123202Smckusick /* 223202Smckusick * Copyright (c) 1982 Regents of the University of California. 323202Smckusick * All rights reserved. The Berkeley software License Agreement 423202Smckusick * specifies the terms and conditions for redistribution. 523202Smckusick * 6*25042Ssklower * @(#)idp_usrreq.c 6.10 (Berkeley) 09/26/85 723202Smckusick */ 821479Ssklower 921479Ssklower #include "param.h" 1021479Ssklower #include "dir.h" 1121479Ssklower #include "user.h" 1221479Ssklower #include "mbuf.h" 1321479Ssklower #include "protosw.h" 1421479Ssklower #include "socket.h" 1521479Ssklower #include "socketvar.h" 1621479Ssklower #include "errno.h" 1721479Ssklower #include "stat.h" 1821479Ssklower 1921479Ssklower #include "../net/if.h" 2021479Ssklower #include "../net/route.h" 2121479Ssklower 2221479Ssklower #include "ns.h" 2321479Ssklower #include "ns_pcb.h" 2424611Ssklower #include "ns_if.h" 2521479Ssklower #include "idp.h" 2621479Ssklower #include "idp_var.h" 2721479Ssklower #include "ns_error.h" 2821479Ssklower 2921479Ssklower /* 3021479Ssklower * IDP protocol implementation. 3121479Ssklower */ 3221479Ssklower 3321479Ssklower struct sockaddr_ns idp_ns = { AF_NS }; 3421479Ssklower 3523977Ssklower /* 3623977Ssklower * This may also be called for raw listeners. 3723977Ssklower */ 3824611Ssklower idp_input(m, nsp, ifp) 3921479Ssklower struct mbuf *m; 4021479Ssklower register struct nspcb *nsp; 4124611Ssklower struct ifnet *ifp; 4221479Ssklower { 4321479Ssklower register struct idp *idp = mtod(m, struct idp *); 4421479Ssklower 4524611Ssklower if (nsp==0) 4624049Ssklower panic("No nspcb"); 4721479Ssklower /* 4821479Ssklower * Construct sockaddr format source address. 4921479Ssklower * Stuff source address and datagram in user buffer. 5021479Ssklower */ 5121479Ssklower idp_ns.sns_addr = idp->idp_sna; 52*25042Ssklower if (ns_netof(idp->idp_sna)==0 && ifp) { 5324611Ssklower register struct ifaddr *ia; 5424611Ssklower 5524685Ssklower for (ia = ifp->if_addrlist; ia; ia = ia->ifa_next) { 5624611Ssklower if (ia->ifa_addr.sa_family == AF_NS) { 5724611Ssklower idp_ns.sns_addr.x_net = 5824611Ssklower IA_SNS(ia)->sns_addr.x_net; 5924611Ssklower break; 6024611Ssklower } 6124611Ssklower } 6224611Ssklower } 6321479Ssklower nsp->nsp_rpt = idp->idp_pt; 6421479Ssklower if ( ! (nsp->nsp_flags & NSP_RAWIN) ) { 6521479Ssklower m->m_len -= sizeof (struct idp); 6621479Ssklower m->m_off += sizeof (struct idp); 6721479Ssklower } 6821479Ssklower if (sbappendaddr(&nsp->nsp_socket->so_rcv, (struct sockaddr *)&idp_ns, 6921479Ssklower m, (struct mbuf *)0) == 0) 7021479Ssklower goto bad; 7121479Ssklower sorwakeup(nsp->nsp_socket); 7221479Ssklower return; 7321479Ssklower bad: 7421479Ssklower m_freem(m); 7521479Ssklower } 7621479Ssklower 7721479Ssklower idp_abort(nsp) 7821479Ssklower struct nspcb *nsp; 7921479Ssklower { 8021479Ssklower struct socket *so = nsp->nsp_socket; 8121479Ssklower 8221479Ssklower ns_pcbdisconnect(nsp); 8321479Ssklower soisdisconnected(so); 8421479Ssklower } 8523977Ssklower /* 8623977Ssklower * Drop connection, reporting 8723977Ssklower * the specified error. 8823977Ssklower */ 8923977Ssklower struct nspcb * 9023977Ssklower idp_drop(nsp, errno) 9123977Ssklower register struct nspcb *nsp; 9223977Ssklower int errno; 9323977Ssklower { 9423977Ssklower struct socket *so = nsp->nsp_socket; 9521479Ssklower 9623977Ssklower /* 9723977Ssklower * someday, in the xerox world 9823977Ssklower * we will generate error protocol packets 9923977Ssklower * announcing that the socket has gone away. 10023977Ssklower */ 10123977Ssklower /*if (TCPS_HAVERCVDSYN(tp->t_state)) { 10223977Ssklower tp->t_state = TCPS_CLOSED; 10323977Ssklower (void) tcp_output(tp); 10423977Ssklower }*/ 10523977Ssklower so->so_error = errno; 10623977Ssklower ns_pcbdisconnect(nsp); 10723977Ssklower soisdisconnected(so); 10823977Ssklower } 10923977Ssklower 110*25042Ssklower int noIdpRoute; 11121479Ssklower idp_output(nsp, m0) 11221479Ssklower struct nspcb *nsp; 11321479Ssklower struct mbuf *m0; 11421479Ssklower { 11521479Ssklower register struct mbuf *m; 11621479Ssklower register struct idp *idp; 11721479Ssklower register struct socket *so; 11821479Ssklower register int len = 0; 11921479Ssklower register struct route *ro; 12021479Ssklower struct mbuf *mprev; 12121479Ssklower extern int idpcksum; 12221479Ssklower 12321479Ssklower /* 12421479Ssklower * Calculate data length. 12521479Ssklower */ 12621479Ssklower for (m = m0; m; m = m->m_next) { 12721479Ssklower mprev = m; 12821479Ssklower len += m->m_len; 12921479Ssklower } 13021479Ssklower /* 13121479Ssklower * Make sure packet is actually of even length. 13221479Ssklower */ 13321479Ssklower 13421479Ssklower if (len & 1) { 13521479Ssklower m = mprev; 13621479Ssklower if (m->m_len + m->m_off < MMAXOFF) { 13721479Ssklower m->m_len++; 13821479Ssklower } else { 13921479Ssklower struct mbuf *m1 = m_get(M_DONTWAIT, MT_DATA); 14021479Ssklower 14121699Ssklower if (m1 == 0) { 14221699Ssklower m_freem(m0); 14321699Ssklower return (ENOBUFS); 14421699Ssklower } 14521479Ssklower m1->m_len = 1; 14621479Ssklower m1->m_off = MMAXOFF - 1; 14721479Ssklower * mtod(m1, char *) = 0; 14821479Ssklower m->m_next = m1; 14921479Ssklower } 15021479Ssklower } 15121479Ssklower 15221479Ssklower /* 15321479Ssklower * Fill in mbuf with extended IDP header 15421479Ssklower * and addresses and length put into network format. 15521479Ssklower */ 15621479Ssklower if (nsp->nsp_flags & NSP_RAWOUT) { 15721479Ssklower m = m0; 15821479Ssklower idp = mtod(m, struct idp *); 15921479Ssklower } else { 16021479Ssklower m = m_get(M_DONTWAIT, MT_HEADER); 16121479Ssklower if (m == 0) { 16221479Ssklower m_freem(m0); 16321479Ssklower return (ENOBUFS); 16421479Ssklower } 16521479Ssklower m->m_off = MMAXOFF - sizeof (struct idp); 16621479Ssklower m->m_len = sizeof (struct idp); 16721479Ssklower m->m_next = m0; 16821479Ssklower idp = mtod(m, struct idp *); 16921479Ssklower idp->idp_tc = 0; 17021479Ssklower idp->idp_pt = nsp->nsp_dpt; 17121479Ssklower idp->idp_sna = nsp->nsp_laddr; 17221479Ssklower idp->idp_dna = nsp->nsp_faddr; 17321479Ssklower len += sizeof (struct idp); 17421479Ssklower } 17521479Ssklower 17621479Ssklower idp->idp_len = htons((u_short)len); 17721479Ssklower 17821479Ssklower if (idpcksum) { 17921479Ssklower idp->idp_sum = 0; 18021479Ssklower len = ((len - 1) | 1) + 1; 18121479Ssklower idp->idp_sum = ns_cksum(m, len); 18221479Ssklower } else 18321479Ssklower idp->idp_sum = 0xffff; 18421479Ssklower 18521479Ssklower /* 18621479Ssklower * Output datagram. 18721479Ssklower */ 18821479Ssklower so = nsp->nsp_socket; 18921479Ssklower if (so->so_options & SO_DONTROUTE) 19021479Ssklower return (ns_output(m, (struct route *)0, 19121479Ssklower (so->so_options & SO_BROADCAST) | NS_ROUTETOIF)); 19221479Ssklower /* 19321479Ssklower * Use cached route for previous datagram if 194*25042Ssklower * possible. If the previous net was the same 195*25042Ssklower * and the interface was a broadcast medium, or 196*25042Ssklower * if the previous destination was identical, 197*25042Ssklower * then we are ok. 19821479Ssklower * 19921479Ssklower * NB: We don't handle broadcasts because that 20021479Ssklower * would require 3 subroutine calls. 20121479Ssklower */ 20221479Ssklower ro = &nsp->nsp_route; 203*25042Ssklower #ifdef ancient_history 204*25042Ssklower /* 205*25042Ssklower * I think that this will all be handled in ns_pcbconnect! 206*25042Ssklower */ 207*25042Ssklower if (ro->ro_rt) { 208*25042Ssklower if(ns_neteq(nsp->nsp_lastdst, idp->idp_dna)) { 209*25042Ssklower /* 210*25042Ssklower * This assumes we have no GH type routes 211*25042Ssklower */ 212*25042Ssklower if (ro->ro_rt->rt_flags & RTF_HOST) { 213*25042Ssklower if (!ns_hosteq(nsp->nsp_lastdst, idp->idp_dna)) 214*25042Ssklower goto re_route; 215*25042Ssklower 216*25042Ssklower } 217*25042Ssklower if ((ro->ro_rt->rt_flags & RTF_GATEWAY) == 0) { 218*25042Ssklower register struct ns_addr *dst = 219*25042Ssklower &satons_addr(ro->ro_dst); 220*25042Ssklower dst->x_host = idp->idp_dna.x_host; 221*25042Ssklower } 222*25042Ssklower /* 223*25042Ssklower * Otherwise, we go through the same gateway 224*25042Ssklower * and dst is already set up. 225*25042Ssklower */ 226*25042Ssklower } else { 227*25042Ssklower re_route: 228*25042Ssklower RTFREE(ro->ro_rt); 229*25042Ssklower ro->ro_rt = (struct rtentry *)0; 230*25042Ssklower } 23121479Ssklower } 232*25042Ssklower nsp->nsp_lastdst = idp->idp_dna; 233*25042Ssklower #endif ancient_history 234*25042Ssklower if (noIdpRoute) ro = 0; 23521479Ssklower return (ns_output(m, ro, so->so_options & SO_BROADCAST)); 23621479Ssklower } 23724225Ssklower /* ARGSUSED */ 23821479Ssklower idp_ctloutput(req, so, level, name, value) 23921479Ssklower int req, level; 24021479Ssklower struct socket *so; 24121479Ssklower int name; 24221479Ssklower struct mbuf **value; 24321479Ssklower { 24421479Ssklower register struct mbuf *m; 24521479Ssklower struct nspcb *nsp = sotonspcb(so); 24621479Ssklower int mask, error = 0; 24723977Ssklower extern long ns_pexseq; 24821479Ssklower 24923500Ssklower if (nsp == NULL) 25023500Ssklower return (EINVAL); 25121479Ssklower 25221479Ssklower switch (req) { 25323500Ssklower 25421479Ssklower case PRCO_GETOPT: 25523500Ssklower if (value==NULL) 25623500Ssklower return (EINVAL); 25721479Ssklower m = m_get(M_DONTWAIT, MT_DATA); 25823500Ssklower if (m==NULL) 25923500Ssklower return (ENOBUFS); 26021479Ssklower switch (name) { 26123500Ssklower 26224049Ssklower case SO_ALL_PACKETS: 26324049Ssklower mask = NSP_ALL_PACKETS; 26424049Ssklower goto get_flags; 26524049Ssklower 26621479Ssklower case SO_HEADERS_ON_INPUT: 26721479Ssklower mask = NSP_RAWIN; 26821479Ssklower goto get_flags; 26923500Ssklower 27021479Ssklower case SO_HEADERS_ON_OUTPUT: 27121479Ssklower mask = NSP_RAWOUT; 27221479Ssklower get_flags: 27321479Ssklower m->m_len = sizeof(short); 27421479Ssklower m->m_off = MMAXOFF - sizeof(short); 27521479Ssklower *mtod(m, short *) = nsp->nsp_flags & mask; 27621479Ssklower break; 27723500Ssklower 27821479Ssklower case SO_DEFAULT_HEADERS: 27921479Ssklower m->m_len = sizeof(struct idp); 28021479Ssklower m->m_off = MMAXOFF - sizeof(struct idp); 28121479Ssklower { 28221479Ssklower register struct idp *idp = mtod(m, struct idp *); 28321479Ssklower idp->idp_len = 0; 28421479Ssklower idp->idp_sum = 0; 28521479Ssklower idp->idp_tc = 0; 28621479Ssklower idp->idp_pt = nsp->nsp_dpt; 28721479Ssklower idp->idp_dna = nsp->nsp_faddr; 28821479Ssklower idp->idp_sna = nsp->nsp_laddr; 28921479Ssklower } 29023977Ssklower break; 29123977Ssklower 29223977Ssklower case SO_SEQNO: 29323977Ssklower m->m_len = sizeof(long); 29423977Ssklower m->m_off = MMAXOFF - sizeof(long); 29523977Ssklower *mtod(m, long *) = ns_pexseq++; 29621479Ssklower } 29721479Ssklower *value = m; 29821479Ssklower break; 29923500Ssklower 30021479Ssklower case PRCO_SETOPT: 30121479Ssklower switch (name) { 30224225Ssklower int *ok; 30321479Ssklower 30424049Ssklower case SO_ALL_PACKETS: 30524049Ssklower mask = NSP_ALL_PACKETS; 30624049Ssklower goto set_head; 30724049Ssklower 30821479Ssklower case SO_HEADERS_ON_INPUT: 30921479Ssklower mask = NSP_RAWIN; 31021479Ssklower goto set_head; 31123500Ssklower 31221479Ssklower case SO_HEADERS_ON_OUTPUT: 31321479Ssklower mask = NSP_RAWOUT; 31421479Ssklower set_head: 31521479Ssklower if (value && *value) { 31621479Ssklower ok = mtod(*value, int *); 31721479Ssklower if (*ok) 31821479Ssklower nsp->nsp_flags |= mask; 31921479Ssklower else 32021479Ssklower nsp->nsp_flags &= ~mask; 32121479Ssklower } else error = EINVAL; 32221479Ssklower break; 32323500Ssklower 32421479Ssklower case SO_DEFAULT_HEADERS: 32521479Ssklower { 32621479Ssklower register struct idp *idp 32721479Ssklower = mtod(*value, struct idp *); 32821479Ssklower nsp->nsp_dpt = idp->idp_pt; 32921479Ssklower } 33021479Ssklower #ifdef NSIP 33121479Ssklower break; 33223500Ssklower 33321479Ssklower case SO_NSIP_ROUTE: 33421479Ssklower error = nsip_route(*value); 33521479Ssklower #endif NSIP 33621479Ssklower } 33721479Ssklower if (value && *value) 33821479Ssklower m_freem(*value); 33921479Ssklower break; 34021479Ssklower } 34123500Ssklower return (error); 34221479Ssklower } 34321479Ssklower 34421479Ssklower /*ARGSUSED*/ 34521479Ssklower idp_usrreq(so, req, m, nam, rights) 34621479Ssklower struct socket *so; 34721479Ssklower int req; 34821479Ssklower struct mbuf *m, *nam, *rights; 34921479Ssklower { 35021479Ssklower struct nspcb *nsp = sotonspcb(so); 35121479Ssklower int error = 0; 35221479Ssklower 35321479Ssklower if (req == PRU_CONTROL) 35421479Ssklower return (ns_control(so, (int)m, (caddr_t)nam, 35521479Ssklower (struct ifnet *)rights)); 35621479Ssklower if (rights && rights->m_len) { 35721479Ssklower error = EINVAL; 35821479Ssklower goto release; 35921479Ssklower } 36021479Ssklower if (nsp == NULL && req != PRU_ATTACH) { 36121479Ssklower error = EINVAL; 36221479Ssklower goto release; 36321479Ssklower } 36421479Ssklower switch (req) { 36521479Ssklower 36621479Ssklower case PRU_ATTACH: 36721479Ssklower if (nsp != NULL) { 36821479Ssklower error = EINVAL; 36921479Ssklower break; 37021479Ssklower } 37121479Ssklower error = ns_pcballoc(so, &nspcb); 37221479Ssklower if (error) 37321479Ssklower break; 37421479Ssklower error = soreserve(so, 2048, 2048); 37521479Ssklower if (error) 37621479Ssklower break; 37721479Ssklower break; 37821479Ssklower 37921479Ssklower case PRU_DETACH: 38021479Ssklower if (nsp == NULL) { 38121479Ssklower error = ENOTCONN; 38221479Ssklower break; 38321479Ssklower } 38421479Ssklower ns_pcbdetach(nsp); 38521479Ssklower break; 38621479Ssklower 38721479Ssklower case PRU_BIND: 38821479Ssklower error = ns_pcbbind(nsp, nam); 38921479Ssklower break; 39021479Ssklower 39121479Ssklower case PRU_LISTEN: 39221479Ssklower error = EOPNOTSUPP; 39321479Ssklower break; 39421479Ssklower 39521479Ssklower case PRU_CONNECT: 39621479Ssklower if (!ns_nullhost(nsp->nsp_faddr)) { 39721479Ssklower error = EISCONN; 39821479Ssklower break; 39921479Ssklower } 40021479Ssklower error = ns_pcbconnect(nsp, nam); 40121479Ssklower if (error == 0) 40221479Ssklower soisconnected(so); 40321479Ssklower break; 40421479Ssklower 40521479Ssklower case PRU_CONNECT2: 40621479Ssklower error = EOPNOTSUPP; 40721479Ssklower break; 40821479Ssklower 40921479Ssklower case PRU_ACCEPT: 41021479Ssklower error = EOPNOTSUPP; 41121479Ssklower break; 41221479Ssklower 41321479Ssklower case PRU_DISCONNECT: 41421479Ssklower if (ns_nullhost(nsp->nsp_faddr)) { 41521479Ssklower error = ENOTCONN; 41621479Ssklower break; 41721479Ssklower } 41821479Ssklower ns_pcbdisconnect(nsp); 41921479Ssklower soisdisconnected(so); 42021479Ssklower break; 42121479Ssklower 42221479Ssklower case PRU_SHUTDOWN: 42321479Ssklower socantsendmore(so); 42421479Ssklower break; 42521479Ssklower 42621479Ssklower case PRU_SEND: 42721479Ssklower { 42821479Ssklower struct ns_addr laddr; 42921479Ssklower int s; 43021479Ssklower 43121479Ssklower if (nam) { 43221479Ssklower laddr = nsp->nsp_laddr; 43321479Ssklower if (!ns_nullhost(nsp->nsp_faddr)) { 43421479Ssklower error = EISCONN; 43521479Ssklower break; 43621479Ssklower } 43721479Ssklower /* 43821479Ssklower * Must block input while temporarily connected. 43921479Ssklower */ 44021479Ssklower s = splnet(); 44121479Ssklower error = ns_pcbconnect(nsp, nam); 44221479Ssklower if (error) { 44321479Ssklower splx(s); 44421479Ssklower break; 44521479Ssklower } 44621479Ssklower } else { 44721479Ssklower if (ns_nullhost(nsp->nsp_faddr)) { 44821479Ssklower error = ENOTCONN; 44921479Ssklower break; 45021479Ssklower } 45121479Ssklower } 45221479Ssklower error = idp_output(nsp, m); 45321479Ssklower m = NULL; 45421479Ssklower if (nam) { 45521479Ssklower ns_pcbdisconnect(nsp); 45621479Ssklower splx(s); 45721479Ssklower nsp->nsp_laddr.x_host = laddr.x_host; 45821479Ssklower nsp->nsp_laddr.x_port = laddr.x_port; 45921479Ssklower } 46021479Ssklower } 46121479Ssklower break; 46221479Ssklower 46321479Ssklower case PRU_ABORT: 46421479Ssklower ns_pcbdetach(nsp); 46521479Ssklower sofree(so); 46621479Ssklower soisdisconnected(so); 46721479Ssklower break; 46821479Ssklower 46921479Ssklower case PRU_SOCKADDR: 47021479Ssklower ns_setsockaddr(nsp, nam); 47121479Ssklower break; 47221479Ssklower 47321479Ssklower case PRU_PEERADDR: 47421479Ssklower ns_setpeeraddr(nsp, nam); 47521479Ssklower break; 47621479Ssklower 47721479Ssklower case PRU_SENSE: 47821479Ssklower /* 47921479Ssklower * stat: don't bother with a blocksize. 48021479Ssklower */ 48121479Ssklower return (0); 48221479Ssklower 48321479Ssklower case PRU_SENDOOB: 48421479Ssklower case PRU_FASTTIMO: 48521479Ssklower case PRU_SLOWTIMO: 48621479Ssklower case PRU_PROTORCV: 48721479Ssklower case PRU_PROTOSEND: 48821479Ssklower error = EOPNOTSUPP; 48921479Ssklower break; 49021479Ssklower 49121479Ssklower case PRU_CONTROL: 49221479Ssklower case PRU_RCVD: 49321479Ssklower case PRU_RCVOOB: 49421479Ssklower return (EOPNOTSUPP); /* do not free mbuf's */ 49521479Ssklower 49621479Ssklower default: 49721479Ssklower panic("idp_usrreq"); 49821479Ssklower } 49921479Ssklower release: 50021479Ssklower if (m != NULL) 50121479Ssklower m_freem(m); 50221479Ssklower return (error); 50321479Ssklower } 50421479Ssklower /*ARGSUSED*/ 50521479Ssklower idp_raw_usrreq(so, req, m, nam, rights) 50621479Ssklower struct socket *so; 50721479Ssklower int req; 50821479Ssklower struct mbuf *m, *nam, *rights; 50921479Ssklower { 51021479Ssklower int error = 0; 51121479Ssklower struct nspcb *nsp = sotonspcb(so); 51221479Ssklower extern struct nspcb nsrawpcb; 51321479Ssklower 51421479Ssklower switch (req) { 51521479Ssklower 51621479Ssklower case PRU_ATTACH: 51721479Ssklower 51821699Ssklower if (!suser() || (nsp != NULL)) { 51921479Ssklower error = EINVAL; 52021479Ssklower break; 52121479Ssklower } 52221479Ssklower error = ns_pcballoc(so, &nsrawpcb); 52321479Ssklower if (error) 52421479Ssklower break; 52521479Ssklower error = soreserve(so, 2048, 2048); 52621479Ssklower if (error) 52721479Ssklower break; 52821479Ssklower nsp = sotonspcb(so); 52921479Ssklower nsp->nsp_faddr.x_host = ns_broadhost; 53021479Ssklower nsp->nsp_flags = NSP_RAWIN | NSP_RAWOUT; 53121479Ssklower break; 53221479Ssklower default: 53321479Ssklower error = idp_usrreq(so, req, m, nam, rights); 53421479Ssklower } 53523500Ssklower return (error); 53621479Ssklower } 53721479Ssklower 538