if_le.c revision 1.9 1 1.9 chopps /* $NetBSD: if_le.c,v 1.9 1994/12/28 09:25:28 chopps Exp $ */
2 1.7 cgd
3 1.1 mw /*
4 1.1 mw * Copyright (c) 1982, 1990 The Regents of the University of California.
5 1.1 mw * All rights reserved.
6 1.1 mw *
7 1.1 mw * Redistribution and use in source and binary forms, with or without
8 1.1 mw * modification, are permitted provided that the following conditions
9 1.1 mw * are met:
10 1.1 mw * 1. Redistributions of source code must retain the above copyright
11 1.1 mw * notice, this list of conditions and the following disclaimer.
12 1.1 mw * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 mw * notice, this list of conditions and the following disclaimer in the
14 1.1 mw * documentation and/or other materials provided with the distribution.
15 1.1 mw * 3. All advertising materials mentioning features or use of this software
16 1.1 mw * must display the following acknowledgement:
17 1.1 mw * This product includes software developed by the University of
18 1.1 mw * California, Berkeley and its contributors.
19 1.1 mw * 4. Neither the name of the University nor the names of its contributors
20 1.1 mw * may be used to endorse or promote products derived from this software
21 1.1 mw * without specific prior written permission.
22 1.1 mw *
23 1.1 mw * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 mw * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 mw * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 mw * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 mw * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 mw * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 mw * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 mw * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 mw * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 mw * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 mw * SUCH DAMAGE.
34 1.1 mw *
35 1.7 cgd * @(#)if_le.c 7.6 (Berkeley) 5/8/91
36 1.1 mw */
37 1.1 mw
38 1.1 mw #include "le.h"
39 1.1 mw #if NLE > 0
40 1.1 mw
41 1.1 mw #include "bpfilter.h"
42 1.1 mw
43 1.1 mw /*
44 1.1 mw * AMD 7990 LANCE
45 1.1 mw *
46 1.1 mw * This driver will generate and accept tailer encapsulated packets even
47 1.1 mw * though it buys us nothing. The motivation was to avoid incompatibilities
48 1.1 mw * with VAXen, SUNs, and others that handle and benefit from them.
49 1.1 mw * This reasoning is dubious.
50 1.1 mw */
51 1.5 chopps #include <sys/param.h>
52 1.5 chopps #include <sys/systm.h>
53 1.5 chopps #include <sys/mbuf.h>
54 1.5 chopps #include <sys/buf.h>
55 1.5 chopps #include <sys/protosw.h>
56 1.5 chopps #include <sys/socket.h>
57 1.5 chopps #include <sys/syslog.h>
58 1.5 chopps #include <sys/ioctl.h>
59 1.5 chopps #include <sys/errno.h>
60 1.6 chopps #include <sys/device.h>
61 1.5 chopps
62 1.5 chopps #include <net/if.h>
63 1.5 chopps #include <net/netisr.h>
64 1.5 chopps #include <net/route.h>
65 1.1 mw
66 1.1 mw #ifdef INET
67 1.5 chopps #include <netinet/in.h>
68 1.5 chopps #include <netinet/in_systm.h>
69 1.5 chopps #include <netinet/in_var.h>
70 1.5 chopps #include <netinet/ip.h>
71 1.5 chopps #include <netinet/if_ether.h>
72 1.1 mw #endif
73 1.1 mw
74 1.1 mw #ifdef NS
75 1.5 chopps #include <netns/ns.h>
76 1.5 chopps #include <netns/ns_if.h>
77 1.1 mw #endif
78 1.1 mw
79 1.5 chopps #include <machine/cpu.h>
80 1.5 chopps #include <machine/mtpr.h>
81 1.6 chopps #include <amiga/amiga/device.h>
82 1.9 chopps #include <amiga/dev/zbusvar.h>
83 1.5 chopps #include <amiga/dev/if_lereg.h>
84 1.1 mw
85 1.1 mw /*
86 1.1 mw * Ethernet software status per interface.
87 1.1 mw *
88 1.1 mw * Each interface is referenced by a network interface structure,
89 1.1 mw * le_if, which the routing code uses to locate the interface.
90 1.1 mw * This structure contains the output queue for the interface, its address, ...
91 1.1 mw */
92 1.1 mw struct le_softc {
93 1.1 mw struct arpcom sc_ac; /* common Ethernet structures */
94 1.1 mw #define sc_if sc_ac.ac_if /* network-visible interface */
95 1.1 mw #define sc_addr sc_ac.ac_enaddr /* hardware Ethernet address */
96 1.1 mw void *sc_base; /* base address of board */
97 1.1 mw struct lereg1 *sc_r1; /* LANCE registers */
98 1.1 mw struct lereg2 *sc_r2; /* dual-port RAM */
99 1.1 mw int sc_rmd; /* predicted next rmd to process */
100 1.9 chopps int sc_tmd; /* next tmd to use */
101 1.9 chopps int sc_no_td; /* number of tmds in use */
102 1.1 mw int sc_runt;
103 1.1 mw int sc_jab;
104 1.1 mw int sc_merr;
105 1.1 mw int sc_babl;
106 1.1 mw int sc_cerr;
107 1.1 mw int sc_miss;
108 1.1 mw int sc_xint;
109 1.1 mw int sc_xown;
110 1.1 mw int sc_uflo;
111 1.1 mw int sc_rxlen;
112 1.1 mw int sc_rxoff;
113 1.1 mw int sc_txoff;
114 1.1 mw int sc_busy;
115 1.1 mw short sc_iflags;
116 1.1 mw #if NBPFILTER > 0
117 1.1 mw caddr_t sc_bpf;
118 1.1 mw #endif
119 1.1 mw } le_softc[NLE];
120 1.1 mw
121 1.6 chopps #if NBPFILTER > 0
122 1.6 chopps #include <net/bpf.h>
123 1.6 chopps #include <net/bpfdesc.h>
124 1.6 chopps #endif
125 1.6 chopps
126 1.6 chopps /* offsets for: ID, REGS, MEM */
127 1.6 chopps int lestd[] = { 0, 0x4000, 0x8000 };
128 1.6 chopps
129 1.6 chopps /* console error messages */
130 1.6 chopps int ledebug = 0;
131 1.6 chopps
132 1.6 chopps int leintr(), lestart(), leioctl(), ether_output();
133 1.6 chopps void leinit();
134 1.6 chopps
135 1.6 chopps struct mbuf *leget();
136 1.6 chopps extern struct ifnet loif;
137 1.6 chopps
138 1.6 chopps void leattach __P((struct device *, struct device *, void *));
139 1.6 chopps int lematch __P((struct device *, struct cfdata *, void *args));
140 1.6 chopps
141 1.6 chopps struct cfdriver lecd = {
142 1.8 chopps NULL, "le", (cfmatch_t)lematch, leattach, DV_IFNET,
143 1.6 chopps sizeof(struct le_softc), NULL, 0};
144 1.6 chopps
145 1.6 chopps int
146 1.6 chopps lematch(pdp, cfp, auxp)
147 1.6 chopps struct device *pdp;
148 1.6 chopps struct cfdata *cfp;
149 1.6 chopps void *auxp;
150 1.6 chopps {
151 1.6 chopps
152 1.9 chopps struct zbus_args *zap;
153 1.6 chopps
154 1.9 chopps zap = (struct zbus_args *)auxp;
155 1.6 chopps
156 1.6 chopps /* Commodore ethernet card */
157 1.6 chopps if ( zap->manid == 514 && zap->prodid == 112)
158 1.6 chopps return(1);
159 1.6 chopps
160 1.6 chopps /* Ameristar ethernet card */
161 1.6 chopps if ( zap->manid == 1053 && zap->prodid == 1)
162 1.6 chopps return(1);
163 1.6 chopps
164 1.6 chopps return (0);
165 1.6 chopps }
166 1.1 mw
167 1.1 mw /*
168 1.1 mw * Interface exists: make available by filling in network interface
169 1.1 mw * record. System will initialize the interface when it is ready
170 1.1 mw * to accept packets.
171 1.1 mw */
172 1.6 chopps void
173 1.6 chopps leattach(pdp, dp, auxp)
174 1.6 chopps struct device *pdp, *dp;
175 1.6 chopps void *auxp;
176 1.1 mw {
177 1.1 mw register struct lereg0 *ler0;
178 1.1 mw register struct lereg2 *ler2;
179 1.9 chopps struct zbus_args *zap;
180 1.1 mw struct lereg2 *lemem = (struct lereg2 *) 0x8000;
181 1.6 chopps struct le_softc *le = &le_softc[dp->dv_unit];
182 1.1 mw struct ifnet *ifp = &le->sc_if;
183 1.1 mw char *cp;
184 1.1 mw int i;
185 1.1 mw unsigned long ser;
186 1.1 mw int s = splhigh ();
187 1.1 mw
188 1.9 chopps zap =(struct zbus_args *)auxp;
189 1.6 chopps
190 1.6 chopps /*
191 1.6 chopps * Make config msgs look nicer.
192 1.6 chopps */
193 1.6 chopps printf("\n");
194 1.6 chopps
195 1.6 chopps ler0 = le->sc_base = zap->va;
196 1.6 chopps le->sc_r1 = (struct lereg1 *)(lestd[1] + (int)zap->va);
197 1.6 chopps ler2 = le->sc_r2 = (struct lereg2 *)(lestd[2] + (int)zap->va);
198 1.6 chopps
199 1.6 chopps /*
200 1.6 chopps * Manufacturer decides the 3 first bytes, i.e. ethernet vendor ID.
201 1.6 chopps */
202 1.6 chopps if ( zap->manid == 514 && zap->prodid == 112) {
203 1.6 chopps /* Commodore 2065 */
204 1.1 mw le->sc_addr[0] = 0x00;
205 1.1 mw le->sc_addr[1] = 0x80;
206 1.1 mw le->sc_addr[2] = 0x10;
207 1.6 chopps }
208 1.6 chopps if ( zap->manid == 1053 && zap->prodid == 1) {
209 1.1 mw le->sc_addr[0] = 0x00;
210 1.1 mw le->sc_addr[1] = 0x00;
211 1.1 mw le->sc_addr[2] = 0x9f;
212 1.6 chopps }
213 1.6 chopps
214 1.6 chopps /*
215 1.6 chopps * Serial number for board is used as host ID.
216 1.6 chopps */
217 1.6 chopps ser = (unsigned long) zap->serno;
218 1.6 chopps
219 1.1 mw le->sc_addr[3] = (ser >> 16) & 0xff;
220 1.1 mw le->sc_addr[4] = (ser >> 8) & 0xff;
221 1.1 mw le->sc_addr[5] = (ser ) & 0xff;
222 1.6 chopps
223 1.9 chopps #ifdef LE_USE_16K
224 1.9 chopps printf("le%d: hardware address %s 16K\n",
225 1.9 chopps #else
226 1.9 chopps printf("le%d: hardware address %s 32K\n",
227 1.9 chopps #endif
228 1.9 chopps dp->dv_unit, ether_sprintf(le->sc_addr));
229 1.1 mw
230 1.1 mw /*
231 1.1 mw * Setup for transmit/receive
232 1.1 mw */
233 1.1 mw ler2->ler2_mode = LE_MODE;
234 1.1 mw ler2->ler2_padr[0] = le->sc_addr[1];
235 1.1 mw ler2->ler2_padr[1] = le->sc_addr[0];
236 1.1 mw ler2->ler2_padr[2] = le->sc_addr[3];
237 1.1 mw ler2->ler2_padr[3] = le->sc_addr[2];
238 1.1 mw ler2->ler2_padr[4] = le->sc_addr[5];
239 1.1 mw ler2->ler2_padr[5] = le->sc_addr[4];
240 1.1 mw ler2->ler2_ladrf0 = 0;
241 1.1 mw ler2->ler2_ladrf1 = 0;
242 1.1 mw ler2->ler2_rlen = LE_RLEN;
243 1.1 mw ler2->ler2_rdra = (int)lemem->ler2_rmd;
244 1.1 mw ler2->ler2_tlen = LE_TLEN;
245 1.1 mw ler2->ler2_tdra = (int)lemem->ler2_tmd;
246 1.6 chopps
247 1.1 mw splx (s);
248 1.1 mw
249 1.6 chopps ifp->if_unit = dp->dv_unit;
250 1.1 mw ifp->if_name = "le";
251 1.1 mw ifp->if_mtu = ETHERMTU;
252 1.1 mw ifp->if_ioctl = leioctl;
253 1.1 mw ifp->if_output = ether_output;
254 1.1 mw ifp->if_start = lestart;
255 1.1 mw ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX;
256 1.6 chopps
257 1.1 mw #if NBPFILTER > 0
258 1.1 mw bpfattach(&le->sc_bpf, ifp, DLT_EN10MB, sizeof(struct ether_header));
259 1.1 mw #endif
260 1.1 mw if_attach(ifp);
261 1.6 chopps ether_ifattach(ifp);
262 1.6 chopps
263 1.6 chopps return;
264 1.1 mw }
265 1.1 mw
266 1.1 mw ledrinit(ler2)
267 1.1 mw register struct lereg2 *ler2;
268 1.1 mw {
269 1.1 mw register struct lereg2 *lemem = (struct lereg2 *) 0x8000;
270 1.1 mw register int i;
271 1.1 mw
272 1.1 mw for (i = 0; i < LERBUF; i++) {
273 1.1 mw ler2->ler2_rmd[i].rmd0 = (int)lemem->ler2_rbuf[i];
274 1.1 mw ler2->ler2_rmd[i].rmd1 = LE_OWN;
275 1.1 mw ler2->ler2_rmd[i].rmd2 = -LEMTU;
276 1.1 mw ler2->ler2_rmd[i].rmd3 = 0;
277 1.1 mw }
278 1.6 chopps
279 1.1 mw for (i = 0; i < LETBUF; i++) {
280 1.1 mw ler2->ler2_tmd[i].tmd0 = (int)lemem->ler2_tbuf[i];
281 1.1 mw ler2->ler2_tmd[i].tmd1 = 0;
282 1.1 mw ler2->ler2_tmd[i].tmd2 = 0;
283 1.1 mw ler2->ler2_tmd[i].tmd3 = 0;
284 1.1 mw }
285 1.1 mw }
286 1.1 mw
287 1.6 chopps void
288 1.1 mw lereset(unit)
289 1.1 mw register int unit;
290 1.1 mw {
291 1.1 mw register struct le_softc *le = &le_softc[unit];
292 1.1 mw register struct lereg1 *ler1 = le->sc_r1;
293 1.6 chopps /*
294 1.6 chopps * This structure is referenced from the CARDS/LANCE point of
295 1.6 chopps * view, thus the 0x8000 address which is the buffer RAM area of
296 1.6 chopps * the Commodore and Ameristar cards. This pointer is manipulated
297 1.6 chopps * with the LANCE's view of memory and NOT the Amiga's. FYI.
298 1.6 chopps */
299 1.1 mw register struct lereg2 *lemem = (struct lereg2 *) 0x8000;
300 1.6 chopps
301 1.1 mw register int timo = 100000;
302 1.1 mw register int stat;
303 1.1 mw
304 1.1 mw #ifdef lint
305 1.1 mw stat = unit;
306 1.1 mw #endif
307 1.1 mw #if NBPFILTER > 0
308 1.1 mw if (le->sc_if.if_flags & IFF_PROMISC)
309 1.1 mw /* set the promiscuous bit */
310 1.1 mw le->sc_r2->ler2_mode = LE_MODE|0x8000;
311 1.1 mw else
312 1.1 mw le->sc_r2->ler2_mode = LE_MODE;
313 1.1 mw #endif
314 1.1 mw ler1->ler1_rap = LE_CSR0;
315 1.1 mw ler1->ler1_rdp = LE_STOP;
316 1.6 chopps
317 1.6 chopps ledrinit(le->sc_r2);
318 1.6 chopps
319 1.9 chopps le->sc_rmd = le->sc_tmd = le->sc_no_td = 0;
320 1.1 mw ler1->ler1_rap = LE_CSR1;
321 1.1 mw ler1->ler1_rdp = (int)&lemem->ler2_mode;
322 1.1 mw ler1->ler1_rap = LE_CSR2;
323 1.1 mw ler1->ler1_rdp = 0;
324 1.1 mw ler1->ler1_rap = LE_CSR0;
325 1.1 mw ler1->ler1_rdp = LE_INIT;
326 1.6 chopps
327 1.1 mw do {
328 1.1 mw if (--timo == 0) {
329 1.1 mw printf("le%d: init timeout, stat = 0x%x\n",
330 1.1 mw unit, stat);
331 1.1 mw break;
332 1.1 mw }
333 1.1 mw stat = ler1->ler1_rdp;
334 1.1 mw } while ((stat & LE_IDON) == 0);
335 1.6 chopps
336 1.1 mw ler1->ler1_rdp = LE_STOP;
337 1.1 mw ler1->ler1_rap = LE_CSR3;
338 1.1 mw ler1->ler1_rdp = LE_BSWP;
339 1.1 mw ler1->ler1_rap = LE_CSR0;
340 1.1 mw ler1->ler1_rdp = LE_STRT | LE_INEA;
341 1.6 chopps le->sc_if.if_flags &= ~IFF_OACTIVE;
342 1.6 chopps
343 1.6 chopps return;
344 1.1 mw }
345 1.1 mw
346 1.1 mw /*
347 1.1 mw * Initialization of interface
348 1.1 mw */
349 1.6 chopps void
350 1.1 mw leinit(unit)
351 1.1 mw int unit;
352 1.1 mw {
353 1.1 mw struct le_softc *le = &le_softc[unit];
354 1.1 mw register struct ifnet *ifp = &le->sc_if;
355 1.1 mw int s;
356 1.1 mw
357 1.1 mw /* not yet, if address still unknown */
358 1.1 mw if (ifp->if_addrlist == (struct ifaddr *)0)
359 1.1 mw return;
360 1.6 chopps
361 1.1 mw if ((ifp->if_flags & IFF_RUNNING) == 0) {
362 1.1 mw s = splimp();
363 1.1 mw ifp->if_flags |= IFF_RUNNING;
364 1.1 mw lereset(unit);
365 1.1 mw (void) lestart(ifp);
366 1.1 mw splx(s);
367 1.1 mw }
368 1.6 chopps
369 1.6 chopps return;
370 1.1 mw }
371 1.1 mw
372 1.9 chopps #define LENEXTTMP \
373 1.9 chopps if (++bix == LETBUF) bix = 0, tmd = le->sc_r2->ler2_tmd; else ++tmd
374 1.9 chopps
375 1.1 mw /*
376 1.1 mw * Start output on interface. Get another datagram to send
377 1.1 mw * off of the interface queue, and copy it to the interface
378 1.1 mw * before starting the output.
379 1.1 mw */
380 1.1 mw lestart(ifp)
381 1.1 mw struct ifnet *ifp;
382 1.1 mw {
383 1.1 mw register struct le_softc *le = &le_softc[ifp->if_unit];
384 1.9 chopps register int bix;
385 1.1 mw register struct letmd *tmd;
386 1.1 mw register struct mbuf *m;
387 1.1 mw int len;
388 1.1 mw
389 1.1 mw if ((le->sc_if.if_flags & IFF_RUNNING) == 0)
390 1.1 mw return (0);
391 1.6 chopps
392 1.9 chopps bix = le->sc_tmd;
393 1.9 chopps tmd = &le->sc_r2->ler2_tmd[bix];
394 1.9 chopps
395 1.9 chopps for (;;) {
396 1.9 chopps if (le->sc_no_td >= LETBUF) {
397 1.9 chopps le->sc_if.if_flags |= IFF_OACTIVE;
398 1.9 chopps break;
399 1.9 chopps }
400 1.9 chopps
401 1.9 chopps IF_DEQUEUE(&le->sc_if.if_snd, m);
402 1.9 chopps if (m == 0)
403 1.9 chopps break;
404 1.9 chopps
405 1.9 chopps ++le->sc_no_td;
406 1.6 chopps
407 1.9 chopps len = leput(le->sc_r2->ler2_tbuf[bix], m);
408 1.6 chopps
409 1.1 mw #if NBPFILTER > 0
410 1.9 chopps /*
411 1.9 chopps * If bpf is listening on this interface, let it
412 1.9 chopps * see the packet before we commit it to the wire.
413 1.9 chopps */
414 1.9 chopps if (le->sc_bpf)
415 1.9 chopps bpf_tap(le->sc_bpf, le->sc_r2->ler2_tbuf[bix], len);
416 1.1 mw #endif
417 1.6 chopps
418 1.9 chopps tmd->tmd3 = 0;
419 1.9 chopps tmd->tmd2 = -len;
420 1.9 chopps tmd->tmd1 = LE_OWN | LE_STP | LE_ENP;
421 1.9 chopps
422 1.9 chopps LENEXTTMP;
423 1.9 chopps }
424 1.9 chopps
425 1.9 chopps le->sc_tmd = bix;
426 1.6 chopps
427 1.1 mw return (0);
428 1.1 mw }
429 1.1 mw
430 1.1 mw leintr(unit)
431 1.1 mw register int unit;
432 1.1 mw {
433 1.1 mw register struct le_softc *le = &le_softc[unit];
434 1.1 mw register struct lereg1 *ler1;
435 1.1 mw register int stat;
436 1.1 mw
437 1.1 mw /* if not even initialized, don't do anything further.. */
438 1.1 mw if (! le->sc_base)
439 1.1 mw return 0;
440 1.1 mw
441 1.1 mw ler1 = le->sc_r1;
442 1.1 mw stat = ler1->ler1_rdp;
443 1.1 mw
444 1.1 mw if (! (stat & LE_INTR))
445 1.1 mw return 0;
446 1.1 mw
447 1.1 mw if (stat & LE_SERR) {
448 1.1 mw leerror(unit, stat);
449 1.1 mw if (stat & LE_MERR) {
450 1.1 mw le->sc_merr++;
451 1.1 mw lereset(unit);
452 1.1 mw return(1);
453 1.1 mw }
454 1.1 mw if (stat & LE_BABL)
455 1.1 mw le->sc_babl++;
456 1.1 mw if (stat & LE_CERR)
457 1.1 mw le->sc_cerr++;
458 1.1 mw if (stat & LE_MISS)
459 1.1 mw le->sc_miss++;
460 1.1 mw ler1->ler1_rdp = LE_BABL|LE_CERR|LE_MISS|LE_INEA;
461 1.1 mw }
462 1.1 mw if ((stat & LE_RXON) == 0) {
463 1.1 mw le->sc_rxoff++;
464 1.1 mw lereset(unit);
465 1.1 mw return(1);
466 1.1 mw }
467 1.1 mw if ((stat & LE_TXON) == 0) {
468 1.1 mw le->sc_txoff++;
469 1.1 mw lereset(unit);
470 1.1 mw return(1);
471 1.1 mw }
472 1.1 mw if (stat & LE_RINT) {
473 1.1 mw /* interrupt is cleared in lerint */
474 1.1 mw lerint(unit);
475 1.1 mw }
476 1.1 mw if (stat & LE_TINT) {
477 1.1 mw ler1->ler1_rdp = LE_TINT|LE_INEA;
478 1.1 mw lexint(unit);
479 1.1 mw }
480 1.1 mw return(1);
481 1.1 mw }
482 1.1 mw
483 1.1 mw /*
484 1.1 mw * Ethernet interface transmitter interrupt.
485 1.1 mw * Start another output if more data to send.
486 1.1 mw */
487 1.1 mw lexint(unit)
488 1.1 mw register int unit;
489 1.1 mw {
490 1.1 mw register struct le_softc *le = &le_softc[unit];
491 1.9 chopps register int bix = (le->sc_tmd - le->sc_no_td + LETBUF) % LETBUF;
492 1.9 chopps register struct letmd *tmd = &le->sc_r2->ler2_tmd[bix];
493 1.1 mw
494 1.1 mw if ((le->sc_if.if_flags & IFF_OACTIVE) == 0) {
495 1.1 mw le->sc_xint++;
496 1.1 mw return;
497 1.1 mw }
498 1.1 mw if (tmd->tmd1 & LE_OWN) {
499 1.9 chopps printf("le%d: extra xint\n", unit);
500 1.1 mw le->sc_xown++;
501 1.1 mw return;
502 1.1 mw }
503 1.9 chopps le->sc_if.if_flags &= ~IFF_OACTIVE;
504 1.9 chopps
505 1.9 chopps do {
506 1.9 chopps if (le->sc_no_td <= 0)
507 1.9 chopps break;
508 1.9 chopps --le->sc_no_td;
509 1.9 chopps
510 1.9 chopps if (tmd->tmd1 & LE_ERR) {
511 1.1 mw err:
512 1.9 chopps printf("le%d: xint error\n", unit);
513 1.9 chopps lexerror(unit);
514 1.9 chopps le->sc_if.if_oerrors++;
515 1.9 chopps if (tmd->tmd3 & (LE_TBUFF|LE_UFLO)) {
516 1.9 chopps le->sc_uflo++;
517 1.9 chopps lereset(unit);
518 1.9 chopps return;
519 1.9 chopps }
520 1.9 chopps else if (tmd->tmd3 & LE_LCOL)
521 1.9 chopps le->sc_if.if_collisions++;
522 1.9 chopps else if (tmd->tmd3 & LE_RTRY)
523 1.9 chopps le->sc_if.if_collisions += 16;
524 1.1 mw }
525 1.9 chopps else if (tmd->tmd3 & LE_TBUFF)
526 1.9 chopps /* XXX documentation says BUFF not included in ERR */
527 1.9 chopps goto err;
528 1.9 chopps else if (tmd->tmd1 & LE_ONE)
529 1.1 mw le->sc_if.if_collisions++;
530 1.9 chopps else if (tmd->tmd1 & LE_MORE)
531 1.9 chopps /* what is the real number? */
532 1.9 chopps le->sc_if.if_collisions += 2;
533 1.9 chopps else
534 1.9 chopps le->sc_if.if_opackets++;
535 1.9 chopps LENEXTTMP;
536 1.9 chopps } while ((tmd->tmd1 & LE_OWN) == 0);
537 1.6 chopps
538 1.1 mw (void) lestart(&le->sc_if);
539 1.1 mw }
540 1.1 mw
541 1.1 mw #define LENEXTRMP \
542 1.1 mw if (++bix == LERBUF) bix = 0, rmd = le->sc_r2->ler2_rmd; else ++rmd
543 1.1 mw
544 1.1 mw /*
545 1.1 mw * Ethernet interface receiver interrupt.
546 1.1 mw * If input error just drop packet.
547 1.1 mw * Decapsulate packet based on type and pass to type specific
548 1.1 mw * higher-level input routine.
549 1.1 mw */
550 1.1 mw lerint(unit)
551 1.1 mw int unit;
552 1.1 mw {
553 1.1 mw register struct le_softc *le = &le_softc[unit];
554 1.1 mw register int bix = le->sc_rmd;
555 1.1 mw register struct lermd *rmd = &le->sc_r2->ler2_rmd[bix];
556 1.1 mw
557 1.1 mw /*
558 1.1 mw * Out of sync with hardware, should never happen?
559 1.1 mw */
560 1.1 mw if (rmd->rmd1 & LE_OWN) {
561 1.1 mw le->sc_r1->ler1_rdp = LE_RINT|LE_INEA;
562 1.1 mw return;
563 1.1 mw }
564 1.1 mw
565 1.1 mw /*
566 1.1 mw * Process all buffers with valid data
567 1.1 mw */
568 1.1 mw while ((rmd->rmd1 & LE_OWN) == 0) {
569 1.1 mw int len = rmd->rmd3;
570 1.1 mw
571 1.1 mw /* Clear interrupt to avoid race condition */
572 1.1 mw le->sc_r1->ler1_rdp = LE_RINT|LE_INEA;
573 1.1 mw
574 1.1 mw if (rmd->rmd1 & LE_ERR) {
575 1.1 mw le->sc_rmd = bix;
576 1.1 mw lererror(unit, "bad packet");
577 1.1 mw le->sc_if.if_ierrors++;
578 1.1 mw } else if ((rmd->rmd1 & (LE_STP|LE_ENP)) != (LE_STP|LE_ENP)) {
579 1.1 mw /*
580 1.1 mw * Find the end of the packet so we can see how long
581 1.1 mw * it was. We still throw it away.
582 1.1 mw */
583 1.1 mw do {
584 1.1 mw le->sc_r1->ler1_rdp = LE_RINT|LE_INEA;
585 1.1 mw rmd->rmd3 = 0;
586 1.1 mw rmd->rmd1 = LE_OWN;
587 1.1 mw LENEXTRMP;
588 1.1 mw } while (!(rmd->rmd1 & (LE_OWN|LE_ERR|LE_STP|LE_ENP)));
589 1.6 chopps
590 1.1 mw le->sc_rmd = bix;
591 1.1 mw lererror(unit, "chained buffer");
592 1.1 mw le->sc_rxlen++;
593 1.6 chopps
594 1.1 mw /*
595 1.1 mw * If search terminated without successful completion
596 1.1 mw * we reset the hardware (conservative).
597 1.1 mw */
598 1.6 chopps if ((rmd->rmd1 & (LE_OWN|LE_ERR|LE_STP|LE_ENP)) != LE_ENP) {
599 1.1 mw lereset(unit);
600 1.1 mw return;
601 1.1 mw }
602 1.1 mw } else
603 1.1 mw leread(unit, le->sc_r2->ler2_rbuf[bix], len);
604 1.6 chopps
605 1.1 mw rmd->rmd3 = 0;
606 1.1 mw rmd->rmd1 = LE_OWN;
607 1.1 mw LENEXTRMP;
608 1.6 chopps
609 1.1 mw }
610 1.6 chopps
611 1.1 mw le->sc_rmd = bix;
612 1.1 mw }
613 1.1 mw
614 1.1 mw leread(unit, buf, len)
615 1.1 mw int unit;
616 1.1 mw char *buf;
617 1.1 mw int len;
618 1.1 mw {
619 1.1 mw register struct le_softc *le = &le_softc[unit];
620 1.1 mw register struct ether_header *et;
621 1.1 mw struct mbuf *m;
622 1.1 mw int off, resid;
623 1.1 mw
624 1.1 mw le->sc_if.if_ipackets++;
625 1.6 chopps
626 1.1 mw et = (struct ether_header *)buf;
627 1.1 mw et->ether_type = ntohs((u_short)et->ether_type);
628 1.6 chopps
629 1.1 mw /* adjust input length to account for header and CRC */
630 1.1 mw len = len - sizeof(struct ether_header) - 4;
631 1.1 mw
632 1.1 mw #define ledataaddr(et, off, type) ((type)(((caddr_t)((et)+1)+(off))))
633 1.1 mw if (et->ether_type >= ETHERTYPE_TRAIL &&
634 1.1 mw et->ether_type < ETHERTYPE_TRAIL+ETHERTYPE_NTRAILER) {
635 1.1 mw off = (et->ether_type - ETHERTYPE_TRAIL) * 512;
636 1.1 mw if (off >= ETHERMTU)
637 1.1 mw return; /* sanity */
638 1.1 mw et->ether_type = ntohs(*ledataaddr(et, off, u_short *));
639 1.1 mw resid = ntohs(*(ledataaddr(et, off+2, u_short *)));
640 1.1 mw if (off + resid > len)
641 1.1 mw return; /* sanity */
642 1.1 mw len = off + resid;
643 1.1 mw } else
644 1.1 mw off = 0;
645 1.1 mw
646 1.1 mw if (len <= 0) {
647 1.1 mw if (ledebug)
648 1.1 mw log(LOG_WARNING,
649 1.1 mw "le%d: ierror(runt packet): from %s: len=%d\n",
650 1.1 mw unit, ether_sprintf(et->ether_shost), len);
651 1.1 mw le->sc_runt++;
652 1.1 mw le->sc_if.if_ierrors++;
653 1.1 mw return;
654 1.1 mw }
655 1.1 mw #if NBPFILTER > 0
656 1.1 mw /*
657 1.1 mw * Check if there's a bpf filter listening on this interface.
658 1.1 mw * If so, hand off the raw packet to bpf, which must deal with
659 1.1 mw * trailers in its own way.
660 1.1 mw */
661 1.1 mw if (le->sc_bpf) {
662 1.1 mw bpf_tap(le->sc_bpf, buf, len + sizeof(struct ether_header));
663 1.1 mw
664 1.1 mw /*
665 1.1 mw * Note that the interface cannot be in promiscuous mode if
666 1.1 mw * there are no bpf listeners. And if we are in promiscuous
667 1.1 mw * mode, we have to check if this packet is really ours.
668 1.1 mw *
669 1.1 mw * XXX This test does not support multicasts.
670 1.1 mw */
671 1.1 mw if ((le->sc_if.if_flags & IFF_PROMISC)
672 1.1 mw && bcmp(et->ether_dhost, le->sc_addr,
673 1.1 mw sizeof(et->ether_dhost)) != 0
674 1.1 mw && bcmp(et->ether_dhost, etherbroadcastaddr,
675 1.1 mw sizeof(et->ether_dhost)) != 0)
676 1.1 mw return;
677 1.1 mw }
678 1.1 mw #endif
679 1.1 mw /*
680 1.1 mw * Pull packet off interface. Off is nonzero if packet
681 1.1 mw * has trailing header; leget will then force this header
682 1.1 mw * information to be at the front, but we still have to drop
683 1.1 mw * the type and length which are at the front of any trailer data.
684 1.1 mw */
685 1.1 mw m = leget(buf, len, off, &le->sc_if);
686 1.1 mw if (m == 0)
687 1.1 mw return;
688 1.1 mw
689 1.1 mw ether_input(&le->sc_if, et, m);
690 1.1 mw }
691 1.1 mw
692 1.1 mw /*
693 1.1 mw * Routine to copy from mbuf chain to transmit
694 1.1 mw * buffer in board local memory.
695 1.1 mw */
696 1.1 mw leput(lebuf, m)
697 1.1 mw register char *lebuf;
698 1.1 mw register struct mbuf *m;
699 1.1 mw {
700 1.1 mw register struct mbuf *mp;
701 1.1 mw register int len, tlen = 0;
702 1.1 mw
703 1.1 mw for (mp = m; mp; mp = mp->m_next) {
704 1.1 mw len = mp->m_len;
705 1.1 mw if (len == 0)
706 1.1 mw continue;
707 1.1 mw tlen += len;
708 1.1 mw bcopy(mtod(mp, char *), lebuf, len);
709 1.1 mw lebuf += len;
710 1.1 mw }
711 1.6 chopps
712 1.1 mw m_freem(m);
713 1.6 chopps
714 1.1 mw if (tlen < LEMINSIZE) {
715 1.1 mw bzero(lebuf, LEMINSIZE - tlen);
716 1.1 mw tlen = LEMINSIZE;
717 1.1 mw }
718 1.6 chopps
719 1.1 mw return(tlen);
720 1.1 mw }
721 1.1 mw
722 1.1 mw /*
723 1.1 mw * Routine to copy from board local memory into mbufs.
724 1.1 mw */
725 1.1 mw struct mbuf *
726 1.1 mw leget(lebuf, totlen, off0, ifp)
727 1.1 mw char *lebuf;
728 1.1 mw int totlen, off0;
729 1.1 mw struct ifnet *ifp;
730 1.1 mw {
731 1.1 mw register struct mbuf *m;
732 1.1 mw struct mbuf *top = 0, **mp = ⊤
733 1.1 mw register int off = off0, len;
734 1.1 mw register char *cp;
735 1.1 mw char *epkt;
736 1.1 mw
737 1.1 mw lebuf += sizeof (struct ether_header);
738 1.1 mw cp = lebuf;
739 1.1 mw epkt = cp + totlen;
740 1.1 mw if (off) {
741 1.1 mw cp += off + 2 * sizeof(u_short);
742 1.1 mw totlen -= 2 * sizeof(u_short);
743 1.1 mw }
744 1.1 mw
745 1.1 mw MGETHDR(m, M_DONTWAIT, MT_DATA);
746 1.6 chopps
747 1.1 mw if (m == 0)
748 1.1 mw return (0);
749 1.6 chopps
750 1.1 mw m->m_pkthdr.rcvif = ifp;
751 1.1 mw m->m_pkthdr.len = totlen;
752 1.1 mw m->m_len = MHLEN;
753 1.1 mw
754 1.1 mw while (totlen > 0) {
755 1.6 chopps
756 1.1 mw if (top) {
757 1.1 mw MGET(m, M_DONTWAIT, MT_DATA);
758 1.1 mw if (m == 0) {
759 1.1 mw m_freem(top);
760 1.1 mw return (0);
761 1.1 mw }
762 1.1 mw m->m_len = MLEN;
763 1.1 mw }
764 1.6 chopps
765 1.1 mw len = min(totlen, epkt - cp);
766 1.1 mw if (len >= MINCLSIZE) {
767 1.1 mw MCLGET(m, M_DONTWAIT);
768 1.1 mw if (m->m_flags & M_EXT)
769 1.1 mw m->m_len = len = min(len, MCLBYTES);
770 1.1 mw else
771 1.1 mw len = m->m_len;
772 1.1 mw } else {
773 1.1 mw /*
774 1.1 mw * Place initial small packet/header at end of mbuf.
775 1.1 mw */
776 1.1 mw if (len < m->m_len) {
777 1.1 mw if (top == 0 && len + max_linkhdr <= m->m_len)
778 1.1 mw m->m_data += max_linkhdr;
779 1.1 mw m->m_len = len;
780 1.1 mw } else
781 1.1 mw len = m->m_len;
782 1.1 mw }
783 1.6 chopps
784 1.1 mw bcopy(cp, mtod(m, caddr_t), (unsigned)len);
785 1.1 mw cp += len;
786 1.1 mw *mp = m;
787 1.1 mw mp = &m->m_next;
788 1.1 mw totlen -= len;
789 1.6 chopps
790 1.1 mw if (cp == epkt)
791 1.1 mw cp = lebuf;
792 1.6 chopps
793 1.1 mw }
794 1.6 chopps
795 1.1 mw return (top);
796 1.1 mw }
797 1.1 mw
798 1.1 mw /*
799 1.1 mw * Process an ioctl request.
800 1.1 mw */
801 1.1 mw leioctl(ifp, cmd, data)
802 1.1 mw register struct ifnet *ifp;
803 1.8 chopps u_long cmd;
804 1.1 mw caddr_t data;
805 1.1 mw {
806 1.1 mw register struct ifaddr *ifa = (struct ifaddr *)data;
807 1.1 mw struct le_softc *le = &le_softc[ifp->if_unit];
808 1.1 mw struct lereg1 *ler1 = le->sc_r1;
809 1.1 mw int s = splimp(), error = 0;
810 1.1 mw
811 1.1 mw switch (cmd) {
812 1.1 mw
813 1.1 mw case SIOCSIFADDR:
814 1.1 mw ifp->if_flags |= IFF_UP;
815 1.1 mw switch (ifa->ifa_addr->sa_family) {
816 1.1 mw #ifdef INET
817 1.1 mw case AF_INET:
818 1.1 mw leinit(ifp->if_unit); /* before arpwhohas */
819 1.1 mw ((struct arpcom *)ifp)->ac_ipaddr =
820 1.1 mw IA_SIN(ifa)->sin_addr;
821 1.1 mw arpwhohas((struct arpcom *)ifp, &IA_SIN(ifa)->sin_addr);
822 1.1 mw break;
823 1.1 mw #endif
824 1.1 mw #ifdef NS
825 1.1 mw case AF_NS:
826 1.1 mw {
827 1.1 mw register struct ns_addr *ina = &(IA_SNS(ifa)->sns_addr);
828 1.1 mw
829 1.1 mw if (ns_nullhost(*ina))
830 1.1 mw ina->x_host = *(union ns_host *)(le->sc_addr);
831 1.1 mw else {
832 1.1 mw /*
833 1.1 mw * The manual says we can't change the address
834 1.1 mw * while the receiver is armed,
835 1.1 mw * so reset everything
836 1.1 mw */
837 1.1 mw ifp->if_flags &= ~IFF_RUNNING;
838 1.1 mw bcopy((caddr_t)ina->x_host.c_host,
839 1.1 mw (caddr_t)le->sc_addr, sizeof(le->sc_addr));
840 1.1 mw }
841 1.1 mw leinit(ifp->if_unit); /* does le_setaddr() */
842 1.1 mw break;
843 1.1 mw }
844 1.1 mw #endif
845 1.1 mw default:
846 1.1 mw leinit(ifp->if_unit);
847 1.1 mw break;
848 1.1 mw }
849 1.1 mw break;
850 1.1 mw
851 1.1 mw case SIOCSIFFLAGS:
852 1.1 mw if ((ifp->if_flags & IFF_UP) == 0 &&
853 1.1 mw ifp->if_flags & IFF_RUNNING) {
854 1.1 mw ler1->ler1_rdp = LE_STOP;
855 1.1 mw ifp->if_flags &= ~IFF_RUNNING;
856 1.6 chopps } else if (ifp->if_flags & IFF_UP && (ifp->if_flags & IFF_RUNNING) == 0)
857 1.1 mw leinit(ifp->if_unit);
858 1.6 chopps
859 1.1 mw /*
860 1.1 mw * If the state of the promiscuous bit changes, the interface
861 1.1 mw * must be reset to effect the change.
862 1.1 mw */
863 1.6 chopps if (((ifp->if_flags ^ le->sc_iflags) & IFF_PROMISC) && (ifp->if_flags & IFF_RUNNING)) {
864 1.1 mw le->sc_iflags = ifp->if_flags;
865 1.1 mw lereset(ifp->if_unit);
866 1.6 chopps (void)lestart(ifp);
867 1.1 mw }
868 1.1 mw break;
869 1.1 mw
870 1.1 mw default:
871 1.1 mw error = EINVAL;
872 1.1 mw }
873 1.6 chopps
874 1.1 mw splx(s);
875 1.1 mw return (error);
876 1.1 mw }
877 1.1 mw
878 1.1 mw leerror(unit, stat)
879 1.1 mw int unit;
880 1.1 mw int stat;
881 1.1 mw {
882 1.1 mw if (!ledebug)
883 1.1 mw return;
884 1.1 mw
885 1.1 mw /*
886 1.1 mw * Not all transceivers implement heartbeat
887 1.1 mw * so we only log CERR once.
888 1.1 mw */
889 1.1 mw if ((stat & LE_CERR) && le_softc[unit].sc_cerr)
890 1.1 mw return;
891 1.6 chopps
892 1.1 mw log(LOG_WARNING,
893 1.1 mw "le%d: error: stat=%b\n", unit,
894 1.1 mw stat,
895 1.1 mw "\20\20ERR\17BABL\16CERR\15MISS\14MERR\13RINT\12TINT\11IDON\10INTR\07INEA\06RXON\05TXON\04TDMD\03STOP\02STRT\01INIT");
896 1.1 mw }
897 1.1 mw
898 1.1 mw lererror(unit, msg)
899 1.1 mw int unit;
900 1.1 mw char *msg;
901 1.1 mw {
902 1.1 mw register struct le_softc *le = &le_softc[unit];
903 1.1 mw register struct lermd *rmd;
904 1.1 mw int len;
905 1.1 mw
906 1.1 mw if (!ledebug)
907 1.1 mw return;
908 1.1 mw
909 1.1 mw rmd = &le->sc_r2->ler2_rmd[le->sc_rmd];
910 1.1 mw len = rmd->rmd3;
911 1.6 chopps
912 1.1 mw log(LOG_WARNING,
913 1.1 mw "le%d: ierror(%s): from %s: buf=%d, len=%d, rmd1=%b\n",
914 1.1 mw unit, msg,
915 1.1 mw len > 11 ? ether_sprintf(&le->sc_r2->ler2_rbuf[le->sc_rmd][6]) : "unknown",
916 1.1 mw le->sc_rmd, len,
917 1.1 mw rmd->rmd1,
918 1.1 mw "\20\20OWN\17ERR\16FRAM\15OFLO\14CRC\13RBUF\12STP\11ENP");
919 1.1 mw }
920 1.1 mw
921 1.1 mw lexerror(unit)
922 1.1 mw int unit;
923 1.1 mw {
924 1.1 mw register struct le_softc *le = &le_softc[unit];
925 1.9 chopps int bix;
926 1.1 mw register struct letmd *tmd;
927 1.1 mw int len;
928 1.1 mw
929 1.1 mw if (!ledebug)
930 1.1 mw return;
931 1.1 mw
932 1.9 chopps bix = (le->sc_tmd - le->sc_no_td + LETBUF) % LETBUF;
933 1.9 chopps tmd = &le->sc_r2->ler2_tmd[bix];
934 1.1 mw len = -tmd->tmd2;
935 1.6 chopps
936 1.1 mw log(LOG_WARNING,
937 1.1 mw "le%d: oerror: to %s: buf=%d, len=%d, tmd1=%b, tmd3=%b\n",
938 1.1 mw unit,
939 1.1 mw len > 5 ? ether_sprintf(&le->sc_r2->ler2_tbuf[0][0]) : "unknown",
940 1.1 mw 0, len,
941 1.1 mw tmd->tmd1,
942 1.1 mw "\20\20OWN\17ERR\16RES\15MORE\14ONE\13DEF\12STP\11ENP",
943 1.1 mw tmd->tmd3,
944 1.1 mw "\20\20BUFF\17UFLO\16RES\15LCOL\14LCAR\13RTRY");
945 1.1 mw }
946 1.6 chopps
947 1.1 mw #endif
948 1.6 chopps
949 1.6 chopps
950