if_el.c revision 1.4 1 1.2 cgd /*
2 1.2 cgd * Copyright (c) 1994, Matthew E. Kimmel. Permission is hereby granted
3 1.1 hpeyerl * to use, copy, modify and distribute this software provided that both
4 1.1 hpeyerl * the copyright notice and this permission notice appear in all copies
5 1.1 hpeyerl * of the software, derivative works or modified versions, and any
6 1.1 hpeyerl * portions thereof.
7 1.1 hpeyerl */
8 1.2 cgd
9 1.2 cgd /*
10 1.2 cgd * 3COM Etherlink 3C501 device driver
11 1.2 cgd *
12 1.4 mycroft * $Id: if_el.c,v 1.4 1994/03/02 16:23:23 mycroft Exp $
13 1.1 hpeyerl */
14 1.2 cgd
15 1.2 cgd /*
16 1.2 cgd * Bugs/possible improvements:
17 1.1 hpeyerl * - Does not currently support DMA
18 1.1 hpeyerl * - Does not currently support multicasts
19 1.1 hpeyerl */
20 1.2 cgd
21 1.1 hpeyerl #include "el.h"
22 1.1 hpeyerl #include "bpfilter.h"
23 1.1 hpeyerl
24 1.1 hpeyerl #include <sys/param.h>
25 1.1 hpeyerl #include <sys/errno.h>
26 1.1 hpeyerl #include <sys/ioctl.h>
27 1.1 hpeyerl #include <sys/mbuf.h>
28 1.1 hpeyerl #include <sys/socket.h>
29 1.1 hpeyerl #include <sys/syslog.h>
30 1.3 mycroft #include <sys/device.h>
31 1.1 hpeyerl
32 1.1 hpeyerl #include <net/if.h>
33 1.1 hpeyerl #include <net/if_dl.h>
34 1.1 hpeyerl #include <net/if_types.h>
35 1.1 hpeyerl
36 1.1 hpeyerl #ifdef INET
37 1.1 hpeyerl #include <netinet/in.h>
38 1.1 hpeyerl #include <netinet/in_systm.h>
39 1.1 hpeyerl #include <netinet/in_var.h>
40 1.1 hpeyerl #include <netinet/ip.h>
41 1.1 hpeyerl #include <netinet/if_ether.h>
42 1.1 hpeyerl #endif
43 1.1 hpeyerl
44 1.1 hpeyerl #ifdef NS
45 1.1 hpeyerl #include <netns/ns.h>
46 1.1 hpeyerl #include <netns/ns_if.h>
47 1.1 hpeyerl #endif
48 1.1 hpeyerl
49 1.1 hpeyerl #if NBPFILTER > 0
50 1.1 hpeyerl #include <net/bpf.h>
51 1.1 hpeyerl #include <net/bpfdesc.h>
52 1.1 hpeyerl #endif
53 1.1 hpeyerl
54 1.1 hpeyerl #include <machine/pio.h>
55 1.1 hpeyerl
56 1.1 hpeyerl #include <i386/isa/isa.h>
57 1.1 hpeyerl #include <i386/isa/isa_device.h>
58 1.1 hpeyerl #include <i386/isa/icu.h>
59 1.1 hpeyerl #include <i386/isa/if_elreg.h>
60 1.1 hpeyerl
61 1.1 hpeyerl #define ETHER_MIN_LEN 64
62 1.1 hpeyerl #define ETHER_MAX_LEN 1518
63 1.3 mycroft #define ETHER_ADDR_LEN 6
64 1.1 hpeyerl
65 1.3 mycroft /* for debugging convenience */
66 1.1 hpeyerl #ifdef EL_DEBUG
67 1.1 hpeyerl #define dprintf(x) printf x
68 1.1 hpeyerl #else
69 1.1 hpeyerl #define dprintf(x)
70 1.1 hpeyerl #endif
71 1.1 hpeyerl
72 1.2 cgd /*
73 1.3 mycroft * per-line info and status
74 1.2 cgd */
75 1.1 hpeyerl struct el_softc {
76 1.3 mycroft struct device sc_dev;
77 1.3 mycroft
78 1.3 mycroft struct arpcom sc_arpcom; /* ethernet common */
79 1.3 mycroft u_short sc_iobase; /* base I/O addr */
80 1.3 mycroft caddr_t sc_bpf; /* BPF magic cookie */
81 1.3 mycroft char sc_pktbuf[EL_BUFSIZ]; /* frame buffer */
82 1.1 hpeyerl } el_softc[NEL];
83 1.1 hpeyerl
84 1.2 cgd /*
85 1.3 mycroft * prototypes
86 1.2 cgd */
87 1.2 cgd int elintr __P((int));
88 1.1 hpeyerl static int el_attach __P((struct isa_device *));
89 1.3 mycroft static int el_init __P((struct el_softc *));
90 1.2 cgd static int el_ioctl __P((struct ifnet *, int, caddr_t));
91 1.1 hpeyerl static int el_probe __P((struct isa_device *));
92 1.1 hpeyerl static int el_start __P((struct ifnet *));
93 1.1 hpeyerl static int el_watchdog __P((int));
94 1.3 mycroft static void el_reset __P((struct el_softc *));
95 1.3 mycroft static void el_stop __P((struct el_softc *));
96 1.2 cgd static int el_xmit __P((struct el_softc *, int));
97 1.2 cgd static inline void elread __P((struct el_softc *, caddr_t, int));
98 1.2 cgd static struct mbuf *elget __P((caddr_t, int, int, struct ifnet *));
99 1.1 hpeyerl
100 1.1 hpeyerl /* isa_driver structure for autoconf */
101 1.1 hpeyerl struct isa_driver eldriver = {
102 1.1 hpeyerl el_probe, el_attach, "el"
103 1.1 hpeyerl };
104 1.1 hpeyerl
105 1.3 mycroft struct trailer_header {
106 1.3 mycroft u_short ether_type;
107 1.3 mycroft u_short ether_residual;
108 1.3 mycroft };
109 1.3 mycroft
110 1.2 cgd /*
111 1.2 cgd * Probe routine.
112 1.2 cgd *
113 1.2 cgd * See if the card is there and at the right place.
114 1.2 cgd * (XXX - cgd -- needs help)
115 1.2 cgd */
116 1.1 hpeyerl static int
117 1.3 mycroft el_probe(isa_dev)
118 1.3 mycroft struct isa_device *isa_dev;
119 1.1 hpeyerl {
120 1.3 mycroft struct el_softc *sc = &el_softc[isa_dev->id_unit];
121 1.3 mycroft u_short iobase = isa_dev->id_iobase;
122 1.1 hpeyerl u_char station_addr[ETHER_ADDR_LEN];
123 1.1 hpeyerl int i;
124 1.1 hpeyerl
125 1.3 mycroft /* First check the base. */
126 1.3 mycroft if (iobase < 0x280 || iobase > 0x3f0)
127 1.3 mycroft return 0;
128 1.3 mycroft
129 1.3 mycroft /* Grab some info for our structure. */
130 1.3 mycroft sc->sc_iobase = iobase;
131 1.3 mycroft
132 1.3 mycroft /* XXX HACK */
133 1.3 mycroft sprintf(sc->sc_dev.dv_xname, "%s%d", eldriver.name, isa_dev->id_unit);
134 1.3 mycroft sc->sc_dev.dv_unit = isa_dev->id_unit;
135 1.1 hpeyerl
136 1.2 cgd /*
137 1.3 mycroft * Now attempt to grab the station address from the PROM and see if it
138 1.3 mycroft * contains the 3com vendor code.
139 1.1 hpeyerl */
140 1.3 mycroft dprintf(("Probing 3c501 at 0x%x...\n", iobase));
141 1.3 mycroft
142 1.3 mycroft /* Reset the board. */
143 1.1 hpeyerl dprintf(("Resetting board...\n"));
144 1.3 mycroft outb(iobase+EL_AC, EL_AC_RESET);
145 1.1 hpeyerl DELAY(5);
146 1.3 mycroft outb(iobase+EL_AC, 0);
147 1.3 mycroft
148 1.3 mycroft /* Now read the address. */
149 1.1 hpeyerl dprintf(("Reading station address...\n"));
150 1.3 mycroft for (i = 0; i < ETHER_ADDR_LEN; i++) {
151 1.3 mycroft outb(iobase+EL_GPBL, i);
152 1.3 mycroft station_addr[i] = inb(iobase+EL_EAW);
153 1.1 hpeyerl }
154 1.2 cgd dprintf(("Address is %s\n", ether_sprintf(station_addr)));
155 1.1 hpeyerl
156 1.2 cgd /*
157 1.3 mycroft * If the vendor code is ok, return a 1. We'll assume that whoever
158 1.3 mycroft * configured this system is right about the IRQ.
159 1.1 hpeyerl */
160 1.3 mycroft if (station_addr[0] != 0x02 || station_addr[1] != 0x60 ||
161 1.3 mycroft station_addr[2] != 0x8c) {
162 1.1 hpeyerl dprintf(("Bad vendor code.\n"));
163 1.3 mycroft return 0;
164 1.1 hpeyerl }
165 1.3 mycroft
166 1.3 mycroft dprintf(("Vendor code ok.\n"));
167 1.3 mycroft /* Copy the station address into the arpcom structure. */
168 1.3 mycroft bcopy(station_addr, sc->sc_arpcom.ac_enaddr, ETHER_ADDR_LEN);
169 1.3 mycroft return 1; /* XXX - cgd? */
170 1.1 hpeyerl }
171 1.1 hpeyerl
172 1.2 cgd /*
173 1.3 mycroft * Attach the interface to the kernel data structures. By the time this is
174 1.3 mycroft * called, we know that the card exists at the given I/O address. We still
175 1.3 mycroft * assume that the IRQ given is correct.
176 1.1 hpeyerl */
177 1.1 hpeyerl static int
178 1.3 mycroft el_attach(isa_dev)
179 1.3 mycroft struct isa_device *isa_dev;
180 1.1 hpeyerl {
181 1.3 mycroft struct el_softc *sc = &el_softc[isa_dev->id_unit];
182 1.3 mycroft struct ifnet *ifp = &sc->sc_arpcom.ac_if;
183 1.1 hpeyerl struct ifaddr *ifa;
184 1.1 hpeyerl struct sockaddr_dl *sdl;
185 1.1 hpeyerl
186 1.3 mycroft dprintf(("Attaching %s...\n", sc->sc_dev.dv_xname));
187 1.1 hpeyerl
188 1.3 mycroft /* Stop the board. */
189 1.3 mycroft el_stop(sc);
190 1.1 hpeyerl
191 1.3 mycroft /* Initialize ifnet structure. */
192 1.3 mycroft ifp->if_unit = isa_dev->id_unit;
193 1.3 mycroft ifp->if_name = eldriver.name;
194 1.1 hpeyerl ifp->if_mtu = ETHERMTU;
195 1.1 hpeyerl ifp->if_output = ether_output;
196 1.1 hpeyerl ifp->if_start = el_start;
197 1.1 hpeyerl ifp->if_ioctl = el_ioctl;
198 1.1 hpeyerl ifp->if_watchdog = el_watchdog;
199 1.3 mycroft ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_NOTRAILERS;
200 1.1 hpeyerl
201 1.3 mycroft /* Now we can attach the interface. */
202 1.1 hpeyerl dprintf(("Attaching interface...\n"));
203 1.1 hpeyerl if_attach(ifp);
204 1.1 hpeyerl
205 1.2 cgd /*
206 1.3 mycroft * Put the station address in the ifa address list's AF_LINK entry, if
207 1.3 mycroft * any.
208 1.1 hpeyerl */
209 1.1 hpeyerl ifa = ifp->if_addrlist;
210 1.3 mycroft while (ifa && ifa->ifa_addr) {
211 1.3 mycroft if (ifa->ifa_addr->sa_family == AF_LINK) {
212 1.3 mycroft /*
213 1.3 mycroft * Fill in the link-level address for this interface.
214 1.3 mycroft */
215 1.3 mycroft sdl = (struct sockaddr_dl *)ifa->ifa_addr;
216 1.3 mycroft sdl->sdl_type = IFT_ETHER;
217 1.3 mycroft sdl->sdl_alen = ETHER_ADDR_LEN;
218 1.3 mycroft sdl->sdl_slen = 0;
219 1.3 mycroft bcopy(sc->sc_arpcom.ac_enaddr, LLADDR(sdl),
220 1.3 mycroft ETHER_ADDR_LEN);
221 1.3 mycroft break;
222 1.3 mycroft } else
223 1.3 mycroft ifa = ifa->ifa_next;
224 1.1 hpeyerl }
225 1.1 hpeyerl
226 1.3 mycroft /* Print out some information for the user. */
227 1.3 mycroft printf("%s: address %s\n", sc->sc_dev.dv_xname,
228 1.3 mycroft ether_sprintf(sc->sc_arpcom.ac_enaddr));
229 1.1 hpeyerl
230 1.1 hpeyerl /* Finally, attach to bpf filter if it is present. */
231 1.1 hpeyerl #if NBPFILTER > 0
232 1.1 hpeyerl dprintf(("Attaching to BPF...\n"));
233 1.3 mycroft bpfattach(&sc->sc_bpf, ifp, DLT_EN10MB, sizeof(struct ether_header));
234 1.1 hpeyerl #endif
235 1.1 hpeyerl
236 1.1 hpeyerl dprintf(("el_attach() finished.\n"));
237 1.3 mycroft return 1;
238 1.1 hpeyerl }
239 1.1 hpeyerl
240 1.2 cgd /*
241 1.2 cgd * Reset interface.
242 1.2 cgd */
243 1.1 hpeyerl static void
244 1.3 mycroft el_reset(sc)
245 1.3 mycroft struct el_softc *sc;
246 1.1 hpeyerl {
247 1.1 hpeyerl int s;
248 1.1 hpeyerl
249 1.1 hpeyerl dprintf(("elreset()\n"));
250 1.1 hpeyerl s = splimp();
251 1.3 mycroft el_stop(sc);
252 1.3 mycroft el_init(sc);
253 1.1 hpeyerl splx(s);
254 1.1 hpeyerl }
255 1.1 hpeyerl
256 1.2 cgd /*
257 1.2 cgd * Stop interface.
258 1.2 cgd */
259 1.1 hpeyerl static void
260 1.3 mycroft el_stop(sc)
261 1.3 mycroft struct el_softc *sc;
262 1.1 hpeyerl {
263 1.1 hpeyerl
264 1.3 mycroft outb(sc->sc_iobase+EL_AC, 0);
265 1.1 hpeyerl }
266 1.1 hpeyerl
267 1.2 cgd /*
268 1.2 cgd * Initialize interface.
269 1.2 cgd */
270 1.1 hpeyerl static int
271 1.3 mycroft el_init(sc)
272 1.3 mycroft struct el_softc *sc;
273 1.1 hpeyerl {
274 1.3 mycroft struct ifnet *ifp = &sc->sc_arpcom.ac_if;
275 1.3 mycroft u_short iobase = sc->sc_iobase;
276 1.1 hpeyerl int s;
277 1.1 hpeyerl
278 1.1 hpeyerl /* If address not known, do nothing. */
279 1.3 mycroft if (ifp->if_addrlist == 0)
280 1.1 hpeyerl return;
281 1.1 hpeyerl
282 1.1 hpeyerl s = splimp();
283 1.1 hpeyerl
284 1.1 hpeyerl /* First, reset the board. */
285 1.1 hpeyerl dprintf(("Resetting board...\n"));
286 1.3 mycroft outb(iobase+EL_AC, EL_AC_RESET);
287 1.1 hpeyerl DELAY(5);
288 1.3 mycroft outb(iobase+EL_AC, 0);
289 1.1 hpeyerl
290 1.3 mycroft /* Configure rx. */
291 1.1 hpeyerl dprintf(("Configuring rx...\n"));
292 1.2 cgd if (ifp->if_flags & IFF_PROMISC)
293 1.3 mycroft outb(iobase+EL_RXC, EL_RXC_AGF | EL_RXC_DSHORT | EL_RXC_DDRIB | EL_RXC_DOFLOW | EL_RXC_PROMISC);
294 1.1 hpeyerl else
295 1.3 mycroft outb(iobase+EL_RXC, EL_RXC_AGF | EL_RXC_DSHORT | EL_RXC_DDRIB | EL_RXC_DOFLOW | EL_RXC_ABROAD);
296 1.3 mycroft outb(iobase+EL_RBC, 0);
297 1.1 hpeyerl
298 1.3 mycroft /* Configure TX. */
299 1.1 hpeyerl dprintf(("Configuring tx...\n"));
300 1.3 mycroft outb(iobase+EL_TXC, 0);
301 1.1 hpeyerl
302 1.3 mycroft /* Start reception. */
303 1.1 hpeyerl dprintf(("Starting reception...\n"));
304 1.3 mycroft outb(iobase+EL_AC, EL_AC_IRQE | EL_AC_RX);
305 1.1 hpeyerl
306 1.3 mycroft /* Set flags appropriately. */
307 1.1 hpeyerl ifp->if_flags |= IFF_RUNNING;
308 1.1 hpeyerl ifp->if_flags &= ~IFF_OACTIVE;
309 1.1 hpeyerl
310 1.1 hpeyerl /* And start output. */
311 1.1 hpeyerl el_start(ifp);
312 1.1 hpeyerl
313 1.1 hpeyerl splx(s);
314 1.1 hpeyerl }
315 1.1 hpeyerl
316 1.2 cgd /*
317 1.3 mycroft * Start output on interface. Get datagrams from the queue and output them,
318 1.3 mycroft * giving the receiver a chance between datagrams. Call only from splimp or
319 1.3 mycroft * interrupt level!
320 1.1 hpeyerl */
321 1.1 hpeyerl static int
322 1.2 cgd el_start(ifp)
323 1.2 cgd struct ifnet *ifp;
324 1.1 hpeyerl {
325 1.3 mycroft struct el_softc *sc = &el_softc[ifp->if_unit];
326 1.3 mycroft u_short iobase = sc->sc_iobase;
327 1.1 hpeyerl struct mbuf *m, *m0;
328 1.1 hpeyerl int s, i, len, retries, done;
329 1.1 hpeyerl
330 1.1 hpeyerl dprintf(("el_start()...\n"));
331 1.1 hpeyerl s = splimp();
332 1.1 hpeyerl
333 1.3 mycroft /* Don't do anything if output is active. */
334 1.3 mycroft if (sc->sc_arpcom.ac_if.if_flags & IFF_OACTIVE)
335 1.1 hpeyerl return;
336 1.3 mycroft sc->sc_arpcom.ac_if.if_flags |= IFF_OACTIVE;
337 1.1 hpeyerl
338 1.3 mycroft /*
339 1.3 mycroft * The main loop. They warned me against endless loops, but would I
340 1.3 mycroft * listen? NOOO....
341 1.1 hpeyerl */
342 1.3 mycroft for (;;) {
343 1.3 mycroft /* Dequeue the next datagram. */
344 1.3 mycroft IF_DEQUEUE(&sc->sc_arpcom.ac_if.if_snd, m0);
345 1.1 hpeyerl
346 1.1 hpeyerl /* If there's nothing to send, return. */
347 1.3 mycroft if (!m0) {
348 1.3 mycroft sc->sc_arpcom.ac_if.if_flags &= ~IFF_OACTIVE;
349 1.1 hpeyerl splx(s);
350 1.1 hpeyerl return;
351 1.1 hpeyerl }
352 1.1 hpeyerl
353 1.3 mycroft /* Disable the receiver. */
354 1.3 mycroft outb(iobase+EL_AC, EL_AC_HOST);
355 1.3 mycroft outb(iobase+EL_RBC, 0);
356 1.1 hpeyerl
357 1.1 hpeyerl /* Copy the datagram to the buffer. */
358 1.1 hpeyerl len = 0;
359 1.3 mycroft for (m = m0; m; m = m->m_next) {
360 1.2 cgd if (m->m_len == 0)
361 1.1 hpeyerl continue;
362 1.3 mycroft bcopy(mtod(m, caddr_t), sc->sc_pktbuf + len, m->m_len);
363 1.1 hpeyerl len += m->m_len;
364 1.1 hpeyerl }
365 1.1 hpeyerl m_freem(m0);
366 1.1 hpeyerl
367 1.3 mycroft len = max(len, ETHER_MIN_LEN);
368 1.1 hpeyerl
369 1.3 mycroft /* Give the packet to the bpf, if any. */
370 1.1 hpeyerl #if NBPFILTER > 0
371 1.3 mycroft if (sc->sc_bpf)
372 1.3 mycroft bpf_tap(sc->sc_bpf, sc->sc_pktbuf, len);
373 1.1 hpeyerl #endif
374 1.1 hpeyerl
375 1.3 mycroft /* Transfer datagram to board. */
376 1.2 cgd dprintf(("el: xfr pkt length=%d...\n", len));
377 1.1 hpeyerl i = EL_BUFSIZ - len;
378 1.3 mycroft outb(iobase+EL_GPBL, i);
379 1.3 mycroft outb(iobase+EL_GPBH, i >> 8);
380 1.3 mycroft outsb(iobase+EL_BUF, sc->sc_pktbuf, len);
381 1.3 mycroft
382 1.3 mycroft /* Now transmit the datagram. */
383 1.3 mycroft retries = 0;
384 1.3 mycroft done = 0;
385 1.3 mycroft while (!done) {
386 1.3 mycroft if (el_xmit(sc, len)) {
387 1.3 mycroft /* Something went wrong. */
388 1.1 hpeyerl done = -1;
389 1.1 hpeyerl break;
390 1.1 hpeyerl }
391 1.3 mycroft /* Check out status. */
392 1.3 mycroft i = inb(iobase+EL_TXS);
393 1.2 cgd dprintf(("tx status=0x%x\n", i));
394 1.3 mycroft if ((i & EL_TXS_READY) == 0) {
395 1.2 cgd dprintf(("el: err txs=%x\n", i));
396 1.3 mycroft sc->sc_arpcom.ac_if.if_oerrors++;
397 1.3 mycroft if (i & (EL_TXS_COLL | EL_TXS_COLL16)) {
398 1.3 mycroft if ((i & EL_TXC_DCOLL16) == 0 &&
399 1.2 cgd retries < 15) {
400 1.1 hpeyerl retries++;
401 1.3 mycroft outb(iobase+EL_AC, EL_AC_HOST);
402 1.1 hpeyerl }
403 1.2 cgd } else
404 1.1 hpeyerl done = 1;
405 1.4 mycroft } else {
406 1.4 mycroft sc->sc_arpcom.ac_if.if_opackets++;
407 1.1 hpeyerl done = 1;
408 1.4 mycroft }
409 1.1 hpeyerl }
410 1.3 mycroft if (done == -1)
411 1.3 mycroft /* Packet not transmitted. */
412 1.1 hpeyerl continue;
413 1.1 hpeyerl
414 1.2 cgd /*
415 1.2 cgd * Now give the card a chance to receive.
416 1.1 hpeyerl * Gotta love 3c501s...
417 1.1 hpeyerl */
418 1.3 mycroft (void)inb(iobase+EL_AS);
419 1.3 mycroft outb(iobase+EL_AC, EL_AC_IRQE | EL_AC_RX);
420 1.1 hpeyerl splx(s);
421 1.3 mycroft /* Interrupt here. */
422 1.1 hpeyerl s = splimp();
423 1.1 hpeyerl }
424 1.1 hpeyerl }
425 1.1 hpeyerl
426 1.2 cgd /*
427 1.3 mycroft * This function actually attempts to transmit a datagram downloaded to the
428 1.3 mycroft * board. Call at splimp or interrupt, after downloading data! Returns 0 on
429 1.3 mycroft * success, non-0 on failure.
430 1.1 hpeyerl */
431 1.1 hpeyerl static int
432 1.2 cgd el_xmit(sc, len)
433 1.2 cgd struct el_softc *sc;
434 1.2 cgd int len;
435 1.1 hpeyerl {
436 1.3 mycroft u_short iobase = sc->sc_iobase;
437 1.1 hpeyerl int gpl;
438 1.1 hpeyerl int i;
439 1.1 hpeyerl
440 1.1 hpeyerl gpl = EL_BUFSIZ - len;
441 1.1 hpeyerl dprintf(("el: xmit..."));
442 1.3 mycroft outb(iobase+EL_GPBL, gpl);
443 1.3 mycroft outb(iobase+EL_GPBH, gpl >> 8);
444 1.3 mycroft outb(iobase+EL_AC, EL_AC_TXFRX);
445 1.1 hpeyerl i = 20000;
446 1.3 mycroft while ((inb(iobase+EL_AS) & EL_AS_TXBUSY) && (i > 0))
447 1.1 hpeyerl i--;
448 1.2 cgd if (i == 0) {
449 1.1 hpeyerl dprintf(("tx not ready\n"));
450 1.3 mycroft sc->sc_arpcom.ac_if.if_oerrors++;
451 1.3 mycroft return -1;
452 1.1 hpeyerl }
453 1.3 mycroft dprintf(("%d cycles.\n", 20000 - i));
454 1.3 mycroft return 0;
455 1.1 hpeyerl }
456 1.1 hpeyerl
457 1.3 mycroft /*
458 1.3 mycroft * Controller interrupt.
459 1.3 mycroft */
460 1.1 hpeyerl int
461 1.2 cgd elintr(unit)
462 1.2 cgd int unit;
463 1.1 hpeyerl {
464 1.3 mycroft register struct el_softc *sc = &el_softc[unit];
465 1.3 mycroft u_short iobase = sc->sc_iobase;
466 1.1 hpeyerl int stat, rxstat, len, done;
467 1.1 hpeyerl
468 1.1 hpeyerl dprintf(("elintr: "));
469 1.1 hpeyerl
470 1.3 mycroft /* Check board status. */
471 1.3 mycroft stat = inb(iobase+EL_AS);
472 1.2 cgd if (stat & EL_AS_RXBUSY) {
473 1.3 mycroft (void)inb(iobase+EL_RXC);
474 1.3 mycroft outb(iobase+EL_AC, EL_AC_IRQE | EL_AC_RX);
475 1.1 hpeyerl return;
476 1.1 hpeyerl }
477 1.1 hpeyerl
478 1.1 hpeyerl done = 0;
479 1.3 mycroft while (!done) {
480 1.3 mycroft rxstat = inb(iobase+EL_RXS);
481 1.2 cgd if (rxstat & EL_RXS_STALE) {
482 1.3 mycroft (void)inb(iobase+EL_RXC);
483 1.3 mycroft outb(iobase+EL_AC, EL_AC_IRQE | EL_AC_RX);
484 1.1 hpeyerl return;
485 1.1 hpeyerl }
486 1.1 hpeyerl
487 1.1 hpeyerl /* If there's an overflow, reinit the board. */
488 1.3 mycroft if ((rxstat & EL_RXS_NOFLOW) == 0) {
489 1.1 hpeyerl dprintf(("overflow.\n"));
490 1.3 mycroft outb(iobase+EL_AC, EL_AC_RESET);
491 1.1 hpeyerl DELAY(5);
492 1.3 mycroft outb(iobase+EL_AC, 0);
493 1.3 mycroft /* Put board back into receive mode. */
494 1.3 mycroft if (sc->sc_arpcom.ac_if.if_flags & IFF_PROMISC)
495 1.3 mycroft outb(iobase+EL_RXC, EL_RXC_AGF | EL_RXC_DSHORT | EL_RXC_DDRIB | EL_RXC_DOFLOW | EL_RXC_PROMISC);
496 1.1 hpeyerl else
497 1.3 mycroft outb(iobase+EL_RXC, EL_RXC_AGF | EL_RXC_DSHORT | EL_RXC_DDRIB | EL_RXC_DOFLOW | EL_RXC_ABROAD);
498 1.3 mycroft (void)inb(iobase+EL_AS);
499 1.3 mycroft outb(iobase+EL_RBC, 0);
500 1.3 mycroft (void)inb(iobase+EL_RXC);
501 1.3 mycroft outb(iobase+EL_AC, EL_AC_IRQE | EL_AC_RX);
502 1.1 hpeyerl return;
503 1.1 hpeyerl }
504 1.1 hpeyerl
505 1.3 mycroft /* Incoming packet. */
506 1.3 mycroft len = inb(iobase+EL_RBL);
507 1.3 mycroft len |= inb(iobase+EL_RBH) << 8;
508 1.2 cgd dprintf(("receive len=%d rxstat=%x ", len, rxstat));
509 1.3 mycroft outb(iobase+EL_AC, EL_AC_HOST);
510 1.1 hpeyerl
511 1.2 cgd /*
512 1.3 mycroft * If packet too short or too long, restore rx mode and return.
513 1.1 hpeyerl */
514 1.3 mycroft if (len <= sizeof(struct ether_header) ||
515 1.3 mycroft len > ETHER_MAX_LEN) {
516 1.3 mycroft if (sc->sc_arpcom.ac_if.if_flags & IFF_PROMISC)
517 1.3 mycroft outb(iobase+EL_RXC, EL_RXC_AGF | EL_RXC_DSHORT | EL_RXC_DDRIB | EL_RXC_DOFLOW | EL_RXC_PROMISC);
518 1.1 hpeyerl else
519 1.3 mycroft outb(iobase+EL_RXC, EL_RXC_AGF | EL_RXC_DSHORT | EL_RXC_DDRIB | EL_RXC_DOFLOW | EL_RXC_ABROAD);
520 1.3 mycroft (void)inb(iobase+EL_AS);
521 1.3 mycroft outb(iobase+EL_RBC, 0);
522 1.3 mycroft (void)inb(iobase+EL_RXC);
523 1.3 mycroft outb(iobase+EL_AC, EL_AC_IRQE | EL_AC_RX);
524 1.1 hpeyerl return;
525 1.1 hpeyerl }
526 1.1 hpeyerl
527 1.3 mycroft sc->sc_arpcom.ac_if.if_ipackets++;
528 1.1 hpeyerl
529 1.3 mycroft /* Copy the data into our buffer. */
530 1.3 mycroft outb(iobase+EL_GPBL, 0);
531 1.3 mycroft outb(iobase+EL_GPBH, 0);
532 1.3 mycroft insb(iobase+EL_BUF, sc->sc_pktbuf, len);
533 1.3 mycroft outb(iobase+EL_RBC, 0);
534 1.3 mycroft outb(iobase+EL_AC, EL_AC_RX);
535 1.3 mycroft dprintf(("%s-->", ether_sprintf(sc->sc_pktbuf+6)));
536 1.3 mycroft dprintf(("%s\n", ether_sprintf(sc->sc_pktbuf)));
537 1.1 hpeyerl
538 1.3 mycroft /* Pass data up to upper levels. */
539 1.1 hpeyerl len -= sizeof(struct ether_header);
540 1.3 mycroft elread(sc, (caddr_t)sc->sc_pktbuf, len);
541 1.1 hpeyerl
542 1.1 hpeyerl /* Is there another packet? */
543 1.3 mycroft stat = inb(iobase+EL_AS);
544 1.1 hpeyerl
545 1.3 mycroft /* If so, do it all again (i.e. don't set done to 1). */
546 1.3 mycroft if ((stat & EL_AS_RXBUSY) == 0)
547 1.1 hpeyerl dprintf(("<rescan> "));
548 1.1 hpeyerl else
549 1.1 hpeyerl done = 1;
550 1.1 hpeyerl }
551 1.1 hpeyerl
552 1.3 mycroft (void)inb(iobase+EL_RXC);
553 1.3 mycroft outb(iobase+EL_AC, EL_AC_IRQE | EL_AC_RX);
554 1.1 hpeyerl return;
555 1.1 hpeyerl }
556 1.1 hpeyerl
557 1.2 cgd /*
558 1.2 cgd * Pass a packet up to the higher levels. Deal with trailer protocol.
559 1.2 cgd */
560 1.1 hpeyerl static inline void
561 1.2 cgd elread(sc, buf, len)
562 1.2 cgd struct el_softc *sc;
563 1.2 cgd caddr_t buf;
564 1.2 cgd int len;
565 1.1 hpeyerl {
566 1.1 hpeyerl register struct ether_header *eh;
567 1.1 hpeyerl struct mbuf *m;
568 1.1 hpeyerl int off, resid;
569 1.3 mycroft u_short etype;
570 1.1 hpeyerl
571 1.2 cgd /*
572 1.3 mycroft * Deal with trailer protocol: if type is trailer type get true type
573 1.3 mycroft * from first 16-bit word past data. Remember that type was trailer by
574 1.3 mycroft * setting off.
575 1.1 hpeyerl */
576 1.1 hpeyerl eh = (struct ether_header *)buf;
577 1.3 mycroft etype = ntohs(eh->ether_type);
578 1.2 cgd #define eldataaddr(eh, off, type) ((type)(((caddr_t)((eh)+1)+(off))))
579 1.3 mycroft if (etype >= ETHERTYPE_TRAIL &&
580 1.3 mycroft etype < ETHERTYPE_TRAIL+ETHERTYPE_NTRAILER) {
581 1.3 mycroft off = (etype - ETHERTYPE_TRAIL) << 9;
582 1.3 mycroft if ((off + sizeof(struct trailer_header)) > len)
583 1.1 hpeyerl return;
584 1.2 cgd eh->ether_type = *eldataaddr(eh, off, u_short *);
585 1.3 mycroft resid = ntohs(*eldataaddr(eh, off+2, u_short *));
586 1.3 mycroft if ((off + resid) > len)
587 1.1 hpeyerl return;
588 1.1 hpeyerl len = off + resid;
589 1.2 cgd } else
590 1.1 hpeyerl off = 0;
591 1.1 hpeyerl
592 1.2 cgd if (len <= 0)
593 1.1 hpeyerl return;
594 1.1 hpeyerl
595 1.1 hpeyerl #if NBPFILTER > 0
596 1.1 hpeyerl /*
597 1.3 mycroft * Check if there's a bpf filter listening on this interface. If so,
598 1.3 mycroft * hand off the raw packet to bpf, which must deal with trailers in its
599 1.3 mycroft * own way.
600 1.2 cgd *
601 1.3 mycroft * Comparing to if_ed, this code does bpf on trailer packets
602 1.3 mycroft * incorrectly -- the ether type's already been copied over...
603 1.3 mycroft * XXX - cgd
604 1.1 hpeyerl */
605 1.3 mycroft if (sc->sc_bpf) {
606 1.3 mycroft bpf_tap(sc->sc_bpf, buf, len + sizeof(struct ether_header));
607 1.1 hpeyerl
608 1.1 hpeyerl /*
609 1.1 hpeyerl * Note that the interface cannot be in promiscuous mode if
610 1.1 hpeyerl * there are no bpf listeners. And if el are in promiscuous
611 1.1 hpeyerl * mode, el have to check if this packet is really ours.
612 1.1 hpeyerl *
613 1.3 mycroft * XXX This test does not support multicasts.
614 1.1 hpeyerl */
615 1.3 mycroft if ((sc->sc_arpcom.ac_if.if_flags & IFF_PROMISC) &&
616 1.3 mycroft bcmp(eh->ether_dhost, sc->sc_arpcom.ac_enaddr,
617 1.3 mycroft sizeof(eh->ether_dhost)) != 0 &&
618 1.3 mycroft bcmp(eh->ether_dhost, etherbroadcastaddr,
619 1.3 mycroft sizeof(eh->ether_dhost)) != 0)
620 1.1 hpeyerl return;
621 1.1 hpeyerl }
622 1.1 hpeyerl #endif
623 1.1 hpeyerl
624 1.1 hpeyerl /*
625 1.3 mycroft * Pull packet off interface. Off is nonzero if packet has trailing
626 1.3 mycroft * header; neget will then force this header information to be at the
627 1.3 mycroft * front, but we still have to drop the type and length which are at
628 1.3 mycroft * the front of any trailer data.
629 1.1 hpeyerl */
630 1.3 mycroft m = elget(buf, len, off, &sc->sc_arpcom.ac_if);
631 1.3 mycroft if (!m)
632 1.1 hpeyerl return;
633 1.1 hpeyerl
634 1.3 mycroft ether_input(&sc->sc_arpcom.ac_if, eh, m);
635 1.1 hpeyerl }
636 1.1 hpeyerl
637 1.1 hpeyerl /*
638 1.3 mycroft * Pull read data off a interface. Len is length of data, with local net
639 1.3 mycroft * header stripped. Off is non-zero if a trailer protocol was used, and gives
640 1.3 mycroft * the offset of the trailer information. We copy the trailer information and
641 1.3 mycroft * then all the normal data into mbufs. When full cluster sized units are
642 1.3 mycroft * present we copy into clusters.
643 1.1 hpeyerl */
644 1.1 hpeyerl struct mbuf *
645 1.1 hpeyerl elget(buf, totlen, off0, ifp)
646 1.1 hpeyerl caddr_t buf;
647 1.1 hpeyerl int totlen, off0;
648 1.1 hpeyerl struct ifnet *ifp;
649 1.1 hpeyerl {
650 1.1 hpeyerl struct mbuf *top, **mp, *m, *p;
651 1.1 hpeyerl int off = off0, len;
652 1.1 hpeyerl register caddr_t cp = buf;
653 1.1 hpeyerl char *epkt;
654 1.1 hpeyerl
655 1.1 hpeyerl buf += sizeof(struct ether_header);
656 1.1 hpeyerl cp = buf;
657 1.1 hpeyerl epkt = cp + totlen;
658 1.1 hpeyerl
659 1.1 hpeyerl if (off) {
660 1.1 hpeyerl cp += off + 2 * sizeof(u_short);
661 1.1 hpeyerl totlen -= 2 * sizeof(u_short);
662 1.1 hpeyerl }
663 1.1 hpeyerl
664 1.1 hpeyerl MGETHDR(m, M_DONTWAIT, MT_DATA);
665 1.3 mycroft if (!m)
666 1.3 mycroft return 0;
667 1.1 hpeyerl m->m_pkthdr.rcvif = ifp;
668 1.1 hpeyerl m->m_pkthdr.len = totlen;
669 1.1 hpeyerl m->m_len = MHLEN;
670 1.1 hpeyerl top = 0;
671 1.1 hpeyerl mp = ⊤
672 1.1 hpeyerl while (totlen > 0) {
673 1.1 hpeyerl if (top) {
674 1.1 hpeyerl MGET(m, M_DONTWAIT, MT_DATA);
675 1.1 hpeyerl if (m == 0) {
676 1.1 hpeyerl m_freem(top);
677 1.3 mycroft return 0;
678 1.1 hpeyerl }
679 1.1 hpeyerl m->m_len = MLEN;
680 1.1 hpeyerl }
681 1.1 hpeyerl len = min(totlen, epkt - cp);
682 1.1 hpeyerl if (len >= MINCLSIZE) {
683 1.1 hpeyerl MCLGET(m, M_DONTWAIT);
684 1.1 hpeyerl if (m->m_flags & M_EXT)
685 1.1 hpeyerl m->m_len = len = min(len, MCLBYTES);
686 1.1 hpeyerl else
687 1.1 hpeyerl len = m->m_len;
688 1.1 hpeyerl } else {
689 1.1 hpeyerl /*
690 1.1 hpeyerl * Place initial small packet/header at end of mbuf.
691 1.1 hpeyerl */
692 1.1 hpeyerl if (len < m->m_len) {
693 1.1 hpeyerl if (top == 0 && len + max_linkhdr <= m->m_len)
694 1.1 hpeyerl m->m_data += max_linkhdr;
695 1.1 hpeyerl m->m_len = len;
696 1.1 hpeyerl } else
697 1.1 hpeyerl len = m->m_len;
698 1.1 hpeyerl }
699 1.1 hpeyerl bcopy(cp, mtod(m, caddr_t), (unsigned)len);
700 1.1 hpeyerl cp += len;
701 1.1 hpeyerl *mp = m;
702 1.1 hpeyerl mp = &m->m_next;
703 1.1 hpeyerl totlen -= len;
704 1.1 hpeyerl if (cp == epkt)
705 1.1 hpeyerl cp = buf;
706 1.1 hpeyerl }
707 1.3 mycroft return top;
708 1.1 hpeyerl }
709 1.1 hpeyerl
710 1.1 hpeyerl /*
711 1.3 mycroft * Process an ioctl request. This code needs some work - it looks pretty ugly.
712 1.1 hpeyerl */
713 1.1 hpeyerl static int
714 1.1 hpeyerl el_ioctl(ifp, command, data)
715 1.1 hpeyerl register struct ifnet *ifp;
716 1.1 hpeyerl int command;
717 1.1 hpeyerl caddr_t data;
718 1.1 hpeyerl {
719 1.3 mycroft struct el_softc *sc = &el_softc[ifp->if_unit];
720 1.1 hpeyerl register struct ifaddr *ifa = (struct ifaddr *)data;
721 1.1 hpeyerl struct ifreq *ifr = (struct ifreq *)data;
722 1.1 hpeyerl int s, error = 0;
723 1.1 hpeyerl
724 1.1 hpeyerl s = splimp();
725 1.1 hpeyerl
726 1.1 hpeyerl switch (command) {
727 1.1 hpeyerl
728 1.1 hpeyerl case SIOCSIFADDR:
729 1.1 hpeyerl ifp->if_flags |= IFF_UP;
730 1.1 hpeyerl
731 1.1 hpeyerl switch (ifa->ifa_addr->sa_family) {
732 1.1 hpeyerl #ifdef INET
733 1.1 hpeyerl case AF_INET:
734 1.3 mycroft el_init(sc); /* before arpwhohas */
735 1.1 hpeyerl /*
736 1.1 hpeyerl * See if another station has *our* IP address.
737 1.1 hpeyerl * i.e.: There is an address conflict! If a
738 1.1 hpeyerl * conflict exists, a message is sent to the
739 1.1 hpeyerl * console.
740 1.1 hpeyerl */
741 1.3 mycroft sc->sc_arpcom.ac_ipaddr = IA_SIN(ifa)->sin_addr;
742 1.3 mycroft arpwhohas(&sc->sc_arpcom, &IA_SIN(ifa)->sin_addr);
743 1.1 hpeyerl break;
744 1.1 hpeyerl #endif
745 1.1 hpeyerl #ifdef NS
746 1.1 hpeyerl /*
747 1.3 mycroft * XXX - This code is probably wrong.
748 1.1 hpeyerl */
749 1.1 hpeyerl case AF_NS:
750 1.3 mycroft {
751 1.3 mycroft register struct ns_addr *ina = &IA_SNS(ifa)->sns_addr;
752 1.3 mycroft
753 1.3 mycroft if (ns_nullhost(*ina))
754 1.3 mycroft ina->x_host =
755 1.3 mycroft *(union ns_host *)(sc->sc_arpcom.ac_enaddr);
756 1.3 mycroft else {
757 1.3 mycroft /*
758 1.3 mycroft *
759 1.1 hpeyerl */
760 1.3 mycroft bcopy((caddr_t)ina->x_host.c_host,
761 1.3 mycroft (caddr_t)sc->sc_arpcom.ac_enaddr,
762 1.3 mycroft sizeof(sc->sc_arpcom.ac_enaddr));
763 1.1 hpeyerl }
764 1.3 mycroft /* Set new address. */
765 1.3 mycroft el_init(sc);
766 1.3 mycroft break;
767 1.3 mycroft }
768 1.1 hpeyerl #endif
769 1.1 hpeyerl default:
770 1.3 mycroft el_init(sc);
771 1.1 hpeyerl break;
772 1.1 hpeyerl }
773 1.1 hpeyerl break;
774 1.1 hpeyerl
775 1.1 hpeyerl case SIOCSIFFLAGS:
776 1.3 mycroft if ((ifp->if_flags & IFF_UP) == 0 &&
777 1.1 hpeyerl (ifp->if_flags & IFF_RUNNING)) {
778 1.3 mycroft /*
779 1.3 mycroft * If interface is marked down and it is running, then
780 1.3 mycroft * stop it.
781 1.3 mycroft */
782 1.3 mycroft el_stop(sc);
783 1.1 hpeyerl ifp->if_flags &= ~IFF_RUNNING;
784 1.3 mycroft } else if ((ifp->if_flags & IFF_UP) &&
785 1.3 mycroft (ifp->if_flags & IFF_RUNNING) == 0) {
786 1.3 mycroft /*
787 1.3 mycroft * If interface is marked up and it is stopped, then
788 1.3 mycroft * start it.
789 1.3 mycroft */
790 1.3 mycroft el_init(sc);
791 1.1 hpeyerl } else {
792 1.3 mycroft /*
793 1.3 mycroft * Some other important flag might have changed, so
794 1.3 mycroft * reset.
795 1.3 mycroft */
796 1.3 mycroft el_reset(sc);
797 1.1 hpeyerl }
798 1.1 hpeyerl
799 1.1 hpeyerl default:
800 1.1 hpeyerl error = EINVAL;
801 1.1 hpeyerl }
802 1.1 hpeyerl (void) splx(s);
803 1.3 mycroft return error;
804 1.1 hpeyerl }
805 1.1 hpeyerl
806 1.3 mycroft /*
807 1.3 mycroft * Device timeout routine.
808 1.3 mycroft */
809 1.1 hpeyerl static int
810 1.2 cgd el_watchdog(unit)
811 1.2 cgd int unit;
812 1.1 hpeyerl {
813 1.3 mycroft struct el_softc *sc = &el_softc[unit];
814 1.1 hpeyerl
815 1.3 mycroft log(LOG_ERR, "%s: device timeout\n", sc->sc_dev.dv_xname);
816 1.3 mycroft sc->sc_arpcom.ac_if.if_oerrors++;
817 1.1 hpeyerl
818 1.3 mycroft el_reset(sc);
819 1.1 hpeyerl }
820