xref: /csrg-svn/sys/vax/if/if_en.c (revision 5631)
1*5631Swnj /*	if_en.c	4.31	82/01/30	*/
24686Swnj 
34686Swnj #include "en.h"
45105Swnj 
54686Swnj /*
65105Swnj  * Xerox prototype (3 Mb) Ethernet interface driver.
74686Swnj  */
84686Swnj 
94686Swnj #include "../h/param.h"
104686Swnj #include "../h/systm.h"
114686Swnj #include "../h/mbuf.h"
124686Swnj #include "../h/pte.h"
134686Swnj #include "../h/buf.h"
145083Swnj #include "../h/protosw.h"
155083Swnj #include "../h/socket.h"
164686Swnj #include "../h/ubareg.h"
174686Swnj #include "../h/ubavar.h"
184686Swnj #include "../h/enreg.h"
195083Swnj #include "../h/cpu.h"
204686Swnj #include "../h/mtpr.h"
215083Swnj #include "../h/vmmac.h"
225083Swnj #include "../net/in.h"
235083Swnj #include "../net/in_systm.h"
245083Swnj #include "../net/if.h"
255083Swnj #include "../net/if_en.h"
265083Swnj #include "../net/if_uba.h"
275083Swnj #include "../net/ip.h"
285083Swnj #include "../net/ip_var.h"
294686Swnj 
305213Swnj #define	ENMTU	(1024+512)
315083Swnj 
324686Swnj int	enprobe(), enattach(), enrint(), enxint(), encollide();
334686Swnj struct	uba_device *eninfo[NEN];
344686Swnj u_short enstd[] = { 0 };
354686Swnj struct	uba_driver endriver =
365171Swnj 	{ enprobe, 0, enattach, 0, enstd, "en", eninfo };
374686Swnj #define	ENUNIT(x)	minor(x)
384686Swnj 
395105Swnj int	eninit(),enoutput(),enreset();
405105Swnj 
415105Swnj /*
425105Swnj  * Ethernet software status per interface.
435105Swnj  *
445105Swnj  * Each interface is referenced by a network interface structure,
455105Swnj  * es_if, which the routing code uses to locate the interface.
465105Swnj  * This structure contains the output queue for the interface, its address, ...
475105Swnj  * We also have, for each interface, a UBA interface structure, which
485105Swnj  * contains information about the UNIBUS resources held by the interface:
495105Swnj  * map registers, buffered data paths, etc.  Information is cached in this
505105Swnj  * structure for use by the if_uba.c routines in running the interface
515105Swnj  * efficiently.
525105Swnj  */
535083Swnj struct	en_softc {
545105Swnj 	struct	ifnet es_if;		/* network-visible interface */
555105Swnj 	struct	ifuba es_ifuba;		/* UNIBUS resources */
565105Swnj 	short	es_delay;		/* current output delay */
575105Swnj 	short	es_mask;		/* mask for current output delay */
585105Swnj 	u_char	es_lastx;		/* host last transmitted to */
595105Swnj 	short	es_oactive;		/* is output active? */
605105Swnj 	short	es_olen;		/* length of last output */
615083Swnj } en_softc[NEN];
624686Swnj 
635105Swnj /*
645105Swnj  * Do output DMA to determine interface presence and
655105Swnj  * interrupt vector.  DMA is too short to disturb other hosts.
665105Swnj  */
674686Swnj enprobe(reg)
684686Swnj 	caddr_t reg;
694686Swnj {
705171Swnj 	register int br, cvec;		/* r11, r10 value-result */
714686Swnj 	register struct endevice *addr = (struct endevice *)reg;
724686Swnj 
735083Swnj COUNT(ENPROBE);
744686Swnj #ifdef lint
754686Swnj 	br = 0; cvec = br; br = cvec;
764922Swnj 	enrint(0); enxint(0); encollide(0);
774686Swnj #endif
784686Swnj 	addr->en_istat = 0;
794686Swnj 	addr->en_owc = -1;
804686Swnj 	addr->en_oba = 0;
814771Swnj 	addr->en_ostat = EN_IEN|EN_GO;
824686Swnj 	DELAY(100000);
834686Swnj 	addr->en_ostat = 0;
844686Swnj 	return (1);
854686Swnj }
864686Swnj 
875105Swnj /*
885105Swnj  * Interface exists: make available by filling in network interface
895105Swnj  * record.  System will initialize the interface when it is ready
905105Swnj  * to accept packets.
915105Swnj  */
924686Swnj enattach(ui)
934686Swnj 	struct uba_device *ui;
944686Swnj {
955105Swnj 	register struct en_softc *es = &en_softc[ui->ui_unit];
965105Swnj COUNT(ENATTACH);
974688Swnj 
985105Swnj 	es->es_if.if_unit = ui->ui_unit;
995171Swnj 	es->es_if.if_name = "en";
1005105Swnj 	es->es_if.if_mtu = ENMTU;
1015105Swnj 	es->es_if.if_net = ui->ui_flags;
1025105Swnj 	es->es_if.if_host[0] =
1035213Swnj 	    (~(((struct endevice *)eninfo[ui->ui_unit]->ui_addr)->en_addr)) & 0xff;
1045294Sroot #ifdef ENKLUDGE
1055294Sroot 	if (es->es_if.if_net == 10) {
1065294Sroot 		es->es_if.if_host[0] <<= 16;
1075294Sroot 		es->es_if.if_host[0] |= 0x4e;
1085294Sroot 	}
1095294Sroot #endif
1105105Swnj 	es->es_if.if_addr =
1115105Swnj 	    if_makeaddr(es->es_if.if_net, es->es_if.if_host[0]);
1125171Swnj 	es->es_if.if_init = eninit;
1135105Swnj 	es->es_if.if_output = enoutput;
1145105Swnj 	es->es_if.if_ubareset = enreset;
1155160Swnj 	if_attach(&es->es_if);
1164686Swnj }
1174686Swnj 
1185105Swnj /*
1195105Swnj  * Reset of interface after UNIBUS reset.
1205105Swnj  * If interface is on specified uba, reset its state.
1215105Swnj  */
1225105Swnj enreset(unit, uban)
1235105Swnj 	int unit, uban;
1245105Swnj {
1255105Swnj 	register struct uba_device *ui;
1265105Swnj COUNT(ENRESET);
1275105Swnj 
1285171Swnj 	if (unit >= NEN || (ui = eninfo[unit]) == 0 || ui->ui_alive == 0 ||
1295171Swnj 	    ui->ui_ubanum != uban)
1305105Swnj 		return;
1315171Swnj 	printf(" en%d", unit);
1325105Swnj 	eninit(unit);
1335105Swnj }
1345105Swnj 
1355105Swnj /*
1365105Swnj  * Initialization of interface; clear recorded pending
1375105Swnj  * operations, and reinitialize UNIBUS usage.
1385105Swnj  */
1394688Swnj eninit(unit)
1404686Swnj 	int unit;
1415083Swnj {
1425171Swnj 	register struct en_softc *es = &en_softc[unit];
1435171Swnj 	register struct uba_device *ui = eninfo[unit];
1444686Swnj 	register struct endevice *addr;
1455105Swnj 	int s;
1464686Swnj 
1475105Swnj 	if (if_ubainit(&es->es_ifuba, ui->ui_ubanum,
1485105Swnj 	    sizeof (struct en_header), (int)btop(ENMTU)) == 0) {
1495171Swnj 		printf("en%d: can't initialize\n", unit);
1505083Swnj 		return;
1514686Swnj 	}
1524686Swnj 	addr = (struct endevice *)ui->ui_addr;
1535083Swnj 	addr->en_istat = addr->en_ostat = 0;
1544686Swnj 
1555105Swnj 	/*
1565171Swnj 	 * Hang a receive and start any
1575171Swnj 	 * pending writes by faking a transmit complete.
1585105Swnj 	 */
1595105Swnj 	s = splimp();
1605171Swnj 	addr->en_iba = es->es_ifuba.ifu_r.ifrw_info;
1615171Swnj 	addr->en_iwc = -(sizeof (struct en_header) + ENMTU) >> 1;
1625171Swnj 	addr->en_istat = EN_IEN|EN_GO;
1635171Swnj 	es->es_oactive = 1;
1645105Swnj 	enxint(unit);
1655105Swnj 	splx(s);
1664686Swnj }
1674686Swnj 
1684717Swnj int	enlastdel = 25;
1695083Swnj 
1705105Swnj /*
1715105Swnj  * Start or restart output on interface.
1725105Swnj  * If interface is already active, then this is a retransmit
1735105Swnj  * after a collision, and just restuff registers and delay.
1745105Swnj  * If interface is not already active, get another datagram
1755105Swnj  * to send off of the interface queue, and map it to the interface
1765105Swnj  * before starting the output.
1775105Swnj  */
1784688Swnj enstart(dev)
1794686Swnj 	dev_t dev;
1804686Swnj {
1815171Swnj         int unit = ENUNIT(dev);
1825171Swnj 	struct uba_device *ui = eninfo[unit];
1835171Swnj 	register struct en_softc *es = &en_softc[unit];
1845083Swnj 	register struct endevice *addr;
1855083Swnj 	struct mbuf *m;
1865083Swnj 	int dest;
1874688Swnj COUNT(ENSTART);
1884686Swnj 
1895083Swnj 	if (es->es_oactive)
1905083Swnj 		goto restart;
1915105Swnj 
1925105Swnj 	/*
1935105Swnj 	 * Not already active: dequeue another request
1945105Swnj 	 * and map it to the UNIBUS.  If no more requests,
1955105Swnj 	 * just return.
1965105Swnj 	 */
1975105Swnj 	IF_DEQUEUE(&es->es_if.if_snd, m);
1985083Swnj 	if (m == 0) {
1995083Swnj 		es->es_oactive = 0;
2004686Swnj 		return;
2014686Swnj 	}
2025213Swnj 	dest = mtod(m, struct en_header *)->en_dhost;
2035105Swnj 	es->es_olen = if_wubaput(&es->es_ifuba, m);
2045105Swnj 
2055105Swnj 	/*
2065105Swnj 	 * Ethernet cannot take back-to-back packets (no
2075105Swnj 	 * buffering in interface.  To avoid overrunning
2085105Swnj 	 * receiver, enforce a small delay (about 1ms) in interface
2095105Swnj 	 * on successive packets sent to same host.
2105105Swnj 	 */
2115083Swnj 	if (es->es_lastx && es->es_lastx == dest)
2125083Swnj 		es->es_delay = enlastdel;
2135083Swnj 	else
2145083Swnj 		es->es_lastx = dest;
2155105Swnj 
2165083Swnj restart:
2175105Swnj 	/*
2185105Swnj 	 * Have request mapped to UNIBUS for transmission.
2195105Swnj 	 * Purge any stale data from this BDP, and start the otput.
2205105Swnj 	 */
2215105Swnj 	UBAPURGE(es->es_ifuba.ifu_uba, es->es_ifuba.ifu_w.ifrw_bdp);
2224686Swnj 	addr = (struct endevice *)ui->ui_addr;
2235160Swnj 	addr->en_oba = (int)es->es_ifuba.ifu_w.ifrw_info;
2245083Swnj 	addr->en_odelay = es->es_delay;
2255083Swnj 	addr->en_owc = -((es->es_olen + 1) >> 1);
2264771Swnj 	addr->en_ostat = EN_IEN|EN_GO;
2275083Swnj 	es->es_oactive = 1;
2284686Swnj }
2294686Swnj 
2305105Swnj /*
2315105Swnj  * Ethernet interface transmitter interrupt.
2325105Swnj  * Start another output if more data to send.
2335105Swnj  */
2344686Swnj enxint(unit)
2354686Swnj 	int unit;
2364686Swnj {
2375171Swnj 	register struct uba_device *ui = eninfo[unit];
2385171Swnj 	register struct en_softc *es = &en_softc[unit];
2394686Swnj 	register struct endevice *addr;
2404686Swnj COUNT(ENXINT);
2414686Swnj 
2425083Swnj 	if (es->es_oactive == 0)
2435083Swnj 		return;
2444686Swnj 	addr = (struct endevice *)ui->ui_addr;
2455171Swnj 	es->es_if.if_opackets++;
2465083Swnj 	es->es_oactive = 0;
2475083Swnj 	es->es_delay = 0;
2485083Swnj 	es->es_mask = ~0;
2495275Swnj 	if (addr->en_ostat&EN_OERROR) {
2505275Swnj 		es->es_if.if_oerrors++;
2515213Swnj 		printf("en%d: output error\n", unit);
2525275Swnj 	}
2535105Swnj 	if (es->es_if.if_snd.ifq_head == 0) {
2545171Swnj 		if (es->es_ifuba.ifu_xtofree) {
2555171Swnj 			m_freem(es->es_ifuba.ifu_xtofree);
2565171Swnj 			es->es_ifuba.ifu_xtofree = 0;
2575171Swnj 		}
2585083Swnj 		es->es_lastx = 0;
2594686Swnj 		return;
2604686Swnj 	}
2615083Swnj 	enstart(unit);
2624686Swnj }
2634686Swnj 
2645105Swnj /*
2655105Swnj  * Collision on ethernet interface.  Do exponential
2665105Swnj  * backoff, and retransmit.  If have backed off all
2675105Swnj  * the way printing warning diagnostic, and drop packet.
2685105Swnj  */
2694686Swnj encollide(unit)
2704686Swnj 	int unit;
2714686Swnj {
2725171Swnj 	register struct en_softc *es = &en_softc[unit];
2734686Swnj COUNT(ENCOLLIDE);
2744686Swnj 
2755105Swnj 	es->es_if.if_collisions++;
2765083Swnj 	if (es->es_oactive == 0)
2774686Swnj 		return;
2785171Swnj 	/*
2795171Swnj 	 * Es_mask is a 16 bit number with n low zero bits, with
2805171Swnj 	 * n the number of backoffs.  When es_mask is 0 we have
2815171Swnj 	 * backed off 16 times, and give up.
2825171Swnj 	 */
2835083Swnj 	if (es->es_mask == 0) {
2845213Swnj 		printf("en%d: send error\n", unit);
2855083Swnj 		enxint(unit);
2865171Swnj 		return;
2874686Swnj 	}
2885171Swnj 	/*
2895171Swnj 	 * Another backoff.  Restart with delay based on n low bits
2905171Swnj 	 * of the interval timer.
2915171Swnj 	 */
2925171Swnj 	es->es_mask <<= 1;
2935171Swnj 	es->es_delay = mfpr(ICR) &~ es->es_mask;
2945171Swnj 	enstart(unit);
2954686Swnj }
2964686Swnj 
297*5631Swnj int	enprintierrors;
2985105Swnj /*
2995105Swnj  * Ethernet interface receiver interrupt.
3005105Swnj  * If input error just drop packet.
3015105Swnj  * Otherwise purge input buffered data path and examine
3025105Swnj  * packet to determine type.  If can't determine length
3035105Swnj  * from type, then have to drop packet.  Othewise decapsulate
3045105Swnj  * packet based on type and pass to type specific higher-level
3055105Swnj  * input routine.
3065105Swnj  */
3074686Swnj enrint(unit)
3084686Swnj 	int unit;
3094686Swnj {
3105171Swnj 	register struct en_softc *es = &en_softc[unit];
3115171Swnj 	struct endevice *addr = (struct endevice *)eninfo[unit]->ui_addr;
3125171Swnj 	register struct en_header *en;
3135083Swnj     	struct mbuf *m;
3145171Swnj 	int len;
3155171Swnj 	register struct ifqueue *inq;
3165083Swnj 	int off;
3174686Swnj COUNT(ENRINT);
3184686Swnj 
3195171Swnj 	es->es_if.if_ipackets++;
3205105Swnj 
3215105Swnj 	/*
3225171Swnj 	 * Purge BDP; drop if input error indicated.
3235105Swnj 	 */
3245105Swnj 	UBAPURGE(es->es_ifuba.ifu_uba, es->es_ifuba.ifu_r.ifrw_bdp);
3254771Swnj 	if (addr->en_istat&EN_IERROR) {
3265105Swnj 		es->es_if.if_ierrors++;
327*5631Swnj 		if (enprintierrors)
3285213Swnj 		printf("en%d: input error\n", unit);
3295083Swnj 		goto setup;
3304686Swnj 	}
3315105Swnj 
3325105Swnj 	/*
3335105Swnj 	 * Get pointer to ethernet header (in input buffer).
3345105Swnj 	 * Deal with trailer protocol: if type is PUP trailer
3355105Swnj 	 * get true type from first 16-bit word past data.
3365105Swnj 	 * Remember that type was trailer by setting off.
3375105Swnj 	 */
3385105Swnj 	en = (struct en_header *)(es->es_ifuba.ifu_r.ifrw_addr);
3395083Swnj #define	endataaddr(en, off, type)	((type)(((caddr_t)((en)+1)+(off))))
3405083Swnj 	if (en->en_type >= ENPUP_TRAIL &&
3415083Swnj 	    en->en_type < ENPUP_TRAIL+ENPUP_NTRAILER) {
3425083Swnj 		off = (en->en_type - ENPUP_TRAIL) * 512;
3435171Swnj 		if (off >= ENMTU)
3445171Swnj 			goto setup;		/* sanity */
3455083Swnj 		en->en_type = *endataaddr(en, off, u_short *);
3465083Swnj 	} else
3475083Swnj 		off = 0;
3485105Swnj 
3495105Swnj 	/*
3505105Swnj 	 * Attempt to infer packet length from type;
3515105Swnj 	 * can't deal with packet if can't infer length.
3525105Swnj 	 */
3535083Swnj 	switch (en->en_type) {
3545083Swnj 
3555083Swnj #ifdef INET
3565083Swnj 	case ENPUP_IPTYPE:
3575239Sroot 		len = htons((u_short)endataaddr(en, off ? off+2 : 0, struct ip *)->ip_len);
3585239Sroot 		if (off)
3595239Sroot 			len += 2;
3605083Swnj 		setipintr();
3615083Swnj 		inq = &ipintrq;
3624686Swnj 		break;
3634686Swnj #endif
3644686Swnj 
3655083Swnj 	default:
3665083Swnj 		printf("en%d: unknow pkt type 0x%x\n", en->en_type);
3675083Swnj 		goto setup;
3684686Swnj 	}
3695083Swnj 	if (len == 0)
3705083Swnj 		goto setup;
3715105Swnj 
3725105Swnj 	/*
3735105Swnj 	 * Pull packet off interface.  Off is nonzero if packet
3745105Swnj 	 * has trailing header; if_rubaget will then force this header
3755105Swnj 	 * information to be at the front, but we still have to drop
3765171Swnj 	 * the two-byte type which is at the front of any trailer data.
3775105Swnj 	 */
3785105Swnj 	m = if_rubaget(&es->es_ifuba, len, off);
3795213Swnj 	if (m == 0)
3805213Swnj 		goto setup;
3815105Swnj 	if (off) {
3825105Swnj 		m->m_off += 2;
3835105Swnj 		m->m_len -= 2;
3845105Swnj 	}
3855083Swnj 	IF_ENQUEUE(inq, m);
3865105Swnj 
3874688Swnj setup:
3885105Swnj 	/*
3895105Swnj 	 * Reset for next packet.
3905105Swnj 	 */
3915105Swnj 	addr->en_iba = es->es_ifuba.ifu_r.ifrw_info;
3925083Swnj 	addr->en_iwc = -(sizeof (struct en_header) + ENMTU) >> 1;
3934771Swnj 	addr->en_istat = EN_IEN|EN_GO;
3944688Swnj }
3954686Swnj 
3965083Swnj /*
3975083Swnj  * Ethernet output routine.
3985083Swnj  * Encapsulate a packet of type family for the local net.
3995105Swnj  * Use trailer local net encapsulation if enough data in first
4005105Swnj  * packet leaves a multiple of 512 bytes of data in remainder.
4015083Swnj  */
4025083Swnj enoutput(ifp, m0, pf)
4035083Swnj 	struct ifnet *ifp;
4045083Swnj 	struct mbuf *m0;
4055083Swnj 	int pf;
4064686Swnj {
4075083Swnj 	int type, dest;
4085105Swnj 	register struct mbuf *m = m0;
4095083Swnj 	register struct en_header *en;
4105083Swnj 	int s;
4114686Swnj 
4125083Swnj 	switch (pf) {
4135083Swnj 
4145083Swnj #ifdef INET
4155083Swnj 	case PF_INET: {
4165083Swnj 		register struct ip *ip = mtod(m0, struct ip *);
4175083Swnj 		int off;
4185083Swnj 
4195294Sroot #ifndef ENKLUDGE
4205105Swnj 		dest = ip->ip_dst.s_addr >> 24;
4215294Sroot #else
4225294Sroot 		dest = (ip->ip_dst.s_addr >> 8) & 0xff;
4235294Sroot #endif
4245239Sroot 		off = ntohs((u_short)ip->ip_len) - m->m_len;
4255356Sroot #ifndef ENKLUDGE
4265171Swnj 		if (off > 0 && (off & 0x1ff) == 0 && m->m_off >= MMINOFF + 2) {
4275083Swnj 			type = ENPUP_TRAIL + (off>>9);
4285105Swnj 			m->m_off -= 2;
4295105Swnj 			m->m_len += 2;
4305105Swnj 			*mtod(m, u_short *) = ENPUP_IPTYPE;
4315105Swnj 			goto gottrailertype;
4325083Swnj 		}
4335356Sroot #endif
4345105Swnj 		type = ENPUP_IPTYPE;
4355105Swnj 		off = 0;
4365105Swnj 		goto gottype;
4375083Swnj 		}
4385083Swnj #endif
4395083Swnj 
4405083Swnj 	default:
4415083Swnj 		printf("en%d: can't encapsulate pf%d\n", ifp->if_unit, pf);
4425083Swnj 		m_freem(m0);
4435083Swnj 		return (0);
4444686Swnj 	}
4455105Swnj 
4465171Swnj gottrailertype:
4475105Swnj 	/*
4485105Swnj 	 * Packet to be sent as trailer: move first packet
4495105Swnj 	 * (control information) to end of chain.
4505105Swnj 	 */
4515105Swnj 	while (m->m_next)
4525105Swnj 		m = m->m_next;
4535105Swnj 	m->m_next = m0;
4545105Swnj 	m = m0->m_next;
4555105Swnj 	m0->m_next = 0;
4565171Swnj 	m0 = m;
4575105Swnj 
4585171Swnj gottype:
4595105Swnj 	/*
4605105Swnj 	 * Add local net header.  If no space in first mbuf,
4615105Swnj 	 * allocate another.
4625105Swnj 	 */
4635213Swnj 	if (m->m_off > MMAXOFF ||
4645213Swnj 	    MMINOFF + sizeof (struct en_header) > m->m_off) {
4655584Sroot 		m = m_get(M_DONTWAIT);
4665083Swnj 		if (m == 0) {
4675083Swnj 			m_freem(m0);
4685083Swnj 			return (0);
4695083Swnj 		}
4705083Swnj 		m->m_next = m0;
4715083Swnj 		m->m_off = MMINOFF;
4725083Swnj 		m->m_len = sizeof (struct en_header);
4735083Swnj 	} else {
4745083Swnj 		m->m_off -= sizeof (struct en_header);
4755083Swnj 		m->m_len += sizeof (struct en_header);
4765083Swnj 	}
4775083Swnj 	en = mtod(m, struct en_header *);
4785083Swnj 	en->en_shost = ifp->if_host[0];
4795083Swnj 	en->en_dhost = dest;
4805083Swnj 	en->en_type = type;
4815105Swnj 
4825105Swnj 	/*
4835105Swnj 	 * Queue message on interface, and start output if interface
4845105Swnj 	 * not yet active.
4855105Swnj 	 */
4865083Swnj 	s = splimp();
4875083Swnj 	IF_ENQUEUE(&ifp->if_snd, m);
4885083Swnj 	if (en_softc[ifp->if_unit].es_oactive == 0)
4895083Swnj 		enstart(ifp->if_unit);
4905275Swnj 	splx(s);
4915105Swnj 	return (1);
4924686Swnj }
493