if_sn.c revision 1.35 1 1.35 thorpej /* $NetBSD: if_sn.c,v 1.35 2004/10/30 18:08:34 thorpej Exp $ */
2 1.1 briggs
3 1.1 briggs /*
4 1.15 scottr * National Semiconductor DP8393X SONIC Driver
5 1.1 briggs * Copyright (c) 1991 Algorithmics Ltd (http://www.algor.co.uk)
6 1.1 briggs * You may use, copy, and modify this program so long as you retain the
7 1.1 briggs * copyright line.
8 1.1 briggs *
9 1.1 briggs * This driver has been substantially modified since Algorithmics donated
10 1.1 briggs * it.
11 1.3 briggs *
12 1.5 briggs * Denton Gentry <denny1 (at) home.com>
13 1.3 briggs * and also
14 1.6 briggs * Yanagisawa Takeshi <yanagisw (at) aa.ap.titech.ac.jp>
15 1.3 briggs * did the work to get this running on the Macintosh.
16 1.1 briggs */
17 1.34 lukem
18 1.34 lukem #include <sys/cdefs.h>
19 1.35 thorpej __KERNEL_RCSID(0, "$NetBSD: if_sn.c,v 1.35 2004/10/30 18:08:34 thorpej Exp $");
20 1.19 jonathan
21 1.19 jonathan #include "opt_inet.h"
22 1.1 briggs
23 1.1 briggs #include <sys/param.h>
24 1.1 briggs #include <sys/systm.h>
25 1.1 briggs #include <sys/mbuf.h>
26 1.1 briggs #include <sys/buf.h>
27 1.1 briggs #include <sys/protosw.h>
28 1.1 briggs #include <sys/socket.h>
29 1.1 briggs #include <sys/syslog.h>
30 1.1 briggs #include <sys/ioctl.h>
31 1.1 briggs #include <sys/errno.h>
32 1.1 briggs #include <sys/device.h>
33 1.1 briggs
34 1.33 thorpej #include <uvm/uvm_extern.h>
35 1.33 thorpej
36 1.1 briggs #include <net/if.h>
37 1.8 briggs #include <net/if_dl.h>
38 1.2 is #include <net/if_ether.h>
39 1.1 briggs
40 1.1 briggs #ifdef INET
41 1.1 briggs #include <netinet/in.h>
42 1.1 briggs #include <netinet/in_systm.h>
43 1.1 briggs #include <netinet/in_var.h>
44 1.1 briggs #include <netinet/ip.h>
45 1.2 is #include <netinet/if_inarp.h>
46 1.1 briggs #endif
47 1.1 briggs
48 1.26 mrg #include <uvm/uvm_extern.h>
49 1.1 briggs
50 1.1 briggs #include "bpfilter.h"
51 1.1 briggs #if NBPFILTER > 0
52 1.1 briggs #include <net/bpf.h>
53 1.1 briggs #include <net/bpfdesc.h>
54 1.1 briggs #endif
55 1.1 briggs
56 1.1 briggs #include <machine/bus.h>
57 1.1 briggs #include <machine/cpu.h>
58 1.1 briggs #include <machine/viareg.h>
59 1.1 briggs #include <mac68k/dev/if_snreg.h>
60 1.1 briggs #include <mac68k/dev/if_snvar.h>
61 1.1 briggs
62 1.12 scottr static void snwatchdog __P((struct ifnet *));
63 1.12 scottr static int sninit __P((struct sn_softc *sc));
64 1.12 scottr static int snstop __P((struct sn_softc *sc));
65 1.12 scottr static int snioctl __P((struct ifnet *ifp, u_long cmd, caddr_t data));
66 1.12 scottr static void snstart __P((struct ifnet *ifp));
67 1.12 scottr static void snreset __P((struct sn_softc *sc));
68 1.12 scottr
69 1.12 scottr static void caminitialise __P((struct sn_softc *));
70 1.12 scottr static void camentry __P((struct sn_softc *, int, u_char *ea));
71 1.12 scottr static void camprogram __P((struct sn_softc *));
72 1.12 scottr static void initialise_tda __P((struct sn_softc *));
73 1.12 scottr static void initialise_rda __P((struct sn_softc *));
74 1.12 scottr static void initialise_rra __P((struct sn_softc *));
75 1.15 scottr #ifdef SNDEBUG
76 1.12 scottr static void camdump __P((struct sn_softc *sc));
77 1.12 scottr #endif
78 1.12 scottr
79 1.12 scottr static void sonictxint __P((struct sn_softc *));
80 1.12 scottr static void sonicrxint __P((struct sn_softc *));
81 1.1 briggs
82 1.15 scottr static __inline__ u_int sonicput __P((struct sn_softc *sc, struct mbuf *m0,
83 1.15 scottr int mtd_next));
84 1.12 scottr static __inline__ int sonic_read __P((struct sn_softc *, caddr_t, int));
85 1.21 thorpej static __inline__ struct mbuf *sonic_get __P((struct sn_softc *, caddr_t, int));
86 1.1 briggs
87 1.1 briggs #undef assert
88 1.1 briggs #undef _assert
89 1.1 briggs
90 1.1 briggs #ifdef NDEBUG
91 1.1 briggs #define assert(e) ((void)0)
92 1.1 briggs #define _assert(e) ((void)0)
93 1.1 briggs #else
94 1.1 briggs #define _assert(e) assert(e)
95 1.1 briggs #ifdef __STDC__
96 1.1 briggs #define assert(e) ((e) ? (void)0 : __assert("sn ", __FILE__, __LINE__, #e))
97 1.1 briggs #else /* PCC */
98 1.1 briggs #define assert(e) ((e) ? (void)0 : __assert("sn "__FILE__, __LINE__, "e"))
99 1.1 briggs #endif
100 1.1 briggs #endif
101 1.1 briggs
102 1.12 scottr int sndebug = 0;
103 1.1 briggs
104 1.1 briggs /*
105 1.1 briggs * SONIC buffers need to be aligned 16 or 32 bit aligned.
106 1.1 briggs * These macros calculate and verify alignment.
107 1.1 briggs */
108 1.1 briggs #define ROUNDUP(p, N) (((int) p + N - 1) & ~(N - 1))
109 1.1 briggs
110 1.1 briggs #define SOALIGN(m, array) (m ? (ROUNDUP(array, 4)) : (ROUNDUP(array, 2)))
111 1.1 briggs
112 1.1 briggs #define LOWER(x) ((unsigned)(x) & 0xffff)
113 1.1 briggs #define UPPER(x) ((unsigned)(x) >> 16)
114 1.1 briggs
115 1.1 briggs /*
116 1.1 briggs * Interface exists: make available by filling in network interface
117 1.1 briggs * record. System will initialize the interface when it is ready
118 1.1 briggs * to accept packets.
119 1.1 briggs */
120 1.8 briggs int
121 1.2 is snsetup(sc, lladdr)
122 1.1 briggs struct sn_softc *sc;
123 1.2 is u_int8_t *lladdr;
124 1.1 briggs {
125 1.12 scottr struct ifnet *ifp = &sc->sc_if;
126 1.12 scottr u_char *p;
127 1.12 scottr u_char *pp;
128 1.12 scottr int i;
129 1.15 scottr int offset;
130 1.6 briggs
131 1.7 scottr /*
132 1.8 briggs * XXX if_sn.c is intended to be MI. Should it allocate memory
133 1.8 briggs * for its descriptor areas, or expect the MD attach code
134 1.8 briggs * to do that?
135 1.7 scottr */
136 1.33 thorpej sc->space = malloc((SN_NPAGES + 1) * PAGE_SIZE, M_DEVBUF, M_WAITOK);
137 1.8 briggs if (sc->space == NULL) {
138 1.8 briggs printf ("%s: memory allocation for descriptors failed\n",
139 1.15 scottr sc->sc_dev.dv_xname);
140 1.8 briggs return (1);
141 1.8 briggs }
142 1.1 briggs
143 1.7 scottr /*
144 1.8 briggs * Put the pup in reset mode (sninit() will fix it later),
145 1.8 briggs * stop the timer, disable all interrupts and clear any interrupts.
146 1.7 scottr */
147 1.9 briggs NIC_PUT(sc, SNR_CR, CR_STP);
148 1.9 briggs wbflush();
149 1.8 briggs NIC_PUT(sc, SNR_CR, CR_RST);
150 1.8 briggs wbflush();
151 1.8 briggs NIC_PUT(sc, SNR_IMR, 0);
152 1.1 briggs wbflush();
153 1.8 briggs NIC_PUT(sc, SNR_ISR, ISR_ALL);
154 1.1 briggs wbflush();
155 1.1 briggs
156 1.7 scottr /*
157 1.7 scottr * because the SONIC is basically 16bit device it 'concatenates'
158 1.7 scottr * a higher buffer address to a 16 bit offset--this will cause wrap
159 1.7 scottr * around problems near the end of 64k !!
160 1.7 scottr */
161 1.8 briggs p = sc->space;
162 1.33 thorpej pp = (u_char *)ROUNDUP ((int)p, PAGE_SIZE);
163 1.1 briggs p = pp;
164 1.1 briggs
165 1.8 briggs /*
166 1.8 briggs * Disable caching on the SONIC's data space.
167 1.8 briggs * The pages might not be physically contiguous, so set
168 1.8 briggs * each page individually.
169 1.8 briggs */
170 1.8 briggs for (i = 0; i < SN_NPAGES; i++) {
171 1.33 thorpej physaccess (p, (caddr_t)SONIC_GETDMA(p), PAGE_SIZE,
172 1.15 scottr PG_V | PG_RW | PG_CI);
173 1.33 thorpej p += PAGE_SIZE;
174 1.8 briggs }
175 1.8 briggs p = pp;
176 1.8 briggs
177 1.1 briggs for (i = 0; i < NRRA; i++) {
178 1.1 briggs sc->p_rra[i] = (void *)p;
179 1.15 scottr sc->v_rra[i] = SONIC_GETDMA(p);
180 1.1 briggs p += RXRSRC_SIZE(sc);
181 1.1 briggs }
182 1.15 scottr sc->v_rea = SONIC_GETDMA(p);
183 1.1 briggs
184 1.12 scottr p = (u_char *)SOALIGN(sc, p);
185 1.1 briggs
186 1.12 scottr sc->p_cda = (void *)(p);
187 1.15 scottr sc->v_cda = SONIC_GETDMA(p);
188 1.1 briggs p += CDA_SIZE(sc);
189 1.1 briggs
190 1.12 scottr p = (u_char *)SOALIGN(sc, p);
191 1.1 briggs
192 1.1 briggs for (i = 0; i < NTDA; i++) {
193 1.1 briggs struct mtd *mtdp = &sc->mtda[i];
194 1.1 briggs mtdp->mtd_txp = (void *)p;
195 1.15 scottr mtdp->mtd_vtxp = SONIC_GETDMA(p);
196 1.1 briggs p += TXP_SIZE(sc);
197 1.1 briggs }
198 1.1 briggs
199 1.12 scottr p = (u_char *)SOALIGN(sc, p);
200 1.1 briggs
201 1.33 thorpej if ((p - pp) > PAGE_SIZE) {
202 1.8 briggs printf ("%s: sizeof RRA (%ld) + CDA (%ld) +"
203 1.33 thorpej "TDA (%ld) > PAGE_SIZE (%d). Punt!\n",
204 1.12 scottr sc->sc_dev.dv_xname,
205 1.12 scottr (ulong)sc->p_cda - (ulong)sc->p_rra[0],
206 1.13 briggs (ulong)sc->mtda[0].mtd_txp - (ulong)sc->p_cda,
207 1.12 scottr (ulong)p - (ulong)sc->mtda[0].mtd_txp,
208 1.33 thorpej PAGE_SIZE);
209 1.8 briggs return(1);
210 1.1 briggs }
211 1.13 briggs
212 1.33 thorpej p = pp + PAGE_SIZE;
213 1.13 briggs pp = p;
214 1.13 briggs
215 1.33 thorpej sc->sc_nrda = PAGE_SIZE / RXPKT_SIZE(sc);
216 1.15 scottr sc->p_rda = (caddr_t) p;
217 1.15 scottr sc->v_rda = SONIC_GETDMA(p);
218 1.1 briggs
219 1.33 thorpej p = pp + PAGE_SIZE;
220 1.1 briggs
221 1.9 briggs for (i = 0; i < NRBA; i++) {
222 1.12 scottr sc->rbuf[i] = (caddr_t)p;
223 1.33 thorpej p += PAGE_SIZE;
224 1.1 briggs }
225 1.1 briggs
226 1.15 scottr pp = p;
227 1.15 scottr offset = TXBSIZE;
228 1.15 scottr for (i = 0; i < NTDA; i++) {
229 1.15 scottr struct mtd *mtdp = &sc->mtda[i];
230 1.15 scottr
231 1.15 scottr mtdp->mtd_buf = p;
232 1.15 scottr mtdp->mtd_vbuf = SONIC_GETDMA(p);
233 1.15 scottr offset += TXBSIZE;
234 1.33 thorpej if (offset < PAGE_SIZE) {
235 1.15 scottr p += TXBSIZE;
236 1.15 scottr } else {
237 1.33 thorpej p = pp + PAGE_SIZE;
238 1.15 scottr pp = p;
239 1.15 scottr offset = TXBSIZE;
240 1.15 scottr }
241 1.1 briggs }
242 1.1 briggs
243 1.15 scottr #ifdef SNDEBUG
244 1.1 briggs camdump(sc);
245 1.1 briggs #endif
246 1.24 scottr printf("%s: Ethernet address %s\n",
247 1.24 scottr sc->sc_dev.dv_xname, ether_sprintf(lladdr));
248 1.1 briggs
249 1.15 scottr #ifdef SNDEBUG
250 1.14 scottr printf("%s: buffers: rra=%p cda=%p rda=%p tda=%p\n",
251 1.12 scottr sc->sc_dev.dv_xname, sc->p_rra[0], sc->p_cda,
252 1.15 scottr sc->p_rda, sc->mtda[0].mtd_txp);
253 1.1 briggs #endif
254 1.4 briggs
255 1.1 briggs bcopy(sc->sc_dev.dv_xname, ifp->if_xname, IFNAMSIZ);
256 1.1 briggs ifp->if_softc = sc;
257 1.1 briggs ifp->if_ioctl = snioctl;
258 1.1 briggs ifp->if_start = snstart;
259 1.8 briggs ifp->if_flags =
260 1.12 scottr IFF_BROADCAST | IFF_SIMPLEX | IFF_NOTRAILERS | IFF_MULTICAST;
261 1.1 briggs ifp->if_watchdog = snwatchdog;
262 1.28 thorpej
263 1.1 briggs if_attach(ifp);
264 1.2 is ether_ifattach(ifp, lladdr);
265 1.1 briggs
266 1.8 briggs return (0);
267 1.1 briggs }
268 1.1 briggs
269 1.1 briggs static int
270 1.1 briggs snioctl(ifp, cmd, data)
271 1.1 briggs struct ifnet *ifp;
272 1.1 briggs u_long cmd;
273 1.1 briggs caddr_t data;
274 1.1 briggs {
275 1.12 scottr struct ifaddr *ifa;
276 1.12 scottr struct ifreq *ifr;
277 1.12 scottr struct sn_softc *sc = ifp->if_softc;
278 1.12 scottr int s = splnet(), err = 0;
279 1.12 scottr int temp;
280 1.1 briggs
281 1.1 briggs switch (cmd) {
282 1.1 briggs
283 1.1 briggs case SIOCSIFADDR:
284 1.1 briggs ifa = (struct ifaddr *)data;
285 1.1 briggs ifp->if_flags |= IFF_UP;
286 1.1 briggs switch (ifa->ifa_addr->sa_family) {
287 1.1 briggs #ifdef INET
288 1.1 briggs case AF_INET:
289 1.15 scottr (void)sninit(sc);
290 1.2 is arp_ifinit(ifp, ifa);
291 1.1 briggs break;
292 1.1 briggs #endif
293 1.1 briggs default:
294 1.15 scottr (void)sninit(sc);
295 1.1 briggs break;
296 1.1 briggs }
297 1.1 briggs break;
298 1.1 briggs
299 1.1 briggs case SIOCSIFFLAGS:
300 1.1 briggs if ((ifp->if_flags & IFF_UP) == 0 &&
301 1.15 scottr (ifp->if_flags & IFF_RUNNING) != 0) {
302 1.15 scottr /*
303 1.15 scottr * If interface is marked down and it is running,
304 1.15 scottr * then stop it.
305 1.15 scottr */
306 1.15 scottr snstop(sc);
307 1.1 briggs ifp->if_flags &= ~IFF_RUNNING;
308 1.15 scottr } else if ((ifp->if_flags & IFF_UP) != 0 &&
309 1.15 scottr (ifp->if_flags & IFF_RUNNING) == 0) {
310 1.15 scottr /*
311 1.15 scottr * If interface is marked up and it is stopped,
312 1.15 scottr * then start it.
313 1.15 scottr */
314 1.15 scottr (void)sninit(sc);
315 1.15 scottr } else {
316 1.15 scottr /*
317 1.15 scottr * reset the interface to pick up any other changes
318 1.15 scottr * in flags
319 1.15 scottr */
320 1.15 scottr temp = ifp->if_flags & IFF_UP;
321 1.1 briggs snreset(sc);
322 1.15 scottr ifp->if_flags |= temp;
323 1.1 briggs snstart(ifp);
324 1.1 briggs }
325 1.1 briggs break;
326 1.1 briggs
327 1.1 briggs case SIOCADDMULTI:
328 1.1 briggs case SIOCDELMULTI:
329 1.8 briggs ifr = (struct ifreq *) data;
330 1.8 briggs if (cmd == SIOCADDMULTI)
331 1.8 briggs err = ether_addmulti(ifr, &sc->sc_ethercom);
332 1.1 briggs else
333 1.8 briggs err = ether_delmulti(ifr, &sc->sc_ethercom);
334 1.1 briggs
335 1.1 briggs if (err == ENETRESET) {
336 1.1 briggs /*
337 1.1 briggs * Multicast list has changed; set the hardware
338 1.1 briggs * filter accordingly. But remember UP flag!
339 1.1 briggs */
340 1.35 thorpej if (ifp->if_flags & IFF_RUNNING) {
341 1.35 thorpej temp = ifp->if_flags & IFF_UP;
342 1.35 thorpej snreset(sc);
343 1.35 thorpej ifp->if_flags |= temp;
344 1.35 thorpej }
345 1.1 briggs err = 0;
346 1.1 briggs }
347 1.1 briggs break;
348 1.1 briggs default:
349 1.1 briggs err = EINVAL;
350 1.1 briggs }
351 1.1 briggs splx(s);
352 1.1 briggs return (err);
353 1.1 briggs }
354 1.1 briggs
355 1.1 briggs /*
356 1.1 briggs * Encapsulate a packet of type family for the local net.
357 1.1 briggs */
358 1.1 briggs static void
359 1.1 briggs snstart(ifp)
360 1.1 briggs struct ifnet *ifp;
361 1.1 briggs {
362 1.15 scottr struct sn_softc *sc = ifp->if_softc;
363 1.15 scottr struct mbuf *m;
364 1.15 scottr int mtd_next;
365 1.1 briggs
366 1.2 is if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
367 1.1 briggs return;
368 1.1 briggs
369 1.1 briggs outloop:
370 1.1 briggs /* Check for room in the xmit buffer. */
371 1.15 scottr if ((mtd_next = (sc->mtd_free + 1)) == NTDA)
372 1.15 scottr mtd_next = 0;
373 1.15 scottr
374 1.15 scottr if (mtd_next == sc->mtd_hw) {
375 1.1 briggs ifp->if_flags |= IFF_OACTIVE;
376 1.1 briggs return;
377 1.1 briggs }
378 1.1 briggs
379 1.2 is IF_DEQUEUE(&ifp->if_snd, m);
380 1.1 briggs if (m == 0)
381 1.1 briggs return;
382 1.1 briggs
383 1.1 briggs /* We need the header for m_pkthdr.len. */
384 1.1 briggs if ((m->m_flags & M_PKTHDR) == 0)
385 1.12 scottr panic("%s: snstart: no header mbuf", sc->sc_dev.dv_xname);
386 1.1 briggs
387 1.1 briggs #if NBPFILTER > 0
388 1.1 briggs /*
389 1.1 briggs * If bpf is listening on this interface, let it
390 1.1 briggs * see the packet before we commit it to the wire.
391 1.1 briggs */
392 1.2 is if (ifp->if_bpf)
393 1.2 is bpf_mtap(ifp->if_bpf, m);
394 1.1 briggs #endif
395 1.1 briggs
396 1.1 briggs /*
397 1.1 briggs * If there is nothing in the o/p queue, and there is room in
398 1.1 briggs * the Tx ring, then send the packet directly. Otherwise append
399 1.1 briggs * it to the o/p queue.
400 1.1 briggs */
401 1.15 scottr if ((sonicput(sc, m, mtd_next)) == 0) {
402 1.3 briggs IF_PREPEND(&ifp->if_snd, m);
403 1.3 briggs return;
404 1.1 briggs }
405 1.1 briggs
406 1.15 scottr sc->mtd_prev = sc->mtd_free;
407 1.15 scottr sc->mtd_free = mtd_next;
408 1.1 briggs
409 1.2 is ifp->if_opackets++; /* # of pkts */
410 1.1 briggs
411 1.1 briggs /* Jump back for possibly more punishment. */
412 1.1 briggs goto outloop;
413 1.1 briggs }
414 1.1 briggs
415 1.1 briggs /*
416 1.1 briggs * reset and restart the SONIC. Called in case of fatal
417 1.1 briggs * hardware/software errors.
418 1.1 briggs */
419 1.1 briggs static void
420 1.1 briggs snreset(sc)
421 1.1 briggs struct sn_softc *sc;
422 1.1 briggs {
423 1.1 briggs snstop(sc);
424 1.1 briggs sninit(sc);
425 1.1 briggs }
426 1.1 briggs
427 1.1 briggs static int
428 1.1 briggs sninit(sc)
429 1.1 briggs struct sn_softc *sc;
430 1.1 briggs {
431 1.12 scottr u_long s_rcr;
432 1.12 scottr int s;
433 1.1 briggs
434 1.1 briggs if (sc->sc_if.if_flags & IFF_RUNNING)
435 1.1 briggs /* already running */
436 1.1 briggs return (0);
437 1.1 briggs
438 1.1 briggs s = splnet();
439 1.1 briggs
440 1.29 wiz NIC_PUT(sc, SNR_CR, CR_RST); /* DCR only accessible in reset mode! */
441 1.1 briggs
442 1.1 briggs /* config it */
443 1.15 scottr NIC_PUT(sc, SNR_DCR, (sc->snr_dcr |
444 1.15 scottr (sc->bitmode ? DCR_DW32 : DCR_DW16)));
445 1.8 briggs NIC_PUT(sc, SNR_DCR2, sc->snr_dcr2);
446 1.8 briggs
447 1.8 briggs s_rcr = RCR_BRD | RCR_LBNONE;
448 1.8 briggs if (sc->sc_if.if_flags & IFF_PROMISC)
449 1.8 briggs s_rcr |= RCR_PRO;
450 1.8 briggs if (sc->sc_if.if_flags & IFF_ALLMULTI)
451 1.8 briggs s_rcr |= RCR_AMC;
452 1.8 briggs NIC_PUT(sc, SNR_RCR, s_rcr);
453 1.8 briggs
454 1.8 briggs NIC_PUT(sc, SNR_IMR, (IMR_PRXEN | IMR_PTXEN | IMR_TXEREN | IMR_LCDEN));
455 1.1 briggs
456 1.1 briggs /* clear pending interrupts */
457 1.8 briggs NIC_PUT(sc, SNR_ISR, ISR_ALL);
458 1.1 briggs
459 1.1 briggs /* clear tally counters */
460 1.8 briggs NIC_PUT(sc, SNR_CRCT, -1);
461 1.8 briggs NIC_PUT(sc, SNR_FAET, -1);
462 1.8 briggs NIC_PUT(sc, SNR_MPT, -1);
463 1.1 briggs
464 1.1 briggs initialise_tda(sc);
465 1.1 briggs initialise_rda(sc);
466 1.1 briggs initialise_rra(sc);
467 1.1 briggs
468 1.1 briggs /* enable the chip */
469 1.8 briggs NIC_PUT(sc, SNR_CR, 0);
470 1.1 briggs wbflush();
471 1.1 briggs
472 1.8 briggs /* program the CAM */
473 1.1 briggs camprogram(sc);
474 1.1 briggs
475 1.1 briggs /* get it to read resource descriptors */
476 1.8 briggs NIC_PUT(sc, SNR_CR, CR_RRRA);
477 1.1 briggs wbflush();
478 1.8 briggs while ((NIC_GET(sc, SNR_CR)) & CR_RRRA)
479 1.1 briggs continue;
480 1.1 briggs
481 1.1 briggs /* enable rx */
482 1.8 briggs NIC_PUT(sc, SNR_CR, CR_RXEN);
483 1.1 briggs wbflush();
484 1.1 briggs
485 1.1 briggs /* flag interface as "running" */
486 1.1 briggs sc->sc_if.if_flags |= IFF_RUNNING;
487 1.15 scottr sc->sc_if.if_flags &= ~IFF_OACTIVE;
488 1.1 briggs
489 1.1 briggs splx(s);
490 1.1 briggs return (0);
491 1.1 briggs }
492 1.1 briggs
493 1.1 briggs /*
494 1.1 briggs * close down an interface and free its buffers
495 1.1 briggs * Called on final close of device, or if sninit() fails
496 1.1 briggs * part way through.
497 1.1 briggs */
498 1.1 briggs static int
499 1.1 briggs snstop(sc)
500 1.1 briggs struct sn_softc *sc;
501 1.1 briggs {
502 1.1 briggs struct mtd *mtd;
503 1.12 scottr int s = splnet();
504 1.1 briggs
505 1.1 briggs /* stick chip in reset */
506 1.8 briggs NIC_PUT(sc, SNR_CR, CR_RST);
507 1.1 briggs wbflush();
508 1.1 briggs
509 1.1 briggs /* free all receive buffers (currently static so nothing to do) */
510 1.1 briggs
511 1.1 briggs /* free all pending transmit mbufs */
512 1.1 briggs while (sc->mtd_hw != sc->mtd_free) {
513 1.1 briggs mtd = &sc->mtda[sc->mtd_hw];
514 1.15 scottr if (mtd->mtd_mbuf)
515 1.15 scottr m_freem(mtd->mtd_mbuf);
516 1.1 briggs if (++sc->mtd_hw == NTDA) sc->mtd_hw = 0;
517 1.1 briggs }
518 1.1 briggs
519 1.1 briggs sc->sc_if.if_timer = 0;
520 1.1 briggs sc->sc_if.if_flags &= ~(IFF_RUNNING | IFF_UP);
521 1.1 briggs
522 1.1 briggs splx(s);
523 1.1 briggs return (0);
524 1.1 briggs }
525 1.1 briggs
526 1.1 briggs /*
527 1.1 briggs * Called if any Tx packets remain unsent after 5 seconds,
528 1.1 briggs * In all cases we just reset the chip, and any retransmission
529 1.1 briggs * will be handled by higher level protocol timeouts.
530 1.1 briggs */
531 1.1 briggs static void
532 1.1 briggs snwatchdog(ifp)
533 1.1 briggs struct ifnet *ifp;
534 1.1 briggs {
535 1.1 briggs struct sn_softc *sc = ifp->if_softc;
536 1.12 scottr struct mtd *mtd;
537 1.12 scottr int temp;
538 1.1 briggs
539 1.1 briggs if (sc->mtd_hw != sc->mtd_free) {
540 1.1 briggs /* something still pending for transmit */
541 1.1 briggs mtd = &sc->mtda[sc->mtd_hw];
542 1.1 briggs if (SRO(sc->bitmode, mtd->mtd_txp, TXP_STATUS) == 0)
543 1.1 briggs log(LOG_ERR, "%s: Tx - timeout\n",
544 1.12 scottr sc->sc_dev.dv_xname);
545 1.1 briggs else
546 1.1 briggs log(LOG_ERR, "%s: Tx - lost interrupt\n",
547 1.12 scottr sc->sc_dev.dv_xname);
548 1.2 is temp = ifp->if_flags & IFF_UP;
549 1.1 briggs snreset(sc);
550 1.2 is ifp->if_flags |= temp;
551 1.1 briggs }
552 1.1 briggs }
553 1.1 briggs
554 1.1 briggs /*
555 1.1 briggs * stuff packet into sonic (at splnet)
556 1.1 briggs */
557 1.15 scottr static __inline__ u_int
558 1.15 scottr sonicput(sc, m0, mtd_next)
559 1.1 briggs struct sn_softc *sc;
560 1.1 briggs struct mbuf *m0;
561 1.15 scottr int mtd_next;
562 1.1 briggs {
563 1.12 scottr struct mtd *mtdp;
564 1.12 scottr struct mbuf *m;
565 1.15 scottr u_char *buff;
566 1.12 scottr void *txp;
567 1.12 scottr u_int len = 0;
568 1.12 scottr u_int totlen = 0;
569 1.3 briggs
570 1.15 scottr #ifdef whyonearthwouldyoudothis
571 1.12 scottr if (NIC_GET(sc, SNR_CR) & CR_TXP)
572 1.3 briggs return (0);
573 1.15 scottr #endif
574 1.1 briggs
575 1.1 briggs /* grab the replacement mtd */
576 1.15 scottr mtdp = &sc->mtda[sc->mtd_free];
577 1.1 briggs
578 1.15 scottr buff = mtdp->mtd_buf;
579 1.1 briggs
580 1.1 briggs /* this packet goes to mtdnext fill in the TDA */
581 1.15 scottr mtdp->mtd_mbuf = m0;
582 1.1 briggs txp = mtdp->mtd_txp;
583 1.15 scottr
584 1.15 scottr /* Write to the config word. Every (NTDA/2)+1 packets we set an intr */
585 1.15 scottr if (sc->mtd_pint == 0) {
586 1.15 scottr sc->mtd_pint = NTDA/2;
587 1.15 scottr SWO(sc->bitmode, txp, TXP_CONFIG, TCR_PINT);
588 1.15 scottr } else {
589 1.15 scottr sc->mtd_pint--;
590 1.15 scottr SWO(sc->bitmode, txp, TXP_CONFIG, 0);
591 1.15 scottr }
592 1.1 briggs
593 1.1 briggs for (m = m0; m; m = m->m_next) {
594 1.12 scottr u_char *data = mtod(m, u_char *);
595 1.1 briggs len = m->m_len;
596 1.1 briggs totlen += len;
597 1.1 briggs bcopy(data, buff, len);
598 1.1 briggs buff += len;
599 1.1 briggs }
600 1.1 briggs if (totlen >= TXBSIZE) {
601 1.12 scottr panic("%s: sonicput: packet overflow", sc->sc_dev.dv_xname);
602 1.1 briggs }
603 1.15 scottr
604 1.12 scottr SWO(sc->bitmode, txp, TXP_FRAGOFF + (0 * TXP_FRAGSIZE) + TXP_FPTRLO,
605 1.15 scottr LOWER(mtdp->mtd_vbuf));
606 1.12 scottr SWO(sc->bitmode, txp, TXP_FRAGOFF + (0 * TXP_FRAGSIZE) + TXP_FPTRHI,
607 1.15 scottr UPPER(mtdp->mtd_vbuf));
608 1.1 briggs
609 1.23 thorpej if (totlen < ETHERMIN + ETHER_HDR_LEN) {
610 1.23 thorpej int pad = ETHERMIN + ETHER_HDR_LEN - totlen;
611 1.15 scottr bzero(mtdp->mtd_buf + totlen, pad);
612 1.23 thorpej totlen = ETHERMIN + ETHER_HDR_LEN;
613 1.1 briggs }
614 1.1 briggs
615 1.12 scottr SWO(sc->bitmode, txp, TXP_FRAGOFF + (0 * TXP_FRAGSIZE) + TXP_FSIZE,
616 1.12 scottr totlen);
617 1.1 briggs SWO(sc->bitmode, txp, TXP_FRAGCNT, 1);
618 1.1 briggs SWO(sc->bitmode, txp, TXP_PKTSIZE, totlen);
619 1.1 briggs
620 1.1 briggs /* link onto the next mtd that will be used */
621 1.12 scottr SWO(sc->bitmode, txp, TXP_FRAGOFF + (1 * TXP_FRAGSIZE) + TXP_FPTRLO,
622 1.12 scottr LOWER(sc->mtda[mtd_next].mtd_vtxp) | EOL);
623 1.1 briggs
624 1.1 briggs /*
625 1.1 briggs * The previous txp.tlink currently contains a pointer to
626 1.1 briggs * our txp | EOL. Want to clear the EOL, so write our
627 1.1 briggs * pointer to the previous txp.
628 1.1 briggs */
629 1.1 briggs SWO(sc->bitmode, sc->mtda[sc->mtd_prev].mtd_txp, sc->mtd_tlinko,
630 1.12 scottr LOWER(mtdp->mtd_vtxp));
631 1.1 briggs
632 1.1 briggs /* make sure chip is running */
633 1.1 briggs wbflush();
634 1.8 briggs NIC_PUT(sc, SNR_CR, CR_TXP);
635 1.1 briggs wbflush();
636 1.1 briggs sc->sc_if.if_timer = 5; /* 5 seconds to watch for failing to transmit */
637 1.1 briggs
638 1.1 briggs return (totlen);
639 1.1 briggs }
640 1.1 briggs
641 1.12 scottr /*
642 1.12 scottr * These are called from sonicioctl() when /etc/ifconfig is run to set
643 1.12 scottr * the address or switch the i/f on.
644 1.12 scottr */
645 1.1 briggs /*
646 1.1 briggs * CAM support
647 1.1 briggs */
648 1.8 briggs static void
649 1.1 briggs caminitialise(sc)
650 1.1 briggs struct sn_softc *sc;
651 1.1 briggs {
652 1.1 briggs void *p_cda = sc->p_cda;
653 1.12 scottr int i;
654 1.1 briggs int bitmode = sc->bitmode;
655 1.8 briggs int camoffset;
656 1.1 briggs
657 1.8 briggs for (i = 0; i < MAXCAM; i++) {
658 1.8 briggs camoffset = i * CDA_CAMDESC;
659 1.8 briggs SWO(bitmode, p_cda, (camoffset + CDA_CAMEP), i);
660 1.8 briggs SWO(bitmode, p_cda, (camoffset + CDA_CAMAP2), 0);
661 1.8 briggs SWO(bitmode, p_cda, (camoffset + CDA_CAMAP1), 0);
662 1.8 briggs SWO(bitmode, p_cda, (camoffset + CDA_CAMAP0), 0);
663 1.8 briggs }
664 1.1 briggs SWO(bitmode, p_cda, CDA_ENABLE, 0);
665 1.1 briggs }
666 1.1 briggs
667 1.8 briggs static void
668 1.1 briggs camentry(sc, entry, ea)
669 1.1 briggs int entry;
670 1.12 scottr u_char *ea;
671 1.1 briggs struct sn_softc *sc;
672 1.1 briggs {
673 1.12 scottr void *p_cda = sc->p_cda;
674 1.1 briggs int bitmode = sc->bitmode;
675 1.8 briggs int camoffset = entry * CDA_CAMDESC;
676 1.1 briggs
677 1.1 briggs SWO(bitmode, p_cda, camoffset + CDA_CAMEP, entry);
678 1.1 briggs SWO(bitmode, p_cda, camoffset + CDA_CAMAP2, (ea[5] << 8) | ea[4]);
679 1.1 briggs SWO(bitmode, p_cda, camoffset + CDA_CAMAP1, (ea[3] << 8) | ea[2]);
680 1.1 briggs SWO(bitmode, p_cda, camoffset + CDA_CAMAP0, (ea[1] << 8) | ea[0]);
681 1.8 briggs SWO(bitmode, p_cda, CDA_ENABLE,
682 1.12 scottr (SRO(bitmode, p_cda, CDA_ENABLE) | (1 << entry)));
683 1.1 briggs }
684 1.1 briggs
685 1.8 briggs static void
686 1.1 briggs camprogram(sc)
687 1.1 briggs struct sn_softc *sc;
688 1.1 briggs {
689 1.12 scottr struct ether_multistep step;
690 1.12 scottr struct ether_multi *enm;
691 1.12 scottr struct ifnet *ifp;
692 1.12 scottr int timeout;
693 1.12 scottr int mcount = 0;
694 1.8 briggs
695 1.8 briggs caminitialise(sc);
696 1.8 briggs
697 1.8 briggs ifp = &sc->sc_if;
698 1.8 briggs
699 1.8 briggs /* Always load our own address first. */
700 1.8 briggs camentry (sc, mcount, LLADDR(ifp->if_sadl));
701 1.8 briggs mcount++;
702 1.8 briggs
703 1.8 briggs /* Assume we won't need allmulti bit. */
704 1.8 briggs ifp->if_flags &= ~IFF_ALLMULTI;
705 1.8 briggs
706 1.8 briggs /* Loop through multicast addresses */
707 1.8 briggs ETHER_FIRST_MULTI(step, &sc->sc_ethercom, enm);
708 1.8 briggs while (enm != NULL) {
709 1.8 briggs if (mcount == MAXCAM) {
710 1.8 briggs ifp->if_flags |= IFF_ALLMULTI;
711 1.8 briggs break;
712 1.8 briggs }
713 1.8 briggs
714 1.8 briggs if (bcmp(enm->enm_addrlo, enm->enm_addrhi,
715 1.12 scottr sizeof(enm->enm_addrlo)) != 0) {
716 1.8 briggs /*
717 1.8 briggs * SONIC's CAM is programmed with specific
718 1.8 briggs * addresses. It has no way to specify a range.
719 1.8 briggs * (Well, thats not exactly true. If the
720 1.8 briggs * range is small one could program each addr
721 1.30 wiz * within the range as a separate CAM entry)
722 1.8 briggs */
723 1.8 briggs ifp->if_flags |= IFF_ALLMULTI;
724 1.8 briggs break;
725 1.8 briggs }
726 1.8 briggs
727 1.8 briggs /* program the CAM with the specified entry */
728 1.8 briggs camentry(sc, mcount, enm->enm_addrlo);
729 1.8 briggs mcount++;
730 1.1 briggs
731 1.8 briggs ETHER_NEXT_MULTI(step, enm);
732 1.8 briggs }
733 1.8 briggs
734 1.8 briggs NIC_PUT(sc, SNR_CDP, LOWER(sc->v_cda));
735 1.8 briggs NIC_PUT(sc, SNR_CDC, MAXCAM);
736 1.8 briggs NIC_PUT(sc, SNR_CR, CR_LCAM);
737 1.1 briggs wbflush();
738 1.1 briggs
739 1.1 briggs timeout = 10000;
740 1.8 briggs while ((NIC_GET(sc, SNR_CR) & CR_LCAM) && timeout--)
741 1.1 briggs continue;
742 1.1 briggs if (timeout == 0) {
743 1.1 briggs /* XXX */
744 1.32 provos panic("%s: CAM initialisation failed", sc->sc_dev.dv_xname);
745 1.1 briggs }
746 1.1 briggs timeout = 10000;
747 1.8 briggs while (((NIC_GET(sc, SNR_ISR) & ISR_LCD) == 0) && timeout--)
748 1.1 briggs continue;
749 1.1 briggs
750 1.8 briggs if (NIC_GET(sc, SNR_ISR) & ISR_LCD)
751 1.8 briggs NIC_PUT(sc, SNR_ISR, ISR_LCD);
752 1.1 briggs else
753 1.7 scottr printf("%s: CAM initialisation without interrupt\n",
754 1.7 scottr sc->sc_dev.dv_xname);
755 1.1 briggs }
756 1.1 briggs
757 1.15 scottr #ifdef SNDEBUG
758 1.8 briggs static void
759 1.1 briggs camdump(sc)
760 1.1 briggs struct sn_softc *sc;
761 1.1 briggs {
762 1.12 scottr int i;
763 1.1 briggs
764 1.1 briggs printf("CAM entries:\n");
765 1.8 briggs NIC_PUT(sc, SNR_CR, CR_RST);
766 1.1 briggs wbflush();
767 1.1 briggs
768 1.1 briggs for (i = 0; i < 16; i++) {
769 1.1 briggs ushort ap2, ap1, ap0;
770 1.8 briggs NIC_PUT(sc, SNR_CEP, i);
771 1.1 briggs wbflush();
772 1.8 briggs ap2 = NIC_GET(sc, SNR_CAP2);
773 1.8 briggs ap1 = NIC_GET(sc, SNR_CAP1);
774 1.8 briggs ap0 = NIC_GET(sc, SNR_CAP0);
775 1.1 briggs printf("%d: ap2=0x%x ap1=0x%x ap0=0x%x\n", i, ap2, ap1, ap0);
776 1.1 briggs }
777 1.14 scottr printf("CAM enable 0x%x\n", NIC_GET(sc, SNR_CEP));
778 1.1 briggs
779 1.8 briggs NIC_PUT(sc, SNR_CR, 0);
780 1.1 briggs wbflush();
781 1.1 briggs }
782 1.1 briggs #endif
783 1.1 briggs
784 1.8 briggs static void
785 1.1 briggs initialise_tda(sc)
786 1.1 briggs struct sn_softc *sc;
787 1.1 briggs {
788 1.1 briggs struct mtd *mtd;
789 1.12 scottr int i;
790 1.1 briggs
791 1.1 briggs for (i = 0; i < NTDA; i++) {
792 1.1 briggs mtd = &sc->mtda[i];
793 1.15 scottr mtd->mtd_mbuf = 0;
794 1.1 briggs }
795 1.1 briggs
796 1.1 briggs sc->mtd_hw = 0;
797 1.12 scottr sc->mtd_prev = NTDA - 1;
798 1.1 briggs sc->mtd_free = 0;
799 1.1 briggs sc->mtd_tlinko = TXP_FRAGOFF + 1*TXP_FRAGSIZE + TXP_FPTRLO;
800 1.15 scottr sc->mtd_pint = NTDA/2;
801 1.1 briggs
802 1.8 briggs NIC_PUT(sc, SNR_UTDA, UPPER(sc->mtda[0].mtd_vtxp));
803 1.8 briggs NIC_PUT(sc, SNR_CTDA, LOWER(sc->mtda[0].mtd_vtxp));
804 1.1 briggs }
805 1.1 briggs
806 1.8 briggs static void
807 1.1 briggs initialise_rda(sc)
808 1.1 briggs struct sn_softc *sc;
809 1.1 briggs {
810 1.15 scottr int bitmode = sc->bitmode;
811 1.15 scottr int i;
812 1.15 scottr caddr_t p_rda = 0;
813 1.15 scottr u_int32_t v_rda = 0;
814 1.1 briggs
815 1.1 briggs /* link the RDA's together into a circular list */
816 1.15 scottr for (i = 0; i < (sc->sc_nrda - 1); i++) {
817 1.15 scottr p_rda = sc->p_rda + (i * RXPKT_SIZE(sc));
818 1.15 scottr v_rda = sc->v_rda + ((i+1) * RXPKT_SIZE(sc));
819 1.15 scottr SWO(bitmode, p_rda, RXPKT_RLINK, LOWER(v_rda));
820 1.15 scottr SWO(bitmode, p_rda, RXPKT_INUSE, 1);
821 1.15 scottr }
822 1.15 scottr p_rda = sc->p_rda + ((sc->sc_nrda - 1) * RXPKT_SIZE(sc));
823 1.15 scottr SWO(bitmode, p_rda, RXPKT_RLINK, LOWER(sc->v_rda) | EOL);
824 1.15 scottr SWO(bitmode, p_rda, RXPKT_INUSE, 1);
825 1.1 briggs
826 1.1 briggs /* mark end of receive descriptor list */
827 1.15 scottr sc->sc_rdamark = sc->sc_nrda - 1;
828 1.1 briggs
829 1.1 briggs sc->sc_rxmark = 0;
830 1.1 briggs
831 1.15 scottr NIC_PUT(sc, SNR_URDA, UPPER(sc->v_rda));
832 1.15 scottr NIC_PUT(sc, SNR_CRDA, LOWER(sc->v_rda));
833 1.1 briggs wbflush();
834 1.1 briggs }
835 1.1 briggs
836 1.8 briggs static void
837 1.1 briggs initialise_rra(sc)
838 1.1 briggs struct sn_softc *sc;
839 1.1 briggs {
840 1.12 scottr int i;
841 1.12 scottr u_int v;
842 1.12 scottr int bitmode = sc->bitmode;
843 1.1 briggs
844 1.9 briggs if (bitmode)
845 1.8 briggs NIC_PUT(sc, SNR_EOBC, RBASIZE(sc) / 2 - 2);
846 1.1 briggs else
847 1.8 briggs NIC_PUT(sc, SNR_EOBC, RBASIZE(sc) / 2 - 1);
848 1.9 briggs
849 1.8 briggs NIC_PUT(sc, SNR_URRA, UPPER(sc->v_rra[0]));
850 1.8 briggs NIC_PUT(sc, SNR_RSA, LOWER(sc->v_rra[0]));
851 1.1 briggs /* rea must point just past the end of the rra space */
852 1.8 briggs NIC_PUT(sc, SNR_REA, LOWER(sc->v_rea));
853 1.8 briggs NIC_PUT(sc, SNR_RRP, LOWER(sc->v_rra[0]));
854 1.11 briggs NIC_PUT(sc, SNR_RSC, 0);
855 1.1 briggs
856 1.1 briggs /* fill up SOME of the rra with buffers */
857 1.1 briggs for (i = 0; i < NRBA; i++) {
858 1.15 scottr v = SONIC_GETDMA(sc->rbuf[i]);
859 1.1 briggs SWO(bitmode, sc->p_rra[i], RXRSRC_PTRHI, UPPER(v));
860 1.1 briggs SWO(bitmode, sc->p_rra[i], RXRSRC_PTRLO, LOWER(v));
861 1.33 thorpej SWO(bitmode, sc->p_rra[i], RXRSRC_WCHI, UPPER(PAGE_SIZE/2));
862 1.33 thorpej SWO(bitmode, sc->p_rra[i], RXRSRC_WCLO, LOWER(PAGE_SIZE/2));
863 1.1 briggs }
864 1.1 briggs sc->sc_rramark = NRBA;
865 1.8 briggs NIC_PUT(sc, SNR_RWP, LOWER(sc->v_rra[sc->sc_rramark]));
866 1.1 briggs wbflush();
867 1.1 briggs }
868 1.1 briggs
869 1.8 briggs void
870 1.18 scottr snintr(arg)
871 1.1 briggs void *arg;
872 1.1 briggs {
873 1.12 scottr struct sn_softc *sc = (struct sn_softc *)arg;
874 1.1 briggs int isr;
875 1.1 briggs
876 1.8 briggs while ((isr = (NIC_GET(sc, SNR_ISR) & ISR_ALL)) != 0) {
877 1.1 briggs /* scrub the interrupts that we are going to service */
878 1.8 briggs NIC_PUT(sc, SNR_ISR, isr);
879 1.1 briggs wbflush();
880 1.1 briggs
881 1.9 briggs if (isr & (ISR_BR | ISR_LCD | ISR_TC))
882 1.7 scottr printf("%s: unexpected interrupt status 0x%x\n",
883 1.7 scottr sc->sc_dev.dv_xname, isr);
884 1.1 briggs
885 1.9 briggs if (isr & (ISR_TXDN | ISR_TXER | ISR_PINT))
886 1.1 briggs sonictxint(sc);
887 1.1 briggs
888 1.1 briggs if (isr & ISR_PKTRX)
889 1.1 briggs sonicrxint(sc);
890 1.1 briggs
891 1.1 briggs if (isr & (ISR_HBL | ISR_RDE | ISR_RBE | ISR_RBAE | ISR_RFO)) {
892 1.1 briggs if (isr & ISR_HBL)
893 1.1 briggs /*
894 1.1 briggs * The repeater is not providing a heartbeat.
895 1.1 briggs * In itself this isn't harmful, lots of the
896 1.1 briggs * cheap repeater hubs don't supply a heartbeat.
897 1.1 briggs * So ignore the lack of heartbeat. Its only
898 1.1 briggs * if we can't detect a carrier that we have a
899 1.1 briggs * problem.
900 1.1 briggs */
901 1.7 scottr ;
902 1.1 briggs if (isr & ISR_RDE)
903 1.7 scottr printf("%s: receive descriptors exhausted\n",
904 1.7 scottr sc->sc_dev.dv_xname);
905 1.1 briggs if (isr & ISR_RBE)
906 1.7 scottr printf("%s: receive buffers exhausted\n",
907 1.7 scottr sc->sc_dev.dv_xname);
908 1.1 briggs if (isr & ISR_RBAE)
909 1.7 scottr printf("%s: receive buffer area exhausted\n",
910 1.7 scottr sc->sc_dev.dv_xname);
911 1.1 briggs if (isr & ISR_RFO)
912 1.7 scottr printf("%s: receive FIFO overrun\n",
913 1.7 scottr sc->sc_dev.dv_xname);
914 1.1 briggs }
915 1.1 briggs if (isr & (ISR_CRC | ISR_FAE | ISR_MP)) {
916 1.1 briggs #ifdef notdef
917 1.1 briggs if (isr & ISR_CRC)
918 1.1 briggs sc->sc_crctally++;
919 1.1 briggs if (isr & ISR_FAE)
920 1.1 briggs sc->sc_faetally++;
921 1.1 briggs if (isr & ISR_MP)
922 1.1 briggs sc->sc_mptally++;
923 1.1 briggs #endif
924 1.1 briggs }
925 1.1 briggs snstart(&sc->sc_if);
926 1.1 briggs }
927 1.1 briggs return;
928 1.1 briggs }
929 1.1 briggs
930 1.1 briggs /*
931 1.1 briggs * Transmit interrupt routine
932 1.1 briggs */
933 1.8 briggs static void
934 1.1 briggs sonictxint(sc)
935 1.1 briggs struct sn_softc *sc;
936 1.1 briggs {
937 1.15 scottr struct mtd *mtd;
938 1.15 scottr void *txp;
939 1.15 scottr unsigned short txp_status;
940 1.15 scottr int mtd_hw;
941 1.15 scottr struct ifnet *ifp = &sc->sc_if;
942 1.15 scottr
943 1.15 scottr mtd_hw = sc->mtd_hw;
944 1.1 briggs
945 1.15 scottr if (mtd_hw == sc->mtd_free)
946 1.1 briggs return;
947 1.1 briggs
948 1.15 scottr while (mtd_hw != sc->mtd_free) {
949 1.15 scottr mtd = &sc->mtda[mtd_hw];
950 1.1 briggs
951 1.1 briggs txp = mtd->mtd_txp;
952 1.1 briggs
953 1.15 scottr if (SRO(sc->bitmode, txp, TXP_STATUS) == 0) {
954 1.15 scottr break; /* it hasn't really gone yet */
955 1.15 scottr }
956 1.1 briggs
957 1.15 scottr #ifdef SNDEBUG
958 1.15 scottr {
959 1.1 briggs struct ether_header *eh;
960 1.1 briggs
961 1.1 briggs eh = (struct ether_header *) mtd->mtd_buf;
962 1.12 scottr printf("%s: xmit status=0x%x len=%d type=0x%x from %s",
963 1.12 scottr sc->sc_dev.dv_xname,
964 1.1 briggs SRO(sc->bitmode, txp, TXP_STATUS),
965 1.1 briggs SRO(sc->bitmode, txp, TXP_PKTSIZE),
966 1.1 briggs htons(eh->ether_type),
967 1.1 briggs ether_sprintf(eh->ether_shost));
968 1.1 briggs printf(" (to %s)\n", ether_sprintf(eh->ether_dhost));
969 1.1 briggs }
970 1.15 scottr #endif /* SNDEBUG */
971 1.15 scottr
972 1.15 scottr ifp->if_flags &= ~IFF_OACTIVE;
973 1.15 scottr
974 1.15 scottr if (mtd->mtd_mbuf != 0) {
975 1.15 scottr m_freem(mtd->mtd_mbuf);
976 1.15 scottr mtd->mtd_mbuf = 0;
977 1.15 scottr }
978 1.15 scottr if (++mtd_hw == NTDA) mtd_hw = 0;
979 1.15 scottr
980 1.15 scottr txp_status = SRO(sc->bitmode, txp, TXP_STATUS);
981 1.1 briggs
982 1.15 scottr ifp->if_collisions += (txp_status & TCR_EXC) ? 16 :
983 1.15 scottr ((txp_status & TCR_NC) >> 12);
984 1.1 briggs
985 1.15 scottr if ((txp_status & TCR_PTX) == 0) {
986 1.15 scottr ifp->if_oerrors++;
987 1.7 scottr printf("%s: Tx packet status=0x%x\n",
988 1.15 scottr sc->sc_dev.dv_xname, txp_status);
989 1.15 scottr
990 1.1 briggs /* XXX - DG This looks bogus */
991 1.15 scottr if (mtd_hw != sc->mtd_free) {
992 1.1 briggs printf("resubmitting remaining packets\n");
993 1.15 scottr mtd = &sc->mtda[mtd_hw];
994 1.8 briggs NIC_PUT(sc, SNR_CTDA, LOWER(mtd->mtd_vtxp));
995 1.8 briggs NIC_PUT(sc, SNR_CR, CR_TXP);
996 1.1 briggs wbflush();
997 1.15 scottr break;
998 1.1 briggs }
999 1.1 briggs }
1000 1.1 briggs }
1001 1.15 scottr
1002 1.15 scottr sc->mtd_hw = mtd_hw;
1003 1.15 scottr return;
1004 1.1 briggs }
1005 1.1 briggs
1006 1.1 briggs /*
1007 1.1 briggs * Receive interrupt routine
1008 1.1 briggs */
1009 1.8 briggs static void
1010 1.1 briggs sonicrxint(sc)
1011 1.1 briggs struct sn_softc *sc;
1012 1.1 briggs {
1013 1.15 scottr caddr_t rda;
1014 1.12 scottr int orra;
1015 1.12 scottr int len;
1016 1.12 scottr int rramark;
1017 1.12 scottr int rdamark;
1018 1.12 scottr int bitmode = sc->bitmode;
1019 1.12 scottr u_int16_t rxpkt_ptr;
1020 1.1 briggs
1021 1.15 scottr rda = sc->p_rda + (sc->sc_rxmark * RXPKT_SIZE(sc));
1022 1.1 briggs
1023 1.1 briggs while (SRO(bitmode, rda, RXPKT_INUSE) == 0) {
1024 1.12 scottr u_int status = SRO(bitmode, rda, RXPKT_STATUS);
1025 1.1 briggs
1026 1.1 briggs orra = RBASEQ(SRO(bitmode, rda, RXPKT_SEQNO)) & RRAMASK;
1027 1.9 briggs rxpkt_ptr = SRO(bitmode, rda, RXPKT_PTRLO);
1028 1.22 thorpej len = SRO(bitmode, rda, RXPKT_BYTEC) - FCSSIZE;
1029 1.1 briggs if (status & RCR_PRX) {
1030 1.25 scottr caddr_t pkt = sc->rbuf[orra & RBAMASK] +
1031 1.25 scottr m68k_page_offset(rxpkt_ptr);
1032 1.15 scottr if (sonic_read(sc, pkt, len))
1033 1.1 briggs sc->sc_if.if_ipackets++;
1034 1.15 scottr else
1035 1.15 scottr sc->sc_if.if_ierrors++;
1036 1.1 briggs } else
1037 1.1 briggs sc->sc_if.if_ierrors++;
1038 1.1 briggs
1039 1.1 briggs /*
1040 1.1 briggs * give receive buffer area back to chip.
1041 1.1 briggs *
1042 1.9 briggs * If this was the last packet in the RRA, give the RRA to
1043 1.9 briggs * the chip again.
1044 1.9 briggs * If sonic read didnt copy it out then we would have to
1045 1.1 briggs * wait !!
1046 1.1 briggs * (dont bother add it back in again straight away)
1047 1.1 briggs *
1048 1.1 briggs * Really, we're doing p_rra[rramark] = p_rra[orra] but
1049 1.1 briggs * we have to use the macros because SONIC might be in
1050 1.1 briggs * 16 or 32 bit mode.
1051 1.1 briggs */
1052 1.9 briggs if (status & RCR_LPKT) {
1053 1.9 briggs void *tmp1, *tmp2;
1054 1.1 briggs
1055 1.9 briggs rramark = sc->sc_rramark;
1056 1.9 briggs tmp1 = sc->p_rra[rramark];
1057 1.9 briggs tmp2 = sc->p_rra[orra];
1058 1.9 briggs SWO(bitmode, tmp1, RXRSRC_PTRLO,
1059 1.9 briggs SRO(bitmode, tmp2, RXRSRC_PTRLO));
1060 1.9 briggs SWO(bitmode, tmp1, RXRSRC_PTRHI,
1061 1.9 briggs SRO(bitmode, tmp2, RXRSRC_PTRHI));
1062 1.9 briggs SWO(bitmode, tmp1, RXRSRC_WCLO,
1063 1.9 briggs SRO(bitmode, tmp2, RXRSRC_WCLO));
1064 1.9 briggs SWO(bitmode, tmp1, RXRSRC_WCHI,
1065 1.9 briggs SRO(bitmode, tmp2, RXRSRC_WCHI));
1066 1.9 briggs
1067 1.9 briggs /* zap old rra for fun */
1068 1.9 briggs SWO(bitmode, tmp2, RXRSRC_WCHI, 0);
1069 1.9 briggs SWO(bitmode, tmp2, RXRSRC_WCLO, 0);
1070 1.9 briggs
1071 1.9 briggs sc->sc_rramark = (++rramark) & RRAMASK;
1072 1.9 briggs NIC_PUT(sc, SNR_RWP, LOWER(sc->v_rra[rramark]));
1073 1.9 briggs wbflush();
1074 1.9 briggs }
1075 1.1 briggs
1076 1.1 briggs /*
1077 1.1 briggs * give receive descriptor back to chip simple
1078 1.1 briggs * list is circular
1079 1.1 briggs */
1080 1.1 briggs rdamark = sc->sc_rdamark;
1081 1.1 briggs SWO(bitmode, rda, RXPKT_INUSE, 1);
1082 1.1 briggs SWO(bitmode, rda, RXPKT_RLINK,
1083 1.1 briggs SRO(bitmode, rda, RXPKT_RLINK) | EOL);
1084 1.15 scottr SWO(bitmode, (sc->p_rda + (rdamark * RXPKT_SIZE(sc))), RXPKT_RLINK,
1085 1.15 scottr SRO(bitmode, (sc->p_rda + (rdamark * RXPKT_SIZE(sc))),
1086 1.15 scottr RXPKT_RLINK) & ~EOL);
1087 1.1 briggs sc->sc_rdamark = sc->sc_rxmark;
1088 1.1 briggs
1089 1.15 scottr if (++sc->sc_rxmark >= sc->sc_nrda)
1090 1.1 briggs sc->sc_rxmark = 0;
1091 1.15 scottr rda = sc->p_rda + (sc->sc_rxmark * RXPKT_SIZE(sc));
1092 1.1 briggs }
1093 1.1 briggs }
1094 1.1 briggs
1095 1.1 briggs /*
1096 1.1 briggs * sonic_read -- pull packet off interface and forward to
1097 1.1 briggs * appropriate protocol handler
1098 1.1 briggs */
1099 1.12 scottr static __inline__ int
1100 1.1 briggs sonic_read(sc, pkt, len)
1101 1.1 briggs struct sn_softc *sc;
1102 1.1 briggs caddr_t pkt;
1103 1.1 briggs int len;
1104 1.1 briggs {
1105 1.1 briggs struct ifnet *ifp = &sc->sc_if;
1106 1.1 briggs struct mbuf *m;
1107 1.1 briggs
1108 1.15 scottr #ifdef SNDEBUG
1109 1.15 scottr {
1110 1.12 scottr printf("%s: rcvd 0x%p len=%d type=0x%x from %s",
1111 1.12 scottr sc->sc_dev.dv_xname, et, len, htons(et->ether_type),
1112 1.1 briggs ether_sprintf(et->ether_shost));
1113 1.1 briggs printf(" (to %s)\n", ether_sprintf(et->ether_dhost));
1114 1.1 briggs }
1115 1.15 scottr #endif /* SNDEBUG */
1116 1.15 scottr
1117 1.23 thorpej if (len < (ETHER_MIN_LEN - ETHER_CRC_LEN) ||
1118 1.23 thorpej len > (ETHER_MAX_LEN - ETHER_CRC_LEN)) {
1119 1.7 scottr printf("%s: invalid packet length %d bytes\n",
1120 1.7 scottr sc->sc_dev.dv_xname, len);
1121 1.1 briggs return (0);
1122 1.1 briggs }
1123 1.1 briggs
1124 1.21 thorpej m = sonic_get(sc, pkt, len);
1125 1.1 briggs if (m == NULL)
1126 1.1 briggs return (0);
1127 1.31 thorpej #if NBPFILTER > 0
1128 1.31 thorpej /* Pass this up to any BPF listeners. */
1129 1.31 thorpej if (ifp->if_bpf)
1130 1.31 thorpej bpf_mtap(ifp->if_bpf, m);
1131 1.31 thorpej #endif
1132 1.21 thorpej (*ifp->if_input)(ifp, m);
1133 1.12 scottr return (1);
1134 1.1 briggs }
1135 1.1 briggs
1136 1.1 briggs /*
1137 1.1 briggs * munge the received packet into an mbuf chain
1138 1.1 briggs */
1139 1.12 scottr static __inline__ struct mbuf *
1140 1.21 thorpej sonic_get(sc, pkt, datalen)
1141 1.1 briggs struct sn_softc *sc;
1142 1.21 thorpej caddr_t pkt;
1143 1.1 briggs int datalen;
1144 1.1 briggs {
1145 1.15 scottr struct mbuf *m, *top, **mp;
1146 1.1 briggs int len;
1147 1.1 briggs
1148 1.1 briggs MGETHDR(m, M_DONTWAIT, MT_DATA);
1149 1.1 briggs if (m == 0)
1150 1.1 briggs return (0);
1151 1.1 briggs m->m_pkthdr.rcvif = &sc->sc_if;
1152 1.1 briggs m->m_pkthdr.len = datalen;
1153 1.15 scottr len = MHLEN;
1154 1.15 scottr top = 0;
1155 1.15 scottr mp = ⊤
1156 1.1 briggs
1157 1.1 briggs while (datalen > 0) {
1158 1.1 briggs if (top) {
1159 1.1 briggs MGET(m, M_DONTWAIT, MT_DATA);
1160 1.1 briggs if (m == 0) {
1161 1.1 briggs m_freem(top);
1162 1.1 briggs return (0);
1163 1.1 briggs }
1164 1.15 scottr len = MLEN;
1165 1.1 briggs }
1166 1.15 scottr if (datalen >= MINCLSIZE) {
1167 1.1 briggs MCLGET(m, M_DONTWAIT);
1168 1.15 scottr if ((m->m_flags & M_EXT) == 0) {
1169 1.15 scottr if (top) m_freem(top);
1170 1.15 scottr return (0);
1171 1.15 scottr }
1172 1.16 briggs len = MCLBYTES;
1173 1.1 briggs }
1174 1.22 thorpej
1175 1.22 thorpej if (mp == &top) {
1176 1.22 thorpej caddr_t newdata = (caddr_t)
1177 1.22 thorpej ALIGN(m->m_data + sizeof(struct ether_header)) -
1178 1.22 thorpej sizeof(struct ether_header);
1179 1.22 thorpej len -= newdata - m->m_data;
1180 1.22 thorpej m->m_data = newdata;
1181 1.22 thorpej }
1182 1.22 thorpej
1183 1.15 scottr m->m_len = len = min(datalen, len);
1184 1.15 scottr
1185 1.15 scottr bcopy(pkt, mtod(m, caddr_t), (unsigned) len);
1186 1.15 scottr pkt += len;
1187 1.15 scottr datalen -= len;
1188 1.1 briggs *mp = m;
1189 1.1 briggs mp = &m->m_next;
1190 1.1 briggs }
1191 1.15 scottr
1192 1.1 briggs return (top);
1193 1.10 briggs }
1194 1.10 briggs
1195 1.10 briggs static u_char bbr4[] = {0,8,4,12,2,10,6,14,1,9,5,13,3,11,7,15};
1196 1.10 briggs #define bbr(v) ((bbr4[(v)&0xf] << 4) | bbr4[((v)>>4) & 0xf])
1197 1.10 briggs
1198 1.10 briggs void
1199 1.10 briggs sn_get_enaddr(t, h, o, dst)
1200 1.12 scottr bus_space_tag_t t;
1201 1.10 briggs bus_space_handle_t h;
1202 1.20 scottr bus_size_t o;
1203 1.12 scottr u_char *dst;
1204 1.10 briggs {
1205 1.12 scottr int i, do_bbr;
1206 1.12 scottr u_char b;
1207 1.10 briggs
1208 1.10 briggs /*
1209 1.10 briggs * For reasons known only to Apple, MAC addresses in the ethernet
1210 1.10 briggs * PROM are stored in Token Ring (IEEE 802.5) format, that is
1211 1.10 briggs * with all of the bits in each byte reversed (canonical bit format).
1212 1.10 briggs * When the address is read out it must be reversed to ethernet format
1213 1.10 briggs * before use.
1214 1.10 briggs *
1215 1.10 briggs * Apple has been assigned OUI's 08:00:07 and 00:a0:40. All onboard
1216 1.10 briggs * ethernet addresses on 68K machines should be in one of these
1217 1.10 briggs * two ranges.
1218 1.10 briggs *
1219 1.10 briggs * Here is where it gets complicated.
1220 1.10 briggs *
1221 1.10 briggs * The PMac 7200, 7500, 8500, and 9500 accidentally had the PROM
1222 1.10 briggs * written in standard ethernet format. The MacOS accounted for this
1223 1.10 briggs * in these systems, and did not reverse the bytes. Some other
1224 1.10 briggs * networking utilities were not so forgiving, and got confused.
1225 1.10 briggs * "Some" of Apple's Nubus ethernet cards also had their bits
1226 1.10 briggs * burned in ethernet format.
1227 1.10 briggs *
1228 1.10 briggs * Apple petitioned the IEEE and was granted the 00:05:02 (bit reversal
1229 1.10 briggs * of 00:a0:40) as well. As of OpenTransport 1.1.1, Apple removed
1230 1.10 briggs * their workaround and now reverses the bits regardless of
1231 1.10 briggs * what kind of machine it is. So PMac systems and the affected
1232 1.10 briggs * Nubus cards now use 00:05:02, instead of the 00:a0:40 for which they
1233 1.10 briggs * were intended.
1234 1.10 briggs *
1235 1.10 briggs * See Apple Techinfo article TECHINFO-0020552, "OpenTransport 1.1.1
1236 1.10 briggs * and MacOS System 7.5.3 FAQ (10/96)" for more details.
1237 1.10 briggs */
1238 1.10 briggs do_bbr = 0;
1239 1.10 briggs b = bus_space_read_1(t, h, o);
1240 1.10 briggs if (b == 0x10)
1241 1.10 briggs do_bbr = 1;
1242 1.10 briggs dst[0] = (do_bbr) ? bbr(b) : b;
1243 1.10 briggs
1244 1.10 briggs for (i = 1 ; i < ETHER_ADDR_LEN ; i++) {
1245 1.10 briggs b = bus_space_read_1(t, h, o+i);
1246 1.10 briggs dst[i] = (do_bbr) ? bbr(b) : b;
1247 1.10 briggs }
1248 1.1 briggs }
1249