if_cnw.c revision 1.17.2.7 1 1.17.2.7 nathanw /* $NetBSD: if_cnw.c,v 1.17.2.7 2002/07/12 01:40:09 nathanw Exp $ */
2 1.1 christos
3 1.1 christos /*-
4 1.1 christos * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.1 christos * All rights reserved.
6 1.1 christos *
7 1.1 christos * This code is derived from software contributed to The NetBSD Foundation
8 1.1 christos * by Michael Eriksson.
9 1.1 christos *
10 1.1 christos * Redistribution and use in source and binary forms, with or without
11 1.1 christos * modification, are permitted provided that the following conditions
12 1.1 christos * are met:
13 1.1 christos * 1. Redistributions of source code must retain the above copyright
14 1.1 christos * notice, this list of conditions and the following disclaimer.
15 1.1 christos * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 christos * notice, this list of conditions and the following disclaimer in the
17 1.1 christos * documentation and/or other materials provided with the distribution.
18 1.1 christos * 3. All advertising materials mentioning features or use of this software
19 1.1 christos * must display the following acknowledgement:
20 1.1 christos * This product includes software developed by the NetBSD
21 1.1 christos * Foundation, Inc. and its contributors.
22 1.1 christos * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 christos * contributors may be used to endorse or promote products derived
24 1.1 christos * from this software without specific prior written permission.
25 1.1 christos *
26 1.1 christos * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 christos * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 christos * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 christos * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 christos * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 christos * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 christos * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 christos * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 christos * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 christos * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 christos * POSSIBILITY OF SUCH DAMAGE.
37 1.1 christos */
38 1.1 christos
39 1.1 christos /*
40 1.3 itojun * Copyright (c) 1996, 1997 Berkeley Software Design, Inc.
41 1.3 itojun * All rights reserved.
42 1.3 itojun *
43 1.3 itojun * Redistribution and use in source and binary forms, with or without
44 1.3 itojun * modification, are permitted provided that this notice is retained,
45 1.3 itojun * the conditions in the following notices are met, and terms applying
46 1.3 itojun * to contributors in the following notices also apply to Berkeley
47 1.3 itojun * Software Design, Inc.
48 1.3 itojun *
49 1.3 itojun * 1. Redistributions of source code must retain the above copyright
50 1.3 itojun * notice, this list of conditions and the following disclaimer.
51 1.3 itojun * 2. Redistributions in binary form must reproduce the above copyright
52 1.3 itojun * notice, this list of conditions and the following disclaimer in the
53 1.3 itojun * documentation and/or other materials provided with the distribution.
54 1.3 itojun * 3. All advertising materials mentioning features or use of this software
55 1.3 itojun * must display the following acknowledgement:
56 1.3 itojun * This product includes software developed by
57 1.3 itojun * Berkeley Software Design, Inc.
58 1.3 itojun * 4. Neither the name of the Berkeley Software Design, Inc. nor the names
59 1.3 itojun * of its contributors may be used to endorse or promote products derived
60 1.3 itojun * from this software without specific prior written permission.
61 1.3 itojun *
62 1.3 itojun * THIS SOFTWARE IS PROVIDED BY BERKELEY SOFTWARE DESIGN, INC. ``AS IS'' AND
63 1.3 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
64 1.3 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
65 1.3 itojun * ARE DISCLAIMED. IN NO EVENT SHALL BERKELEY SOFTWARE DESIGN, INC. BE LIABLE
66 1.3 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
67 1.3 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
68 1.3 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
69 1.3 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
70 1.3 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
71 1.3 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
72 1.3 itojun * SUCH DAMAGE.
73 1.3 itojun *
74 1.3 itojun * Paul Borman, December 1996
75 1.3 itojun *
76 1.3 itojun * This driver is derived from a generic frame work which is
77 1.3 itojun * Copyright(c) 1994,1995,1996
78 1.3 itojun * Yoichi Shinoda, Yoshitaka Tokugawa, WIDE Project, Wildboar Project
79 1.3 itojun * and Foretune. All rights reserved.
80 1.3 itojun *
81 1.3 itojun * A linux driver was used as the "hardware reference manual" (i.e.,
82 1.3 itojun * to determine registers and a general outline of how the card works)
83 1.3 itojun * That driver is publically available and copyright
84 1.3 itojun *
85 1.7 augustss * John Markus Bjrndalen
86 1.3 itojun * Department of Computer Science
87 1.7 augustss * University of Troms
88 1.3 itojun * Norway
89 1.3 itojun * johnm (at) staff.cs.uit.no, http://www.cs.uit.no/~johnm/
90 1.3 itojun */
91 1.3 itojun
92 1.3 itojun /*
93 1.1 christos * This is a driver for the Xircom CreditCard Netwave (also known as
94 1.1 christos * the Netwave Airsurfer) wireless LAN PCMCIA adapter.
95 1.1 christos *
96 1.1 christos * When this driver was developed, the Linux Netwave driver was used
97 1.1 christos * as a hardware manual. That driver is Copyright (c) 1997 University
98 1.1 christos * of Troms, Norway. It is part of the Linix pcmcia-cs package that
99 1.1 christos * can be found at
100 1.1 christos * http://hyper.stanford.edu/HyperNews/get/pcmcia/home.html. The most
101 1.1 christos * recent version of the pcmcia-cs package when this driver was
102 1.1 christos * written was 3.0.6.
103 1.1 christos *
104 1.1 christos * Unfortunately, a lot of explicit numeric constants were used in the
105 1.1 christos * Linux driver. I have tried to use symbolic names whenever possible,
106 1.1 christos * but since I don't have any real hardware documentation, there's
107 1.1 christos * still one or two "magic numbers" :-(.
108 1.1 christos *
109 1.1 christos * Driver limitations: This driver doesn't do multicasting or receiver
110 1.1 christos * promiscuity, because of missing hardware documentation. I couldn't
111 1.1 christos * get receiver promiscuity to work, and I haven't even tried
112 1.1 christos * multicast. Volunteers are welcome, of course :-).
113 1.1 christos */
114 1.17.2.3 nathanw
115 1.17.2.3 nathanw #include <sys/cdefs.h>
116 1.17.2.7 nathanw __KERNEL_RCSID(0, "$NetBSD: if_cnw.c,v 1.17.2.7 2002/07/12 01:40:09 nathanw Exp $");
117 1.1 christos
118 1.1 christos #include "opt_inet.h"
119 1.1 christos #include "bpfilter.h"
120 1.1 christos
121 1.1 christos #include <sys/param.h>
122 1.1 christos #include <sys/systm.h>
123 1.1 christos #include <sys/device.h>
124 1.1 christos #include <sys/socket.h>
125 1.1 christos #include <sys/mbuf.h>
126 1.1 christos #include <sys/ioctl.h>
127 1.3 itojun #include <sys/proc.h>
128 1.3 itojun
129 1.3 itojun #include <net/if.h>
130 1.1 christos
131 1.1 christos #include <dev/pcmcia/if_cnwreg.h>
132 1.3 itojun #include <dev/pcmcia/if_cnwioctl.h>
133 1.1 christos
134 1.1 christos #include <dev/pcmcia/pcmciareg.h>
135 1.1 christos #include <dev/pcmcia/pcmciavar.h>
136 1.1 christos #include <dev/pcmcia/pcmciadevs.h>
137 1.1 christos
138 1.1 christos #include <net/if_dl.h>
139 1.1 christos #include <net/if_ether.h>
140 1.1 christos
141 1.1 christos #ifdef INET
142 1.1 christos #include <netinet/in.h>
143 1.1 christos #include <netinet/in_systm.h>
144 1.1 christos #include <netinet/in_var.h>
145 1.1 christos #include <netinet/ip.h>
146 1.1 christos #include <netinet/if_inarp.h>
147 1.1 christos #endif
148 1.1 christos
149 1.1 christos #if NBPFILTER > 0
150 1.1 christos #include <net/bpf.h>
151 1.1 christos #include <net/bpfdesc.h>
152 1.1 christos #endif
153 1.1 christos
154 1.1 christos /*
155 1.1 christos * Let these be patchable variables, initialized from macros that can
156 1.1 christos * be set in the kernel config file. Someone with lots of spare time
157 1.1 christos * could probably write a nice Netwave configuration program to do
158 1.1 christos * this a little bit more elegantly :-).
159 1.1 christos */
160 1.1 christos #ifndef CNW_DOMAIN
161 1.1 christos #define CNW_DOMAIN 0x100
162 1.1 christos #endif
163 1.1 christos int cnw_domain = CNW_DOMAIN; /* Domain */
164 1.1 christos #ifndef CNW_SCRAMBLEKEY
165 1.1 christos #define CNW_SCRAMBLEKEY 0
166 1.1 christos #endif
167 1.1 christos int cnw_skey = CNW_SCRAMBLEKEY; /* Scramble key */
168 1.1 christos
169 1.4 itojun /*
170 1.4 itojun * The card appears to work much better when we only allow one packet
171 1.4 itojun * "in the air" at a time. This is done by not allowing another packet
172 1.4 itojun * on the card, even if there is room. Turning this off will allow the
173 1.4 itojun * driver to stuff packets on the card as soon as a transmit buffer is
174 1.4 itojun * available. This does increase the number of collisions, though.
175 1.4 itojun * We can que a second packet if there are transmit buffers available,
176 1.4 itojun * but we do not actually send the packet until the last packet has
177 1.4 itojun * been written.
178 1.12 itojun */
179 1.4 itojun #define ONE_AT_A_TIME
180 1.12 itojun
181 1.12 itojun /*
182 1.12 itojun * Netwave cards choke if we try to use io memory address >= 0x400.
183 1.12 itojun * Even though, CIS tuple does not talk about this.
184 1.12 itojun * Use memory mapped access.
185 1.4 itojun */
186 1.12 itojun #define MEMORY_MAPPED
187 1.1 christos
188 1.1 christos int cnw_match __P((struct device *, struct cfdata *, void *));
189 1.1 christos void cnw_attach __P((struct device *, struct device *, void *));
190 1.5 itojun int cnw_detach __P((struct device *, int));
191 1.5 itojun
192 1.5 itojun int cnw_activate __P((struct device *, enum devact));
193 1.1 christos
194 1.1 christos struct cnw_softc {
195 1.1 christos struct device sc_dev; /* Device glue (must be first) */
196 1.1 christos struct ethercom sc_ethercom; /* Ethernet common part */
197 1.1 christos int sc_domain; /* Netwave domain */
198 1.1 christos int sc_skey; /* Netwave scramble key */
199 1.3 itojun struct cnwstats sc_stats;
200 1.1 christos
201 1.1 christos /* PCMCIA-specific stuff */
202 1.1 christos struct pcmcia_function *sc_pf; /* PCMCIA function */
203 1.12 itojun #ifndef MEMORY_MAPPED
204 1.1 christos struct pcmcia_io_handle sc_pcioh; /* PCMCIA I/O space handle */
205 1.1 christos int sc_iowin; /* ...window */
206 1.1 christos bus_space_tag_t sc_iot; /* ...bus_space tag */
207 1.1 christos bus_space_handle_t sc_ioh; /* ...bus_space handle */
208 1.12 itojun #endif
209 1.1 christos struct pcmcia_mem_handle sc_pcmemh; /* PCMCIA memory handle */
210 1.17.2.4 nathanw bus_size_t sc_memoff; /* ...offset */
211 1.1 christos int sc_memwin; /* ...window */
212 1.1 christos bus_space_tag_t sc_memt; /* ...bus_space tag */
213 1.1 christos bus_space_handle_t sc_memh; /* ...bus_space handle */
214 1.1 christos void *sc_ih; /* Interrupt cookie */
215 1.4 itojun struct timeval sc_txlast; /* When the last xmit was made */
216 1.4 itojun int sc_active; /* Currently xmitting a packet */
217 1.5 itojun
218 1.5 itojun int sc_resource; /* Resources alloc'ed on attach */
219 1.6 itojun #define CNW_RES_PCIC 1
220 1.6 itojun #define CNW_RES_IO 2
221 1.6 itojun #define CNW_RES_MEM 4
222 1.6 itojun #define CNW_RES_NET 8
223 1.1 christos };
224 1.1 christos
225 1.1 christos struct cfattach cnw_ca = {
226 1.5 itojun sizeof(struct cnw_softc), cnw_match, cnw_attach, cnw_detach,
227 1.5 itojun cnw_activate
228 1.1 christos };
229 1.1 christos
230 1.1 christos
231 1.1 christos void cnw_reset __P((struct cnw_softc *));
232 1.1 christos void cnw_init __P((struct cnw_softc *));
233 1.1 christos int cnw_enable __P((struct cnw_softc *sc));
234 1.1 christos void cnw_disable __P((struct cnw_softc *sc));
235 1.1 christos void cnw_config __P((struct cnw_softc *sc, u_int8_t *));
236 1.1 christos void cnw_start __P((struct ifnet *));
237 1.1 christos void cnw_transmit __P((struct cnw_softc *, struct mbuf *));
238 1.1 christos struct mbuf *cnw_read __P((struct cnw_softc *));
239 1.1 christos void cnw_recv __P((struct cnw_softc *));
240 1.1 christos int cnw_intr __P((void *arg));
241 1.1 christos int cnw_ioctl __P((struct ifnet *, u_long, caddr_t));
242 1.1 christos void cnw_watchdog __P((struct ifnet *));
243 1.3 itojun static int cnw_setdomain __P((struct cnw_softc *, int));
244 1.3 itojun static int cnw_setkey __P((struct cnw_softc *, int));
245 1.1 christos
246 1.1 christos /* ---------------------------------------------------------------- */
247 1.1 christos
248 1.1 christos /* Help routines */
249 1.1 christos static int wait_WOC __P((struct cnw_softc *, int));
250 1.1 christos static int read16 __P((struct cnw_softc *, int));
251 1.1 christos static int cnw_cmd __P((struct cnw_softc *, int, int, int, int));
252 1.1 christos
253 1.1 christos /*
254 1.1 christos * Wait until the WOC (Write Operation Complete) bit in the
255 1.1 christos * ASR (Adapter Status Register) is asserted.
256 1.1 christos */
257 1.1 christos static int
258 1.1 christos wait_WOC(sc, line)
259 1.1 christos struct cnw_softc *sc;
260 1.1 christos int line;
261 1.1 christos {
262 1.1 christos int i, asr;
263 1.1 christos
264 1.1 christos for (i = 0; i < 5000; i++) {
265 1.12 itojun #ifndef MEMORY_MAPPED
266 1.1 christos asr = bus_space_read_1(sc->sc_iot, sc->sc_ioh, CNW_REG_ASR);
267 1.12 itojun #else
268 1.12 itojun asr = bus_space_read_1(sc->sc_memt, sc->sc_memh,
269 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_ASR);
270 1.12 itojun #endif
271 1.1 christos if (asr & CNW_ASR_WOC)
272 1.1 christos return (0);
273 1.1 christos DELAY(100);
274 1.1 christos }
275 1.1 christos if (line > 0)
276 1.1 christos printf("%s: wedged at line %d\n", sc->sc_dev.dv_xname, line);
277 1.1 christos return (1);
278 1.1 christos }
279 1.1 christos #define WAIT_WOC(sc) wait_WOC(sc, __LINE__)
280 1.1 christos
281 1.1 christos
282 1.1 christos /*
283 1.1 christos * Read a 16 bit value from the card.
284 1.1 christos */
285 1.1 christos static int
286 1.1 christos read16(sc, offset)
287 1.1 christos struct cnw_softc *sc;
288 1.1 christos int offset;
289 1.1 christos {
290 1.1 christos int hi, lo;
291 1.1 christos int offs = sc->sc_memoff + offset;
292 1.1 christos
293 1.1 christos /* This could presumably be done more efficient with
294 1.1 christos * bus_space_read_2(), but I don't know anything about the
295 1.1 christos * byte sex guarantees... Besides, this is pretty cheap as
296 1.1 christos * well :-)
297 1.1 christos */
298 1.1 christos lo = bus_space_read_1(sc->sc_memt, sc->sc_memh, offs);
299 1.1 christos hi = bus_space_read_1(sc->sc_memt, sc->sc_memh, offs + 1);
300 1.1 christos return ((hi << 8) | lo);
301 1.1 christos }
302 1.1 christos
303 1.1 christos
304 1.1 christos /*
305 1.1 christos * Send a command to the card by writing it to the command buffer.
306 1.1 christos */
307 1.1 christos int
308 1.1 christos cnw_cmd(sc, cmd, count, arg1, arg2)
309 1.1 christos struct cnw_softc *sc;
310 1.1 christos int cmd, count, arg1, arg2;
311 1.1 christos {
312 1.1 christos int ptr = sc->sc_memoff + CNW_EREG_CB;
313 1.1 christos
314 1.1 christos if (wait_WOC(sc, 0)) {
315 1.1 christos printf("%s: wedged when issuing cmd 0x%x\n",
316 1.1 christos sc->sc_dev.dv_xname, cmd);
317 1.1 christos /*
318 1.1 christos * We'll continue anyway, as that's probably the best
319 1.1 christos * thing we can do; at least the user knows there's a
320 1.1 christos * problem, and can reset the interface with ifconfig
321 1.1 christos * down/up.
322 1.1 christos */
323 1.1 christos }
324 1.1 christos
325 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh, ptr, cmd);
326 1.1 christos if (count > 0) {
327 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh, ptr + 1, arg1);
328 1.1 christos if (count > 1)
329 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh,
330 1.1 christos ptr + 2, arg2);
331 1.1 christos }
332 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh,
333 1.1 christos ptr + count + 1, CNW_CMD_EOC);
334 1.1 christos return (0);
335 1.1 christos }
336 1.1 christos #define CNW_CMD0(sc, cmd) \
337 1.1 christos do { cnw_cmd(sc, cmd, 0, 0, 0); } while (0)
338 1.1 christos #define CNW_CMD1(sc, cmd, arg1) \
339 1.1 christos do { cnw_cmd(sc, cmd, 1, arg1 , 0); } while (0)
340 1.1 christos #define CNW_CMD2(sc, cmd, arg1, arg2) \
341 1.1 christos do { cnw_cmd(sc, cmd, 2, arg1, arg2); } while (0)
342 1.1 christos
343 1.1 christos /* ---------------------------------------------------------------- */
344 1.1 christos
345 1.1 christos /*
346 1.1 christos * Reset the hardware.
347 1.1 christos */
348 1.1 christos void
349 1.1 christos cnw_reset(sc)
350 1.1 christos struct cnw_softc *sc;
351 1.1 christos {
352 1.1 christos #ifdef CNW_DEBUG
353 1.1 christos if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
354 1.1 christos printf("%s: resetting\n", sc->sc_dev.dv_xname);
355 1.1 christos #endif
356 1.1 christos wait_WOC(sc, 0);
357 1.12 itojun #ifndef MEMORY_MAPPED
358 1.1 christos bus_space_write_1(sc->sc_iot, sc->sc_ioh, CNW_REG_PMR, CNW_PMR_RESET);
359 1.13 itojun #else
360 1.13 itojun bus_space_write_1(sc->sc_memt, sc->sc_memh,
361 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_PMR, CNW_PMR_RESET);
362 1.12 itojun #endif
363 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh,
364 1.1 christos sc->sc_memoff + CNW_EREG_ASCC, CNW_ASR_WOC);
365 1.12 itojun #ifndef MEMORY_MAPPED
366 1.1 christos bus_space_write_1(sc->sc_iot, sc->sc_ioh, CNW_REG_PMR, 0);
367 1.12 itojun #else
368 1.12 itojun bus_space_write_1(sc->sc_memt, sc->sc_memh,
369 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_PMR, 0);
370 1.12 itojun #endif
371 1.1 christos }
372 1.1 christos
373 1.1 christos
374 1.1 christos /*
375 1.1 christos * Initialize the card.
376 1.1 christos */
377 1.1 christos void
378 1.1 christos cnw_init(sc)
379 1.1 christos struct cnw_softc *sc;
380 1.1 christos {
381 1.3 itojun struct ifnet *ifp = &sc->sc_ethercom.ec_if;
382 1.3 itojun const u_int8_t rxmode =
383 1.3 itojun CNW_RXCONF_RXENA | CNW_RXCONF_BCAST | CNW_RXCONF_AMP;
384 1.3 itojun
385 1.1 christos /* Reset the card */
386 1.1 christos cnw_reset(sc);
387 1.1 christos
388 1.1 christos /* Issue a NOP to check the card */
389 1.1 christos CNW_CMD0(sc, CNW_CMD_NOP);
390 1.1 christos
391 1.1 christos /* Set up receive configuration */
392 1.3 itojun CNW_CMD1(sc, CNW_CMD_SRC,
393 1.3 itojun rxmode | ((ifp->if_flags & IFF_PROMISC) ? CNW_RXCONF_PRO : 0));
394 1.1 christos
395 1.1 christos /* Set up transmit configuration */
396 1.1 christos CNW_CMD1(sc, CNW_CMD_STC, CNW_TXCONF_TXENA);
397 1.1 christos
398 1.1 christos /* Set domain */
399 1.1 christos CNW_CMD2(sc, CNW_CMD_SMD, sc->sc_domain, sc->sc_domain >> 8);
400 1.1 christos
401 1.1 christos /* Set scramble key */
402 1.1 christos CNW_CMD2(sc, CNW_CMD_SSK, sc->sc_skey, sc->sc_skey >> 8);
403 1.1 christos
404 1.1 christos /* Enable interrupts */
405 1.1 christos WAIT_WOC(sc);
406 1.12 itojun #ifndef MEMORY_MAPPED
407 1.1 christos bus_space_write_1(sc->sc_iot, sc->sc_ioh,
408 1.1 christos CNW_REG_IMR, CNW_IMR_IENA | CNW_IMR_RFU1);
409 1.12 itojun #else
410 1.12 itojun bus_space_write_1(sc->sc_memt, sc->sc_memh,
411 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_IMR,
412 1.12 itojun CNW_IMR_IENA | CNW_IMR_RFU1);
413 1.12 itojun #endif
414 1.1 christos
415 1.1 christos /* Enable receiver */
416 1.1 christos CNW_CMD0(sc, CNW_CMD_ER);
417 1.1 christos
418 1.1 christos /* "Set the IENA bit in COR" */
419 1.1 christos WAIT_WOC(sc);
420 1.12 itojun #ifndef MEMORY_MAPPED
421 1.1 christos bus_space_write_1(sc->sc_iot, sc->sc_ioh, CNW_REG_COR,
422 1.1 christos CNW_COR_IENA | CNW_COR_LVLREQ);
423 1.12 itojun #else
424 1.12 itojun bus_space_write_1(sc->sc_memt, sc->sc_memh,
425 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_COR,
426 1.12 itojun CNW_COR_IENA | CNW_COR_LVLREQ);
427 1.12 itojun #endif
428 1.1 christos }
429 1.1 christos
430 1.1 christos
431 1.1 christos /*
432 1.1 christos * Enable and initialize the card.
433 1.1 christos */
434 1.1 christos int
435 1.1 christos cnw_enable(sc)
436 1.1 christos struct cnw_softc *sc;
437 1.1 christos {
438 1.1 christos struct ifnet *ifp = &sc->sc_ethercom.ec_if;
439 1.1 christos
440 1.5 itojun if ((ifp->if_flags & IFF_RUNNING) != 0)
441 1.5 itojun return (0);
442 1.5 itojun
443 1.1 christos sc->sc_ih = pcmcia_intr_establish(sc->sc_pf, IPL_NET, cnw_intr, sc);
444 1.1 christos if (sc->sc_ih == NULL) {
445 1.1 christos printf("%s: couldn't establish interrupt handler\n",
446 1.1 christos sc->sc_dev.dv_xname);
447 1.1 christos return (EIO);
448 1.1 christos }
449 1.1 christos if (pcmcia_function_enable(sc->sc_pf) != 0) {
450 1.1 christos printf("%s: couldn't enable card\n", sc->sc_dev.dv_xname);
451 1.1 christos return (EIO);
452 1.1 christos }
453 1.6 itojun sc->sc_resource |= CNW_RES_PCIC;
454 1.1 christos cnw_init(sc);
455 1.4 itojun ifp->if_flags &= ~IFF_OACTIVE;
456 1.1 christos ifp->if_flags |= IFF_RUNNING;
457 1.1 christos return (0);
458 1.1 christos }
459 1.1 christos
460 1.1 christos
461 1.1 christos /*
462 1.1 christos * Stop and disable the card.
463 1.1 christos */
464 1.1 christos void
465 1.1 christos cnw_disable(sc)
466 1.1 christos struct cnw_softc *sc;
467 1.1 christos {
468 1.1 christos struct ifnet *ifp = &sc->sc_ethercom.ec_if;
469 1.1 christos
470 1.5 itojun if ((ifp->if_flags & IFF_RUNNING) == 0)
471 1.5 itojun return;
472 1.5 itojun
473 1.1 christos pcmcia_function_disable(sc->sc_pf);
474 1.6 itojun sc->sc_resource &= ~CNW_RES_PCIC;
475 1.1 christos pcmcia_intr_disestablish(sc->sc_pf, sc->sc_ih);
476 1.1 christos ifp->if_flags &= ~IFF_RUNNING;
477 1.1 christos ifp->if_timer = 0;
478 1.1 christos }
479 1.1 christos
480 1.1 christos
481 1.1 christos /*
482 1.1 christos * Match the hardware we handle.
483 1.1 christos */
484 1.1 christos int
485 1.1 christos cnw_match(parent, match, aux)
486 1.1 christos struct device *parent;
487 1.1 christos struct cfdata *match;
488 1.1 christos void *aux;
489 1.1 christos {
490 1.1 christos struct pcmcia_attach_args *pa = aux;
491 1.1 christos
492 1.11 gmcgarry if (pa->manufacturer == PCMCIA_VENDOR_XIRCOM &&
493 1.11 gmcgarry pa->product == PCMCIA_PRODUCT_XIRCOM_CNW_801)
494 1.3 itojun return 1;
495 1.11 gmcgarry if (pa->manufacturer == PCMCIA_VENDOR_XIRCOM &&
496 1.11 gmcgarry pa->product == PCMCIA_PRODUCT_XIRCOM_CNW_802)
497 1.3 itojun return 1;
498 1.3 itojun return 0;
499 1.1 christos }
500 1.1 christos
501 1.1 christos
502 1.1 christos /*
503 1.1 christos * Attach the card.
504 1.1 christos */
505 1.1 christos void
506 1.1 christos cnw_attach(parent, self, aux)
507 1.1 christos struct device *parent, *self;
508 1.1 christos void *aux;
509 1.1 christos {
510 1.1 christos struct cnw_softc *sc = (void *) self;
511 1.1 christos struct pcmcia_attach_args *pa = aux;
512 1.1 christos struct ifnet *ifp = &sc->sc_ethercom.ec_if;
513 1.1 christos u_int8_t macaddr[ETHER_ADDR_LEN];
514 1.1 christos int i;
515 1.12 itojun bus_size_t memsize;
516 1.1 christos
517 1.5 itojun sc->sc_resource = 0;
518 1.5 itojun
519 1.1 christos /* Enable the card */
520 1.1 christos sc->sc_pf = pa->pf;
521 1.17.2.5 nathanw pcmcia_function_init(sc->sc_pf, SIMPLEQ_FIRST(&sc->sc_pf->cfe_head));
522 1.1 christos if (pcmcia_function_enable(sc->sc_pf)) {
523 1.1 christos printf(": function enable failed\n");
524 1.1 christos return;
525 1.1 christos }
526 1.6 itojun sc->sc_resource |= CNW_RES_PCIC;
527 1.1 christos
528 1.1 christos /* Map I/O register and "memory" */
529 1.12 itojun #ifndef MEMORY_MAPPED
530 1.1 christos if (pcmcia_io_alloc(sc->sc_pf, 0, CNW_IO_SIZE, CNW_IO_SIZE,
531 1.1 christos &sc->sc_pcioh) != 0) {
532 1.1 christos printf(": can't allocate i/o space\n");
533 1.6 itojun goto fail;
534 1.1 christos }
535 1.1 christos if (pcmcia_io_map(sc->sc_pf, PCMCIA_WIDTH_IO16, 0,
536 1.1 christos CNW_IO_SIZE, &sc->sc_pcioh, &sc->sc_iowin) != 0) {
537 1.6 itojun printf(": can't map i/o space\n");
538 1.5 itojun pcmcia_io_free(sc->sc_pf, &sc->sc_pcioh);
539 1.6 itojun goto fail;
540 1.1 christos }
541 1.1 christos sc->sc_iot = sc->sc_pcioh.iot;
542 1.1 christos sc->sc_ioh = sc->sc_pcioh.ioh;
543 1.5 itojun sc->sc_resource |= CNW_RES_IO;
544 1.12 itojun #endif
545 1.12 itojun #ifndef MEMORY_MAPPED
546 1.12 itojun memsize = CNW_MEM_SIZE;
547 1.12 itojun #else
548 1.12 itojun memsize = CNW_MEM_SIZE + CNW_IOM_SIZE;
549 1.12 itojun #endif
550 1.15 itojun if (pcmcia_mem_alloc(sc->sc_pf, memsize, &sc->sc_pcmemh) != 0) {
551 1.15 itojun printf(": can't allocate memory\n");
552 1.15 itojun goto fail;
553 1.15 itojun }
554 1.8 itojun if (pcmcia_mem_map(sc->sc_pf, PCMCIA_WIDTH_MEM8|PCMCIA_MEM_COMMON,
555 1.12 itojun CNW_MEM_ADDR, memsize, &sc->sc_pcmemh, &sc->sc_memoff,
556 1.1 christos &sc->sc_memwin) != 0) {
557 1.1 christos printf(": can't map memory\n");
558 1.5 itojun pcmcia_mem_free(sc->sc_pf, &sc->sc_pcmemh);
559 1.6 itojun goto fail;
560 1.1 christos }
561 1.1 christos sc->sc_memt = sc->sc_pcmemh.memt;
562 1.1 christos sc->sc_memh = sc->sc_pcmemh.memh;
563 1.5 itojun sc->sc_resource |= CNW_RES_MEM;
564 1.3 itojun switch (pa->product) {
565 1.11 gmcgarry case PCMCIA_PRODUCT_XIRCOM_CNW_801:
566 1.11 gmcgarry printf(": %s\n", PCMCIA_STR_XIRCOM_CNW_801);
567 1.3 itojun break;
568 1.11 gmcgarry case PCMCIA_PRODUCT_XIRCOM_CNW_802:
569 1.11 gmcgarry printf(": %s\n", PCMCIA_STR_XIRCOM_CNW_802);
570 1.3 itojun break;
571 1.3 itojun }
572 1.1 christos
573 1.1 christos /* Finish setup of softc */
574 1.1 christos sc->sc_domain = cnw_domain;
575 1.1 christos sc->sc_skey = cnw_skey;
576 1.1 christos
577 1.1 christos /* Get MAC address */
578 1.1 christos cnw_reset(sc);
579 1.1 christos for (i = 0; i < ETHER_ADDR_LEN; i++)
580 1.1 christos macaddr[i] = bus_space_read_1(sc->sc_memt, sc->sc_memh,
581 1.1 christos sc->sc_memoff + CNW_EREG_PA + i);
582 1.1 christos printf("%s: address %s\n", sc->sc_dev.dv_xname,
583 1.1 christos ether_sprintf(macaddr));
584 1.1 christos
585 1.1 christos /* Set up ifnet structure */
586 1.17.2.2 nathanw strcpy(ifp->if_xname, sc->sc_dev.dv_xname);
587 1.1 christos ifp->if_softc = sc;
588 1.1 christos ifp->if_start = cnw_start;
589 1.1 christos ifp->if_ioctl = cnw_ioctl;
590 1.1 christos ifp->if_watchdog = cnw_watchdog;
591 1.3 itojun ifp->if_flags = IFF_BROADCAST | IFF_MULTICAST | IFF_SIMPLEX |
592 1.3 itojun IFF_NOTRAILERS;
593 1.17 thorpej IFQ_SET_READY(&ifp->if_snd);
594 1.1 christos
595 1.1 christos /* Attach the interface */
596 1.1 christos if_attach(ifp);
597 1.1 christos ether_ifattach(ifp, macaddr);
598 1.16 thorpej
599 1.5 itojun sc->sc_resource |= CNW_RES_NET;
600 1.1 christos
601 1.9 thorpej ifp->if_baudrate = IF_Mbps(1);
602 1.3 itojun
603 1.1 christos /* Disable the card now, and turn it on when the interface goes up */
604 1.1 christos pcmcia_function_disable(sc->sc_pf);
605 1.6 itojun sc->sc_resource &= ~CNW_RES_PCIC;
606 1.6 itojun return;
607 1.6 itojun
608 1.6 itojun fail:
609 1.12 itojun #ifndef MEMORY_MAPPED
610 1.6 itojun if ((sc->sc_resource & CNW_RES_IO) != 0) {
611 1.6 itojun pcmcia_io_unmap(sc->sc_pf, sc->sc_iowin);
612 1.6 itojun pcmcia_io_free(sc->sc_pf, &sc->sc_pcioh);
613 1.6 itojun sc->sc_resource &= ~CNW_RES_IO;
614 1.6 itojun }
615 1.12 itojun #endif
616 1.6 itojun if ((sc->sc_resource & CNW_RES_PCIC) != 0) {
617 1.6 itojun pcmcia_function_disable(sc->sc_pf);
618 1.6 itojun sc->sc_resource &= ~CNW_RES_PCIC;
619 1.6 itojun }
620 1.1 christos }
621 1.1 christos
622 1.1 christos /*
623 1.1 christos * Start outputting on the interface.
624 1.1 christos */
625 1.1 christos void
626 1.1 christos cnw_start(ifp)
627 1.1 christos struct ifnet *ifp;
628 1.1 christos {
629 1.1 christos struct cnw_softc *sc = ifp->if_softc;
630 1.1 christos struct mbuf *m0;
631 1.4 itojun int lif;
632 1.1 christos int asr;
633 1.4 itojun #ifdef ONE_AT_A_TIME
634 1.4 itojun struct timeval now;
635 1.4 itojun #endif
636 1.1 christos
637 1.1 christos #ifdef CNW_DEBUG
638 1.1 christos if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
639 1.1 christos printf("%s: cnw_start\n", ifp->if_xname);
640 1.4 itojun if (ifp->if_flags & IFF_OACTIVE)
641 1.4 itojun printf("%s: cnw_start reentered\n", ifp->if_xname);
642 1.1 christos #endif
643 1.1 christos
644 1.4 itojun ifp->if_flags |= IFF_OACTIVE;
645 1.4 itojun
646 1.1 christos for (;;) {
647 1.4 itojun #ifdef ONE_AT_A_TIME
648 1.4 itojun microtime(&now);
649 1.4 itojun now.tv_sec -= sc->sc_txlast.tv_sec;
650 1.4 itojun now.tv_usec -= sc->sc_txlast.tv_usec;
651 1.4 itojun if (now.tv_usec < 0) {
652 1.4 itojun now.tv_usec += 1000000;
653 1.4 itojun now.tv_sec--;
654 1.4 itojun }
655 1.4 itojun
656 1.4 itojun /*
657 1.4 itojun * Don't ship this packet out until the last
658 1.4 itojun * packet has left the building.
659 1.4 itojun * If we have not tried to send a packet for 1/5
660 1.4 itojun * a second then we assume we lost an interrupt,
661 1.4 itojun * lets go on and send the next packet anyhow.
662 1.4 itojun *
663 1.4 itojun * I suppose we could check to see if it is okay
664 1.4 itojun * to put additional packets on the card (beyond
665 1.4 itojun * the one already waiting to be sent) but I don't
666 1.4 itojun * think we would get any improvement in speed as
667 1.4 itojun * we should have ample time to put the next packet
668 1.4 itojun * on while this one is going out.
669 1.4 itojun */
670 1.4 itojun if (sc->sc_active && now.tv_sec == 0 && now.tv_usec < 200000)
671 1.4 itojun break;
672 1.4 itojun #endif
673 1.4 itojun
674 1.4 itojun /* Make sure the link integrity field is on */
675 1.4 itojun WAIT_WOC(sc);
676 1.4 itojun lif = bus_space_read_1(sc->sc_memt, sc->sc_memh,
677 1.4 itojun sc->sc_memoff + CNW_EREG_LIF);
678 1.4 itojun if (lif == 0) {
679 1.4 itojun #ifdef CNW_DEBUG
680 1.4 itojun if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
681 1.4 itojun printf("%s: link integrity %d\n", lif);
682 1.4 itojun #endif
683 1.4 itojun break;
684 1.4 itojun }
685 1.4 itojun
686 1.1 christos /* Is there any buffer space available on the card? */
687 1.1 christos WAIT_WOC(sc);
688 1.12 itojun #ifndef MEMORY_MAPPED
689 1.1 christos asr = bus_space_read_1(sc->sc_iot, sc->sc_ioh, CNW_REG_ASR);
690 1.12 itojun #else
691 1.12 itojun asr = bus_space_read_1(sc->sc_memt, sc->sc_memh,
692 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_ASR);
693 1.12 itojun #endif
694 1.1 christos if (!(asr & CNW_ASR_TXBA)) {
695 1.1 christos #ifdef CNW_DEBUG
696 1.1 christos if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
697 1.1 christos printf("%s: no buffer space\n", ifp->if_xname);
698 1.1 christos #endif
699 1.4 itojun break;
700 1.1 christos }
701 1.1 christos
702 1.3 itojun sc->sc_stats.nws_tx++;
703 1.3 itojun
704 1.17 thorpej IFQ_DEQUEUE(&ifp->if_snd, m0);
705 1.1 christos if (m0 == 0)
706 1.4 itojun break;
707 1.1 christos
708 1.1 christos #if NBPFILTER > 0
709 1.1 christos if (ifp->if_bpf)
710 1.1 christos bpf_mtap(ifp->if_bpf, m0);
711 1.1 christos #endif
712 1.1 christos
713 1.1 christos cnw_transmit(sc, m0);
714 1.1 christos ++ifp->if_opackets;
715 1.1 christos ifp->if_timer = 3; /* start watchdog timer */
716 1.4 itojun
717 1.4 itojun microtime(&sc->sc_txlast);
718 1.4 itojun sc->sc_active = 1;
719 1.1 christos }
720 1.4 itojun
721 1.4 itojun ifp->if_flags &= ~IFF_OACTIVE;
722 1.1 christos }
723 1.1 christos
724 1.1 christos /*
725 1.1 christos * Transmit a packet.
726 1.1 christos */
727 1.1 christos void
728 1.1 christos cnw_transmit(sc, m0)
729 1.1 christos struct cnw_softc *sc;
730 1.1 christos struct mbuf *m0;
731 1.1 christos {
732 1.1 christos int buffer, bufsize, bufoffset, bufptr, bufspace, len, mbytes, n;
733 1.1 christos struct mbuf *m;
734 1.1 christos u_int8_t *mptr;
735 1.1 christos
736 1.1 christos /* Get buffer info from card */
737 1.1 christos buffer = read16(sc, CNW_EREG_TDP);
738 1.1 christos bufsize = read16(sc, CNW_EREG_TDP + 2);
739 1.1 christos bufoffset = read16(sc, CNW_EREG_TDP + 4);
740 1.1 christos #ifdef CNW_DEBUG
741 1.1 christos if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
742 1.1 christos printf("%s: cnw_transmit b=0x%x s=%d o=0x%x\n",
743 1.1 christos sc->sc_dev.dv_xname, buffer, bufsize, bufoffset);
744 1.1 christos #endif
745 1.1 christos
746 1.1 christos /* Copy data from mbuf chain to card buffers */
747 1.1 christos bufptr = sc->sc_memoff + buffer + bufoffset;
748 1.1 christos bufspace = bufsize;
749 1.1 christos len = 0;
750 1.1 christos for (m = m0; m; ) {
751 1.1 christos mptr = mtod(m, u_int8_t *);
752 1.1 christos mbytes = m->m_len;
753 1.1 christos len += mbytes;
754 1.1 christos while (mbytes > 0) {
755 1.1 christos if (bufspace == 0) {
756 1.1 christos buffer = read16(sc, buffer);
757 1.1 christos bufptr = sc->sc_memoff + buffer + bufoffset;
758 1.1 christos bufspace = bufsize;
759 1.1 christos #ifdef CNW_DEBUG
760 1.1 christos if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
761 1.1 christos printf("%s: next buffer @0x%x\n",
762 1.1 christos sc->sc_dev.dv_xname, buffer);
763 1.1 christos #endif
764 1.1 christos }
765 1.1 christos n = mbytes <= bufspace ? mbytes : bufspace;
766 1.1 christos bus_space_write_region_1(sc->sc_memt, sc->sc_memh,
767 1.1 christos bufptr, mptr, n);
768 1.1 christos bufptr += n;
769 1.1 christos bufspace -= n;
770 1.1 christos mptr += n;
771 1.1 christos mbytes -= n;
772 1.1 christos }
773 1.1 christos MFREE(m, m0);
774 1.1 christos m = m0;
775 1.1 christos }
776 1.1 christos
777 1.1 christos /* Issue transmit command */
778 1.1 christos CNW_CMD2(sc, CNW_CMD_TL, len, len >> 8);
779 1.1 christos }
780 1.1 christos
781 1.1 christos
782 1.1 christos /*
783 1.1 christos * Pull a packet from the card into an mbuf chain.
784 1.1 christos */
785 1.1 christos struct mbuf *
786 1.1 christos cnw_read(sc)
787 1.1 christos struct cnw_softc *sc;
788 1.1 christos {
789 1.1 christos struct mbuf *m, *top, **mp;
790 1.1 christos int totbytes, buffer, bufbytes, bufptr, mbytes, n;
791 1.1 christos u_int8_t *mptr;
792 1.1 christos
793 1.1 christos WAIT_WOC(sc);
794 1.1 christos totbytes = read16(sc, CNW_EREG_RDP);
795 1.1 christos #ifdef CNW_DEBUG
796 1.1 christos if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
797 1.1 christos printf("%s: recv %d bytes\n", sc->sc_dev.dv_xname, totbytes);
798 1.1 christos #endif
799 1.1 christos buffer = CNW_EREG_RDP + 2;
800 1.1 christos bufbytes = 0;
801 1.1 christos bufptr = 0; /* XXX make gcc happy */
802 1.1 christos
803 1.1 christos MGETHDR(m, M_DONTWAIT, MT_DATA);
804 1.1 christos if (m == 0)
805 1.1 christos return (0);
806 1.1 christos m->m_pkthdr.rcvif = &sc->sc_ethercom.ec_if;
807 1.1 christos m->m_pkthdr.len = totbytes;
808 1.1 christos mbytes = MHLEN;
809 1.1 christos top = 0;
810 1.1 christos mp = ⊤
811 1.1 christos
812 1.1 christos while (totbytes > 0) {
813 1.1 christos if (top) {
814 1.1 christos MGET(m, M_DONTWAIT, MT_DATA);
815 1.1 christos if (m == 0) {
816 1.1 christos m_freem(top);
817 1.1 christos return (0);
818 1.1 christos }
819 1.1 christos mbytes = MLEN;
820 1.1 christos }
821 1.1 christos if (totbytes >= MINCLSIZE) {
822 1.1 christos MCLGET(m, M_DONTWAIT);
823 1.1 christos if ((m->m_flags & M_EXT) == 0) {
824 1.1 christos m_free(m);
825 1.1 christos m_freem(top);
826 1.1 christos return (0);
827 1.1 christos }
828 1.1 christos mbytes = MCLBYTES;
829 1.1 christos }
830 1.1 christos if (!top) {
831 1.1 christos int pad = ALIGN(sizeof(struct ether_header)) -
832 1.1 christos sizeof(struct ether_header);
833 1.1 christos m->m_data += pad;
834 1.1 christos mbytes -= pad;
835 1.1 christos }
836 1.1 christos mptr = mtod(m, u_int8_t *);
837 1.1 christos mbytes = m->m_len = min(totbytes, mbytes);
838 1.1 christos totbytes -= mbytes;
839 1.1 christos while (mbytes > 0) {
840 1.1 christos if (bufbytes == 0) {
841 1.1 christos buffer = read16(sc, buffer);
842 1.1 christos bufbytes = read16(sc, buffer + 2);
843 1.1 christos bufptr = sc->sc_memoff + buffer +
844 1.1 christos read16(sc, buffer + 4);
845 1.1 christos #ifdef CNW_DEBUG
846 1.1 christos if (sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG)
847 1.1 christos printf("%s: %d bytes @0x%x+0x%x\n",
848 1.1 christos sc->sc_dev.dv_xname, bufbytes,
849 1.1 christos buffer, bufptr - buffer -
850 1.1 christos sc->sc_memoff);
851 1.1 christos #endif
852 1.1 christos }
853 1.1 christos n = mbytes <= bufbytes ? mbytes : bufbytes;
854 1.1 christos bus_space_read_region_1(sc->sc_memt, sc->sc_memh,
855 1.1 christos bufptr, mptr, n);
856 1.1 christos bufbytes -= n;
857 1.1 christos bufptr += n;
858 1.1 christos mbytes -= n;
859 1.1 christos mptr += n;
860 1.1 christos }
861 1.1 christos *mp = m;
862 1.1 christos mp = &m->m_next;
863 1.1 christos }
864 1.1 christos
865 1.1 christos return (top);
866 1.1 christos }
867 1.1 christos
868 1.1 christos
869 1.1 christos /*
870 1.1 christos * Handle received packets.
871 1.1 christos */
872 1.1 christos void
873 1.1 christos cnw_recv(sc)
874 1.1 christos struct cnw_softc *sc;
875 1.1 christos {
876 1.1 christos int rser;
877 1.1 christos struct ifnet *ifp = &sc->sc_ethercom.ec_if;
878 1.1 christos struct mbuf *m;
879 1.1 christos
880 1.1 christos for (;;) {
881 1.1 christos WAIT_WOC(sc);
882 1.1 christos rser = bus_space_read_1(sc->sc_memt, sc->sc_memh,
883 1.1 christos sc->sc_memoff + CNW_EREG_RSER);
884 1.1 christos if (!(rser & CNW_RSER_RXAVAIL))
885 1.1 christos return;
886 1.1 christos
887 1.1 christos /* Pull packet off card */
888 1.1 christos m = cnw_read(sc);
889 1.1 christos
890 1.1 christos /* Acknowledge packet */
891 1.1 christos CNW_CMD0(sc, CNW_CMD_SRP);
892 1.1 christos
893 1.1 christos /* Did we manage to get the packet from the interface? */
894 1.1 christos if (m == 0) {
895 1.1 christos ++ifp->if_ierrors;
896 1.1 christos return;
897 1.1 christos }
898 1.1 christos ++ifp->if_ipackets;
899 1.1 christos
900 1.1 christos #if NBPFILTER > 0
901 1.1 christos if (ifp->if_bpf)
902 1.1 christos bpf_mtap(ifp->if_bpf, m);
903 1.1 christos #endif
904 1.1 christos
905 1.2 thorpej /* Pass the packet up. */
906 1.2 thorpej (*ifp->if_input)(ifp, m);
907 1.1 christos }
908 1.1 christos }
909 1.1 christos
910 1.1 christos
911 1.1 christos /*
912 1.1 christos * Interrupt handler.
913 1.1 christos */
914 1.1 christos int
915 1.1 christos cnw_intr(arg)
916 1.1 christos void *arg;
917 1.1 christos {
918 1.1 christos struct cnw_softc *sc = arg;
919 1.1 christos struct ifnet *ifp = &sc->sc_ethercom.ec_if;
920 1.1 christos int ret, status, rser, tser;
921 1.1 christos
922 1.5 itojun if ((sc->sc_ethercom.ec_if.if_flags & IFF_RUNNING) == 0 ||
923 1.5 itojun (sc->sc_dev.dv_flags & DVF_ACTIVE) == 0)
924 1.1 christos return (0);
925 1.1 christos ifp->if_timer = 0; /* stop watchdog timer */
926 1.1 christos
927 1.1 christos ret = 0;
928 1.1 christos for (;;) {
929 1.1 christos WAIT_WOC(sc);
930 1.12 itojun #ifndef MEMORY_MAPPED
931 1.12 itojun status = bus_space_read_1(sc->sc_iot, sc->sc_ioh,
932 1.12 itojun CNW_REG_CCSR);
933 1.12 itojun #else
934 1.12 itojun status = bus_space_read_1(sc->sc_memt, sc->sc_memh,
935 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_CCSR);
936 1.12 itojun #endif
937 1.12 itojun if (!(status & 0x02)) {
938 1.1 christos if (ret == 0)
939 1.1 christos printf("%s: spurious interrupt\n",
940 1.1 christos sc->sc_dev.dv_xname);
941 1.1 christos return (ret);
942 1.1 christos }
943 1.1 christos ret = 1;
944 1.12 itojun #ifndef MEMORY_MAPPED
945 1.1 christos status = bus_space_read_1(sc->sc_iot, sc->sc_ioh, CNW_REG_ASR);
946 1.12 itojun #else
947 1.12 itojun status = bus_space_read_1(sc->sc_memt, sc->sc_memh,
948 1.12 itojun sc->sc_memoff + CNW_IOM_OFF + CNW_REG_ASR);
949 1.12 itojun #endif
950 1.1 christos
951 1.1 christos /* Anything to receive? */
952 1.3 itojun if (status & CNW_ASR_RXRDY) {
953 1.3 itojun sc->sc_stats.nws_rx++;
954 1.1 christos cnw_recv(sc);
955 1.3 itojun }
956 1.1 christos
957 1.1 christos /* Receive error */
958 1.1 christos if (status & CNW_ASR_RXERR) {
959 1.1 christos /*
960 1.1 christos * I get a *lot* of spurious receive errors
961 1.1 christos * (many per second), even when the interface
962 1.1 christos * is quiescent, so we don't increment
963 1.1 christos * if_ierrors here.
964 1.1 christos */
965 1.1 christos rser = bus_space_read_1(sc->sc_memt, sc->sc_memh,
966 1.1 christos sc->sc_memoff + CNW_EREG_RSER);
967 1.3 itojun
968 1.3 itojun /* RX statistics */
969 1.3 itojun sc->sc_stats.nws_rxerr++;
970 1.3 itojun if (rser & CNW_RSER_RXBIG)
971 1.3 itojun sc->sc_stats.nws_rxframe++;
972 1.3 itojun if (rser & CNW_RSER_RXCRC)
973 1.3 itojun sc->sc_stats.nws_rxcrcerror++;
974 1.3 itojun if (rser & CNW_RSER_RXOVERRUN)
975 1.3 itojun sc->sc_stats.nws_rxoverrun++;
976 1.3 itojun if (rser & CNW_RSER_RXOVERFLOW)
977 1.3 itojun sc->sc_stats.nws_rxoverflow++;
978 1.3 itojun if (rser & CNW_RSER_RXERR)
979 1.3 itojun sc->sc_stats.nws_rxerrors++;
980 1.3 itojun if (rser & CNW_RSER_RXAVAIL)
981 1.3 itojun sc->sc_stats.nws_rxavail++;
982 1.3 itojun
983 1.1 christos /* Clear error bits in RSER */
984 1.1 christos WAIT_WOC(sc);
985 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh,
986 1.1 christos sc->sc_memoff + CNW_EREG_RSERW,
987 1.1 christos CNW_RSER_RXERR |
988 1.1 christos (rser & (CNW_RSER_RXCRC | CNW_RSER_RXBIG)));
989 1.1 christos /* Clear RXERR in ASR */
990 1.1 christos WAIT_WOC(sc);
991 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh,
992 1.1 christos sc->sc_memoff + CNW_EREG_ASCC, CNW_ASR_RXERR);
993 1.1 christos }
994 1.1 christos
995 1.1 christos /* Transmit done */
996 1.1 christos if (status & CNW_ASR_TXDN) {
997 1.1 christos tser = bus_space_read_1(sc->sc_memt, sc->sc_memh,
998 1.1 christos CNW_EREG_TSER);
999 1.3 itojun
1000 1.3 itojun /* TX statistics */
1001 1.3 itojun if (tser & CNW_TSER_TXERR)
1002 1.3 itojun sc->sc_stats.nws_txerrors++;
1003 1.3 itojun if (tser & CNW_TSER_TXNOAP)
1004 1.3 itojun sc->sc_stats.nws_txlostcd++;
1005 1.3 itojun if (tser & CNW_TSER_TXGU)
1006 1.3 itojun sc->sc_stats.nws_txabort++;
1007 1.3 itojun
1008 1.1 christos if (tser & CNW_TSER_TXOK) {
1009 1.3 itojun sc->sc_stats.nws_txokay++;
1010 1.3 itojun sc->sc_stats.nws_txretries[status & 0xf]++;
1011 1.1 christos WAIT_WOC(sc);
1012 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh,
1013 1.1 christos sc->sc_memoff + CNW_EREG_TSERW,
1014 1.1 christos CNW_TSER_TXOK | CNW_TSER_RTRY);
1015 1.1 christos }
1016 1.3 itojun
1017 1.1 christos if (tser & CNW_TSER_ERROR) {
1018 1.1 christos ++ifp->if_oerrors;
1019 1.1 christos WAIT_WOC(sc);
1020 1.1 christos bus_space_write_1(sc->sc_memt, sc->sc_memh,
1021 1.1 christos sc->sc_memoff + CNW_EREG_TSERW,
1022 1.1 christos (tser & CNW_TSER_ERROR) |
1023 1.1 christos CNW_TSER_RTRY);
1024 1.1 christos }
1025 1.4 itojun
1026 1.4 itojun sc->sc_active = 0;
1027 1.4 itojun ifp->if_flags &= ~IFF_OACTIVE;
1028 1.4 itojun
1029 1.1 christos /* Continue to send packets from the queue */
1030 1.1 christos cnw_start(&sc->sc_ethercom.ec_if);
1031 1.1 christos }
1032 1.1 christos
1033 1.1 christos }
1034 1.1 christos }
1035 1.1 christos
1036 1.1 christos
1037 1.1 christos /*
1038 1.1 christos * Handle device ioctls.
1039 1.1 christos */
1040 1.1 christos int
1041 1.1 christos cnw_ioctl(ifp, cmd, data)
1042 1.10 augustss struct ifnet *ifp;
1043 1.1 christos u_long cmd;
1044 1.1 christos caddr_t data;
1045 1.1 christos {
1046 1.1 christos struct cnw_softc *sc = ifp->if_softc;
1047 1.1 christos struct ifaddr *ifa = (struct ifaddr *)data;
1048 1.3 itojun struct ifreq *ifr = (struct ifreq *)data;
1049 1.1 christos int s, error = 0;
1050 1.17.2.6 nathanw struct proc *p = curproc; /*XXX*/
1051 1.1 christos
1052 1.1 christos s = splnet();
1053 1.1 christos
1054 1.1 christos switch (cmd) {
1055 1.1 christos
1056 1.1 christos case SIOCSIFADDR:
1057 1.1 christos if (!(ifp->if_flags & IFF_RUNNING) &&
1058 1.1 christos (error = cnw_enable(sc)) != 0)
1059 1.1 christos break;
1060 1.1 christos ifp->if_flags |= IFF_UP;
1061 1.1 christos switch (ifa->ifa_addr->sa_family) {
1062 1.1 christos #ifdef INET
1063 1.1 christos case AF_INET:
1064 1.3 itojun cnw_init(sc);
1065 1.1 christos arp_ifinit(&sc->sc_ethercom.ec_if, ifa);
1066 1.1 christos break;
1067 1.1 christos #endif
1068 1.3 itojun default:
1069 1.3 itojun cnw_init(sc);
1070 1.3 itojun break;
1071 1.1 christos }
1072 1.1 christos break;
1073 1.1 christos
1074 1.1 christos case SIOCSIFFLAGS:
1075 1.1 christos if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) == IFF_RUNNING) {
1076 1.1 christos /*
1077 1.1 christos * The interface is marked down and it is running, so
1078 1.1 christos * stop it.
1079 1.1 christos */
1080 1.1 christos cnw_disable(sc);
1081 1.1 christos } else if ((ifp->if_flags & (IFF_UP | IFF_RUNNING)) == IFF_UP){
1082 1.1 christos /*
1083 1.1 christos * The interface is marked up and it is stopped, so
1084 1.1 christos * start it.
1085 1.1 christos */
1086 1.1 christos error = cnw_enable(sc);
1087 1.3 itojun } else {
1088 1.3 itojun /* IFF_PROMISC may be changed */
1089 1.3 itojun cnw_init(sc);
1090 1.1 christos }
1091 1.1 christos break;
1092 1.1 christos
1093 1.3 itojun case SIOCADDMULTI:
1094 1.3 itojun case SIOCDELMULTI:
1095 1.3 itojun /* Update our multicast list. */
1096 1.3 itojun error = (cmd == SIOCADDMULTI) ?
1097 1.3 itojun ether_addmulti(ifr, &sc->sc_ethercom) :
1098 1.3 itojun ether_delmulti(ifr, &sc->sc_ethercom);
1099 1.3 itojun if (error == ENETRESET || error == 0) {
1100 1.3 itojun cnw_init(sc);
1101 1.3 itojun error = 0;
1102 1.3 itojun }
1103 1.3 itojun break;
1104 1.3 itojun
1105 1.3 itojun case SIOCGCNWDOMAIN:
1106 1.3 itojun ((struct ifreq *)data)->ifr_domain = sc->sc_domain;
1107 1.3 itojun break;
1108 1.3 itojun
1109 1.3 itojun case SIOCSCNWDOMAIN:
1110 1.3 itojun error = suser(p->p_ucred, &p->p_acflag);
1111 1.3 itojun if (error)
1112 1.3 itojun break;
1113 1.3 itojun error = cnw_setdomain(sc, ifr->ifr_domain);
1114 1.3 itojun break;
1115 1.3 itojun
1116 1.3 itojun case SIOCSCNWKEY:
1117 1.3 itojun error = suser(p->p_ucred, &p->p_acflag);
1118 1.3 itojun if (error)
1119 1.3 itojun break;
1120 1.3 itojun error = cnw_setkey(sc, ifr->ifr_key);
1121 1.3 itojun break;
1122 1.3 itojun
1123 1.3 itojun case SIOCGCNWSTATUS:
1124 1.3 itojun error = suser(p->p_ucred, &p->p_acflag);
1125 1.3 itojun if (error)
1126 1.3 itojun break;
1127 1.3 itojun if ((ifp->if_flags & IFF_RUNNING) == 0)
1128 1.3 itojun break;
1129 1.3 itojun bus_space_read_region_1(sc->sc_memt, sc->sc_memh,
1130 1.3 itojun sc->sc_memoff + CNW_EREG_CB,
1131 1.3 itojun ((struct cnwstatus *)data)->data,
1132 1.3 itojun sizeof(((struct cnwstatus *)data)->data));
1133 1.3 itojun break;
1134 1.3 itojun
1135 1.3 itojun case SIOCGCNWSTATS:
1136 1.17.2.2 nathanw memcpy((void *)&(((struct cnwistats *)data)->stats),
1137 1.17.2.2 nathanw (void *)&sc->sc_stats, sizeof(struct cnwstats));
1138 1.3 itojun break;
1139 1.3 itojun
1140 1.1 christos default:
1141 1.1 christos error = EINVAL;
1142 1.1 christos break;
1143 1.1 christos }
1144 1.1 christos
1145 1.1 christos splx(s);
1146 1.1 christos return (error);
1147 1.1 christos }
1148 1.1 christos
1149 1.1 christos
1150 1.1 christos /*
1151 1.1 christos * Device timeout/watchdog routine. Entered if the device neglects to
1152 1.1 christos * generate an interrupt after a transmit has been started on it.
1153 1.1 christos */
1154 1.1 christos void
1155 1.1 christos cnw_watchdog(ifp)
1156 1.1 christos struct ifnet *ifp;
1157 1.1 christos {
1158 1.1 christos struct cnw_softc *sc = ifp->if_softc;
1159 1.1 christos
1160 1.1 christos printf("%s: device timeout; card reset\n", sc->sc_dev.dv_xname);
1161 1.1 christos ++ifp->if_oerrors;
1162 1.1 christos cnw_init(sc);
1163 1.3 itojun }
1164 1.3 itojun
1165 1.3 itojun int
1166 1.3 itojun cnw_setdomain(sc, domain)
1167 1.3 itojun struct cnw_softc *sc;
1168 1.3 itojun int domain;
1169 1.3 itojun {
1170 1.3 itojun int s;
1171 1.3 itojun
1172 1.3 itojun if (domain & ~0x1ff)
1173 1.3 itojun return EINVAL;
1174 1.3 itojun
1175 1.3 itojun s = splnet();
1176 1.3 itojun CNW_CMD2(sc, CNW_CMD_SMD, domain, domain >> 8);
1177 1.3 itojun splx(s);
1178 1.3 itojun
1179 1.3 itojun sc->sc_domain = domain;
1180 1.3 itojun return 0;
1181 1.3 itojun }
1182 1.3 itojun
1183 1.3 itojun int
1184 1.3 itojun cnw_setkey(sc, key)
1185 1.3 itojun struct cnw_softc *sc;
1186 1.3 itojun int key;
1187 1.3 itojun {
1188 1.3 itojun int s;
1189 1.3 itojun
1190 1.3 itojun if (key & ~0xffff)
1191 1.3 itojun return EINVAL;
1192 1.3 itojun
1193 1.3 itojun s = splnet();
1194 1.3 itojun CNW_CMD2(sc, CNW_CMD_SSK, key, key >> 8);
1195 1.3 itojun splx(s);
1196 1.3 itojun
1197 1.3 itojun sc->sc_skey = key;
1198 1.3 itojun return 0;
1199 1.5 itojun }
1200 1.5 itojun
1201 1.5 itojun int
1202 1.5 itojun cnw_activate(self, act)
1203 1.5 itojun struct device *self;
1204 1.5 itojun enum devact act;
1205 1.5 itojun {
1206 1.5 itojun struct cnw_softc *sc = (struct cnw_softc *)self;
1207 1.5 itojun int rv = 0, s;
1208 1.5 itojun
1209 1.5 itojun s = splnet();
1210 1.5 itojun switch (act) {
1211 1.5 itojun case DVACT_ACTIVATE:
1212 1.5 itojun rv = EOPNOTSUPP;
1213 1.5 itojun break;
1214 1.5 itojun
1215 1.5 itojun case DVACT_DEACTIVATE:
1216 1.5 itojun if_deactivate(&sc->sc_ethercom.ec_if);
1217 1.5 itojun break;
1218 1.5 itojun }
1219 1.5 itojun splx(s);
1220 1.5 itojun return (rv);
1221 1.5 itojun }
1222 1.5 itojun
1223 1.5 itojun int
1224 1.5 itojun cnw_detach(self, flags)
1225 1.5 itojun struct device *self;
1226 1.5 itojun int flags;
1227 1.5 itojun {
1228 1.5 itojun struct cnw_softc *sc = (struct cnw_softc *)self;
1229 1.5 itojun struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1230 1.5 itojun
1231 1.5 itojun /* cnw_disable() checks IFF_RUNNING */
1232 1.5 itojun cnw_disable(sc);
1233 1.5 itojun
1234 1.5 itojun if ((sc->sc_resource & CNW_RES_NET) != 0) {
1235 1.5 itojun ether_ifdetach(ifp);
1236 1.5 itojun if_detach(ifp);
1237 1.5 itojun }
1238 1.5 itojun
1239 1.12 itojun #ifndef MEMORY_MAPPED
1240 1.5 itojun /* unmap and free our i/o windows */
1241 1.5 itojun if ((sc->sc_resource & CNW_RES_IO) != 0) {
1242 1.5 itojun pcmcia_io_unmap(sc->sc_pf, sc->sc_iowin);
1243 1.5 itojun pcmcia_io_free(sc->sc_pf, &sc->sc_pcioh);
1244 1.5 itojun }
1245 1.12 itojun #endif
1246 1.5 itojun
1247 1.5 itojun /* unmap and free our memory windows */
1248 1.5 itojun if ((sc->sc_resource & CNW_RES_MEM) != 0) {
1249 1.5 itojun pcmcia_mem_unmap(sc->sc_pf, sc->sc_memwin);
1250 1.5 itojun pcmcia_mem_free(sc->sc_pf, &sc->sc_pcmemh);
1251 1.5 itojun }
1252 1.5 itojun
1253 1.5 itojun return (0);
1254 1.1 christos }
1255