/* * Copyright (c) 1992, 1993 * The Regents of the University of California. All rights reserved. * * %sccs.include.redist.c% * * @(#)idrp_usrreq.c 8.1 (Berkeley) 06/10/93 */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include int idrp_input(); struct isopcb idrp_isop; static struct sockaddr_iso idrp_addrs[2] = { { sizeof(idrp_addrs), AF_ISO, }, { sizeof(idrp_addrs[1]), AF_ISO, } }; /* * IDRP initialization */ idrp_init() { extern struct clnl_protosw clnl_protox[256]; idrp_isop.isop_next = idrp_isop.isop_prev = &idrp_isop; idrp_isop.isop_faddr = &idrp_isop.isop_sfaddr; idrp_isop.isop_laddr = &idrp_isop.isop_sladdr; idrp_isop.isop_sladdr = idrp_addrs[1]; idrp_isop.isop_sfaddr = idrp_addrs[1]; clnl_protox[ISO10747_IDRP].clnl_input = idrp_input; } /* * CALLED FROM: * tpclnp_input(). * FUNCTION and ARGUMENTS: * Take a packet (m) from clnp, strip off the clnp header * and mke suitable for the idrp socket. * No return value. */ idrp_input(m, src, dst) register struct mbuf *m; struct sockaddr_iso *src, *dst; { if (idrp_isop.isop_socket == 0) { bad: m_freem(m); return 0; } bzero(idrp_addrs[0].siso_data, sizeof(idrp_addrs[0].siso_data)); bcopy((caddr_t)&(src->siso_addr), (caddr_t)&idrp_addrs[0].siso_addr, 1 + src->siso_nlen); bzero(idrp_addrs[1].siso_data, sizeof(idrp_addrs[1].siso_data)); bcopy((caddr_t)&(dst->siso_addr), (caddr_t)&idrp_addrs[1].siso_addr, 1 + dst->siso_nlen); if (sbappendaddr(&idrp_isop.isop_socket->so_rcv, (struct sockaddr *)idrp_addrs, m, (struct mbuf *)0) == 0) goto bad; sorwakeup(idrp_isop.isop_socket); return 0; } idrp_output(m, addr) struct mbuf *m, *addr; { register struct sockaddr_iso *siso = mtod(addr, struct sockaddr_iso *); int s = splnet(), i; bcopy((caddr_t)&(siso->siso_addr), (caddr_t)&idrp_isop.isop_sfaddr.siso_addr, 1 + siso->siso_nlen); siso++; bcopy((caddr_t)&(siso->siso_addr), (caddr_t)&idrp_isop.isop_sladdr.siso_addr, 1 + siso->siso_nlen); i = clnp_output(m, idrp_isop, m->m_pkthdr.len, 0); splx(s); return (i); } u_long idrp_sendspace = 3072; /* really max datagram size */ u_long idrp_recvspace = 40 * 1024; /* 40 1K datagrams */ /*ARGSUSED*/ idrp_usrreq(so, req, m, addr, control) struct socket *so; int req; struct mbuf *m, *addr, *control; { int error = 0; /* Note: need to block idrp_input while changing * the udp pcb queue and/or pcb addresses. */ switch (req) { case PRU_ATTACH: if (idrp_isop.isop_socket != NULL) { error = ENXIO; break; } idrp_isop.isop_socket = so; error = soreserve(so, idrp_sendspace, idrp_recvspace); break; case PRU_SHUTDOWN: socantsendmore(so); break; case PRU_SEND: return (idrp_output(m, addr)); case PRU_ABORT: soisdisconnected(so); case PRU_DETACH: idrp_isop.isop_socket = 0; break; case PRU_SENSE: /* * stat: don't bother with a blocksize. */ return (0); default: return (EOPNOTSUPP); /* do not free mbuf's */ } release: if (control) { printf("idrp control data unexpectedly retained\n"); m_freem(control); } if (m) m_freem(m); return (error); }