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clnt_vc.c revision 1.7
      1  1.7     lukem /*	$NetBSD: clnt_vc.c,v 1.7 2001/01/04 14:42:19 lukem Exp $	*/
      2  1.1      fvdl 
      3  1.1      fvdl /*
      4  1.1      fvdl  * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
      5  1.1      fvdl  * unrestricted use provided that this legend is included on all tape
      6  1.1      fvdl  * media and as a part of the software program in whole or part.  Users
      7  1.1      fvdl  * may copy or modify Sun RPC without charge, but are not authorized
      8  1.1      fvdl  * to license or distribute it to anyone else except as part of a product or
      9  1.1      fvdl  * program developed by the user.
     10  1.1      fvdl  *
     11  1.1      fvdl  * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
     12  1.1      fvdl  * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
     13  1.1      fvdl  * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
     14  1.1      fvdl  *
     15  1.1      fvdl  * Sun RPC is provided with no support and without any obligation on the
     16  1.1      fvdl  * part of Sun Microsystems, Inc. to assist in its use, correction,
     17  1.1      fvdl  * modification or enhancement.
     18  1.1      fvdl  *
     19  1.1      fvdl  * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
     20  1.1      fvdl  * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
     21  1.1      fvdl  * OR ANY PART THEREOF.
     22  1.1      fvdl  *
     23  1.1      fvdl  * In no event will Sun Microsystems, Inc. be liable for any lost revenue
     24  1.1      fvdl  * or profits or other special, indirect and consequential damages, even if
     25  1.1      fvdl  * Sun has been advised of the possibility of such damages.
     26  1.1      fvdl  *
     27  1.1      fvdl  * Sun Microsystems, Inc.
     28  1.1      fvdl  * 2550 Garcia Avenue
     29  1.1      fvdl  * Mountain View, California  94043
     30  1.1      fvdl  */
     31  1.1      fvdl 
     32  1.1      fvdl #include <sys/cdefs.h>
     33  1.1      fvdl #if defined(LIBC_SCCS) && !defined(lint)
     34  1.1      fvdl #if 0
     35  1.1      fvdl static char *sccsid = "@(#)clnt_tcp.c 1.37 87/10/05 Copyr 1984 Sun Micro";
     36  1.1      fvdl static char *sccsid = "@(#)clnt_tcp.c	2.2 88/08/01 4.0 RPCSRC";
     37  1.1      fvdl static char sccsid[] = "@(#)clnt_vc.c 1.19 89/03/16 Copyr 1988 Sun Micro";
     38  1.1      fvdl #else
     39  1.7     lukem __RCSID("$NetBSD: clnt_vc.c,v 1.7 2001/01/04 14:42:19 lukem Exp $");
     40  1.1      fvdl #endif
     41  1.1      fvdl #endif
     42  1.1      fvdl 
     43  1.1      fvdl /*
     44  1.1      fvdl  * clnt_tcp.c, Implements a TCP/IP based, client side RPC.
     45  1.1      fvdl  *
     46  1.1      fvdl  * Copyright (C) 1984, Sun Microsystems, Inc.
     47  1.1      fvdl  *
     48  1.1      fvdl  * TCP based RPC supports 'batched calls'.
     49  1.1      fvdl  * A sequence of calls may be batched-up in a send buffer.  The rpc call
     50  1.1      fvdl  * return immediately to the client even though the call was not necessarily
     51  1.1      fvdl  * sent.  The batching occurs if the results' xdr routine is NULL (0) AND
     52  1.1      fvdl  * the rpc timeout value is zero (see clnt.h, rpc).
     53  1.1      fvdl  *
     54  1.1      fvdl  * Clients should NOT casually batch calls that in fact return results; that is,
     55  1.1      fvdl  * the server side should be aware that a call is batched and not produce any
     56  1.1      fvdl  * return message.  Batched calls that produce many result messages can
     57  1.1      fvdl  * deadlock (netlock) the client and the server....
     58  1.1      fvdl  *
     59  1.1      fvdl  * Now go hang yourself.
     60  1.1      fvdl  */
     61  1.1      fvdl 
     62  1.1      fvdl #include "namespace.h"
     63  1.1      fvdl #include "reentrant.h"
     64  1.1      fvdl #include <sys/types.h>
     65  1.1      fvdl #include <sys/poll.h>
     66  1.1      fvdl #include <sys/socket.h>
     67  1.1      fvdl 
     68  1.1      fvdl #include <assert.h>
     69  1.1      fvdl #include <err.h>
     70  1.1      fvdl #include <errno.h>
     71  1.1      fvdl #include <netdb.h>
     72  1.1      fvdl #include <stdio.h>
     73  1.1      fvdl #include <stdlib.h>
     74  1.2   thorpej #include <string.h>
     75  1.1      fvdl #include <unistd.h>
     76  1.1      fvdl #include <signal.h>
     77  1.1      fvdl 
     78  1.1      fvdl #include <rpc/rpc.h>
     79  1.1      fvdl 
     80  1.1      fvdl #include "rpc_com.h"
     81  1.1      fvdl 
     82  1.1      fvdl #ifdef __weak_alias
     83  1.1      fvdl __weak_alias(clnt_vc_create,_clnt_vc_create)
     84  1.1      fvdl #endif
     85  1.1      fvdl 
     86  1.1      fvdl #define MCALL_MSG_SIZE 24
     87  1.1      fvdl 
     88  1.1      fvdl static enum clnt_stat clnt_vc_call __P((CLIENT *, rpcproc_t, xdrproc_t, caddr_t,
     89  1.1      fvdl     xdrproc_t, caddr_t, struct timeval));
     90  1.1      fvdl static void clnt_vc_geterr __P((CLIENT *, struct rpc_err *));
     91  1.1      fvdl static bool_t clnt_vc_freeres __P((CLIENT *, xdrproc_t, caddr_t));
     92  1.1      fvdl static void clnt_vc_abort __P((CLIENT *));
     93  1.1      fvdl static bool_t clnt_vc_control __P((CLIENT *, u_int, char *));
     94  1.1      fvdl static void clnt_vc_destroy __P((CLIENT *));
     95  1.1      fvdl static struct clnt_ops *clnt_vc_ops __P((void));
     96  1.1      fvdl static bool_t time_not_ok __P((struct timeval *));
     97  1.1      fvdl static int read_vc __P((caddr_t, caddr_t, int));
     98  1.1      fvdl static int write_vc __P((caddr_t, caddr_t, int));
     99  1.1      fvdl 
    100  1.1      fvdl struct ct_data {
    101  1.1      fvdl 	int		ct_fd;
    102  1.1      fvdl 	bool_t		ct_closeit;
    103  1.1      fvdl 	struct timeval	ct_wait;
    104  1.1      fvdl 	bool_t          ct_waitset;       /* wait set by clnt_control? */
    105  1.1      fvdl 	struct netbuf	ct_addr;
    106  1.1      fvdl 	struct rpc_err	ct_error;
    107  1.1      fvdl 	union {
    108  1.1      fvdl 		char	ct_mcallc[MCALL_MSG_SIZE];	/* marshalled callmsg */
    109  1.1      fvdl 		u_int32_t ct_mcalli;
    110  1.1      fvdl 	} ct_u;
    111  1.1      fvdl 	u_int		ct_mpos;			/* pos after marshal */
    112  1.1      fvdl 	XDR		ct_xdrs;
    113  1.1      fvdl };
    114  1.1      fvdl 
    115  1.1      fvdl /*
    116  1.1      fvdl  *      This machinery implements per-fd locks for MT-safety.  It is not
    117  1.1      fvdl  *      sufficient to do per-CLIENT handle locks for MT-safety because a
    118  1.1      fvdl  *      user may create more than one CLIENT handle with the same fd behind
    119  1.1      fvdl  *      it.  Therfore, we allocate an array of flags (vc_fd_locks), protected
    120  1.1      fvdl  *      by the clnt_fd_lock mutex, and an array (vc_cv) of condition variables
    121  1.1      fvdl  *      similarly protected.  Vc_fd_lock[fd] == 1 => a call is activte on some
    122  1.1      fvdl  *      CLIENT handle created for that fd.
    123  1.1      fvdl  *      The current implementation holds locks across the entire RPC and reply.
    124  1.1      fvdl  *      Yes, this is silly, and as soon as this code is proven to work, this
    125  1.1      fvdl  *      should be the first thing fixed.  One step at a time.
    126  1.1      fvdl  */
    127  1.1      fvdl #ifdef __REENT
    128  1.1      fvdl static int      *vc_fd_locks;
    129  1.1      fvdl extern int __rpc_lock_value;
    130  1.1      fvdl extern mutex_t  clnt_fd_lock;
    131  1.1      fvdl static cond_t   *vc_cv;
    132  1.1      fvdl #define release_fd_lock(fd, mask) {             \
    133  1.1      fvdl 	mutex_lock(&clnt_fd_lock);      \
    134  1.1      fvdl 	vc_fd_locks[fd] = 0;            \
    135  1.1      fvdl 	mutex_unlock(&clnt_fd_lock);    \
    136  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &(mask), (sigset_t *) NULL);        \
    137  1.1      fvdl 	cond_signal(&vc_cv[fd]);        \
    138  1.1      fvdl }
    139  1.1      fvdl #else
    140  1.1      fvdl #define release_fd_lock(fd,mask)
    141  1.1      fvdl #define __rpc_lock_value 0
    142  1.1      fvdl #endif
    143  1.1      fvdl 
    144  1.1      fvdl 
    145  1.1      fvdl /*
    146  1.1      fvdl  * Create a client handle for a connection.
    147  1.1      fvdl  * Default options are set, which the user can change using clnt_control()'s.
    148  1.1      fvdl  * The rpc/vc package does buffering similar to stdio, so the client
    149  1.1      fvdl  * must pick send and receive buffer sizes, 0 => use the default.
    150  1.1      fvdl  * NB: fd is copied into a private area.
    151  1.1      fvdl  * NB: The rpch->cl_auth is set null authentication. Caller may wish to
    152  1.1      fvdl  * set this something more useful.
    153  1.1      fvdl  *
    154  1.1      fvdl  * fd should be an open socket
    155  1.1      fvdl  */
    156  1.1      fvdl CLIENT *
    157  1.1      fvdl clnt_vc_create(fd, raddr, prog, vers, sendsz, recvsz)
    158  1.1      fvdl 	int fd;
    159  1.1      fvdl 	const struct netbuf *raddr;
    160  1.1      fvdl 	rpcprog_t prog;
    161  1.1      fvdl 	rpcvers_t vers;
    162  1.1      fvdl 	u_int sendsz;
    163  1.1      fvdl 	u_int recvsz;
    164  1.1      fvdl {
    165  1.1      fvdl 	CLIENT *h;
    166  1.1      fvdl 	struct ct_data *ct = NULL;
    167  1.1      fvdl 	struct timeval now;
    168  1.1      fvdl 	struct rpc_msg call_msg;
    169  1.1      fvdl 	static u_int32_t disrupt;
    170  1.1      fvdl #ifdef __REENT
    171  1.1      fvdl 	sigset_t mask;
    172  1.1      fvdl #endif
    173  1.1      fvdl 	sigset_t newmask;
    174  1.1      fvdl 	struct sockaddr_storage ss;
    175  1.1      fvdl 	socklen_t slen;
    176  1.1      fvdl 	struct __rpc_sockinfo si;
    177  1.1      fvdl 
    178  1.7     lukem 	_DIAGASSERT(raddr != NULL);
    179  1.7     lukem 
    180  1.1      fvdl 	if (disrupt == 0)
    181  1.1      fvdl 		disrupt = (u_int32_t)(long)raddr;
    182  1.1      fvdl 
    183  1.3  christos 	h  = mem_alloc(sizeof(*h));
    184  1.1      fvdl 	if (h == NULL) {
    185  1.1      fvdl 		warnx("clnt_vc_create: out of memory");
    186  1.1      fvdl 		rpc_createerr.cf_stat = RPC_SYSTEMERROR;
    187  1.1      fvdl 		rpc_createerr.cf_error.re_errno = errno;
    188  1.1      fvdl 		goto fooy;
    189  1.1      fvdl 	}
    190  1.3  christos 	ct = mem_alloc(sizeof(*ct));
    191  1.1      fvdl 	if (ct == NULL) {
    192  1.1      fvdl 		warnx("clnt_vc_create: out of memory");
    193  1.1      fvdl 		rpc_createerr.cf_stat = RPC_SYSTEMERROR;
    194  1.1      fvdl 		rpc_createerr.cf_error.re_errno = errno;
    195  1.1      fvdl 		goto fooy;
    196  1.1      fvdl 	}
    197  1.1      fvdl 
    198  1.1      fvdl 	sigfillset(&newmask);
    199  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
    200  1.1      fvdl #ifdef __REENT
    201  1.1      fvdl 	mutex_lock(&clnt_fd_lock);
    202  1.1      fvdl 	if (vc_fd_locks == (int *) NULL) {
    203  1.1      fvdl 		int cv_allocsz, fd_allocsz;
    204  1.1      fvdl 		int dtbsize = __rpc_dtbsize();
    205  1.1      fvdl 
    206  1.1      fvdl 		fd_allocsz = dtbsize * sizeof (int);
    207  1.1      fvdl 		vc_fd_locks = (int *) mem_alloc(fd_allocsz);
    208  1.1      fvdl 		if (vc_fd_locks == (int *) NULL) {
    209  1.1      fvdl 			mutex_unlock(&clnt_fd_lock);
    210  1.1      fvdl 			thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
    211  1.1      fvdl 			goto fooy;
    212  1.1      fvdl 		} else
    213  1.1      fvdl 			memset(vc_fd_locks, '\0', fd_allocsz);
    214  1.1      fvdl 
    215  1.1      fvdl 		assert(vc_cv == (cond_t *) NULL);
    216  1.1      fvdl 		cv_allocsz = dtbsize * sizeof (cond_t);
    217  1.1      fvdl 		vc_cv = (cond_t *) mem_alloc(cv_allocsz);
    218  1.1      fvdl 		if (vc_cv == (cond_t *) NULL) {
    219  1.1      fvdl 			mem_free(vc_fd_locks, fd_allocsz);
    220  1.1      fvdl 			vc_fd_locks = (int *) NULL;
    221  1.1      fvdl 			mutex_unlock(&clnt_fd_lock);
    222  1.1      fvdl 			thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
    223  1.1      fvdl 			goto fooy;
    224  1.1      fvdl 		} else {
    225  1.1      fvdl 			int i;
    226  1.1      fvdl 
    227  1.1      fvdl 			for (i = 0; i < dtbsize; i++)
    228  1.1      fvdl 				cond_init(&vc_cv[i], 0, (void *) 0);
    229  1.1      fvdl 		}
    230  1.1      fvdl 	} else
    231  1.1      fvdl 		assert(vc_cv != (cond_t *) NULL);
    232  1.1      fvdl #endif
    233  1.1      fvdl 
    234  1.1      fvdl 	/*
    235  1.1      fvdl 	 * XXX - fvdl connecting while holding a mutex?
    236  1.1      fvdl 	 */
    237  1.1      fvdl 	slen = sizeof ss;
    238  1.3  christos 	if (getpeername(fd, (struct sockaddr *)(void *)&ss, &slen) < 0) {
    239  1.1      fvdl 		if (errno != ENOTCONN) {
    240  1.1      fvdl 			rpc_createerr.cf_stat = RPC_SYSTEMERROR;
    241  1.1      fvdl 			rpc_createerr.cf_error.re_errno = errno;
    242  1.1      fvdl 			mutex_unlock(&clnt_fd_lock);
    243  1.1      fvdl 			goto fooy;
    244  1.1      fvdl 		}
    245  1.1      fvdl 		if (connect(fd, (struct sockaddr *)raddr->buf, raddr->len) < 0){
    246  1.1      fvdl 			rpc_createerr.cf_stat = RPC_SYSTEMERROR;
    247  1.1      fvdl 			rpc_createerr.cf_error.re_errno = errno;
    248  1.1      fvdl 			mutex_unlock(&clnt_fd_lock);
    249  1.1      fvdl 			goto fooy;
    250  1.1      fvdl 		}
    251  1.1      fvdl 	}
    252  1.1      fvdl 	mutex_unlock(&clnt_fd_lock);
    253  1.1      fvdl 	if (!__rpc_fd2sockinfo(fd, &si))
    254  1.1      fvdl 		goto fooy;
    255  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
    256  1.1      fvdl 
    257  1.1      fvdl 	ct->ct_closeit = FALSE;
    258  1.1      fvdl 
    259  1.1      fvdl 	/*
    260  1.1      fvdl 	 * Set up private data struct
    261  1.1      fvdl 	 */
    262  1.1      fvdl 	ct->ct_fd = fd;
    263  1.1      fvdl 	ct->ct_wait.tv_usec = 0;
    264  1.1      fvdl 	ct->ct_waitset = FALSE;
    265  1.1      fvdl 	ct->ct_addr.buf = malloc(raddr->maxlen);
    266  1.1      fvdl 	if (ct->ct_addr.buf == NULL)
    267  1.1      fvdl 		goto fooy;
    268  1.1      fvdl 	memcpy(ct->ct_addr.buf, &raddr->buf, raddr->len);
    269  1.1      fvdl 	ct->ct_addr.len = raddr->maxlen;
    270  1.1      fvdl 	ct->ct_addr.maxlen = raddr->maxlen;
    271  1.1      fvdl 
    272  1.1      fvdl 	/*
    273  1.1      fvdl 	 * Initialize call message
    274  1.1      fvdl 	 */
    275  1.3  christos 	(void)gettimeofday(&now, NULL);
    276  1.3  christos 	call_msg.rm_xid = ((u_int32_t)++disrupt) ^ __RPC_GETXID(&now);
    277  1.1      fvdl 	call_msg.rm_direction = CALL;
    278  1.1      fvdl 	call_msg.rm_call.cb_rpcvers = RPC_MSG_VERSION;
    279  1.1      fvdl 	call_msg.rm_call.cb_prog = (u_int32_t)prog;
    280  1.1      fvdl 	call_msg.rm_call.cb_vers = (u_int32_t)vers;
    281  1.1      fvdl 
    282  1.1      fvdl 	/*
    283  1.1      fvdl 	 * pre-serialize the static part of the call msg and stash it away
    284  1.1      fvdl 	 */
    285  1.1      fvdl 	xdrmem_create(&(ct->ct_xdrs), ct->ct_u.ct_mcallc, MCALL_MSG_SIZE,
    286  1.1      fvdl 	    XDR_ENCODE);
    287  1.1      fvdl 	if (! xdr_callhdr(&(ct->ct_xdrs), &call_msg)) {
    288  1.1      fvdl 		if (ct->ct_closeit) {
    289  1.1      fvdl 			(void)close(fd);
    290  1.1      fvdl 		}
    291  1.1      fvdl 		goto fooy;
    292  1.1      fvdl 	}
    293  1.1      fvdl 	ct->ct_mpos = XDR_GETPOS(&(ct->ct_xdrs));
    294  1.1      fvdl 	XDR_DESTROY(&(ct->ct_xdrs));
    295  1.1      fvdl 
    296  1.1      fvdl 	/*
    297  1.1      fvdl 	 * Create a client handle which uses xdrrec for serialization
    298  1.1      fvdl 	 * and authnone for authentication.
    299  1.1      fvdl 	 */
    300  1.1      fvdl 	h->cl_ops = clnt_vc_ops();
    301  1.1      fvdl 	h->cl_private = ct;
    302  1.1      fvdl 	h->cl_auth = authnone_create();
    303  1.1      fvdl 	sendsz = __rpc_get_t_size(si.si_af, si.si_proto, (int)sendsz);
    304  1.1      fvdl 	recvsz = __rpc_get_t_size(si.si_af, si.si_proto, (int)recvsz);
    305  1.1      fvdl 	xdrrec_create(&(ct->ct_xdrs), sendsz, recvsz,
    306  1.1      fvdl 	    h->cl_private, read_vc, write_vc);
    307  1.1      fvdl 	return (h);
    308  1.1      fvdl 
    309  1.1      fvdl fooy:
    310  1.1      fvdl 	/*
    311  1.1      fvdl 	 * Something goofed, free stuff and barf
    312  1.1      fvdl 	 */
    313  1.1      fvdl 	if (ct)
    314  1.1      fvdl 		mem_free(ct, sizeof(struct ct_data));
    315  1.1      fvdl 	if (h)
    316  1.1      fvdl 		mem_free(h, sizeof(CLIENT));
    317  1.3  christos 	return (NULL);
    318  1.1      fvdl }
    319  1.1      fvdl 
    320  1.1      fvdl static enum clnt_stat
    321  1.1      fvdl clnt_vc_call(h, proc, xdr_args, args_ptr, xdr_results, results_ptr, timeout)
    322  1.1      fvdl 	CLIENT *h;
    323  1.1      fvdl 	rpcproc_t proc;
    324  1.1      fvdl 	xdrproc_t xdr_args;
    325  1.1      fvdl 	caddr_t args_ptr;
    326  1.1      fvdl 	xdrproc_t xdr_results;
    327  1.1      fvdl 	caddr_t results_ptr;
    328  1.1      fvdl 	struct timeval timeout;
    329  1.1      fvdl {
    330  1.1      fvdl 	struct ct_data *ct;
    331  1.1      fvdl 	XDR *xdrs;
    332  1.1      fvdl 	struct rpc_msg reply_msg;
    333  1.1      fvdl 	u_int32_t x_id;
    334  1.1      fvdl 	u_int32_t *msg_x_id;
    335  1.1      fvdl 	bool_t shipnow;
    336  1.1      fvdl 	int refreshes = 2;
    337  1.1      fvdl #ifdef __REENT
    338  1.1      fvdl 	sigset_t mask, newmask;
    339  1.1      fvdl #endif
    340  1.1      fvdl 
    341  1.1      fvdl 	_DIAGASSERT(h != NULL);
    342  1.1      fvdl 
    343  1.1      fvdl #ifdef __REENT
    344  1.1      fvdl 	sigfillset(&newmask);
    345  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
    346  1.1      fvdl 	mutex_lock(&clnt_fd_lock);
    347  1.1      fvdl 	while (vc_fd_locks[ct->ct_fd])
    348  1.1      fvdl 		cond_wait(&vc_cv[ct->ct_fd], &clnt_fd_lock);
    349  1.1      fvdl 	vc_fd_locks[ct->ct_fd] = lock_value;
    350  1.1      fvdl 	mutex_unlock(&clnt_fd_lock);
    351  1.1      fvdl #endif
    352  1.1      fvdl 
    353  1.1      fvdl 	ct = (struct ct_data *) h->cl_private;
    354  1.1      fvdl 	xdrs = &(ct->ct_xdrs);
    355  1.1      fvdl 	msg_x_id = &ct->ct_u.ct_mcalli;
    356  1.1      fvdl 
    357  1.1      fvdl 	if (!ct->ct_waitset) {
    358  1.1      fvdl 		if (time_not_ok(&timeout) == FALSE)
    359  1.1      fvdl 		ct->ct_wait = timeout;
    360  1.1      fvdl 	}
    361  1.1      fvdl 
    362  1.1      fvdl 	shipnow =
    363  1.3  christos 	    (xdr_results == NULL && timeout.tv_sec == 0
    364  1.1      fvdl 	    && timeout.tv_usec == 0) ? FALSE : TRUE;
    365  1.1      fvdl 
    366  1.1      fvdl call_again:
    367  1.1      fvdl 	xdrs->x_op = XDR_ENCODE;
    368  1.1      fvdl 	ct->ct_error.re_status = RPC_SUCCESS;
    369  1.1      fvdl 	x_id = ntohl(--(*msg_x_id));
    370  1.1      fvdl 	if ((! XDR_PUTBYTES(xdrs, ct->ct_u.ct_mcallc, ct->ct_mpos)) ||
    371  1.6  christos 	    (! XDR_PUTINT32(xdrs, (int32_t *)&proc)) ||
    372  1.1      fvdl 	    (! AUTH_MARSHALL(h->cl_auth, xdrs)) ||
    373  1.1      fvdl 	    (! (*xdr_args)(xdrs, args_ptr))) {
    374  1.1      fvdl 		if (ct->ct_error.re_status == RPC_SUCCESS)
    375  1.1      fvdl 			ct->ct_error.re_status = RPC_CANTENCODEARGS;
    376  1.1      fvdl 		(void)xdrrec_endofrecord(xdrs, TRUE);
    377  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    378  1.1      fvdl 		return (ct->ct_error.re_status);
    379  1.1      fvdl 	}
    380  1.1      fvdl 	if (! xdrrec_endofrecord(xdrs, shipnow)) {
    381  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    382  1.1      fvdl 		return (ct->ct_error.re_status = RPC_CANTSEND);
    383  1.1      fvdl 	}
    384  1.1      fvdl 	if (! shipnow) {
    385  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    386  1.1      fvdl 		return (RPC_SUCCESS);
    387  1.1      fvdl 	}
    388  1.1      fvdl 	/*
    389  1.1      fvdl 	 * Hack to provide rpc-based message passing
    390  1.1      fvdl 	 */
    391  1.1      fvdl 	if (timeout.tv_sec == 0 && timeout.tv_usec == 0) {
    392  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    393  1.1      fvdl 		return(ct->ct_error.re_status = RPC_TIMEDOUT);
    394  1.1      fvdl 	}
    395  1.1      fvdl 
    396  1.1      fvdl 
    397  1.1      fvdl 	/*
    398  1.1      fvdl 	 * Keep receiving until we get a valid transaction id
    399  1.1      fvdl 	 */
    400  1.1      fvdl 	xdrs->x_op = XDR_DECODE;
    401  1.1      fvdl 	for (;;) {
    402  1.1      fvdl 		reply_msg.acpted_rply.ar_verf = _null_auth;
    403  1.1      fvdl 		reply_msg.acpted_rply.ar_results.where = NULL;
    404  1.1      fvdl 		reply_msg.acpted_rply.ar_results.proc = (xdrproc_t)xdr_void;
    405  1.1      fvdl 		if (! xdrrec_skiprecord(xdrs)) {
    406  1.1      fvdl 			release_fd_lock(ct->ct_fd, mask);
    407  1.1      fvdl 			return (ct->ct_error.re_status);
    408  1.1      fvdl 		}
    409  1.1      fvdl 		/* now decode and validate the response header */
    410  1.1      fvdl 		if (! xdr_replymsg(xdrs, &reply_msg)) {
    411  1.1      fvdl 			if (ct->ct_error.re_status == RPC_SUCCESS)
    412  1.1      fvdl 				continue;
    413  1.1      fvdl 			release_fd_lock(ct->ct_fd, mask);
    414  1.1      fvdl 			return (ct->ct_error.re_status);
    415  1.1      fvdl 		}
    416  1.1      fvdl 		if (reply_msg.rm_xid == x_id)
    417  1.1      fvdl 			break;
    418  1.1      fvdl 	}
    419  1.1      fvdl 
    420  1.1      fvdl 	/*
    421  1.1      fvdl 	 * process header
    422  1.1      fvdl 	 */
    423  1.1      fvdl 	_seterr_reply(&reply_msg, &(ct->ct_error));
    424  1.1      fvdl 	if (ct->ct_error.re_status == RPC_SUCCESS) {
    425  1.1      fvdl 		if (! AUTH_VALIDATE(h->cl_auth,
    426  1.1      fvdl 		    &reply_msg.acpted_rply.ar_verf)) {
    427  1.1      fvdl 			ct->ct_error.re_status = RPC_AUTHERROR;
    428  1.1      fvdl 			ct->ct_error.re_why = AUTH_INVALIDRESP;
    429  1.1      fvdl 		} else if (! (*xdr_results)(xdrs, results_ptr)) {
    430  1.1      fvdl 			if (ct->ct_error.re_status == RPC_SUCCESS)
    431  1.1      fvdl 				ct->ct_error.re_status = RPC_CANTDECODERES;
    432  1.1      fvdl 		}
    433  1.1      fvdl 		/* free verifier ... */
    434  1.1      fvdl 		if (reply_msg.acpted_rply.ar_verf.oa_base != NULL) {
    435  1.1      fvdl 			xdrs->x_op = XDR_FREE;
    436  1.1      fvdl 			(void)xdr_opaque_auth(xdrs,
    437  1.1      fvdl 			    &(reply_msg.acpted_rply.ar_verf));
    438  1.1      fvdl 		}
    439  1.1      fvdl 	}  /* end successful completion */
    440  1.1      fvdl 	else {
    441  1.1      fvdl 		/* maybe our credentials need to be refreshed ... */
    442  1.1      fvdl 		if (refreshes-- && AUTH_REFRESH(h->cl_auth))
    443  1.1      fvdl 			goto call_again;
    444  1.1      fvdl 	}  /* end of unsuccessful completion */
    445  1.1      fvdl 	release_fd_lock(ct->ct_fd, mask);
    446  1.1      fvdl 	return (ct->ct_error.re_status);
    447  1.1      fvdl }
    448  1.1      fvdl 
    449  1.1      fvdl static void
    450  1.1      fvdl clnt_vc_geterr(h, errp)
    451  1.1      fvdl 	CLIENT *h;
    452  1.1      fvdl 	struct rpc_err *errp;
    453  1.1      fvdl {
    454  1.1      fvdl 	struct ct_data *ct;
    455  1.1      fvdl 
    456  1.1      fvdl 	_DIAGASSERT(h != NULL);
    457  1.1      fvdl 	_DIAGASSERT(errp != NULL);
    458  1.1      fvdl 
    459  1.1      fvdl 	ct = (struct ct_data *) h->cl_private;
    460  1.1      fvdl 	*errp = ct->ct_error;
    461  1.1      fvdl }
    462  1.1      fvdl 
    463  1.1      fvdl static bool_t
    464  1.1      fvdl clnt_vc_freeres(cl, xdr_res, res_ptr)
    465  1.1      fvdl 	CLIENT *cl;
    466  1.1      fvdl 	xdrproc_t xdr_res;
    467  1.1      fvdl 	caddr_t res_ptr;
    468  1.1      fvdl {
    469  1.1      fvdl 	struct ct_data *ct;
    470  1.1      fvdl 	XDR *xdrs;
    471  1.1      fvdl 	bool_t dummy;
    472  1.1      fvdl #ifdef __REENT
    473  1.1      fvdl 	sigset_t mask;
    474  1.1      fvdl #endif
    475  1.1      fvdl 	sigset_t newmask;
    476  1.1      fvdl 
    477  1.1      fvdl 	_DIAGASSERT(cl != NULL);
    478  1.1      fvdl 
    479  1.1      fvdl 	ct = (struct ct_data *)cl->cl_private;
    480  1.1      fvdl 	xdrs = &(ct->ct_xdrs);
    481  1.1      fvdl 
    482  1.1      fvdl 	sigfillset(&newmask);
    483  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
    484  1.1      fvdl 	mutex_lock(&clnt_fd_lock);
    485  1.1      fvdl #ifdef __REENT
    486  1.1      fvdl 	while (vc_fd_locks[ct->ct_fd])
    487  1.1      fvdl 		cond_wait(&vc_cv[ct->ct_fd], &clnt_fd_lock);
    488  1.1      fvdl #endif
    489  1.1      fvdl 
    490  1.1      fvdl 	xdrs->x_op = XDR_FREE;
    491  1.1      fvdl 	dummy = (*xdr_res)(xdrs, res_ptr);
    492  1.1      fvdl 	mutex_unlock(&clnt_fd_lock);
    493  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
    494  1.1      fvdl 	cond_signal(&vc_cv[ct->ct_fd]);
    495  1.1      fvdl 
    496  1.1      fvdl 	return dummy;
    497  1.1      fvdl }
    498  1.1      fvdl 
    499  1.1      fvdl /*ARGSUSED*/
    500  1.1      fvdl static void
    501  1.1      fvdl clnt_vc_abort(cl)
    502  1.1      fvdl 	CLIENT *cl;
    503  1.1      fvdl {
    504  1.1      fvdl }
    505  1.1      fvdl 
    506  1.1      fvdl static bool_t
    507  1.1      fvdl clnt_vc_control(cl, request, info)
    508  1.1      fvdl 	CLIENT *cl;
    509  1.1      fvdl 	u_int request;
    510  1.1      fvdl 	char *info;
    511  1.1      fvdl {
    512  1.1      fvdl 	struct ct_data *ct;
    513  1.1      fvdl 	void *infop = info;
    514  1.1      fvdl #ifdef _REENT
    515  1.1      fvdl 	sigset_t mask;
    516  1.1      fvdl #endif
    517  1.1      fvdl 	sigset_t newmask;
    518  1.1      fvdl 
    519  1.1      fvdl 	_DIAGASSERT(cl != NULL);
    520  1.1      fvdl 
    521  1.1      fvdl 	ct = (struct ct_data *)cl->cl_private;
    522  1.1      fvdl 
    523  1.1      fvdl 	sigfillset(&newmask);
    524  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
    525  1.1      fvdl 	mutex_lock(&clnt_fd_lock);
    526  1.1      fvdl #ifdef __REENT
    527  1.1      fvdl 	while (vc_fd_locks[ct->ct_fd])
    528  1.1      fvdl 		cond_wait(&vc_cv[ct->ct_fd], &clnt_fd_lock);
    529  1.1      fvdl 	vc_fd_locks[ct->ct_fd] = __rpc_lock_value;
    530  1.1      fvdl #endif
    531  1.1      fvdl 	mutex_unlock(&clnt_fd_lock);
    532  1.1      fvdl 
    533  1.1      fvdl 	switch (request) {
    534  1.1      fvdl 	case CLSET_FD_CLOSE:
    535  1.1      fvdl 		ct->ct_closeit = TRUE;
    536  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    537  1.1      fvdl 		return (TRUE);
    538  1.1      fvdl 	case CLSET_FD_NCLOSE:
    539  1.1      fvdl 		ct->ct_closeit = FALSE;
    540  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    541  1.1      fvdl 		return (TRUE);
    542  1.1      fvdl 	default:
    543  1.1      fvdl 		break;
    544  1.1      fvdl 	}
    545  1.1      fvdl 
    546  1.1      fvdl 	/* for other requests which use info */
    547  1.1      fvdl 	if (info == NULL) {
    548  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    549  1.1      fvdl 		return (FALSE);
    550  1.1      fvdl 	}
    551  1.1      fvdl 	switch (request) {
    552  1.1      fvdl 	case CLSET_TIMEOUT:
    553  1.3  christos 		if (time_not_ok((struct timeval *)(void *)info)) {
    554  1.1      fvdl 			release_fd_lock(ct->ct_fd, mask);
    555  1.1      fvdl 			return (FALSE);
    556  1.1      fvdl 		}
    557  1.1      fvdl 		ct->ct_wait = *(struct timeval *)infop;
    558  1.1      fvdl 		ct->ct_waitset = TRUE;
    559  1.1      fvdl 		break;
    560  1.1      fvdl 	case CLGET_TIMEOUT:
    561  1.1      fvdl 		*(struct timeval *)infop = ct->ct_wait;
    562  1.1      fvdl 		break;
    563  1.1      fvdl 	case CLGET_SERVER_ADDR:
    564  1.3  christos 		(void) memcpy(info, ct->ct_addr.buf, (size_t)ct->ct_addr.len);
    565  1.1      fvdl 		break;
    566  1.1      fvdl 	case CLGET_FD:
    567  1.3  christos 		*(int *)(void *)info = ct->ct_fd;
    568  1.1      fvdl 		break;
    569  1.1      fvdl 	case CLGET_SVC_ADDR:
    570  1.1      fvdl 		/* The caller should not free this memory area */
    571  1.3  christos 		*(struct netbuf *)(void *)info = ct->ct_addr;
    572  1.1      fvdl 		break;
    573  1.1      fvdl 	case CLSET_SVC_ADDR:		/* set to new address */
    574  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    575  1.1      fvdl 		return (FALSE);
    576  1.1      fvdl 	case CLGET_XID:
    577  1.1      fvdl 		/*
    578  1.1      fvdl 		 * use the knowledge that xid is the
    579  1.1      fvdl 		 * first element in the call structure
    580  1.1      fvdl 		 * This will get the xid of the PREVIOUS call
    581  1.1      fvdl 		 */
    582  1.3  christos 		*(u_int32_t *)(void *)info =
    583  1.3  christos 		    ntohl(*(u_int32_t *)(void *)&ct->ct_u.ct_mcalli);
    584  1.1      fvdl 		break;
    585  1.1      fvdl 	case CLSET_XID:
    586  1.1      fvdl 		/* This will set the xid of the NEXT call */
    587  1.3  christos 		*(u_int32_t *)(void *)&ct->ct_u.ct_mcalli =
    588  1.3  christos 		    htonl(*((u_int32_t *)(void *)info) + 1);
    589  1.1      fvdl 		/* increment by 1 as clnt_vc_call() decrements once */
    590  1.1      fvdl 		break;
    591  1.1      fvdl 	case CLGET_VERS:
    592  1.1      fvdl 		/*
    593  1.1      fvdl 		 * This RELIES on the information that, in the call body,
    594  1.1      fvdl 		 * the version number field is the fifth field from the
    595  1.1      fvdl 		 * begining of the RPC header. MUST be changed if the
    596  1.1      fvdl 		 * call_struct is changed
    597  1.1      fvdl 		 */
    598  1.3  christos 		*(u_int32_t *)(void *)info =
    599  1.3  christos 		    ntohl(*(u_int32_t *)(void *)(ct->ct_u.ct_mcallc +
    600  1.3  christos 		    4 * BYTES_PER_XDR_UNIT));
    601  1.1      fvdl 		break;
    602  1.1      fvdl 
    603  1.1      fvdl 	case CLSET_VERS:
    604  1.3  christos 		*(u_int32_t *)(void *)(ct->ct_u.ct_mcallc +
    605  1.3  christos 		    4 * BYTES_PER_XDR_UNIT) =
    606  1.3  christos 		    htonl(*(u_int32_t *)(void *)info);
    607  1.1      fvdl 		break;
    608  1.1      fvdl 
    609  1.1      fvdl 	case CLGET_PROG:
    610  1.1      fvdl 		/*
    611  1.1      fvdl 		 * This RELIES on the information that, in the call body,
    612  1.1      fvdl 		 * the program number field is the fourth field from the
    613  1.1      fvdl 		 * begining of the RPC header. MUST be changed if the
    614  1.1      fvdl 		 * call_struct is changed
    615  1.1      fvdl 		 */
    616  1.3  christos 		*(u_int32_t *)(void *)info =
    617  1.3  christos 		    ntohl(*(u_int32_t *)(void *)(ct->ct_u.ct_mcallc +
    618  1.3  christos 		    3 * BYTES_PER_XDR_UNIT));
    619  1.1      fvdl 		break;
    620  1.1      fvdl 
    621  1.1      fvdl 	case CLSET_PROG:
    622  1.3  christos 		*(u_int32_t *)(void *)(ct->ct_u.ct_mcallc +
    623  1.3  christos 		    3 * BYTES_PER_XDR_UNIT) =
    624  1.3  christos 		    htonl(*(u_int32_t *)(void *)info);
    625  1.1      fvdl 		break;
    626  1.1      fvdl 
    627  1.1      fvdl 	default:
    628  1.1      fvdl 		release_fd_lock(ct->ct_fd, mask);
    629  1.1      fvdl 		return (FALSE);
    630  1.1      fvdl 	}
    631  1.1      fvdl 	release_fd_lock(ct->ct_fd, mask);
    632  1.1      fvdl 	return (TRUE);
    633  1.1      fvdl }
    634  1.1      fvdl 
    635  1.1      fvdl 
    636  1.1      fvdl static void
    637  1.1      fvdl clnt_vc_destroy(cl)
    638  1.1      fvdl 	CLIENT *cl;
    639  1.1      fvdl {
    640  1.1      fvdl 	struct ct_data *ct;
    641  1.1      fvdl #ifdef __REENT
    642  1.1      fvdl 	int ct_fd = ct->ct_fd;
    643  1.1      fvdl 	sigset_t mask;
    644  1.1      fvdl #endif
    645  1.1      fvdl 	sigset_t newmask;
    646  1.1      fvdl 
    647  1.1      fvdl 	_DIAGASSERT(cl != NULL);
    648  1.1      fvdl 
    649  1.1      fvdl 	ct = (struct ct_data *) cl->cl_private;
    650  1.1      fvdl 
    651  1.1      fvdl 	sigfillset(&newmask);
    652  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
    653  1.1      fvdl 	mutex_lock(&clnt_fd_lock);
    654  1.1      fvdl #ifdef _REENT
    655  1.1      fvdl 	while (vc_fd_locks[ct_fd])
    656  1.1      fvdl 		cond_wait(&vc_cv[ct_fd], &clnt_fd_lock);
    657  1.1      fvdl #endif
    658  1.1      fvdl 	if (ct->ct_closeit && ct->ct_fd != -1) {
    659  1.1      fvdl 		(void)close(ct->ct_fd);
    660  1.1      fvdl 	}
    661  1.1      fvdl 	XDR_DESTROY(&(ct->ct_xdrs));
    662  1.1      fvdl 	if (ct->ct_addr.buf)
    663  1.1      fvdl 		free(ct->ct_addr.buf);
    664  1.1      fvdl 	mem_free(ct, sizeof(struct ct_data));
    665  1.1      fvdl 	mem_free(cl, sizeof(CLIENT));
    666  1.1      fvdl 	mutex_unlock(&clnt_fd_lock);
    667  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
    668  1.1      fvdl 
    669  1.1      fvdl 	cond_signal(&vc_cv[ct_fd]);
    670  1.1      fvdl }
    671  1.1      fvdl 
    672  1.1      fvdl /*
    673  1.1      fvdl  * Interface between xdr serializer and tcp connection.
    674  1.1      fvdl  * Behaves like the system calls, read & write, but keeps some error state
    675  1.1      fvdl  * around for the rpc level.
    676  1.1      fvdl  */
    677  1.1      fvdl static int
    678  1.1      fvdl read_vc(ctp, buf, len)
    679  1.1      fvdl 	caddr_t ctp;
    680  1.1      fvdl 	caddr_t buf;
    681  1.1      fvdl 	int len;
    682  1.1      fvdl {
    683  1.1      fvdl 	struct ct_data *ct = (struct ct_data *)(void *)ctp;
    684  1.1      fvdl 	struct pollfd fd;
    685  1.1      fvdl 	int milliseconds = (int)((ct->ct_wait.tv_sec * 1000) +
    686  1.1      fvdl 	    (ct->ct_wait.tv_usec / 1000));
    687  1.1      fvdl 
    688  1.1      fvdl 	if (len == 0)
    689  1.1      fvdl 		return (0);
    690  1.1      fvdl 	fd.fd = ct->ct_fd;
    691  1.1      fvdl 	fd.events = POLLIN;
    692  1.1      fvdl 	for (;;) {
    693  1.1      fvdl 		switch (poll(&fd, 1, milliseconds)) {
    694  1.1      fvdl 		case 0:
    695  1.1      fvdl 			ct->ct_error.re_status = RPC_TIMEDOUT;
    696  1.1      fvdl 			return (-1);
    697  1.1      fvdl 
    698  1.1      fvdl 		case -1:
    699  1.1      fvdl 			if (errno == EINTR)
    700  1.1      fvdl 				continue;
    701  1.1      fvdl 			ct->ct_error.re_status = RPC_CANTRECV;
    702  1.1      fvdl 			ct->ct_error.re_errno = errno;
    703  1.1      fvdl 			return (-1);
    704  1.1      fvdl 		}
    705  1.1      fvdl 		break;
    706  1.1      fvdl 	}
    707  1.1      fvdl 	switch (len = read(ct->ct_fd, buf, (size_t)len)) {
    708  1.1      fvdl 
    709  1.1      fvdl 	case 0:
    710  1.1      fvdl 		/* premature eof */
    711  1.1      fvdl 		ct->ct_error.re_errno = ECONNRESET;
    712  1.1      fvdl 		ct->ct_error.re_status = RPC_CANTRECV;
    713  1.1      fvdl 		len = -1;  /* it's really an error */
    714  1.1      fvdl 		break;
    715  1.1      fvdl 
    716  1.1      fvdl 	case -1:
    717  1.1      fvdl 		ct->ct_error.re_errno = errno;
    718  1.1      fvdl 		ct->ct_error.re_status = RPC_CANTRECV;
    719  1.1      fvdl 		break;
    720  1.1      fvdl 	}
    721  1.1      fvdl 	return (len);
    722  1.1      fvdl }
    723  1.1      fvdl 
    724  1.1      fvdl static int
    725  1.1      fvdl write_vc(ctp, buf, len)
    726  1.1      fvdl 	caddr_t ctp;
    727  1.1      fvdl 	caddr_t buf;
    728  1.1      fvdl 	int len;
    729  1.1      fvdl {
    730  1.1      fvdl 	struct ct_data *ct = (struct ct_data *)(void *)ctp;
    731  1.1      fvdl 	int i, cnt;
    732  1.1      fvdl 
    733  1.1      fvdl 	for (cnt = len; cnt > 0; cnt -= i, buf += i) {
    734  1.1      fvdl 		if ((i = write(ct->ct_fd, buf, (size_t)cnt)) == -1) {
    735  1.1      fvdl 			ct->ct_error.re_errno = errno;
    736  1.1      fvdl 			ct->ct_error.re_status = RPC_CANTSEND;
    737  1.1      fvdl 			return (-1);
    738  1.1      fvdl 		}
    739  1.1      fvdl 	}
    740  1.1      fvdl 	return (len);
    741  1.1      fvdl }
    742  1.1      fvdl 
    743  1.1      fvdl static struct clnt_ops *
    744  1.1      fvdl clnt_vc_ops()
    745  1.1      fvdl {
    746  1.1      fvdl 	static struct clnt_ops ops;
    747  1.1      fvdl #ifdef __REENT
    748  1.1      fvdl 	extern mutex_t  ops_lock;
    749  1.1      fvdl 	sigset_t mask;
    750  1.1      fvdl #endif
    751  1.1      fvdl 	sigset_t newmask;
    752  1.1      fvdl 
    753  1.1      fvdl 	/* VARIABLES PROTECTED BY ops_lock: ops */
    754  1.1      fvdl 
    755  1.1      fvdl 	sigfillset(&newmask);
    756  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &newmask, &mask);
    757  1.1      fvdl 	mutex_lock(&ops_lock);
    758  1.1      fvdl 	if (ops.cl_call == NULL) {
    759  1.1      fvdl 		ops.cl_call = clnt_vc_call;
    760  1.1      fvdl 		ops.cl_abort = clnt_vc_abort;
    761  1.1      fvdl 		ops.cl_geterr = clnt_vc_geterr;
    762  1.1      fvdl 		ops.cl_freeres = clnt_vc_freeres;
    763  1.1      fvdl 		ops.cl_destroy = clnt_vc_destroy;
    764  1.1      fvdl 		ops.cl_control = clnt_vc_control;
    765  1.1      fvdl 	}
    766  1.1      fvdl 	mutex_unlock(&ops_lock);
    767  1.1      fvdl 	thr_sigsetmask(SIG_SETMASK, &(mask), NULL);
    768  1.1      fvdl 	return (&ops);
    769  1.1      fvdl }
    770  1.1      fvdl 
    771  1.1      fvdl /*
    772  1.1      fvdl  * Make sure that the time is not garbage.   -1 value is disallowed.
    773  1.1      fvdl  * Note this is different from time_not_ok in clnt_dg.c
    774  1.1      fvdl  */
    775  1.1      fvdl static bool_t
    776  1.1      fvdl time_not_ok(t)
    777  1.1      fvdl 	struct timeval *t;
    778  1.1      fvdl {
    779  1.7     lukem 
    780  1.7     lukem 	_DIAGASSERT(t != NULL);
    781  1.7     lukem 
    782  1.1      fvdl 	return (t->tv_sec <= -1 || t->tv_sec > 100000000 ||
    783  1.1      fvdl 		t->tv_usec <= -1 || t->tv_usec > 1000000);
    784  1.1      fvdl }
    785