1dfdcada3SDoug Rabson /* $NetBSD: svc_dg.c,v 1.4 2000/07/06 03:10:35 christos Exp $ */ 2dfdcada3SDoug Rabson 3dfdcada3SDoug Rabson /* 4dfdcada3SDoug Rabson * Sun RPC is a product of Sun Microsystems, Inc. and is provided for 5dfdcada3SDoug Rabson * unrestricted use provided that this legend is included on all tape 6dfdcada3SDoug Rabson * media and as a part of the software program in whole or part. Users 7dfdcada3SDoug Rabson * may copy or modify Sun RPC without charge, but are not authorized 8dfdcada3SDoug Rabson * to license or distribute it to anyone else except as part of a product or 9dfdcada3SDoug Rabson * program developed by the user. 10dfdcada3SDoug Rabson * 11dfdcada3SDoug Rabson * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE 12dfdcada3SDoug Rabson * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR 13dfdcada3SDoug Rabson * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE. 14dfdcada3SDoug Rabson * 15dfdcada3SDoug Rabson * Sun RPC is provided with no support and without any obligation on the 16dfdcada3SDoug Rabson * part of Sun Microsystems, Inc. to assist in its use, correction, 17dfdcada3SDoug Rabson * modification or enhancement. 18dfdcada3SDoug Rabson * 19dfdcada3SDoug Rabson * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE 20dfdcada3SDoug Rabson * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC 21dfdcada3SDoug Rabson * OR ANY PART THEREOF. 22dfdcada3SDoug Rabson * 23dfdcada3SDoug Rabson * In no event will Sun Microsystems, Inc. be liable for any lost revenue 24dfdcada3SDoug Rabson * or profits or other special, indirect and consequential damages, even if 25dfdcada3SDoug Rabson * Sun has been advised of the possibility of such damages. 26dfdcada3SDoug Rabson * 27dfdcada3SDoug Rabson * Sun Microsystems, Inc. 28dfdcada3SDoug Rabson * 2550 Garcia Avenue 29dfdcada3SDoug Rabson * Mountain View, California 94043 30dfdcada3SDoug Rabson */ 31dfdcada3SDoug Rabson 32dfdcada3SDoug Rabson /* 33dfdcada3SDoug Rabson * Copyright (c) 1986-1991 by Sun Microsystems Inc. 34dfdcada3SDoug Rabson */ 35dfdcada3SDoug Rabson 36dfdcada3SDoug Rabson #if defined(LIBC_SCCS) && !defined(lint) 37dfdcada3SDoug Rabson #ident "@(#)svc_dg.c 1.17 94/04/24 SMI" 38dfdcada3SDoug Rabson #endif 39dfdcada3SDoug Rabson #include <sys/cdefs.h> 40dfdcada3SDoug Rabson __FBSDID("$FreeBSD$"); 41dfdcada3SDoug Rabson 42dfdcada3SDoug Rabson /* 43dfdcada3SDoug Rabson * svc_dg.c, Server side for connectionless RPC. 44dfdcada3SDoug Rabson */ 45dfdcada3SDoug Rabson 46dfdcada3SDoug Rabson #include <sys/param.h> 47dfdcada3SDoug Rabson #include <sys/lock.h> 48dfdcada3SDoug Rabson #include <sys/kernel.h> 49dfdcada3SDoug Rabson #include <sys/malloc.h> 50dfdcada3SDoug Rabson #include <sys/mbuf.h> 51dfdcada3SDoug Rabson #include <sys/mutex.h> 52dfdcada3SDoug Rabson #include <sys/protosw.h> 53dfdcada3SDoug Rabson #include <sys/queue.h> 54dfdcada3SDoug Rabson #include <sys/socket.h> 55dfdcada3SDoug Rabson #include <sys/socketvar.h> 56dfdcada3SDoug Rabson #include <sys/systm.h> 57dfdcada3SDoug Rabson #include <sys/uio.h> 58dfdcada3SDoug Rabson 59dfdcada3SDoug Rabson #include <rpc/rpc.h> 60dfdcada3SDoug Rabson 61dfdcada3SDoug Rabson #include "rpc_com.h" 62dfdcada3SDoug Rabson 63dfdcada3SDoug Rabson static enum xprt_stat svc_dg_stat(SVCXPRT *); 64dfdcada3SDoug Rabson static bool_t svc_dg_recv(SVCXPRT *, struct rpc_msg *); 65dfdcada3SDoug Rabson static bool_t svc_dg_reply(SVCXPRT *, struct rpc_msg *); 66dfdcada3SDoug Rabson static bool_t svc_dg_getargs(SVCXPRT *, xdrproc_t, void *); 67dfdcada3SDoug Rabson static bool_t svc_dg_freeargs(SVCXPRT *, xdrproc_t, void *); 68dfdcada3SDoug Rabson static void svc_dg_destroy(SVCXPRT *); 69dfdcada3SDoug Rabson static bool_t svc_dg_control(SVCXPRT *, const u_int, void *); 70dfdcada3SDoug Rabson static void svc_dg_soupcall(struct socket *so, void *arg, int waitflag); 71dfdcada3SDoug Rabson 72dfdcada3SDoug Rabson static struct xp_ops svc_dg_ops = { 73dfdcada3SDoug Rabson .xp_recv = svc_dg_recv, 74dfdcada3SDoug Rabson .xp_stat = svc_dg_stat, 75dfdcada3SDoug Rabson .xp_getargs = svc_dg_getargs, 76dfdcada3SDoug Rabson .xp_reply = svc_dg_reply, 77dfdcada3SDoug Rabson .xp_freeargs = svc_dg_freeargs, 78dfdcada3SDoug Rabson .xp_destroy = svc_dg_destroy, 79dfdcada3SDoug Rabson .xp_control = svc_dg_control, 80dfdcada3SDoug Rabson }; 81dfdcada3SDoug Rabson 82dfdcada3SDoug Rabson /* 83dfdcada3SDoug Rabson * Usage: 84dfdcada3SDoug Rabson * xprt = svc_dg_create(sock, sendsize, recvsize); 85dfdcada3SDoug Rabson * Does other connectionless specific initializations. 86dfdcada3SDoug Rabson * Once *xprt is initialized, it is registered. 87dfdcada3SDoug Rabson * see (svc.h, xprt_register). If recvsize or sendsize are 0 suitable 88dfdcada3SDoug Rabson * system defaults are chosen. 89dfdcada3SDoug Rabson * The routines returns NULL if a problem occurred. 90dfdcada3SDoug Rabson */ 91dfdcada3SDoug Rabson static const char svc_dg_str[] = "svc_dg_create: %s"; 92dfdcada3SDoug Rabson static const char svc_dg_err1[] = "could not get transport information"; 93dfdcada3SDoug Rabson static const char svc_dg_err2[] = "transport does not support data transfer"; 94dfdcada3SDoug Rabson static const char __no_mem_str[] = "out of memory"; 95dfdcada3SDoug Rabson 96dfdcada3SDoug Rabson SVCXPRT * 97dfdcada3SDoug Rabson svc_dg_create(SVCPOOL *pool, struct socket *so, size_t sendsize, 98dfdcada3SDoug Rabson size_t recvsize) 99dfdcada3SDoug Rabson { 100dfdcada3SDoug Rabson SVCXPRT *xprt; 101dfdcada3SDoug Rabson struct __rpc_sockinfo si; 102dfdcada3SDoug Rabson struct sockaddr* sa; 103dfdcada3SDoug Rabson int error; 104dfdcada3SDoug Rabson 105dfdcada3SDoug Rabson if (!__rpc_socket2sockinfo(so, &si)) { 106dfdcada3SDoug Rabson printf(svc_dg_str, svc_dg_err1); 107dfdcada3SDoug Rabson return (NULL); 108dfdcada3SDoug Rabson } 109dfdcada3SDoug Rabson /* 110dfdcada3SDoug Rabson * Find the receive and the send size 111dfdcada3SDoug Rabson */ 112dfdcada3SDoug Rabson sendsize = __rpc_get_t_size(si.si_af, si.si_proto, (int)sendsize); 113dfdcada3SDoug Rabson recvsize = __rpc_get_t_size(si.si_af, si.si_proto, (int)recvsize); 114dfdcada3SDoug Rabson if ((sendsize == 0) || (recvsize == 0)) { 115dfdcada3SDoug Rabson printf(svc_dg_str, svc_dg_err2); 116dfdcada3SDoug Rabson return (NULL); 117dfdcada3SDoug Rabson } 118dfdcada3SDoug Rabson 119dfdcada3SDoug Rabson xprt = mem_alloc(sizeof (SVCXPRT)); 120dfdcada3SDoug Rabson memset(xprt, 0, sizeof (SVCXPRT)); 121dfdcada3SDoug Rabson mtx_init(&xprt->xp_lock, "xprt->xp_lock", NULL, MTX_DEF); 122dfdcada3SDoug Rabson xprt->xp_pool = pool; 123dfdcada3SDoug Rabson xprt->xp_socket = so; 124dfdcada3SDoug Rabson xprt->xp_p1 = NULL; 125dfdcada3SDoug Rabson xprt->xp_p2 = NULL; 126dfdcada3SDoug Rabson xprt->xp_ops = &svc_dg_ops; 127dfdcada3SDoug Rabson 128dfdcada3SDoug Rabson error = so->so_proto->pr_usrreqs->pru_sockaddr(so, &sa); 129dfdcada3SDoug Rabson if (error) 130dfdcada3SDoug Rabson goto freedata; 131dfdcada3SDoug Rabson 132dfdcada3SDoug Rabson xprt->xp_ltaddr.buf = mem_alloc(sizeof (struct sockaddr_storage)); 133dfdcada3SDoug Rabson xprt->xp_ltaddr.maxlen = sizeof (struct sockaddr_storage); 134dfdcada3SDoug Rabson xprt->xp_ltaddr.len = sa->sa_len; 135dfdcada3SDoug Rabson memcpy(xprt->xp_ltaddr.buf, sa, sa->sa_len); 136dfdcada3SDoug Rabson free(sa, M_SONAME); 137dfdcada3SDoug Rabson 138dfdcada3SDoug Rabson xprt->xp_rtaddr.buf = mem_alloc(sizeof (struct sockaddr_storage)); 139dfdcada3SDoug Rabson xprt->xp_rtaddr.maxlen = sizeof (struct sockaddr_storage); 140dfdcada3SDoug Rabson xprt->xp_rtaddr.len = 0; 141dfdcada3SDoug Rabson 142dfdcada3SDoug Rabson xprt_register(xprt); 143dfdcada3SDoug Rabson 144dfdcada3SDoug Rabson SOCKBUF_LOCK(&so->so_rcv); 145dfdcada3SDoug Rabson so->so_upcallarg = xprt; 146dfdcada3SDoug Rabson so->so_upcall = svc_dg_soupcall; 147dfdcada3SDoug Rabson so->so_rcv.sb_flags |= SB_UPCALL; 148dfdcada3SDoug Rabson SOCKBUF_UNLOCK(&so->so_rcv); 149dfdcada3SDoug Rabson 150dfdcada3SDoug Rabson return (xprt); 151dfdcada3SDoug Rabson freedata: 152dfdcada3SDoug Rabson (void) printf(svc_dg_str, __no_mem_str); 153dfdcada3SDoug Rabson if (xprt) { 154dfdcada3SDoug Rabson (void) mem_free(xprt, sizeof (SVCXPRT)); 155dfdcada3SDoug Rabson } 156dfdcada3SDoug Rabson return (NULL); 157dfdcada3SDoug Rabson } 158dfdcada3SDoug Rabson 159dfdcada3SDoug Rabson /*ARGSUSED*/ 160dfdcada3SDoug Rabson static enum xprt_stat 161dfdcada3SDoug Rabson svc_dg_stat(SVCXPRT *xprt) 162dfdcada3SDoug Rabson { 163dfdcada3SDoug Rabson 164dfdcada3SDoug Rabson return (XPRT_IDLE); 165dfdcada3SDoug Rabson } 166dfdcada3SDoug Rabson 167dfdcada3SDoug Rabson static bool_t 168dfdcada3SDoug Rabson svc_dg_recv(SVCXPRT *xprt, struct rpc_msg *msg) 169dfdcada3SDoug Rabson { 170dfdcada3SDoug Rabson struct uio uio; 171dfdcada3SDoug Rabson struct sockaddr *raddr; 172dfdcada3SDoug Rabson struct mbuf *mreq; 173dfdcada3SDoug Rabson int error, rcvflag; 174dfdcada3SDoug Rabson 175dfdcada3SDoug Rabson /* 176dfdcada3SDoug Rabson * The socket upcall calls xprt_active() which will eventually 177dfdcada3SDoug Rabson * cause the server to call us here. We attempt to read a 178dfdcada3SDoug Rabson * packet from the socket and process it. If the read fails, 179dfdcada3SDoug Rabson * we have drained all pending requests so we call 180dfdcada3SDoug Rabson * xprt_inactive(). 181dfdcada3SDoug Rabson * 182dfdcada3SDoug Rabson * The lock protects us in the case where a new packet arrives 183dfdcada3SDoug Rabson * on the socket after our call to soreceive fails with 184dfdcada3SDoug Rabson * EWOULDBLOCK - the call to xprt_active() in the upcall will 185dfdcada3SDoug Rabson * happen only after our call to xprt_inactive() which ensures 186dfdcada3SDoug Rabson * that we will remain active. It might be possible to use 187dfdcada3SDoug Rabson * SOCKBUF_LOCK for this - its not clear to me what locks are 188dfdcada3SDoug Rabson * held during the upcall. 189dfdcada3SDoug Rabson */ 190dfdcada3SDoug Rabson mtx_lock(&xprt->xp_lock); 191dfdcada3SDoug Rabson 192dfdcada3SDoug Rabson uio.uio_resid = 1000000000; 193dfdcada3SDoug Rabson uio.uio_td = curthread; 194dfdcada3SDoug Rabson mreq = NULL; 195dfdcada3SDoug Rabson rcvflag = MSG_DONTWAIT; 196dfdcada3SDoug Rabson error = soreceive(xprt->xp_socket, &raddr, &uio, &mreq, NULL, &rcvflag); 197dfdcada3SDoug Rabson 198dfdcada3SDoug Rabson if (error == EWOULDBLOCK) { 199dfdcada3SDoug Rabson xprt_inactive(xprt); 200dfdcada3SDoug Rabson mtx_unlock(&xprt->xp_lock); 201dfdcada3SDoug Rabson return (FALSE); 202dfdcada3SDoug Rabson } 203dfdcada3SDoug Rabson 204dfdcada3SDoug Rabson if (error) { 205dfdcada3SDoug Rabson SOCKBUF_LOCK(&xprt->xp_socket->so_rcv); 206dfdcada3SDoug Rabson xprt->xp_socket->so_upcallarg = NULL; 207dfdcada3SDoug Rabson xprt->xp_socket->so_upcall = NULL; 208dfdcada3SDoug Rabson xprt->xp_socket->so_rcv.sb_flags &= ~SB_UPCALL; 209dfdcada3SDoug Rabson SOCKBUF_UNLOCK(&xprt->xp_socket->so_rcv); 210dfdcada3SDoug Rabson xprt_inactive(xprt); 211dfdcada3SDoug Rabson mtx_unlock(&xprt->xp_lock); 212dfdcada3SDoug Rabson return (FALSE); 213dfdcada3SDoug Rabson } 214dfdcada3SDoug Rabson 215dfdcada3SDoug Rabson mtx_unlock(&xprt->xp_lock); 216dfdcada3SDoug Rabson 217dfdcada3SDoug Rabson KASSERT(raddr->sa_len < xprt->xp_rtaddr.maxlen, 218dfdcada3SDoug Rabson ("Unexpected remote address length")); 219dfdcada3SDoug Rabson memcpy(xprt->xp_rtaddr.buf, raddr, raddr->sa_len); 220dfdcada3SDoug Rabson xprt->xp_rtaddr.len = raddr->sa_len; 221dfdcada3SDoug Rabson free(raddr, M_SONAME); 222dfdcada3SDoug Rabson 223dfdcada3SDoug Rabson xdrmbuf_create(&xprt->xp_xdrreq, mreq, XDR_DECODE); 224dfdcada3SDoug Rabson if (! xdr_callmsg(&xprt->xp_xdrreq, msg)) { 225dfdcada3SDoug Rabson XDR_DESTROY(&xprt->xp_xdrreq); 226dfdcada3SDoug Rabson return (FALSE); 227dfdcada3SDoug Rabson } 228dfdcada3SDoug Rabson xprt->xp_xid = msg->rm_xid; 229dfdcada3SDoug Rabson 230dfdcada3SDoug Rabson return (TRUE); 231dfdcada3SDoug Rabson } 232dfdcada3SDoug Rabson 233dfdcada3SDoug Rabson static bool_t 234dfdcada3SDoug Rabson svc_dg_reply(SVCXPRT *xprt, struct rpc_msg *msg) 235dfdcada3SDoug Rabson { 236dfdcada3SDoug Rabson struct mbuf *mrep; 237dfdcada3SDoug Rabson bool_t stat = FALSE; 238dfdcada3SDoug Rabson int error; 239dfdcada3SDoug Rabson 240dfdcada3SDoug Rabson MGETHDR(mrep, M_WAIT, MT_DATA); 241dfdcada3SDoug Rabson MCLGET(mrep, M_WAIT); 242dfdcada3SDoug Rabson mrep->m_len = 0; 243dfdcada3SDoug Rabson 244dfdcada3SDoug Rabson xdrmbuf_create(&xprt->xp_xdrrep, mrep, XDR_ENCODE); 245dfdcada3SDoug Rabson msg->rm_xid = xprt->xp_xid; 246dfdcada3SDoug Rabson if (xdr_replymsg(&xprt->xp_xdrrep, msg)) { 247dfdcada3SDoug Rabson m_fixhdr(mrep); 248dfdcada3SDoug Rabson error = sosend(xprt->xp_socket, 249dfdcada3SDoug Rabson (struct sockaddr *) xprt->xp_rtaddr.buf, NULL, mrep, NULL, 250dfdcada3SDoug Rabson 0, curthread); 251dfdcada3SDoug Rabson if (!error) { 252dfdcada3SDoug Rabson stat = TRUE; 253dfdcada3SDoug Rabson } 254dfdcada3SDoug Rabson } else { 255dfdcada3SDoug Rabson m_freem(mrep); 256dfdcada3SDoug Rabson } 257dfdcada3SDoug Rabson 258dfdcada3SDoug Rabson /* 259dfdcada3SDoug Rabson * This frees the request mbuf chain as well. The reply mbuf 260dfdcada3SDoug Rabson * chain was consumed by sosend. 261dfdcada3SDoug Rabson */ 262dfdcada3SDoug Rabson XDR_DESTROY(&xprt->xp_xdrreq); 263dfdcada3SDoug Rabson XDR_DESTROY(&xprt->xp_xdrrep); 264dfdcada3SDoug Rabson xprt->xp_p2 = NULL; 265dfdcada3SDoug Rabson 266dfdcada3SDoug Rabson return (stat); 267dfdcada3SDoug Rabson } 268dfdcada3SDoug Rabson 269dfdcada3SDoug Rabson static bool_t 270dfdcada3SDoug Rabson svc_dg_getargs(SVCXPRT *xprt, xdrproc_t xdr_args, void *args_ptr) 271dfdcada3SDoug Rabson { 272dfdcada3SDoug Rabson 273dfdcada3SDoug Rabson return (xdr_args(&xprt->xp_xdrreq, args_ptr)); 274dfdcada3SDoug Rabson } 275dfdcada3SDoug Rabson 276dfdcada3SDoug Rabson static bool_t 277dfdcada3SDoug Rabson svc_dg_freeargs(SVCXPRT *xprt, xdrproc_t xdr_args, void *args_ptr) 278dfdcada3SDoug Rabson { 279dfdcada3SDoug Rabson XDR xdrs; 280dfdcada3SDoug Rabson 281dfdcada3SDoug Rabson /* 282dfdcada3SDoug Rabson * Free the request mbuf here - this allows us to handle 283dfdcada3SDoug Rabson * protocols where not all requests have replies 284dfdcada3SDoug Rabson * (i.e. NLM). Note that xdrmbuf_destroy handles being called 285dfdcada3SDoug Rabson * twice correctly - the mbuf will only be freed once. 286dfdcada3SDoug Rabson */ 287dfdcada3SDoug Rabson XDR_DESTROY(&xprt->xp_xdrreq); 288dfdcada3SDoug Rabson 289dfdcada3SDoug Rabson xdrs.x_op = XDR_FREE; 290dfdcada3SDoug Rabson return (xdr_args(&xdrs, args_ptr)); 291dfdcada3SDoug Rabson } 292dfdcada3SDoug Rabson 293dfdcada3SDoug Rabson static void 294dfdcada3SDoug Rabson svc_dg_destroy(SVCXPRT *xprt) 295dfdcada3SDoug Rabson { 296dfdcada3SDoug Rabson SOCKBUF_LOCK(&xprt->xp_socket->so_rcv); 297dfdcada3SDoug Rabson xprt->xp_socket->so_upcallarg = NULL; 298dfdcada3SDoug Rabson xprt->xp_socket->so_upcall = NULL; 299dfdcada3SDoug Rabson xprt->xp_socket->so_rcv.sb_flags &= ~SB_UPCALL; 300dfdcada3SDoug Rabson SOCKBUF_UNLOCK(&xprt->xp_socket->so_rcv); 301dfdcada3SDoug Rabson 302dfdcada3SDoug Rabson xprt_unregister(xprt); 303dfdcada3SDoug Rabson 304dfdcada3SDoug Rabson mtx_destroy(&xprt->xp_lock); 305dfdcada3SDoug Rabson if (xprt->xp_socket) 306dfdcada3SDoug Rabson (void)soclose(xprt->xp_socket); 307dfdcada3SDoug Rabson 308dfdcada3SDoug Rabson if (xprt->xp_rtaddr.buf) 309dfdcada3SDoug Rabson (void) mem_free(xprt->xp_rtaddr.buf, xprt->xp_rtaddr.maxlen); 310dfdcada3SDoug Rabson if (xprt->xp_ltaddr.buf) 311dfdcada3SDoug Rabson (void) mem_free(xprt->xp_ltaddr.buf, xprt->xp_ltaddr.maxlen); 312dfdcada3SDoug Rabson (void) mem_free(xprt, sizeof (SVCXPRT)); 313dfdcada3SDoug Rabson } 314dfdcada3SDoug Rabson 315dfdcada3SDoug Rabson static bool_t 316dfdcada3SDoug Rabson /*ARGSUSED*/ 317dfdcada3SDoug Rabson svc_dg_control(xprt, rq, in) 318dfdcada3SDoug Rabson SVCXPRT *xprt; 319dfdcada3SDoug Rabson const u_int rq; 320dfdcada3SDoug Rabson void *in; 321dfdcada3SDoug Rabson { 322dfdcada3SDoug Rabson 323dfdcada3SDoug Rabson return (FALSE); 324dfdcada3SDoug Rabson } 325dfdcada3SDoug Rabson 326dfdcada3SDoug Rabson static void 327dfdcada3SDoug Rabson svc_dg_soupcall(struct socket *so, void *arg, int waitflag) 328dfdcada3SDoug Rabson { 329dfdcada3SDoug Rabson SVCXPRT *xprt = (SVCXPRT *) arg; 330dfdcada3SDoug Rabson 331dfdcada3SDoug Rabson mtx_lock(&xprt->xp_lock); 332dfdcada3SDoug Rabson xprt_active(xprt); 333dfdcada3SDoug Rabson mtx_unlock(&xprt->xp_lock); 334dfdcada3SDoug Rabson } 335