i82586.c revision 1.73 1 1.73 msaitoh /* $NetBSD: i82586.c,v 1.73 2016/07/11 11:31:50 msaitoh Exp $ */
2 1.1 pk
3 1.1 pk /*-
4 1.9 pk * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.9 pk * All rights reserved.
6 1.9 pk *
7 1.9 pk * This code is derived from software contributed to The NetBSD Foundation
8 1.17 mycroft * by Paul Kranenburg and Charles M. Hannum.
9 1.9 pk *
10 1.9 pk * Redistribution and use in source and binary forms, with or without
11 1.9 pk * modification, are permitted provided that the following conditions
12 1.9 pk * are met:
13 1.9 pk * 1. Redistributions of source code must retain the above copyright
14 1.9 pk * notice, this list of conditions and the following disclaimer.
15 1.9 pk * 2. Redistributions in binary form must reproduce the above copyright
16 1.9 pk * notice, this list of conditions and the following disclaimer in the
17 1.9 pk * documentation and/or other materials provided with the distribution.
18 1.9 pk *
19 1.9 pk * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.9 pk * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.9 pk * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.9 pk * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.9 pk * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.9 pk * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.9 pk * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.9 pk * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.9 pk * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.9 pk * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.9 pk * POSSIBILITY OF SUCH DAMAGE.
30 1.9 pk */
31 1.9 pk
32 1.9 pk /*-
33 1.1 pk * Copyright (c) 1997 Paul Kranenburg.
34 1.1 pk * Copyright (c) 1992, 1993, University of Vermont and State
35 1.1 pk * Agricultural College.
36 1.1 pk * Copyright (c) 1992, 1993, Garrett A. Wollman.
37 1.1 pk *
38 1.1 pk * Portions:
39 1.1 pk * Copyright (c) 1994, 1995, Rafal K. Boni
40 1.1 pk * Copyright (c) 1990, 1991, William F. Jolitz
41 1.1 pk * Copyright (c) 1990, The Regents of the University of California
42 1.1 pk *
43 1.1 pk * All rights reserved.
44 1.1 pk *
45 1.1 pk * Redistribution and use in source and binary forms, with or without
46 1.1 pk * modification, are permitted provided that the following conditions
47 1.1 pk * are met:
48 1.1 pk * 1. Redistributions of source code must retain the above copyright
49 1.1 pk * notice, this list of conditions and the following disclaimer.
50 1.1 pk * 2. Redistributions in binary form must reproduce the above copyright
51 1.1 pk * notice, this list of conditions and the following disclaimer in the
52 1.1 pk * documentation and/or other materials provided with the distribution.
53 1.1 pk * 3. All advertising materials mentioning features or use of this software
54 1.1 pk * must display the following acknowledgement:
55 1.18 mycroft * This product includes software developed by the University of Vermont
56 1.18 mycroft * and State Agricultural College and Garrett A. Wollman, by William F.
57 1.18 mycroft * Jolitz, and by the University of California, Berkeley, Lawrence
58 1.18 mycroft * Berkeley Laboratory, and its contributors.
59 1.1 pk * 4. Neither the names of the Universities nor the names of the authors
60 1.1 pk * may be used to endorse or promote products derived from this software
61 1.1 pk * without specific prior written permission.
62 1.1 pk *
63 1.1 pk * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
64 1.1 pk * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
65 1.1 pk * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
66 1.1 pk * ARE DISCLAIMED. IN NO EVENT SHALL THE UNIVERSITY OR AUTHORS BE LIABLE
67 1.1 pk * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
68 1.1 pk * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
69 1.1 pk * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
70 1.1 pk * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
71 1.1 pk * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
72 1.1 pk * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
73 1.1 pk * SUCH DAMAGE.
74 1.1 pk */
75 1.1 pk
76 1.1 pk /*
77 1.1 pk * Intel 82586 Ethernet chip
78 1.1 pk * Register, bit, and structure definitions.
79 1.1 pk *
80 1.1 pk * Original StarLAN driver written by Garrett Wollman with reference to the
81 1.1 pk * Clarkson Packet Driver code for this chip written by Russ Nelson and others.
82 1.1 pk *
83 1.1 pk * BPF support code taken from hpdev/if_le.c, supplied with tcpdump.
84 1.1 pk *
85 1.1 pk * 3C507 support is loosely based on code donated to NetBSD by Rafal Boni.
86 1.1 pk *
87 1.1 pk * Majorly cleaned up and 3C507 code merged by Charles Hannum.
88 1.1 pk *
89 1.1 pk * Converted to SUN ie driver by Charles D. Cranor,
90 1.1 pk * October 1994, January 1995.
91 1.1 pk * This sun version based on i386 version 1.30.
92 1.1 pk */
93 1.1 pk
94 1.1 pk /*
95 1.1 pk * The i82586 is a very painful chip, found in sun3's, sun-4/100's
96 1.1 pk * sun-4/200's, and VME based suns. The byte order is all wrong for a
97 1.1 pk * SUN, making life difficult. Programming this chip is mostly the same,
98 1.1 pk * but certain details differ from system to system. This driver is
99 1.1 pk * written so that different "ie" interfaces can be controled by the same
100 1.1 pk * driver.
101 1.1 pk */
102 1.1 pk
103 1.1 pk /*
104 1.1 pk Mode of operation:
105 1.1 pk
106 1.1 pk We run the 82586 in a standard Ethernet mode. We keep NFRAMES
107 1.1 pk received frame descriptors around for the receiver to use, and
108 1.1 pk NRXBUF associated receive buffer descriptors, both in a circular
109 1.1 pk list. Whenever a frame is received, we rotate both lists as
110 1.1 pk necessary. (The 586 treats both lists as a simple queue.) We also
111 1.1 pk keep a transmit command around so that packets can be sent off
112 1.1 pk quickly.
113 1.1 pk
114 1.1 pk We configure the adapter in AL-LOC = 1 mode, which means that the
115 1.1 pk Ethernet/802.3 MAC header is placed at the beginning of the receive
116 1.1 pk buffer rather than being split off into various fields in the RFD.
117 1.1 pk This also means that we must include this header in the transmit
118 1.1 pk buffer as well.
119 1.1 pk
120 1.1 pk By convention, all transmit commands, and only transmit commands,
121 1.1 pk shall have the I (IE_CMD_INTR) bit set in the command. This way,
122 1.9 pk when an interrupt arrives at i82586_intr(), it is immediately possible
123 1.1 pk to tell what precisely caused it. ANY OTHER command-sending
124 1.1 pk routines should run at splnet(), and should post an acknowledgement
125 1.1 pk to every interrupt they generate.
126 1.1 pk
127 1.6 pk To save the expense of shipping a command to 82586 every time we
128 1.6 pk want to send a frame, we use a linked list of commands consisting
129 1.6 pk of alternate XMIT and NOP commands. The links of these elements
130 1.6 pk are manipulated (in iexmit()) such that the NOP command loops back
131 1.6 pk to itself whenever the following XMIT command is not yet ready to
132 1.6 pk go. Whenever an XMIT is ready, the preceding NOP link is pointed
133 1.6 pk at it, while its own link field points to the following NOP command.
134 1.6 pk Thus, a single transmit command sets off an interlocked traversal
135 1.6 pk of the xmit command chain, with the host processor in control of
136 1.6 pk the synchronization.
137 1.1 pk */
138 1.1 pk
139 1.41 lukem #include <sys/cdefs.h>
140 1.73 msaitoh __KERNEL_RCSID(0, "$NetBSD: i82586.c,v 1.73 2016/07/11 11:31:50 msaitoh Exp $");
141 1.41 lukem
142 1.40 lukem
143 1.1 pk #include <sys/param.h>
144 1.1 pk #include <sys/systm.h>
145 1.1 pk #include <sys/mbuf.h>
146 1.1 pk #include <sys/socket.h>
147 1.1 pk #include <sys/ioctl.h>
148 1.1 pk #include <sys/errno.h>
149 1.1 pk #include <sys/syslog.h>
150 1.1 pk #include <sys/device.h>
151 1.1 pk
152 1.1 pk #include <net/if.h>
153 1.7 pk #include <net/if_dl.h>
154 1.1 pk #include <net/if_types.h>
155 1.7 pk #include <net/if_media.h>
156 1.1 pk #include <net/if_ether.h>
157 1.1 pk
158 1.1 pk #include <net/bpf.h>
159 1.1 pk #include <net/bpfdesc.h>
160 1.1 pk
161 1.60 ad #include <sys/bus.h>
162 1.5 pk
163 1.1 pk #include <dev/ic/i82586reg.h>
164 1.1 pk #include <dev/ic/i82586var.h>
165 1.1 pk
166 1.50 perry void i82586_reset(struct ie_softc *, int);
167 1.50 perry void i82586_watchdog(struct ifnet *);
168 1.50 perry int i82586_init(struct ifnet *);
169 1.58 christos int i82586_ioctl(struct ifnet *, u_long, void *);
170 1.50 perry void i82586_start(struct ifnet *);
171 1.50 perry void i82586_stop(struct ifnet *, int);
172 1.50 perry
173 1.50 perry
174 1.50 perry int i82586_rint(struct ie_softc *, int);
175 1.50 perry int i82586_tint(struct ie_softc *, int);
176 1.50 perry
177 1.50 perry int i82586_mediachange(struct ifnet *);
178 1.50 perry void i82586_mediastatus(struct ifnet *, struct ifmediareq *);
179 1.50 perry
180 1.50 perry static int ie_readframe(struct ie_softc *, int);
181 1.50 perry static struct mbuf *ieget(struct ie_softc *, int, int);
182 1.50 perry static int i82586_get_rbd_list(struct ie_softc *,
183 1.50 perry u_int16_t *, u_int16_t *, int *);
184 1.50 perry static void i82586_release_rbd_list(struct ie_softc *,
185 1.50 perry u_int16_t, u_int16_t);
186 1.50 perry static int i82586_drop_frames(struct ie_softc *);
187 1.50 perry static int i82586_chk_rx_ring(struct ie_softc *);
188 1.50 perry
189 1.55 perry static inline void ie_ack(struct ie_softc *, u_int);
190 1.55 perry static inline void iexmit(struct ie_softc *);
191 1.50 perry static void i82586_start_transceiver(struct ie_softc *);
192 1.50 perry
193 1.50 perry static void i82586_count_errors(struct ie_softc *);
194 1.50 perry static void i82586_rx_errors(struct ie_softc *, int, int);
195 1.50 perry static void i82586_setup_bufs(struct ie_softc *);
196 1.50 perry static void setup_simple_command(struct ie_softc *, int, int);
197 1.50 perry static int ie_cfg_setup(struct ie_softc *, int, int, int);
198 1.50 perry static int ie_ia_setup(struct ie_softc *, int);
199 1.50 perry static void ie_run_tdr(struct ie_softc *, int);
200 1.50 perry static int ie_mc_setup(struct ie_softc *, int);
201 1.50 perry static void ie_mc_reset(struct ie_softc *);
202 1.50 perry static int i82586_start_cmd(struct ie_softc *, int, int, int, int);
203 1.50 perry static int i82586_cmd_wait(struct ie_softc *);
204 1.7 pk
205 1.25 pk #if I82586_DEBUG
206 1.50 perry void print_rbd(struct ie_softc *, int);
207 1.7 pk #endif
208 1.1 pk
209 1.45 bouyer static char* padbuf = NULL;
210 1.1 pk
211 1.1 pk /*
212 1.9 pk * Front-ends call this function to attach to the MI driver.
213 1.9 pk *
214 1.9 pk * The front-end has responsibility for managing the ICP and ISCP
215 1.9 pk * structures. Both of these are opaque to us. Also, the front-end
216 1.9 pk * chooses a location for the SCB which is expected to be addressable
217 1.9 pk * (through `sc->scb') as an offset against the shared-memory bus handle.
218 1.9 pk *
219 1.9 pk * The following MD interface function must be setup by the front-end
220 1.9 pk * before calling here:
221 1.9 pk *
222 1.9 pk * hwreset - board dependent reset
223 1.9 pk * hwinit - board dependent initialization
224 1.9 pk * chan_attn - channel attention
225 1.9 pk * intrhook - board dependent interrupt processing
226 1.9 pk * memcopyin - shared memory copy: board to KVA
227 1.9 pk * memcopyout - shared memory copy: KVA to board
228 1.11 kleink * ie_bus_read16 - read a sixteen-bit i82586 pointer
229 1.9 pk * ie_bus_write16 - write a sixteen-bit i82586 pointer
230 1.11 kleink * ie_bus_write24 - write a twenty-four-bit i82586 pointer
231 1.9 pk *
232 1.1 pk */
233 1.1 pk void
234 1.73 msaitoh i82586_attach(struct ie_softc *sc, const char *name, u_int8_t *etheraddr,
235 1.73 msaitoh int *media, int nmedia, int defmedia)
236 1.1 pk {
237 1.7 pk int i;
238 1.1 pk struct ifnet *ifp = &sc->sc_ethercom.ec_if;
239 1.1 pk
240 1.69 tsutsui strlcpy(ifp->if_xname, device_xname(sc->sc_dev), IFNAMSIZ);
241 1.1 pk ifp->if_softc = sc;
242 1.7 pk ifp->if_start = i82586_start;
243 1.7 pk ifp->if_ioctl = i82586_ioctl;
244 1.29 bjh21 ifp->if_init = i82586_init;
245 1.29 bjh21 ifp->if_stop = i82586_stop;
246 1.7 pk ifp->if_watchdog = i82586_watchdog;
247 1.1 pk ifp->if_flags =
248 1.1 pk IFF_BROADCAST | IFF_SIMPLEX | IFF_NOTRAILERS | IFF_MULTICAST;
249 1.33 thorpej IFQ_SET_READY(&ifp->if_snd);
250 1.1 pk
251 1.9 pk /* Initialize media goo. */
252 1.7 pk ifmedia_init(&sc->sc_media, 0, i82586_mediachange, i82586_mediastatus);
253 1.7 pk if (media != NULL) {
254 1.7 pk for (i = 0; i < nmedia; i++)
255 1.7 pk ifmedia_add(&sc->sc_media, media[i], 0, NULL);
256 1.7 pk ifmedia_set(&sc->sc_media, defmedia);
257 1.7 pk } else {
258 1.7 pk ifmedia_add(&sc->sc_media, IFM_ETHER|IFM_MANUAL, 0, NULL);
259 1.7 pk ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_MANUAL);
260 1.7 pk }
261 1.7 pk
262 1.45 bouyer if (padbuf == NULL) {
263 1.45 bouyer padbuf = malloc(ETHER_MIN_LEN - ETHER_CRC_LEN, M_DEVBUF,
264 1.45 bouyer M_ZERO | M_NOWAIT);
265 1.45 bouyer if (padbuf == NULL) {
266 1.73 msaitoh aprint_error_dev(sc->sc_dev,
267 1.73 msaitoh "can't allocate pad buffer\n");
268 1.45 bouyer return;
269 1.45 bouyer }
270 1.45 bouyer }
271 1.45 bouyer
272 1.1 pk /* Attach the interface. */
273 1.1 pk if_attach(ifp);
274 1.1 pk ether_ifattach(ifp, etheraddr);
275 1.1 pk
276 1.1 pk printf(" address %s, type %s\n", ether_sprintf(etheraddr), name);
277 1.1 pk }
278 1.1 pk
279 1.1 pk
280 1.1 pk /*
281 1.9 pk * Device timeout/watchdog routine.
282 1.9 pk * Entered if the device neglects to generate an interrupt after a
283 1.9 pk * transmit has been started on it.
284 1.1 pk */
285 1.1 pk void
286 1.65 dsl i82586_watchdog(struct ifnet *ifp)
287 1.1 pk {
288 1.1 pk struct ie_softc *sc = ifp->if_softc;
289 1.1 pk
290 1.69 tsutsui log(LOG_ERR, "%s: device timeout\n", device_xname(sc->sc_dev));
291 1.1 pk ++ifp->if_oerrors;
292 1.1 pk
293 1.7 pk i82586_reset(sc, 1);
294 1.1 pk }
295 1.1 pk
296 1.9 pk static int
297 1.65 dsl i82586_cmd_wait(struct ie_softc *sc)
298 1.9 pk {
299 1.9 pk /* spin on i82586 command acknowledge; wait at most 0.9 (!) seconds */
300 1.9 pk int i, off;
301 1.34 bjh21 u_int16_t cmd;
302 1.9 pk
303 1.9 pk for (i = 0; i < 900000; i++) {
304 1.9 pk /* Read the command word */
305 1.9 pk off = IE_SCB_CMD(sc->scb);
306 1.34 bjh21
307 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
308 1.34 bjh21 if ((cmd = sc->ie_bus_read16(sc, off)) == 0)
309 1.9 pk return (0);
310 1.9 pk delay(1);
311 1.9 pk }
312 1.9 pk
313 1.34 bjh21 off = IE_SCB_STATUS(sc->scb);
314 1.34 bjh21 printf("i82586_cmd_wait: timo(%ssync): scb status: 0x%x, cmd: 0x%x\n",
315 1.51 perry sc->async_cmd_inprogress?"a":"",
316 1.34 bjh21 sc->ie_bus_read16(sc, off), cmd);
317 1.34 bjh21
318 1.9 pk return (1); /* Timeout */
319 1.9 pk }
320 1.9 pk
321 1.1 pk /*
322 1.9 pk * Send a command to the controller and wait for it to either complete
323 1.9 pk * or be accepted, depending on the command. If the command pointer
324 1.9 pk * is null, then pretend that the command is not an action command.
325 1.9 pk * If the command pointer is not null, and the command is an action
326 1.9 pk * command, wait for one of the MASK bits to turn on in the command's
327 1.9 pk * status field.
328 1.9 pk * If ASYNC is set, we just call the chip's attention and return.
329 1.9 pk * We may have to wait for the command's acceptance later though.
330 1.1 pk */
331 1.9 pk static int
332 1.73 msaitoh i82586_start_cmd(struct ie_softc *sc, int cmd, int iecmdbuf, int mask,
333 1.73 msaitoh int async)
334 1.9 pk {
335 1.9 pk int i;
336 1.9 pk int off;
337 1.9 pk
338 1.10 pk if (sc->async_cmd_inprogress != 0) {
339 1.9 pk /*
340 1.9 pk * If previous command was issued asynchronously, wait
341 1.9 pk * for it now.
342 1.9 pk */
343 1.9 pk if (i82586_cmd_wait(sc) != 0)
344 1.9 pk return (1);
345 1.10 pk sc->async_cmd_inprogress = 0;
346 1.9 pk }
347 1.9 pk
348 1.9 pk off = IE_SCB_CMD(sc->scb);
349 1.34 bjh21 sc->ie_bus_write16(sc, off, cmd);
350 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_WRITE);
351 1.36 jdolecek (sc->chan_attn)(sc, CARD_RESET);
352 1.9 pk
353 1.9 pk if (async != 0) {
354 1.10 pk sc->async_cmd_inprogress = 1;
355 1.9 pk return (0);
356 1.9 pk }
357 1.9 pk
358 1.9 pk if (IE_ACTION_COMMAND(cmd) && iecmdbuf) {
359 1.9 pk int status;
360 1.9 pk /*
361 1.9 pk * Now spin-lock waiting for status. This is not a very nice
362 1.9 pk * thing to do, and can kill performance pretty well...
363 1.9 pk * According to the packet driver, the minimum timeout
364 1.9 pk * should be .369 seconds.
365 1.9 pk */
366 1.9 pk for (i = 0; i < 369000; i++) {
367 1.9 pk /* Read the command status */
368 1.9 pk off = IE_CMD_COMMON_STATUS(iecmdbuf);
369 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
370 1.34 bjh21 status = sc->ie_bus_read16(sc, off);
371 1.9 pk if (status & mask)
372 1.9 pk return (0);
373 1.9 pk delay(1);
374 1.9 pk }
375 1.9 pk
376 1.9 pk } else {
377 1.9 pk /*
378 1.9 pk * Otherwise, just wait for the command to be accepted.
379 1.9 pk */
380 1.9 pk return (i82586_cmd_wait(sc));
381 1.9 pk }
382 1.9 pk
383 1.9 pk /* Timeout */
384 1.9 pk return (1);
385 1.9 pk }
386 1.9 pk
387 1.9 pk /*
388 1.9 pk * Interrupt Acknowledge.
389 1.9 pk */
390 1.55 perry static inline void
391 1.66 dsl ie_ack(struct ie_softc *sc, u_int mask)
392 1.66 dsl /* mask: in native byte-order */
393 1.1 pk {
394 1.10 pk u_int status;
395 1.1 pk
396 1.34 bjh21 IE_BUS_BARRIER(sc, 0, 0, BUS_SPACE_BARRIER_READ);
397 1.34 bjh21 status = sc->ie_bus_read16(sc, IE_SCB_STATUS(sc->scb));
398 1.10 pk i82586_start_cmd(sc, status & mask, 0, 0, 0);
399 1.27 bjh21 if (sc->intrhook)
400 1.27 bjh21 sc->intrhook(sc, INTR_ACK);
401 1.1 pk }
402 1.1 pk
403 1.9 pk /*
404 1.9 pk * Transfer accumulated chip error counters to IF.
405 1.9 pk */
406 1.54 perry static inline void
407 1.65 dsl i82586_count_errors(struct ie_softc *sc)
408 1.9 pk {
409 1.9 pk int scb = sc->scb;
410 1.9 pk
411 1.9 pk sc->sc_ethercom.ec_if.if_ierrors +=
412 1.9 pk sc->ie_bus_read16(sc, IE_SCB_ERRCRC(scb)) +
413 1.9 pk sc->ie_bus_read16(sc, IE_SCB_ERRALN(scb)) +
414 1.9 pk sc->ie_bus_read16(sc, IE_SCB_ERRRES(scb)) +
415 1.9 pk sc->ie_bus_read16(sc, IE_SCB_ERROVR(scb));
416 1.3 pk
417 1.9 pk /* Clear error counters */
418 1.9 pk sc->ie_bus_write16(sc, IE_SCB_ERRCRC(scb), 0);
419 1.9 pk sc->ie_bus_write16(sc, IE_SCB_ERRALN(scb), 0);
420 1.9 pk sc->ie_bus_write16(sc, IE_SCB_ERRRES(scb), 0);
421 1.9 pk sc->ie_bus_write16(sc, IE_SCB_ERROVR(scb), 0);
422 1.9 pk }
423 1.9 pk
424 1.9 pk static void
425 1.65 dsl i82586_rx_errors(struct ie_softc *sc, int fn, int status)
426 1.9 pk {
427 1.9 pk char bits[128];
428 1.64 christos snprintb(bits, sizeof(bits), IE_FD_STATUSBITS, status);
429 1.64 christos log(LOG_ERR, "%s: rx error (frame# %d): %s\n",
430 1.69 tsutsui device_xname(sc->sc_dev), fn, bits);
431 1.9 pk }
432 1.9 pk
433 1.9 pk /*
434 1.9 pk * i82586 interrupt entry point.
435 1.9 pk */
436 1.9 pk int
437 1.65 dsl i82586_intr(void *v)
438 1.1 pk {
439 1.9 pk struct ie_softc *sc = v;
440 1.9 pk u_int status;
441 1.9 pk int off;
442 1.9 pk
443 1.9 pk /*
444 1.9 pk * Implementation dependent interrupt handling.
445 1.9 pk */
446 1.9 pk if (sc->intrhook)
447 1.9 pk (sc->intrhook)(sc, INTR_ENTER);
448 1.9 pk
449 1.9 pk off = IE_SCB_STATUS(sc->scb);
450 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
451 1.9 pk status = sc->ie_bus_read16(sc, off) & IE_ST_WHENCE;
452 1.9 pk
453 1.9 pk if ((status & IE_ST_WHENCE) == 0) {
454 1.9 pk if (sc->intrhook)
455 1.9 pk (sc->intrhook)(sc, INTR_EXIT);
456 1.9 pk
457 1.9 pk return (0);
458 1.9 pk }
459 1.9 pk
460 1.9 pk loop:
461 1.9 pk /* Ack interrupts FIRST in case we receive more during the ISR. */
462 1.9 pk #if 0
463 1.9 pk ie_ack(sc, status & IE_ST_WHENCE);
464 1.9 pk #endif
465 1.9 pk i82586_start_cmd(sc, status & IE_ST_WHENCE, 0, 0, 1);
466 1.9 pk
467 1.9 pk if (status & (IE_ST_FR | IE_ST_RNR))
468 1.9 pk if (i82586_rint(sc, status) != 0)
469 1.9 pk goto reset;
470 1.9 pk
471 1.9 pk if (status & IE_ST_CX)
472 1.9 pk if (i82586_tint(sc, status) != 0)
473 1.9 pk goto reset;
474 1.9 pk
475 1.25 pk #if I82586_DEBUG
476 1.9 pk if ((status & IE_ST_CNA) && (sc->sc_debug & IED_CNA))
477 1.73 msaitoh printf("%s: cna; status=0x%x\n", device_xname(sc->sc_dev),
478 1.73 msaitoh status);
479 1.9 pk #endif
480 1.9 pk if (sc->intrhook)
481 1.9 pk (sc->intrhook)(sc, INTR_LOOP);
482 1.9 pk
483 1.9 pk /*
484 1.9 pk * Interrupt ACK was posted asynchronously; wait for
485 1.9 pk * completion here before reading SCB status again.
486 1.51 perry *
487 1.34 bjh21 * If ACK fails, try to reset the chip, in hopes that
488 1.34 bjh21 * it helps.
489 1.9 pk */
490 1.34 bjh21 if (i82586_cmd_wait(sc) != 0)
491 1.34 bjh21 goto reset;
492 1.9 pk
493 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
494 1.9 pk status = sc->ie_bus_read16(sc, off);
495 1.9 pk if ((status & IE_ST_WHENCE) != 0)
496 1.9 pk goto loop;
497 1.9 pk
498 1.10 pk out:
499 1.9 pk if (sc->intrhook)
500 1.9 pk (sc->intrhook)(sc, INTR_EXIT);
501 1.9 pk return (1);
502 1.9 pk
503 1.9 pk reset:
504 1.9 pk i82586_cmd_wait(sc);
505 1.9 pk i82586_reset(sc, 1);
506 1.10 pk goto out;
507 1.10 pk
508 1.9 pk }
509 1.9 pk
510 1.9 pk /*
511 1.9 pk * Process a received-frame interrupt.
512 1.9 pk */
513 1.9 pk int
514 1.65 dsl i82586_rint(struct ie_softc *sc, int scbstatus)
515 1.9 pk {
516 1.9 pk static int timesthru = 1024;
517 1.9 pk int i, status, off;
518 1.9 pk
519 1.25 pk #if I82586_DEBUG
520 1.9 pk if (sc->sc_debug & IED_RINT)
521 1.9 pk printf("%s: rint: status 0x%x\n",
522 1.69 tsutsui device_xname(sc->sc_dev), scbstatus);
523 1.9 pk #endif
524 1.9 pk
525 1.9 pk for (;;) {
526 1.9 pk int drop = 0;
527 1.9 pk
528 1.9 pk i = sc->rfhead;
529 1.9 pk off = IE_RFRAME_STATUS(sc->rframes, i);
530 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
531 1.9 pk status = sc->ie_bus_read16(sc, off);
532 1.1 pk
533 1.25 pk #if I82586_DEBUG
534 1.9 pk if (sc->sc_debug & IED_RINT)
535 1.9 pk printf("%s: rint: frame(%d) status 0x%x\n",
536 1.69 tsutsui device_xname(sc->sc_dev), i, status);
537 1.1 pk #endif
538 1.9 pk if ((status & IE_FD_COMPLETE) == 0) {
539 1.9 pk if ((status & IE_FD_OK) != 0) {
540 1.10 pk printf("%s: rint: weird: ",
541 1.69 tsutsui device_xname(sc->sc_dev));
542 1.9 pk i82586_rx_errors(sc, i, status);
543 1.9 pk break;
544 1.9 pk }
545 1.9 pk if (--timesthru == 0) {
546 1.9 pk /* Account the accumulated errors */
547 1.9 pk i82586_count_errors(sc);
548 1.9 pk timesthru = 1024;
549 1.9 pk }
550 1.9 pk break;
551 1.9 pk } else if ((status & IE_FD_OK) == 0) {
552 1.9 pk /*
553 1.9 pk * If the chip is configured to automatically
554 1.9 pk * discard bad frames, the only reason we can
555 1.9 pk * get here is an "out-of-resource" condition.
556 1.9 pk */
557 1.9 pk i82586_rx_errors(sc, i, status);
558 1.9 pk drop = 1;
559 1.1 pk }
560 1.1 pk
561 1.25 pk #if I82586_DEBUG
562 1.9 pk if ((status & IE_FD_BUSY) != 0)
563 1.9 pk printf("%s: rint: frame(%d) busy; status=0x%x\n",
564 1.69 tsutsui device_xname(sc->sc_dev), i, status);
565 1.9 pk #endif
566 1.9 pk
567 1.9 pk
568 1.9 pk /*
569 1.9 pk * Advance the RFD list, since we're done with
570 1.9 pk * this descriptor.
571 1.9 pk */
572 1.9 pk
573 1.9 pk /* Clear frame status */
574 1.9 pk sc->ie_bus_write16(sc, off, 0);
575 1.1 pk
576 1.9 pk /* Put fence at this frame (the head) */
577 1.9 pk off = IE_RFRAME_LAST(sc->rframes, i);
578 1.9 pk sc->ie_bus_write16(sc, off, IE_FD_EOL|IE_FD_SUSP);
579 1.9 pk
580 1.9 pk /* and clear RBD field */
581 1.9 pk off = IE_RFRAME_BUFDESC(sc->rframes, i);
582 1.9 pk sc->ie_bus_write16(sc, off, 0xffff);
583 1.9 pk
584 1.9 pk /* Remove fence from current tail */
585 1.9 pk off = IE_RFRAME_LAST(sc->rframes, sc->rftail);
586 1.9 pk sc->ie_bus_write16(sc, off, 0);
587 1.9 pk
588 1.9 pk if (++sc->rftail == sc->nframes)
589 1.9 pk sc->rftail = 0;
590 1.9 pk if (++sc->rfhead == sc->nframes)
591 1.9 pk sc->rfhead = 0;
592 1.9 pk
593 1.9 pk /* Pull the frame off the board */
594 1.9 pk if (drop) {
595 1.9 pk i82586_drop_frames(sc);
596 1.10 pk if ((status & IE_FD_RNR) != 0)
597 1.9 pk sc->rnr_expect = 1;
598 1.9 pk sc->sc_ethercom.ec_if.if_ierrors++;
599 1.9 pk } else if (ie_readframe(sc, i) != 0)
600 1.9 pk return (1);
601 1.9 pk }
602 1.9 pk
603 1.10 pk if ((scbstatus & IE_ST_RNR) != 0) {
604 1.10 pk
605 1.10 pk /*
606 1.10 pk * Receiver went "Not Ready". We try to figure out
607 1.10 pk * whether this was an expected event based on past
608 1.10 pk * frame status values.
609 1.10 pk */
610 1.9 pk
611 1.10 pk if ((scbstatus & IE_RUS_SUSPEND) != 0) {
612 1.10 pk /*
613 1.10 pk * We use the "suspend on last frame" flag.
614 1.10 pk * Send a RU RESUME command in response, since
615 1.10 pk * we should have dealt with all completed frames
616 1.10 pk * by now.
617 1.10 pk */
618 1.10 pk printf("RINT: SUSPENDED; scbstatus=0x%x\n",
619 1.10 pk scbstatus);
620 1.9 pk if (i82586_start_cmd(sc, IE_RUC_RESUME, 0, 0, 0) == 0)
621 1.9 pk return (0);
622 1.73 msaitoh aprint_error_dev(sc->sc_dev,
623 1.73 msaitoh "RU RESUME command timed out\n");
624 1.10 pk return (1); /* Ask for a reset */
625 1.1 pk }
626 1.10 pk
627 1.10 pk if (sc->rnr_expect != 0) {
628 1.10 pk /*
629 1.10 pk * The RNR condition was announced in the previously
630 1.10 pk * completed frame. Assume the receive ring is Ok,
631 1.10 pk * so restart the receiver without further delay.
632 1.10 pk */
633 1.9 pk i82586_start_transceiver(sc);
634 1.9 pk sc->rnr_expect = 0;
635 1.9 pk return (0);
636 1.10 pk
637 1.10 pk } else if ((scbstatus & IE_RUS_NOSPACE) != 0) {
638 1.10 pk /*
639 1.10 pk * We saw no previous IF_FD_RNR flag.
640 1.10 pk * We check our ring invariants and, if ok,
641 1.10 pk * just restart the receiver at the current
642 1.10 pk * point in the ring.
643 1.10 pk */
644 1.10 pk if (i82586_chk_rx_ring(sc) != 0)
645 1.10 pk return (1);
646 1.10 pk
647 1.10 pk i82586_start_transceiver(sc);
648 1.10 pk sc->sc_ethercom.ec_if.if_ierrors++;
649 1.10 pk return (0);
650 1.9 pk } else
651 1.9 pk printf("%s: receiver not ready; scbstatus=0x%x\n",
652 1.69 tsutsui device_xname(sc->sc_dev), scbstatus);
653 1.10 pk
654 1.9 pk sc->sc_ethercom.ec_if.if_ierrors++;
655 1.10 pk return (1); /* Ask for a reset */
656 1.9 pk }
657 1.10 pk
658 1.9 pk return (0);
659 1.1 pk }
660 1.1 pk
661 1.1 pk /*
662 1.9 pk * Process a command-complete interrupt. These are only generated by the
663 1.10 pk * transmission of frames. This routine is deceptively simple, since most
664 1.10 pk * of the real work is done by i82586_start().
665 1.1 pk */
666 1.9 pk int
667 1.65 dsl i82586_tint(struct ie_softc *sc, int scbstatus)
668 1.1 pk {
669 1.9 pk struct ifnet *ifp = &sc->sc_ethercom.ec_if;
670 1.9 pk int status;
671 1.6 pk
672 1.9 pk ifp->if_timer = 0;
673 1.9 pk ifp->if_flags &= ~IFF_OACTIVE;
674 1.1 pk
675 1.25 pk #if I82586_DEBUG
676 1.9 pk if (sc->xmit_busy <= 0) {
677 1.9 pk printf("i82586_tint: WEIRD: xmit_busy=%d, xctail=%d, xchead=%d\n",
678 1.9 pk sc->xmit_busy, sc->xctail, sc->xchead);
679 1.10 pk return (0);
680 1.9 pk }
681 1.1 pk #endif
682 1.1 pk
683 1.9 pk status = sc->ie_bus_read16(sc, IE_CMD_XMIT_STATUS(sc->xmit_cmds,
684 1.9 pk sc->xctail));
685 1.6 pk
686 1.25 pk #if I82586_DEBUG
687 1.9 pk if (sc->sc_debug & IED_TINT)
688 1.9 pk printf("%s: tint: SCB status 0x%x; xmit status 0x%x\n",
689 1.69 tsutsui device_xname(sc->sc_dev), scbstatus, status);
690 1.9 pk #endif
691 1.6 pk
692 1.9 pk if ((status & IE_STAT_COMPL) == 0 || (status & IE_STAT_BUSY)) {
693 1.9 pk printf("i82586_tint: command still busy; status=0x%x; tail=%d\n",
694 1.9 pk status, sc->xctail);
695 1.9 pk printf("iestatus = 0x%x\n", scbstatus);
696 1.9 pk }
697 1.9 pk
698 1.9 pk if (status & IE_STAT_OK) {
699 1.9 pk ifp->if_opackets++;
700 1.9 pk ifp->if_collisions += (status & IE_XS_MAXCOLL);
701 1.9 pk } else {
702 1.9 pk ifp->if_oerrors++;
703 1.9 pk /*
704 1.9 pk * Check SQE and DEFERRED?
705 1.9 pk * What if more than one bit is set?
706 1.9 pk */
707 1.9 pk if (status & IE_STAT_ABORT)
708 1.69 tsutsui aprint_error_dev(sc->sc_dev, "send aborted\n");
709 1.9 pk else if (status & IE_XS_NOCARRIER)
710 1.69 tsutsui aprint_error_dev(sc->sc_dev, "no carrier\n");
711 1.9 pk else if (status & IE_XS_LOSTCTS)
712 1.69 tsutsui aprint_error_dev(sc->sc_dev, "lost CTS\n");
713 1.9 pk else if (status & IE_XS_UNDERRUN)
714 1.69 tsutsui aprint_error_dev(sc->sc_dev, "DMA underrun\n");
715 1.9 pk else if (status & IE_XS_EXCMAX) {
716 1.69 tsutsui aprint_error_dev(sc->sc_dev, "too many collisions\n");
717 1.9 pk sc->sc_ethercom.ec_if.if_collisions += 16;
718 1.9 pk }
719 1.9 pk }
720 1.9 pk
721 1.9 pk /*
722 1.9 pk * If multicast addresses were added or deleted while transmitting,
723 1.9 pk * ie_mc_reset() set the want_mcsetup flag indicating that we
724 1.9 pk * should do it.
725 1.9 pk */
726 1.9 pk if (sc->want_mcsetup) {
727 1.9 pk ie_mc_setup(sc, IE_XBUF_ADDR(sc, sc->xctail));
728 1.9 pk sc->want_mcsetup = 0;
729 1.9 pk }
730 1.9 pk
731 1.9 pk /* Done with the buffer. */
732 1.9 pk sc->xmit_busy--;
733 1.9 pk sc->xctail = (sc->xctail + 1) % NTXBUF;
734 1.9 pk
735 1.9 pk /* Start the next packet, if any, transmitting. */
736 1.9 pk if (sc->xmit_busy > 0)
737 1.9 pk iexmit(sc);
738 1.9 pk
739 1.9 pk i82586_start(ifp);
740 1.9 pk return (0);
741 1.9 pk }
742 1.9 pk
743 1.9 pk /*
744 1.9 pk * Get a range of receive buffer descriptors that represent one packet.
745 1.9 pk */
746 1.9 pk static int
747 1.73 msaitoh i82586_get_rbd_list(struct ie_softc *sc, u_int16_t *start, u_int16_t *end,
748 1.73 msaitoh int *pktlen)
749 1.9 pk {
750 1.9 pk int off, rbbase = sc->rbds;
751 1.9 pk int rbindex, count = 0;
752 1.9 pk int plen = 0;
753 1.9 pk int rbdstatus;
754 1.9 pk
755 1.9 pk *start = rbindex = sc->rbhead;
756 1.9 pk
757 1.9 pk do {
758 1.9 pk off = IE_RBD_STATUS(rbbase, rbindex);
759 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
760 1.9 pk rbdstatus = sc->ie_bus_read16(sc, off);
761 1.9 pk if ((rbdstatus & IE_RBD_USED) == 0) {
762 1.9 pk /*
763 1.9 pk * This means we are somehow out of sync. So, we
764 1.9 pk * reset the adapter.
765 1.9 pk */
766 1.25 pk #if I82586_DEBUG
767 1.9 pk print_rbd(sc, rbindex);
768 1.9 pk #endif
769 1.9 pk log(LOG_ERR,
770 1.9 pk "%s: receive descriptors out of sync at %d\n",
771 1.69 tsutsui device_xname(sc->sc_dev), rbindex);
772 1.9 pk return (0);
773 1.9 pk }
774 1.9 pk plen += (rbdstatus & IE_RBD_CNTMASK);
775 1.9 pk
776 1.9 pk if (++rbindex == sc->nrxbuf)
777 1.9 pk rbindex = 0;
778 1.9 pk
779 1.9 pk ++count;
780 1.9 pk } while ((rbdstatus & IE_RBD_LAST) == 0);
781 1.9 pk *end = rbindex;
782 1.9 pk *pktlen = plen;
783 1.9 pk return (count);
784 1.9 pk }
785 1.6 pk
786 1.6 pk
787 1.9 pk /*
788 1.9 pk * Release a range of receive buffer descriptors after we've copied the packet.
789 1.9 pk */
790 1.9 pk static void
791 1.65 dsl i82586_release_rbd_list(struct ie_softc *sc, u_int16_t start, u_int16_t end)
792 1.9 pk {
793 1.9 pk int off, rbbase = sc->rbds;
794 1.9 pk int rbindex = start;
795 1.6 pk
796 1.9 pk do {
797 1.9 pk /* Clear buffer status */
798 1.9 pk off = IE_RBD_STATUS(rbbase, rbindex);
799 1.9 pk sc->ie_bus_write16(sc, off, 0);
800 1.9 pk if (++rbindex == sc->nrxbuf)
801 1.9 pk rbindex = 0;
802 1.9 pk } while (rbindex != end);
803 1.9 pk
804 1.9 pk /* Mark EOL at new tail */
805 1.9 pk rbindex = ((rbindex == 0) ? sc->nrxbuf : rbindex) - 1;
806 1.9 pk off = IE_RBD_BUFLEN(rbbase, rbindex);
807 1.9 pk sc->ie_bus_write16(sc, off, IE_RBUF_SIZE|IE_RBD_EOL);
808 1.9 pk
809 1.9 pk /* Remove EOL from current tail */
810 1.9 pk off = IE_RBD_BUFLEN(rbbase, sc->rbtail);
811 1.9 pk sc->ie_bus_write16(sc, off, IE_RBUF_SIZE);
812 1.9 pk
813 1.9 pk /* New head & tail pointer */
814 1.9 pk /* hmm, why have both? head is always (tail + 1) % NRXBUF */
815 1.9 pk sc->rbhead = end;
816 1.9 pk sc->rbtail = rbindex;
817 1.9 pk }
818 1.6 pk
819 1.10 pk /*
820 1.10 pk * Drop the packet at the head of the RX buffer ring.
821 1.10 pk * Called if the frame descriptor reports an error on this packet.
822 1.10 pk * Returns 1 if the buffer descriptor ring appears to be corrupt;
823 1.10 pk * and 0 otherwise.
824 1.10 pk */
825 1.9 pk static int
826 1.65 dsl i82586_drop_frames(struct ie_softc *sc)
827 1.9 pk {
828 1.9 pk u_int16_t bstart, bend;
829 1.9 pk int pktlen;
830 1.1 pk
831 1.9 pk if (i82586_get_rbd_list(sc, &bstart, &bend, &pktlen) == 0)
832 1.9 pk return (1);
833 1.9 pk i82586_release_rbd_list(sc, bstart, bend);
834 1.9 pk return (0);
835 1.1 pk }
836 1.1 pk
837 1.1 pk /*
838 1.10 pk * Check the RX frame & buffer descriptor lists for our invariants,
839 1.10 pk * i.e.: EOL bit set iff. it is pointed at by the r*tail pointer.
840 1.10 pk *
841 1.10 pk * Called when the receive unit has stopped unexpectedly.
842 1.10 pk * Returns 1 if an inconsistency is detected; 0 otherwise.
843 1.10 pk *
844 1.10 pk * The Receive Unit is expected to be NOT RUNNING.
845 1.10 pk */
846 1.10 pk static int
847 1.65 dsl i82586_chk_rx_ring(struct ie_softc *sc)
848 1.10 pk {
849 1.10 pk int n, off, val;
850 1.10 pk
851 1.10 pk for (n = 0; n < sc->nrxbuf; n++) {
852 1.10 pk off = IE_RBD_BUFLEN(sc->rbds, n);
853 1.10 pk val = sc->ie_bus_read16(sc, off);
854 1.10 pk if ((n == sc->rbtail) ^ ((val & IE_RBD_EOL) != 0)) {
855 1.10 pk /* `rbtail' and EOL flag out of sync */
856 1.10 pk log(LOG_ERR,
857 1.10 pk "%s: rx buffer descriptors out of sync at %d\n",
858 1.69 tsutsui device_xname(sc->sc_dev), n);
859 1.10 pk return (1);
860 1.10 pk }
861 1.10 pk
862 1.10 pk /* Take the opportunity to clear the status fields here ? */
863 1.10 pk }
864 1.10 pk
865 1.10 pk for (n = 0; n < sc->nframes; n++) {
866 1.10 pk off = IE_RFRAME_LAST(sc->rframes, n);
867 1.10 pk val = sc->ie_bus_read16(sc, off);
868 1.10 pk if ((n == sc->rftail) ^ ((val & (IE_FD_EOL|IE_FD_SUSP)) != 0)) {
869 1.10 pk /* `rftail' and EOL flag out of sync */
870 1.10 pk log(LOG_ERR,
871 1.10 pk "%s: rx frame list out of sync at %d\n",
872 1.69 tsutsui device_xname(sc->sc_dev), n);
873 1.10 pk return (1);
874 1.10 pk }
875 1.10 pk }
876 1.10 pk
877 1.10 pk return (0);
878 1.10 pk }
879 1.10 pk
880 1.10 pk /*
881 1.1 pk * Read data off the interface, and turn it into an mbuf chain.
882 1.1 pk *
883 1.1 pk * This code is DRAMATICALLY different from the previous version; this
884 1.1 pk * version tries to allocate the entire mbuf chain up front, given the
885 1.1 pk * length of the data available. This enables us to allocate mbuf
886 1.1 pk * clusters in many situations where before we would have had a long
887 1.1 pk * chain of partially-full mbufs. This should help to speed up the
888 1.1 pk * operation considerably. (Provided that it works, of course.)
889 1.1 pk */
890 1.54 perry static inline struct mbuf *
891 1.65 dsl ieget(struct ie_softc *sc, int head, int totlen)
892 1.1 pk {
893 1.19 mycroft struct mbuf *m, *m0, *newm;
894 1.9 pk int len, resid;
895 1.3 pk int thisrboff, thismboff;
896 1.21 thorpej struct ether_header eh;
897 1.1 pk
898 1.1 pk /*
899 1.1 pk * Snarf the Ethernet header.
900 1.1 pk */
901 1.21 thorpej (sc->memcopyin)(sc, &eh, IE_RBUF_ADDR(sc, head),
902 1.21 thorpej sizeof(struct ether_header));
903 1.1 pk
904 1.21 thorpej resid = totlen;
905 1.1 pk
906 1.19 mycroft MGETHDR(m0, M_DONTWAIT, MT_DATA);
907 1.19 mycroft if (m0 == 0)
908 1.10 pk return (0);
909 1.72 ozaki m_set_rcvif(m0, &sc->sc_ethercom.ec_if);
910 1.19 mycroft m0->m_pkthdr.len = totlen;
911 1.3 pk len = MHLEN;
912 1.19 mycroft m = m0;
913 1.1 pk
914 1.1 pk /*
915 1.1 pk * This loop goes through and allocates mbufs for all the data we will
916 1.1 pk * be copying in. It does not actually do the copying yet.
917 1.1 pk */
918 1.3 pk while (totlen > 0) {
919 1.3 pk if (totlen >= MINCLSIZE) {
920 1.1 pk MCLGET(m, M_DONTWAIT);
921 1.19 mycroft if ((m->m_flags & M_EXT) == 0)
922 1.19 mycroft goto bad;
923 1.3 pk len = MCLBYTES;
924 1.22 pk }
925 1.22 pk
926 1.22 pk if (m == m0) {
927 1.58 christos char *newdata = (char *)
928 1.22 pk ALIGN(m->m_data + sizeof(struct ether_header)) -
929 1.22 pk sizeof(struct ether_header);
930 1.22 pk len -= newdata - m->m_data;
931 1.22 pk m->m_data = newdata;
932 1.1 pk }
933 1.19 mycroft
934 1.3 pk m->m_len = len = min(totlen, len);
935 1.19 mycroft
936 1.3 pk totlen -= len;
937 1.19 mycroft if (totlen > 0) {
938 1.19 mycroft MGET(newm, M_DONTWAIT, MT_DATA);
939 1.19 mycroft if (newm == 0)
940 1.19 mycroft goto bad;
941 1.19 mycroft len = MLEN;
942 1.19 mycroft m = m->m_next = newm;
943 1.19 mycroft }
944 1.3 pk }
945 1.1 pk
946 1.19 mycroft m = m0;
947 1.1 pk thismboff = 0;
948 1.1 pk
949 1.1 pk /*
950 1.21 thorpej * Copy the Ethernet header into the mbuf chain.
951 1.21 thorpej */
952 1.58 christos memcpy(mtod(m, void *), &eh, sizeof(struct ether_header));
953 1.21 thorpej thismboff = sizeof(struct ether_header);
954 1.21 thorpej thisrboff = sizeof(struct ether_header);
955 1.21 thorpej resid -= sizeof(struct ether_header);
956 1.21 thorpej
957 1.21 thorpej /*
958 1.1 pk * Now we take the mbuf chain (hopefully only one mbuf most of the
959 1.9 pk * time) and stuff the data into it. There are no possible failures
960 1.9 pk * at or after this point.
961 1.1 pk */
962 1.3 pk while (resid > 0) {
963 1.9 pk int thisrblen = IE_RBUF_SIZE - thisrboff,
964 1.3 pk thismblen = m->m_len - thismboff;
965 1.3 pk len = min(thisrblen, thismblen);
966 1.3 pk
967 1.58 christos (sc->memcopyin)(sc, mtod(m, char *) + thismboff,
968 1.9 pk IE_RBUF_ADDR(sc,head) + thisrboff,
969 1.9 pk (u_int)len);
970 1.3 pk resid -= len;
971 1.1 pk
972 1.3 pk if (len == thismblen) {
973 1.1 pk m = m->m_next;
974 1.3 pk thismboff = 0;
975 1.3 pk } else
976 1.3 pk thismboff += len;
977 1.3 pk
978 1.3 pk if (len == thisrblen) {
979 1.9 pk if (++head == sc->nrxbuf)
980 1.9 pk head = 0;
981 1.3 pk thisrboff = 0;
982 1.3 pk } else
983 1.3 pk thisrboff += len;
984 1.1 pk }
985 1.1 pk
986 1.1 pk /*
987 1.9 pk * Unless something changed strangely while we were doing the copy,
988 1.9 pk * we have now copied everything in from the shared memory.
989 1.1 pk * This means that we are done.
990 1.1 pk */
991 1.19 mycroft return (m0);
992 1.19 mycroft
993 1.19 mycroft bad:
994 1.19 mycroft m_freem(m0);
995 1.19 mycroft return (0);
996 1.1 pk }
997 1.1 pk
998 1.1 pk /*
999 1.1 pk * Read frame NUM from unit UNIT (pre-cached as IE).
1000 1.1 pk *
1001 1.1 pk * This routine reads the RFD at NUM, and copies in the buffers from the list
1002 1.9 pk * of RBD, then rotates the RBD list so that the receiver doesn't start
1003 1.9 pk * complaining. Trailers are DROPPED---there's no point in wasting time
1004 1.9 pk * on confusing code to deal with them. Hopefully, this machine will
1005 1.9 pk * never ARP for trailers anyway.
1006 1.1 pk */
1007 1.9 pk static int
1008 1.56 christos ie_readframe(
1009 1.56 christos struct ie_softc *sc,
1010 1.57 christos int num) /* frame number to read */
1011 1.1 pk {
1012 1.9 pk struct mbuf *m;
1013 1.9 pk u_int16_t bstart, bend;
1014 1.9 pk int pktlen;
1015 1.1 pk
1016 1.9 pk if (i82586_get_rbd_list(sc, &bstart, &bend, &pktlen) == 0) {
1017 1.9 pk sc->sc_ethercom.ec_if.if_ierrors++;
1018 1.9 pk return (1);
1019 1.9 pk }
1020 1.1 pk
1021 1.29 bjh21 m = ieget(sc, bstart, pktlen);
1022 1.9 pk i82586_release_rbd_list(sc, bstart, bend);
1023 1.9 pk
1024 1.3 pk if (m == 0) {
1025 1.3 pk sc->sc_ethercom.ec_if.if_ierrors++;
1026 1.9 pk return (0);
1027 1.1 pk }
1028 1.1 pk
1029 1.25 pk #if I82586_DEBUG
1030 1.21 thorpej if (sc->sc_debug & IED_READFRAME) {
1031 1.21 thorpej struct ether_header *eh = mtod(m, struct ether_header *);
1032 1.21 thorpej
1033 1.9 pk printf("%s: frame from ether %s type 0x%x len %d\n",
1034 1.69 tsutsui device_xname(sc->sc_dev),
1035 1.21 thorpej ether_sprintf(eh->ether_shost),
1036 1.27 bjh21 (u_int)ntohs(eh->ether_type),
1037 1.9 pk pktlen);
1038 1.21 thorpej }
1039 1.1 pk #endif
1040 1.1 pk
1041 1.68 joerg /* Pass it up. */
1042 1.68 joerg bpf_mtap(&sc->sc_ethercom.ec_if, m);
1043 1.1 pk
1044 1.1 pk /*
1045 1.1 pk * Finally pass this packet up to higher layers.
1046 1.1 pk */
1047 1.71 ozaki if_percpuq_enqueue((&sc->sc_ethercom.ec_if)->if_percpuq, m);
1048 1.3 pk sc->sc_ethercom.ec_if.if_ipackets++;
1049 1.9 pk return (0);
1050 1.1 pk }
1051 1.1 pk
1052 1.9 pk
1053 1.9 pk /*
1054 1.9 pk * Setup all necessary artifacts for an XMIT command, and then pass the XMIT
1055 1.9 pk * command to the chip to be executed.
1056 1.9 pk */
1057 1.55 perry static inline void
1058 1.65 dsl iexmit(struct ie_softc *sc)
1059 1.1 pk {
1060 1.9 pk int off;
1061 1.9 pk int cur, prev;
1062 1.9 pk
1063 1.9 pk cur = sc->xctail;
1064 1.1 pk
1065 1.25 pk #if I82586_DEBUG
1066 1.9 pk if (sc->sc_debug & IED_XMIT)
1067 1.69 tsutsui printf("%s: xmit buffer %d\n", device_xname(sc->sc_dev), cur);
1068 1.1 pk #endif
1069 1.9 pk
1070 1.9 pk /*
1071 1.9 pk * Setup the transmit command.
1072 1.9 pk */
1073 1.9 pk sc->ie_bus_write16(sc, IE_CMD_XMIT_DESC(sc->xmit_cmds, cur),
1074 1.9 pk IE_XBD_ADDR(sc->xbds, cur));
1075 1.9 pk
1076 1.9 pk sc->ie_bus_write16(sc, IE_CMD_XMIT_STATUS(sc->xmit_cmds, cur), 0);
1077 1.9 pk
1078 1.9 pk if (sc->do_xmitnopchain) {
1079 1.9 pk /*
1080 1.9 pk * Gate this XMIT command to the following NOP
1081 1.9 pk */
1082 1.9 pk sc->ie_bus_write16(sc, IE_CMD_XMIT_LINK(sc->xmit_cmds, cur),
1083 1.9 pk IE_CMD_NOP_ADDR(sc->nop_cmds, cur));
1084 1.9 pk sc->ie_bus_write16(sc, IE_CMD_XMIT_CMD(sc->xmit_cmds, cur),
1085 1.9 pk IE_CMD_XMIT | IE_CMD_INTR);
1086 1.9 pk
1087 1.9 pk /*
1088 1.9 pk * Loopback at following NOP
1089 1.9 pk */
1090 1.9 pk sc->ie_bus_write16(sc, IE_CMD_NOP_STATUS(sc->nop_cmds, cur), 0);
1091 1.9 pk sc->ie_bus_write16(sc, IE_CMD_NOP_LINK(sc->nop_cmds, cur),
1092 1.9 pk IE_CMD_NOP_ADDR(sc->nop_cmds, cur));
1093 1.9 pk
1094 1.9 pk /*
1095 1.9 pk * Gate preceding NOP to this XMIT command
1096 1.9 pk */
1097 1.9 pk prev = (cur + NTXBUF - 1) % NTXBUF;
1098 1.73 msaitoh sc->ie_bus_write16(sc, IE_CMD_NOP_STATUS(sc->nop_cmds, prev),
1099 1.73 msaitoh 0);
1100 1.9 pk sc->ie_bus_write16(sc, IE_CMD_NOP_LINK(sc->nop_cmds, prev),
1101 1.9 pk IE_CMD_XMIT_ADDR(sc->xmit_cmds, cur));
1102 1.9 pk
1103 1.9 pk off = IE_SCB_STATUS(sc->scb);
1104 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
1105 1.9 pk if ((sc->ie_bus_read16(sc, off) & IE_CUS_ACTIVE) == 0) {
1106 1.9 pk printf("iexmit: CU not active\n");
1107 1.9 pk i82586_start_transceiver(sc);
1108 1.1 pk }
1109 1.9 pk } else {
1110 1.9 pk sc->ie_bus_write16(sc, IE_CMD_XMIT_LINK(sc->xmit_cmds,cur),
1111 1.9 pk 0xffff);
1112 1.9 pk
1113 1.9 pk sc->ie_bus_write16(sc, IE_CMD_XMIT_CMD(sc->xmit_cmds, cur),
1114 1.9 pk IE_CMD_XMIT | IE_CMD_INTR | IE_CMD_LAST);
1115 1.1 pk
1116 1.9 pk off = IE_SCB_CMDLST(sc->scb);
1117 1.73 msaitoh sc->ie_bus_write16(sc, off, IE_CMD_XMIT_ADDR(sc->xmit_cmds,
1118 1.73 msaitoh cur));
1119 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
1120 1.1 pk
1121 1.9 pk if (i82586_start_cmd(sc, IE_CUC_START, 0, 0, 1))
1122 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1123 1.73 msaitoh "iexmit: start xmit command timed out\n");
1124 1.9 pk }
1125 1.9 pk
1126 1.9 pk sc->sc_ethercom.ec_if.if_timer = 5;
1127 1.1 pk }
1128 1.1 pk
1129 1.1 pk
1130 1.1 pk /*
1131 1.1 pk * Start transmission on an interface.
1132 1.1 pk */
1133 1.1 pk void
1134 1.65 dsl i82586_start(struct ifnet *ifp)
1135 1.1 pk {
1136 1.1 pk struct ie_softc *sc = ifp->if_softc;
1137 1.1 pk struct mbuf *m0, *m;
1138 1.9 pk int buffer, head, xbase;
1139 1.9 pk u_short len;
1140 1.9 pk int s;
1141 1.1 pk
1142 1.3 pk if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
1143 1.1 pk return;
1144 1.1 pk
1145 1.3 pk for (;;) {
1146 1.3 pk if (sc->xmit_busy == NTXBUF) {
1147 1.3 pk ifp->if_flags |= IFF_OACTIVE;
1148 1.3 pk break;
1149 1.3 pk }
1150 1.1 pk
1151 1.9 pk head = sc->xchead;
1152 1.9 pk xbase = sc->xbds;
1153 1.9 pk
1154 1.33 thorpej IFQ_DEQUEUE(&ifp->if_snd, m0);
1155 1.3 pk if (m0 == 0)
1156 1.1 pk break;
1157 1.1 pk
1158 1.3 pk /* We need to use m->m_pkthdr.len, so require the header */
1159 1.3 pk if ((m0->m_flags & M_PKTHDR) == 0)
1160 1.7 pk panic("i82586_start: no header mbuf");
1161 1.3 pk
1162 1.3 pk /* Tap off here if there is a BPF listener. */
1163 1.68 joerg bpf_mtap(ifp, m0);
1164 1.3 pk
1165 1.25 pk #if I82586_DEBUG
1166 1.3 pk if (sc->sc_debug & IED_ENQ)
1167 1.69 tsutsui printf("%s: fill buffer %d\n", device_xname(sc->sc_dev),
1168 1.3 pk sc->xchead);
1169 1.3 pk #endif
1170 1.3 pk
1171 1.3 pk if (m0->m_pkthdr.len > IE_TBUF_SIZE)
1172 1.69 tsutsui printf("%s: tbuf overflow\n", device_xname(sc->sc_dev));
1173 1.3 pk
1174 1.9 pk buffer = IE_XBUF_ADDR(sc, head);
1175 1.3 pk for (m = m0; m != 0; m = m->m_next) {
1176 1.58 christos (sc->memcopyout)(sc, mtod(m,void *), buffer, m->m_len);
1177 1.1 pk buffer += m->m_len;
1178 1.1 pk }
1179 1.46 bouyer len = m0->m_pkthdr.len;
1180 1.46 bouyer if (len < ETHER_MIN_LEN - ETHER_CRC_LEN) {
1181 1.45 bouyer (sc->memcopyout)(sc, padbuf, buffer,
1182 1.46 bouyer ETHER_MIN_LEN - ETHER_CRC_LEN - len);
1183 1.46 bouyer buffer += ETHER_MIN_LEN -ETHER_CRC_LEN - len;
1184 1.46 bouyer len = ETHER_MIN_LEN - ETHER_CRC_LEN;
1185 1.45 bouyer }
1186 1.1 pk m_freem(m0);
1187 1.3 pk
1188 1.9 pk /*
1189 1.9 pk * Setup the transmit buffer descriptor here, while we
1190 1.9 pk * know the packet's length.
1191 1.9 pk */
1192 1.9 pk sc->ie_bus_write16(sc, IE_XBD_FLAGS(xbase, head),
1193 1.9 pk len | IE_TBD_EOL);
1194 1.9 pk sc->ie_bus_write16(sc, IE_XBD_NEXT(xbase, head), 0xffff);
1195 1.9 pk sc->ie_bus_write24(sc, IE_XBD_BUF(xbase, head),
1196 1.9 pk IE_XBUF_ADDR(sc, head));
1197 1.9 pk
1198 1.9 pk if (++head == NTXBUF)
1199 1.9 pk head = 0;
1200 1.9 pk sc->xchead = head;
1201 1.6 pk
1202 1.6 pk s = splnet();
1203 1.3 pk /* Start the first packet transmitting. */
1204 1.3 pk if (sc->xmit_busy == 0)
1205 1.3 pk iexmit(sc);
1206 1.3 pk
1207 1.3 pk sc->xmit_busy++;
1208 1.6 pk splx(s);
1209 1.3 pk }
1210 1.1 pk }
1211 1.1 pk
1212 1.1 pk /*
1213 1.9 pk * Probe IE's ram setup [ Move all this into MD front-end!? ]
1214 1.9 pk * Use only if SCP and ISCP represent offsets into shared ram space.
1215 1.1 pk */
1216 1.1 pk int
1217 1.65 dsl i82586_proberam(struct ie_softc *sc)
1218 1.1 pk {
1219 1.10 pk int result, off;
1220 1.1 pk
1221 1.9 pk /* Put in 16-bit mode */
1222 1.10 pk off = IE_SCP_BUS_USE(sc->scp);
1223 1.42 fredette sc->ie_bus_write16(sc, off, IE_SYSBUS_16BIT);
1224 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_WRITE);
1225 1.10 pk
1226 1.10 pk /* Set the ISCP `busy' bit */
1227 1.10 pk off = IE_ISCP_BUSY(sc->iscp);
1228 1.34 bjh21 sc->ie_bus_write16(sc, off, 1);
1229 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_WRITE);
1230 1.1 pk
1231 1.1 pk if (sc->hwreset)
1232 1.7 pk (sc->hwreset)(sc, CHIP_PROBE);
1233 1.1 pk
1234 1.36 jdolecek (sc->chan_attn) (sc, CHIP_PROBE);
1235 1.1 pk
1236 1.1 pk delay(100); /* wait a while... */
1237 1.1 pk
1238 1.10 pk /* Read back the ISCP `busy' bit; it should be clear by now */
1239 1.10 pk off = IE_ISCP_BUSY(sc->iscp);
1240 1.34 bjh21 IE_BUS_BARRIER(sc, off, 2, BUS_SPACE_BARRIER_READ);
1241 1.34 bjh21 result = sc->ie_bus_read16(sc, off) == 0;
1242 1.9 pk
1243 1.10 pk /* Acknowledge any interrupts we may have caused. */
1244 1.1 pk ie_ack(sc, IE_ST_WHENCE);
1245 1.10 pk
1246 1.10 pk return (result);
1247 1.1 pk }
1248 1.1 pk
1249 1.1 pk void
1250 1.65 dsl i82586_reset(struct ie_softc *sc, int hard)
1251 1.1 pk {
1252 1.1 pk int s = splnet();
1253 1.1 pk
1254 1.10 pk if (hard)
1255 1.69 tsutsui printf("%s: reset\n", device_xname(sc->sc_dev));
1256 1.1 pk
1257 1.1 pk /* Clear OACTIVE in case we're called from watchdog (frozen xmit). */
1258 1.7 pk sc->sc_ethercom.ec_if.if_timer = 0;
1259 1.1 pk sc->sc_ethercom.ec_if.if_flags &= ~IFF_OACTIVE;
1260 1.1 pk
1261 1.1 pk /*
1262 1.1 pk * Stop i82586 dead in its tracks.
1263 1.1 pk */
1264 1.9 pk if (i82586_start_cmd(sc, IE_RUC_ABORT | IE_CUC_ABORT, 0, 0, 0))
1265 1.69 tsutsui aprint_error_dev(sc->sc_dev, "abort commands timed out\n");
1266 1.1 pk
1267 1.9 pk /*
1268 1.7 pk * This can really slow down the i82586_reset() on some cards, but it's
1269 1.9 pk * necessary to unwedge other ones (eg, the Sun VME ones) from certain
1270 1.7 pk * lockups.
1271 1.7 pk */
1272 1.10 pk if (hard && sc->hwreset)
1273 1.7 pk (sc->hwreset)(sc, CARD_RESET);
1274 1.6 pk
1275 1.10 pk delay(100);
1276 1.5 pk ie_ack(sc, IE_ST_WHENCE);
1277 1.6 pk
1278 1.9 pk if ((sc->sc_ethercom.ec_if.if_flags & IFF_UP) != 0) {
1279 1.9 pk int retries=0; /* XXX - find out why init sometimes fails */
1280 1.9 pk while (retries++ < 2)
1281 1.31 scw if (i82586_init(&sc->sc_ethercom.ec_if) == 0)
1282 1.9 pk break;
1283 1.9 pk }
1284 1.1 pk
1285 1.1 pk splx(s);
1286 1.1 pk }
1287 1.1 pk
1288 1.9 pk
1289 1.9 pk static void
1290 1.65 dsl setup_simple_command(struct ie_softc *sc, int cmd, int cmdbuf)
1291 1.1 pk {
1292 1.9 pk /* Setup a simple command */
1293 1.9 pk sc->ie_bus_write16(sc, IE_CMD_COMMON_STATUS(cmdbuf), 0);
1294 1.9 pk sc->ie_bus_write16(sc, IE_CMD_COMMON_CMD(cmdbuf), cmd | IE_CMD_LAST);
1295 1.9 pk sc->ie_bus_write16(sc, IE_CMD_COMMON_LINK(cmdbuf), 0xffff);
1296 1.1 pk
1297 1.9 pk /* Assign the command buffer to the SCB command list */
1298 1.9 pk sc->ie_bus_write16(sc, IE_SCB_CMDLST(sc->scb), cmdbuf);
1299 1.1 pk }
1300 1.1 pk
1301 1.1 pk /*
1302 1.1 pk * Run the time-domain reflectometer.
1303 1.1 pk */
1304 1.1 pk static void
1305 1.65 dsl ie_run_tdr(struct ie_softc *sc, int cmd)
1306 1.1 pk {
1307 1.1 pk int result;
1308 1.1 pk
1309 1.9 pk setup_simple_command(sc, IE_CMD_TDR, cmd);
1310 1.34 bjh21 sc->ie_bus_write16(sc, IE_CMD_TDR_TIME(cmd), 0);
1311 1.1 pk
1312 1.9 pk if (i82586_start_cmd(sc, IE_CUC_START, cmd, IE_STAT_COMPL, 0) ||
1313 1.9 pk (sc->ie_bus_read16(sc, IE_CMD_COMMON_STATUS(cmd)) & IE_STAT_OK) == 0)
1314 1.1 pk result = 0x10000; /* XXX */
1315 1.1 pk else
1316 1.9 pk result = sc->ie_bus_read16(sc, IE_CMD_TDR_TIME(cmd));
1317 1.1 pk
1318 1.9 pk /* Squash any pending interrupts */
1319 1.1 pk ie_ack(sc, IE_ST_WHENCE);
1320 1.1 pk
1321 1.1 pk if (result & IE_TDR_SUCCESS)
1322 1.1 pk return;
1323 1.1 pk
1324 1.1 pk if (result & 0x10000)
1325 1.69 tsutsui aprint_error_dev(sc->sc_dev, "TDR command failed\n");
1326 1.1 pk else if (result & IE_TDR_XCVR)
1327 1.69 tsutsui aprint_error_dev(sc->sc_dev, "transceiver problem\n");
1328 1.1 pk else if (result & IE_TDR_OPEN)
1329 1.73 msaitoh aprint_error_dev(sc->sc_dev, "TDR detected incorrect "
1330 1.73 msaitoh "termination %d clocks away\n", result & IE_TDR_TIME);
1331 1.1 pk else if (result & IE_TDR_SHORT)
1332 1.73 msaitoh aprint_error_dev(sc->sc_dev, "TDR detected a short circuit "
1333 1.73 msaitoh "%d clocks away\n", result & IE_TDR_TIME);
1334 1.1 pk else
1335 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1336 1.73 msaitoh "TDR returned unknown status 0x%x\n", result);
1337 1.1 pk }
1338 1.1 pk
1339 1.1 pk
1340 1.1 pk /*
1341 1.9 pk * i82586_setup_bufs: set up the buffers
1342 1.1 pk *
1343 1.9 pk * We have a block of KVA at sc->buf_area which is of size sc->buf_area_sz.
1344 1.9 pk * this is to be used for the buffers. The chip indexs its control data
1345 1.1 pk * structures with 16 bit offsets, and it indexes actual buffers with
1346 1.9 pk * 24 bit addresses. So we should allocate control buffers first so that
1347 1.1 pk * we don't overflow the 16 bit offset field. The number of transmit
1348 1.1 pk * buffers is fixed at compile time.
1349 1.1 pk *
1350 1.1 pk */
1351 1.1 pk static void
1352 1.65 dsl i82586_setup_bufs(struct ie_softc *sc)
1353 1.1 pk {
1354 1.9 pk int ptr = sc->buf_area; /* memory pool */
1355 1.1 pk int n, r;
1356 1.1 pk
1357 1.1 pk /*
1358 1.1 pk * step 0: zero memory and figure out how many recv buffers and
1359 1.3 pk * frames we can have.
1360 1.1 pk */
1361 1.9 pk ptr = (ptr + 3) & ~3; /* set alignment and stick with it */
1362 1.9 pk
1363 1.9 pk
1364 1.9 pk /*
1365 1.9 pk * step 1: lay out data structures in the shared-memory area
1366 1.9 pk */
1367 1.9 pk
1368 1.9 pk /* The no-op commands; used if "nop-chaining" is in effect */
1369 1.9 pk sc->nop_cmds = ptr;
1370 1.9 pk ptr += NTXBUF * IE_CMD_NOP_SZ;
1371 1.9 pk
1372 1.9 pk /* The transmit commands */
1373 1.9 pk sc->xmit_cmds = ptr;
1374 1.9 pk ptr += NTXBUF * IE_CMD_XMIT_SZ;
1375 1.1 pk
1376 1.9 pk /* The transmit buffers descriptors */
1377 1.9 pk sc->xbds = ptr;
1378 1.9 pk ptr += NTXBUF * IE_XBD_SZ;
1379 1.1 pk
1380 1.9 pk /* The transmit buffers */
1381 1.9 pk sc->xbufs = ptr;
1382 1.9 pk ptr += NTXBUF * IE_TBUF_SIZE;
1383 1.1 pk
1384 1.9 pk ptr = (ptr + 3) & ~3; /* re-align.. just in case */
1385 1.1 pk
1386 1.9 pk /* Compute free space for RECV stuff */
1387 1.9 pk n = sc->buf_area_sz - (ptr - sc->buf_area);
1388 1.9 pk
1389 1.9 pk /* Compute size of one RECV frame */
1390 1.9 pk r = IE_RFRAME_SZ + ((IE_RBD_SZ + IE_RBUF_SIZE) * B_PER_F);
1391 1.1 pk
1392 1.1 pk sc->nframes = n / r;
1393 1.9 pk
1394 1.1 pk if (sc->nframes <= 0)
1395 1.44 provos panic("ie: bogus buffer calc");
1396 1.1 pk
1397 1.1 pk sc->nrxbuf = sc->nframes * B_PER_F;
1398 1.1 pk
1399 1.48 wiz /* The receive frame descriptors */
1400 1.9 pk sc->rframes = ptr;
1401 1.9 pk ptr += sc->nframes * IE_RFRAME_SZ;
1402 1.9 pk
1403 1.9 pk /* The receive buffer descriptors */
1404 1.9 pk sc->rbds = ptr;
1405 1.9 pk ptr += sc->nrxbuf * IE_RBD_SZ;
1406 1.9 pk
1407 1.9 pk /* The receive buffers */
1408 1.9 pk sc->rbufs = ptr;
1409 1.9 pk ptr += sc->nrxbuf * IE_RBUF_SIZE;
1410 1.9 pk
1411 1.25 pk #if I82586_DEBUG
1412 1.73 msaitoh printf("%s: %d frames %d bufs\n", device_xname(sc->sc_dev),
1413 1.73 msaitoh sc->nframes, sc->nrxbuf);
1414 1.1 pk #endif
1415 1.1 pk
1416 1.1 pk /*
1417 1.9 pk * step 2: link together the recv frames and set EOL on last one
1418 1.1 pk */
1419 1.9 pk for (n = 0; n < sc->nframes; n++) {
1420 1.9 pk int m = (n == sc->nframes - 1) ? 0 : n + 1;
1421 1.9 pk
1422 1.9 pk /* Clear status */
1423 1.9 pk sc->ie_bus_write16(sc, IE_RFRAME_STATUS(sc->rframes,n), 0);
1424 1.9 pk
1425 1.9 pk /* RBD link = NULL */
1426 1.9 pk sc->ie_bus_write16(sc, IE_RFRAME_BUFDESC(sc->rframes,n),
1427 1.9 pk 0xffff);
1428 1.9 pk
1429 1.9 pk /* Make a circular list */
1430 1.9 pk sc->ie_bus_write16(sc, IE_RFRAME_NEXT(sc->rframes,n),
1431 1.9 pk IE_RFRAME_ADDR(sc->rframes,m));
1432 1.1 pk
1433 1.9 pk /* Mark last as EOL */
1434 1.9 pk sc->ie_bus_write16(sc, IE_RFRAME_LAST(sc->rframes,n),
1435 1.9 pk ((m==0)? (IE_FD_EOL|IE_FD_SUSP) : 0));
1436 1.1 pk }
1437 1.1 pk
1438 1.1 pk /*
1439 1.9 pk * step 3: link the RBDs and set EOL on last one
1440 1.1 pk */
1441 1.9 pk for (n = 0; n < sc->nrxbuf; n++) {
1442 1.9 pk int m = (n == sc->nrxbuf - 1) ? 0 : n + 1;
1443 1.9 pk
1444 1.9 pk /* Clear status */
1445 1.9 pk sc->ie_bus_write16(sc, IE_RBD_STATUS(sc->rbds,n), 0);
1446 1.9 pk
1447 1.9 pk /* Make a circular list */
1448 1.9 pk sc->ie_bus_write16(sc, IE_RBD_NEXT(sc->rbds,n),
1449 1.9 pk IE_RBD_ADDR(sc->rbds,m));
1450 1.9 pk
1451 1.9 pk /* Link to data buffers */
1452 1.9 pk sc->ie_bus_write24(sc, IE_RBD_BUFADDR(sc->rbds, n),
1453 1.9 pk IE_RBUF_ADDR(sc, n));
1454 1.9 pk sc->ie_bus_write16(sc, IE_RBD_BUFLEN(sc->rbds,n),
1455 1.9 pk IE_RBUF_SIZE | ((m==0)?IE_RBD_EOL:0));
1456 1.1 pk }
1457 1.1 pk
1458 1.1 pk /*
1459 1.9 pk * step 4: all xmit no-op commands loopback onto themselves
1460 1.6 pk */
1461 1.6 pk for (n = 0; n < NTXBUF; n++) {
1462 1.34 bjh21 sc->ie_bus_write16(sc, IE_CMD_NOP_STATUS(sc->nop_cmds, n), 0);
1463 1.6 pk
1464 1.34 bjh21 sc->ie_bus_write16(sc, IE_CMD_NOP_CMD(sc->nop_cmds, n),
1465 1.9 pk IE_CMD_NOP);
1466 1.1 pk
1467 1.34 bjh21 sc->ie_bus_write16(sc, IE_CMD_NOP_LINK(sc->nop_cmds, n),
1468 1.9 pk IE_CMD_NOP_ADDR(sc->nop_cmds, n));
1469 1.1 pk }
1470 1.1 pk
1471 1.1 pk
1472 1.1 pk /*
1473 1.9 pk * step 6: set the head and tail pointers on receive to keep track of
1474 1.9 pk * the order in which RFDs and RBDs are used.
1475 1.1 pk */
1476 1.1 pk
1477 1.1 pk /* Pointers to last packet sent and next available transmit buffer. */
1478 1.1 pk sc->xchead = sc->xctail = 0;
1479 1.1 pk
1480 1.1 pk /* Clear transmit-busy flag and set number of free transmit buffers. */
1481 1.1 pk sc->xmit_busy = 0;
1482 1.1 pk
1483 1.1 pk /*
1484 1.9 pk * Pointers to first and last receive frame.
1485 1.9 pk * The RFD pointed to by rftail is the only one that has EOL set.
1486 1.1 pk */
1487 1.1 pk sc->rfhead = 0;
1488 1.1 pk sc->rftail = sc->nframes - 1;
1489 1.9 pk
1490 1.9 pk /*
1491 1.9 pk * Pointers to first and last receive descriptor buffer.
1492 1.9 pk * The RBD pointed to by rbtail is the only one that has EOL set.
1493 1.9 pk */
1494 1.1 pk sc->rbhead = 0;
1495 1.1 pk sc->rbtail = sc->nrxbuf - 1;
1496 1.1 pk
1497 1.9 pk /* link in recv frames * and buffer into the scb. */
1498 1.25 pk #if I82586_DEBUG
1499 1.9 pk printf("%s: reserved %d bytes\n",
1500 1.69 tsutsui device_xname(sc->sc_dev), ptr - sc->buf_area);
1501 1.1 pk #endif
1502 1.1 pk }
1503 1.1 pk
1504 1.9 pk static int
1505 1.66 dsl ie_cfg_setup(struct ie_softc *sc, int cmd, int promiscuous, int manchester)
1506 1.9 pk {
1507 1.9 pk int cmdresult, status;
1508 1.27 bjh21 u_int8_t buf[IE_CMD_CFG_SZ]; /* XXX malloc? */
1509 1.9 pk
1510 1.27 bjh21 *IE_CMD_CFG_CNT(buf) = 0x0c;
1511 1.27 bjh21 *IE_CMD_CFG_FIFO(buf) = 8;
1512 1.27 bjh21 *IE_CMD_CFG_SAVEBAD(buf) = 0x40;
1513 1.27 bjh21 *IE_CMD_CFG_ADDRLEN(buf) = 0x2e;
1514 1.27 bjh21 *IE_CMD_CFG_PRIORITY(buf) = 0;
1515 1.27 bjh21 *IE_CMD_CFG_IFS(buf) = 0x60;
1516 1.27 bjh21 *IE_CMD_CFG_SLOT_LOW(buf) = 0;
1517 1.27 bjh21 *IE_CMD_CFG_SLOT_HIGH(buf) = 0xf2;
1518 1.70 mrg *IE_CMD_CFG_PROMISC(buf) = (!!promiscuous) | manchester << 2;
1519 1.27 bjh21 *IE_CMD_CFG_CRSCDT(buf) = 0;
1520 1.27 bjh21 *IE_CMD_CFG_MINLEN(buf) = 64;
1521 1.27 bjh21 *IE_CMD_CFG_JUNK(buf) = 0xff;
1522 1.27 bjh21 sc->memcopyout(sc, buf, cmd, IE_CMD_CFG_SZ);
1523 1.9 pk setup_simple_command(sc, IE_CMD_CONFIG, cmd);
1524 1.34 bjh21 IE_BUS_BARRIER(sc, cmd, IE_CMD_CFG_SZ, BUS_SPACE_BARRIER_WRITE);
1525 1.9 pk
1526 1.9 pk cmdresult = i82586_start_cmd(sc, IE_CUC_START, cmd, IE_STAT_COMPL, 0);
1527 1.9 pk status = sc->ie_bus_read16(sc, IE_CMD_COMMON_STATUS(cmd));
1528 1.9 pk if (cmdresult != 0) {
1529 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1530 1.73 msaitoh "configure command timed out; status %x\n", status);
1531 1.9 pk return (0);
1532 1.9 pk }
1533 1.9 pk if ((status & IE_STAT_OK) == 0) {
1534 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1535 1.73 msaitoh "configure command failed; status %x\n", status);
1536 1.9 pk return (0);
1537 1.9 pk }
1538 1.10 pk
1539 1.10 pk /* Squash any pending interrupts */
1540 1.10 pk ie_ack(sc, IE_ST_WHENCE);
1541 1.9 pk return (1);
1542 1.9 pk }
1543 1.9 pk
1544 1.9 pk static int
1545 1.65 dsl ie_ia_setup(struct ie_softc *sc, int cmdbuf)
1546 1.9 pk {
1547 1.9 pk int cmdresult, status;
1548 1.9 pk struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1549 1.9 pk
1550 1.9 pk setup_simple_command(sc, IE_CMD_IASETUP, cmdbuf);
1551 1.9 pk
1552 1.59 dyoung (sc->memcopyout)(sc, CLLADDR(ifp->if_sadl),
1553 1.9 pk IE_CMD_IAS_EADDR(cmdbuf), ETHER_ADDR_LEN);
1554 1.9 pk
1555 1.9 pk cmdresult = i82586_start_cmd(sc, IE_CUC_START, cmdbuf, IE_STAT_COMPL, 0);
1556 1.9 pk status = sc->ie_bus_read16(sc, IE_CMD_COMMON_STATUS(cmdbuf));
1557 1.9 pk if (cmdresult != 0) {
1558 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1559 1.73 msaitoh "individual address command timed out; status %x\n",
1560 1.73 msaitoh status);
1561 1.9 pk return (0);
1562 1.9 pk }
1563 1.9 pk if ((status & IE_STAT_OK) == 0) {
1564 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1565 1.73 msaitoh "individual address command failed; status %x\n", status);
1566 1.9 pk return (0);
1567 1.9 pk }
1568 1.10 pk
1569 1.10 pk /* Squash any pending interrupts */
1570 1.10 pk ie_ack(sc, IE_ST_WHENCE);
1571 1.9 pk return (1);
1572 1.9 pk }
1573 1.9 pk
1574 1.1 pk /*
1575 1.1 pk * Run the multicast setup command.
1576 1.1 pk * Called at splnet().
1577 1.1 pk */
1578 1.1 pk static int
1579 1.65 dsl ie_mc_setup(struct ie_softc *sc, int cmdbuf)
1580 1.1 pk {
1581 1.9 pk int cmdresult, status;
1582 1.1 pk
1583 1.9 pk if (sc->mcast_count == 0)
1584 1.9 pk return (1);
1585 1.1 pk
1586 1.9 pk setup_simple_command(sc, IE_CMD_MCAST, cmdbuf);
1587 1.1 pk
1588 1.58 christos (sc->memcopyout)(sc, (void *)sc->mcast_addrs,
1589 1.9 pk IE_CMD_MCAST_MADDR(cmdbuf),
1590 1.9 pk sc->mcast_count * ETHER_ADDR_LEN);
1591 1.9 pk
1592 1.9 pk sc->ie_bus_write16(sc, IE_CMD_MCAST_BYTES(cmdbuf),
1593 1.9 pk sc->mcast_count * ETHER_ADDR_LEN);
1594 1.9 pk
1595 1.9 pk /* Start the command */
1596 1.73 msaitoh cmdresult = i82586_start_cmd(sc, IE_CUC_START, cmdbuf, IE_STAT_COMPL,
1597 1.73 msaitoh 0);
1598 1.9 pk status = sc->ie_bus_read16(sc, IE_CMD_COMMON_STATUS(cmdbuf));
1599 1.9 pk if (cmdresult != 0) {
1600 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1601 1.73 msaitoh "multicast setup command timed out; status %x\n", status);
1602 1.9 pk return (0);
1603 1.9 pk }
1604 1.9 pk if ((status & IE_STAT_OK) == 0) {
1605 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1606 1.73 msaitoh "multicast setup command failed; status %x\n", status);
1607 1.9 pk return (0);
1608 1.1 pk }
1609 1.6 pk
1610 1.10 pk /* Squash any pending interrupts */
1611 1.10 pk ie_ack(sc, IE_ST_WHENCE);
1612 1.9 pk return (1);
1613 1.1 pk }
1614 1.1 pk
1615 1.1 pk /*
1616 1.1 pk * This routine takes the environment generated by check_ie_present() and adds
1617 1.1 pk * to it all the other structures we need to operate the adapter. This
1618 1.1 pk * includes executing the CONFIGURE, IA-SETUP, and MC-SETUP commands, starting
1619 1.1 pk * the receiver unit, and clearing interrupts.
1620 1.1 pk *
1621 1.1 pk * THIS ROUTINE MUST BE CALLED AT splnet() OR HIGHER.
1622 1.1 pk */
1623 1.1 pk int
1624 1.65 dsl i82586_init(struct ifnet *ifp)
1625 1.1 pk {
1626 1.29 bjh21 struct ie_softc *sc = ifp->if_softc;
1627 1.9 pk int cmd;
1628 1.9 pk
1629 1.10 pk sc->async_cmd_inprogress = 0;
1630 1.1 pk
1631 1.9 pk cmd = sc->buf_area;
1632 1.1 pk
1633 1.1 pk /*
1634 1.1 pk * Send the configure command first.
1635 1.1 pk */
1636 1.9 pk if (ie_cfg_setup(sc, cmd, sc->promisc, 0) == 0)
1637 1.37 bjh21 return EIO;
1638 1.1 pk
1639 1.9 pk /*
1640 1.9 pk * Send the Individual Address Setup command.
1641 1.9 pk */
1642 1.9 pk if (ie_ia_setup(sc, cmd) == 0)
1643 1.37 bjh21 return EIO;
1644 1.1 pk
1645 1.1 pk /*
1646 1.9 pk * Run the time-domain reflectometer.
1647 1.1 pk */
1648 1.9 pk ie_run_tdr(sc, cmd);
1649 1.1 pk
1650 1.1 pk /*
1651 1.9 pk * Set the multi-cast filter, if any
1652 1.1 pk */
1653 1.9 pk if (ie_mc_setup(sc, cmd) == 0)
1654 1.37 bjh21 return EIO;
1655 1.1 pk
1656 1.1 pk /*
1657 1.1 pk * Acknowledge any interrupts we have generated thus far.
1658 1.1 pk */
1659 1.1 pk ie_ack(sc, IE_ST_WHENCE);
1660 1.1 pk
1661 1.1 pk /*
1662 1.1 pk * Set up the transmit and recv buffers.
1663 1.1 pk */
1664 1.9 pk i82586_setup_bufs(sc);
1665 1.1 pk
1666 1.6 pk if (sc->hwinit)
1667 1.6 pk (sc->hwinit)(sc);
1668 1.6 pk
1669 1.3 pk ifp->if_flags |= IFF_RUNNING;
1670 1.3 pk ifp->if_flags &= ~IFF_OACTIVE;
1671 1.1 pk
1672 1.6 pk if (NTXBUF < 2)
1673 1.7 pk sc->do_xmitnopchain = 0;
1674 1.6 pk
1675 1.6 pk i82586_start_transceiver(sc);
1676 1.31 scw return (0);
1677 1.6 pk }
1678 1.6 pk
1679 1.9 pk /*
1680 1.9 pk * Start the RU and possibly the CU unit
1681 1.9 pk */
1682 1.6 pk static void
1683 1.65 dsl i82586_start_transceiver(struct ie_softc *sc)
1684 1.6 pk {
1685 1.9 pk
1686 1.9 pk /*
1687 1.9 pk * Start RU at current position in frame & RBD lists.
1688 1.9 pk */
1689 1.9 pk sc->ie_bus_write16(sc, IE_RFRAME_BUFDESC(sc->rframes,sc->rfhead),
1690 1.9 pk IE_RBD_ADDR(sc->rbds, sc->rbhead));
1691 1.9 pk
1692 1.9 pk sc->ie_bus_write16(sc, IE_SCB_RCVLST(sc->scb),
1693 1.9 pk IE_RFRAME_ADDR(sc->rframes,sc->rfhead));
1694 1.1 pk
1695 1.7 pk if (sc->do_xmitnopchain) {
1696 1.6 pk /* Stop transmit command chain */
1697 1.9 pk if (i82586_start_cmd(sc, IE_CUC_SUSPEND|IE_RUC_SUSPEND, 0, 0, 0))
1698 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1699 1.73 msaitoh "CU/RU stop command timed out\n");
1700 1.1 pk
1701 1.6 pk /* Start the receiver & transmitter chain */
1702 1.9 pk /* sc->scb->ie_command_list =
1703 1.9 pk IEADDR(sc->nop_cmds[(sc->xctail+NTXBUF-1) % NTXBUF]);*/
1704 1.9 pk sc->ie_bus_write16(sc, IE_SCB_CMDLST(sc->scb),
1705 1.9 pk IE_CMD_NOP_ADDR(
1706 1.9 pk sc->nop_cmds,
1707 1.9 pk (sc->xctail + NTXBUF - 1) % NTXBUF));
1708 1.9 pk
1709 1.9 pk if (i82586_start_cmd(sc, IE_CUC_START|IE_RUC_START, 0, 0, 0))
1710 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1711 1.73 msaitoh "CU/RU command timed out\n");
1712 1.6 pk } else {
1713 1.9 pk if (i82586_start_cmd(sc, IE_RUC_START, 0, 0, 0))
1714 1.69 tsutsui aprint_error_dev(sc->sc_dev, "RU command timed out\n");
1715 1.6 pk }
1716 1.1 pk }
1717 1.1 pk
1718 1.29 bjh21 void
1719 1.56 christos i82586_stop(
1720 1.56 christos struct ifnet *ifp,
1721 1.57 christos int disable)
1722 1.1 pk {
1723 1.29 bjh21 struct ie_softc *sc = ifp->if_softc;
1724 1.1 pk
1725 1.9 pk if (i82586_start_cmd(sc, IE_RUC_SUSPEND | IE_CUC_SUSPEND, 0, 0, 0))
1726 1.73 msaitoh aprint_error_dev(sc->sc_dev,
1727 1.73 msaitoh "iestop: disable commands timed out\n");
1728 1.1 pk }
1729 1.1 pk
1730 1.1 pk int
1731 1.63 dyoung i82586_ioctl(struct ifnet *ifp, unsigned long cmd, void *data)
1732 1.1 pk {
1733 1.1 pk struct ie_softc *sc = ifp->if_softc;
1734 1.1 pk struct ifreq *ifr = (struct ifreq *)data;
1735 1.1 pk int s, error = 0;
1736 1.1 pk
1737 1.1 pk s = splnet();
1738 1.1 pk switch(cmd) {
1739 1.29 bjh21 case SIOCGIFMEDIA:
1740 1.29 bjh21 case SIOCSIFMEDIA:
1741 1.29 bjh21 error = ifmedia_ioctl(ifp, ifr, &sc->sc_media, cmd);
1742 1.29 bjh21 break;
1743 1.29 bjh21 default:
1744 1.29 bjh21 error = ether_ioctl(ifp, cmd, data);
1745 1.1 pk if (error == ENETRESET) {
1746 1.1 pk /*
1747 1.1 pk * Multicast list has changed; set the hardware filter
1748 1.1 pk * accordingly.
1749 1.1 pk */
1750 1.49 thorpej if (ifp->if_flags & IFF_RUNNING)
1751 1.49 thorpej ie_mc_reset(sc);
1752 1.1 pk error = 0;
1753 1.1 pk }
1754 1.1 pk break;
1755 1.1 pk }
1756 1.29 bjh21 #if I82586_DEBUG
1757 1.29 bjh21 if (cmd == SIOCSIFFLAGS)
1758 1.29 bjh21 sc->sc_debug = (ifp->if_flags & IFF_DEBUG) ? IED_ALL : 0;
1759 1.29 bjh21 #endif
1760 1.1 pk splx(s);
1761 1.10 pk return (error);
1762 1.1 pk }
1763 1.1 pk
1764 1.1 pk static void
1765 1.65 dsl ie_mc_reset(struct ie_softc *sc)
1766 1.1 pk {
1767 1.1 pk struct ether_multi *enm;
1768 1.1 pk struct ether_multistep step;
1769 1.9 pk int size;
1770 1.1 pk
1771 1.1 pk /*
1772 1.1 pk * Step through the list of addresses.
1773 1.1 pk */
1774 1.9 pk again:
1775 1.9 pk size = 0;
1776 1.1 pk sc->mcast_count = 0;
1777 1.1 pk ETHER_FIRST_MULTI(step, &sc->sc_ethercom, enm);
1778 1.1 pk while (enm) {
1779 1.9 pk size += 6;
1780 1.9 pk if (sc->mcast_count >= IE_MAXMCAST ||
1781 1.38 thorpej memcmp(enm->enm_addrlo, enm->enm_addrhi, 6) != 0) {
1782 1.1 pk sc->sc_ethercom.ec_if.if_flags |= IFF_ALLMULTI;
1783 1.9 pk i82586_ioctl(&sc->sc_ethercom.ec_if,
1784 1.63 dyoung SIOCSIFFLAGS, NULL);
1785 1.9 pk return;
1786 1.1 pk }
1787 1.9 pk ETHER_NEXT_MULTI(step, enm);
1788 1.9 pk }
1789 1.9 pk
1790 1.9 pk if (size > sc->mcast_addrs_size) {
1791 1.9 pk /* Need to allocate more space */
1792 1.9 pk if (sc->mcast_addrs_size)
1793 1.43 thorpej free(sc->mcast_addrs, M_IFMADDR);
1794 1.9 pk sc->mcast_addrs = (char *)
1795 1.43 thorpej malloc(size, M_IFMADDR, M_WAITOK);
1796 1.9 pk sc->mcast_addrs_size = size;
1797 1.9 pk }
1798 1.9 pk
1799 1.9 pk /*
1800 1.9 pk * We've got the space; now copy the addresses
1801 1.9 pk */
1802 1.9 pk ETHER_FIRST_MULTI(step, &sc->sc_ethercom, enm);
1803 1.9 pk while (enm) {
1804 1.9 pk if (sc->mcast_count >= IE_MAXMCAST)
1805 1.9 pk goto again; /* Just in case */
1806 1.1 pk
1807 1.39 thorpej memcpy(&sc->mcast_addrs[sc->mcast_count], enm->enm_addrlo, 6);
1808 1.1 pk sc->mcast_count++;
1809 1.1 pk ETHER_NEXT_MULTI(step, enm);
1810 1.1 pk }
1811 1.1 pk sc->want_mcsetup = 1;
1812 1.1 pk }
1813 1.1 pk
1814 1.7 pk /*
1815 1.7 pk * Media change callback.
1816 1.7 pk */
1817 1.7 pk int
1818 1.65 dsl i82586_mediachange(struct ifnet *ifp)
1819 1.7 pk {
1820 1.7 pk struct ie_softc *sc = ifp->if_softc;
1821 1.7 pk
1822 1.7 pk if (sc->sc_mediachange)
1823 1.7 pk return ((*sc->sc_mediachange)(sc));
1824 1.23 abs return (0);
1825 1.7 pk }
1826 1.7 pk
1827 1.7 pk /*
1828 1.7 pk * Media status callback.
1829 1.7 pk */
1830 1.7 pk void
1831 1.65 dsl i82586_mediastatus(struct ifnet *ifp, struct ifmediareq *ifmr)
1832 1.9 pk {
1833 1.7 pk struct ie_softc *sc = ifp->if_softc;
1834 1.7 pk
1835 1.9 pk if (sc->sc_mediastatus)
1836 1.7 pk (*sc->sc_mediastatus)(sc, ifmr);
1837 1.7 pk }
1838 1.7 pk
1839 1.25 pk #if I82586_DEBUG
1840 1.1 pk void
1841 1.65 dsl print_rbd(struct ie_softc *sc, int n)
1842 1.1 pk {
1843 1.1 pk
1844 1.10 pk printf("RBD at %08x:\n status %04x, next %04x, buffer %lx\n"
1845 1.9 pk "length/EOL %04x\n", IE_RBD_ADDR(sc->rbds,n),
1846 1.9 pk sc->ie_bus_read16(sc, IE_RBD_STATUS(sc->rbds,n)),
1847 1.9 pk sc->ie_bus_read16(sc, IE_RBD_NEXT(sc->rbds,n)),
1848 1.9 pk (u_long)0,/*bus_space_read_4(sc->bt, sc->bh, IE_RBD_BUFADDR(sc->rbds,n)),-* XXX */
1849 1.9 pk sc->ie_bus_read16(sc, IE_RBD_BUFLEN(sc->rbds,n)));
1850 1.1 pk }
1851 1.1 pk #endif
1852