slp->ns_flag |= SLP_NEEDQ;
1930 1.14 mycroft }
1931 1.14 mycroft } else {
1932 1.14 mycroft do {
1933 1.14 mycroft auio.uio_resid = 1000000000;
1934 1.14 mycroft flags = MSG_DONTWAIT;
1935 1.14 mycroft error = soreceive(so, &nam, &auio, &mp,
1936 1.14 mycroft (struct mbuf **)0, &flags);
1937 1.14 mycroft if (mp) {
1938 1.14 mycroft nfs_realign(mp, 10 * NFSX_UNSIGNED);
1939 1.14 mycroft if (nam) {
1940 1.14 mycroft m = nam;
1941 1.14 mycroft m->m_next = mp;
1942 1.14 mycroft } else
1943 1.14 mycroft m = mp;
1944 1.14 mycroft if (slp->ns_recend)
1945 1.14 mycroft slp->ns_recend->m_nextpkt = m;
1946 1.14 mycroft else
1947 1.14 mycroft slp->ns_rec = m;
1948 1.14 mycroft slp->ns_recend = m;
1949 1.14 mycroft m->m_nextpkt = (struct mbuf *)0;
1950 1.14 mycroft }
1951 1.14 mycroft if (error) {
1952 1.14 mycroft if ((so->so_proto->pr_flags & PR_CONNREQUIRED)
1953 1.14 mycroft && error != EWOULDBLOCK) {
1954 1.14 mycroft slp->ns_flag |= SLP_DISCONN;
1955 1.14 mycroft goto dorecs;
1956 1.14 mycroft }
1957 1.14 mycroft }
1958 1.14 mycroft } while (mp);
1959 1.14 mycroft }
1960 1.14 mycroft
1961 1.14 mycroft /*
1962 1.14 mycroft * Now try and process the request records, non-blocking.
1963 1.14 mycroft */
1964 1.14 mycroft dorecs:
1965 1.14 mycroft if (waitflag == M_DONTWAIT &&
1966 1.14 mycroft (slp->ns_rec || (slp->ns_flag & (SLP_NEEDQ | SLP_DISCONN))))
1967 1.14 mycroft nfsrv_wakenfsd(slp);
1968 1.1 cgd }
1969 1.1 cgd
1970 1.1 cgd /*
1971 1.14 mycroft * Try and extract an RPC request from the mbuf data list received on a
1972 1.14 mycroft * stream socket. The "waitflag" argument indicates whether or not it
1973 1.14 mycroft * can sleep.
1974 1.14 mycroft */
1975 1.23 christos int
1976 1.14 mycroft nfsrv_getstream(slp, waitflag)
1977 1.14 mycroft register struct nfssvc_sock *slp;
1978 1.14 mycroft int waitflag;
1979 1.1 cgd {
1980 1.24 fvdl register struct mbuf *m, **mpp;
1981 1.14 mycroft register char *cp1, *cp2;
1982 1.14 mycroft register int len;
1983 1.23 christos struct mbuf *om, *m2, *recm = NULL;
1984 1.24 fvdl u_int32_t recmark;
1985 1.1 cgd
1986 1.14 mycroft if (slp->ns_flag & SLP_GETSTREAM)
1987 1.14 mycroft panic("nfs getstream");
1988 1.14 mycroft slp->ns_flag |= SLP_GETSTREAM;
1989 1.14 mycroft for (;;) {
1990 1.14 mycroft if (slp->ns_reclen == 0) {
1991 1.14 mycroft if (slp->ns_cc < NFSX_UNSIGNED) {
1992 1.14 mycroft slp->ns_flag &= ~SLP_GETSTREAM;
1993 1.14 mycroft return (0);
1994 1.14 mycroft }
1995 1.14 mycroft m = slp->ns_raw;
1996 1.14 mycroft if (m->m_len >= NFSX_UNSIGNED) {
1997 1.14 mycroft bcopy(mtod(m, caddr_t), (caddr_t)&recmark, NFSX_UNSIGNED);
1998 1.14 mycroft m->m_data += NFSX_UNSIGNED;
1999 1.14 mycroft m->m_len -= NFSX_UNSIGNED;
2000 1.14 mycroft } else {
2001 1.14 mycroft cp1 = (caddr_t)&recmark;
2002 1.14 mycroft cp2 = mtod(m, caddr_t);
2003 1.14 mycroft while (cp1 < ((caddr_t)&recmark) + NFSX_UNSIGNED) {
2004 1.14 mycroft while (m->m_len == 0) {
2005 1.14 mycroft m = m->m_next;
2006 1.14 mycroft cp2 = mtod(m, caddr_t);
2007 1.14 mycroft }
2008 1.14 mycroft *cp1++ = *cp2++;
2009 1.14 mycroft m->m_data++;
2010 1.14 mycroft m->m_len--;
2011 1.14 mycroft }
2012 1.14 mycroft }
2013 1.14 mycroft slp->ns_cc -= NFSX_UNSIGNED;
2014 1.24 fvdl recmark = ntohl(recmark);
2015 1.24 fvdl slp->ns_reclen = recmark & ~0x80000000;
2016 1.24 fvdl if (recmark & 0x80000000)
2017 1.24 fvdl slp->ns_flag |= SLP_LASTFRAG;
2018 1.24 fvdl else
2019 1.24 fvdl slp->ns_flag &= ~SLP_LASTFRAG;
2020 1.29 fvdl if (slp->ns_reclen > NFS_MAXPACKET) {
2021 1.14 mycroft slp->ns_flag &= ~SLP_GETSTREAM;
2022 1.14 mycroft return (EPERM);
2023 1.14 mycroft }
2024 1.14 mycroft }
2025 1.14 mycroft
2026 1.14 mycroft /*
2027 1.14 mycroft * Now get the record part.
2028 1.14 mycroft */
2029 1.14 mycroft if (slp->ns_cc == slp->ns_reclen) {
2030 1.14 mycroft recm = slp->ns_raw;
2031 1.14 mycroft slp->ns_raw = slp->ns_rawend = (struct mbuf *)0;
2032 1.14 mycroft slp->ns_cc = slp->ns_reclen = 0;
2033 1.14 mycroft } else if (slp->ns_cc > slp->ns_reclen) {
2034 1.14 mycroft len = 0;
2035 1.14 mycroft m = slp->ns_raw;
2036 1.14 mycroft om = (struct mbuf *)0;
2037 1.14 mycroft while (len < slp->ns_reclen) {
2038 1.14 mycroft if ((len + m->m_len) > slp->ns_reclen) {
2039 1.14 mycroft m2 = m_copym(m, 0, slp->ns_reclen - len,
2040 1.14 mycroft waitflag);
2041 1.14 mycroft if (m2) {
2042 1.14 mycroft if (om) {
2043 1.14 mycroft om->m_next = m2;
2044 1.14 mycroft recm = slp->ns_raw;
2045 1.14 mycroft } else
2046 1.14 mycroft recm = m2;
2047 1.14 mycroft m->m_data += slp->ns_reclen - len;
2048 1.14 mycroft m->m_len -= slp->ns_reclen - len;
2049 1.14 mycroft len = slp->ns_reclen;
2050 1.14 mycroft } else {
2051 1.14 mycroft slp->ns_flag &= ~SLP_GETSTREAM;
2052 1.14 mycroft return (EWOULDBLOCK);
2053 1.14 mycroft }
2054 1.14 mycroft } else if ((len + m->m_len) == slp->ns_reclen) {
2055 1.14 mycroft om = m;
2056 1.14 mycroft len += m->m_len;
2057 1.14 mycroft m = m->m_next;
2058 1.14 mycroft recm = slp->ns_raw;
2059 1.14 mycroft om->m_next = (struct mbuf *)0;
2060 1.14 mycroft } else {
2061 1.14 mycroft om = m;
2062 1.14 mycroft len += m->m_len;
2063 1.14 mycroft m = m->m_next;
2064 1.14 mycroft }
2065 1.14 mycroft }
2066 1.14 mycroft slp->ns_raw = m;
2067 1.14 mycroft slp->ns_cc -= len;
2068 1.14 mycroft slp->ns_reclen = 0;
2069 1.14 mycroft } else {
2070 1.14 mycroft slp->ns_flag &= ~SLP_GETSTREAM;
2071 1.14 mycroft return (0);
2072 1.14 mycroft }
2073 1.24 fvdl
2074 1.24 fvdl /*
2075 1.24 fvdl * Accumulate the fragments into a record.
2076 1.24 fvdl */
2077 1.24 fvdl mpp = &slp->ns_frag;
2078 1.24 fvdl while (*mpp)
2079 1.24 fvdl mpp = &((*mpp)->m_next);
2080 1.24 fvdl *mpp = recm;
2081 1.24 fvdl if (slp->ns_flag & SLP_LASTFRAG) {
2082 1.24 fvdl nfs_realign(slp->ns_frag, 10 * NFSX_UNSIGNED);
2083 1.24 fvdl if (slp->ns_recend)
2084 1.24 fvdl slp->ns_recend->m_nextpkt = slp->ns_frag;
2085 1.24 fvdl else
2086 1.24 fvdl slp->ns_rec = slp->ns_frag;
2087 1.24 fvdl slp->ns_recend = slp->ns_frag;
2088 1.24 fvdl slp->ns_frag = (struct mbuf *)0;
2089 1.24 fvdl }
2090 1.1 cgd }
2091 1.1 cgd }
2092 1.1 cgd
2093 1.1 cgd /*
2094 1.14 mycroft * Parse an RPC header.
2095 1.14 mycroft */
2096 1.23 christos int
2097 1.24 fvdl nfsrv_dorec(slp, nfsd, ndp)
2098 1.14 mycroft register struct nfssvc_sock *slp;
2099 1.24 fvdl struct nfsd *nfsd;
2100 1.24 fvdl struct nfsrv_descript **ndp;
2101 1.14 mycroft {
2102 1.24 fvdl register struct mbuf *m, *nam;
2103 1.24 fvdl register struct nfsrv_descript *nd;
2104 1.14 mycroft int error;
2105 1.1 cgd
2106 1.24 fvdl *ndp = NULL;
2107 1.14 mycroft if ((slp->ns_flag & SLP_VALID) == 0 ||
2108 1.14 mycroft (m = slp->ns_rec) == (struct mbuf *)0)
2109 1.14 mycroft return (ENOBUFS);
2110 1.24 fvdl slp->ns_rec = m->m_nextpkt;
2111 1.24 fvdl if (slp->ns_rec)
2112 1.14 mycroft m->m_nextpkt = (struct mbuf *)0;
2113 1.14 mycroft else
2114 1.14 mycroft slp->ns_recend = (struct mbuf *)0;
2115 1.14 mycroft if (m->m_type == MT_SONAME) {
2116 1.24 fvdl nam = m;
2117 1.24 fvdl m = m->m_next;
2118 1.24 fvdl nam->m_next = NULL;
2119 1.24 fvdl } else
2120 1.24 fvdl nam = NULL;
2121 1.24 fvdl MALLOC(nd, struct nfsrv_descript *, sizeof (struct nfsrv_descript),
2122 1.24 fvdl M_NFSRVDESC, M_WAITOK);
2123 1.24 fvdl nd->nd_md = nd->nd_mrep = m;
2124 1.24 fvdl nd->nd_nam2 = nam;
2125 1.24 fvdl nd->nd_dpos = mtod(m, caddr_t);
2126 1.24 fvdl error = nfs_getreq(nd, nfsd, TRUE);
2127 1.24 fvdl if (error) {
2128 1.24 fvdl m_freem(nam);
2129 1.24 fvdl free((caddr_t)nd, M_NFSRVDESC);
2130 1.14 mycroft return (error);
2131 1.14 mycroft }
2132 1.24 fvdl *ndp = nd;
2133 1.24 fvdl nfsd->nfsd_nd = nd;
2134 1.1 cgd return (0);
2135 1.1 cgd }
2136 1.1 cgd
2137 1.24 fvdl
2138 1.1 cgd /*
2139 1.14 mycroft * Search for a sleeping nfsd and wake it up.
2140 1.14 mycroft * SIDE EFFECT: If none found, set NFSD_CHECKSLP flag, so that one of the
2141 1.14 mycroft * running nfsds will go look for the work in the nfssvc_sock list.
2142 1.14 mycroft */
2143 1.14 mycroft void
2144 1.14 mycroft nfsrv_wakenfsd(slp)
2145 1.14 mycroft struct nfssvc_sock *slp;
2146 1.14 mycroft {
2147 1.17 mycroft register struct nfsd *nd;
2148 1.14 mycroft
2149 1.14 mycroft if ((slp->ns_flag & SLP_VALID) == 0)
2150 1.14 mycroft return;
2151 1.24 fvdl for (nd = nfsd_head.tqh_first; nd != 0; nd = nd->nfsd_chain.tqe_next) {
2152 1.24 fvdl if (nd->nfsd_flag & NFSD_WAITING) {
2153 1.24 fvdl nd->nfsd_flag &= ~NFSD_WAITING;
2154 1.24 fvdl if (nd->nfsd_slp)
2155 1.14 mycroft panic("nfsd wakeup");
2156 1.14 mycroft slp->ns_sref++;
2157 1.24 fvdl nd->nfsd_slp = slp;
2158 1.14 mycroft wakeup((caddr_t)nd);
2159 1.14 mycroft return;
2160 1.14 mycroft }
2161 1.14 mycroft }
2162 1.14 mycroft slp->ns_flag |= SLP_DOREC;
2163 1.17 mycroft nfsd_head_flag |= NFSD_CHECKSLP;
2164 1.1 cgd }
2165 1.14 mycroft #endif /* NFSSERVER */
2166