123212Smckusick /* 226056Ssklower * Copyright (c) 1984, 1985 Regents of the University of California. 323212Smckusick * All rights reserved. The Berkeley software License Agreement 423212Smckusick * specifies the terms and conditions for redistribution. 523212Smckusick * 6*28958Skarels * @(#)ns_pcb.c 6.8 (Berkeley) 06/02/86 723212Smckusick */ 821489Ssklower 921489Ssklower #include "param.h" 1021489Ssklower #include "systm.h" 1121489Ssklower #include "dir.h" 1221489Ssklower #include "user.h" 1321489Ssklower #include "mbuf.h" 1421489Ssklower #include "socket.h" 1521489Ssklower #include "socketvar.h" 1621489Ssklower #include "../net/if.h" 1721489Ssklower #include "../net/route.h" 1821489Ssklower #include "protosw.h" 1921489Ssklower 2021489Ssklower #include "ns.h" 2121489Ssklower #include "ns_if.h" 2221489Ssklower #include "ns_pcb.h" 2321489Ssklower 2421489Ssklower struct ns_addr zerons_addr; 2521489Ssklower 2621489Ssklower ns_pcballoc(so, head) 2721489Ssklower struct socket *so; 2824226Ssklower struct nspcb *head; 2921489Ssklower { 3021489Ssklower struct mbuf *m; 3121489Ssklower register struct nspcb *nsp; 3221489Ssklower 3321489Ssklower m = m_getclr(M_DONTWAIT, MT_PCB); 3421489Ssklower if (m == NULL) 3521489Ssklower return (ENOBUFS); 3621489Ssklower nsp = mtod(m, struct nspcb *); 3721489Ssklower nsp->nsp_socket = so; 3821489Ssklower insque(nsp, head); 3921489Ssklower so->so_pcb = (caddr_t)nsp; 4021489Ssklower return (0); 4121489Ssklower } 4221489Ssklower 4321489Ssklower ns_pcbbind(nsp, nam) 4421489Ssklower register struct nspcb *nsp; 4521489Ssklower struct mbuf *nam; 4621489Ssklower { 4721489Ssklower register struct sockaddr_ns *sns; 4821489Ssklower u_short lport = 0; 4921489Ssklower 5021489Ssklower if(nsp->nsp_lport || !ns_nullhost(nsp->nsp_laddr)) 5121489Ssklower return (EINVAL); 5221489Ssklower if (nam == 0) 5321489Ssklower goto noname; 5421489Ssklower sns = mtod(nam, struct sockaddr_ns *); 5521489Ssklower if (nam->m_len != sizeof (*sns)) 5621489Ssklower return (EINVAL); 5721489Ssklower if (!ns_nullhost(sns->sns_addr)) { 5821489Ssklower int tport = sns->sns_port; 5921489Ssklower 6021489Ssklower sns->sns_port = 0; /* yech... */ 6121489Ssklower if (ifa_ifwithaddr((struct sockaddr *)sns) == 0) 6221489Ssklower return (EADDRNOTAVAIL); 6321489Ssklower sns->sns_port = tport; 6421489Ssklower } 6521489Ssklower lport = sns->sns_port; 6621489Ssklower if (lport) { 6721489Ssklower u_short aport = ntohs(lport); 6821489Ssklower 6921489Ssklower if (aport < NSPORT_RESERVED && u.u_uid != 0) 7021489Ssklower return (EACCES); 7121489Ssklower if (ns_pcblookup(&zerons_addr, lport, 0)) 7221489Ssklower return (EADDRINUSE); 7321489Ssklower } 7421489Ssklower nsp->nsp_laddr = sns->sns_addr; 7521489Ssklower noname: 7621489Ssklower if (lport == 0) 7721489Ssklower do { 7821489Ssklower if (nspcb.nsp_lport++ < NSPORT_RESERVED) 7921489Ssklower nspcb.nsp_lport = NSPORT_RESERVED; 8021489Ssklower lport = htons(nspcb.nsp_lport); 8121489Ssklower } while (ns_pcblookup(&zerons_addr, lport, 0)); 8221489Ssklower nsp->nsp_lport = lport; 8321489Ssklower return (0); 8421489Ssklower } 8521489Ssklower 8621489Ssklower /* 8721489Ssklower * Connect from a socket to a specified address. 8821489Ssklower * Both address and port must be specified in argument sns. 8921489Ssklower * If don't have a local address for this socket yet, 9021489Ssklower * then pick one. 9121489Ssklower */ 9221489Ssklower ns_pcbconnect(nsp, nam) 9321489Ssklower struct nspcb *nsp; 9421489Ssklower struct mbuf *nam; 9521489Ssklower { 9621489Ssklower struct ns_ifaddr *ia; 9721489Ssklower register struct sockaddr_ns *sns = mtod(nam, struct sockaddr_ns *); 9825044Ssklower register struct ns_addr *dst; 9921489Ssklower 10021489Ssklower if (nam->m_len != sizeof (*sns)) 10121489Ssklower return (EINVAL); 10221489Ssklower if (sns->sns_family != AF_NS) 10321489Ssklower return (EAFNOSUPPORT); 10421489Ssklower if (sns->sns_port==0 || ns_nullhost(sns->sns_addr)) 10521489Ssklower return (EADDRNOTAVAIL); 10621489Ssklower if (ns_nullhost(nsp->nsp_laddr) && 10725044Ssklower (!ns_neteq(nsp->nsp_lastdst, sns->sns_addr))) { 10825044Ssklower register struct route *ro; 10925044Ssklower struct ifnet *ifp; 11025044Ssklower ro = &nsp->nsp_route; 11125044Ssklower dst = &satons_addr(ro->ro_dst); 11225044Ssklower 11325044Ssklower ia = ns_iaonnetof(&sns->sns_addr); 11426318Ssklower if (ia == 0 || 11526318Ssklower (ia->ia_ifp->if_flags & IFF_UP) == 0) { 11621489Ssklower /* 11721489Ssklower * If route is known or can be allocated now, 11821489Ssklower * our src addr is taken from the i/f, else punt. 11921489Ssklower */ 12021489Ssklower if (ro->ro_rt && 12125044Ssklower !ns_hosteq(*dst, sns->sns_addr)) { 12221489Ssklower RTFREE(ro->ro_rt); 12321489Ssklower ro->ro_rt = (struct rtentry *)0; 12421489Ssklower } 12521489Ssklower if ((ro->ro_rt == (struct rtentry *)0) || 12621489Ssklower (ifp = ro->ro_rt->rt_ifp) == (struct ifnet *)0) { 12721489Ssklower /* No route yet, so try to acquire one */ 12821489Ssklower ro->ro_dst.sa_family = AF_NS; 12925044Ssklower *dst = sns->sns_addr; 13025044Ssklower dst->x_port = 0; 13121489Ssklower rtalloc(ro); 13221489Ssklower if (ro->ro_rt == 0) 13323846Ssklower ifp = (struct ifnet *)0; 13421489Ssklower else 13523846Ssklower ifp = ro->ro_rt->rt_ifp; 13623846Ssklower } 13723846Ssklower if (ifp) { 13823846Ssklower for (ia = ns_ifaddr; ia; ia = ia->ia_next) 13921489Ssklower if (ia->ia_ifp == ifp) 14021489Ssklower break; 14121489Ssklower } 14221489Ssklower if (ia == 0) 14321489Ssklower ia = ns_ifaddr; 14421489Ssklower if (ia == 0) 14521489Ssklower return (EADDRNOTAVAIL); 14625044Ssklower } else if (ro->ro_rt) { 14725044Ssklower if (ns_neteq(*dst, sns->sns_addr)) { 14825044Ssklower /* 14925044Ssklower * This assume that we have no GH 15025044Ssklower * type routes. 15125044Ssklower */ 15225044Ssklower if (ro->ro_rt->rt_flags & RTF_HOST) { 15325044Ssklower if (!ns_hosteq(*dst, sns->sns_addr)) 15425044Ssklower goto re_route; 15525044Ssklower 15625044Ssklower } 15725044Ssklower if ((ro->ro_rt->rt_flags & RTF_GATEWAY) == 0) { 15825044Ssklower dst->x_host = sns->sns_addr.x_host; 15925044Ssklower } 16025044Ssklower /* 16125044Ssklower * Otherwise, we go through the same gateway 16225044Ssklower * and dst is already set up. 16325044Ssklower */ 16425044Ssklower } else { 16525044Ssklower re_route: 16625044Ssklower RTFREE(ro->ro_rt); 16725044Ssklower ro->ro_rt = (struct rtentry *)0; 16825044Ssklower } 16921489Ssklower } 17025044Ssklower nsp->nsp_laddr.x_net = satons_addr(ia->ia_addr).x_net; 17125044Ssklower nsp->nsp_lastdst = sns->sns_addr; 17221489Ssklower } 17321489Ssklower if (ns_pcblookup(&sns->sns_addr, nsp->nsp_lport, 0)) 17421489Ssklower return (EADDRINUSE); 17521489Ssklower if (ns_nullhost(nsp->nsp_laddr)) { 17621489Ssklower if (nsp->nsp_lport == 0) 17724226Ssklower (void) ns_pcbbind(nsp, (struct mbuf *)0); 17821489Ssklower nsp->nsp_laddr.x_host = ns_thishost; 17921489Ssklower } 18021489Ssklower nsp->nsp_faddr = sns->sns_addr; 18121489Ssklower /* Includes nsp->nsp_fport = sns->sns_port; */ 18221489Ssklower return (0); 18321489Ssklower } 18421489Ssklower 18521489Ssklower ns_pcbdisconnect(nsp) 18621489Ssklower struct nspcb *nsp; 18721489Ssklower { 18821489Ssklower 18921489Ssklower nsp->nsp_faddr = zerons_addr; 19021489Ssklower if (nsp->nsp_socket->so_state & SS_NOFDREF) 19121489Ssklower ns_pcbdetach(nsp); 19221489Ssklower } 19321489Ssklower 19421489Ssklower ns_pcbdetach(nsp) 19521489Ssklower struct nspcb *nsp; 19621489Ssklower { 19721489Ssklower struct socket *so = nsp->nsp_socket; 19821489Ssklower 19921489Ssklower so->so_pcb = 0; 20021489Ssklower sofree(so); 20121489Ssklower if (nsp->nsp_route.ro_rt) 20221489Ssklower rtfree(nsp->nsp_route.ro_rt); 20321489Ssklower remque(nsp); 20421489Ssklower (void) m_free(dtom(nsp)); 20521489Ssklower } 20621489Ssklower 20721489Ssklower ns_setsockaddr(nsp, nam) 20821489Ssklower register struct nspcb *nsp; 20921489Ssklower struct mbuf *nam; 21021489Ssklower { 21121489Ssklower register struct sockaddr_ns *sns = mtod(nam, struct sockaddr_ns *); 21221489Ssklower 21321489Ssklower nam->m_len = sizeof (*sns); 21421489Ssklower sns = mtod(nam, struct sockaddr_ns *); 21521489Ssklower bzero((caddr_t)sns, sizeof (*sns)); 21621489Ssklower sns->sns_family = AF_NS; 21721489Ssklower sns->sns_addr = nsp->nsp_laddr; 21821489Ssklower } 21921489Ssklower 22021489Ssklower ns_setpeeraddr(nsp, nam) 22121489Ssklower register struct nspcb *nsp; 22221489Ssklower struct mbuf *nam; 22321489Ssklower { 22421489Ssklower register struct sockaddr_ns *sns = mtod(nam, struct sockaddr_ns *); 22521489Ssklower 22621489Ssklower nam->m_len = sizeof (*sns); 22721489Ssklower sns = mtod(nam, struct sockaddr_ns *); 22821489Ssklower bzero((caddr_t)sns, sizeof (*sns)); 22921489Ssklower sns->sns_family = AF_NS; 23021489Ssklower sns->sns_addr = nsp->nsp_faddr; 23121489Ssklower } 23221489Ssklower 23321489Ssklower /* 23421489Ssklower * Pass some notification to all connections of a protocol 23521489Ssklower * associated with address dst. Call the 23621489Ssklower * protocol specific routine to handle each connection. 23721489Ssklower * Also pass an extra paramter via the nspcb. (which may in fact 23821489Ssklower * be a parameter list!) 23921489Ssklower */ 24021489Ssklower ns_pcbnotify(dst, errno, notify, param) 24121489Ssklower register struct ns_addr *dst; 24221489Ssklower long param; 24321489Ssklower int errno, (*notify)(); 24421489Ssklower { 24521489Ssklower register struct nspcb *nsp, *oinp; 24621489Ssklower int s = splimp(); 24721489Ssklower 24821489Ssklower for (nsp = (&nspcb)->nsp_next; nsp != (&nspcb);) { 24921489Ssklower if (!ns_hosteq(*dst,nsp->nsp_faddr)) { 25021489Ssklower next: 25121489Ssklower nsp = nsp->nsp_next; 25221489Ssklower continue; 25321489Ssklower } 25421489Ssklower if (nsp->nsp_socket == 0) 25521489Ssklower goto next; 25621489Ssklower if (errno) 25721489Ssklower nsp->nsp_socket->so_error = errno; 25821489Ssklower oinp = nsp; 25921489Ssklower nsp = nsp->nsp_next; 26021489Ssklower oinp->nsp_notify_param = param; 26121489Ssklower (*notify)(oinp); 26221489Ssklower } 26321489Ssklower splx(s); 26421489Ssklower } 26521489Ssklower 266*28958Skarels #ifdef notdef 26721489Ssklower /* 26821489Ssklower * After a routing change, flush old routing 26921489Ssklower * and allocate a (hopefully) better one. 27021489Ssklower */ 27121489Ssklower ns_rtchange(nsp) 27221489Ssklower struct nspcb *nsp; 27321489Ssklower { 27421489Ssklower if (nsp->nsp_route.ro_rt) { 27521489Ssklower rtfree(nsp->nsp_route.ro_rt); 27621489Ssklower nsp->nsp_route.ro_rt = 0; 27721489Ssklower /* 27821489Ssklower * A new route can be allocated the next time 27921489Ssklower * output is attempted. 28021489Ssklower */ 28121489Ssklower } 28221489Ssklower /* SHOULD NOTIFY HIGHER-LEVEL PROTOCOLS */ 28321489Ssklower } 284*28958Skarels #endif 28521489Ssklower 28621489Ssklower struct nspcb * 28721489Ssklower ns_pcblookup(faddr, lport, wildp) 28821489Ssklower struct ns_addr *faddr; 28921489Ssklower u_short lport; 29021489Ssklower { 29121489Ssklower register struct nspcb *nsp, *match = 0; 29221489Ssklower int matchwild = 3, wildcard; 29321489Ssklower u_short fport; 29421489Ssklower 29521489Ssklower fport = faddr->x_port; 29621489Ssklower for (nsp = (&nspcb)->nsp_next; nsp != (&nspcb); nsp = nsp->nsp_next) { 29721489Ssklower if (nsp->nsp_lport != lport) 29821489Ssklower continue; 29921489Ssklower wildcard = 0; 30021489Ssklower if (ns_nullhost(nsp->nsp_faddr)) { 30121489Ssklower if (!ns_nullhost(*faddr)) 30221489Ssklower wildcard++; 30321489Ssklower } else { 30421489Ssklower if (ns_nullhost(*faddr)) 30521489Ssklower wildcard++; 30621489Ssklower else { 30721489Ssklower if (!ns_hosteq(nsp->nsp_faddr, *faddr)) 30821489Ssklower continue; 30921489Ssklower if( nsp->nsp_fport != fport) { 31021489Ssklower if(nsp->nsp_fport != 0) 31121489Ssklower continue; 31221489Ssklower else 31321489Ssklower wildcard++; 31421489Ssklower } 31521489Ssklower } 31621489Ssklower } 31721489Ssklower if (wildcard && wildp==0) 31821489Ssklower continue; 31921489Ssklower if (wildcard < matchwild) { 32021489Ssklower match = nsp; 32121489Ssklower matchwild = wildcard; 32221489Ssklower if (wildcard == 0) 32321489Ssklower break; 32421489Ssklower } 32521489Ssklower } 32621489Ssklower return (match); 32721489Ssklower } 328