xref: /csrg-svn/sys/vax/if/if_ex.c (revision 24539)
123292Smckusick /*
223292Smckusick  * Copyright (c) 1982 Regents of the University of California.
323292Smckusick  * All rights reserved.  The Berkeley software License Agreement
423292Smckusick  * specifies the terms and conditions for redistribution.
523292Smckusick  *
6*24539Skarels  *	@(#)if_ex.c	6.4 (Berkeley) 09/05/85
723292Smckusick  */
819880Skarels 
923292Smckusick 
1019880Skarels #include "ex.h"
1119880Skarels 
1219880Skarels /*
1319880Skarels  * Excelan EXOS 204 Interface
1419880Skarels  *
1519880Skarels  *	George Powers
1619880Skarels  *	Excelan Inc.
1719880Skarels  */
1819880Skarels 
1919880Skarels #include "../machine/pte.h"
2019880Skarels 
2121777Skarels #include "param.h"
2221777Skarels #include "systm.h"
2321777Skarels #include "mbuf.h"
2421777Skarels #include "buf.h"
2521777Skarels #include "protosw.h"
2621777Skarels #include "socket.h"
2721777Skarels #include "vmmac.h"
2821777Skarels #include "ioctl.h"
2921777Skarels #include "errno.h"
3019880Skarels 
3119880Skarels #include "../net/if.h"
3219880Skarels #include "../net/netisr.h"
3319880Skarels #include "../net/route.h"
34*24539Skarels 
35*24539Skarels #ifdef	BBNNET
36*24539Skarels #define	INET
37*24539Skarels #endif
38*24539Skarels #ifdef	INET
3919880Skarels #include "../netinet/in.h"
4019880Skarels #include "../netinet/in_systm.h"
4121777Skarels #include "../netinet/in_var.h"
4219880Skarels #include "../netinet/ip.h"
4319880Skarels #include "../netinet/if_ether.h"
44*24539Skarels #endif
45*24539Skarels 
4621777Skarels #ifdef PUP
4719880Skarels #include "../netpup/pup.h"
4821777Skarels #endif
4919880Skarels 
5019880Skarels #include "../vax/cpu.h"
5119880Skarels #include "../vax/mtpr.h"
5221777Skarels #include "if_exreg.h"
5321777Skarels #include "if_uba.h"
5419880Skarels #include "../vaxuba/ubareg.h"
5519880Skarels #include "../vaxuba/ubavar.h"
5619880Skarels 
5719880Skarels #define DEBUG			/* check for "impossible" events */
5819880Skarels 
5919880Skarels #define	NH2X 4			/* a sufficient number is critical */
6019880Skarels #define	NX2H 4			/* this is pretty arbitrary */
6119880Skarels #define	EXWATCHINTVL 10		/* call exwatch() every 10 seconds */
6219880Skarels 
6319880Skarels int	exprobe(), exattach(), excdint();
6419880Skarels struct	uba_device *exinfo[NEX];
6519880Skarels u_short exstd[] = { 0 };
6619880Skarels struct	uba_driver exdriver =
6719880Skarels 	{ exprobe, 0, exattach, 0, exstd, "ex", exinfo };
6819880Skarels int	exinit(),exoutput(),exioctl(),exreset(),exwatch();
6919880Skarels struct ex_msg *exgetcbuf();
7019880Skarels 
7119880Skarels /*
7219880Skarels  * Ethernet software status per interface.
7319880Skarels  *
7419880Skarels  * Each interface is referenced by a network interface structure,
7519880Skarels  * xs_if, which the routing code uses to locate the interface.
7619880Skarels  * This structure contains the output queue for the interface, its address, ...
7719880Skarels  * We also have, for each interface, a UBA interface structure, which
7819880Skarels  * contains information about the UNIBUS resources held by the interface:
7919880Skarels  * map registers, buffered data paths, etc.  Information is cached in this
8019880Skarels  * structure for use by the if_uba.c routines in running the interface
8119880Skarels  * efficiently.
8219880Skarels  */
8319880Skarels struct	ex_softc {
8421777Skarels 	struct	arpcom xs_ac;		/* Ethernet common part */
8521777Skarels #define	xs_if	xs_ac.ac_if		/* network-visible interface */
8621777Skarels #define	xs_addr	xs_ac.ac_enaddr		/* hardware Ethernet address */
8719880Skarels #ifdef DEBUG
8819880Skarels 	int	xs_wait;
8919880Skarels #endif
9019880Skarels 	struct	ifuba xs_ifuba;		/* UNIBUS resources */
9119880Skarels 	int	xs_flags;		/* private flags */
9219880Skarels #define	EX_XPENDING	1		/* xmit rqst pending on EXOS */
9319880Skarels #define	EX_STATPENDING	(1<<1)		/* stats rqst pending on EXOS */
9419880Skarels 	struct	ex_msg *xs_h2xnext;	/* host pointer to request queue */
9519880Skarels 	struct	ex_msg *xs_x2hnext;	/* host pointer to reply queue */
9619880Skarels 	u_long	xs_ubaddr;		/* map info for structs below */
9719880Skarels #define	UNIADDR(x)	((u_long)(x)&0x3FFFF)
9819880Skarels #define	P_UNIADDR(x)	((u_long)(x)&0x3FFF0)
9919880Skarels 	/* the following structures are always mapped in */
10019880Skarels 	u_short	xs_h2xhdr;		/* EXOS's request queue header */
10119880Skarels 	u_short	xs_x2hhdr;		/* EXOS's reply queue header */
10219880Skarels 	struct	ex_msg xs_h2xent[NH2X];	/* request msg buffers */
10319880Skarels 	struct	ex_msg xs_x2hent[NX2H];	/* reply msg buffers */
10419880Skarels 	struct	confmsg xs_cm;		/* configuration message */
10519880Skarels 	struct	stat_array xs_xsa;	/* EXOS writes stats here */
10619880Skarels 	/* end mapped area */
10719880Skarels #define	INCORE_BASE(p)	(((u_long)(&(p)->xs_h2xhdr)) & 0xFFFFFFF0)
10819880Skarels #define	RVAL_OFF(n)	((u_long)(&(ex_softc[0].n)) - INCORE_BASE(&ex_softc[0]))
10919880Skarels #define	LVAL_OFF(n)	((u_long)(ex_softc[0].n) - INCORE_BASE(&ex_softc[0]))
11019880Skarels #define	H2XHDR_OFFSET	RVAL_OFF(xs_h2xhdr)
11119880Skarels #define	X2HHDR_OFFSET	RVAL_OFF(xs_x2hhdr)
11219880Skarels #define	H2XENT_OFFSET	LVAL_OFF(xs_h2xent)
11319880Skarels #define	X2HENT_OFFSET	LVAL_OFF(xs_x2hent)
11419880Skarels #define	CM_OFFSET	RVAL_OFF(xs_cm)
11519880Skarels #define	SA_OFFSET	RVAL_OFF(xs_xsa)
11619880Skarels #define	INCORE_SIZE	RVAL_OFF(xs_end)
11719880Skarels 	int	xs_end;			/* place holder */
11819880Skarels } ex_softc[NEX];
11919880Skarels 
12019880Skarels /*
12119880Skarels  * The following structure is a kludge to store a cvec value
12219880Skarels  * between the time exprobe is called, and exconfig.
12319880Skarels  */
12419880Skarels struct	ex_cvecs {
12519880Skarels 	struct	exdevice *xc_csraddr;
12619880Skarels 	int	xc_cvec;
12719880Skarels }ex_cvecs[NEX];
12819880Skarels 
12919880Skarels int	ex_ncall = 0;			/* counts calls to exprobe */
13019880Skarels 
13119880Skarels exprobe(reg)
13219880Skarels 	caddr_t reg;
13319880Skarels {
13419880Skarels 	register int br, cvec;		/* r11, r10 value-result */
13519880Skarels 	register struct exdevice *addr = (struct exdevice *)reg;
13619880Skarels 	register i;
13719880Skarels 
13819880Skarels 	/*
13919880Skarels 	 * We program the EXOS interrupt vector, like dmf device.
14019880Skarels 	 */
14119880Skarels 	br = 0x15;
14219880Skarels 	cvec = (uba_hd[numuba].uh_lastiv -= 4);
14319880Skarels #ifdef DEBUG
14419880Skarels printf("exprobe%d: cvec = %o\n", ex_ncall, cvec);
14519880Skarels #endif
14619880Skarels 	ex_cvecs[ex_ncall].xc_csraddr = addr;
14719880Skarels 	ex_cvecs[ex_ncall++].xc_cvec = cvec;
14819880Skarels 	/*
14919880Skarels 	 * Reset EXOS and run self-test (guaranteed to
15019880Skarels 	 * complete within 2 seconds).
15119880Skarels 	 */
15219880Skarels 	addr->xd_porta = EX_RESET;
15319880Skarels 	i = 1000000;
15419880Skarels 	while (((addr->xd_portb & EX_TESTOK) == 0) && --i)
15519880Skarels 		;
15619880Skarels 	if ((addr->xd_portb & EX_TESTOK) == 0) {
15719880Skarels 		printf("ex: self-test failed\n");
15819880Skarels 		return 0;
15919880Skarels 	}
160*24539Skarels #ifdef lint
161*24539Skarels 	br = br;
162*24539Skarels #endif
16319880Skarels 	return (sizeof(struct exdevice));
16419880Skarels }
16519880Skarels 
16619880Skarels /*
16719880Skarels  * Interface exists: make available by filling in network interface
16819880Skarels  * record.  System will initialize the interface when it is ready
16919880Skarels  * to accept packets.  Board is temporarily configured and issues
17019880Skarels  * a NET_ADDRS command, only to get the Ethernet address.
17119880Skarels  */
17219880Skarels exattach(ui)
17319880Skarels 	struct uba_device *ui;
17419880Skarels {
17519880Skarels 	register struct ex_softc *xs = &ex_softc[ui->ui_unit];
17619880Skarels 	register struct ifnet *ifp = &xs->xs_if;
17719880Skarels 	register struct exdevice *addr = (struct exdevice *)ui->ui_addr;
17819880Skarels 	register struct ex_msg *bp;
17919880Skarels 
18019880Skarels 	ifp->if_unit = ui->ui_unit;
18119880Skarels 	ifp->if_name = "ex";
18219880Skarels 	ifp->if_mtu = ETHERMTU;
18319880Skarels 
18419880Skarels 	/*
18519880Skarels 	 * Temporarily map queues in order to configure EXOS
18619880Skarels 	 */
18719880Skarels 	xs->xs_ubaddr = uballoc(ui->ui_ubanum, INCORE_BASE(xs), INCORE_SIZE, 0);
18819880Skarels 	exconfig(ui, 0);			/* without interrupts */
18919880Skarels 	if (xs->xs_cm.cm_cc) goto badconf;
19019880Skarels 
19119880Skarels 	bp = exgetcbuf(xs);
19219880Skarels 	bp->mb_rqst = LLNET_ADDRS;
19319880Skarels 	bp->mb_na.na_mask = READ_OBJ;
19419880Skarels 	bp->mb_na.na_slot = PHYSSLOT;
19519880Skarels 	bp->mb_status |= MH_EXOS;
19619880Skarels 	addr->xd_portb = EX_NTRUPT;
19719880Skarels 	bp = xs->xs_x2hnext;
19819880Skarels 	while ((bp->mb_status & MH_OWNER) == MH_EXOS)	/* poll for reply */
19919880Skarels 		;
20019880Skarels 	printf("ex%d: HW %c.%c, NX %c.%c, addr %x.%x.%x.%x.%x.%x\n",
20119880Skarels 		ui->ui_unit,
20219880Skarels 		xs->xs_cm.cm_vc[2], xs->xs_cm.cm_vc[3],
20319880Skarels 		xs->xs_cm.cm_vc[0], xs->xs_cm.cm_vc[1],
20419880Skarels 		bp->mb_na.na_addrs[0], bp->mb_na.na_addrs[1],
20519880Skarels 		bp->mb_na.na_addrs[2], bp->mb_na.na_addrs[3],
20619880Skarels 		bp->mb_na.na_addrs[4], bp->mb_na.na_addrs[5]);
20719880Skarels 	bcopy((caddr_t)bp->mb_na.na_addrs, (caddr_t)xs->xs_addr,
20819880Skarels 	    sizeof (xs->xs_addr));
20919880Skarels 
21019880Skarels 	ifp->if_init = exinit;
21119880Skarels 	ifp->if_output = exoutput;
21219880Skarels 	ifp->if_ioctl = exioctl;
21319880Skarels 	ifp->if_reset = exreset;
21421777Skarels 	ifp->if_flags = IFF_BROADCAST;
21519880Skarels 	xs->xs_ifuba.ifu_flags = UBA_CANTWAIT;
21619880Skarels 	if_attach(ifp);
21719880Skarels badconf:
21819880Skarels 	ubarelse(ui->ui_ubanum, &xs->xs_ubaddr);
21919880Skarels }
22019880Skarels 
22119880Skarels /*
22219880Skarels  * Reset of interface after UNIBUS reset.
22319880Skarels  * If interface is on specified uba, reset its state.
22419880Skarels  */
22519880Skarels exreset(unit, uban)
22619880Skarels 	int unit, uban;
22719880Skarels {
22819880Skarels 	register struct uba_device *ui;
22919880Skarels 
23019880Skarels 	if (unit >= NEX || (ui = exinfo[unit]) == 0 || ui->ui_alive == 0 ||
23119880Skarels 	    ui->ui_ubanum != uban)
23219880Skarels 		return;
23319880Skarels 	printf(" ex%d", unit);
23421777Skarels 	ex_softc[unit].xs_if.if_flags &= ~IFF_RUNNING;
23519880Skarels 	exinit(unit);
23619880Skarels }
23719880Skarels 
23819880Skarels /*
23919880Skarels  * Initialization of interface; clear recorded pending
24019880Skarels  * operations, and reinitialize UNIBUS usage.
24119880Skarels  * Called at boot time (with interrupts disabled?),
24219880Skarels  * and at ifconfig time via exioctl, with interrupts disabled.
24319880Skarels  */
24419880Skarels exinit(unit)
24519880Skarels 	int unit;
24619880Skarels {
24719880Skarels 	register struct ex_softc *xs = &ex_softc[unit];
24819880Skarels 	register struct uba_device *ui = exinfo[unit];
24919880Skarels 	register struct exdevice *addr = (struct exdevice *)ui->ui_addr;
25019880Skarels 	register struct ifnet *ifp = &xs->xs_if;
25119880Skarels 	register struct ex_msg *bp;
25219880Skarels 	int s;
25319880Skarels 
25421777Skarels 	/* not yet, if address still unknown */
25521777Skarels 	if (ifp->if_addrlist == (struct ifaddr *)0)
25619880Skarels 		return;
25719880Skarels 
25819880Skarels 	if (ifp->if_flags & IFF_RUNNING)
25921777Skarels 		return;
26019880Skarels 	if (if_ubainit(&xs->xs_ifuba, ui->ui_ubanum,
26119880Skarels 	    sizeof (struct ether_header),
26219880Skarels 	    (int)btoc(EXMAXRBUF-sizeof(struct ether_header))) == 0) {
26319880Skarels 		printf("ex%d: can't initialize\n", unit);
26419880Skarels 		xs->xs_if.if_flags &= ~IFF_UP;
26519880Skarels 		return;
26619880Skarels 	}
26719880Skarels 	xs->xs_ubaddr = uballoc(ui->ui_ubanum, INCORE_BASE(xs), INCORE_SIZE, 0);
26819880Skarels 	exconfig(ui, 4);		/* with vectored interrupts*/
26919880Skarels 	/*
27019880Skarels 	 * Put EXOS on the Ethernet, using NET_MODE command
27119880Skarels 	 */
27219880Skarels 	bp = exgetcbuf(xs);
27319880Skarels 	bp->mb_rqst = LLNET_MODE;
27419880Skarels 	bp->mb_nm.nm_mask = WRITE_OBJ;
27519880Skarels 	bp->mb_nm.nm_optn = 0;
27619880Skarels 	bp->mb_nm.nm_mode = MODE_PERF;
27719880Skarels 	bp->mb_status |= MH_EXOS;
27819880Skarels 	addr->xd_portb = EX_NTRUPT;
27919880Skarels 	bp = xs->xs_x2hnext;
28019880Skarels 	while ((bp->mb_status & MH_OWNER) == MH_EXOS)	/* poll for reply */
28119880Skarels 		;
28219880Skarels 	bp->mb_length = MBDATALEN;
28319880Skarels 	bp->mb_status |= MH_EXOS;		/* free up buffer */
28419880Skarels 	addr->xd_portb = EX_NTRUPT;		/* tell EXOS about it */
28519880Skarels 	xs->xs_x2hnext = xs->xs_x2hnext->mb_next;
28619880Skarels 
28719880Skarels 	ifp->if_watchdog = exwatch;
28819880Skarels 	ifp->if_timer = EXWATCHINTVL;
28919880Skarels 	s = splimp();	/* are interrupts always disabled here, anyway? */
29019880Skarels 	exhangrcv(unit);			/* hang receive request */
29119880Skarels 	exstart(unit);				/* start transmits */
29221777Skarels 	xs->xs_if.if_flags |= IFF_RUNNING;
29319880Skarels 	splx(s);
29419880Skarels }
29519880Skarels 
29619880Skarels /*
29719880Skarels  * Reset, test, and configure EXOS.  This routine assumes
29819880Skarels  * that message queues, etc. have already been mapped into
29919880Skarels  * the UBA.  It is called by exinit, and should also be
30019880Skarels  * callable by exattach.
30119880Skarels  */
30219880Skarels exconfig(ui, itype)
30319880Skarels 	struct	uba_device *ui;
30419880Skarels 	int itype;
30519880Skarels {
30619880Skarels 	register int unit = ui->ui_unit;
30719880Skarels 	register struct ex_softc *xs = &ex_softc[unit];
30819880Skarels 	register struct exdevice *addr = (struct exdevice *) ui->ui_addr;
30919880Skarels 	register struct confmsg *cm = &xs->xs_cm;
31019880Skarels 	register struct ex_msg *bp;
31119880Skarels 	int i;
31219880Skarels 	u_long shiftreg;
31319880Skarels 
31419880Skarels 	xs->xs_flags = 0;
31519880Skarels 	/*
31619880Skarels 	 * Reset EXOS, wait for self-test to complete
31719880Skarels 	 */
31819880Skarels 	addr->xd_porta = EX_RESET;
31919880Skarels 	while ((addr->xd_portb & EX_TESTOK) == 0)
32019880Skarels 		;
32119880Skarels 	/*
32219880Skarels 	 * Set up configuration message.
32319880Skarels 	 */
32419880Skarels 	cm->cm_1rsrv = 1;
32519880Skarels 	cm->cm_cc = 0xFF;
32619880Skarels 	cm->cm_opmode = 0;		/* link-level controller mode */
32719880Skarels 	cm->cm_dfo = 0x0101;		/* enable host data order conversion */
32819880Skarels 	cm->cm_dcn1 = 1;
32919880Skarels 	cm->cm_2rsrv[0] =
33019880Skarels 		cm->cm_2rsrv[1] = 0;
33119880Skarels 	cm->cm_ham = 3;			/* absolute address mode */
33219880Skarels 	cm->cm_3rsrv = 0;
33319880Skarels 	cm->cm_mapsiz = 0;
33419880Skarels 	cm->cm_byteptrn[0] = 0x01;	/* EXOS deduces data order of host */
33519880Skarels 	cm->cm_byteptrn[1] = 0x03;	/*  by looking at this pattern */
33619880Skarels 	cm->cm_byteptrn[2] = 0x07;
33719880Skarels 	cm->cm_byteptrn[3] = 0x0F;
33819880Skarels 	cm->cm_wordptrn[0] = 0x0103;
33919880Skarels 	cm->cm_wordptrn[1] = 0x070F;
34019880Skarels 	cm->cm_lwordptrn = 0x0103070F;
34119880Skarels 	for (i=0; i<20; i++) cm->cm_rsrvd[i] = 0;
34219880Skarels 	cm->cm_mba = 0xFFFFFFFF;
34319880Skarels 	cm->cm_nproc = 0xFF;
34419880Skarels 	cm->cm_nmbox = 0xFF;
34519880Skarels 	cm->cm_nmcast = 0xFF;
34619880Skarels 	cm->cm_nhost = 1;
34719880Skarels 	cm->cm_h2xba = P_UNIADDR(xs->xs_ubaddr);
34819880Skarels 	cm->cm_h2xhdr = H2XHDR_OFFSET;
34919880Skarels 	cm->cm_h2xtyp = 0;		/* should never wait for rqst buffer */
35019880Skarels 	cm->cm_x2hba = cm->cm_h2xba;
35119880Skarels 	cm->cm_x2hhdr = X2HHDR_OFFSET;
35219880Skarels 	cm->cm_x2htyp = itype;		/* 0 for none, 4 for vectored */
35319880Skarels 	for (i=0; (addr != ex_cvecs[i].xc_csraddr); i++)
35419880Skarels #ifdef DEBUG
35519880Skarels 	if (i >= NEX)
35619880Skarels 		panic("ex: matching csr address not found");
35719880Skarels #endif
35819880Skarels 		;
35919880Skarels 	cm->cm_x2haddr = ex_cvecs[i].xc_cvec;	/* stashed here by exprobe */
36019880Skarels 	/*
36119880Skarels 	 * Set up message queues and headers.
36219880Skarels 	 * First the request queue.
36319880Skarels 	 */
36419880Skarels 	for (bp = &xs->xs_h2xent[0]; bp < &xs->xs_h2xent[NH2X]; bp++) {
36519880Skarels 		bp->mb_link = (u_short)((char *)(bp+1)-INCORE_BASE(xs));
36619880Skarels 		bp->mb_rsrv = 0;
36719880Skarels 		bp->mb_length = MBDATALEN;
36819880Skarels 		bp->mb_status = MH_HOST;
36919880Skarels 		bp->mb_next = bp+1;
37019880Skarels 	}
37119880Skarels 	xs->xs_h2xhdr =
37219880Skarels 		xs->xs_h2xent[NH2X-1].mb_link =
37319880Skarels 		(u_short)H2XENT_OFFSET;
37419880Skarels 	xs->xs_h2xnext =
37519880Skarels 		xs->xs_h2xent[NH2X-1].mb_next =
37619880Skarels 		xs->xs_h2xent;
37719880Skarels 
37819880Skarels 	/* Now the reply queue. */
37919880Skarels 	for (bp = &xs->xs_x2hent[0]; bp < &xs->xs_x2hent[NX2H]; bp++) {
38019880Skarels 		bp->mb_link = (u_short)((char *)(bp+1)-INCORE_BASE(xs));
38119880Skarels 		bp->mb_rsrv = 0;
38219880Skarels 		bp->mb_length = MBDATALEN;
38319880Skarels 		bp->mb_status = MH_EXOS;
38419880Skarels 		bp->mb_next = bp+1;
38519880Skarels 	}
38619880Skarels 	xs->xs_x2hhdr =
38719880Skarels 		xs->xs_x2hent[NX2H-1].mb_link =
38819880Skarels 		(u_short)X2HENT_OFFSET;
38919880Skarels 	xs->xs_x2hnext =
39019880Skarels 		xs->xs_x2hent[NX2H-1].mb_next =
39119880Skarels 		xs->xs_x2hent;
39219880Skarels 
39319880Skarels 	/*
39419880Skarels 	 * Write config msg address to EXOS and wait for
39519880Skarels 	 * configuration to complete (guaranteed response
39619880Skarels 	 * within 2 seconds).
39719880Skarels 	 */
39819880Skarels 	shiftreg = (u_long)0x0000FFFF;
39919880Skarels 	for (i = 0; i < 8; i++) {
40019880Skarels 		if (i == 4)
40119880Skarels 			shiftreg = P_UNIADDR(xs->xs_ubaddr) + CM_OFFSET;
40219880Skarels 		while (addr->xd_portb & EX_UNREADY)
40319880Skarels 			;
40419880Skarels 		addr->xd_portb = (u_char)(shiftreg & 0xFF);
40519880Skarels 		shiftreg >>= 8;
40619880Skarels 	}
40719880Skarels 	for (i = 1000000; (cm->cm_cc == 0xFF) && i; --i);
40819880Skarels 	if (cm->cm_cc)
40919880Skarels 		printf("ex%d: configuration failed; cc = %x\n",
41019880Skarels 			unit, cm->cm_cc);
41119880Skarels }
41219880Skarels 
41319880Skarels /*
41419880Skarels  * Start or re-start output on interface.
41519880Skarels  * Get another datagram to send off of the interface queue,
41619880Skarels  * and map it to the interface before starting the output.
41719880Skarels  * This routine is called by exinit(), exoutput(), and excdint().
41819880Skarels  * In all cases, interrupts by EXOS are disabled.
41919880Skarels  */
42019880Skarels exstart(unit)
42119880Skarels 	int unit;
42219880Skarels {
42319880Skarels 	struct uba_device *ui = exinfo[unit];
42419880Skarels 	register struct ex_softc *xs = &ex_softc[unit];
42519880Skarels 	register struct exdevice *addr = (struct exdevice *)ui->ui_addr;
42619880Skarels 	register struct ex_msg *bp;
42719880Skarels 	struct mbuf *m;
42819880Skarels         int len;
42919880Skarels 
43019880Skarels #ifdef DEBUG
43119880Skarels 	if (xs->xs_flags & EX_XPENDING)
43219880Skarels 		panic("exstart(): xmit still pending");
43319880Skarels #endif
43419880Skarels 	IF_DEQUEUE(&xs->xs_if.if_snd, m);
43519880Skarels 	if (m == 0)
43619880Skarels 		return;
43719880Skarels 	len = if_wubaput(&xs->xs_ifuba, m);
43819880Skarels 	if (len - sizeof(struct ether_header) < ETHERMIN)
43919880Skarels 		len = ETHERMIN + sizeof(struct ether_header);
44019880Skarels 	/*
44119880Skarels 	 * Place a transmit request.
44219880Skarels 	 */
44319880Skarels 	bp = exgetcbuf(xs);
44419880Skarels 	bp->mb_rqst = LLRTRANSMIT;
44519880Skarels 	bp->mb_et.et_nblock = 1;
44619880Skarels 	bp->mb_et.et_blks[0].bb_len = (u_short)len;
44719880Skarels 	*(u_long *)bp->mb_et.et_blks[0].bb_addr =
44819880Skarels 		UNIADDR(xs->xs_ifuba.ifu_w.ifrw_info);
44919880Skarels 	xs->xs_flags |= EX_XPENDING;
45019880Skarels 	bp->mb_status |= MH_EXOS;
45119880Skarels 	addr->xd_portb = EX_NTRUPT;
45219880Skarels }
45319880Skarels 
45419880Skarels /*
45519880Skarels  * Command done interrupt.
45619880Skarels  */
45719880Skarels excdint(unit)
45819880Skarels 	int unit;
45919880Skarels {
46019880Skarels 	register struct ex_softc *xs = &ex_softc[unit];
46119880Skarels 	register struct ex_msg *bp = xs->xs_x2hnext;
46219880Skarels 	struct uba_device *ui = exinfo[unit];
46319880Skarels 	struct exdevice *addr = (struct exdevice *)ui->ui_addr;
46419880Skarels 
46519880Skarels 	while ((bp->mb_status & MH_OWNER) == MH_HOST) {
46619880Skarels 		switch (bp->mb_rqst) {
46719880Skarels 		case LLRECEIVE:
46819880Skarels 			exrecv(unit, bp);
46919880Skarels 			exhangrcv(unit);
47019880Skarels 			break;
47119880Skarels 		case LLRTRANSMIT:
47219880Skarels #ifdef DEBUG
47319880Skarels 			if ((xs->xs_flags & EX_XPENDING) == 0)
47419880Skarels 				panic("exxmit: no xmit pending");
47519880Skarels #endif
47619880Skarels 			xs->xs_flags &= ~EX_XPENDING;
47719880Skarels 			xs->xs_if.if_opackets++;
47819880Skarels 			if (bp->mb_rply == LL_OK) {
47919880Skarels 				;
48019880Skarels 			} else if (bp->mb_rply & LLXM_1RTRY) {
48119880Skarels 				xs->xs_if.if_collisions++;
48219880Skarels 			} else if (bp->mb_rply & LLXM_RTRYS) {
48319880Skarels 				xs->xs_if.if_collisions += 2;	/* guess */
48419880Skarels 			} else if (bp->mb_rply & LLXM_ERROR) {
48519880Skarels 				xs->xs_if.if_oerrors++;
48619880Skarels 				printf("ex%d: transmit error=%b\n",
48719880Skarels 					unit, bp->mb_rply, XMIT_BITS);
48819880Skarels 			}
48919880Skarels 			if (xs->xs_ifuba.ifu_xtofree) {
49019880Skarels 				m_freem(xs->xs_ifuba.ifu_xtofree);
49119880Skarels 				xs->xs_ifuba.ifu_xtofree = 0;
49219880Skarels 			}
49319880Skarels 			exstart(unit);
49419880Skarels 			break;
49519880Skarels 		case LLNET_STSTCS:
49619880Skarels 			xs->xs_if.if_ierrors = xs->xs_xsa.sa_crc;
49719880Skarels 			xs->xs_flags &= ~EX_STATPENDING;
49819880Skarels 			break;
49919880Skarels #ifdef	DEBUG
50019880Skarels 		default:
50119880Skarels 			panic("ex%d: unknown reply");
50219880Skarels #endif
50319880Skarels 		} /* end of switch */
50419880Skarels 		bp->mb_length = MBDATALEN;
50519880Skarels 		bp->mb_status |= MH_EXOS;		/* free up buffer */
50619880Skarels 		addr->xd_portb = EX_NTRUPT;		/* tell EXOS about it */
50719880Skarels 		bp = xs->xs_x2hnext = xs->xs_x2hnext->mb_next;
50819880Skarels 	}
50919880Skarels }
51019880Skarels 
51119880Skarels /*
51219880Skarels  * Get a request buffer, fill in standard values, advance pointer.
51319880Skarels  */
51419880Skarels struct ex_msg *
51519880Skarels exgetcbuf(xs)
51619880Skarels 	struct ex_softc *xs;
51719880Skarels {
51819880Skarels 	register struct ex_msg *bp = xs->xs_h2xnext;
51919880Skarels 
52019880Skarels #ifdef DEBUG
52119880Skarels 	if ((bp->mb_status & MH_OWNER) == MH_EXOS)
52219880Skarels 		panic("exgetcbuf(): EXOS owns message buffer");
52319880Skarels #endif
52419880Skarels 	bp->mb_1rsrv = 0;
52519880Skarels 	bp->mb_length = MBDATALEN;
52619880Skarels 	xs->xs_h2xnext = xs->xs_h2xnext->mb_next;
52719880Skarels 	return bp;
52819880Skarels }
52919880Skarels 
53019880Skarels /*
53119880Skarels  * Process Ethernet receive completion:
53219880Skarels  *	If input error just drop packet.
53319880Skarels  *	Otherwise purge input buffered data path and examine
53419880Skarels  *	packet to determine type.  If can't determine length
53519880Skarels  *	from type, then have to drop packet.  Otherwise decapsulate
53619880Skarels  *	packet based on type and pass to type-specific higher-level
53719880Skarels  *	input routine.
53819880Skarels  */
53919880Skarels exrecv(unit, bp)
54019880Skarels 	int unit;
54119880Skarels 	register struct ex_msg *bp;
54219880Skarels {
54319880Skarels 	register struct ex_softc *xs = &ex_softc[unit];
54419880Skarels 	register struct ether_header *eh;
54519880Skarels     	struct mbuf *m;
54619880Skarels 	register int len, off, resid;
54719880Skarels 	register struct ifqueue *inq;
54819880Skarels 
54919880Skarels 	xs->xs_if.if_ipackets++;
55019880Skarels 	len = bp->mb_er.er_blks[0].bb_len - sizeof(struct ether_header) - 4;
55119880Skarels 	if (bp->mb_rply != LL_OK) {
55219880Skarels 		xs->xs_if.if_ierrors++;
55319880Skarels 		printf("ex%d: receive error=%b\n",
55419880Skarels 			unit, bp->mb_rply, RECV_BITS);
55519880Skarels 		return;
55619880Skarels 	}
55719880Skarels 	eh = (struct ether_header *)(xs->xs_ifuba.ifu_r.ifrw_addr);
55819880Skarels 
55919880Skarels 	/*
56021777Skarels 	 * Deal with trailer protocol: if type is trailer
56119880Skarels 	 * get true type from first 16-bit word past data.
56219880Skarels 	 * Remember that type was trailer by setting off.
56319880Skarels 	 */
56419880Skarels 	eh->ether_type = ntohs((u_short)eh->ether_type);
56519880Skarels #define	exdataaddr(eh, off, type)	((type)(((caddr_t)((eh)+1)+(off))))
56621777Skarels 	if (eh->ether_type >= ETHERTYPE_TRAIL &&
56721777Skarels 	    eh->ether_type < ETHERTYPE_TRAIL+ETHERTYPE_NTRAILER) {
56821777Skarels 		off = (eh->ether_type - ETHERTYPE_TRAIL) * 512;
56919880Skarels 		if (off >= ETHERMTU)
57019880Skarels 			return;		/* sanity */
57119880Skarels 		eh->ether_type = ntohs(*exdataaddr(eh, off, u_short *));
57219880Skarels 		resid = ntohs(*(exdataaddr(eh, off+2, u_short *)));
57319880Skarels 		if (off + resid > len)
57419880Skarels 			return;		/* sanity */
57519880Skarels 		len = off + resid;
57619880Skarels 	} else
57719880Skarels 		off = 0;
57819880Skarels 	if (len == 0)
57919880Skarels 		return;
58019880Skarels 
58119880Skarels 	/*
58219880Skarels 	 * Pull packet off interface.  Off is nonzero if packet
58319880Skarels 	 * has trailing header; if_rubaget will then force this header
58419880Skarels 	 * information to be at the front, but we still have to drop
58519880Skarels 	 * the type and length which are at the front of any trailer data.
58619880Skarels 	 */
587*24539Skarels 	m = if_rubaget(&xs->xs_ifuba, len, off, &xs->xs_if);
58819880Skarels 	if (m == 0)
58919880Skarels 		return;
59019880Skarels 	if (off) {
591*24539Skarels 		struct ifnet *ifp;
592*24539Skarels 
593*24539Skarels 		ifp = *(mtod(m, struct ifnet **));
59419880Skarels 		m->m_off += 2 * sizeof (u_short);
59519880Skarels 		m->m_len -= 2 * sizeof (u_short);
596*24539Skarels 		*(mtod(m, struct ifnet **)) = ifp;
59719880Skarels 	}
59819880Skarels 	switch (eh->ether_type) {
59919880Skarels 
60019880Skarels #ifdef INET
60121777Skarels 	case ETHERTYPE_IP:
60219880Skarels 		schednetisr(NETISR_IP);	/* is this necessary */
60319880Skarels 		inq = &ipintrq;
60419880Skarels 		break;
60519880Skarels 
60621777Skarels 	case ETHERTYPE_ARP:
60719880Skarels 		arpinput(&xs->xs_ac, m);
60819880Skarels 		return;
60919880Skarels #endif
61019880Skarels 	default:
61119880Skarels 		m_freem(m);
61219880Skarels 		return;
61319880Skarels 	}
61419880Skarels 
61519880Skarels 	if (IF_QFULL(inq)) {
61619880Skarels 		IF_DROP(inq);
61719880Skarels 		m_freem(m);
61819880Skarels 		return;
61919880Skarels 	}
62019880Skarels 	IF_ENQUEUE(inq, m);
62119880Skarels }
62219880Skarels 
62319880Skarels /*
62419880Skarels  * Send receive request to EXOS.
62519880Skarels  * This routine is called by exinit and excdint,
62619880Skarels  * with interrupts disabled in both cases.
62719880Skarels  */
62819880Skarels exhangrcv(unit)
62919880Skarels 	int unit;
63019880Skarels {
63119880Skarels 	register struct ex_softc *xs = &ex_softc[unit];
63219880Skarels 	register struct ex_msg *bp = exgetcbuf(xs);
63319880Skarels 	struct exdevice *addr = (struct exdevice *)exinfo[unit]->ui_addr;
63419880Skarels 
63519880Skarels 	bp->mb_rqst = LLRECEIVE;
63619880Skarels 	bp->mb_er.er_nblock = 1;
63719880Skarels 	bp->mb_er.er_blks[0].bb_len = EXMAXRBUF;
63819880Skarels 	*(u_long *)bp->mb_er.er_blks[0].bb_addr =
63919880Skarels 		UNIADDR(xs->xs_ifuba.ifu_r.ifrw_info);
64019880Skarels 	bp->mb_status |= MH_EXOS;
64119880Skarels 	addr->xd_portb = EX_NTRUPT;
64219880Skarels }
64319880Skarels 
64419880Skarels /*
64519880Skarels  * Ethernet output routine.
64619880Skarels  * Encapsulate a packet of type family for the local net.
64719880Skarels  * Use trailer local net encapsulation if enough data in first
64819880Skarels  * packet leaves a multiple of 512 bytes of data in remainder.
64919880Skarels  */
65019880Skarels exoutput(ifp, m0, dst)
65119880Skarels 	register struct ifnet *ifp;
65219880Skarels 	register struct mbuf *m0;
65319880Skarels 	struct sockaddr *dst;
65419880Skarels {
65519880Skarels 	int type, s, error;
65619880Skarels 	u_char edst[6];
65719880Skarels 	struct in_addr idst;
65819880Skarels 	register struct ex_softc *xs = &ex_softc[ifp->if_unit];
65919880Skarels 	register struct mbuf *m = m0;
66019880Skarels 	register struct ether_header *eh;
66119880Skarels 	register int off;
66219880Skarels 
66319880Skarels 	switch (dst->sa_family) {
66419880Skarels 
66519880Skarels #ifdef INET
66619880Skarels 	case AF_INET:
66719880Skarels 		idst = ((struct sockaddr_in *)dst)->sin_addr;
66819880Skarels 		if (!arpresolve(&xs->xs_ac, m, &idst, edst))
66919880Skarels 			return (0);	/* if not yet resolved */
67019880Skarels 		off = ntohs((u_short)mtod(m, struct ip *)->ip_len) - m->m_len;
67119880Skarels 		/* need per host negotiation */
67219880Skarels 		if ((ifp->if_flags & IFF_NOTRAILERS) == 0)
67319880Skarels 		if (off > 0 && (off & 0x1ff) == 0 &&
67419880Skarels 		    m->m_off >= MMINOFF + 2 * sizeof (u_short)) {
67521777Skarels 			type = ETHERTYPE_TRAIL + (off>>9);
67619880Skarels 			m->m_off -= 2 * sizeof (u_short);
67719880Skarels 			m->m_len += 2 * sizeof (u_short);
67821777Skarels 			*mtod(m, u_short *) = htons((u_short)ETHERTYPE_IP);
67919880Skarels 			*(mtod(m, u_short *) + 1) = htons((u_short)m->m_len);
68019880Skarels 			goto gottrailertype;
68119880Skarels 		}
68221777Skarels 		type = ETHERTYPE_IP;
68319880Skarels 		off = 0;
68419880Skarels 		goto gottype;
68519880Skarels #endif
68619880Skarels 
68719880Skarels 	case AF_UNSPEC:
68819880Skarels 		eh = (struct ether_header *)dst->sa_data;
68919880Skarels 		bcopy((caddr_t)eh->ether_dhost, (caddr_t)edst, sizeof (edst));
69019880Skarels 		type = eh->ether_type;
69119880Skarels 		goto gottype;
69219880Skarels 
69319880Skarels 	default:
69419880Skarels 		printf("ex%d: can't handle af%d\n", ifp->if_unit,
69519880Skarels 			dst->sa_family);
69619880Skarels 		error = EAFNOSUPPORT;
69719880Skarels 		goto bad;
69819880Skarels 	}
69919880Skarels 
70019880Skarels gottrailertype:
70119880Skarels 	/*
70219880Skarels 	 * Packet to be sent as trailer: move first packet
70319880Skarels 	 * (control information) to end of chain.
70419880Skarels 	 */
70519880Skarels 	while (m->m_next)
70619880Skarels 		m = m->m_next;
70719880Skarels 	m->m_next = m0;
70819880Skarels 	m = m0->m_next;
70919880Skarels 	m0->m_next = 0;
71019880Skarels 	m0 = m;
71119880Skarels 
71219880Skarels gottype:
71319880Skarels 	/*
71419880Skarels 	 * Add local net header.  If no space in first mbuf,
71519880Skarels 	 * allocate another.
71619880Skarels 	 */
71719880Skarels 	if (m->m_off > MMAXOFF ||
71819880Skarels 	    MMINOFF + sizeof (struct ether_header) > m->m_off) {
71919880Skarels 		m = m_get(M_DONTWAIT, MT_HEADER);
72019880Skarels 		if (m == 0) {
72119880Skarels 			error = ENOBUFS;
72219880Skarels 			goto bad;
72319880Skarels 		}
72419880Skarels 		m->m_next = m0;
72519880Skarels 		m->m_off = MMINOFF;
72619880Skarels 		m->m_len = sizeof (struct ether_header);
72719880Skarels 	} else {
72819880Skarels 		m->m_off -= sizeof (struct ether_header);
72919880Skarels 		m->m_len += sizeof (struct ether_header);
73019880Skarels 	}
73119880Skarels 	eh = mtod(m, struct ether_header *);
73219880Skarels 	eh->ether_type = htons((u_short)type);
73319880Skarels 	bcopy((caddr_t)edst, (caddr_t)eh->ether_dhost, sizeof (edst));
73419880Skarels 	bcopy((caddr_t)xs->xs_addr, (caddr_t)eh->ether_shost, 6);
73519880Skarels 
73619880Skarels 	/*
73719880Skarels 	 * Queue message on interface, and start output if interface
73819880Skarels 	 * not yet active.
73919880Skarels 	 */
74019880Skarels 	s = splimp();
74119880Skarels 	if (IF_QFULL(&ifp->if_snd)) {
74219880Skarels 		IF_DROP(&ifp->if_snd);
74319880Skarels 		splx(s);
74419880Skarels 		m_freem(m);
74519880Skarels 		return (ENOBUFS);
74619880Skarels 	}
74719880Skarels 	IF_ENQUEUE(&ifp->if_snd, m);
74819880Skarels 	/*
74919880Skarels 	 * If transmit request not already pending, then
75019880Skarels 	 * kick the back end.
75119880Skarels 	 */
75219880Skarels 	if ((xs->xs_flags & EX_XPENDING) == 0) {
75319880Skarels 		exstart(ifp->if_unit);
75419880Skarels 	}
75519880Skarels #ifdef DEBUG
75619880Skarels 	else {
75719880Skarels 		xs->xs_wait++;
75819880Skarels 	}
75919880Skarels #endif
76019880Skarels 	splx(s);
76119880Skarels 	return (0);
76219880Skarels 
76319880Skarels bad:
76419880Skarels 	m_freem(m0);
76519880Skarels 	return (error);
76619880Skarels }
76719880Skarels 
76819880Skarels /*
76919880Skarels  * Watchdog routine - place stats request to EXOS
77019880Skarels  * (This could be dispensed with, if you don't care
77119880Skarels  *  about the if_ierrors count, or are willing to receive
77219880Skarels  *  bad packets in order to derive it.)
77319880Skarels  */
77419880Skarels exwatch(unit)
77519880Skarels 	int unit;
77619880Skarels {
77719880Skarels 	struct uba_device *ui = exinfo[unit];
77819880Skarels 	struct exdevice *addr = (struct exdevice *)ui->ui_addr;
77919880Skarels 	register struct ex_softc *xs = &ex_softc[unit];
78019880Skarels 	register struct ex_msg *bp;
78119880Skarels 	int s = splimp();
78219880Skarels 
78319880Skarels 	if (xs->xs_flags & EX_STATPENDING) goto exspnd;
78419880Skarels 	bp = exgetcbuf(xs);
78519880Skarels 	xs->xs_flags |= EX_STATPENDING;
78619880Skarels 	bp->mb_rqst = LLNET_STSTCS;
78719880Skarels 	bp->mb_ns.ns_mask = READ_OBJ;
78819880Skarels 	bp->mb_ns.ns_rsrv = 0;
78919880Skarels 	bp->mb_ns.ns_nobj = 8;		/* read all 8 stats objects */
79019880Skarels 	bp->mb_ns.ns_xobj = 0;		/* starting with the 1st one */
79119880Skarels 	bp->mb_ns.ns_bufp = P_UNIADDR(xs->xs_ubaddr) + SA_OFFSET;
79219880Skarels 	bp->mb_status |= MH_EXOS;
79319880Skarels 	addr->xd_portb = EX_NTRUPT;
79419880Skarels exspnd:
79519880Skarels 	splx(s);
79619880Skarels 	xs->xs_if.if_timer = EXWATCHINTVL;
79719880Skarels }
79819880Skarels 
79919880Skarels /*
80019880Skarels  * Process an ioctl request.
80119880Skarels  */
80219880Skarels exioctl(ifp, cmd, data)
80319880Skarels 	register struct ifnet *ifp;
80419880Skarels 	int cmd;
80519880Skarels 	caddr_t data;
80619880Skarels {
80721777Skarels 	register struct ifaddr *ifa = (struct ifaddr *)data;
80819880Skarels 	int s = splimp(), error = 0;
80919880Skarels 
81019880Skarels 	switch (cmd) {
81119880Skarels 
81219880Skarels 	case SIOCSIFADDR:
81321777Skarels                 ifp->if_flags |= IFF_UP;
814*24539Skarels                 exinit(ifp->if_unit);
81521777Skarels 
81621777Skarels                 switch (ifa->ifa_addr.sa_family) {
81721777Skarels 		case AF_INET:
81821777Skarels 			((struct arpcom *)ifp)->ac_ipaddr =
81921777Skarels 				IA_SIN(ifa)->sin_addr;
82021777Skarels 			arpwhohas((struct arpcom *)ifp, &IA_SIN(ifa)->sin_addr);
82121777Skarels 			break;
82221777Skarels 		}
82319880Skarels 		break;
82419880Skarels 
82519880Skarels 	default:
82619880Skarels 		error = EINVAL;
82719880Skarels 	}
82819880Skarels 	splx(s);
82919880Skarels 	return (error);
83019880Skarels }
831