if_iy.c revision 1.16 1 1.16 thorpej /* $NetBSD: if_iy.c,v 1.16 1997/10/20 18:43:14 thorpej Exp $ */
2 1.1 is /* #define IYDEBUG */
3 1.1 is /* #define IYMEMDEBUG */
4 1.1 is /*-
5 1.1 is * Copyright (c) 1996 Ignatios Souvatzis.
6 1.1 is * All rights reserved.
7 1.1 is *
8 1.1 is * Redistribution and use in source and binary forms, with or without
9 1.1 is * modification, are permitted provided that the following conditions
10 1.1 is * are met:
11 1.1 is * 1. Redistributions of source code must retain the above copyright
12 1.1 is * notice, this list of conditions and the following disclaimer.
13 1.1 is * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 is * notice, this list of conditions and the following disclaimer in the
15 1.1 is * documentation and/or other materials provided with the distribution.
16 1.1 is * 3. All advertising materials mentioning features or use of this software
17 1.1 is * must display the following acknowledgement:
18 1.1 is * This product contains software developed by Ignatios Souvatzis for
19 1.1 is * the NetBSD project.
20 1.1 is * 4. The names of the author may not be used to endorse or promote products
21 1.1 is * derived from this software without specific prior written permission.
22 1.1 is *
23 1.1 is * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND
24 1.1 is * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 is * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 is * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE
27 1.1 is * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 is * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 is * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 is * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 is * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 is * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 is * SUCH DAMAGE.
34 1.1 is */
35 1.1 is
36 1.1 is #include "bpfilter.h"
37 1.14 explorer #include "rnd.h"
38 1.1 is
39 1.1 is #include <sys/param.h>
40 1.1 is #include <sys/systm.h>
41 1.1 is #include <sys/mbuf.h>
42 1.1 is #include <sys/buf.h>
43 1.1 is #include <sys/protosw.h>
44 1.1 is #include <sys/socket.h>
45 1.1 is #include <sys/ioctl.h>
46 1.1 is #include <sys/errno.h>
47 1.1 is #include <sys/syslog.h>
48 1.1 is #include <sys/device.h>
49 1.14 explorer #if NRND > 0
50 1.14 explorer #include <sys/rnd.h>
51 1.14 explorer #endif
52 1.1 is
53 1.1 is #include <net/if.h>
54 1.1 is #include <net/if_types.h>
55 1.1 is #include <net/if_dl.h>
56 1.10 is
57 1.10 is #include <net/if_ether.h>
58 1.1 is
59 1.1 is #if NBPFILTER > 0
60 1.1 is #include <net/bpf.h>
61 1.1 is #include <net/bpfdesc.h>
62 1.1 is #endif
63 1.1 is
64 1.1 is #ifdef INET
65 1.1 is #include <netinet/in.h>
66 1.1 is #include <netinet/in_systm.h>
67 1.1 is #include <netinet/in_var.h>
68 1.1 is #include <netinet/ip.h>
69 1.10 is #include <netinet/if_inarp.h>
70 1.1 is #endif
71 1.1 is
72 1.1 is #ifdef NS
73 1.1 is #include <netns/ns.h>
74 1.1 is #include <netns/ns_if.h>
75 1.1 is #endif
76 1.1 is
77 1.1 is #include <vm/vm.h>
78 1.1 is
79 1.1 is #include <machine/cpu.h>
80 1.6 is #include <machine/bus.h>
81 1.4 mycroft #include <machine/intr.h>
82 1.1 is
83 1.1 is #include <dev/isa/isareg.h>
84 1.1 is #include <dev/isa/isavar.h>
85 1.1 is #include <dev/ic/i82595reg.h>
86 1.1 is
87 1.10 is #define ETHER_MIN_LEN (ETHERMIN + sizeof(struct ether_header) + 4)
88 1.10 is #define ETHER_MAX_LEN (ETHERMTU + sizeof(struct ether_header) + 4)
89 1.1 is
90 1.1 is /*
91 1.1 is * Ethernet status, per interface.
92 1.1 is */
93 1.1 is struct iy_softc {
94 1.1 is struct device sc_dev;
95 1.1 is void *sc_ih;
96 1.1 is
97 1.9 thorpej bus_space_tag_t sc_iot;
98 1.9 thorpej bus_space_handle_t sc_ioh;
99 1.6 is
100 1.10 is struct ethercom sc_ethercom;
101 1.1 is
102 1.1 is int mappedirq;
103 1.1 is
104 1.1 is int hard_vers;
105 1.1 is
106 1.1 is int promisc;
107 1.1 is
108 1.1 is int sram, tx_size, rx_size;
109 1.1 is
110 1.1 is int tx_start, tx_end, tx_last;
111 1.1 is int rx_start;
112 1.1 is
113 1.1 is #ifdef IYDEBUG
114 1.1 is int sc_debug;
115 1.1 is #endif
116 1.14 explorer
117 1.14 explorer #if NRND > 0
118 1.14 explorer rndsource_element_t rnd_source;
119 1.14 explorer #endif
120 1.1 is };
121 1.1 is
122 1.2 thorpej void iywatchdog __P((struct ifnet *));
123 1.1 is int iyioctl __P((struct ifnet *, u_long, caddr_t));
124 1.1 is int iyintr __P((void *));
125 1.1 is void iyinit __P((struct iy_softc *));
126 1.1 is void iystop __P((struct iy_softc *));
127 1.1 is void iystart __P((struct ifnet *));
128 1.1 is
129 1.1 is void iy_intr_rx __P((struct iy_softc *));
130 1.1 is void iy_intr_tx __P((struct iy_softc *));
131 1.1 is
132 1.1 is void iyreset __P((struct iy_softc *));
133 1.1 is void iy_readframe __P((struct iy_softc *, int));
134 1.1 is void iy_drop_packet_buffer __P((struct iy_softc *));
135 1.1 is void iy_find_mem_size __P((struct iy_softc *));
136 1.1 is void iyrint __P((struct iy_softc *));
137 1.1 is void iytint __P((struct iy_softc *));
138 1.1 is void iyxmit __P((struct iy_softc *));
139 1.9 thorpej void iyget __P((struct iy_softc *, bus_space_tag_t, bus_space_handle_t, int));
140 1.1 is void iyprobemem __P((struct iy_softc *));
141 1.10 is static __inline void eepromwritebit __P((bus_space_tag_t, bus_space_handle_t,
142 1.10 is int));
143 1.10 is static __inline int eepromreadbit __P((bus_space_tag_t, bus_space_handle_t));
144 1.1 is /*
145 1.1 is * void iymeminit __P((void *, struct iy_softc *));
146 1.1 is * static int iy_mc_setup __P((struct iy_softc *, void *));
147 1.1 is * static void iy_mc_reset __P((struct iy_softc *));
148 1.1 is */
149 1.1 is #ifdef IYDEBUGX
150 1.1 is void print_rbd __P((volatile struct iy_recv_buf_desc *));
151 1.1 is
152 1.1 is int in_ifrint = 0;
153 1.1 is int in_iftint = 0;
154 1.1 is #endif
155 1.1 is
156 1.1 is int iyprobe __P((struct device *, void *, void *));
157 1.1 is void iyattach __P((struct device *, struct device *, void *));
158 1.1 is
159 1.10 is static u_int16_t eepromread __P((bus_space_tag_t, bus_space_handle_t, int));
160 1.10 is
161 1.10 is static int eepromreadall __P((bus_space_tag_t, bus_space_handle_t, u_int16_t *,
162 1.10 is int));
163 1.1 is
164 1.1 is struct cfattach iy_ca = {
165 1.1 is sizeof(struct iy_softc), iyprobe, iyattach
166 1.1 is };
167 1.1 is
168 1.1 is struct cfdriver iy_cd = {
169 1.1 is NULL, "iy", DV_IFNET
170 1.1 is };
171 1.1 is
172 1.1 is static u_int8_t eepro_irqmap[] = EEPP_INTMAP;
173 1.1 is static u_int8_t eepro_revirqmap[] = EEPP_RINTMAP;
174 1.1 is
175 1.1 is int
176 1.1 is iyprobe(parent, match, aux)
177 1.1 is struct device *parent;
178 1.1 is void *match, *aux;
179 1.1 is {
180 1.1 is struct isa_attach_args *ia = aux;
181 1.1 is u_int16_t eaddr[8];
182 1.6 is
183 1.9 thorpej bus_space_tag_t iot;
184 1.9 thorpej bus_space_handle_t ioh;
185 1.6 is
186 1.1 is u_int8_t c, d;
187 1.1 is
188 1.9 thorpej iot = ia->ia_iot;
189 1.15 drochner
190 1.15 drochner if (ia->ia_iobase == IOBASEUNK)
191 1.15 drochner return 0;
192 1.15 drochner
193 1.9 thorpej if (bus_space_map(iot, ia->ia_iobase, 16, 0, &ioh))
194 1.10 is return 0;
195 1.1 is
196 1.1 is /* try to find the round robin sig: */
197 1.1 is
198 1.9 thorpej c = bus_space_read_1(iot, ioh, ID_REG);
199 1.10 is if ((c & ID_REG_MASK) != ID_REG_SIG)
200 1.6 is goto out;
201 1.1 is
202 1.9 thorpej d = bus_space_read_1(iot, ioh, ID_REG);
203 1.10 is if ((d & ID_REG_MASK) != ID_REG_SIG)
204 1.6 is goto out;
205 1.1 is
206 1.1 is if (((d-c) & R_ROBIN_BITS) != 0x40)
207 1.6 is goto out;
208 1.1 is
209 1.9 thorpej d = bus_space_read_1(iot, ioh, ID_REG);
210 1.10 is if ((d & ID_REG_MASK) != ID_REG_SIG)
211 1.6 is goto out;
212 1.1 is
213 1.1 is if (((d-c) & R_ROBIN_BITS) != 0x80)
214 1.6 is goto out;
215 1.1 is
216 1.9 thorpej d = bus_space_read_1(iot, ioh, ID_REG);
217 1.10 is if ((d & ID_REG_MASK) != ID_REG_SIG)
218 1.6 is goto out;
219 1.1 is
220 1.1 is if (((d-c) & R_ROBIN_BITS) != 0xC0)
221 1.6 is goto out;
222 1.1 is
223 1.9 thorpej d = bus_space_read_1(iot, ioh, ID_REG);
224 1.10 is if ((d & ID_REG_MASK) != ID_REG_SIG)
225 1.6 is goto out;
226 1.1 is
227 1.1 is if (((d-c) & R_ROBIN_BITS) != 0x00)
228 1.6 is goto out;
229 1.1 is
230 1.1 is #ifdef IYDEBUG
231 1.10 is printf("iyprobe verified working ID reg.\n");
232 1.1 is #endif
233 1.1 is
234 1.10 is if (eepromreadall(iot, ioh, eaddr, 8))
235 1.10 is goto out;
236 1.1 is
237 1.1 is if (ia->ia_irq == IRQUNK)
238 1.1 is ia->ia_irq = eepro_irqmap[eaddr[EEPPW1] & EEPP_Int];
239 1.1 is
240 1.1 is if (ia->ia_irq >= sizeof(eepro_revirqmap))
241 1.6 is goto out;
242 1.1 is
243 1.10 is if (eepro_revirqmap[ia->ia_irq] == 0xff)
244 1.6 is goto out;
245 1.1 is
246 1.1 is /* now lets reset the chip */
247 1.1 is
248 1.9 thorpej bus_space_write_1(iot, ioh, COMMAND_REG, RESET_CMD);
249 1.1 is delay(200);
250 1.1 is
251 1.1 is ia->ia_iosize = 16;
252 1.6 is
253 1.10 is bus_space_unmap(iot, ioh, 16);
254 1.1 is return 1; /* found */
255 1.6 is out:
256 1.9 thorpej bus_space_unmap(iot, ioh, 16);
257 1.6 is return 0;
258 1.1 is }
259 1.1 is
260 1.1 is void
261 1.1 is iyattach(parent, self, aux)
262 1.1 is struct device *parent, *self;
263 1.1 is void *aux;
264 1.1 is {
265 1.1 is struct iy_softc *sc = (void *)self;
266 1.1 is struct isa_attach_args *ia = aux;
267 1.10 is struct ifnet *ifp = &sc->sc_ethercom.ec_if;
268 1.9 thorpej bus_space_tag_t iot;
269 1.9 thorpej bus_space_handle_t ioh;
270 1.10 is unsigned temp;
271 1.10 is u_int16_t eaddr[8];
272 1.10 is u_int8_t myaddr[ETHER_ADDR_LEN];
273 1.10 is int eirq;
274 1.6 is
275 1.10 is iot = ia->ia_iot;
276 1.10 is
277 1.16 thorpej if (bus_space_map(iot, ia->ia_iobase, 16, 0, &ioh)) {
278 1.16 thorpej printf(": can't map i/o space\n");
279 1.16 thorpej return;
280 1.16 thorpej }
281 1.10 is
282 1.10 is sc->sc_iot = iot;
283 1.10 is sc->sc_ioh = ioh;
284 1.10 is
285 1.10 is sc->mappedirq = eepro_revirqmap[ia->ia_irq];
286 1.10 is
287 1.10 is /* now let's reset the chip */
288 1.10 is
289 1.10 is bus_space_write_1(iot, ioh, COMMAND_REG, RESET_CMD);
290 1.10 is delay(200);
291 1.10 is
292 1.10 is iyprobemem(sc);
293 1.1 is
294 1.2 thorpej bcopy(sc->sc_dev.dv_xname, ifp->if_xname, IFNAMSIZ);
295 1.2 thorpej ifp->if_softc = sc;
296 1.1 is ifp->if_start = iystart;
297 1.1 is ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_NOTRAILERS;
298 1.1 is /* XXX todo: | IFF_MULTICAST */
299 1.1 is
300 1.1 is ifp->if_ioctl = iyioctl;
301 1.1 is ifp->if_watchdog = iywatchdog;
302 1.1 is
303 1.10 is (void)eepromreadall(iot, ioh, eaddr, 8);
304 1.10 is sc->hard_vers = eaddr[EEPW6] & EEPP_BoardRev;
305 1.10 is
306 1.10 is #ifdef DIAGNOSTICS
307 1.10 is if ((eaddr[EEPPEther0] !=
308 1.10 is eepromread(iot, ioh, EEPPEther0a)) &&
309 1.10 is (eaddr[EEPPEther1] !=
310 1.10 is eepromread(iot, ioh, EEPPEther1a)) &&
311 1.10 is (eaddr[EEPPEther2] !=
312 1.10 is eepromread(iot, ioh, EEPPEther2a)))
313 1.10 is
314 1.10 is printf("EEPROM Ethernet address differs from copy\n");
315 1.10 is #endif
316 1.10 is
317 1.10 is myaddr[1] = eaddr[EEPPEther0] & 0xFF;
318 1.10 is myaddr[0] = eaddr[EEPPEther0] >> 8;
319 1.10 is myaddr[3] = eaddr[EEPPEther1] & 0xFF;
320 1.10 is myaddr[2] = eaddr[EEPPEther1] >> 8;
321 1.10 is myaddr[5] = eaddr[EEPPEther2] & 0xFF;
322 1.10 is myaddr[4] = eaddr[EEPPEther2] >> 8;
323 1.10 is
324 1.1 is /* Attach the interface. */
325 1.1 is if_attach(ifp);
326 1.10 is ether_ifattach(ifp, myaddr);
327 1.10 is printf(": address %s, rev. %d, %d kB\n",
328 1.10 is ether_sprintf(myaddr),
329 1.1 is sc->hard_vers, sc->sram/1024);
330 1.10 is
331 1.10 is eirq = eepro_irqmap[eaddr[EEPPW1] & EEPP_Int];
332 1.10 is if (eirq != ia->ia_irq)
333 1.10 is printf("%s: EEPROM irq setting %d ignored\n",
334 1.10 is sc->sc_dev.dv_xname, eirq);
335 1.10 is
336 1.1 is #if NBPFILTER > 0
337 1.10 is bpfattach(&ifp->if_bpf, ifp, DLT_EN10MB, sizeof(struct ether_header));
338 1.1 is #endif
339 1.1 is
340 1.1 is sc->sc_ih = isa_intr_establish(ia->ia_ic, ia->ia_irq, IST_EDGE,
341 1.1 is IPL_NET, iyintr, sc);
342 1.10 is
343 1.14 explorer #if NRND > 0
344 1.14 explorer rnd_attach_source(&sc->rnd_source, sc->sc_dev.dv_xname, RND_TYPE_NET);
345 1.14 explorer #endif
346 1.14 explorer
347 1.10 is temp = bus_space_read_1(iot, ioh, INT_NO_REG);
348 1.10 is bus_space_write_1(iot, ioh, INT_NO_REG, (temp & 0xf8) | sc->mappedirq);
349 1.1 is }
350 1.1 is
351 1.1 is void
352 1.1 is iystop(sc)
353 1.1 is struct iy_softc *sc;
354 1.1 is {
355 1.9 thorpej bus_space_tag_t iot;
356 1.9 thorpej bus_space_handle_t ioh;
357 1.1 is #ifdef IYDEBUG
358 1.1 is u_int p, v;
359 1.1 is #endif
360 1.1 is
361 1.9 thorpej iot = sc->sc_iot;
362 1.6 is ioh = sc->sc_ioh;
363 1.1 is
364 1.9 thorpej bus_space_write_1(iot, ioh, COMMAND_REG, RCV_DISABLE_CMD);
365 1.1 is
366 1.9 thorpej bus_space_write_1(iot, ioh, INT_MASK_REG, ALL_INTS);
367 1.9 thorpej bus_space_write_1(iot, ioh, STATUS_REG, ALL_INTS);
368 1.1 is
369 1.9 thorpej bus_space_write_1(iot, ioh, COMMAND_REG, RESET_CMD);
370 1.1 is delay(200);
371 1.1 is #ifdef IYDEBUG
372 1.8 christos printf("%s: dumping tx chain (st 0x%x end 0x%x last 0x%x)\n",
373 1.1 is sc->sc_dev.dv_xname, sc->tx_start, sc->tx_end, sc->tx_last);
374 1.1 is p = sc->tx_last;
375 1.1 is if (!p)
376 1.1 is p = sc->tx_start;
377 1.1 is do {
378 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, p);
379 1.9 thorpej v = bus_space_read_2(iot, ioh, MEM_PORT_REG);
380 1.8 christos printf("0x%04x: %b ", p, v, "\020\006Ab\010Dn");
381 1.9 thorpej v = bus_space_read_2(iot, ioh, MEM_PORT_REG);
382 1.8 christos printf("0x%b", v, "\020\6MAX_COL\7HRT_BEAT\010TX_DEF\011UND_RUN\012JERR\013LST_CRS\014LTCOL\016TX_OK\020COLL");
383 1.9 thorpej p = bus_space_read_2(iot, ioh, MEM_PORT_REG);
384 1.8 christos printf(" 0x%04x", p);
385 1.9 thorpej v = bus_space_read_2(iot, ioh, MEM_PORT_REG);
386 1.8 christos printf(" 0x%b\n", v, "\020\020Ch");
387 1.1 is
388 1.1 is } while (v & 0x8000);
389 1.1 is #endif
390 1.1 is sc->tx_start = sc->tx_end = sc->rx_size;
391 1.1 is sc->tx_last = 0;
392 1.10 is sc->sc_ethercom.ec_if.if_flags &= ~(IFF_RUNNING|IFF_OACTIVE);
393 1.1 is }
394 1.1 is
395 1.1 is void
396 1.1 is iyreset(sc)
397 1.1 is struct iy_softc *sc;
398 1.1 is {
399 1.1 is int s;
400 1.1 is s = splimp();
401 1.1 is iystop(sc);
402 1.1 is iyinit(sc);
403 1.1 is splx(s);
404 1.1 is }
405 1.1 is
406 1.1 is void
407 1.1 is iyinit(sc)
408 1.1 is struct iy_softc *sc;
409 1.1 is {
410 1.1 is int i;
411 1.1 is unsigned temp;
412 1.1 is struct ifnet *ifp;
413 1.9 thorpej bus_space_tag_t iot;
414 1.9 thorpej bus_space_handle_t ioh;
415 1.6 is
416 1.9 thorpej iot = sc->sc_iot;
417 1.6 is ioh = sc->sc_ioh;
418 1.1 is
419 1.10 is ifp = &sc->sc_ethercom.ec_if;
420 1.1 is #ifdef IYDEBUG
421 1.8 christos printf("ifp is %p\n", ifp);
422 1.1 is #endif
423 1.1 is
424 1.9 thorpej bus_space_write_1(iot, ioh, 0, BANK_SEL(2));
425 1.1 is
426 1.9 thorpej temp = bus_space_read_1(iot, ioh, EEPROM_REG);
427 1.1 is if (temp & 0x10)
428 1.9 thorpej bus_space_write_1(iot, ioh, EEPROM_REG, temp & ~0x10);
429 1.1 is
430 1.1 is for (i=0; i<6; ++i) {
431 1.10 is bus_space_write_1(iot, ioh, I_ADD(i), LLADDR(ifp->if_sadl)[i]);
432 1.1 is }
433 1.1 is
434 1.9 thorpej temp = bus_space_read_1(iot, ioh, REG1);
435 1.10 is bus_space_write_1(iot, ioh, REG1,
436 1.10 is temp | XMT_CHAIN_INT | XMT_CHAIN_ERRSTOP | RCV_DISCARD_BAD);
437 1.1 is
438 1.9 thorpej temp = bus_space_read_1(iot, ioh, RECV_MODES_REG);
439 1.9 thorpej bus_space_write_1(iot, ioh, RECV_MODES_REG, temp | MATCH_BRDCST);
440 1.1 is #ifdef IYDEBUG
441 1.8 christos printf("%s: RECV_MODES were %b set to %b\n",
442 1.1 is sc->sc_dev.dv_xname,
443 1.1 is temp, "\020\1PRMSC\2NOBRDST\3SEECRC\4LENGTH\5NOSaIns\6MultiIA",
444 1.1 is temp|MATCH_BRDCST,
445 1.1 is "\020\1PRMSC\2NOBRDST\3SEECRC\4LENGTH\5NOSaIns\6MultiIA");
446 1.1 is #endif
447 1.1 is
448 1.1 is
449 1.10 is delay(500000); /* for the hardware to test for the connector */
450 1.1 is
451 1.9 thorpej temp = bus_space_read_1(iot, ioh, MEDIA_SELECT);
452 1.1 is #ifdef IYDEBUG
453 1.8 christos printf("%s: media select was 0x%b ", sc->sc_dev.dv_xname,
454 1.1 is temp, "\020\1LnkInDis\2PolCor\3TPE\4JabberDis\5NoAport\6BNC");
455 1.1 is #endif
456 1.5 is temp = (temp & TEST_MODE_MASK);
457 1.6 is
458 1.5 is switch(ifp->if_flags & (IFF_LINK0 | IFF_LINK1)) {
459 1.5 is case IFF_LINK0:
460 1.6 is temp &= ~ (BNC_BIT | TPE_BIT);
461 1.6 is break;
462 1.5 is
463 1.5 is case IFF_LINK1:
464 1.10 is temp = (temp & ~TPE_BIT) | BNC_BIT;
465 1.6 is break;
466 1.6 is
467 1.5 is case IFF_LINK0|IFF_LINK1:
468 1.10 is temp = (temp & ~BNC_BIT) | TPE_BIT;
469 1.6 is break;
470 1.5 is default:
471 1.6 is /* nothing; leave as it is */
472 1.5 is }
473 1.5 is
474 1.6 is
475 1.9 thorpej bus_space_write_1(iot, ioh, MEDIA_SELECT, temp);
476 1.1 is #ifdef IYDEBUG
477 1.8 christos printf("changed to 0x%b\n",
478 1.1 is temp, "\020\1LnkInDis\2PolCor\3TPE\4JabberDis\5NoAport\6BNC");
479 1.1 is #endif
480 1.1 is
481 1.10 is bus_space_write_1(iot, ioh, 0, BANK_SEL(0));
482 1.10 is bus_space_write_1(iot, ioh, INT_MASK_REG, ALL_INTS);
483 1.9 thorpej bus_space_write_1(iot, ioh, 0, BANK_SEL(1));
484 1.1 is
485 1.9 thorpej temp = bus_space_read_1(iot, ioh, INT_NO_REG);
486 1.9 thorpej bus_space_write_1(iot, ioh, INT_NO_REG, (temp & 0xf8) | sc->mappedirq);
487 1.1 is
488 1.1 is #ifdef IYDEBUG
489 1.8 christos printf("%s: int no was %b\n", sc->sc_dev.dv_xname,
490 1.1 is temp, "\020\4bad_irq\010flash/boot present");
491 1.9 thorpej temp = bus_space_read_1(iot, ioh, INT_NO_REG);
492 1.8 christos printf("%s: int no now 0x%02x\n", sc->sc_dev.dv_xname,
493 1.1 is temp, "\020\4BAD IRQ\010flash/boot present");
494 1.1 is #endif
495 1.1 is
496 1.1 is
497 1.9 thorpej bus_space_write_1(iot, ioh, RCV_LOWER_LIMIT_REG, 0);
498 1.9 thorpej bus_space_write_1(iot, ioh, RCV_UPPER_LIMIT_REG, (sc->rx_size - 2) >> 8);
499 1.9 thorpej bus_space_write_1(iot, ioh, XMT_LOWER_LIMIT_REG, sc->rx_size >> 8);
500 1.9 thorpej bus_space_write_1(iot, ioh, XMT_UPPER_LIMIT_REG, sc->sram >> 8);
501 1.1 is
502 1.9 thorpej temp = bus_space_read_1(iot, ioh, REG1);
503 1.1 is #ifdef IYDEBUG
504 1.8 christos printf("%s: HW access is %b\n", sc->sc_dev.dv_xname,
505 1.1 is temp, "\020\2WORD_WIDTH\010INT_ENABLE");
506 1.1 is #endif
507 1.9 thorpej bus_space_write_1(iot, ioh, REG1, temp | INT_ENABLE); /* XXX what about WORD_WIDTH? */
508 1.1 is
509 1.1 is #ifdef IYDEBUG
510 1.9 thorpej temp = bus_space_read_1(iot, ioh, REG1);
511 1.8 christos printf("%s: HW access is %b\n", sc->sc_dev.dv_xname,
512 1.1 is temp, "\020\2WORD_WIDTH\010INT_ENABLE");
513 1.1 is #endif
514 1.1 is
515 1.9 thorpej bus_space_write_1(iot, ioh, 0, BANK_SEL(0));
516 1.1 is
517 1.9 thorpej bus_space_write_1(iot, ioh, INT_MASK_REG, ALL_INTS & ~(RX_BIT|TX_BIT));
518 1.9 thorpej bus_space_write_1(iot, ioh, STATUS_REG, ALL_INTS); /* clear ints */
519 1.1 is
520 1.9 thorpej bus_space_write_2(iot, ioh, RCV_START_LOW, 0);
521 1.9 thorpej bus_space_write_2(iot, ioh, RCV_STOP_LOW, sc->rx_size - 2);
522 1.1 is sc->rx_start = 0;
523 1.1 is
524 1.9 thorpej bus_space_write_1(iot, ioh, 0, SEL_RESET_CMD);
525 1.10 is delay(200);
526 1.1 is
527 1.9 thorpej bus_space_write_2(iot, ioh, XMT_ADDR_REG, sc->rx_size);
528 1.1 is
529 1.1 is sc->tx_start = sc->tx_end = sc->rx_size;
530 1.1 is sc->tx_last = 0;
531 1.1 is
532 1.9 thorpej bus_space_write_1(iot, ioh, 0, RCV_ENABLE_CMD);
533 1.1 is
534 1.1 is ifp->if_flags |= IFF_RUNNING;
535 1.1 is ifp->if_flags &= ~IFF_OACTIVE;
536 1.1 is }
537 1.1 is
538 1.1 is void
539 1.1 is iystart(ifp)
540 1.1 is struct ifnet *ifp;
541 1.1 is {
542 1.1 is struct iy_softc *sc;
543 1.6 is
544 1.1 is
545 1.1 is struct mbuf *m0, *m;
546 1.1 is u_int len, pad, last, end;
547 1.1 is u_int llen, residual;
548 1.1 is int avail;
549 1.1 is caddr_t data;
550 1.1 is u_int16_t resval, stat;
551 1.9 thorpej bus_space_tag_t iot;
552 1.9 thorpej bus_space_handle_t ioh;
553 1.1 is
554 1.1 is #ifdef IYDEBUG
555 1.8 christos printf("iystart called\n");
556 1.1 is #endif
557 1.1 is if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
558 1.1 is return;
559 1.1 is
560 1.2 thorpej sc = ifp->if_softc;
561 1.9 thorpej iot = sc->sc_iot;
562 1.6 is ioh = sc->sc_ioh;
563 1.1 is
564 1.1 is while ((m0 = ifp->if_snd.ifq_head) != NULL) {
565 1.1 is #ifdef IYDEBUG
566 1.8 christos printf("%s: trying to write another packet to the hardware\n",
567 1.1 is sc->sc_dev.dv_xname);
568 1.1 is #endif
569 1.1 is
570 1.1 is /* We need to use m->m_pkthdr.len, so require the header */
571 1.1 is if ((m0->m_flags & M_PKTHDR) == 0)
572 1.1 is panic("iystart: no header mbuf");
573 1.1 is
574 1.1 is len = m0->m_pkthdr.len;
575 1.1 is pad = len & 1;
576 1.1 is
577 1.1 is #ifdef IYDEBUG
578 1.8 christos printf("%s: length is %d.\n", sc->sc_dev.dv_xname, len);
579 1.1 is #endif
580 1.1 is if (len < ETHER_MIN_LEN) {
581 1.1 is pad = ETHER_MIN_LEN - len;
582 1.1 is }
583 1.1 is
584 1.1 is if (len + pad > ETHER_MAX_LEN) {
585 1.1 is /* packet is obviously too large: toss it */
586 1.1 is ++ifp->if_oerrors;
587 1.1 is IF_DEQUEUE(&ifp->if_snd, m0);
588 1.1 is m_freem(m0);
589 1.1 is continue;
590 1.1 is }
591 1.1 is
592 1.1 is #if NBPFILTER > 0
593 1.1 is if (ifp->if_bpf)
594 1.1 is bpf_mtap(ifp->if_bpf, m0);
595 1.1 is #endif
596 1.1 is
597 1.1 is avail = sc->tx_start - sc->tx_end;
598 1.1 is if (avail <= 0)
599 1.1 is avail += sc->tx_size;
600 1.1 is
601 1.1 is #ifdef IYDEBUG
602 1.8 christos printf("%s: avail is %d.\n", sc->sc_dev.dv_xname, avail);
603 1.1 is #endif
604 1.1 is /*
605 1.1 is * we MUST RUN at splnet here ---
606 1.1 is * XXX todo: or even turn off the boards ints ??? hm...
607 1.1 is */
608 1.1 is
609 1.1 is /* See if there is room to put another packet in the buffer. */
610 1.1 is
611 1.1 is if ((len+pad+2*I595_XMT_HDRLEN) > avail) {
612 1.8 christos printf("%s: len = %d, avail = %d, setting OACTIVE\n",
613 1.1 is sc->sc_dev.dv_xname, len, avail);
614 1.1 is ifp->if_flags |= IFF_OACTIVE;
615 1.1 is return;
616 1.1 is }
617 1.1 is
618 1.1 is /* we know it fits in the hardware now, so dequeue it */
619 1.1 is IF_DEQUEUE(&ifp->if_snd, m0);
620 1.1 is
621 1.1 is last = sc->tx_end;
622 1.1 is end = last + pad + len + I595_XMT_HDRLEN;
623 1.1 is
624 1.1 is if (end >= sc->sram) {
625 1.1 is if ((sc->sram - last) <= I595_XMT_HDRLEN) {
626 1.1 is /* keep header in one piece */
627 1.1 is last = sc->rx_size;
628 1.1 is end = last + pad + len + I595_XMT_HDRLEN;
629 1.1 is } else
630 1.1 is end -= sc->tx_size;
631 1.1 is }
632 1.1 is
633 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, last);
634 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, XMT_CMD);
635 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, 0);
636 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, 0);
637 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, len + pad);
638 1.1 is
639 1.1 is residual = resval = 0;
640 1.1 is
641 1.1 is while ((m = m0)!=0) {
642 1.1 is data = mtod(m, caddr_t);
643 1.1 is llen = m->m_len;
644 1.1 is if (residual) {
645 1.1 is #ifdef IYDEBUG
646 1.8 christos printf("%s: merging residual with next mbuf.\n",
647 1.1 is sc->sc_dev.dv_xname);
648 1.1 is #endif
649 1.1 is resval |= *data << 8;
650 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, resval);
651 1.1 is --llen;
652 1.1 is ++data;
653 1.1 is }
654 1.1 is if (llen > 1)
655 1.9 thorpej bus_space_write_multi_2(iot, ioh, MEM_PORT_REG,
656 1.6 is data, llen>>1);
657 1.1 is residual = llen & 1;
658 1.1 is if (residual) {
659 1.1 is resval = *(data + llen - 1);
660 1.1 is #ifdef IYDEBUG
661 1.8 christos printf("%s: got odd mbuf to send.\n",
662 1.1 is sc->sc_dev.dv_xname);
663 1.1 is #endif
664 1.1 is }
665 1.1 is
666 1.1 is MFREE(m, m0);
667 1.1 is }
668 1.1 is
669 1.1 is if (residual)
670 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, resval);
671 1.1 is
672 1.1 is pad >>= 1;
673 1.1 is while (pad-- > 0)
674 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, 0);
675 1.1 is
676 1.1 is #ifdef IYDEBUG
677 1.8 christos printf("%s: new last = 0x%x, end = 0x%x.\n",
678 1.1 is sc->sc_dev.dv_xname, last, end);
679 1.8 christos printf("%s: old start = 0x%x, end = 0x%x, last = 0x%x\n",
680 1.1 is sc->sc_dev.dv_xname, sc->tx_start, sc->tx_end, sc->tx_last);
681 1.1 is #endif
682 1.1 is
683 1.1 is if (sc->tx_start != sc->tx_end) {
684 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, sc->tx_last + XMT_COUNT);
685 1.9 thorpej stat = bus_space_read_2(iot, ioh, MEM_PORT_REG);
686 1.1 is
687 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, sc->tx_last + XMT_CHAIN);
688 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, last);
689 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, stat | CHAIN);
690 1.1 is #ifdef IYDEBUG
691 1.8 christos printf("%s: setting 0x%x to 0x%x\n",
692 1.1 is sc->sc_dev.dv_xname, sc->tx_last + XMT_COUNT,
693 1.1 is stat | CHAIN);
694 1.1 is #endif
695 1.1 is }
696 1.9 thorpej stat = bus_space_read_2(iot, ioh, MEM_PORT_REG); /* dummy read */
697 1.1 is
698 1.1 is /* XXX todo: enable ints here if disabled */
699 1.1 is
700 1.1 is ++ifp->if_opackets;
701 1.1 is
702 1.1 is if (sc->tx_start == sc->tx_end) {
703 1.9 thorpej bus_space_write_2(iot, ioh, XMT_ADDR_REG, last);
704 1.9 thorpej bus_space_write_1(iot, ioh, 0, XMT_CMD);
705 1.1 is sc->tx_start = last;
706 1.1 is #ifdef IYDEBUG
707 1.8 christos printf("%s: writing 0x%x to XAR and giving XCMD\n",
708 1.1 is sc->sc_dev.dv_xname, last);
709 1.1 is #endif
710 1.1 is } else {
711 1.9 thorpej bus_space_write_1(iot, ioh, 0, RESUME_XMT_CMD);
712 1.1 is #ifdef IYDEBUG
713 1.8 christos printf("%s: giving RESUME_XCMD\n",
714 1.1 is sc->sc_dev.dv_xname);
715 1.1 is #endif
716 1.1 is }
717 1.1 is sc->tx_last = last;
718 1.1 is sc->tx_end = end;
719 1.1 is }
720 1.1 is }
721 1.1 is
722 1.1 is
723 1.1 is static __inline void
724 1.10 is eepromwritebit(iot, ioh, what)
725 1.9 thorpej bus_space_tag_t iot;
726 1.9 thorpej bus_space_handle_t ioh;
727 1.6 is int what;
728 1.1 is {
729 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, what);
730 1.1 is delay(1);
731 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, what|EESK);
732 1.1 is delay(1);
733 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, what);
734 1.1 is delay(1);
735 1.1 is }
736 1.1 is
737 1.1 is static __inline int
738 1.10 is eepromreadbit(iot, ioh)
739 1.9 thorpej bus_space_tag_t iot;
740 1.9 thorpej bus_space_handle_t ioh;
741 1.1 is {
742 1.1 is int b;
743 1.1 is
744 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, EECS|EESK);
745 1.1 is delay(1);
746 1.10 is b = bus_space_read_1(iot, ioh, EEPROM_REG);
747 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, EECS);
748 1.1 is delay(1);
749 1.1 is
750 1.1 is return ((b & EEDO) != 0);
751 1.1 is }
752 1.1 is
753 1.1 is static u_int16_t
754 1.10 is eepromread(iot, ioh, offset)
755 1.9 thorpej bus_space_tag_t iot;
756 1.9 thorpej bus_space_handle_t ioh;
757 1.6 is int offset;
758 1.1 is {
759 1.1 is volatile int i;
760 1.1 is volatile int j;
761 1.1 is volatile u_int16_t readval;
762 1.1 is
763 1.9 thorpej bus_space_write_1(iot, ioh, 0, BANK_SEL(2));
764 1.1 is delay(1);
765 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, EECS); /* XXXX??? */
766 1.1 is delay(1);
767 1.1 is
768 1.10 is eepromwritebit(iot, ioh, EECS|EEDI);
769 1.10 is eepromwritebit(iot, ioh, EECS|EEDI);
770 1.10 is eepromwritebit(iot, ioh, EECS);
771 1.1 is
772 1.1 is for (j=5; j>=0; --j) {
773 1.1 is if ((offset>>j) & 1)
774 1.10 is eepromwritebit(iot, ioh, EECS|EEDI);
775 1.1 is else
776 1.10 is eepromwritebit(iot, ioh, EECS);
777 1.1 is }
778 1.1 is
779 1.1 is for (readval=0, i=0; i<16; ++i) {
780 1.1 is readval<<=1;
781 1.10 is readval |= eepromreadbit(iot, ioh);
782 1.1 is }
783 1.1 is
784 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, 0|EESK);
785 1.1 is delay(1);
786 1.10 is bus_space_write_1(iot, ioh, EEPROM_REG, 0);
787 1.1 is
788 1.10 is bus_space_write_1(iot, ioh, COMMAND_REG, BANK_SEL(0));
789 1.1 is
790 1.1 is return readval;
791 1.1 is }
792 1.1 is
793 1.1 is /*
794 1.1 is * Device timeout/watchdog routine. Entered if the device neglects to generate
795 1.1 is * an interrupt after a transmit has been started on it.
796 1.1 is */
797 1.1 is void
798 1.2 thorpej iywatchdog(ifp)
799 1.3 is struct ifnet *ifp;
800 1.1 is {
801 1.2 thorpej struct iy_softc *sc = ifp->if_softc;
802 1.1 is
803 1.1 is log(LOG_ERR, "%s: device timeout\n", sc->sc_dev.dv_xname);
804 1.10 is ++sc->sc_ethercom.ec_if.if_oerrors;
805 1.1 is iyreset(sc);
806 1.1 is }
807 1.1 is
808 1.1 is /*
809 1.1 is * What to do upon receipt of an interrupt.
810 1.1 is */
811 1.1 is int
812 1.1 is iyintr(arg)
813 1.1 is void *arg;
814 1.1 is {
815 1.1 is struct iy_softc *sc = arg;
816 1.9 thorpej bus_space_tag_t iot;
817 1.9 thorpej bus_space_handle_t ioh;
818 1.6 is
819 1.1 is register u_short status;
820 1.1 is
821 1.9 thorpej iot = sc->sc_iot;
822 1.6 is ioh = sc->sc_ioh;
823 1.6 is
824 1.9 thorpej status = bus_space_read_1(iot, ioh, STATUS_REG);
825 1.1 is #ifdef IYDEBUG
826 1.1 is if (status & ALL_INTS) {
827 1.8 christos printf("%s: got interupt %b", sc->sc_dev.dv_xname, status,
828 1.1 is "\020\1RX_STP\2RX\3TX\4EXEC");
829 1.1 is if (status & EXEC_INT)
830 1.9 thorpej printf(" event %b\n", bus_space_read_1(iot, ioh, 0),
831 1.1 is "\020\6ABORT");
832 1.1 is else
833 1.8 christos printf("\n");
834 1.1 is }
835 1.1 is #endif
836 1.10 is if (((status & (RX_INT | TX_INT)) == 0))
837 1.1 is return 0;
838 1.1 is
839 1.1 is if (status & RX_INT) {
840 1.1 is iy_intr_rx(sc);
841 1.9 thorpej bus_space_write_1(iot, ioh, STATUS_REG, RX_INT);
842 1.1 is } else if (status & TX_INT) {
843 1.1 is iy_intr_tx(sc);
844 1.9 thorpej bus_space_write_1(iot, ioh, STATUS_REG, TX_INT);
845 1.1 is }
846 1.14 explorer
847 1.14 explorer #if NRND > 0
848 1.14 explorer rnd_add_uint32(&sc->rnd_source, status);
849 1.14 explorer #endif
850 1.14 explorer
851 1.1 is return 1;
852 1.1 is }
853 1.1 is
854 1.1 is void
855 1.9 thorpej iyget(sc, iot, ioh, rxlen)
856 1.6 is struct iy_softc *sc;
857 1.9 thorpej bus_space_tag_t iot;
858 1.9 thorpej bus_space_handle_t ioh;
859 1.6 is int rxlen;
860 1.1 is {
861 1.1 is struct mbuf *m, *top, **mp;
862 1.1 is struct ether_header *eh;
863 1.1 is struct ifnet *ifp;
864 1.1 is int len;
865 1.1 is
866 1.10 is ifp = &sc->sc_ethercom.ec_if;
867 1.1 is
868 1.13 mycroft MGETHDR(m, M_DONTWAIT, MT_DATA);
869 1.13 mycroft if (m == 0)
870 1.13 mycroft goto dropped;
871 1.1 is m->m_pkthdr.rcvif = ifp;
872 1.1 is m->m_pkthdr.len = rxlen;
873 1.1 is len = MHLEN;
874 1.1 is top = 0;
875 1.1 is mp = ⊤
876 1.1 is
877 1.1 is while (rxlen > 0) {
878 1.1 is if (top) {
879 1.13 mycroft MGET(m, M_DONTWAIT, MT_DATA);
880 1.1 is if (m == 0) {
881 1.13 mycroft m_freem(top);
882 1.13 mycroft goto dropped;
883 1.1 is }
884 1.1 is len = MLEN;
885 1.1 is }
886 1.1 is if (rxlen >= MINCLSIZE) {
887 1.1 is MCLGET(m, M_DONTWAIT);
888 1.12 mycroft if ((m->m_flags & M_EXT) == 0) {
889 1.13 mycroft m_free(m);
890 1.11 mycroft m_freem(top);
891 1.11 mycroft goto dropped;
892 1.11 mycroft }
893 1.11 mycroft len = MCLBYTES;
894 1.1 is }
895 1.1 is len = min(rxlen, len);
896 1.1 is if (len > 1) {
897 1.1 is len &= ~1;
898 1.6 is
899 1.9 thorpej bus_space_read_multi_2(iot, ioh, MEM_PORT_REG,
900 1.6 is mtod(m, caddr_t), len/2);
901 1.1 is } else {
902 1.1 is #ifdef IYDEBUG
903 1.8 christos printf("%s: received odd mbuf\n", sc->sc_dev.dv_xname);
904 1.1 is #endif
905 1.9 thorpej *(mtod(m, caddr_t)) = bus_space_read_2(iot, ioh,
906 1.6 is MEM_PORT_REG);
907 1.1 is }
908 1.1 is m->m_len = len;
909 1.1 is rxlen -= len;
910 1.1 is *mp = m;
911 1.1 is mp = &m->m_next;
912 1.1 is }
913 1.1 is /* XXX receive the top here */
914 1.1 is ++ifp->if_ipackets;
915 1.1 is
916 1.1 is eh = mtod(top, struct ether_header *);
917 1.1 is
918 1.1 is #if NBPFILTER > 0
919 1.1 is if (ifp->if_bpf) {
920 1.1 is bpf_mtap(ifp->if_bpf, top);
921 1.1 is if ((ifp->if_flags & IFF_PROMISC) &&
922 1.1 is (eh->ether_dhost[0] & 1) == 0 &&
923 1.10 is bcmp(eh->ether_dhost,
924 1.10 is LLADDR(sc->sc_ethercom.ec_if.if_sadl),
925 1.10 is sizeof(eh->ether_dhost)) != 0) {
926 1.10 is
927 1.1 is m_freem(top);
928 1.1 is return;
929 1.1 is }
930 1.1 is }
931 1.1 is #endif
932 1.1 is m_adj(top, sizeof(struct ether_header));
933 1.1 is ether_input(ifp, eh, top);
934 1.1 is return;
935 1.1 is
936 1.1 is dropped:
937 1.1 is ++ifp->if_ierrors;
938 1.1 is return;
939 1.1 is }
940 1.1 is void
941 1.1 is iy_intr_rx(sc)
942 1.1 is struct iy_softc *sc;
943 1.1 is {
944 1.1 is struct ifnet *ifp;
945 1.9 thorpej bus_space_tag_t iot;
946 1.9 thorpej bus_space_handle_t ioh;
947 1.6 is
948 1.1 is u_int rxadrs, rxevnt, rxstatus, rxnext, rxlen;
949 1.1 is
950 1.9 thorpej iot = sc->sc_iot;
951 1.6 is ioh = sc->sc_ioh;
952 1.10 is ifp = &sc->sc_ethercom.ec_if;
953 1.1 is
954 1.1 is rxadrs = sc->rx_start;
955 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, rxadrs);
956 1.9 thorpej rxevnt = bus_space_read_2(iot, ioh, MEM_PORT_REG);
957 1.1 is rxnext = 0;
958 1.1 is
959 1.1 is while (rxevnt == RCV_DONE) {
960 1.9 thorpej rxstatus = bus_space_read_2(iot, ioh, MEM_PORT_REG);
961 1.9 thorpej rxnext = bus_space_read_2(iot, ioh, MEM_PORT_REG);
962 1.9 thorpej rxlen = bus_space_read_2(iot, ioh, MEM_PORT_REG);
963 1.1 is #ifdef IYDEBUG
964 1.8 christos printf("%s: pck at 0x%04x stat %b next 0x%x len 0x%x\n",
965 1.1 is sc->sc_dev.dv_xname, rxadrs, rxstatus,
966 1.1 is "\020\1RCLD\2IA_MCH\010SHORT\011OVRN\013ALGERR"
967 1.1 is "\014CRCERR\015LENERR\016RCVOK\020TYP",
968 1.1 is rxnext, rxlen);
969 1.1 is #endif
970 1.9 thorpej iyget(sc, iot, ioh, rxlen);
971 1.1 is
972 1.1 is /* move stop address */
973 1.9 thorpej bus_space_write_2(iot, ioh, RCV_STOP_LOW,
974 1.1 is rxnext == 0 ? sc->rx_size - 2 : rxnext - 2);
975 1.1 is
976 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, rxnext);
977 1.1 is rxadrs = rxnext;
978 1.9 thorpej rxevnt = bus_space_read_2(iot, ioh, MEM_PORT_REG);
979 1.1 is }
980 1.1 is sc->rx_start = rxnext;
981 1.1 is }
982 1.1 is
983 1.1 is void
984 1.1 is iy_intr_tx(sc)
985 1.1 is struct iy_softc *sc;
986 1.1 is {
987 1.9 thorpej bus_space_tag_t iot;
988 1.9 thorpej bus_space_handle_t ioh;
989 1.1 is struct ifnet *ifp;
990 1.1 is u_int txstatus, txstat2, txlen, txnext;
991 1.1 is
992 1.10 is ifp = &sc->sc_ethercom.ec_if;
993 1.9 thorpej iot = sc->sc_iot;
994 1.6 is ioh = sc->sc_ioh;
995 1.6 is
996 1.1 is while (sc->tx_start != sc->tx_end) {
997 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, sc->tx_start);
998 1.9 thorpej txstatus = bus_space_read_2(iot, ioh, MEM_PORT_REG);
999 1.1 is if ((txstatus & (TX_DONE|CMD_MASK)) != (TX_DONE|XMT_CMD))
1000 1.1 is break;
1001 1.1 is
1002 1.9 thorpej txstat2 = bus_space_read_2(iot, ioh, MEM_PORT_REG);
1003 1.9 thorpej txnext = bus_space_read_2(iot, ioh, MEM_PORT_REG);
1004 1.9 thorpej txlen = bus_space_read_2(iot, ioh, MEM_PORT_REG);
1005 1.1 is #ifdef IYDEBUG
1006 1.8 christos printf("txstat 0x%x stat2 0x%b next 0x%x len 0x%x\n",
1007 1.1 is txstatus, txstat2, "\020\6MAX_COL\7HRT_BEAT\010TX_DEF"
1008 1.1 is "\011UND_RUN\012JERR\013LST_CRS\014LTCOL\016TX_OK\020COLL",
1009 1.1 is txnext, txlen);
1010 1.1 is #endif
1011 1.1 is if (txlen & CHAIN)
1012 1.1 is sc->tx_start = txnext;
1013 1.1 is else
1014 1.1 is sc->tx_start = sc->tx_end;
1015 1.1 is ifp->if_flags &= ~IFF_OACTIVE;
1016 1.1 is
1017 1.1 is if ((txstat2 & 0x2000) == 0)
1018 1.1 is ++ifp->if_oerrors;
1019 1.1 is if (txstat2 & 0x000f)
1020 1.1 is ifp->if_oerrors += txstat2 & 0x000f;
1021 1.1 is }
1022 1.1 is ifp->if_flags &= ~IFF_OACTIVE;
1023 1.1 is }
1024 1.1 is
1025 1.1 is #if 0
1026 1.1 is /*
1027 1.1 is * Compare two Ether/802 addresses for equality, inlined and unrolled for
1028 1.1 is * speed. I'd love to have an inline assembler version of this...
1029 1.1 is */
1030 1.1 is static inline int
1031 1.1 is ether_equal(one, two)
1032 1.1 is u_char *one, *two;
1033 1.1 is {
1034 1.1 is
1035 1.1 is if (one[0] != two[0] || one[1] != two[1] || one[2] != two[2] ||
1036 1.1 is one[3] != two[3] || one[4] != two[4] || one[5] != two[5])
1037 1.1 is return 0;
1038 1.1 is return 1;
1039 1.1 is }
1040 1.1 is
1041 1.1 is /*
1042 1.1 is * Check for a valid address. to_bpf is filled in with one of the following:
1043 1.1 is * 0 -> BPF doesn't get this packet
1044 1.1 is * 1 -> BPF does get this packet
1045 1.1 is * 2 -> BPF does get this packet, but we don't
1046 1.1 is * Return value is true if the packet is for us, and false otherwise.
1047 1.1 is *
1048 1.1 is * This routine is a mess, but it's also critical that it be as fast
1049 1.1 is * as possible. It could be made cleaner if we can assume that the
1050 1.1 is * only client which will fiddle with IFF_PROMISC is BPF. This is
1051 1.1 is * probably a good assumption, but we do not make it here. (Yet.)
1052 1.1 is */
1053 1.1 is static inline int
1054 1.1 is check_eh(sc, eh, to_bpf)
1055 1.1 is struct iy_softc *sc;
1056 1.1 is struct ether_header *eh;
1057 1.1 is int *to_bpf;
1058 1.1 is {
1059 1.1 is int i;
1060 1.1 is
1061 1.1 is switch (sc->promisc) {
1062 1.1 is case IFF_ALLMULTI:
1063 1.1 is /*
1064 1.1 is * Receiving all multicasts, but no unicasts except those
1065 1.1 is * destined for us.
1066 1.1 is */
1067 1.1 is #if NBPFILTER > 0
1068 1.10 is *to_bpf = (sc->sc_ethercom.ec_if.iy_bpf != 0); /* BPF gets this packet if anybody cares */
1069 1.1 is #endif
1070 1.1 is if (eh->ether_dhost[0] & 1)
1071 1.1 is return 1;
1072 1.10 is if (ether_equal(eh->ether_dhost,
1073 1.10 is LLADDR(sc->sc_ethercom.ec_if.if_sadl)))
1074 1.1 is return 1;
1075 1.1 is return 0;
1076 1.1 is
1077 1.1 is case IFF_PROMISC:
1078 1.1 is /*
1079 1.1 is * Receiving all packets. These need to be passed on to BPF.
1080 1.1 is */
1081 1.1 is #if NBPFILTER > 0
1082 1.10 is *to_bpf = (sc->sc_ethercom.ec_if.iy_bpf != 0);
1083 1.1 is #endif
1084 1.1 is /* If for us, accept and hand up to BPF */
1085 1.10 is if (ether_equal(eh->ether_dhost, LLADDR(sc->sc_ethercom.ec_if.if_sadl)))
1086 1.1 is return 1;
1087 1.1 is
1088 1.1 is #if NBPFILTER > 0
1089 1.1 is if (*to_bpf)
1090 1.1 is *to_bpf = 2; /* we don't need to see it */
1091 1.1 is #endif
1092 1.1 is
1093 1.1 is /*
1094 1.1 is * Not a multicast, so BPF wants to see it but we don't.
1095 1.1 is */
1096 1.1 is if (!(eh->ether_dhost[0] & 1))
1097 1.1 is return 1;
1098 1.1 is
1099 1.1 is /*
1100 1.1 is * If it's one of our multicast groups, accept it and pass it
1101 1.1 is * up.
1102 1.1 is */
1103 1.1 is for (i = 0; i < sc->mcast_count; i++) {
1104 1.1 is if (ether_equal(eh->ether_dhost, (u_char *)&sc->mcast_addrs[i])) {
1105 1.1 is #if NBPFILTER > 0
1106 1.1 is if (*to_bpf)
1107 1.1 is *to_bpf = 1;
1108 1.1 is #endif
1109 1.1 is return 1;
1110 1.1 is }
1111 1.1 is }
1112 1.1 is return 1;
1113 1.1 is
1114 1.1 is case IFF_ALLMULTI | IFF_PROMISC:
1115 1.1 is /*
1116 1.1 is * Acting as a multicast router, and BPF running at the same
1117 1.1 is * time. Whew! (Hope this is a fast machine...)
1118 1.1 is */
1119 1.1 is #if NBPFILTER > 0
1120 1.10 is *to_bpf = (sc->sc_ethercom.ec_if.iy_bpf != 0);
1121 1.1 is #endif
1122 1.1 is /* We want to see multicasts. */
1123 1.1 is if (eh->ether_dhost[0] & 1)
1124 1.1 is return 1;
1125 1.1 is
1126 1.1 is /* We want to see our own packets */
1127 1.10 is if (ether_equal(eh->ether_dhost, LLADDR(sc->sc_ethercom.ec_if.if_sadl)))
1128 1.1 is return 1;
1129 1.1 is
1130 1.1 is /* Anything else goes to BPF but nothing else. */
1131 1.1 is #if NBPFILTER > 0
1132 1.1 is if (*to_bpf)
1133 1.1 is *to_bpf = 2;
1134 1.1 is #endif
1135 1.1 is return 1;
1136 1.1 is
1137 1.1 is case 0:
1138 1.1 is /*
1139 1.1 is * Only accept unicast packets destined for us, or multicasts
1140 1.1 is * for groups that we belong to. For now, we assume that the
1141 1.1 is * '586 will only return packets that we asked it for. This
1142 1.1 is * isn't strictly true (it uses hashing for the multicast
1143 1.1 is * filter), but it will do in this case, and we want to get out
1144 1.1 is * of here as quickly as possible.
1145 1.1 is */
1146 1.1 is #if NBPFILTER > 0
1147 1.10 is *to_bpf = (sc->sc_ethercom.ec_if.iy_bpf != 0);
1148 1.1 is #endif
1149 1.1 is return 1;
1150 1.1 is }
1151 1.1 is
1152 1.1 is #ifdef DIAGNOSTIC
1153 1.1 is panic("check_eh: impossible");
1154 1.1 is #endif
1155 1.1 is }
1156 1.1 is #endif
1157 1.1 is
1158 1.1 is int
1159 1.1 is iyioctl(ifp, cmd, data)
1160 1.1 is register struct ifnet *ifp;
1161 1.1 is u_long cmd;
1162 1.1 is caddr_t data;
1163 1.1 is {
1164 1.1 is struct iy_softc *sc;
1165 1.1 is struct ifaddr *ifa;
1166 1.1 is struct ifreq *ifr;
1167 1.1 is int s, error = 0;
1168 1.1 is
1169 1.2 thorpej sc = ifp->if_softc;
1170 1.1 is ifa = (struct ifaddr *)data;
1171 1.1 is ifr = (struct ifreq *)data;
1172 1.1 is
1173 1.1 is #ifdef IYDEBUG
1174 1.8 christos printf("iyioctl called with ifp 0x%p (%s) cmd 0x%x data 0x%p\n",
1175 1.2 thorpej ifp, ifp->if_xname, cmd, data);
1176 1.1 is #endif
1177 1.1 is
1178 1.1 is s = splimp();
1179 1.1 is
1180 1.1 is switch (cmd) {
1181 1.1 is
1182 1.1 is case SIOCSIFADDR:
1183 1.1 is ifp->if_flags |= IFF_UP;
1184 1.1 is
1185 1.1 is switch (ifa->ifa_addr->sa_family) {
1186 1.1 is #ifdef INET
1187 1.1 is case AF_INET:
1188 1.1 is iyinit(sc);
1189 1.10 is arp_ifinit(ifp, ifa);
1190 1.1 is break;
1191 1.1 is #endif
1192 1.1 is #ifdef NS
1193 1.1 is /* XXX - This code is probably wrong. */
1194 1.1 is case AF_NS:
1195 1.1 is {
1196 1.1 is struct ns_addr *ina = &IA_SNS(ifa)->sns_addr;
1197 1.1 is
1198 1.1 is if (ns_nullhost(*ina))
1199 1.10 is ina->x_host = *(union ns_host *)
1200 1.10 is LLADDR(sc->sc_ethercom.ec_if.if_sadl);
1201 1.1 is else
1202 1.1 is bcopy(ina->x_host.c_host,
1203 1.10 is LLADDR(sc->sc_ethercom.ec_if.if_sadl),
1204 1.10 is ETHER_ADDR_LEN);
1205 1.1 is /* Set new address. */
1206 1.1 is iyinit(sc);
1207 1.1 is break;
1208 1.1 is }
1209 1.1 is #endif /* NS */
1210 1.1 is default:
1211 1.1 is iyinit(sc);
1212 1.1 is break;
1213 1.1 is }
1214 1.1 is break;
1215 1.1 is
1216 1.1 is case SIOCSIFFLAGS:
1217 1.1 is sc->promisc = ifp->if_flags & (IFF_PROMISC | IFF_ALLMULTI);
1218 1.1 is if ((ifp->if_flags & IFF_UP) == 0 &&
1219 1.1 is (ifp->if_flags & IFF_RUNNING) != 0) {
1220 1.1 is /*
1221 1.1 is * If interface is marked down and it is running, then
1222 1.1 is * stop it.
1223 1.1 is */
1224 1.1 is iystop(sc);
1225 1.1 is ifp->if_flags &= ~IFF_RUNNING;
1226 1.1 is } else if ((ifp->if_flags & IFF_UP) != 0 &&
1227 1.1 is (ifp->if_flags & IFF_RUNNING) == 0) {
1228 1.1 is /*
1229 1.1 is * If interface is marked up and it is stopped, then
1230 1.1 is * start it.
1231 1.1 is */
1232 1.1 is iyinit(sc);
1233 1.1 is } else {
1234 1.1 is /*
1235 1.1 is * Reset the interface to pick up changes in any other
1236 1.1 is * flags that affect hardware registers.
1237 1.1 is */
1238 1.1 is iystop(sc);
1239 1.1 is iyinit(sc);
1240 1.1 is }
1241 1.1 is #ifdef IYDEBUGX
1242 1.1 is if (ifp->if_flags & IFF_DEBUG)
1243 1.1 is sc->sc_debug = IFY_ALL;
1244 1.1 is else
1245 1.1 is sc->sc_debug = 0;
1246 1.1 is #endif
1247 1.1 is break;
1248 1.1 is
1249 1.1 is #if 0 /* XXX */
1250 1.1 is case SIOCADDMULTI:
1251 1.1 is case SIOCDELMULTI:
1252 1.1 is error = (cmd == SIOCADDMULTI) ?
1253 1.10 is ether_addmulti(ifr, &sc->sc_ethercom):
1254 1.10 is ether_delmulti(ifr, &sc->sc_ethercom);
1255 1.1 is
1256 1.1 is if (error == ENETRESET) {
1257 1.1 is /*
1258 1.1 is * Multicast list has changed; set the hardware filter
1259 1.1 is * accordingly.
1260 1.1 is */
1261 1.1 is iy_mc_reset(sc); /* XXX */
1262 1.1 is error = 0;
1263 1.1 is }
1264 1.1 is break;
1265 1.1 is #endif
1266 1.1 is default:
1267 1.1 is error = EINVAL;
1268 1.1 is }
1269 1.1 is splx(s);
1270 1.1 is return error;
1271 1.1 is }
1272 1.1 is
1273 1.1 is #if 0
1274 1.1 is static void
1275 1.1 is iy_mc_reset(sc)
1276 1.1 is struct iy_softc *sc;
1277 1.1 is {
1278 1.1 is struct ether_multi *enm;
1279 1.1 is struct ether_multistep step;
1280 1.1 is
1281 1.1 is /*
1282 1.1 is * Step through the list of addresses.
1283 1.1 is */
1284 1.1 is sc->mcast_count = 0;
1285 1.10 is ETHER_FIRST_MULTI(step, &sc->sc_ethercom, enm);
1286 1.1 is while (enm) {
1287 1.1 is if (sc->mcast_count >= MAXMCAST ||
1288 1.1 is bcmp(enm->enm_addrlo, enm->enm_addrhi, 6) != 0) {
1289 1.10 is sc->sc_ethercom.ec_if.if_flags |= IFF_ALLMULTI;
1290 1.10 is iyioctl(&sc->sc_ethercom.ec_if, SIOCSIFFLAGS,
1291 1.10 is (void *)0);
1292 1.1 is goto setflag;
1293 1.1 is }
1294 1.1 is
1295 1.1 is bcopy(enm->enm_addrlo, &sc->mcast_addrs[sc->mcast_count], 6);
1296 1.1 is sc->mcast_count++;
1297 1.1 is ETHER_NEXT_MULTI(step, enm);
1298 1.1 is }
1299 1.1 is setflag:
1300 1.1 is sc->want_mcsetup = 1;
1301 1.1 is }
1302 1.1 is
1303 1.1 is #ifdef IYDEBUG
1304 1.1 is void
1305 1.1 is print_rbd(rbd)
1306 1.1 is volatile struct ie_recv_buf_desc *rbd;
1307 1.1 is {
1308 1.1 is
1309 1.8 christos printf("RBD at %08lx:\nactual %04x, next %04x, buffer %08x\n"
1310 1.1 is "length %04x, mbz %04x\n", (u_long)rbd, rbd->ie_rbd_actual,
1311 1.1 is rbd->ie_rbd_next, rbd->ie_rbd_buffer, rbd->ie_rbd_length,
1312 1.1 is rbd->mbz);
1313 1.1 is }
1314 1.1 is #endif
1315 1.1 is #endif
1316 1.1 is
1317 1.1 is void
1318 1.1 is iyprobemem(sc)
1319 1.1 is struct iy_softc *sc;
1320 1.1 is {
1321 1.9 thorpej bus_space_tag_t iot;
1322 1.9 thorpej bus_space_handle_t ioh;
1323 1.1 is int testing;
1324 1.1 is
1325 1.9 thorpej iot = sc->sc_iot;
1326 1.6 is ioh = sc->sc_ioh;
1327 1.1 is
1328 1.10 is bus_space_write_1(iot, ioh, COMMAND_REG, BANK_SEL(0));
1329 1.10 is delay(1);
1330 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, 4096-2);
1331 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, 0);
1332 1.1 is
1333 1.1 is for (testing=65536; testing >= 4096; testing >>= 1) {
1334 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, testing-2);
1335 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, 0xdead);
1336 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, testing-2);
1337 1.9 thorpej if (bus_space_read_2(iot, ioh, MEM_PORT_REG) != 0xdead) {
1338 1.1 is #ifdef IYMEMDEBUG
1339 1.8 christos printf("%s: Didn't keep 0xdead at 0x%x\n",
1340 1.1 is sc->sc_dev.dv_xname, testing-2);
1341 1.1 is #endif
1342 1.1 is continue;
1343 1.1 is }
1344 1.1 is
1345 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, testing-2);
1346 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, 0xbeef);
1347 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, testing-2);
1348 1.9 thorpej if (bus_space_read_2(iot, ioh, MEM_PORT_REG) != 0xbeef) {
1349 1.1 is #ifdef IYMEMDEBUG
1350 1.8 christos printf("%s: Didn't keep 0xbeef at 0x%x\n",
1351 1.1 is sc->sc_dev.dv_xname, testing-2);
1352 1.1 is #endif
1353 1.1 is continue;
1354 1.1 is }
1355 1.1 is
1356 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, 0);
1357 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, 0);
1358 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, testing >> 1);
1359 1.9 thorpej bus_space_write_2(iot, ioh, MEM_PORT_REG, testing >> 1);
1360 1.9 thorpej bus_space_write_2(iot, ioh, HOST_ADDR_REG, 0);
1361 1.9 thorpej if (bus_space_read_2(iot, ioh, MEM_PORT_REG) == (testing >> 1)) {
1362 1.1 is #ifdef IYMEMDEBUG
1363 1.8 christos printf("%s: 0x%x alias of 0x0\n",
1364 1.1 is sc->sc_dev.dv_xname, testing >> 1);
1365 1.1 is #endif
1366 1.1 is continue;
1367 1.1 is }
1368 1.1 is
1369 1.1 is break;
1370 1.1 is }
1371 1.1 is
1372 1.1 is sc->sram = testing;
1373 1.1 is
1374 1.1 is switch(testing) {
1375 1.1 is case 65536:
1376 1.1 is /* 4 NFS packets + overhead RX, 2 NFS + overhead TX */
1377 1.1 is sc->rx_size = 44*1024;
1378 1.1 is break;
1379 1.1 is
1380 1.1 is case 32768:
1381 1.1 is /* 2 NFS packets + overhead RX, 1 NFS + overhead TX */
1382 1.1 is sc->rx_size = 22*1024;
1383 1.1 is break;
1384 1.1 is
1385 1.1 is case 16384:
1386 1.1 is /* 1 NFS packet + overhead RX, 4 big packets TX */
1387 1.1 is sc->rx_size = 10*1024;
1388 1.1 is break;
1389 1.1 is default:
1390 1.1 is sc->rx_size = testing/2;
1391 1.1 is break;
1392 1.1 is }
1393 1.1 is sc->tx_size = testing - sc->rx_size;
1394 1.10 is }
1395 1.10 is
1396 1.10 is static int
1397 1.10 is eepromreadall(iot, ioh, wordp, maxi)
1398 1.10 is bus_space_tag_t iot;
1399 1.10 is bus_space_handle_t ioh;
1400 1.10 is u_int16_t *wordp;
1401 1.10 is int maxi;
1402 1.10 is {
1403 1.10 is int i;
1404 1.10 is u_int16_t checksum, tmp;
1405 1.10 is
1406 1.10 is checksum = 0;
1407 1.10 is
1408 1.10 is for (i=0; i<EEPP_LENGTH; ++i) {
1409 1.10 is tmp = eepromread(iot, ioh, i);
1410 1.10 is checksum += tmp;
1411 1.10 is if (i<maxi)
1412 1.10 is wordp[i] = tmp;
1413 1.10 is }
1414 1.10 is
1415 1.10 is if (checksum != EEPP_CHKSUM) {
1416 1.10 is #ifdef IYDEBUG
1417 1.10 is printf("wrong EEPROM checksum 0x%x should be 0x%x\n",
1418 1.10 is checksum, EEPP_CHKSUM);
1419 1.10 is #endif
1420 1.10 is return 1;
1421 1.10 is }
1422 1.10 is return 0;
1423 1.1 is }
1424